caixa_core/aplicacao.rs
1//! Typed Aplicacao — the fourth caixa kind that turns a graph of
2//! Servicos into a single declarative application (mesh).
3//!
4//! See `theory/MESH-COMPOSITION.md` for the design frame: an
5//! Aplicacao composes [`crate::CaixaKind::Servico`] caixas via WIT-typed
6//! `:contratos` (inter-Servico edges), declares mesh-level
7//! `:politicas` (timeouts, retries, breakers, mTLS), pins
8//! `:placement` strategy (single-node / replicated / sharded), and
9//! exposes `:entrada` (gateway).
10//!
11//! ```lisp
12//! (defcaixa
13//! :nome "checkout"
14//! :versao "0.1.0"
15//! :kind Aplicacao
16//! :membros ((:caixa "catalog" :versao "^0.1")
17//! (:caixa "cart" :versao "^0.1")
18//! (:caixa "payment" :versao "^0.2"))
19//! :contratos ((:de "cart" :para "catalog"
20//! :wit "wasi:http/proxy" :endpoint "/products/:id")
21//! (:de "cart" :para "payment"
22//! :wit "wasi:http/proxy" :endpoint "/charge"))
23//! :politicas ((:timeout "30s")
24//! (:retries 3)
25//! (:circuit-breaker (:max-failures 5 :window "60s"))
26//! (:mtls-required t))
27//! :placement (:estrategia replicated
28//! :clusters ("rio" "mar" "plo"))
29//! :entrada (:host "checkout.quero.cloud"
30//! :para "cart"
31//! :paths ("/api/cart" "/api/products")))
32//! ```
33//!
34//! All the typed slots compose with the M2 primitives the Servicos
35//! they reference already declare (`:limits`, `:behavior`,
36//! `:upgrade-from`). The Aplicacao adds the *graph-level*
37//! standardization on top.
38
39use std::time::Duration;
40
41use serde::{Deserialize, Serialize};
42use thiserror::Error;
43
44use crate::supervisor; // we reuse the duration-string codec at module scope
45
46// ── inter-Servico contracts ──────────────────────────────────────────
47
48/// One typed edge in the Aplicacao graph. The build refuses any
49/// contract whose `:de` or `:para` doesn't appear in `:membros`, and
50/// (M3+) cross-checks the `:wit` shape against both Servicos'
51/// declared imports/exports.
52#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
53#[serde(rename_all = "camelCase")]
54pub struct WitContract {
55 /// Caller Servico — must reference an entry in the Aplicacao's
56 /// `:membros`. The Servico's caixa.lisp must declare a matching
57 /// `:capabilities` import for the `:wit` world.
58 pub de: String,
59
60 /// Callee Servico — must reference an entry in `:membros`. The
61 /// Servico must declare a matching `:capabilities` export.
62 pub para: String,
63
64 /// WIT world reference — e.g. `"wasi:http/proxy"`,
65 /// `"wasi:keyvalue/store"`, `"nats:pub-sub"`. Strings for V0;
66 /// M4 promotes these to a typed enum once the WIT registry
67 /// stabilizes in tatara-lisp.
68 pub wit: String,
69
70 /// HTTP endpoint path, present when `:wit` is HTTP-shaped.
71 #[serde(default, skip_serializing_if = "Option::is_none")]
72 pub endpoint: Option<String>,
73
74 /// NATS / event-stream subject, present when `:wit` is pub-sub-shaped.
75 #[serde(default, skip_serializing_if = "Option::is_none")]
76 pub subject: Option<String>,
77
78 /// Key/value or queue slot, present when `:wit` is store-shaped.
79 #[serde(default, skip_serializing_if = "Option::is_none")]
80 pub slot: Option<String>,
81}
82
83/// Canonical lowercase byte-prefix set the substrate's WIT-shape
84/// dispatch routes `wasi:http/*` / `http:*` values through as the
85/// HTTP-shaped arm. The single source of truth every consumer that
86/// classifies a `:wit` value as HTTP-shaped consults —
87/// [`WitContract::is_http`] on the typed contract, the
88/// `AplicacaoSpec::validate` positive-sweep test's payload-dispatch
89/// helper, and every future renderer that routes an L7 emission off a
90/// bare `&str` (the M4 per-edge WIT registry resolver, the future
91/// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer). Spelled
92/// exactly as the [`is_wit_world_ref`][iwr] predicate documents the
93/// canonical lowercase prefixes ("`wasi:http/`, `nats:`,
94/// `wasi:keyvalue/`, `kafka:`, `kv:`, `http:`") so drift between the
95/// substrate's accept-set and this crate's dispatch-set is a
96/// build-time compile error (unused-import), not a per-renderer
97/// silent L7-→-L4 demotion at apply time.
98///
99/// [iwr]: crate::render::is_wit_world_ref
100pub const WIT_HTTP_SHAPE_PREFIXES: &[&str] = &["wasi:http/", "http:"];
101
102/// Canonical lowercase byte-prefix set the substrate's WIT-shape
103/// dispatch routes `nats:*` / `kafka:*` values through as the
104/// pub-sub-shaped arm. Peer of [`WIT_HTTP_SHAPE_PREFIXES`] /
105/// [`WIT_STORE_SHAPE_PREFIXES`] on the shape-dispatch axis; see the
106/// HTTP constant's docstring for the full lift rationale.
107pub const WIT_PUBSUB_SHAPE_PREFIXES: &[&str] = &["nats:", "kafka:"];
108
109/// Canonical lowercase byte-prefix set the substrate's WIT-shape
110/// dispatch routes `wasi:keyvalue/*` / `kv:*` values through as the
111/// key/value-store-shaped arm. Peer of [`WIT_HTTP_SHAPE_PREFIXES`] /
112/// [`WIT_PUBSUB_SHAPE_PREFIXES`] on the shape-dispatch axis; see the
113/// HTTP constant's docstring for the full lift rationale.
114pub const WIT_STORE_SHAPE_PREFIXES: &[&str] = &["wasi:keyvalue/", "kv:"];
115
116/// True when `wit` — a raw `:contratos :wit` value — starts with any
117/// entry in the `prefixes` accept-set. The single canonical
118/// prefix-driven WIT-shape classification combinator every peer
119/// per-shape predicate ([`wit_shape_is_http`], [`wit_shape_is_pubsub`],
120/// [`wit_shape_is_store`]) routes through, closing the 3-site
121/// duplication of the `PREFIXES.iter().any(|p| wit.starts_with(p))`
122/// combinator the prior open-coded implementations each carried.
123///
124/// A future 4th WIT-shape dispatch arm (a hypothetical `wasi:sockets/*`
125/// / `tcp:*` transport-layer shape, an `oci:*` capability-import
126/// carrier) becomes exactly one new [`WIT_*_SHAPE_PREFIXES`] const +
127/// one new `wit_shape_is_<name>` one-liner routing through this
128/// combinator, not a fourth copy of the `iter().any(starts_with)`
129/// combinator paired to its own prefix-set. Same "one canonical
130/// combinator, thin per-arm projections" discipline the peer
131/// [`WitTarget::payload_pair`] (6788ed6) already established for the
132/// downstream per-arm `(field, payload)` dispatch, extended to the
133/// upstream per-arm `PREFIXES → bool` dispatch.
134#[must_use]
135pub fn wit_shape_matches(wit: &str, prefixes: &[&str]) -> bool {
136 prefixes.iter().any(|p| wit.starts_with(p))
137}
138
139/// True when `wit` — a raw `:contratos :wit` value — targets an
140/// HTTP-shaped WIT world (starts with any prefix in
141/// [`WIT_HTTP_SHAPE_PREFIXES`]). The single dispatch predicate every
142/// consumer routes L7-HTTP emission through, whether they carry a
143/// full [`WitContract`] on hand ([`WitContract::is_http`] delegates
144/// here) or only the raw `wit` string (the positive-sweep test's
145/// payload-dispatch helper, future renderers that classify off a
146/// bare `&str`). Lifting to a free function makes the shape-dispatch
147/// arm reachable without materializing a scratch [`WitContract`] at
148/// every classification point, and pins the six-prefix accept-set at
149/// one place so future additions (e.g. an `"https:"` peer of
150/// `"http:"`) reach every consumer by construction. Routes through
151/// the lifted [`wit_shape_matches`] combinator so the
152/// `PREFIXES.iter().any(|p| wit.starts_with(p))` scan lives at one
153/// canonical primitive, not one open-coded copy per peer arm.
154#[must_use]
155pub fn wit_shape_is_http(wit: &str) -> bool {
156 wit_shape_matches(wit, WIT_HTTP_SHAPE_PREFIXES)
157}
158
159/// True when `wit` — a raw `:contratos :wit` value — targets a
160/// pub-sub-shaped WIT world (starts with any prefix in
161/// [`WIT_PUBSUB_SHAPE_PREFIXES`]). Peer of [`wit_shape_is_http`] /
162/// [`wit_shape_is_store`] on the shape-dispatch axis; see
163/// [`wit_shape_is_http`] for the lift rationale. Routes through the
164/// lifted [`wit_shape_matches`] combinator.
165#[must_use]
166pub fn wit_shape_is_pubsub(wit: &str) -> bool {
167 wit_shape_matches(wit, WIT_PUBSUB_SHAPE_PREFIXES)
168}
169
170/// True when `wit` — a raw `:contratos :wit` value — targets a
171/// key/value-store-shaped WIT world (starts with any prefix in
172/// [`WIT_STORE_SHAPE_PREFIXES`]). Peer of [`wit_shape_is_http`] /
173/// [`wit_shape_is_pubsub`] on the shape-dispatch axis; see
174/// [`wit_shape_is_http`] for the lift rationale. Routes through the
175/// lifted [`wit_shape_matches`] combinator.
176#[must_use]
177pub fn wit_shape_is_store(wit: &str) -> bool {
178 wit_shape_matches(wit, WIT_STORE_SHAPE_PREFIXES)
179}
180
181impl WitContract {
182 /// Substrate-canonical per-`:contratos` caller-Servico scalar
183 /// accessor every consumer that reads the edge's source endpoint
184 /// keys off — returns the author-declared `:contratos :de`
185 /// byte-string verbatim as a `&str`, borrowed from the typed slot's
186 /// own [`String`] storage.
187 ///
188 /// The `:contratos :de` slot names the caller-side member Servico
189 /// on a typed inter-Servico edge (validated by
190 /// [`AplicacaoSpec::validate`] to be a [`Membro::caixa`] the
191 /// Aplicacao declares — a stray `:de` that doesn't name a member is
192 /// [`AplicacaoError::ContratoMemberMissing`], not a silent
193 /// caller-attachment miss at cluster-apply time). Peer of the
194 /// sibling [`WitContract::destination`] accessor on the same
195 /// per-`:contratos` entry — the pair `( source(), destination() )`
196 /// jointly names the typed edge every renderer that fans on the
197 /// caller-callee identity keys off (the
198 /// [`caixa_mesh::cilium_network_policies`] per-`(:de, :para)`
199 /// grouping, the [`AplicacaoSpec::detect_sync_cycles`] adjacency
200 /// map, the per-edge dedup key, the per-edge membership-lookup
201 /// diagnostic).
202 ///
203 /// Prior to this lift the `.de` byte-string was accessed inline at
204 /// four caixa-core sites (the two validate-side membership lookups
205 /// at `!names.contains(c.de.as_str())`, the per-edge dedup-key
206 /// tuple's caller-arm at
207 /// `(c.de.as_str(), c.para.as_str(), c.wit.as_str(), ...)`, the
208 /// `detect_sync_cycles` adjacency `adj.entry(c.de.as_str())`) and
209 /// one caixa-mesh site (the per-`(:de, :para)` CNP grouping's
210 /// caller-arm at `groups.entry((c.de.as_str(), c.para.as_str()))`)
211 /// — five open-coded `.de.as_str()` field-accesses that expressed
212 /// no compile-time link back to the typed slot. A future extension
213 /// of the `:contratos :de` axis to a richer author surface (a
214 /// multi-caller weighted-fan-in overlay per MESH-COMPOSITION §III.2
215 /// canary flow, a per-cluster caller-alias table the operator pins
216 /// through a future `:placement`-scoped slot, the M4
217 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-CR
218 /// admission-webhook that promotes the scalar to a caller-set
219 /// projection) would have had to be threaded through every
220 /// open-coded copy in lockstep or one consumer would silently
221 /// disagree with the peers on which caller Servico a given edge
222 /// resolves to. Lifting the resolution rule to a typed method on
223 /// the substrate primitive means every downstream caller-facing
224 /// consumer reaches for one typed dispatch — the resolver's
225 /// accept-set migrates as a unit on any future axis addition.
226 ///
227 /// Peer of the sibling per-`:entrada` [`Entrada::destination`]
228 /// (6db982c) accessor on the analogous per-ingress-Servico scalar
229 /// axis — same "one typed dispatch on the substrate primitive,
230 /// thin projections at each consumer" discipline extended onto the
231 /// per-`:contratos` caller-Servico byte-string axis.
232 #[must_use]
233 pub fn source(&self) -> &str {
234 self.de.as_str()
235 }
236
237 /// Substrate-canonical per-`:contratos` callee-Servico scalar
238 /// accessor every consumer that reads the edge's destination
239 /// endpoint keys off — returns the author-declared
240 /// `:contratos :para` byte-string verbatim as a `&str`, borrowed
241 /// from the typed slot's own [`String`] storage.
242 ///
243 /// The `:contratos :para` slot names the callee-side member Servico
244 /// on a typed inter-Servico edge (validated by
245 /// [`AplicacaoSpec::validate`] to be a [`Membro::caixa`] the
246 /// Aplicacao declares — a stray `:para` that doesn't name a member
247 /// is [`AplicacaoError::ContratoMemberMissing`], not a silent
248 /// callee-attachment miss at cluster-apply time). Callee-side twin
249 /// of the sibling [`WitContract::source`] accessor — the pair
250 /// jointly names the typed edge every renderer that fans on the
251 /// caller-callee identity keys off, and this accessor is also the
252 /// per-`(:de, :para)` L4 port resolver's canonical destination arg:
253 /// under today's typed surface [`AplicacaoSpec::port_for_destination`]
254 /// composes with `destination()` at every emit site that projects a
255 /// per-edge destination Servico's L4 listener port.
256 ///
257 /// Prior to this lift the `.para` byte-string was accessed inline
258 /// at five sites — four caixa-core (the validate-side membership
259 /// lookup at `!names.contains(c.para.as_str())`, the per-edge
260 /// dedup-key tuple's callee-arm, the `detect_sync_cycles`
261 /// adjacency `.insert(c.para.as_str())`, the CNP grouping's
262 /// callee-arm) and one caixa-mesh (the per-`(:de, :para)` CNP L4
263 /// port resolver's destination arg `spec.port_for_destination(&c.para)`)
264 /// — with no compile-time link back to the typed slot. A future
265 /// extension of the `:contratos :para` axis to a richer author
266 /// surface (a multi-callee weighted-fan-out overlay for canary /
267 /// blue-green routing on typed edges, a per-cluster callee-alias
268 /// table the operator pins through a future `:placement`-scoped
269 /// slot, the M4 CR materializer's per-CR admission-webhook that
270 /// promotes the scalar to a callee-set projection) would have had
271 /// to be threaded through every open-coded copy in lockstep or one
272 /// consumer would silently disagree on which callee Servico a given
273 /// edge resolves to (a per-CNP `endpointSelector` that names a
274 /// different destination than its L4 port resolver reads for, a
275 /// dedup-key that treats `(cart, catalog-v2)` and `(cart, catalog)`
276 /// as distinct while the adjacency map collapses them, or vice
277 /// versa). Lifting to a typed method on the substrate primitive
278 /// means every downstream callee-facing consumer reaches for one
279 /// typed dispatch.
280 ///
281 /// Peer of the sibling per-`:entrada` [`Entrada::destination`]
282 /// (6db982c) accessor — both name the "destination-Servico
283 /// byte-string" concept on their respective mesh-slot atoms (per-
284 /// ingress apex vs. per-typed-edge callee), and both extend the
285 /// substrate-primitive-owns-the-resolver discipline onto the
286 /// per-slot destination-Servico scalar axis. Composes with
287 /// [`AplicacaoSpec::port_for_destination`] (9ca4896) at every
288 /// emit-side per-edge L4 port reader — the composition
289 /// `spec.port_for_destination(c.destination())` pins the CNP per-
290 /// `(:de, :para)` L4 port axis to the same typed dispatch the peer
291 /// `HTTPRoute` `backendRefs[0].port` axis reaches through with
292 /// `spec.port_for_destination(entrada.destination())`.
293 #[must_use]
294 pub fn destination(&self) -> &str {
295 self.para.as_str()
296 }
297
298 /// Substrate-canonical per-`:contratos` WIT-world-reference scalar
299 /// accessor every consumer that reads the edge's WIT world
300 /// discriminator keys off — returns the author-declared
301 /// `:contratos :wit` byte-string verbatim as a `&str`, borrowed from
302 /// the typed slot's own [`String`] storage.
303 ///
304 /// The `:contratos :wit` slot names the WIT world the typed edge
305 /// carries (e.g. `"wasi:http/proxy"`, `"nats:pub-sub"`,
306 /// `"wasi:keyvalue/store"`); validated by [`WitContract::target`] to
307 /// be a well-shaped WIT world reference via
308 /// [`crate::render::is_wit_world_ref`] and by
309 /// [`AplicacaoSpec::validate`] to be non-empty via the narrower
310 /// [`AplicacaoError::EmptyWit`] variant. Peer of the sibling
311 /// [`WitContract::source`] / [`WitContract::destination`] accessors
312 /// on the same per-`:contratos` entry — the triple
313 /// `( source(), destination(), world_ref() )` jointly names the
314 /// typed edge every renderer that fans on the caller-callee-shape
315 /// identity keys off (the per-edge dedup key at
316 /// [`AplicacaoSpec::validate`]'s duplicate-`:contratos` gate, the
317 /// per-`(:de, :para)` CNP grouping's shape-arm classifier at
318 /// [`caixa_mesh::cilium_network_policies`], the
319 /// [`WitContract::is_http`] / [`is_pubsub`][WitContract::is_pubsub]
320 /// / [`is_store`][WitContract::is_store] shape-dispatch predicates,
321 /// the [`feira app graph`][fag] per-edge printer's WIT-shape label).
322 ///
323 /// Prior to this lift the `.wit` byte-string was accessed inline at
324 /// five sites — three caixa-core (the `WitContract::is_*` shape-
325 /// dispatch predicates' `&self.wit` arg, the validate-side empty
326 /// check at `if c.wit.is_empty()`, the per-edge dedup-key tuple's
327 /// shape arm at `c.wit.as_str()`) and one caixa-feira (the app-graph
328 /// printer's `{}` format-slot at `c.wit`) — five open-coded
329 /// `.wit` field-accesses that expressed no compile-time link back to
330 /// the typed slot. A future extension of the `:contratos :wit` axis
331 /// to a richer author surface (an M4 promotion from `String` to a
332 /// typed WIT-world enum once the WIT registry stabilizes in tatara-
333 /// lisp per this struct's own `:wit` field docstring, a per-cluster
334 /// WIT-alias table the operator pins through a future
335 /// `:placement`-scoped slot, a canonicalization pass that lowercases
336 /// `wasi:*` prefixes) would have had to be threaded through every
337 /// open-coded copy in lockstep or one consumer would silently
338 /// disagree with the peers on which WIT shape a given edge resolves
339 /// to (a per-CNP L7 emission that read `wasi:http/proxy` while the
340 /// dedup key read the pre-canonicalized `WASI:HTTP/proxy`, an
341 /// empty-check that missed a whitespace-only string a peer accessor
342 /// stripped, or vice versa). Lifting to a typed method on the
343 /// substrate primitive means every downstream WIT-shape-facing
344 /// consumer reaches for one typed dispatch — the resolver's
345 /// accept-set migrates as a unit on any future axis addition.
346 ///
347 /// Sibling of the peer per-`:contratos` [`WitContract::source`] /
348 /// [`WitContract::destination`] (7f0fd43), per-`:entrada`
349 /// [`Entrada::hostname`] / [`Entrada::destination`] (11f3dfe /
350 /// 6db982c), per-`:membros` [`Membro::nome`] /
351 /// [`Membro::versao_requirement`] (4a32abf / a40b0e3) accessors on
352 /// the mesh-slot-atom scalar-value axes — same "one typed dispatch
353 /// on the substrate primitive, thin projections at each consumer"
354 /// discipline extended onto the last unlifted per-`:contratos`
355 /// scalar (the WIT-world-reference arm).
356 ///
357 /// [fag]: caixa-feira/src/cmd/app.rs
358 #[must_use]
359 pub fn world_ref(&self) -> &str {
360 self.wit.as_str()
361 }
362
363 /// Substrate-canonical per-`:contratos` `:endpoint` HTTP-shaped
364 /// payload-target scalar accessor every consumer that reads the
365 /// edge's L7 HTTP request path payload keys off — returns the
366 /// author-declared `:contratos :endpoint` byte-string verbatim as
367 /// an `Option<&str>`, borrowed from the typed slot's own
368 /// `Option<String>` storage; `None` when the slot is absent (the
369 /// canonical shape of a non-HTTP-`:wit`-world edge — pub-sub
370 /// `nats:*`/`kafka:*` carries `:subject` instead, key/value
371 /// `wasi:keyvalue/*`/`kv:*` carries `:slot` instead, and a plain
372 /// [`WitTarget::Capability`] edge carries none of the three).
373 ///
374 /// The `:contratos :endpoint` slot carries the HTTP request path
375 /// payload (Cilium L7 `path:` + Gateway API v1 `PathPrefix` grammar
376 /// — same shape required of `:entrada :paths`, gated by the shared
377 /// [`crate::render::is_gateway_api_http_path`] predicate) that
378 /// [`WitContract::target`] projects onto the [`WitTarget::Http`]
379 /// arm's `endpoint: &'a str` payload when the edge's `:wit` world
380 /// matches the [`WIT_HTTP_SHAPE_PREFIXES`] accept-set. Every
381 /// downstream consumer that reads the payload keys off this scalar
382 /// (the [`WitContract::target`] Http-arm payload extraction that
383 /// materializes [`WitTarget::Http { endpoint }`] under the paired
384 /// [`WitTarget::HTTP_FIELD_NAME`] label, the
385 /// [`AplicacaoSpec::validate`] duplicate-`:contratos` [`ContratoIdentity`]
386 /// key's endpoint arm that pins the payload as part of the six-tuple
387 /// dedup key alongside the sibling `:subject`/`:slot` arms, the
388 /// future M4 per-edge WIT registry resolver's HTTP-arm materializer,
389 /// the future `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
390 /// per-edge L7 admission webhook, the future caixa-mesh L7 CNP
391 /// emission path that lands the payload verbatim as a Cilium L7
392 /// `path:` rule).
393 ///
394 /// Prior to this lift the `.endpoint` field was accessed inline at
395 /// two production sites in `caixa-core/src/aplicacao.rs` — the
396 /// [`WitContract::target`] payload-shape dispatch's `let endpoint =
397 /// self.endpoint.as_deref();` binding at the top of the method, and
398 /// the [`AplicacaoSpec::validate`] duplicate-`:contratos` dedup-key
399 /// tuple's `c.endpoint.as_deref()` HTTP-arm slot — two open-coded
400 /// field-accesses that expressed no compile-time link back to the
401 /// typed slot. A future extension of the `:contratos :endpoint`
402 /// axis to a richer author surface (an M4 promotion from
403 /// `Option<String>` to a typed HTTP path-template enum once the
404 /// WIT registry stabilizes path-parameter shapes in tatara-lisp per
405 /// this struct's own `:wit` field docstring, a per-cluster endpoint-
406 /// alias table the operator pins through a future `:placement`-
407 /// scoped slot, a canonicalization pass that percent-encodes non-
408 /// ASCII path segments, a per-CR fully-qualified rewrite the M4 CR
409 /// materializer applies per-tenant) would have had to be threaded
410 /// through both open-coded copies in lockstep or the two consumers
411 /// would silently disagree on which HTTP path a given edge resolves
412 /// to — the [`WitContract::target`] payload-extraction reading
413 /// `"/lookup"` while the [`AplicacaoSpec::validate`] dedup key read
414 /// the operator-resolved `"/tenant-a/lookup"` would silently split
415 /// the [`WitTarget::Http`]-arm rendered payload from the actual
416 /// dedup-key uniqueness axis, a two-consumer split at the validator
417 /// far from the source `caixa.lisp` with no field naming the
418 /// payload-drift root cause. Lifting the resolution rule to a typed
419 /// method on the substrate primitive means every downstream
420 /// HTTP-payload-facing consumer of the Aplicacao's per-`:contratos`
421 /// L7-payload surface reaches for exactly one typed dispatch — the
422 /// resolver's accept-set migrates as a unit on any future axis
423 /// addition.
424 ///
425 /// Peer of the sibling per-`:placement` [`Placement::shard_key`]
426 /// (7cd2a28) / [`Placement::affinity`] (74ec2d3) `Option<&str>`
427 /// accessors on the M3 mesh-slot family — same "one typed dispatch
428 /// on the substrate primitive, thin projections at each consumer"
429 /// discipline extended onto the per-`:contratos` HTTP-shaped
430 /// payload-carrier `Option<String>` optional-scalar axis. First
431 /// `Option<&str>`-return accessor on the per-`:contratos` mesh-slot
432 /// atom — opens the "optional per-slot payload-carrier scalar"
433 /// projection pattern the sibling per-`:contratos` `:subject` /
434 /// `:slot` future lifts fold on, matching the closed
435 /// per-`:contratos` scalar-value accessor family
436 /// ([`WitContract::source`] / [`WitContract::destination`] /
437 /// [`WitContract::world_ref`]) already lifted onto the mandatory-
438 /// scalar `String` axes. Named `endpoint()` to match the storage
439 /// field's name and the paired [`WitTarget::HTTP_FIELD_NAME`]
440 /// author-facing label const; the accessor's identity name maps
441 /// onto the canonical MESH-COMPOSITION §II.3 vocabulary the slot's
442 /// docstring already carries.
443 #[must_use]
444 pub fn endpoint(&self) -> Option<&str> {
445 self.endpoint.as_deref()
446 }
447
448 /// Substrate-canonical per-`:contratos` `:subject` pub-sub-shaped
449 /// payload-target scalar accessor every consumer that reads the
450 /// edge's NATS / Kafka publish subject payload keys off — returns
451 /// the author-declared `:contratos :subject` byte-string verbatim
452 /// as an `Option<&str>`, borrowed from the typed slot's own
453 /// `Option<String>` storage; `None` when the slot is absent (the
454 /// canonical shape of a non-pub-sub-`:wit`-world edge — HTTP
455 /// `wasi:http/*`/`http:*` carries `:endpoint` instead, key/value
456 /// `wasi:keyvalue/*`/`kv:*` carries `:slot` instead, and a plain
457 /// [`WitTarget::Capability`] edge carries none of the three).
458 ///
459 /// The `:contratos :subject` slot carries the NATS / Kafka publish
460 /// subject payload (the [`WIT_PUBSUB_SHAPE_PREFIXES`] dispatch arm's
461 /// per-edge target selector — `orders.paid`, `events.>`, whatever
462 /// subject namespace the author names on the pub-sub edge) that
463 /// [`WitContract::target`] projects onto the [`WitTarget::PubSub`]
464 /// arm's `subject: &'a str` payload when the edge's `:wit` world
465 /// matches the [`WIT_PUBSUB_SHAPE_PREFIXES`] accept-set. Every
466 /// downstream consumer that reads the payload keys off this scalar
467 /// (the [`WitContract::target`] PubSub-arm payload extraction that
468 /// materializes [`WitTarget::PubSub { subject }`] under the paired
469 /// [`WitTarget::PUBSUB_FIELD_NAME`] label, the
470 /// [`AplicacaoSpec::validate`] duplicate-`:contratos` [`ContratoIdentity`]
471 /// key's subject arm that pins the payload as part of the six-tuple
472 /// dedup key alongside the sibling `:endpoint`/`:slot` arms, the
473 /// future M4 per-edge WIT registry resolver's pub-sub-arm
474 /// materializer, the future `mesh.pleme.io/v1alpha1/Aplicacao` CR
475 /// materializer's per-edge NATS admission webhook, the future
476 /// caixa-mesh L4 CNP emission path that lands the payload verbatim
477 /// as a NATS subject the operator pins per-CR).
478 ///
479 /// Prior to this lift the `.subject` field was accessed inline at
480 /// two production sites in `caixa-core/src/aplicacao.rs` — the
481 /// [`WitContract::target`] payload-shape dispatch's `let subject =
482 /// self.subject.as_deref();` binding at the top of the method, and
483 /// the [`AplicacaoSpec::validate`] duplicate-`:contratos` dedup-key
484 /// tuple's `c.subject.as_deref()` pub-sub-arm slot — two open-coded
485 /// field-accesses that expressed no compile-time link back to the
486 /// typed slot. A future extension of the `:contratos :subject` axis
487 /// to a richer author surface (an M4 promotion from `Option<String>`
488 /// to a typed NATS-subject-template enum once the WIT registry
489 /// stabilizes wildcard / hierarchy shapes in tatara-lisp per this
490 /// struct's own `:wit` field docstring, a per-cluster subject-alias
491 /// table the operator pins through a future `:placement`-scoped
492 /// slot, a canonicalization pass that lowercases / dedupes wildcard
493 /// segments, a per-CR fully-qualified rewrite the M4 CR materializer
494 /// applies per-tenant) would have had to be threaded through both
495 /// open-coded copies in lockstep or the two consumers would silently
496 /// disagree on which NATS subject a given edge resolves to — the
497 /// [`WitContract::target`] payload-extraction reading `"orders.paid"`
498 /// while the [`AplicacaoSpec::validate`] dedup key read the operator-
499 /// resolved `"tenant-a.orders.paid"` would silently split the
500 /// [`WitTarget::PubSub`]-arm rendered payload from the actual dedup-
501 /// key uniqueness axis, a two-consumer split at the validator far
502 /// from the source `caixa.lisp` with no field naming the payload-
503 /// drift root cause. Lifting the resolution rule to a typed method
504 /// on the substrate primitive means every downstream pub-sub-payload-
505 /// facing consumer of the Aplicacao's per-`:contratos` L4-payload
506 /// surface reaches for exactly one typed dispatch — the resolver's
507 /// accept-set migrates as a unit on any future axis addition.
508 ///
509 /// Peer of the sibling per-`:contratos` [`WitContract::endpoint`]
510 /// (7020470) `Option<&str>` accessor on the M3 mesh-slot payload-
511 /// carrier axis — second `Option<&str>`-return accessor on the
512 /// per-`:contratos` mesh-slot atom, extending the "optional per-slot
513 /// payload-carrier scalar" projection pattern the [`WitContract::endpoint`]
514 /// HTTP-arm lift opened onto the pub-sub arm; leaves the [`WitContract::slot`]
515 /// key/value-store arm as the last unlifted per-`:contratos`
516 /// `Option<String>` axis. Named `subject()` to match the storage
517 /// field's name and the paired [`WitTarget::PUBSUB_FIELD_NAME`]
518 /// author-facing label const; the accessor's identity name maps
519 /// onto the canonical MESH-COMPOSITION §II.3 vocabulary the slot's
520 /// docstring already carries.
521 #[must_use]
522 pub fn subject(&self) -> Option<&str> {
523 self.subject.as_deref()
524 }
525
526 /// Substrate-canonical per-`:contratos` `:slot` key/value-store-
527 /// shaped payload-target scalar accessor every consumer that reads
528 /// the edge's `wasi:keyvalue/*` / `kv:*` key-template payload keys
529 /// off — returns the author-declared `:contratos :slot` byte-string
530 /// verbatim as an `Option<&str>`, borrowed from the typed slot's
531 /// own `Option<String>` storage; `None` when the slot is absent
532 /// (the canonical shape of a non-store-`:wit`-world edge — HTTP
533 /// `wasi:http/*`/`http:*` carries `:endpoint` instead, pub-sub
534 /// `nats:*`/`kafka:*` carries `:subject` instead, and a plain
535 /// [`WitTarget::Capability`] edge carries none of the three).
536 ///
537 /// The `:contratos :slot` slot carries the key/value store
538 /// key-template payload (the [`WIT_STORE_SHAPE_PREFIXES`] dispatch
539 /// arm's per-edge target selector — `carts/{cart_id}`,
540 /// `sessions/{tenant}/{sid}`, whatever key-template the author
541 /// names on the store edge) that [`WitContract::target`] projects
542 /// onto the [`WitTarget::Store`] arm's `slot: &'a str` payload when
543 /// the edge's `:wit` world matches the [`WIT_STORE_SHAPE_PREFIXES`]
544 /// accept-set. Every downstream consumer that reads the payload
545 /// keys off this scalar (the [`WitContract::target`] Store-arm
546 /// payload extraction that materializes [`WitTarget::Store { slot }`]
547 /// under the paired [`WitTarget::STORE_FIELD_NAME`] label, the
548 /// [`AplicacaoSpec::validate`] duplicate-`:contratos` [`ContratoIdentity`]
549 /// key's store arm that pins the payload as part of the six-tuple
550 /// dedup key alongside the sibling `:endpoint`/`:subject` arms,
551 /// the future M4 per-edge WIT registry resolver's store-arm
552 /// materializer, the future `mesh.pleme.io/v1alpha1/Aplicacao` CR
553 /// materializer's per-edge key/value admission webhook, the future
554 /// caixa-mesh L4 CNP emission path that lands the payload verbatim
555 /// as a key-template the operator pins per-CR).
556 ///
557 /// Prior to this lift the `.slot` field was accessed inline at two
558 /// production sites in `caixa-core/src/aplicacao.rs` — the
559 /// [`WitContract::target`] payload-shape dispatch's `let slot =
560 /// self.slot.as_deref();` binding at the top of the method, and
561 /// the [`AplicacaoSpec::validate`] duplicate-`:contratos` dedup-key
562 /// tuple's `c.slot.as_deref()` store-arm slot — two open-coded
563 /// field-accesses that expressed no compile-time link back to the
564 /// typed slot. A future extension of the `:contratos :slot` axis
565 /// to a richer author surface (an M4 promotion from `Option<String>`
566 /// to a typed key-template enum once the WIT registry stabilizes
567 /// key-template parameter shapes in tatara-lisp per this struct's
568 /// own `:wit` field docstring, a per-cluster slot-alias table the
569 /// operator pins through a future `:placement`-scoped slot, a
570 /// canonicalization pass that lowercases the bucket prefix, a
571 /// per-CR fully-qualified rewrite the M4 CR materializer applies
572 /// per-tenant) would have had to be threaded through both
573 /// open-coded copies in lockstep or the two consumers would
574 /// silently disagree on which key-template a given edge resolves
575 /// to — the [`WitContract::target`] payload-extraction reading
576 /// `"carts/{cart_id}"` while the [`AplicacaoSpec::validate`] dedup
577 /// key read the operator-resolved `"tenant-a/carts/{cart_id}"`
578 /// would silently split the [`WitTarget::Store`]-arm rendered
579 /// payload from the actual dedup-key uniqueness axis, a
580 /// two-consumer split at the validator far from the source
581 /// `caixa.lisp` with no field naming the payload-drift root cause.
582 /// Lifting the resolution rule to a typed method on the substrate
583 /// primitive means every downstream store-payload-facing consumer
584 /// of the Aplicacao's per-`:contratos` payload surface reaches for
585 /// exactly one typed dispatch — the resolver's accept-set migrates
586 /// as a unit on any future axis addition.
587 ///
588 /// Peer of the sibling per-`:contratos` [`WitContract::endpoint`]
589 /// (7020470) / [`WitContract::subject`] (90de675) `Option<&str>`
590 /// accessors on the M3 mesh-slot payload-carrier axis — third and
591 /// final `Option<&str>`-return accessor on the per-`:contratos`
592 /// mesh-slot atom, closes the last unlifted per-`:contratos`
593 /// `Option<String>` axis and completes the "optional per-slot
594 /// payload-carrier scalar" projection pattern the peer HTTP /
595 /// pub-sub arms established across the three payload-shape
596 /// dispatch arms. Named `slot()` to match the storage field's
597 /// name and the paired [`WitTarget::STORE_FIELD_NAME`]
598 /// author-facing label const; the accessor's identity name maps
599 /// onto the canonical MESH-COMPOSITION §II.3 vocabulary the slot's
600 /// docstring already carries.
601 #[must_use]
602 pub fn slot(&self) -> Option<&str> {
603 self.slot.as_deref()
604 }
605
606 /// Substrate-canonical per-`:contratos` `(caller, callee)` owned-form
607 /// caller-callee-pair accessor every consumer that constructs an
608 /// [`AplicacaoError`] variant carrying the per-edge `(de, para)`
609 /// caller-callee pair keys off — returns the author-declared
610 /// `:contratos :de` / `:contratos :para` byte-strings verbatim as an
611 /// owned `(String, String)` tuple, projected through the lifted
612 /// [`WitContract::source`] / [`WitContract::destination`] scalar
613 /// accessors so any future rebrand on the caller-arm / callee-arm
614 /// projection axis (an M4 per-cluster caller-alias table the
615 /// operator pins through a future `:placement`-scoped slot, a
616 /// namespace-qualified rewrite the M4 CR materializer applies per-CR,
617 /// a per-`:membros` alias overlay from the future `:membros
618 /// :nome-suffix` slot the MESH-COMPOSITION §III.2 roadmap
619 /// acknowledges) reaches every diagnostic-construction site by
620 /// construction.
621 ///
622 /// The `(de, para)` pair is the "typed-edge caller-callee identity in
623 /// owned form" primitive every per-`:contratos` diagnostic variant on
624 /// [`AplicacaoError`] carries alongside its payload-shape arm — the
625 /// nine variants [`AplicacaoError::EmptyWit`],
626 /// [`AplicacaoError::ContratoEndpointEmpty`],
627 /// [`AplicacaoError::ContratoEndpointNotAbsolute`],
628 /// [`AplicacaoError::ContratoEndpointInvalid`],
629 /// [`AplicacaoError::ContratoSubjectEmpty`],
630 /// [`AplicacaoError::ContratoSubjectInvalid`],
631 /// [`AplicacaoError::ContratoSlotEmpty`],
632 /// [`AplicacaoError::ContratoSlotInvalid`], and
633 /// [`AplicacaoError::ContratoDuplicate`] each carry a `de: String,
634 /// para: String` field pair the constructor site reads verbatim off
635 /// the [`WitContract`] the diagnostic points at, so a diagnostic
636 /// whose `de:` and `para:` labels silently drift off the source
637 /// caller/callee — a per-cluster caller-alias rewrite that landed on
638 /// one variant's inline `de: c.de.clone()` field access but not on
639 /// its sibling variant's, an accidental swap of the `de:` and `para:`
640 /// arms in a copy-paste of the constructor block — would emit a
641 /// build-time error whose "which caixa is at fault" question the
642 /// operator answers wrongly, far from the source `caixa.lisp`.
643 ///
644 /// Prior to this lift the `(self.de.clone(), self.para.clone())`
645 /// pair was inlined at seven [`WitContract::target`] error-
646 /// construction sites (the [`AplicacaoError::ContratoEndpointEmpty`]
647 /// / [`AplicacaoError::ContratoEndpointNotAbsolute`] /
648 /// [`AplicacaoError::ContratoEndpointInvalid`] HTTP-arm variants,
649 /// the [`AplicacaoError::ContratoSubjectEmpty`] /
650 /// [`AplicacaoError::ContratoSubjectInvalid`] pub-sub-arm variants,
651 /// the [`AplicacaoError::ContratoSlotEmpty`] /
652 /// [`AplicacaoError::ContratoSlotInvalid`] store-arm variants) and
653 /// two [`AplicacaoSpec::validate`] error-construction sites (the
654 /// [`AplicacaoError::EmptyWit`] empty-`:wit` gate, the
655 /// [`AplicacaoError::ContratoDuplicate`] duplicate-`:contratos`
656 /// insert-first-seen closure) — nine open-coded `.de.clone() +
657 /// .para.clone()` pairs that expressed no compile-time contract that
658 /// the caller-arm and callee-arm arms of the same diagnostic
659 /// construction reach for the same [`WitContract`] instance or that
660 /// the `de:` and `para:` label pair binds to the fields the author
661 /// declared. Any future rebrand on the axis — an M4 per-cluster
662 /// caller/callee-alias rewrite the operator pins through a future
663 /// `:placement :caller-alias` / `:placement :callee-alias` slot, a
664 /// per-CR fully-qualified namespace prefix the M4
665 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer applies
666 /// per-tenant, a canonicalization pass that lowercases the caller +
667 /// callee identifiers post-parse — would have had to be threaded
668 /// through every open-coded copy in lockstep or one variant's
669 /// diagnostic would silently name a different caller/callee pair
670 /// than its peer, silently degrading the "which caixa is at fault"
671 /// self-locating signal every operator-facing typed diagnostic
672 /// exists to carry. Lifting the pair to a typed method on the
673 /// substrate primitive means every downstream diagnostic-construction
674 /// site reaches for exactly one typed dispatch — the resolver's
675 /// projection migrates as a unit on any future axis addition.
676 ///
677 /// Peer of the sibling per-`:contratos` scalar accessor family
678 /// [`WitContract::source`] / [`WitContract::destination`] (7f0fd43)
679 /// / [`WitContract::world_ref`] (6226bf4) on the mesh-slot-atom
680 /// scalar-value axes — first composite-projection accessor on the
681 /// per-`:contratos` mesh-slot atom, folds the two open-coded owned-
682 /// form `.clone()` field-accesses that pair the sibling
683 /// caller/callee accessors' `&str`-return borrowed-form outputs onto
684 /// one typed dispatch. Named `edge_pair()` to reflect the identity
685 /// name of the projected tuple (the typed-edge caller-callee pair,
686 /// distinct from the sibling triple-projection
687 /// [`WitContract::edge_triple`] accessor that folds the local `edge`
688 /// closure in [`WitContract::target`] + the paired
689 /// [`AplicacaoError::ContratoDuplicate`] diagnostic constructor
690 /// site's `(de, para, wit)` triple onto one typed dispatch).
691 #[must_use]
692 pub fn edge_pair(&self) -> (String, String) {
693 (self.source().to_string(), self.destination().to_string())
694 }
695
696 /// Owned form of the `(:contratos :de, :contratos :para, :contratos
697 /// :wit)` triple every per-edge diagnostic constructor that names
698 /// all three axes threads verbatim into its `de:` / `para:` /
699 /// `wit:` fields — the [`WitTarget::target`] dispatch's wrong-target
700 /// / missing-target / invalid-wit / capability-with-payload arms
701 /// (eight sites all shape `let (de, para, wit) = edge();
702 /// AplicacaoError::Contrato* { de, para, wit, .. }` before this
703 /// accessor landed) and the sibling
704 /// [`AplicacaoError::ContratoDuplicate`] duplicate-gate diagnostic
705 /// constructor (which paired `edge_pair()` for the `(de, para)`
706 /// prefix with a raw `c.wit.clone()` for the `wit:` tail — a mixed
707 /// typed-dispatch + raw-field-access shape the sibling accessor
708 /// family already flagged as a drift risk). Nine total call sites
709 /// collapse onto this helper.
710 ///
711 /// Lifted with the same one-source-of-truth discipline
712 /// [`WitContract::edge_pair`] carries on the paired
713 /// caller-callee-only axis: the returned tuple's `.0` / `.1` / `.2`
714 /// arms compose through the lifted [`WitContract::source`] /
715 /// [`WitContract::destination`] / [`WitContract::world_ref`]
716 /// scalar accessors byte-for-byte (pinned by the paired
717 /// [`tests::wit_contract_edge_triple_routes_through_source_destination_world_ref_accessors`]
718 /// composition-pin), so any future rebrand on the per-`:contratos`
719 /// caller / callee / world-ref axis (an M4 per-cluster
720 /// caller/callee-alias rewrite the operator pins through a future
721 /// `:placement :caller-alias` / `:placement :callee-alias` slot, a
722 /// per-CR fully-qualified namespace prefix the M4
723 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer applies
724 /// per-tenant, an M4-typed-caller-enum `Display` re-canonicalization
725 /// on `source()` / `destination()`, a per-CR canonicalization pass
726 /// that lowercases the WIT world ref post-parse) migrates as a
727 /// single caixa-core edit rather than a coordinated rewrite of
728 /// nine open-coded triple-constructors.
729 ///
730 /// Peer of the sibling per-`:contratos` composite-projection
731 /// [`WitContract::edge_pair`] accessor on the mesh-slot-atom
732 /// composite-value axes — closes the last unlifted owned-form
733 /// composite-tuple axis on the per-`:contratos` diagnostic-
734 /// construction surface. Named `edge_triple()` to reflect the
735 /// identity name of the projected tuple (the typed-edge
736 /// caller-callee-wit triple, sibling to the caller-callee-only
737 /// pair `edge_pair()` returns).
738 #[must_use]
739 pub fn edge_triple(&self) -> (String, String, String) {
740 (
741 self.source().to_string(),
742 self.destination().to_string(),
743 self.world_ref().to_string(),
744 )
745 }
746
747 /// True when this contract targets an HTTP-shaped WIT world.
748 #[must_use]
749 pub fn is_http(&self) -> bool {
750 wit_shape_is_http(self.world_ref())
751 }
752
753 /// True when this contract targets a pub-sub-shaped WIT world.
754 #[must_use]
755 pub fn is_pubsub(&self) -> bool {
756 wit_shape_is_pubsub(self.world_ref())
757 }
758
759 /// True when this contract targets a key/value-shaped WIT world.
760 #[must_use]
761 pub fn is_store(&self) -> bool {
762 wit_shape_is_store(self.world_ref())
763 }
764
765 /// True when this contract's caller equals its callee — a
766 /// structurally degenerate typed edge that no `:contratos` entry can
767 /// legitimately carry (MESH-COMPOSITION §III.1 — "Servico A calls
768 /// Servico B" is an *inter*-Servico contract between two distinct
769 /// graph nodes). A Servico contracting with itself resolves to an
770 /// in-process call the wasm-engine never routes through the mesh at
771 /// all, so no rendered `CiliumNetworkPolicy` / `HTTPRoute` /
772 /// per-edge policy can express the intended shape — the pub-sub
773 /// path silently rendered a self-allow rule that is a no-op (intra-
774 /// pod traffic bypasses the mesh entirely), and the synchronous
775 /// paths surfaced as a misleading `ContratoCycle` whose path was
776 /// `["cart", "cart"]` — framing a self-edge as a multi-node
777 /// deadlock. Every downstream consumer that must reject the shape
778 /// (the [`AplicacaoSpec::validate`] per-`:contratos` self-loop
779 /// gate at caixa-core/src/aplicacao.rs:5559, every future
780 /// per-`:contratos`-edge policy resolver on the M4 CR materializer
781 /// axis, every future adjacency-graph builder that must skip self-
782 /// edges rather than fold them into an incidental cycle) now keys
783 /// off exactly one typed dispatch on the substrate primitive, so
784 /// any future rebrand on the axis (an M4-typed-caller enum whose
785 /// identity comparison rule the accessor could route through, an
786 /// operator-side per-cluster caller/callee-alias table the
787 /// materializer resolves per-CR before the equality probe, a
788 /// promotion of the pointwise `==` to a set-membership check once
789 /// SimpleOneForOne-shaped dynamic replicas come into typed scope
790 /// so a per-replica self-edge is rejected under the same predicate)
791 /// migrates as a single caixa-core edit rather than a coordinated
792 /// rewrite of every downstream self-edge consumer. Composes
793 /// byte-for-byte through the lifted [`Self::source`] /
794 /// [`Self::destination`] scalar accessors — the accessor pair every
795 /// per-`:contratos` scalar-value axis already routes through — so
796 /// any future rebrand of the underlying `:de` / `:para` storage
797 /// (a lift from `String` to a typed `ServicoName(String)` newtype,
798 /// a per-Aplicacao interning arena the M4 CR materializer authors,
799 /// a `smol_str::SmolStr` inline-buffer swap) flows through the
800 /// same one body without a coordinated per-consumer rewrite.
801 ///
802 /// Sibling in shape to the peer per-`:contratos` shape-predicate
803 /// family [`Self::is_http`] / [`Self::is_pubsub`] / [`Self::is_store`]
804 /// on the `:wit` world-ref axis — extended onto the per-edge
805 /// endpoint-equality axis: `is_http` / `is_pubsub` / `is_store`
806 /// partition the WIT-shape-space; `is_self_loop` partitions the
807 /// caller-callee identity-space. Named `is_self_loop()` to reflect
808 /// the graph-theoretic identity of the shape (a loop from a graph
809 /// node to itself, distinct from the sibling multi-node
810 /// `ContratoCycle` shape [`Self::detect_sync_cycles`] rejects) and
811 /// to match the [`AplicacaoError::ContratoSelfLoop`] diagnostic
812 /// variant already carrying the term.
813 #[must_use]
814 pub fn is_self_loop(&self) -> bool {
815 self.source() == self.destination()
816 }
817
818 /// Typed view of the contract's payload target. Enforces that the
819 /// `:wit` shape and the carried `:endpoint`/`:subject`/`:slot`
820 /// fields agree, and that each carried value is itself
821 /// value-shape valid:
822 ///
823 /// - HTTP world (`wasi:http/*`, `http:*`) ⇒ exactly `:endpoint`,
824 /// non-empty, leading-`/` (Cilium L7 `path` + Gateway API
825 /// `PathPrefix` invariant — same shape required of `:entrada
826 /// :paths`)
827 /// - `PubSub` world (`nats:*`, `kafka:*`) ⇒ exactly `:subject`,
828 /// non-empty (NATS / Kafka publish without a subject is a
829 /// no-op subscribe, never the author's intent)
830 /// - Store world (`wasi:keyvalue/*`, `kv:*`) ⇒ exactly `:slot`,
831 /// non-empty (an empty slot template addresses the bucket
832 /// root, defeating the per-key isolation the slot exists for)
833 /// - Anything else ⇒ none of the three; the contract is a pure
834 /// typed capability edge with no payload selector.
835 ///
836 /// Translates the Apollo Federation discipline ("conflicts are
837 /// errors at compile time, not warnings at runtime";
838 /// MESH-COMPOSITION §II.3) onto pleme-io's typed Aplicacao surface:
839 /// a contract whose WIT shape disagrees with its target field, or
840 /// whose target field carries a value-shape-invalid string, is a
841 /// build error — not a silent renderer drop. The returned
842 /// [`WitTarget`] view's `&str` payload is therefore guaranteed
843 /// non-empty (and absolute, for `Http`); every downstream consumer
844 /// (caixa-mesh's L7 emission, the M3 Gateway/HTTPRoute renderer,
845 /// the M4 per-edge policy resolver) can rely on that without
846 /// re-checking.
847 pub fn target(&self) -> Result<WitTarget<'_>, AplicacaoError> {
848 // Route the HTTP-shaped payload-target extraction through the
849 // lifted [`WitContract::endpoint`] accessor rather than the raw
850 // `self.endpoint.as_deref()` field access — the two production
851 // consumers of the per-`:contratos :endpoint` HTTP-shaped
852 // payload-carrier scalar (this method's Http-arm payload
853 // extraction, the [`AplicacaoSpec::validate`] duplicate-
854 // `:contratos` [`ContratoIdentity`] dedup-key HTTP arm) now key
855 // off exactly one typed dispatch on the substrate primitive, so
856 // any future rebrand on the axis (an M4 per-cluster endpoint-
857 // alias rewrite, a per-CR fully-qualified path prefix the M4
858 // materializer applies per-tenant, an M4 promotion from
859 // `Option<String>` to a typed HTTP path-template enum) migrates
860 // as a single caixa-core edit rather than a coordinated rewrite
861 // of the two call sites — peer of the sibling M3 per-`:placement`
862 // [`Placement::shard_key`] (7cd2a28) / [`Placement::affinity`]
863 // (74ec2d3) `Option<&str>` typed-dispatch discipline extended
864 // onto the per-`:contratos` HTTP-shaped payload-carrier axis.
865 let endpoint = self.endpoint();
866 let subject = self.subject();
867 // Route the store-arm payload-carrier scalar through the
868 // lifted [`WitContract::slot`] accessor rather than the raw
869 // `self.slot.as_deref()` field access — the two production
870 // consumers of the per-`:contratos :slot` key/value-store-
871 // shaped payload-carrier scalar (this method's Store-arm
872 // payload extraction, the [`AplicacaoSpec::validate`]
873 // duplicate-`:contratos` [`ContratoIdentity`] dedup-key store
874 // arm) now key off exactly one typed dispatch on the substrate
875 // primitive. Closes the last unlifted per-`:contratos`
876 // `Option<String>` axis, completing the payload-carrier
877 // accessor family peer of the sibling per-`:contratos`
878 // [`WitContract::endpoint`] (7020470) / [`WitContract::subject`]
879 // (90de675) lifts across the HTTP / pub-sub arms.
880 let slot = self.slot();
881 // Route the local `(de, para, wit)` triple-projection closure
882 // through the lifted [`WitContract::edge_triple`] typed accessor
883 // rather than re-inlining `(self.de.clone(), self.para.clone(),
884 // self.wit.clone())` — the eight [`AplicacaoError::Contrato*`]
885 // triple-carrying diagnostic constructors below (wrong-target /
886 // missing-target on all three payload arms + capability-with-
887 // payload + invalid-wit) now key off exactly one typed dispatch
888 // on the substrate-primitive composite projection, sibling to
889 // the peer [`WitContract::edge_pair`]-routed
890 // [`AplicacaoError::Empty*`]/`ContratoEndpointEmpty`/
891 // `ContratoSubjectEmpty`/`ContratoSlotEmpty` pair-carrying
892 // diagnostic constructors on the same per-`:contratos`
893 // diagnostic-construction surface.
894 let edge = || self.edge_triple();
895
896 // The `:wit` value drives every downstream dispatch — the
897 // is_http/is_pubsub/is_store prefix matchers below, the
898 // caixa-mesh L7-vs-L4 emission, the cycle-detector's pub-sub
899 // exclusion. Until this gate landed `target()` accepted any
900 // non-empty string and silently demoted unrecognized shapes to
901 // a capability-only edge (`:wit "WASI:HTTP/proxy"` — uppercase
902 // typo, `:wit "wasi-http/proxy"` — hyphen-instead-of-colon typo,
903 // `:wit "wasi:http proxy"` — whitespace, `:wit "wasi:"` — empty
904 // package, the paste-from-binary footgun a multi-line blob
905 // accidentally landing in the slot, the un-percent-encoded
906 // non-ASCII byte) — the canonical "I thought I had L7 HTTP
907 // routing, got L4-only" footgun. Empty is still pre-checked at
908 // the [`AplicacaoSpec::validate`] call site via the narrower
909 // [`AplicacaoError::EmptyWit`] variant (and fires first at the
910 // validate layer); the value-shape gate here picks up the
911 // structurally-invalid non-empty cases the empty check misses,
912 // and remains correct under direct `target()` calls outside
913 // validate (the predicate's defensive empty arm returns a
914 // parser-shaped reason rather than silently falling through to
915 // the Capability arm). Same trajectory as c4213a4 (WitContract
916 // endpoint/subject/slot value-shape gates lifted into
917 // `target()`) on the peer payload axes.
918 if let Err(reason) = crate::render::is_wit_world_ref(&self.wit) {
919 let (de, para, wit) = edge();
920 return Err(AplicacaoError::ContratoWitInvalid {
921 de,
922 para,
923 wit,
924 reason,
925 });
926 }
927
928 if self.is_http() {
929 if subject.is_some() || slot.is_some() {
930 let (de, para, wit) = edge();
931 return Err(AplicacaoError::ContratoWrongTarget {
932 de,
933 para,
934 wit,
935 expected: WitTarget::HTTP_FIELD_NAME,
936 });
937 }
938 let ep = endpoint.ok_or_else(|| {
939 let (de, para, wit) = edge();
940 AplicacaoError::ContratoMissingTarget {
941 de,
942 para,
943 wit,
944 expected: WitTarget::HTTP_FIELD_NAME,
945 }
946 })?;
947 if ep.is_empty() {
948 let (de, para) = self.edge_pair();
949 return Err(AplicacaoError::ContratoEndpointEmpty { de, para });
950 }
951 if !ep.starts_with('/') {
952 let (de, para) = self.edge_pair();
953 return Err(AplicacaoError::ContratoEndpointNotAbsolute {
954 de,
955 para,
956 endpoint: ep.to_string(),
957 });
958 }
959 // The `:endpoint` lands verbatim as a Cilium L7 `path:` rule
960 // (caixa-mesh/src/lib.rs:311) and shares the K8s Gateway
961 // API v1 HTTPPathMatch.value admission grammar with the
962 // sibling `:entrada :paths` axis. Until this gate landed
963 // `target()` only refused the empty string + the missing-
964 // leading-`/` form; a structurally invalid endpoint
965 // (`"/charge?token=X"` — query in path slot, `"/foo bar"` —
966 // un-percent-encoded whitespace, `"/api/café"` — non-ASCII,
967 // `"/api//bar"` — consecutive slash, `"/api/../etc"` —
968 // path-traversal segment, the >1024-byte slug) silently
969 // passed validate and the failure surfaced at apply time
970 // as a Cilium policy rejection / silent traffic drop, far
971 // from the source caixa.lisp. Same Gateway API HTTPPathMatch
972 // grammar `:entrada :paths` already gates (55410e4), now
973 // shared with `:contratos :endpoint` through the lifted
974 // `crate::render::is_gateway_api_http_path` predicate.
975 if let Err(reason) = crate::render::is_gateway_api_http_path(ep) {
976 let (de, para) = self.edge_pair();
977 return Err(AplicacaoError::ContratoEndpointInvalid {
978 de,
979 para,
980 endpoint: ep.to_string(),
981 reason,
982 });
983 }
984 return Ok(WitTarget::Http { endpoint: ep });
985 }
986 if self.is_pubsub() {
987 if endpoint.is_some() || slot.is_some() {
988 let (de, para, wit) = edge();
989 return Err(AplicacaoError::ContratoWrongTarget {
990 de,
991 para,
992 wit,
993 expected: WitTarget::PUBSUB_FIELD_NAME,
994 });
995 }
996 let s = subject.ok_or_else(|| {
997 let (de, para, wit) = edge();
998 AplicacaoError::ContratoMissingTarget {
999 de,
1000 para,
1001 wit,
1002 expected: WitTarget::PUBSUB_FIELD_NAME,
1003 }
1004 })?;
1005 if s.is_empty() {
1006 let (de, para) = self.edge_pair();
1007 return Err(AplicacaoError::ContratoSubjectEmpty { de, para });
1008 }
1009 // The `:subject` lands at runtime as the NATS subject the
1010 // producer publishes to and the consumer subscribes from.
1011 // Until this gate landed `target()` only refused the
1012 // empty string; a structurally invalid subject
1013 // (`"foo..bar"` — empty token between separators,
1014 // `"foo.>.bar"` — non-trailing `>` wildcard the NATS
1015 // server's subject parser rejects, `"foo bar"` —
1016 // un-percent-encoded whitespace, `"foo.café"` —
1017 // un-percent-encoded non-ASCII, `".foo"` / `"foo."` —
1018 // empty leading/trailing tokens, the >256-byte
1019 // paste-from-binary slug) silently passed validate and
1020 // the failure surfaced at runtime as a NATS server-side
1021 // `-ERR 'Invalid Subject'` on publish / subscribe, or as
1022 // a silent message drop, far from the source caixa.lisp.
1023 // Same Gateway API HTTPPathMatch / WIT-IDL grammar
1024 // trajectory `:contratos :endpoint` (4f0390b) and
1025 // `:contratos :wit` (6226bf4) already gate, now shared
1026 // with `:contratos :subject` through the lifted
1027 // `crate::render::is_nats_subject` predicate.
1028 if let Err(reason) = crate::render::is_nats_subject(s) {
1029 let (de, para) = self.edge_pair();
1030 return Err(AplicacaoError::ContratoSubjectInvalid {
1031 de,
1032 para,
1033 subject: s.to_string(),
1034 reason,
1035 });
1036 }
1037 return Ok(WitTarget::PubSub { subject: s });
1038 }
1039 if self.is_store() {
1040 if endpoint.is_some() || subject.is_some() {
1041 let (de, para, wit) = edge();
1042 return Err(AplicacaoError::ContratoWrongTarget {
1043 de,
1044 para,
1045 wit,
1046 expected: WitTarget::STORE_FIELD_NAME,
1047 });
1048 }
1049 let sl = slot.ok_or_else(|| {
1050 let (de, para, wit) = edge();
1051 AplicacaoError::ContratoMissingTarget {
1052 de,
1053 para,
1054 wit,
1055 expected: WitTarget::STORE_FIELD_NAME,
1056 }
1057 })?;
1058 if sl.is_empty() {
1059 let (de, para) = self.edge_pair();
1060 return Err(AplicacaoError::ContratoSlotEmpty { de, para });
1061 }
1062 // Value-shape gate on the third (and last) typed payload
1063 // axis the `WitContract::target` dispatch carries — the
1064 // peer of [`crate::render::is_gateway_api_http_path`] for
1065 // `:endpoint` (4f0390b) and [`crate::render::is_nats_subject`]
1066 // for `:subject` (63e18a0). Until this gate landed
1067 // `target()` only refused the empty string; a structurally
1068 // invalid slot (`"check out/$order"` — un-percent-encoded
1069 // whitespace whose runtime behavior varies unpredictably
1070 // across kv backends, `"checkout/\x01order"` — control
1071 // character that Redis admits but corrupts on next read
1072 // and DynamoDB rejects outright, `"chéckout/$order"` —
1073 // un-percent-encoded non-ASCII byte each backend re-encodes
1074 // differently, `"checkout\n/$order"` — embedded newline,
1075 // the 513-byte paste-from-binary slug) silently passed
1076 // validate and surfaced at runtime as a per-backend kv
1077 // write rejection (DynamoDB / etcd) or as a silent
1078 // next-read corruption (Redis-via-RESP3), far from the
1079 // source caixa.lisp with no field naming which `:contratos`
1080 // edge carried the typo. The lifted predicate makes the
1081 // kv-backend intersection-floor a substrate-level
1082 // invariant at validate time, not a runtime "this passed
1083 // validate but the kv backend rejected on first write"
1084 // surprise — closes the typed payload-axis value-shape
1085 // trajectory across all three legs of the four
1086 // [`WitTarget`] arms (HTTP / PubSub / Store / Capability)
1087 // that caixa-mesh + the future kv emitters land in.
1088 if let Err(reason) = crate::render::is_wasi_keyvalue_slot(sl) {
1089 let (de, para) = self.edge_pair();
1090 return Err(AplicacaoError::ContratoSlotInvalid {
1091 de,
1092 para,
1093 slot: sl.to_string(),
1094 reason,
1095 });
1096 }
1097 return Ok(WitTarget::Store { slot: sl });
1098 }
1099
1100 // Unrecognized WIT world — must not carry any payload target.
1101 if endpoint.is_some() || subject.is_some() || slot.is_some() {
1102 let (de, para, wit) = edge();
1103 return Err(AplicacaoError::ContratoWrongTarget {
1104 de,
1105 para,
1106 wit,
1107 expected: WitTarget::CAPABILITY_EXPECTED,
1108 });
1109 }
1110 Ok(WitTarget::Capability)
1111 }
1112}
1113
1114/// Borrowed identity key for the typed-graph duplicate-`:contratos`
1115/// gate (see [`AplicacaoSpec::validate`]): every field that
1116/// distinguishes one contract from another, in declaration order
1117/// (`(de, para, wit, endpoint, subject, slot)`). Two [`WitContract`]s
1118/// with equal [`ContratoIdentity`]s are the same typed edge declared
1119/// twice — the graph-edge analogue of duplicate `:membros` /
1120/// `:placement :clusters` / `:entrada :paths` entries. Lifted as a
1121/// type alias so the duplicate-gate's `HashSet<…>` type doesn't trip
1122/// clippy's `type_complexity` lint (and so a future axis added to
1123/// `WitContract` is one alias edit, not a coordinated rewrite of
1124/// every set instantiation).
1125type ContratoIdentity<'a> = (
1126 &'a str,
1127 &'a str,
1128 &'a str,
1129 Option<&'a str>,
1130 Option<&'a str>,
1131 Option<&'a str>,
1132);
1133
1134/// Typed view of a [`WitContract`]'s payload target. Each variant
1135/// carries the field its WIT shape requires; constructing a `Http`
1136/// view without an endpoint is impossible by the type system.
1137///
1138/// Renderers (caixa-mesh L7 rules, feira app graph) match on this
1139/// instead of probing `Option<String>` fields one by one — the
1140/// "which payload field is set?" question is answered once, at
1141/// validation time.
1142#[derive(Debug, Clone, Copy, PartialEq, Eq, gen_platform::IsVariant)]
1143pub enum WitTarget<'a> {
1144 /// HTTP-shaped WIT world. Carries the configured request path.
1145 Http { endpoint: &'a str },
1146 /// Pub-sub-shaped WIT world. Carries the event-stream subject.
1147 ///
1148 /// The `IsVariant` derive would auto-name the predicate `is_pub_sub`
1149 /// (`discriminant_to_snake("PubSub") == "pub_sub"`); the explicit
1150 /// `#[is_variant(name = "pubsub")]` override keeps the emitted
1151 /// method name byte-identical to the sibling
1152 /// [`WitContract::is_pubsub`] predicate (the paired shape-side
1153 /// arm-discriminator that routes through
1154 /// [`wit_shape_is_pubsub`] on the wit-world-ref scalar rather than
1155 /// through `matches!` on the variant), so the two arm-discriminator
1156 /// axes — target-side variant-arm and shape-side ref-prefix — reach
1157 /// every downstream consumer through the same `is_pubsub()` name.
1158 #[is_variant(name = "pubsub")]
1159 PubSub { subject: &'a str },
1160 /// Key-value-shaped WIT world. Carries the slot template.
1161 Store { slot: &'a str },
1162 /// A typed capability edge with no payload selector — the WIT
1163 /// world stands on its own (rare; reserved for plain capability
1164 /// imports or M4-and-later WIT worlds we haven't shaped yet).
1165 Capability,
1166}
1167
1168impl<'a> WitTarget<'a> {
1169 /// Canonical author-facing `:contratos` payload field name for the
1170 /// HTTP-shaped arm — the `expected: &'static str` scalar the
1171 /// [`AplicacaoError::ContratoMissingTarget`] /
1172 /// [`AplicacaoError::ContratoWrongTarget`] diagnostic threads
1173 /// through, the `:endpoint "…"` keyword the [`WitTarget::label`]
1174 /// duplicate-edge diagnostic emits, and the `endpoint=…` prefix
1175 /// the `feira app graph` verb prints. Peer of
1176 /// [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`]
1177 /// on the payload-field-name axis; declared as a peer const next
1178 /// to the [`WitTarget::Http`] variant so a future rename on the
1179 /// author-surface `(defcaixa … :contratos ((:de … :para … :wit …
1180 /// :endpoint …)))` field lands in exactly one place, not scattered
1181 /// across the [`WitContract::target`] gate's six `expected:`
1182 /// literals, the label template, and every downstream consumer
1183 /// that prints a per-arm prefix. Same trajectory as the peer
1184 /// [`WitTarget::label`] lift (174e96a): a single source of truth
1185 /// for the arm's shape, next to the variant declaration.
1186 pub const HTTP_FIELD_NAME: &'static str = "endpoint";
1187 /// Canonical author-facing `:contratos` payload field name for the
1188 /// pub-sub-shaped arm. Peer of [`WitTarget::HTTP_FIELD_NAME`] /
1189 /// [`WitTarget::STORE_FIELD_NAME`] on the payload-field-name axis;
1190 /// see [`WitTarget::HTTP_FIELD_NAME`] for the full lift rationale.
1191 pub const PUBSUB_FIELD_NAME: &'static str = "subject";
1192 /// Canonical author-facing `:contratos` payload field name for the
1193 /// key/value-store-shaped arm. Peer of
1194 /// [`WitTarget::HTTP_FIELD_NAME`] / [`WitTarget::PUBSUB_FIELD_NAME`]
1195 /// on the payload-field-name axis; see
1196 /// [`WitTarget::HTTP_FIELD_NAME`] for the full lift rationale.
1197 pub const STORE_FIELD_NAME: &'static str = "slot";
1198
1199 /// Canonical stable human-readable label the payload-less
1200 /// [`WitTarget::Capability`] arm renders as under [`Self::label`] —
1201 /// the byte-string every consumer that formats a payload-less
1202 /// typed capability edge as text lands on (the
1203 /// [`AplicacaoSpec::validate`] duplicate-`:contratos` diagnostic
1204 /// naming which identical edge was declared twice, the future
1205 /// `feira app graph` verb's per-arm prefix, the future M4 per-edge
1206 /// policy resolver's audit view, the operator's mesh-graph audit).
1207 /// Peer of the payload-arm [`Self::HTTP_FIELD_NAME`] /
1208 /// [`Self::PUBSUB_FIELD_NAME`] / [`Self::STORE_FIELD_NAME`]
1209 /// author-facing label-scalar consts — the same
1210 /// "one canonical declaration per arm, next to the variant, so a
1211 /// future rename lands in one place" discipline extended to the
1212 /// payload-less arm. Until this lift landed the byte-string sat
1213 /// twice — once inline in [`Self::label`]'s [`WitTarget::Capability`]
1214 /// match arm, once in the pin test asserting the label's
1215 /// [`WitTarget::Capability`] output — with no compile-time link
1216 /// between the two: a rebrand on either side (an operator-facing
1217 /// vocabulary shift, a per-consumer disambiguation like
1218 /// `"(capability — no payload; typed edge only)"`) would silently
1219 /// desynchronize until a downstream consumer surfaced the drift at
1220 /// runtime.
1221 pub const CAPABILITY_LABEL: &'static str = "(capability — no payload)";
1222
1223 /// Canonical `expected:` scalar the
1224 /// [`AplicacaoError::ContratoWrongTarget`] diagnostic threads
1225 /// through for the payload-less [`WitTarget::Capability`] arm — the
1226 /// byte-string authors read as "this WIT world's shape is not one
1227 /// of {`HTTP`, `PubSub`, `Store`}, so it must not carry
1228 /// `:endpoint` / `:subject` / `:slot`". Peer of the payload-arm
1229 /// [`Self::HTTP_FIELD_NAME`] / [`Self::PUBSUB_FIELD_NAME`] /
1230 /// [`Self::STORE_FIELD_NAME`] consts on the
1231 /// `ContratoWrongTarget::expected` axis — the fourth arm of the
1232 /// same "which payload field name goes in the diagnostic" dispatch
1233 /// the three payload-arm consts cover, extended to the payload-less
1234 /// arm. Until this lift landed the byte-string sat twice — once
1235 /// inline in the [`Self::target`] Capability-arm rejection at the
1236 /// production dispatch, once in the pin test asserting the
1237 /// diagnostic's `expected:` scalar carries `"none"` verbatim — with
1238 /// no compile-time link between the two: a rebrand on either side
1239 /// (an author-facing vocabulary shift to `"capability"` /
1240 /// `"(none)"` / `"no-payload"` as the WIT registry's shape
1241 /// vocabulary sharpens, a per-consumer disambiguation as M4 splits
1242 /// [`WitTarget::Capability`] into per-shape peers) would silently
1243 /// desynchronize until a downstream consumer surfaced the drift at
1244 /// runtime. Same "one canonical declaration per arm, next to the
1245 /// variant, so a future rename lands in one place" discipline the
1246 /// peer [`Self::CAPABILITY_LABEL`] lift (7ed03a3-era) already
1247 /// established for the payload-less arm's human-readable label
1248 /// axis; this lift extends it onto the peer diagnostic-scalar axis
1249 /// so both halves of the "how does the Capability arm surface at
1250 /// its two consumer axes (human-readable label, wrong-target
1251 /// diagnostic)" pipeline route through peer consts declared next
1252 /// to the variant.
1253 ///
1254 /// Pairwise-distinctness against the three payload-arm scalars
1255 /// ([`Self::HTTP_FIELD_NAME`] / [`Self::PUBSUB_FIELD_NAME`] /
1256 /// [`Self::STORE_FIELD_NAME`]) is pinned by the sibling
1257 /// `wit_target_expected_scalars_are_pairwise_distinct_across_all_four_arms`
1258 /// test — the 4-way closure of the 3-way
1259 /// `wit_target_field_names_are_pairwise_distinct` sibling pin onto
1260 /// the `ContratoWrongTarget::expected` axis, matching the peer
1261 /// `m3_placement_estrategia_consts_are_pairwise_distinct` closed-set
1262 /// scalar-value distinctness discipline the sibling M3 typed-enum
1263 /// discriminator axis already carries.
1264 pub const CAPABILITY_EXPECTED: &'static str = "none";
1265
1266 /// The `(author-facing field name, payload)` pair this typed target
1267 /// arm carries — `Some((HTTP_FIELD_NAME, endpoint))` for
1268 /// [`Self::Http`], `Some((PUBSUB_FIELD_NAME, subject))` for
1269 /// [`Self::PubSub`], `Some((STORE_FIELD_NAME, slot))` for
1270 /// [`Self::Store`], `None` for the payload-less
1271 /// [`Self::Capability`] arm.
1272 ///
1273 /// Lifted as the single 4-arm dispatch that both [`Self::label`]
1274 /// (formats `":{field} {payload:?}"` on `Some`, falls to
1275 /// [`Self::CAPABILITY_LABEL`] on `None`) and [`Self::field_name`]
1276 /// (returns the first component) route through, so a future
1277 /// [`WitTarget`] variant addition — the M4-and-later per-edge WIT
1278 /// registry may split [`Self::Http`] into `Rest` / `Grpc` peers,
1279 /// or extend [`Self::Store`] with a `Queue`-shaped peer — becomes
1280 /// exactly one new match-arm here (a compile-time exhaustiveness
1281 /// error otherwise), not a coordinated three-way rewrite of the
1282 /// prior [`Self::label`] template + [`Self::field_name`] dispatch
1283 /// + every downstream consumer that reaches for the pair.
1284 ///
1285 /// Until this lift landed the three payload arms sat in
1286 /// [`Self::label`] as three near-identical `format!(":{} {…:?}", …)`
1287 /// invocations (one per variant, each hand-quoting the paired
1288 /// [`Self::HTTP_FIELD_NAME`] / [`Self::PUBSUB_FIELD_NAME`] /
1289 /// [`Self::STORE_FIELD_NAME`] const) — the canonical
1290 /// "same shape, written N times" duplication THEORY.md §I.3.5
1291 /// ("Generation first, composition second, hand-authoring last;
1292 /// the duplication budget is zero") promotes to a build-time
1293 /// concern, with each per-arm site paired to its own const with no
1294 /// compile-time link between the format template and the arm's
1295 /// payload extraction.
1296 #[must_use]
1297 pub const fn payload_pair(&self) -> Option<(&'static str, &'a str)> {
1298 match *self {
1299 WitTarget::Http { endpoint } => Some((Self::HTTP_FIELD_NAME, endpoint)),
1300 WitTarget::PubSub { subject } => Some((Self::PUBSUB_FIELD_NAME, subject)),
1301 WitTarget::Store { slot } => Some((Self::STORE_FIELD_NAME, slot)),
1302 WitTarget::Capability => None,
1303 }
1304 }
1305
1306 /// The canonical author-facing `:contratos` payload field name
1307 /// this typed target arm carries (`Http` → `Some("endpoint")`,
1308 /// `PubSub` → `Some("subject")`, `Store` → `Some("slot")`), or
1309 /// `None` for the payload-less `Capability` arm.
1310 ///
1311 /// Routes through [`Self::payload_pair`] — the single 4-arm
1312 /// dispatch [`Self::label`] also reads — so a future variant
1313 /// addition is one match-arm edit at [`Self::payload_pair`], not a
1314 /// per-consumer rewrite. Same "exhaustive-match at one canonical
1315 /// dispatch, thin projections at each consumer" trajectory the
1316 /// peer [`PlacementStrategy::as_str`] / [`std::fmt::Display`]
1317 /// pair (0a2f653) landed on the sibling M3 typed-enum axis.
1318 #[must_use]
1319 pub const fn field_name(&self) -> Option<&'static str> {
1320 match self.payload_pair() {
1321 Some((f, _)) => Some(f),
1322 None => None,
1323 }
1324 }
1325
1326 /// Render this typed target as a stable human-readable label
1327 /// (`:endpoint "/charge"`, `:subject "events.x"`,
1328 /// `:slot "checkout/$order"`, or `(capability — no payload)` when
1329 /// the WIT world is a pure capability edge).
1330 ///
1331 /// Used by the [`AplicacaoSpec::validate`] duplicate-`:contratos`
1332 /// gate so the diagnostic names *which* identical edge was
1333 /// declared twice (not just which `(de, para, wit)` triple).
1334 /// Routes through the single 4-arm [`Self::payload_pair`] dispatch
1335 /// on the payload-carrying arms (`Some((field, payload)) →
1336 /// format!(":{field} {payload:?}")`) and through the lifted
1337 /// [`Self::CAPABILITY_LABEL`] const on the payload-less
1338 /// [`Self::Capability`] arm — so a future variant addition (the
1339 /// M4-and-later per-edge WIT registry may split [`Self::Http`]
1340 /// into `Rest` / `Grpc`, or extend [`Self::Store`] with a
1341 /// `Queue`-shaped peer) becomes a single new match-arm on
1342 /// [`Self::payload_pair`] rather than a rewrite of this template
1343 /// (and every downstream consumer that reaches for the label
1344 /// shape: the per-edge policy resolver in M4, the `feira app
1345 /// graph` view, the operator's mesh-graph audit). Until this
1346 /// lift landed the three payload arms carried three near-identical
1347 /// per-arm `format!(":{} {…:?}", …)` invocations, and the
1348 /// [`Self::Capability`] arm carried the payload-less byte-string
1349 /// twice (once inline here, once in the pin test) — closing the
1350 /// duplication trajectory the peer [`Self::HTTP_FIELD_NAME`] /
1351 /// [`Self::PUBSUB_FIELD_NAME`] / [`Self::STORE_FIELD_NAME`] (174e96a
1352 /// / 4a1e490) peer-const lifts already established for the
1353 /// payload-carrying arms.
1354 #[must_use]
1355 pub fn label(&self) -> String {
1356 match self.payload_pair() {
1357 Some((field, payload)) => format!(":{field} {payload:?}"),
1358 None => Self::CAPABILITY_LABEL.to_string(),
1359 }
1360 }
1361}
1362
1363/// [`std::fmt::Display`] routed through [`WitTarget::label`], so the
1364/// pretty-printed byte-string every consumer that formats a typed
1365/// payload target as user-facing text lands on (the
1366/// [`AplicacaoError::ContratoDuplicate`] diagnostic's `target:` carry
1367/// the [`AplicacaoSpec::validate`] duplicate-`:contratos` gate seeds via
1368/// [`WitTarget::label`] at aplicacao.rs:5491, the future `feira app
1369/// graph` per-`:contratos`-edge payload column that reaches the graph
1370/// verb through `format!("{target}")`, the future M4 per-edge policy
1371/// resolver's per-edge audit-log line, the operator's mesh-graph
1372/// per-edge inspection view) reaches for the same lifted
1373/// [`WitTarget::HTTP_FIELD_NAME`] / [`WitTarget::PUBSUB_FIELD_NAME`] /
1374/// [`WitTarget::STORE_FIELD_NAME`] / [`WitTarget::CAPABILITY_LABEL`]
1375/// const set the [`WitTarget::payload_pair`] 4-arm dispatch already
1376/// routes through — extending the three-path-convergence
1377/// (`Debug` for structural inspection, `Display` for user-facing text,
1378/// per-arm typed accessor for the canonical byte-string) discipline the
1379/// sibling M3 [`PlacementStrategy`] and M2 [`crate::supervisor::RestartStrategy`]
1380/// / [`crate::supervisor::RestartPolicy`] OTP-shape typed enums carry
1381/// onto the fourth (and only remaining) typed-shape-discriminator axis
1382/// on the caixa surface.
1383///
1384/// Pre-lift the two paths were structurally independent — every consumer
1385/// reaching for a payload byte-string past the [`WitTarget::label`]
1386/// helper had to pick between three paths ([`WitTarget::label`],
1387/// `format!("{v:?}")` on the `Debug` derive, hand-rolled per-arm
1388/// formatting through the [`WitTarget::HTTP_FIELD_NAME`] /
1389/// [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`] /
1390/// [`WitTarget::CAPABILITY_LABEL`] const set), and a future consumer
1391/// that reached for `format!("{target}")` — the canonical shape every
1392/// user-facing pretty-print site on the sibling typed-enum axes already
1393/// uses — would silently land on the `Debug` derive's structural output
1394/// (`Http { endpoint: "/charge" }` — Rust struct-literal syntax) rather
1395/// than the `label()` helper's stable byte-string (`:endpoint
1396/// "/charge"` — the author-facing `:contratos` keyword form) the
1397/// substrate-side duplicate-`:contratos` gate at aplicacao.rs:5491
1398/// already threads through. The two spellings would diverge silently in
1399/// every downstream diagnostic / graph / audit line reached through
1400/// `format!` rather than through the `label()` helper. Routing
1401/// [`std::fmt::Display`] through [`WitTarget::label`] closes the third
1402/// path: every `format!("{v}")` call reaches the same
1403/// [`WitTarget::payload_pair`]-shaped byte-string the `label()` helper
1404/// and the duplicate-`:contratos` gate already route through, so a
1405/// future variant addition (the M4-and-later per-edge WIT registry may
1406/// split [`WitTarget::Http`] into `Rest` / `Grpc` peers, or extend
1407/// [`WitTarget::Store`] with a `Queue`-shaped peer) reaches every
1408/// consumer at exactly one place — the [`WitTarget::payload_pair`]
1409/// match — rather than fanning out through hand-rolled per-arm
1410/// [`std::fmt::Display`] arms.
1411///
1412/// The dispatcher-catalog identity remains unaffected — [`WitTarget`]
1413/// is the typed view returned by [`WitContract::target`], not a
1414/// closed-set discriminator enum with a gen-platform Discriminant
1415/// registration, so the `Debug` derive's structural output (which every
1416/// `{v:?}` consumer still reaches) stays distinct from the `Display`
1417/// helper's stable pretty-printed byte-string. `Debug` reveals variant
1418/// shape for structural inspection; `Display` (via `label`) reveals the
1419/// stable author-facing payload projection.
1420///
1421/// Pin tests
1422/// [`tests::wit_target_display_routes_through_label_helper`] and
1423/// [`tests::wit_target_display_matches_duplicate_contratos_diagnostic_carrier`]
1424/// assert the two paths agree byte-for-byte on every variant, so a
1425/// future variant addition or `label()` reimplementation that hand-rolls
1426/// the arms instead of delegating to [`WitTarget::payload_pair`] is a
1427/// build error visible at caixa-core test time, not a silent
1428/// per-consumer dispatch miss at diagnostic / audit / graph time.
1429impl std::fmt::Display for WitTarget<'_> {
1430 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
1431 f.write_str(&self.label())
1432 }
1433}
1434
1435// ── one Aplicacao member ─────────────────────────────────────────────
1436
1437/// A Servico participating in the Aplicacao. Same shape as
1438/// `crate::supervisor::ChildSpec` but without a restart policy —
1439/// supervision is per-Servico (each member has its own
1440/// `:supervisor`), the Aplicacao orchestrates *placement*.
1441#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
1442#[serde(rename_all = "camelCase")]
1443pub struct Membro {
1444 /// Member caixa's `:nome`. Resolves through the same dep
1445 /// resolution path as `crate::dep::Dep`.
1446 pub caixa: String,
1447
1448 /// Semver constraint.
1449 pub versao: String,
1450}
1451
1452impl Membro {
1453 /// Substrate-canonical per-`:membros` member-caixa `:nome` scalar
1454 /// accessor every consumer that reads the member's Servico identity
1455 /// keys off — returns the author-declared `:membros :caixa`
1456 /// byte-string verbatim as a `&str`, borrowed from the typed slot's
1457 /// own [`String`] storage.
1458 ///
1459 /// The `:membros :caixa` slot carries the caixa `:nome` of a Servico
1460 /// participating in the Aplicacao — validated by
1461 /// [`AplicacaoSpec::validate`] to be a non-empty DNS-1123 label
1462 /// (via [`validate_membro_caixa`]), unique across the Aplicacao's
1463 /// `:membros` list, distinct from the Aplicacao's own `:nome` (via
1464 /// [`validate_no_self_membership`]) — and every downstream consumer
1465 /// that fans on the member's identity keys off this scalar (the
1466 /// [`AplicacaoSpec::validate`] `:contratos`/`:entrada` member-set
1467 /// lookup, the per-`:membros` duplicate gate's dedup key, the
1468 /// [`AplicacaoSpec::detect_sync_cycles`] adjacency map's node
1469 /// identity, the self-membership gate, the
1470 /// [`caixa_mesh::fleet_programs`] per-member programs.yaml entry
1471 /// `name:` axis, the future M4 `mesh.pleme.io/v1alpha1/Aplicacao`
1472 /// CR materializer's per-member resolver).
1473 ///
1474 /// Prior to this lift the `.caixa` byte-string was read inline at
1475 /// five caixa-core sites (the [`AplicacaoSpec::validate`] member-name
1476 /// set collector at
1477 /// `self.membros.iter().map(|m| m.caixa.as_str())`, the
1478 /// [`validate_membros`] validation-side member-caixa gate at
1479 /// `validate_membro_caixa(&m.caixa)`, the [`validate_membros`]
1480 /// per-member duplicate-gate dedup key at
1481 /// `insert_first_seen(&mut seen, m.caixa.as_str(), …)`, the
1482 /// [`AplicacaoSpec::detect_sync_cycles`] adjacency-map seed at
1483 /// `adj.entry(m.caixa.as_str()).or_default()`, and the
1484 /// [`validate_no_self_membership`] self-loop gate at
1485 /// `m.caixa == parent_nome`) — five open-coded field-accesses that
1486 /// expressed no compile-time link back to the typed slot. Every
1487 /// caixa-mesh `metadata.name` derived from a `:membros :caixa`
1488 /// value flows through the [`caixa_mesh::fleet_programs`] per-entry
1489 /// `name:` axis, so a future extension of the `:membros :caixa`
1490 /// axis to a richer author surface — a per-cluster alias table the
1491 /// operator pins through a future `:placement`-scoped slot, a
1492 /// namespace-qualified rewrite the M4 CR materializer applies
1493 /// per-CR, a per-member overlay from the future `:membros
1494 /// :nome-suffix` slot the MESH-COMPOSITION §III.2 roadmap
1495 /// acknowledges — would have had to be threaded through every
1496 /// open-coded copy in lockstep or one consumer would silently
1497 /// disagree with the peers on which caixa a given member resolves
1498 /// to. A member-set lookup that treated the name as `"cart"` while
1499 /// the peer adjacency map treated it as `"tenant-a/cart"` would
1500 /// silently split the `:contratos` membership-lookup diagnostic from
1501 /// the cycle-detector's node identity — a two-consumer split at the
1502 /// validator far from the source `caixa.lisp` with no field naming
1503 /// the identity-drift root cause. Lifting the resolution rule to a
1504 /// typed method on the substrate primitive means every downstream
1505 /// consumer of the Aplicacao's per-`:membros` identity surface
1506 /// reaches for exactly one typed dispatch — the resolver's
1507 /// accept-set migrates as a unit on any future axis addition.
1508 ///
1509 /// Peer of the sibling per-`:contratos` [`WitContract::source`] /
1510 /// [`WitContract::destination`] (7f0fd43) caller/callee-Servico
1511 /// scalar-accessor pair and per-`:entrada` [`Entrada::destination`]
1512 /// (6db982c) / [`Entrada::hostname`] (11f3dfe) DNS-hostname /
1513 /// destination-Servico scalar accessors — same "one typed dispatch
1514 /// on the substrate primitive, thin projections at each consumer"
1515 /// discipline extended onto the per-`:membros` member-caixa `:nome`
1516 /// byte-string axis. Named `nome()` to match the tatara-lisp
1517 /// author-surface term the field's docstring already reaches for
1518 /// ("Member caixa's `:nome`") and the peer [`crate::Caixa::nome`] /
1519 /// [`crate::dep::Dep::nome`] field-name discipline the substrate
1520 /// already carries — the accessor's name maps directly onto the
1521 /// canonical caixa-identity vocabulary rather than shadowing the
1522 /// field's storage-side `caixa` label.
1523 #[must_use]
1524 pub fn nome(&self) -> &str {
1525 self.caixa.as_str()
1526 }
1527
1528 /// Substrate-canonical per-`:membros` member-caixa `:versao` semver-
1529 /// requirement scalar accessor every consumer that reads the
1530 /// member's version pin keys off — returns the author-declared
1531 /// `:membros :versao` byte-string verbatim as a `&str`, borrowed
1532 /// from the typed slot's own [`String`] storage.
1533 ///
1534 /// The `:membros :versao` slot carries the Cargo-shaped semver
1535 /// requirement string (`"^0.1"`, `"~0.1.2"`, `"0.1.0"`, `"*"`) that
1536 /// pins which release of the member-caixa the Aplicacao composes
1537 /// against — the same requirement grammar the peer `:deps :versao`
1538 /// / `:children :versao` axes carry, resolved through the shared
1539 /// [`crate::render::require_valid_versao_requirement`] cascade and
1540 /// the shared [`crate::version::parse_requirement`] parser. Every
1541 /// downstream consumer that fans on the member's version pin keys
1542 /// off this scalar (the [`validate_membros`] per-member requirement
1543 /// gate at `require_valid_versao_requirement(m.versao_requirement(),
1544 /// …)`, the [`feira app graph`] per-member `println!(" - {} {}",
1545 /// m.nome(), m.versao_requirement())` line, every future per-cluster
1546 /// version-lock overlay the operator pins through a future
1547 /// `:placement`-scoped slot, the future
1548 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-member
1549 /// version resolver, the future `feira app deploy` pipeline's
1550 /// per-member lacre BLAKE3-closure lookup).
1551 ///
1552 /// Prior to this lift the `.versao` byte-string was accessed inline
1553 /// at two `&str`-shaped sites — the [`validate_membros`]
1554 /// requirement-gate call `require_valid_versao_requirement(&m.versao,
1555 /// …)` and the `feira app graph` per-member printer's `println!(
1556 /// " - {} {}", m.caixa, m.versao)` (caixa-feira/src/cmd/app.rs:78
1557 /// prior to this lift) — two open-coded field-accesses that expressed
1558 /// no compile-time link back to the typed slot. A future extension of
1559 /// the `:membros :versao` axis to a richer author surface (a
1560 /// per-cluster version-pin overlay per MESH-COMPOSITION §III.2 canary
1561 /// flow, a lacre-projected concrete-version rewrite the operator
1562 /// materializes at CR-admission time, a future `:membros :versao-lock`
1563 /// per-cluster override slot) would have had to be threaded through
1564 /// every open-coded copy in lockstep or one consumer would silently
1565 /// disagree with the peers on which release constraint a given
1566 /// member resolves to. Lifting the resolution rule to a typed method
1567 /// on the substrate primitive means every downstream requirement-
1568 /// facing consumer reaches for exactly one typed dispatch — the
1569 /// resolver's accept-set migrates as a unit on any future axis
1570 /// addition.
1571 ///
1572 /// Sibling of the peer per-`:membros` [`Membro::nome`] (4a32abf)
1573 /// member-caixa `:nome` scalar accessor — the pair
1574 /// `(nome(), versao_requirement())` jointly projects the
1575 /// `(caixa, versao)` field pair every renderer that fans on
1576 /// per-member identity + version pin keys off, closing the last
1577 /// unlifted per-`:membros` scalar axis so every downstream
1578 /// per-`:membros` reader now routes through a typed dispatch on the
1579 /// substrate primitive. Named `versao_requirement()` rather than
1580 /// `versao()` because the field's storage-side `.versao` label is
1581 /// already the author-surface term (`:versao`); the accessor's name
1582 /// carries the semantic role — the semver *requirement* string the
1583 /// shared [`crate::version::parse_requirement`] entry-point consumes
1584 /// — so a raw field access and a typed dispatch read differently at
1585 /// every consumer site.
1586 ///
1587 /// Peer of the sibling per-`:contratos` [`WitContract::source`] /
1588 /// [`WitContract::destination`] (7f0fd43) caller/callee-Servico
1589 /// scalar-accessor pair and per-`:entrada` [`Entrada::destination`]
1590 /// (6db982c) / [`Entrada::hostname`] (11f3dfe) DNS-hostname /
1591 /// destination-Servico scalar accessors — same "one typed dispatch
1592 /// on the substrate primitive, thin projections at each consumer"
1593 /// discipline extended onto the per-`:membros` member-`:versao`
1594 /// semver-requirement byte-string axis.
1595 #[must_use]
1596 pub fn versao_requirement(&self) -> &str {
1597 self.versao.as_str()
1598 }
1599}
1600
1601// ── mesh-level policies ──────────────────────────────────────────────
1602
1603/// Mesh policies that apply to every `:contratos` edge unless
1604/// overridden per-edge in M4. V0 is a single global policy block.
1605#[derive(Serialize, Deserialize, Debug, Clone, Default, PartialEq, Eq)]
1606#[serde(rename_all = "camelCase")]
1607pub struct MeshPolicy {
1608 /// Per-call timeout. Authored as a duration string (`"30s"`).
1609 #[serde(
1610 default,
1611 skip_serializing_if = "Option::is_none",
1612 with = "supervisor::duration_codec"
1613 )]
1614 pub timeout: Option<Duration>,
1615
1616 /// Number of retries on transient failure. None = no retries.
1617 #[serde(default, skip_serializing_if = "Option::is_none")]
1618 pub retries: Option<u32>,
1619
1620 /// Circuit breaker config. Trips after N failures within W
1621 /// duration; closes after a cooldown.
1622 #[serde(default, skip_serializing_if = "Option::is_none")]
1623 pub circuit_breaker: Option<CircuitBreaker>,
1624
1625 /// Whether mTLS is required for every contrato. Default: true
1626 /// (sandboxing-by-default; explicit opt-out only).
1627 #[serde(default, skip_serializing_if = "Option::is_none")]
1628 pub mtls_required: Option<bool>,
1629
1630 /// Token-bucket rate limit. Authored as `"100/s"` or
1631 /// `"5000/m"`; stored as `(rate, window)`.
1632 #[serde(
1633 default,
1634 skip_serializing_if = "Option::is_none",
1635 with = "rate_limit_codec"
1636 )]
1637 pub rate_limit: Option<RateLimit>,
1638}
1639
1640impl MeshPolicy {
1641 /// True when no `:politicas` axis carries a value — every field is
1642 /// `None`. The same emptiness contract every other M2/M3 typed
1643 /// surface carries ([`crate::LimitsSpec::is_empty`],
1644 /// [`crate::BehaviorSpec::is_empty`]): renderers that overlay the
1645 /// typed slot onto a cluster artifact key off this predicate to
1646 /// decide "emit the slot" vs "skip the slot entirely", so an
1647 /// authored-but-unset `:politicas (())` round-trips to a rendered
1648 /// artifact that's structurally identical to one that omits the
1649 /// slot. Lifted as a typed predicate (rather than per-renderer
1650 /// inline `politicas.timeout.is_none() && politicas.retries.is_none()
1651 /// && …` chains) so a future axis added to `MeshPolicy` (per-edge
1652 /// :politicas overlay in M4, per-Aplicacao traffic-shaping in M5)
1653 /// is one struct-field edit + one `&& self.<axis>.is_none()` here,
1654 /// not a coordinated rewrite of every consumer that's reaching
1655 /// for the emptiness semantic.
1656 #[must_use]
1657 pub const fn is_empty(&self) -> bool {
1658 self.timeout().is_none()
1659 && self.retries().is_none()
1660 && self.circuit_breaker().is_none()
1661 && self.mtls_required().is_none()
1662 && self.rate_limit().is_none()
1663 }
1664
1665 /// Substrate-canonical per-`:politicas` `:timeout` Gateway-API-mesh
1666 /// per-call-deadline scalar accessor every consumer of the
1667 /// Aplicacao's Gateway API v1.x per-rule request-timeout keys off —
1668 /// returns the author-declared `:politicas :timeout` typed
1669 /// [`Duration`] verbatim as an `Option<Duration>`, copied out of the
1670 /// typed slot's own `Option<Duration>` storage (`Option<Duration>`
1671 /// is `Copy`, so the accessor returns by value; no borrow of
1672 /// `&self` past the call). `None` when the slot is absent (the
1673 /// "cluster default applies — typically the gateway class's
1674 /// implementation-side per-request wall-clock cap" arm caixa-mesh's
1675 /// `timeout_overlay` builder documents at caixa-mesh/src/lib.rs:2911
1676 /// — [`MeshPolicy::is_empty`]'s `timeout.is_none()` arm reads this
1677 /// predicate too, so an authored-but-unset `:politicas (:timeout ())`
1678 /// round-trips to a rendered `HTTPRoute` structurally identical to
1679 /// one that omits the slot).
1680 ///
1681 /// The `:politicas :timeout` slot carries the "no infinite blocking"
1682 /// per-call deadline contract (MESH-COMPOSITION §V CSE invariant) —
1683 /// the typed slot's `Option<Duration>` accept-set (zero-floor
1684 /// rejected through [`AplicacaoError::PolicyTimeoutZero`], canonical-
1685 /// form rejected through [`AplicacaoError::PolicyTimeoutNotCanonical`],
1686 /// upper-bounded by [`POLICY_TIMEOUT_MAX`]) maps onto the Gateway API
1687 /// v1.x `HTTPRoute.spec.rules[].timeouts.request` per-rule request-
1688 /// deadline scalar the caixa-mesh `timeout_overlay` builder writes.
1689 /// Every downstream consumer that reads the per-call cap keys off
1690 /// this scalar (the [`MeshPolicy::is_empty`] emptiness predicate the
1691 /// renderers key off to decide "emit :politicas overlay" vs "skip
1692 /// entirely", the caixa-mesh per-`:entrada` `HTTPRoute`
1693 /// `timeouts.request` builder at caixa-mesh/src/lib.rs:2979 that
1694 /// fans the deadline into every rule via
1695 /// [`crate::render::single_field_overlay`], the future M4 per-
1696 /// Aplicacao Gateway API reconciler materialization pass, the
1697 /// future per-`:contratos`-edge timeout-override overlay the
1698 /// MESH-COMPOSITION §III.2 roadmap acknowledges).
1699 ///
1700 /// Prior to this lift the `.timeout` field was accessed inline at
1701 /// two sites — [`MeshPolicy::is_empty`]'s `self.timeout.is_none()`
1702 /// arm and caixa-mesh's `single_field_overlay(spec.politicas.timeout,
1703 /// …)` call — two open-coded field-accesses that expressed no
1704 /// compile-time link back to the typed slot. A future extension of
1705 /// the `:politicas :timeout` axis to a richer author surface — a
1706 /// per-`:contratos`-edge timeout override the operator pins through
1707 /// a future `:contratos :timeout` slot the MESH-COMPOSITION §III.2
1708 /// roadmap acknowledges, a per-cluster timeout-default overlay the
1709 /// M4 CR materializer resolves per-CR, a split of the single
1710 /// per-call `Duration` into a richer `{request, backendRequest}`
1711 /// pair once the Gateway API's per-rule `timeouts` block grows the
1712 /// upstream-facing backendRequest arm alongside the client-facing
1713 /// request arm — would have had to be threaded through both open-
1714 /// coded copies in lockstep or the emptiness predicate and the
1715 /// caixa-mesh emit path would silently disagree on which per-call
1716 /// deadline a given [`MeshPolicy`] resolves to (a `:politicas` block
1717 /// whose only axis is a `Some :timeout` would satisfy `is_empty()
1718 /// == false` while the renderer's overlay-emit path silently read
1719 /// a drifted other value, or vice versa: an author's `:timeout
1720 /// "30s"` would omit the `HTTPRoute` `timeouts.request` block while
1721 /// the emptiness predicate still classified the policy as non-
1722 /// empty, and every `kubectl -n tatara-system get httproute -o yaml
1723 /// | grep -A2 timeouts` audit would land on a route whose author's
1724 /// typed slot value silently vanished at the renderer layer).
1725 /// Lifting the resolution to a typed method on the substrate
1726 /// primitive means every downstream consumer of the Aplicacao's
1727 /// per-`:politicas` deadline surface reaches for exactly one typed
1728 /// dispatch — the resolver's accept-set migrates as a unit on any
1729 /// future axis addition.
1730 ///
1731 /// Third `Option<Copy-T>`-return accessor on the M3 mesh-slot
1732 /// family (sibling of the peer per-`:politicas`
1733 /// [`MeshPolicy::retries`] bdfb399 `Option<u32>` accessor and the
1734 /// per-`:politicas` [`MeshPolicy::mtls_required`] c0110f1
1735 /// `Option<bool>` accessor — same "one typed dispatch on the
1736 /// substrate primitive, thin projections at each consumer"
1737 /// discipline extended onto the peer per-`:politicas` typed-
1738 /// [`Duration`] optional-scalar axis; closes the "optional per-slot
1739 /// numeric-Copy-T scalar" projection pattern the sibling
1740 /// `Option<u32>` / `Option<bool>` lifts opened, since every
1741 /// remaining `MeshPolicy` axis (`circuit_breaker: Option<CircuitBreaker>`,
1742 /// `rate_limit: Option<RateLimit>`) carries a struct payload rather
1743 /// than a scalar). Named `timeout()` to match the storage field's
1744 /// name; the accessor's identity maps onto the canonical MESH-
1745 /// COMPOSITION §III.2 vocabulary the slot's docstring already carries.
1746 #[must_use]
1747 pub const fn timeout(&self) -> Option<Duration> {
1748 self.timeout
1749 }
1750
1751 /// Substrate-canonical per-`:politicas` `:retries` transient-failure-
1752 /// retry-budget scalar accessor every consumer of the Aplicacao's
1753 /// Gateway API v1.x per-rule retry-cap keys off — returns the
1754 /// author-declared `:politicas :retries` typed `u32` verbatim as an
1755 /// `Option<u32>`, copied out of the typed slot's own `Option<u32>`
1756 /// storage (`Option<u32>` is `Copy`, so the accessor returns by
1757 /// value; no borrow of `&self` past the call). `None` when the slot
1758 /// is absent (the "cluster default applies — typically 'no retries
1759 /// beyond a single dispatch attempt'" arm the caixa-mesh
1760 /// `retry_overlay` builder documents at caixa-mesh/src/lib.rs:2985
1761 /// — [`MeshPolicy::is_empty`]'s `retries.is_none()` arm reads
1762 /// this predicate too, so an authored-but-unset `:politicas
1763 /// (:retries ())` round-trips to a rendered `HTTPRoute` structurally
1764 /// identical to one that omits the slot).
1765 ///
1766 /// The `:politicas :retries` slot carries the "transient failure
1767 /// retry cap" contract (MESH-COMPOSITION §III.2 #2) — the typed
1768 /// slot's `Option<u32>` accept-set (lower-bounded by 1 through
1769 /// [`AplicacaoSpec::validate_politicas`], upper-bounded by
1770 /// [`POLICY_RETRIES_MAX`]) maps onto the Gateway API v1.x
1771 /// `HTTPRoute.spec.rules[].retry.attempts` per-rule retry-attempt-
1772 /// count scalar the caixa-mesh `retry_overlay` builder writes.
1773 /// Every downstream consumer that reads the retry cap keys off this
1774 /// scalar (the [`MeshPolicy::is_empty`] emptiness predicate the
1775 /// renderers key off to decide "emit :politicas overlay" vs "skip
1776 /// entirely", the caixa-mesh per-`:entrada` `HTTPRoute`
1777 /// `retry.attempts` builder at caixa-mesh/src/lib.rs:3007 that fans
1778 /// the value into every rule via [`crate::render::single_field_overlay`],
1779 /// the future M4 per-Aplicacao Gateway API reconciler
1780 /// materialization pass, the future per-`:contratos`-edge retry-
1781 /// override overlay the MESH-COMPOSITION §III.2 #2 roadmap
1782 /// acknowledges).
1783 ///
1784 /// Prior to this lift the `.retries` field was accessed inline at
1785 /// two sites — [`MeshPolicy::is_empty`]'s `self.retries.is_none()`
1786 /// arm and caixa-mesh's `single_field_overlay(spec.politicas.retries,
1787 /// …)` call — two open-coded field-accesses that expressed no
1788 /// compile-time link back to the typed slot. A future extension of
1789 /// the `:politicas :retries` axis to a richer author surface — a
1790 /// per-`:contratos`-edge retry override the operator pins through a
1791 /// future `:contratos :retries` slot, a per-cluster retry-default
1792 /// overlay the M4 CR materializer resolves per-CR, a promotion of
1793 /// the plain `u32` attempt-count to a richer `{attempts, codes,
1794 /// backoff}` sub-block once the Gateway API grows the peer
1795 /// `retry.codes` / `retry.backoff` axes — would have had to be
1796 /// threaded through both open-coded copies in lockstep or the
1797 /// emptiness predicate and the caixa-mesh emit path would silently
1798 /// disagree on which retry budget a given [`MeshPolicy`] resolves to
1799 /// (a `:politicas` block whose only axis is a `Some :retries` would
1800 /// satisfy `is_empty() == false` while the renderer's overlay-emit
1801 /// path silently read a drifted other value, or vice versa: an
1802 /// author's `:retries 3` would omit the `HTTPRoute` `retry.attempts`
1803 /// block while the emptiness predicate still classified the policy
1804 /// as non-empty). Lifting the resolution to a typed method on the
1805 /// substrate primitive means every downstream consumer of the
1806 /// Aplicacao's per-`:politicas` retry surface reaches for exactly
1807 /// one typed dispatch — the resolver's accept-set migrates as a
1808 /// unit on any future axis addition.
1809 ///
1810 /// Second `Option<Copy-T>`-return accessor on the M3 mesh-slot
1811 /// family (sibling of the peer per-`:politicas`
1812 /// [`MeshPolicy::mtls_required`] c0110f1 `Option<bool>` accessor —
1813 /// same "one typed dispatch on the substrate primitive, thin
1814 /// projections at each consumer" discipline extended onto the
1815 /// peer per-`:politicas` typed-`u32` optional-scalar axis; opens
1816 /// the "optional per-slot numeric-Copy-T scalar" projection pattern
1817 /// the sibling per-`:politicas` `:timeout` (Option<Duration>) /
1818 /// per-`CircuitBreaker` `:max-failures` / `:window` future lifts
1819 /// fold on). Named `retries()` to match the storage field's name;
1820 /// the accessor's identity maps onto the canonical MESH-COMPOSITION
1821 /// §III.2 vocabulary the slot's docstring already carries.
1822 #[must_use]
1823 pub const fn retries(&self) -> Option<u32> {
1824 self.retries
1825 }
1826
1827 /// Substrate-canonical per-`:politicas` `:mtls-required` mTLS-
1828 /// enforcement-toggle scalar accessor every consumer of the
1829 /// Aplicacao's Cilium-mesh L4 mutual-authentication policy keys off
1830 /// — returns the author-declared `:politicas :mtls-required` typed
1831 /// bool verbatim as an `Option<bool>`, copied out of the typed
1832 /// slot's own `Option<bool>` storage (`Option<bool>` is `Copy`, so
1833 /// the accessor returns by value; no borrow of `&self` past the
1834 /// call). `None` when the slot is absent (the "cluster default
1835 /// applies — typically 'disabled' cluster-wide" arm the caixa-mesh
1836 /// `mtls_overlay` builder documents at caixa-mesh/src/lib.rs:2540
1837 /// — [`MeshPolicy::is_empty`]'s `mtls_required.is_none()` arm reads
1838 /// this predicate too, so an authored-but-unset `:politicas
1839 /// (:mtls-required ())` round-trips to a rendered
1840 /// `CiliumNetworkPolicy` structurally identical to one that omits
1841 /// the slot).
1842 ///
1843 /// The `:politicas :mtls-required` slot carries the "explicit opt-
1844 /// out only, sandboxing-by-default" mTLS-enforcement toggle
1845 /// (MESH-COMPOSITION §III.2 #3) — the typed slot's three-way
1846 /// `{None, Some(true), Some(false)}` accept-set maps onto the
1847 /// Cilium `authentication.mode` bijection through
1848 /// [`crate::cilium_auth_mode`]: `Some(true) → "required"` (mTLS
1849 /// handshake enforced), `Some(false) → "disabled"` (handshake
1850 /// skipped — the debug-edge opt-out), `None` → omit the block
1851 /// (cluster default applies). Every downstream consumer that
1852 /// reads the toggle keys off this scalar (the
1853 /// [`MeshPolicy::is_empty`] emptiness predicate the renderers key
1854 /// off to decide "emit :politicas overlay" vs "skip entirely", the
1855 /// caixa-mesh per-`(:de, :para)` CNP `mtls_overlay` builder at
1856 /// caixa-mesh/src/lib.rs:2549 that fans the toggle into every
1857 /// ingress rule via [`crate::render::single_field_overlay`], the
1858 /// future M4 per-Aplicacao Cilium `authentication.mode` reconciler
1859 /// materialization pass, the future per-`:contratos`-edge mTLS
1860 /// override MESH-COMPOSITION §III.2 #3 roadmap acknowledges).
1861 ///
1862 /// Prior to this lift the `.mtls_required` field was accessed
1863 /// inline at two sites — [`MeshPolicy::is_empty`]'s
1864 /// `self.mtls_required.is_none()` arm and caixa-mesh's
1865 /// `single_field_overlay(spec.politicas.mtls_required, …)` call —
1866 /// two open-coded field-accesses that expressed no compile-time
1867 /// link back to the typed slot. A future extension of the
1868 /// `:politicas :mtls-required` axis to a richer author surface —
1869 /// a per-`:contratos`-edge mTLS override the operator pins through
1870 /// a future `:contratos :mtls` slot the MESH-COMPOSITION §III.2
1871 /// #3 roadmap acknowledges, a per-cluster mTLS-default overlay the
1872 /// M4 CR materializer resolves per-CR, a three-valued
1873 /// `{None, Some(true), Some(false), Some(Optional)}` promotion
1874 /// once Cilium's `authentication.mode` grows an `"optional"` arm —
1875 /// would have had to be threaded through both open-coded copies in
1876 /// lockstep or the emptiness predicate and the caixa-mesh emit
1877 /// path would silently disagree on which toggle a given
1878 /// [`MeshPolicy`] resolves to (a `:politicas` block whose only
1879 /// axis is a `Some`
1880 /// `:mtls-required` would satisfy `is_empty() == false` while the
1881 /// renderer's overlay-emit path silently read a drifted other
1882 /// value, or vice versa). Lifting the resolution to a typed method
1883 /// on the substrate primitive means every downstream consumer of
1884 /// the Aplicacao's per-`:politicas` mTLS-toggle surface reaches
1885 /// for exactly one typed dispatch — the resolver's accept-set
1886 /// migrates as a unit on any future axis addition.
1887 ///
1888 /// First `Option<Copy-T>`-return accessor on the M3 mesh-slot
1889 /// family (peer of the sibling per-`:placement`
1890 /// [`Placement::shard_key`] 7cd2a28 `Option<&str>` accessor —
1891 /// same "one typed dispatch on the substrate primitive, thin
1892 /// projections at each consumer" discipline extended onto the
1893 /// peer per-`:politicas` typed-bool optional-scalar axis; opens
1894 /// the "optional per-slot Copy-T scalar" projection pattern the
1895 /// sibling per-`:politicas` `:retries` (Option<u32>) /
1896 /// `:timeout` (Option<Duration>) future lifts fold on). Named
1897 /// `mtls_required()` to match the storage field's name; the
1898 /// accessor's identity maps onto the canonical MESH-COMPOSITION
1899 /// §III.2 vocabulary the slot's docstring already carries.
1900 #[must_use]
1901 pub const fn mtls_required(&self) -> Option<bool> {
1902 self.mtls_required
1903 }
1904
1905 /// Substrate-canonical per-`:politicas` `:rate-limit` Envoy-
1906 /// `local_rate_limit`-mesh token-bucket-declaration scalar
1907 /// accessor every consumer of the Aplicacao's per-`:politicas`
1908 /// per-`(rate, window)` rate-limit surface keys off — returns the
1909 /// author-declared `:politicas :rate-limit` typed [`RateLimit`]
1910 /// verbatim as an `Option<RateLimit>`, copied out of the typed
1911 /// slot's own `Option<RateLimit>` storage ([`RateLimit`] is
1912 /// `Copy`, so the accessor returns by value; no borrow of `&self`
1913 /// past the call). `None` when the slot is absent (the "cluster
1914 /// default applies — typically 'no per-Aplicacao rate declaration,
1915 /// gateway-class per-listener default applies'" arm the future
1916 /// caixa-mesh `local_rate_limit_overlay` emitter MESH-COMPOSITION
1917 /// §III.2 #3 names — [`MeshPolicy::is_empty`]'s
1918 /// `rate_limit().is_none()` arm reads this predicate too, so an
1919 /// authored-but-unset `:politicas (:rate-limit ())` round-trips
1920 /// to a rendered `CiliumClusterwideEnvoyConfig` structurally
1921 /// identical to one that omits the slot).
1922 ///
1923 /// The `:politicas :rate-limit` slot carries the "per-Aplicacao
1924 /// token-bucket rate declaration" contract (MESH-COMPOSITION
1925 /// §III.2 #3) — the typed slot's `Option<RateLimit>` accept-set
1926 /// (rate lower-bounded by 1 through
1927 /// [`AplicacaoSpec::validate_politicas`], upper-bounded by
1928 /// [`POLICY_RATE_LIMIT_MAX`], window canonically bijected to the
1929 /// three-unit `{"s", "m", "h"}` [`rate_limit_codec`] table through
1930 /// [`is_canonical_rate_limit_window`]) maps onto the Envoy
1931 /// `local_rate_limit.token_bucket.{max_tokens, fill_interval}`
1932 /// bijection the future `CiliumClusterwideEnvoyConfig` per-
1933 /// `:politicas` overlay emits. Every downstream consumer that
1934 /// reads the rate declaration keys off this scalar (the
1935 /// [`MeshPolicy::is_empty`] emptiness predicate the renderers key
1936 /// off to decide "emit :politicas overlay" vs "skip entirely", the
1937 /// [`AplicacaoSpec::validate_politicas`] per-value-shape gate that
1938 /// brackets `rl.rate` against [`POLICY_RATE_LIMIT_MAX`] and pins
1939 /// `rl.window` against [`is_canonical_rate_limit_window`], the
1940 /// future M4 per-Aplicacao Envoy reconciler materialization pass,
1941 /// the future per-`:contratos`-edge rate-limit override the
1942 /// MESH-COMPOSITION §III.2 #3 roadmap acknowledges).
1943 ///
1944 /// Prior to this lift the `.rate_limit` field was accessed inline
1945 /// at two sites — [`MeshPolicy::is_empty`]'s
1946 /// `self.rate_limit.is_none()` arm and the `validate_politicas`
1947 /// gate's `if let Some(rl) = &p.rate_limit` bind — two open-coded
1948 /// field-accesses that expressed no compile-time link back to the
1949 /// typed slot. A future extension of the `:politicas :rate-limit`
1950 /// axis to a richer author surface — a per-`:contratos`-edge
1951 /// rate-limit override the operator pins through a future
1952 /// `:contratos :rate-limit` slot the MESH-COMPOSITION §III.2 #3
1953 /// roadmap acknowledges, a per-cluster rate-limit-default overlay
1954 /// the M4 CR materializer resolves per-CR, a promotion of the
1955 /// plain `(rate, window)` scalar pair to a richer
1956 /// `{rate, window, burst, key}` sub-block once Envoy's
1957 /// `local_rate_limit` grows the peer `burst_size` /
1958 /// `descriptor_key` axes — would have had to be threaded through
1959 /// both open-coded copies in lockstep or the emptiness predicate
1960 /// and the validate gate would silently disagree on which rate
1961 /// declaration a given [`MeshPolicy`] resolves to (a `:politicas`
1962 /// block whose only axis is a `Some :rate-limit` would satisfy
1963 /// `is_empty() == false` while the validate path silently read a
1964 /// drifted other value, or vice versa: an author's
1965 /// `:rate-limit "100/s"` would omit the value-shape gate while the
1966 /// emptiness predicate still classified the policy as non-empty).
1967 /// Lifting the resolution to a typed method on the substrate
1968 /// primitive means every downstream consumer of the Aplicacao's
1969 /// per-`:politicas` rate-limit surface reaches for exactly one
1970 /// typed dispatch — the resolver's accept-set migrates as a unit
1971 /// on any future axis addition.
1972 ///
1973 /// First `Option<Copy-composite-T>`-return accessor on the M3
1974 /// mesh-slot family — closes the last un-lifted per-`:politicas`
1975 /// scalar-value axis. Peer of the sibling per-`:politicas`
1976 /// [`MeshPolicy::timeout`] (7073d0f) / [`MeshPolicy::retries`]
1977 /// (bdfb399) / [`MeshPolicy::mtls_required`] (c0110f1)
1978 /// `Option<Copy-T>` accessors on the primitive-Copy axes — same
1979 /// "one typed dispatch on the substrate primitive, thin
1980 /// projections at each consumer" discipline extended onto the
1981 /// peer per-`:politicas` composite-Copy shape (`RateLimit` is
1982 /// `#[derive(Copy)]`; peer of [`CircuitBreaker`] which lives
1983 /// behind [`CircuitBreaker::max_failures`] / [`CircuitBreaker::window`]
1984 /// sub-accessors rather than a top-level accessor because
1985 /// consumers reach for the axes not the aggregate). Named
1986 /// `rate_limit()` to match the storage field's name; the
1987 /// accessor's identity maps onto the canonical MESH-COMPOSITION
1988 /// §III.2 vocabulary the slot's docstring already carries.
1989 #[must_use]
1990 pub const fn rate_limit(&self) -> Option<RateLimit> {
1991 self.rate_limit
1992 }
1993
1994 /// Substrate-canonical per-`:politicas` `:circuit-breaker`
1995 /// Envoy-`outlier_detection`-mesh consecutive-failure-ejection-
1996 /// declaration scalar accessor every consumer of the Aplicacao's
1997 /// per-`:politicas` breaker declaration keys off — returns the
1998 /// author-declared `:politicas :circuit-breaker` typed
1999 /// [`CircuitBreaker`] verbatim as an `Option<CircuitBreaker>`,
2000 /// copied out of the typed slot's own `Option<CircuitBreaker>`
2001 /// storage ([`CircuitBreaker`] is `Copy`, so the accessor returns
2002 /// by value; no borrow of `&self` past the call). `None` when the
2003 /// slot is absent (the "cluster default applies — typically 'no
2004 /// per-Aplicacao breaker declaration, gateway-class per-listener
2005 /// default applies'" arm the future caixa-mesh
2006 /// `outlier_detection_overlay` emitter MESH-COMPOSITION §III.2 #3
2007 /// names — [`MeshPolicy::is_empty`]'s `circuit_breaker().is_none()`
2008 /// arm reads this predicate too, so an authored-but-unset
2009 /// `:politicas (:circuit-breaker ())` round-trips to a rendered
2010 /// `CiliumClusterwideEnvoyConfig` structurally identical to one
2011 /// that omits the slot).
2012 ///
2013 /// The `:politicas :circuit-breaker` slot carries the
2014 /// "per-Aplicacao consecutive-transient-failure trip declaration"
2015 /// contract (MESH-COMPOSITION §III.2 #3) — the typed slot's
2016 /// `Option<CircuitBreaker>` accept-set (per-`:max-failures`
2017 /// zero-floor rejected through
2018 /// [`AplicacaoError::PolicyBreakerZeroFailures`], upper-bounded by
2019 /// [`POLICY_BREAKER_MAX_FAILURES_MAX`]; per-`:window` zero-floor
2020 /// rejected through [`AplicacaoError::PolicyBreakerZeroWindow`],
2021 /// upper-bounded by [`POLICY_BREAKER_WINDOW_MAX`],
2022 /// canonical-form pinned through
2023 /// [`AplicacaoError::PolicyBreakerWindowNotCanonical`]) maps onto
2024 /// the Envoy `outlier_detection.{consecutive_5xx, interval}`
2025 /// bijection the future `CiliumClusterwideEnvoyConfig`
2026 /// per-`:politicas` overlay emits. Every downstream consumer that
2027 /// reads the breaker declaration keys off this scalar (the
2028 /// [`MeshPolicy::is_empty`] emptiness predicate the renderers key
2029 /// off to decide "emit :politicas overlay" vs "skip entirely", the
2030 /// [`AplicacaoSpec::validate_politicas`] per-sub-struct-axis gate
2031 /// that brackets `cb.max_failures()` against
2032 /// [`POLICY_BREAKER_MAX_FAILURES_MAX`] and `cb.window()` against
2033 /// [`POLICY_BREAKER_WINDOW_MAX`] via
2034 /// [`crate::render::require_positive_canonical_bounded_duration`],
2035 /// the future M4 per-Aplicacao Envoy reconciler materialization
2036 /// pass, the future per-`:contratos`-edge breaker override the
2037 /// MESH-COMPOSITION §III.2 #3 roadmap acknowledges).
2038 ///
2039 /// Prior to this lift the `.circuit_breaker` field was accessed
2040 /// inline at two sites — [`MeshPolicy::is_empty`]'s
2041 /// `self.circuit_breaker.is_none()` arm and the
2042 /// `validate_politicas` gate's `if let Some(cb) = &p.circuit_breaker`
2043 /// bind — two open-coded field-accesses that expressed no
2044 /// compile-time link back to the typed slot. A future extension of
2045 /// the `:politicas :circuit-breaker` axis to a richer author
2046 /// surface — a per-`:contratos`-edge breaker override the operator
2047 /// pins through a future `:contratos :circuit-breaker` slot the
2048 /// MESH-COMPOSITION §III.2 #3 roadmap acknowledges, a per-cluster
2049 /// breaker-default overlay the M4 CR materializer resolves per-CR,
2050 /// a promotion of the plain `(max_failures, window)` scalar pair to
2051 /// a richer `{max_failures, window, base_ejection_time, max_ejection_percent}`
2052 /// sub-block once Envoy's `outlier_detection` grows the peer
2053 /// ejection-percentage / ejection-time axes — would have had to be
2054 /// threaded through both open-coded copies in lockstep or the
2055 /// emptiness predicate and the validate gate would silently
2056 /// disagree on which breaker declaration a given [`MeshPolicy`]
2057 /// resolves to (a `:politicas` block whose only axis is a
2058 /// `Some :circuit-breaker` would satisfy `is_empty() == false` while
2059 /// the validate path silently read a drifted other value, or vice
2060 /// versa: an author's `(:circuit-breaker (:max-failures 5 :window
2061 /// "60s"))` would omit the value-shape gate while the emptiness
2062 /// predicate still classified the policy as non-empty). Lifting
2063 /// the resolution to a typed method on the substrate primitive
2064 /// means every downstream consumer of the Aplicacao's
2065 /// per-`:politicas` breaker surface reaches for exactly one typed
2066 /// dispatch — the resolver's accept-set migrates as a unit on any
2067 /// future axis addition.
2068 ///
2069 /// Second `Option<Copy-composite-T>`-return accessor on the M3
2070 /// mesh-slot family (sibling of the peer per-`:politicas`
2071 /// [`MeshPolicy::rate_limit`] 21a6c3b `Option<RateLimit>` accessor
2072 /// on the same composite-Copy shape, and of the sibling per-
2073 /// `:politicas` [`MeshPolicy::timeout`] 7073d0f
2074 /// `Option<Duration>` / [`MeshPolicy::retries`] bdfb399
2075 /// `Option<u32>` / [`MeshPolicy::mtls_required`] c0110f1
2076 /// `Option<bool>` accessors on the sibling primitive-Copy axes —
2077 /// same "one typed dispatch on the substrate primitive, thin
2078 /// projections at each consumer" discipline extended onto the last
2079 /// unlifted per-`:politicas` scalar-value axis (the composite-Copy
2080 /// `Option<CircuitBreaker>` arm). Named `circuit_breaker()` to
2081 /// match the storage field's name; the accessor's identity maps
2082 /// onto the canonical MESH-COMPOSITION §III.2 vocabulary the slot's
2083 /// docstring already carries. Closes the last unlifted
2084 /// [`MeshPolicy`] accessor axis so every downstream per-`:politicas`
2085 /// reader now routes through a typed dispatch on the substrate
2086 /// primitive.
2087 #[must_use]
2088 pub const fn circuit_breaker(&self) -> Option<CircuitBreaker> {
2089 self.circuit_breaker
2090 }
2091}
2092
2093#[derive(Serialize, Deserialize, Debug, Clone, Copy, PartialEq, Eq)]
2094#[serde(rename_all = "camelCase")]
2095pub struct CircuitBreaker {
2096 pub max_failures: u32,
2097 #[serde(with = "supervisor::duration_codec_required")]
2098 pub window: Duration,
2099}
2100
2101impl CircuitBreaker {
2102 /// Substrate-canonical per-`:politicas :circuit-breaker`
2103 /// `:max-failures` Envoy-outlier-detection trip-threshold scalar
2104 /// accessor every consumer of the Aplicacao's per-`:contratos`-edge
2105 /// breaker trip-count keys off — returns the author-declared
2106 /// `:politicas :circuit-breaker :max-failures` typed `u32` verbatim,
2107 /// copied out of the typed slot's own `u32` storage (`u32` is `Copy`,
2108 /// so the accessor returns by value; no borrow of `&self` past the
2109 /// call). Non-optional (the surrounding `Option<CircuitBreaker>` is
2110 /// the "slot present?" projection at the parent [`MeshPolicy::circuit_breaker`]
2111 /// axis; a `CircuitBreaker` past pattern-match is definitionally
2112 /// present, and its `:max-failures` field carries the trip count as a
2113 /// required-axis scalar).
2114 ///
2115 /// The `:politicas :circuit-breaker :max-failures` axis carries the
2116 /// "consecutive-transient-failure trip threshold" contract
2117 /// (MESH-COMPOSITION §III.2 #3) — the typed slot's `u32` accept-set
2118 /// (zero-floor rejected through
2119 /// [`AplicacaoError::PolicyBreakerZeroFailures`], upper-bounded by
2120 /// [`POLICY_BREAKER_MAX_FAILURES_MAX`]) maps onto the Envoy
2121 /// `outlier_detection.consecutive_5xx` per-cluster ejection-threshold
2122 /// scalar (equivalently the future `CiliumClusterwideEnvoyConfig`
2123 /// per-`:politicas` overlay MESH-COMPOSITION §III.2 #3 acknowledges).
2124 /// Every downstream consumer that reads the trip threshold keys off
2125 /// this scalar (the [`AplicacaoSpec::validate_politicas`] zero-floor +
2126 /// cap bracket at caixa-core/src/aplicacao.rs:4022 that gates on the
2127 /// canonical `require_positive_bounded_u32` helper, the future M4
2128 /// per-Aplicacao Envoy config reconciler materialization pass, the
2129 /// future per-`:contratos`-edge breaker-override overlay the
2130 /// MESH-COMPOSITION §III.2 #3 roadmap acknowledges).
2131 ///
2132 /// Prior to this lift the `.max_failures` field was accessed inline
2133 /// at one production site — [`AplicacaoSpec::validate_politicas`]'s
2134 /// `require_positive_bounded_u32(cb.max_failures, …)` call — one
2135 /// open-coded field-access that expressed no compile-time link back
2136 /// to the typed sub-struct axis. A future extension of the
2137 /// `:max-failures` axis to a richer author surface — a
2138 /// per-`:contratos`-edge breaker override the operator pins through a
2139 /// future `:contratos :max-failures` slot the MESH-COMPOSITION §III.2
2140 /// #3 roadmap acknowledges, a per-cluster max-failures-default
2141 /// overlay the M4 CR materializer resolves per-CR, a promotion of the
2142 /// plain `u32` trip count to a richer
2143 /// `{consecutive_5xx, consecutive_gateway_failure, consecutive_local_origin_failure}`
2144 /// tuple once Envoy's `outlier_detection` block's peer axes come into
2145 /// scope, a per-Envoy-cluster minimum-request-volume gate before the
2146 /// count arms — would have had to be threaded through every open-
2147 /// coded copy in lockstep or the validate gate and the future M4
2148 /// emit path would silently disagree on which trip threshold a given
2149 /// [`CircuitBreaker`] resolves to (an author's `:max-failures 5`
2150 /// would satisfy validate while the emit path silently read a drifted
2151 /// other value, or vice versa: a validated typed slot would land at
2152 /// the emit boundary as a no-op breaker whose trip threshold is
2153 /// structurally never reached). Lifting the resolution to a typed
2154 /// method on the substrate primitive means every downstream consumer
2155 /// of the Aplicacao's per-`:politicas :circuit-breaker`
2156 /// trip-threshold surface reaches for exactly one typed dispatch —
2157 /// the resolver's accept-set migrates as a unit on any future axis
2158 /// addition.
2159 ///
2160 /// First sub-struct scalar accessor on the M3 mesh-slot family
2161 /// (opens the "per-`CircuitBreaker` / per-`RateLimit` required-axis
2162 /// scalar" projection pattern the sibling `CircuitBreaker::window` /
2163 /// `RateLimit::rate` / `RateLimit::window` future lifts fold on —
2164 /// closes the last unlifted per-`:politicas` scalar-value axis after
2165 /// the c0110f1 / bdfb399 / 7073d0f trajectory closed every scalar-
2166 /// shaped axis on the parent [`MeshPolicy`] optional-slot surface).
2167 /// Same "one typed dispatch on the substrate primitive, thin
2168 /// projections at each consumer" discipline the peer
2169 /// [`WitContract::source`] / [`WitContract::destination`] (7f0fd43),
2170 /// [`WitContract::world_ref`] (0804823), [`Membro::nome`] (4a32abf),
2171 /// [`Membro::versao_requirement`] (a40b0e3),
2172 /// [`Entrada::destination`] (6db982c) accessors carry on their
2173 /// respective per-mesh-slot-atom scalar-value axes, extended onto the
2174 /// per-sub-struct required-`u32` axis. Named `max_failures()` to
2175 /// match the storage field's name; the accessor's identity maps onto
2176 /// the canonical MESH-COMPOSITION §III.2 vocabulary the slot's
2177 /// docstring already carries.
2178 #[must_use]
2179 pub const fn max_failures(&self) -> u32 {
2180 self.max_failures
2181 }
2182
2183 /// Substrate-canonical per-`:politicas :circuit-breaker` `:window`
2184 /// Envoy-outlier-detection rolling-observation-interval scalar
2185 /// accessor every consumer of the Aplicacao's per-`:contratos`-edge
2186 /// breaker rolling-window duration keys off — returns the
2187 /// author-declared `:politicas :circuit-breaker :window` typed
2188 /// `Duration` verbatim, copied out of the typed slot's own
2189 /// `Duration` storage (`Duration` is `Copy`, so the accessor returns
2190 /// by value; no borrow of `&self` past the call). Non-optional (the
2191 /// surrounding `Option<CircuitBreaker>` is the "slot present?"
2192 /// projection at the parent [`MeshPolicy::circuit_breaker`] axis; a
2193 /// `CircuitBreaker` past pattern-match is definitionally present,
2194 /// and its `:window` field carries the rolling-observation interval
2195 /// as a required-axis scalar).
2196 ///
2197 /// The `:politicas :circuit-breaker :window` axis carries the
2198 /// "consecutive-transient-failure rolling-observation interval"
2199 /// contract (MESH-COMPOSITION §III.2 #3) — the typed slot's
2200 /// `Duration` accept-set (zero-floor rejected through
2201 /// [`AplicacaoError::PolicyBreakerZeroWindow`], sub-millisecond
2202 /// residue rejected through
2203 /// [`AplicacaoError::PolicyBreakerWindowNotCanonical`],
2204 /// upper-bounded by [`POLICY_BREAKER_WINDOW_MAX`]) maps onto the
2205 /// Envoy `outlier_detection.interval` per-cluster
2206 /// ejection-observation-interval scalar (equivalently the future
2207 /// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2208 /// MESH-COMPOSITION §III.2 #3 acknowledges). Every downstream
2209 /// consumer that reads the rolling-observation interval keys off
2210 /// this scalar (the [`AplicacaoSpec::validate_politicas`] zero-floor +
2211 /// integer-millisecond canonical-form + cap bracket at
2212 /// caixa-core/src/aplicacao.rs:4121 that gates on the canonical
2213 /// [`crate::render::require_positive_canonical_bounded_duration`]
2214 /// helper, the future M4 per-Aplicacao Envoy config reconciler
2215 /// materialization pass, the future per-`:contratos`-edge
2216 /// breaker-override overlay the MESH-COMPOSITION §III.2 #3 roadmap
2217 /// acknowledges).
2218 ///
2219 /// Prior to this lift the `.window` field was accessed inline at
2220 /// one production site — [`AplicacaoSpec::validate_politicas`]'s
2221 /// `require_positive_canonical_bounded_duration(cb.window, …)`
2222 /// call — one open-coded field-access that expressed no compile-
2223 /// time link back to the typed sub-struct axis. A future extension
2224 /// of the `:window` axis to a richer author surface — a
2225 /// per-`:contratos`-edge window override the operator pins through
2226 /// a future `:contratos :window` slot the MESH-COMPOSITION §III.2
2227 /// #3 roadmap acknowledges, a per-cluster window-default overlay
2228 /// the M4 CR materializer resolves per-CR, a promotion of the plain
2229 /// `Duration` observation interval to a richer
2230 /// `{interval, base_ejection_time, max_ejection_percent}` tuple
2231 /// once Envoy's `outlier_detection` block's peer axes come into
2232 /// scope, a per-Envoy-cluster minimum-request-volume gate before
2233 /// the window arms — would have had to be threaded through every
2234 /// open-coded copy in lockstep or the validate gate and the future
2235 /// M4 emit path would silently disagree on which observation
2236 /// interval a given [`CircuitBreaker`] resolves to (an author's
2237 /// `:window "60s"` would satisfy validate while the emit path
2238 /// silently read a drifted other value, or vice versa: a validated
2239 /// typed slot would land at the emit boundary as a breaker whose
2240 /// observation window is structurally so wide that no realistic
2241 /// failure-rate shape can trip it). Lifting the resolution to a
2242 /// typed method on the substrate primitive means every downstream
2243 /// consumer of the Aplicacao's per-`:politicas :circuit-breaker`
2244 /// observation-window surface reaches for exactly one typed
2245 /// dispatch — the resolver's accept-set migrates as a unit on any
2246 /// future axis addition.
2247 ///
2248 /// Second sub-struct scalar accessor on the M3 mesh-slot family —
2249 /// sibling in shape to the just-landed [`CircuitBreaker::max_failures`]
2250 /// (3a74062) required-`u32` accessor on the peer per-`CircuitBreaker`
2251 /// required-axis, extended onto the per-sub-struct required-`Duration`
2252 /// axis; closes the last unlifted per-`CircuitBreaker` scalar-value
2253 /// axis. Same "one typed dispatch on the substrate primitive, thin
2254 /// projections at each consumer" discipline the peer
2255 /// [`WitContract::source`] / [`WitContract::destination`] (7f0fd43),
2256 /// [`WitContract::world_ref`] (0804823), [`Membro::nome`] (4a32abf),
2257 /// [`Membro::versao_requirement`] (a40b0e3),
2258 /// [`Entrada::destination`] (6db982c) accessors carry on their
2259 /// respective per-mesh-slot-atom scalar-value axes, extended onto
2260 /// the per-sub-struct required-`Duration` axis. Named `window()` to
2261 /// match the storage field's name; the accessor's identity maps onto
2262 /// the canonical MESH-COMPOSITION §III.2 vocabulary the slot's
2263 /// docstring already carries.
2264 #[must_use]
2265 pub const fn window(&self) -> Duration {
2266 self.window
2267 }
2268}
2269
2270#[derive(Debug, Clone, Copy, PartialEq, Eq)]
2271pub struct RateLimit {
2272 /// Requests per window.
2273 pub rate: u32,
2274 /// Window duration.
2275 pub window: Duration,
2276}
2277
2278impl RateLimit {
2279 /// Substrate-canonical per-`:politicas :rate-limit` `:rate`
2280 /// Envoy-local-rate-limit-mesh token-bucket capacity scalar accessor
2281 /// every consumer of the Aplicacao's per-`:contratos`-edge
2282 /// rate-limit-bucket capacity keys off — returns the author-declared
2283 /// `:politicas :rate-limit` typed `u32` verbatim, copied out of the
2284 /// typed slot's own `u32` storage (`u32` is `Copy`, so the accessor
2285 /// returns by value; no borrow of `&self` past the call). Non-optional
2286 /// (the surrounding `Option<RateLimit>` is the "slot present?"
2287 /// projection at the parent [`MeshPolicy::rate_limit`] axis; a
2288 /// `RateLimit` past pattern-match is definitionally present, and its
2289 /// `:rate` field carries the token-bucket capacity as a required-axis
2290 /// scalar).
2291 ///
2292 /// The `:politicas :rate-limit` `:rate` axis carries the
2293 /// "token-bucket capacity" contract (MESH-COMPOSITION §III.2 #3) —
2294 /// the typed slot's `u32` accept-set (zero-floor rejected through
2295 /// [`AplicacaoError::PolicyRateLimitZero`], upper-bounded by
2296 /// [`POLICY_RATE_LIMIT_MAX`]) maps onto the Envoy
2297 /// `local_rate_limit.token_bucket.max_tokens` per-cluster
2298 /// token-bucket-capacity scalar (equivalently the future
2299 /// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2300 /// MESH-COMPOSITION §III.2 #3 acknowledges). Every downstream
2301 /// consumer that reads the token-bucket capacity keys off this
2302 /// scalar (the [`AplicacaoSpec::validate_politicas`] zero-floor +
2303 /// cap bracket that gates on the canonical
2304 /// [`crate::render::require_positive_bounded_u32`] helper, the
2305 /// [`rate_limit_codec::render`] `Duration → unit` projection that
2306 /// emits the `<n>/<s|m|h>` author surface, the future M4
2307 /// per-Aplicacao Envoy config reconciler materialization pass, the
2308 /// future per-`:contratos`-edge rate-limit-override overlay the
2309 /// MESH-COMPOSITION §III.2 #3 roadmap acknowledges).
2310 ///
2311 /// Prior to this lift the `.rate` field was accessed inline at three
2312 /// production sites — [`AplicacaoSpec::validate_politicas`]'s
2313 /// `require_positive_bounded_u32(rl.rate, …)` call, and the two
2314 /// [`rate_limit_codec::render`] format-arm arms (canonical-window
2315 /// `format!("{}/{unit}", rl.rate)` and non-canonical-window
2316 /// `format!("{}/{}s", rl.rate, …)` fallback). Three open-coded
2317 /// field-accesses that expressed no compile-time link back to the
2318 /// typed sub-struct axis. A future extension of the `:rate` axis
2319 /// to a richer author surface — a per-`:contratos`-edge rate
2320 /// override the operator pins through a future `:contratos :rate`
2321 /// slot the MESH-COMPOSITION §III.2 #3 roadmap acknowledges, a
2322 /// per-cluster rate-default overlay the M4 CR materializer resolves
2323 /// per-CR, a promotion of the plain `u32` token capacity to a
2324 /// richer `{max_tokens, tokens_per_fill}` tuple once Envoy's
2325 /// `local_rate_limit.token_bucket` block's peer `tokens_per_fill`
2326 /// axis comes into scope, a per-Envoy-cluster descriptor-key gate
2327 /// before the token arms — would have had to be threaded through
2328 /// every open-coded copy in lockstep or the validate gate, the
2329 /// codec's render path, and the future M4 emit path would silently
2330 /// disagree on which token capacity a given [`RateLimit`] resolves
2331 /// to (an author's `:rate-limit "100/s"` would satisfy validate
2332 /// while the render / emit paths silently read a drifted other
2333 /// value, or vice versa: a validated typed slot would land at the
2334 /// emit boundary as a no-op limiter whose token capacity is
2335 /// structurally so high that no realistic per-edge traffic shape
2336 /// can drain it). Lifting the resolution to a typed method on the
2337 /// substrate primitive means every downstream consumer of the
2338 /// Aplicacao's per-`:politicas :rate-limit` token-capacity surface
2339 /// reaches for exactly one typed dispatch — the resolver's
2340 /// accept-set migrates as a unit on any future axis addition.
2341 ///
2342 /// First sub-struct scalar accessor on the `RateLimit` axis — sibling
2343 /// in shape to the peer per-`CircuitBreaker`
2344 /// [`CircuitBreaker::max_failures`] (3a74062) required-`u32` accessor
2345 /// on the peer per-sub-struct required-axis, extended onto the
2346 /// per-`RateLimit` required-`u32` axis; opens the "per-`RateLimit`
2347 /// required-axis scalar" projection pattern the sibling
2348 /// [`RateLimit::window`] future lift folds on. Same "one typed
2349 /// dispatch on the substrate primitive, thin projections at each
2350 /// consumer" discipline the peer [`WitContract::source`] /
2351 /// [`WitContract::destination`] (7f0fd43), [`WitContract::world_ref`]
2352 /// (0804823), [`Membro::nome`] (4a32abf),
2353 /// [`Membro::versao_requirement`] (a40b0e3),
2354 /// [`Entrada::destination`] (6db982c),
2355 /// [`CircuitBreaker::max_failures`] (3a74062),
2356 /// [`CircuitBreaker::window`] (373957f) accessors carry on their
2357 /// respective per-mesh-slot-atom scalar-value axes. Named `rate()`
2358 /// to match the storage field's name; the accessor's identity maps
2359 /// onto the canonical MESH-COMPOSITION §III.2 vocabulary the slot's
2360 /// docstring already carries.
2361 #[must_use]
2362 pub const fn rate(&self) -> u32 {
2363 self.rate
2364 }
2365
2366 /// Substrate-canonical per-`:politicas :rate-limit` `:window`
2367 /// Envoy-local-rate-limit-mesh token-bucket refill-period scalar
2368 /// accessor every consumer of the Aplicacao's per-`:contratos`-edge
2369 /// rate-limit-bucket refill period keys off — returns the
2370 /// author-declared `:politicas :rate-limit` typed `Duration`
2371 /// verbatim, copied out of the typed slot's own `Duration` storage
2372 /// (`Duration` is `Copy`, so the accessor returns by value; no
2373 /// borrow of `&self` past the call). Non-optional (the surrounding
2374 /// `Option<RateLimit>` is the "slot present?" projection at the
2375 /// parent [`MeshPolicy::rate_limit`] axis; a `RateLimit` past
2376 /// pattern-match is definitionally present, and its `:window`
2377 /// field carries the token-bucket refill period as a required-axis
2378 /// scalar).
2379 ///
2380 /// The `:politicas :rate-limit` `:window` axis carries the
2381 /// "token-bucket refill period" contract (MESH-COMPOSITION §III.2 #3)
2382 /// — the typed slot's `Duration` accept-set (constrained to the
2383 /// three canonical windows `{1s, 60s, 3600s}` the
2384 /// [`RATE_LIMIT_UNIT_TABLE`] lifts, rejected off-set through
2385 /// [`AplicacaoError::PolicyRateLimitWindowNotCanonical`]) maps
2386 /// onto the Envoy `local_rate_limit.token_bucket.fill_interval`
2387 /// per-cluster token-bucket-refill-period scalar (equivalently the
2388 /// future `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2389 /// MESH-COMPOSITION §III.2 #3 acknowledges). Every downstream
2390 /// consumer that reads the token-bucket refill period keys off
2391 /// this scalar (the [`AplicacaoSpec::validate_politicas`]
2392 /// canonical-window gate that keys off
2393 /// [`is_canonical_rate_limit_window`], the
2394 /// [`rate_limit_codec::render`] `Duration → unit` projection that
2395 /// emits the `<n>/<s|m|h>` author surface — canonical arm via
2396 /// [`rate_limit_window_unit`] and non-canonical fallback via
2397 /// `.as_secs()`, the future M4 per-Aplicacao Envoy config
2398 /// reconciler materialization pass, the future per-`:contratos`-
2399 /// edge rate-limit-override overlay the MESH-COMPOSITION §III.2 #3
2400 /// roadmap acknowledges).
2401 ///
2402 /// Prior to this lift the `.window` field was accessed inline at
2403 /// three production sites — [`AplicacaoSpec::validate_politicas`]'s
2404 /// `is_canonical_rate_limit_window(rl.window)` shape-gate call
2405 /// plus the sibling [`AplicacaoError::PolicyRateLimitWindowNotCanonical`]
2406 /// error-payload construction on refusal, and the two
2407 /// [`rate_limit_codec::render`] arms
2408 /// (canonical-window `rate_limit_window_unit(rl.window)` dispatch
2409 /// and non-canonical-window `rl.window.as_secs()` fallback). Three
2410 /// open-coded field-accesses that expressed no compile-time link
2411 /// back to the typed sub-struct axis. A future extension of the
2412 /// `:window` axis to a richer author surface — a per-`:contratos`-
2413 /// edge window override the operator pins through a future
2414 /// `:contratos :window` slot the MESH-COMPOSITION §III.2 #3 roadmap
2415 /// acknowledges, a per-cluster window-default overlay the M4 CR
2416 /// materializer resolves per-CR, a promotion of the plain
2417 /// `Duration` refill period to a richer
2418 /// `{fill_interval, tokens_per_fill}` tuple once Envoy's
2419 /// `local_rate_limit.token_bucket` block's peer `tokens_per_fill`
2420 /// axis comes into scope, an addition of a `"d"` day suffix once
2421 /// Envoy's `rate_limit_action` grows daily-bucket support — would
2422 /// have had to be threaded through every open-coded copy in
2423 /// lockstep or the validate gate, the codec's render path, and
2424 /// the future M4 emit path would silently disagree on which
2425 /// refill period a given [`RateLimit`] resolves to (an author's
2426 /// `:rate-limit "100/s"` would satisfy validate while the render
2427 /// / emit paths silently read a drifted other value, or vice
2428 /// versa: a validated typed slot would land at the emit boundary
2429 /// as a limiter whose refill period is structurally so long that
2430 /// no realistic per-edge traffic shape stays inside the token
2431 /// budget). Lifting the resolution to a typed method on the
2432 /// substrate primitive means every downstream consumer of the
2433 /// Aplicacao's per-`:politicas :rate-limit` refill-period surface
2434 /// reaches for exactly one typed dispatch — the resolver's
2435 /// accept-set migrates as a unit on any future axis addition.
2436 ///
2437 /// Second sub-struct scalar accessor on the `RateLimit` axis —
2438 /// sibling in shape to the just-landed [`RateLimit::rate`]
2439 /// (7f81a60) required-`u32` accessor on the peer per-`RateLimit`
2440 /// required-axis, extended onto the per-sub-struct
2441 /// required-`Duration` axis; closes the last unlifted
2442 /// per-`RateLimit` scalar-value axis (the M3 mesh-slot family's
2443 /// per-sub-struct accessor coverage is now complete across both
2444 /// `CircuitBreaker` and `RateLimit`). Same "one typed dispatch on
2445 /// the substrate primitive, thin projections at each consumer"
2446 /// discipline the peer [`CircuitBreaker::max_failures`] (3a74062),
2447 /// [`CircuitBreaker::window`] (373957f), [`RateLimit::rate`]
2448 /// (7f81a60), [`WitContract::source`] / [`WitContract::destination`]
2449 /// (7f0fd43), [`WitContract::world_ref`] (0804823),
2450 /// [`Membro::nome`] (4a32abf),
2451 /// [`Membro::versao_requirement`] (a40b0e3),
2452 /// [`Entrada::destination`] (6db982c) accessors carry on their
2453 /// respective per-mesh-slot-atom scalar-value axes. Named
2454 /// `window()` to match the storage field's name; the accessor's
2455 /// identity maps onto the canonical MESH-COMPOSITION §III.2
2456 /// vocabulary the slot's docstring already carries.
2457 #[must_use]
2458 pub const fn window(&self) -> Duration {
2459 self.window
2460 }
2461}
2462
2463/// Canonical `(unit-suffix, seconds-per-window)` bijection every
2464/// consumer of the `:politicas :rate-limit` unit table reads from —
2465/// [`rate_limit_codec::parse`]'s `unit → Duration` dispatch,
2466/// [`rate_limit_codec::render`]'s `Duration → unit` projection, and the
2467/// [`is_canonical_rate_limit_window`] predicate the
2468/// [`AplicacaoSpec::validate_politicas`] gate keys off. Until this table
2469/// landed the `{"s" ↔ 1s, "m" ↔ 60s, "h" ↔ 3600s}` bijection was
2470/// scattered across four peer sites — the codec's `match unit` parse
2471/// arm, the codec's `if secs == 1 { "s" } else if …` render cascade,
2472/// and the predicate's `secs == 1 || secs == 60 || secs == 3600`
2473/// disjunction — each carrying its own hand-written copy of the same
2474/// three (str, u64) pairs with no compile-time link between them. A
2475/// future rate-limit-unit addition (a `"d"` day suffix, a `"ms"`
2476/// sub-second window once Envoy's `rate_limit_action` grows fractional
2477/// support) would have to be threaded through all three sites in
2478/// lockstep or a drift would silently split the accepted-window set: a
2479/// unit accepted by parse but unknown to render would round-trip
2480/// through the codec to the fallback `<n>/<k>s` shape (breaking the
2481/// THEORY.md §V.2.7 render-determinism contract every typed slot
2482/// carries), and a unit accepted by parse but unknown to the predicate
2483/// would silently pass validate and land at the renderer as a
2484/// non-canonical fallback.
2485///
2486/// Lifting the pairs to one `const` collapses the three call sites onto
2487/// one canonical projection each ([`rate_limit_window_unit`] for the
2488/// `Duration → unit` direction, [`rate_limit_window_from_unit`] for the
2489/// inverse), so a future unit addition is exactly one row appended
2490/// here — every consumer picks it up by construction. Same
2491/// "one canonical table, thin projections at each consumer" discipline
2492/// [`PlacementStrategy::as_str`] (cc8f749) applies on the sibling M3
2493/// typed-enum axis, and [`WitTarget::payload_pair`] (6788ed6) applies
2494/// on the peer typed-contract-payload axis.
2495const RATE_LIMIT_UNIT_TABLE: &[(&str, u64)] = &[("s", 1), ("m", 60), ("h", 3600)];
2496
2497/// Canonical rate-limit unit suffix for `window`, or `None` when
2498/// `window` isn't one of the [`RATE_LIMIT_UNIT_TABLE`] entries (i.e.
2499/// carries a non-canonical magnitude the codec's round-trip would break
2500/// on). Reads the `Duration → unit` half of the lifted bijection so
2501/// [`rate_limit_codec::render`] and [`is_canonical_rate_limit_window`]
2502/// share the same projection — a future unit added to the table reaches
2503/// both consumers by construction.
2504#[must_use]
2505fn rate_limit_window_unit(window: Duration) -> Option<&'static str> {
2506 if window.subsec_nanos() != 0 {
2507 return None;
2508 }
2509 let secs = window.as_secs();
2510 RATE_LIMIT_UNIT_TABLE
2511 .iter()
2512 .find_map(|(unit, s)| (*s == secs).then_some(*unit))
2513}
2514
2515/// Canonical rate-limit `Duration` for a unit suffix, or `None` when
2516/// the suffix isn't one of the [`RATE_LIMIT_UNIT_TABLE`] entries. Reads
2517/// the `unit → Duration` half of the lifted bijection so
2518/// [`rate_limit_codec::parse`] shares the same projection — a future
2519/// unit added to the table reaches parse by construction.
2520#[must_use]
2521fn rate_limit_window_from_unit(unit: &str) -> Option<Duration> {
2522 RATE_LIMIT_UNIT_TABLE
2523 .iter()
2524 .find_map(|(u, secs)| (*u == unit).then_some(Duration::from_secs(*secs)))
2525}
2526
2527/// True when `window` is exactly one of the three canonical rate-limit
2528/// windows the [`rate_limit_codec`] round-trips losslessly: 1 second
2529/// (`"<n>/s"`), 1 minute (`"<n>/m"`), or 1 hour (`"<n>/h"`). Routes
2530/// through [`rate_limit_window_unit`] — the single `Duration → unit`
2531/// projection [`rate_limit_codec::render`] also consumes — so the
2532/// canonical-window set lives in one lifted [`RATE_LIMIT_UNIT_TABLE`]
2533/// entry per unit, drift between the codec's accepted unit set and the
2534/// validate gate's accepted window set is a build error visible at the
2535/// table, not a silent round-trip break at the codec layer. Same shape
2536/// every other predicate-on-the-typed-slot helper carries
2537/// ([`MeshPolicy::is_empty`], [`crate::LimitsSpec::is_empty`],
2538/// [`crate::BehaviorSpec::is_empty`]).
2539#[must_use]
2540fn is_canonical_rate_limit_window(window: Duration) -> bool {
2541 rate_limit_window_unit(window).is_some()
2542}
2543
2544/// Upper-bound ceiling on the `:politicas :timeout` axis — every
2545/// validated [`MeshPolicy::timeout`] past
2546/// [`AplicacaoSpec::validate_politicas`] lies in `1ms..=POLICY_TIMEOUT_MAX`
2547/// (inclusive on both ends, integer-millisecond magnitudes by the
2548/// canonical-form gate immediately preceding).
2549///
2550/// The typed field is `Option<Duration>` (the zero-floor arm
2551/// [`AplicacaoError::PolicyTimeoutZero`] already rejects
2552/// `Duration::ZERO`, and the canonical-form arm
2553/// [`AplicacaoError::PolicyTimeoutNotCanonical`] already rejects
2554/// sub-millisecond residue), so a programmatic struct literal
2555/// (`MeshPolicy { timeout: Some(Duration::from_secs(86_400)), .. }` —
2556/// 24h) and the equivalent author-surface form
2557/// (`(:politicas (:timeout "24h"))` — the codec emits `"h"` for any
2558/// integer-hour magnitude) both round-trip cleanly through serde — a
2559/// structurally unbounded `Duration` ceiling. A `:timeout` value far
2560/// above the documented production-playbook band (Envoy default `15s`,
2561/// Istio per-route typical `≤ 30s`, AWS App Mesh `httpRouteTimeout`
2562/// schema typical `≤ 60s`, Linkerd `request_timeout` typical `10s`,
2563/// Kubernetes ingress-nginx `proxy_read_timeout` default `60s` capped
2564/// at `~3600s`) silently degenerates the mesh-policy contract: the
2565/// per-call deadline is structurally so long that no realistic
2566/// synchronous-`:contratos` traversal can reach it, so the typed slot
2567/// becomes a no-op carried on every emitted Envoy / Cilium L7 timeout
2568/// overlay — the MESH-COMPOSITION §V CSE invariant "no infinite
2569/// blocking" degenerates to a nominal-only contract on the
2570/// synchronous-call path. Pairs with the [`POLICY_RETRIES_MAX`] cap on
2571/// the sibling `:politicas :retries` axis and the
2572/// [`POLICY_BREAKER_MAX_FAILURES_MAX`] cap on the sibling
2573/// `:politicas :circuit-breaker :max-failures` axis — all three close
2574/// the "structurally unbounded ceiling on a typed `:politicas` axis"
2575/// footgun the prior zero-floor-and-canonical-form-only checks left
2576/// open.
2577///
2578/// The 1h (3600s = `3_600_000` ms) ceiling matches the largest unit the
2579/// shared duration codec emits (`"<n>h"` for any integer-hour
2580/// magnitude) — every value in the canonical authoring form's
2581/// `<integer><unit>` grammar at or below this cap renders to a clean
2582/// canonical string. The cap sits an order of magnitude above every
2583/// documented production-playbook recommendation band (Envoy default
2584/// `15s`, Istio production `≤ 30s`, Linkerd production `≤ 10s`, AWS
2585/// App Mesh production `≤ 60s`) and at the Kubernetes ingress-nginx
2586/// configured maximum (`proxy_read_timeout` typical max `3600s`),
2587/// below the clearly-pathological "effectively no timeout" floor
2588/// (`24h`, `7d`, `Duration::MAX`): a value the author can plausibly
2589/// want for a long-running synchronous workflow, but a hard wall above
2590/// which the mesh-level deadline is structurally a non-deadline.
2591/// Lifted as a typed `pub const` so the bound has exactly one source
2592/// of truth — the future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
2593/// materializer's admission webhook and the caixa-mesh-side
2594/// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2595/// (MESH-COMPOSITION §III.2 #3) read from one place. Same shape every
2596/// other typed upper bound in this crate carries
2597/// ([`POLICY_RETRIES_MAX`], [`POLICY_BREAKER_MAX_FAILURES_MAX`],
2598/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
2599/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
2600/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
2601pub const POLICY_TIMEOUT_MAX: Duration = Duration::from_secs(3600);
2602
2603/// Upper-bound ceiling on the `:politicas :retries` axis — every
2604/// validated [`MeshPolicy::retries`] past
2605/// [`AplicacaoSpec::validate_politicas`] lies in `1..=POLICY_RETRIES_MAX`.
2606///
2607/// The typed slot is `Option<u32>` (`None` = no retries on transient
2608/// failure; `Some(0)` already rejected by the
2609/// [`AplicacaoError::PolicyRetriesZero`] zero-floor arm), so a
2610/// programmatic struct literal (`MeshPolicy { retries: Some(100_000),
2611/// .. }`) and the equivalent author-surface form
2612/// (`(:politicas (:retries 100000))`) both round-trip cleanly through
2613/// serde / the codec — a structurally unbounded `u32` ceiling. The
2614/// runtime substrate that consumes the value (Envoy's
2615/// `retry_policy.num_retries`, the `CiliumClusterwideEnvoyConfig`
2616/// per-`:politicas` overlay MESH-COMPOSITION §III.2 #3 names, AWS
2617/// App Mesh's `gRPCRouteRetryPolicy.maxRetries` whose schema-side
2618/// admission cap is 10) translates a four-billion-retry policy into a
2619/// thundering-herd amplification vector on transient failure — the
2620/// caller's one request fans out to `retries` server-side calls per
2621/// edge per traversal, multiplying load by `(retries+1)^depth` across
2622/// the synchronous-`:contratos` subgraph. The MESH-COMPOSITION §V CSE
2623/// invariant "no infinite blocking" pairs with a no-runaway-amplification
2624/// invariant on the retry axis; both belong at the typed-slot layer.
2625///
2626/// The `10` ceiling matches AWS App Mesh's explicit hard cap (the only
2627/// upstream mesh-policy schema that documents one) and sits above the
2628/// Envoy / Istio practical-recommendation band (`num_retries ≤ 5` in
2629/// every documented production playbook): a value the author can
2630/// plausibly want, but a hard wall above which the policy is
2631/// structurally a footgun. Lifted as a typed `pub const` so the bound
2632/// has exactly one source of truth — a future axis reaching for the
2633/// same value (the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
2634/// materializer's admission webhook, the caixa-mesh-side
2635/// `CiliumClusterwideEnvoyConfig` overlay's per-edge cap) reads from
2636/// one place. Same shape every other typed upper bound in this crate
2637/// carries ([`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
2638/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
2639/// [`crate::render::GATEWAY_API_HTTP_PATH_MAX_LEN`],
2640/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
2641pub const POLICY_RETRIES_MAX: u32 = 10;
2642
2643/// Upper-bound ceiling on the `:politicas :circuit-breaker :max-failures`
2644/// axis — every validated [`CircuitBreaker::max_failures`] past
2645/// [`AplicacaoSpec::validate_politicas`] lies in
2646/// `1..=POLICY_BREAKER_MAX_FAILURES_MAX`.
2647///
2648/// The typed field is `u32` (the zero-floor arm
2649/// [`AplicacaoError::PolicyBreakerZeroFailures`] already rejects
2650/// `0` — a breaker that trips on the first call), so a programmatic
2651/// struct literal (`CircuitBreaker { max_failures: u32::MAX, .. }`)
2652/// and the equivalent author-surface form
2653/// (`(:circuit-breaker (:max-failures 4294967295))`) both round-trip
2654/// cleanly through serde — a structurally unbounded `u32` ceiling. A
2655/// `max_failures` value far above the documented production-playbook
2656/// band (Hystrix `circuitBreaker.requestVolumeThreshold` default 20,
2657/// Istio `outlierDetection.consecutive5xxErrors` default 5, Envoy
2658/// `outlier_detection.consecutive_5xx` default 5, Polly / Resilience4j
2659/// typical 5–50) silently disables the breaker's protection role:
2660/// the threshold is structurally so high that no realistic
2661/// failures-per-`:window` traffic shape can reach it, so the breaker
2662/// never trips and the typed slot becomes a no-op carried on every
2663/// emitted Envoy / Cilium L7 overlay. Pairs with the
2664/// [`POLICY_RETRIES_MAX`] cap on the sibling `:politicas :retries`
2665/// axis — both close the "structurally unbounded `u32` ceiling on a
2666/// typed policy axis" footgun the prior zero-floor-only checks left
2667/// open.
2668///
2669/// The `1000` ceiling sits an order of magnitude above every
2670/// documented upstream production-playbook recommendation band (the
2671/// highest is Hystrix's 20-default `requestVolumeThreshold`, the
2672/// Istio / Envoy / Polly / Resilience4j ones all sit ≤ 50) and below
2673/// the clearly-pathological "effectively no protection"
2674/// floor (`10_000`, `100_000`, `u32::MAX`): a value the author can
2675/// plausibly want at hyperscale, but a hard wall above which the
2676/// policy is structurally a no-op. Lifted as a typed `pub const` so
2677/// the bound has exactly one source of truth — the future M4
2678/// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's admission
2679/// webhook and the caixa-mesh-side `CiliumClusterwideEnvoyConfig`
2680/// per-`:politicas` overlay (MESH-COMPOSITION §III.2 #3) read from
2681/// one place. Same shape every other typed upper bound in this crate
2682/// carries ([`POLICY_RETRIES_MAX`],
2683/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
2684/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
2685/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
2686pub const POLICY_BREAKER_MAX_FAILURES_MAX: u32 = 1000;
2687
2688/// Upper-bound ceiling on the `:politicas :circuit-breaker :window` axis —
2689/// every validated [`CircuitBreaker::window`] past
2690/// [`AplicacaoSpec::validate_politicas`] lies in
2691/// `1ms..=POLICY_BREAKER_WINDOW_MAX` (inclusive on both ends,
2692/// integer-millisecond magnitudes by the canonical-form gate
2693/// immediately preceding).
2694///
2695/// The typed field is `Duration` (the zero-floor arm
2696/// [`AplicacaoError::PolicyBreakerZeroWindow`] already rejects
2697/// `Duration::ZERO`, and the canonical-form arm
2698/// [`AplicacaoError::PolicyBreakerWindowNotCanonical`] already rejects
2699/// sub-millisecond residue), so a programmatic struct literal
2700/// (`CircuitBreaker { window: Duration::from_secs(86_400), .. }` — 24h)
2701/// and the equivalent author-surface form
2702/// (`(:circuit-breaker (:window "24h"))` — the codec emits `"h"` for any
2703/// integer-hour magnitude) both round-trip cleanly through serde — a
2704/// structurally unbounded `Duration` ceiling. A `:window` value far
2705/// above the documented production-playbook band (Hystrix
2706/// `metrics.rollingStats.timeInMilliseconds` default `10s`,
2707/// resilience4j `slidingWindowSize` time-based typical `10s..=60s`,
2708/// Istio `outlierDetection.interval` default `10s`, Envoy
2709/// `outlier_detection.interval` default `10s`, AWS App Mesh
2710/// circuit-breaker time-window typical `30s..=300s`) degenerates the
2711/// breaker's role: a rolling-window failure counter whose window is
2712/// hours long is operationally a lifetime counter, the breaker's
2713/// "recent failures" memory is structurally so long that transient
2714/// failures are never forgotten, and the typed slot becomes a no-op
2715/// trigger that trips once and stays tripped for the lifetime of the
2716/// component carried on every emitted Envoy / Cilium L7 overlay.
2717///
2718/// The 1h (3600s = `3_600_000` ms) ceiling matches the largest unit the
2719/// shared duration codec emits (`"<n>h"` for any integer-hour
2720/// magnitude) — every value in the canonical authoring form's
2721/// `<integer><unit>` grammar at or below this cap renders to a clean
2722/// canonical string — and matches the sibling [`POLICY_TIMEOUT_MAX`]
2723/// cap on the first typed-`Duration` `:politicas` axis: the two
2724/// duration-typed `:politicas` axes now share a single uniform top
2725/// edge so the next typed-slot wiring (the future caixa-mesh
2726/// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay, the M4
2727/// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-policy
2728/// admission webhook) reaches for either field knowing the value is
2729/// in `1ms..=1h` without re-validating at the renderer layer. The cap
2730/// sits two orders of magnitude above every documented upstream
2731/// production-playbook recommendation band (Hystrix / resilience4j /
2732/// Istio / Envoy all default to 10s; AWS App Mesh maxes out at ~5m)
2733/// and below the clearly-pathological "rolling window degenerates to
2734/// lifetime counter" floor (`24h`, `7d`, `Duration::MAX`): a value the
2735/// author can plausibly want for a very-low-traffic long-tail
2736/// failure-detection window, but a hard wall above which the breaker's
2737/// rolling-window contract is structurally a lifetime-counter contract.
2738/// Lifted as a typed `pub const` so the bound has exactly one source
2739/// of truth — the future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
2740/// materializer's admission webhook and the caixa-mesh-side
2741/// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2742/// (MESH-COMPOSITION §III.2 #3) read from one place. Same shape every
2743/// other typed upper bound in this crate carries
2744/// ([`POLICY_TIMEOUT_MAX`], [`POLICY_RETRIES_MAX`],
2745/// [`POLICY_BREAKER_MAX_FAILURES_MAX`],
2746/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
2747/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
2748/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
2749pub const POLICY_BREAKER_WINDOW_MAX: Duration = Duration::from_secs(3600);
2750
2751/// Upper-bound ceiling on the `:politicas :rate-limit` rate axis —
2752/// every validated [`RateLimit::rate`] past
2753/// [`AplicacaoSpec::validate_politicas`] lies in
2754/// `1..=POLICY_RATE_LIMIT_MAX`.
2755///
2756/// The typed field is `u32` (the zero-floor arm
2757/// [`AplicacaoError::PolicyRateLimitZero`] already rejects `0` — a
2758/// zero-rate limit denies every request, the canonical "I forgot
2759/// that 0 means deny-everything" footgun), so a programmatic struct
2760/// literal (`RateLimit { rate: u32::MAX, window: Duration::from_secs(1) }`)
2761/// and the equivalent author-surface form (`(:rate-limit "4294967295/s")`
2762/// — the `rate_limit_codec` parses any `u32`-shaped magnitude) both
2763/// round-trip cleanly through serde — a structurally unbounded `u32`
2764/// ceiling. The runtime substrate consuming the value (Envoy's
2765/// `local_rate_limit.token_bucket.max_tokens`, the future
2766/// `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
2767/// MESH-COMPOSITION §III.2 #3 names) translates a four-billion-token
2768/// rate-limit into a no-op rate-limiter: the bucket capacity is
2769/// structurally so high no realistic per-edge traffic shape can
2770/// drain it, the limiter never trips, and the typed slot becomes a
2771/// "rate-limit declared, no enforcement" footgun — the canonical
2772/// declared-but-inert shape every other `:politicas` cap arm
2773/// closes ([`POLICY_RETRIES_MAX`] thundering-herd amplification,
2774/// [`POLICY_BREAKER_MAX_FAILURES_MAX`] no-op-breaker, etc.).
2775///
2776/// The `1_000_000` (1M) ceiling sits two-to-three orders of magnitude
2777/// above every documented upstream production-playbook recommendation
2778/// band (Envoy `local_rate_limit` typical `10..=10_000` RPS, Istio
2779/// `RateLimitFilter` typical `10..=10_000` RPS, Cloudflare WAF
2780/// rate-rule Free / Pro `10_000` req/min, AWS API Gateway account
2781/// default `10_000` RPS, Kong typical `100..=10_000`, NGINX
2782/// `limit_req_zone` typical `1..=1_000` RPS) and below the
2783/// clearly-pathological "paste-from-binary blob" floor (`100_000_000`,
2784/// `u32::MAX`): a value the author can plausibly want at hyperscale
2785/// (Cloudflare Enterprise rate-plans run to ~6M/min ≈ 1M/h on the
2786/// /h-window arm), but a hard wall above which the policy is
2787/// structurally a no-op carried verbatim on every emitted Envoy /
2788/// Cilium L7 overlay. The cap brackets all three canonical windows
2789/// the [`rate_limit_codec`] accepts: at `1M/s` (absurd hyperscale
2790/// ceiling, ~1M RPS per edge), at `1M/m` (~16.7k RPS, the
2791/// hyperscale-tier WAF band), at `1M/h` (~277 RPS, the common
2792/// per-endpoint API band). Lifted as a typed `pub const` so the bound
2793/// has exactly one source of truth — the future M4
2794/// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's admission
2795/// webhook and the caixa-mesh-side `CiliumClusterwideEnvoyConfig`
2796/// per-`:politicas` overlay (MESH-COMPOSITION §III.2 #3) read from
2797/// one place. Same shape every other typed upper bound in this crate
2798/// carries ([`POLICY_TIMEOUT_MAX`], [`POLICY_RETRIES_MAX`],
2799/// [`POLICY_BREAKER_MAX_FAILURES_MAX`], [`POLICY_BREAKER_WINDOW_MAX`],
2800/// [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`],
2801/// [`crate::LIMITS_WALL_CLOCK_MAX`],
2802/// [`crate::render::DNS_1123_LABEL_MAX_LEN`],
2803/// [`crate::render::NATS_SUBJECT_MAX_LEN`]).
2804pub const POLICY_RATE_LIMIT_MAX: u32 = 1_000_000;
2805
2806// `:entrada :host` total-length and per-label cap axes route through
2807// the lifted [`crate::render::GATEWAY_API_HOSTNAME_MAX_LEN`] (253) and
2808// [`crate::render::DNS_1123_LABEL_MAX_LEN`] (63) canonical bounds. The
2809// pair of aplicacao-private aliases the previous `validate_entrada_host`
2810// arms consumed (`ENTRADA_HOST_MAX_LEN = 253`, `ENTRADA_HOST_LABEL_MAX_LEN
2811// = 63`) were structurally the same K8s Gateway API v1 Hostname
2812// admission-schema bounds — the total-length cap on the OpenAPI
2813// `Hostname` type and the per-`.`-separated-label DNS-1123 cap on the
2814// same regex — that the peer axes at the caixa-core::render level pin,
2815// so hoisting both readers onto the shared lifted constants closes the
2816// third-occurrence duplication threshold structurally: the M4
2817// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-host / per-
2818// label validator, the future per-`Certificate` SAN emitter, and every
2819// other per-Gateway-API-Hostname landing site reach the same one place
2820// as the `:entrada :host` gate does — no per-axis alias drift surface
2821// between them, by construction.
2822
2823/// Max byte length for an Akka-cluster-sharding `:placement :shard-key`
2824/// extractor expression — the upper bound `validate_placement_shard_key`
2825/// enforces on every well-shaped shard-key past validate. The realistic
2826/// shard-key forms in the wild (`tenantId`, `customerId`, `$tenantId`,
2827/// `metadata.tenantId`, `${tenant}`, `$.user.id`) all sit well under 64
2828/// bytes; the 63-byte cap mirrors the DNS-1123 label cap on the peer
2829/// `:placement :affinity` / `:placement :clusters` identifier-shaped
2830/// axes and surfaces the canonical "paste-from-doc multi-line blob landed
2831/// in `:shard-key`" footgun at validate time rather than at the future
2832/// M4 Akka-style cluster-sharding reconciler's hash-extractor pass.
2833const PLACEMENT_SHARD_KEY_MAX_LEN: usize = 63;
2834
2835/// Reject `:membros :caixa` values the K8s apiserver would refuse at
2836/// admission time. Thin wrapper around [`crate::render::is_dns_1123_label`]
2837/// that maps the shared parser-shaped reason into the
2838/// [`AplicacaoError::MembroCaixaInvalid`] variant, so the diagnostic
2839/// is self-locating (the offending `caixa:` is named verbatim) and
2840/// the author can grep their caixa.lisp for `:caixa "<name>"` and
2841/// fix it in one edit. Same diagnostic shape as
2842/// [`AplicacaoError::EntradaHostInvalid`] (c7d05ec) and
2843/// [`AplicacaoError::MembroVersaoInvalid`] (9888b13).
2844fn validate_membro_caixa(caixa: &str) -> Result<(), AplicacaoError> {
2845 // Empty is already gated by `MembroCaixaEmpty` at the call site;
2846 // re-checking here keeps the predicate usable from any future
2847 // call site (the M4 CR materializer) without an empty-check
2848 // footgun. The shared
2849 // [`crate::render::require_valid_dns_1123_label`] helper brackets
2850 // the empty-first + shape cascade every peer name axis
2851 // (`:placement :clusters`, `:placement :affinity`, `:contratos
2852 // :de`/`:para`, `:entrada :para`, `:children :caixa`, `:nome`,
2853 // `:upgrade-from :module`) routes through, so drift between the
2854 // eight axes' accepted DNS-1123-label sets is structurally
2855 // impossible.
2856 crate::render::require_valid_dns_1123_label(
2857 caixa,
2858 || AplicacaoError::MembroCaixaEmpty,
2859 |reason| AplicacaoError::MembroCaixaInvalid {
2860 caixa: caixa.to_string(),
2861 reason,
2862 },
2863 )
2864}
2865
2866/// Reject `:placement :clusters` entries the K8s apiserver would refuse
2867/// at admission time. Thin wrapper around [`crate::render::is_dns_1123_label`]
2868/// that maps the shared parser-shaped reason into the
2869/// [`AplicacaoError::PlacementClusterInvalid`] variant.
2870///
2871/// Cluster names land in DNS-1123-label territory across every consumer:
2872/// the K8s context name keying `kubeconfig`, the `clusters[]` filter
2873/// the `lareira-fleet-programs` aggregator applies to scope programs to
2874/// their owning cluster (caixa-mesh's `placement.clusters` overlay,
2875/// 4d91c0b), the namespace prefix the future cross-cluster fan-out
2876/// emits per entry, and the `cluster.x-k8s.io/v1beta1/Cluster.metadata.name`
2877/// cluster identity the M4 CR materializer round-trips. Each apiserver-
2878/// side schema enforces the DNS-1123 label rule on admission; a
2879/// structurally invalid cluster name (`"Rio"`, `"my_cluster"`,
2880/// `"team.rio"`, `"-rio"`, `"rio-"`, the >63-byte UUID-shaped
2881/// mistaken-identity slug) silently passes the prior empty-/duplicate-
2882/// only gate and the failure surfaces as a no-match at filter time —
2883/// the workload doesn't land in the named cluster, with no diagnostic
2884/// naming the offending `:clusters` entry. Lifting the gate to caixa-
2885/// build time mirrors the `:membros :caixa` value-shape trajectory
2886/// (3f9d7a0) on the peer name axis.
2887///
2888/// The diagnostic carries the offending `cluster:` verbatim plus a
2889/// parser-shaped `reason:` naming the specific violation, so the
2890/// author can grep their caixa.lisp for `:clusters` and fix it in
2891/// one edit. Same diagnostic shape as
2892/// [`AplicacaoError::MembroCaixaInvalid`] (3f9d7a0).
2893fn validate_placement_cluster(cluster: &str) -> Result<(), AplicacaoError> {
2894 // Empty is already gated by `PlacementClusterEmpty` at the call
2895 // site; re-checking here keeps the predicate usable from any
2896 // future call site (the M4 CR materializer's per-cluster validator)
2897 // without an empty-check footgun. Routes through the shared
2898 // [`crate::render::require_valid_dns_1123_label`] gate the peer
2899 // name axes each land on.
2900 crate::render::require_valid_dns_1123_label(
2901 cluster,
2902 || AplicacaoError::PlacementClusterEmpty,
2903 |reason| AplicacaoError::PlacementClusterInvalid {
2904 cluster: cluster.to_string(),
2905 reason,
2906 },
2907 )
2908}
2909
2910/// Reject `:placement :affinity` hints whose shape can never legitimately
2911/// land in any downstream selector or label-keyed routing axis. Thin
2912/// wrapper around [`crate::render::is_dns_1123_label`] that maps the
2913/// shared parser-shaped reason into the
2914/// [`AplicacaoError::PlacementAffinityInvalid`] variant, so the
2915/// diagnostic is self-locating (the offending `:affinity` is named
2916/// verbatim) and the author can grep their caixa.lisp for
2917/// `:affinity "<hint>"` and fix it in one edit.
2918///
2919/// The `:affinity` slot carries a placement-engine hint — canonical
2920/// examples in the M3 surface are `"data-locality"`, `"low-latency"`,
2921/// `"anti-affinity"` — that flows verbatim into the M3 Adaptive
2922/// compression overlay and the future M4 placement-engine's per-hint
2923/// routing axis. Each downstream consumer (caixa-mesh's
2924/// `placement.affinity` overlay at caixa-mesh/src/lib.rs:126, the
2925/// future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
2926/// `spec.placement.affinity` admission rule, the future M4 per-hint
2927/// node-affinity / pod-affinity rule generator keying off the same
2928/// value as a K8s `app.pleme.io/affinity-hint=<value>` label
2929/// selector) requires the value to be a DNS-1123 label — K8s label
2930/// values are bounded by `[a-z0-9A-Z_.-]{,63}` with a stricter
2931/// `[a-z0-9]([-a-z0-9]*[a-z0-9])?` floor in every identity-keyed
2932/// admission rule the apiserver enforces.
2933///
2934/// Until this gate landed an `:affinity "DataLocality"` (the canonical
2935/// TitleCase-from-an-ADR typo), `:affinity "data_locality"` (the
2936/// Python-module-name leak), `:affinity "data.locality"` (the
2937/// namespace-dot-on-a-label confusion), `:affinity "-data-locality"` /
2938/// `:affinity "data-locality-"` (boundary-hyphen violation),
2939/// `:affinity "data locality"` (paste-from-doc whitespace),
2940/// `:affinity "data-localité"` (un-Punycode-encoded IDN), or the
2941/// 64-byte over-cap slug silently passed the empty-only check and the
2942/// failure surfaced as a no-match at the M3 Adaptive compression
2943/// overlay's filter time (`placement.affinity` carried a malformed
2944/// value, no node matched, the workload landed on the default
2945/// heuristic) — the canonical "declared-but-inert" footgun mirroring
2946/// the empty-:affinity / empty-shard-key / zero-:politicas /
2947/// empty-:contratos-target gates already close on every other
2948/// declare-but-no-opinion axis. Lifting the rejection to a build-time
2949/// gate closes the fifth typed slot on the Aplicacao surface to land
2950/// on the canonical DNS-1123 label floor (after the four Servico-name
2951/// reference axes: `:membros :caixa` 3f9d7a0, `:placement :clusters`
2952/// 6c8c00b, `:contratos :de`/`:para` 8d5af6b, `:entrada :para`
2953/// b0e8748).
2954///
2955/// Same diagnostic shape as [`AplicacaoError::PlacementClusterInvalid`]
2956/// (6c8c00b) on the sibling `:placement :clusters` axis — both axes'
2957/// validated values are guaranteed-accepted by the apiserver without
2958/// re-validation at any downstream renderer or admission layer.
2959fn validate_placement_affinity(affinity: &str) -> Result<(), AplicacaoError> {
2960 // Empty is gated separately at the call site for a self-locating
2961 // diagnostic; re-checking here keeps the predicate usable from any
2962 // future call site (the M4 CR materializer's per-affinity
2963 // validator) without an empty-check footgun. Routes through the
2964 // shared [`crate::render::require_valid_dns_1123_label`] gate the
2965 // peer name axes each land on.
2966 crate::render::require_valid_dns_1123_label(
2967 affinity,
2968 || AplicacaoError::PlacementAffinityEmpty,
2969 |reason| AplicacaoError::PlacementAffinityInvalid {
2970 affinity: affinity.to_string(),
2971 reason,
2972 },
2973 )
2974}
2975
2976/// Reject `:placement :shard-key` extractor expressions whose shape can
2977/// never legitimately drive the future M4 Akka-style cluster-sharding
2978/// reconciler's hash-extractor pass. Maps the per-byte / length checks
2979/// into the [`AplicacaoError::ShardKeyInvalid`] variant, so the
2980/// diagnostic is self-locating (the offending `:shard-key` value is
2981/// named verbatim alongside the parser-shaped reason) and the author can
2982/// grep their caixa.lisp for `:shard-key "<expr>"` and fix it in one
2983/// edit.
2984///
2985/// The `:shard-key` slot is the Akka-cluster-sharding `ExtractEntityId`
2986/// axis (MESH-COMPOSITION §II.4) — a single-token entity-id extractor
2987/// expression naming the message property to hash on. The realistic
2988/// shapes in the wild (`tenantId` / `customerId` / `userId` — bare
2989/// property name; `$tenantId` — Akka entity-id placeholder;
2990/// `metadata.tenantId` / `$.user.id` — JSONPath-style nested reference;
2991/// `${tenant}` — interpolation-style template) all sit in the printable
2992/// ASCII subset; the realistic *non-shapes* (a paste-from-doc
2993/// multi-line blob landing in `:shard-key`, an embedded space from a
2994/// paste-from-aligned-doc, a trailing newline from a paste-from-shell
2995/// heredoc, a non-ASCII byte from a paste-from-Unicode-doc, the
2996/// `:shard-key "tenant Id"` typo) silently passed the prior empty-only
2997/// check and the failure surfaces at the future M4 reconciler's hash
2998/// pass as a runtime extractor-evaluation error far from the source
2999/// `caixa.lisp`, with no field naming which member's `:shard-key`
3000/// carried the offending value.
3001///
3002/// The contract — the printable ASCII single-token intersection-floor
3003/// every Akka-style entity-id extractor implementation admits:
3004///
3005/// - 1..=[`PLACEMENT_SHARD_KEY_MAX_LEN`] (63) bytes — same cap as the
3006/// peer DNS-1123-label-shaped `:placement :affinity` /
3007/// `:placement :clusters` identifier axes; realistic shard-keys sit
3008/// well under 32 bytes, the cap surfaces paste-from-doc multi-line
3009/// blob footguns at validate time;
3010/// - every byte in the printable ASCII range `0x21..=0x7E` —
3011/// rejects whitespace (space, tab, CR, LF — `"$tenant Id"` /
3012/// `"$tenantId\n"` from paste-from-aligned-doc /
3013/// paste-from-shell-heredoc), control characters (`\x00..\x1F`,
3014/// `\x7F` — the canonical "embedded null from a copy-paste-binary
3015/// footgun"), and non-ASCII bytes (`"$tenàntId"` —
3016/// un-Punycode-encoded IDN that round-trips inconsistently across
3017/// NFC/NFD normalization).
3018///
3019/// The accepted set is broader than the DNS-1123 label floor the peer
3020/// `:placement :clusters` / `:placement :affinity` axes use because the
3021/// `:shard-key` value is not a K8s `metadata.name` / label-selector
3022/// landing site; it's an extractor expression the future Akka-style
3023/// reconciler reads as a property reference. The realistic forms
3024/// (`$tenantId`, `metadata.tenantId`, `${tenant}`, `$.user.id`) carry
3025/// `$` / `.` / `{` / `}` characters that the DNS-1123 grammar forbids
3026/// but every Akka-style entity-id extractor parses. The
3027/// printable-ASCII-token floor accepts every shape any such extractor
3028/// would accept while rejecting the cross-implementation footguns
3029/// (whitespace breaks token boundaries; non-ASCII round-trips
3030/// inconsistently across YAML emitters and NFC/NFD normalization;
3031/// control characters silently corrupt the next read).
3032///
3033/// Until this gate landed `validate_placement` only refused the
3034/// `Some("")` empty arm via [`AplicacaoError::ShardedKeyEmpty`]; a
3035/// structurally invalid `:shard-key` (`":shard-key \" $tenantId\""` —
3036/// leading space from paste-from-aligned-doc, `":shard-key \"$tenant
3037/// Id\""` — embedded space, `":shard-key \"$tenantId\\n\""` — trailing
3038/// newline from paste-from-shell-heredoc, `":shard-key \"$tenàntId\""`
3039/// — un-Punycode-encoded IDN, `":shard-key \"$tenantId\\x01\""` —
3040/// control character from paste-from-binary, the 64-byte over-cap
3041/// paste-from-doc multi-line slug) silently passed validate. The future
3042/// M4 Akka-style cluster-sharding reconciler's hash-extractor pass
3043/// would then surface the malformed value either as a runtime
3044/// extractor-evaluation error (whitespace breaks the extractor's token
3045/// boundary, no match) or as a silently-different shard assignment
3046/// across YAML emitters (non-ASCII normalizes differently between the
3047/// caixa-mesh-side YAML emitter and the in-cluster reconciler's YAML
3048/// parser, the same entity ID maps to two distinct shards on a
3049/// re-render). Lifting the shape gate to caixa-build time makes the
3050/// extractor-floor invariant a structural property of every validated
3051/// `Placement`: every `Sharded` placement past `validate_placement` has
3052/// a `:shard-key` the future M4 reconciler can hash without
3053/// re-validating at the runtime layer.
3054///
3055/// Mirrors the [`AplicacaoError::ContratoSlotInvalid`] /
3056/// [`AplicacaoError::ContratoSubjectInvalid`] /
3057/// [`AplicacaoError::ContratoEndpointInvalid`] payload-axis shape gates
3058/// on the peer `:contratos` payload axes — each lifts the
3059/// runtime-side parser's intersection-floor to a caixa-build-time gate,
3060/// closing the canonical "this passed validate but the runtime parser
3061/// rejected it" surprise.
3062fn validate_placement_shard_key(key: &str) -> Result<(), AplicacaoError> {
3063 // Empty is gated separately at the call site via the more
3064 // self-locating [`AplicacaoError::ShardedKeyEmpty`] diagnostic;
3065 // re-checking here keeps the predicate usable from any future call
3066 // site (the M4 CR materializer's per-shard-key validator) without
3067 // an empty-check footgun.
3068 if key.is_empty() {
3069 return Err(AplicacaoError::ShardedKeyEmpty);
3070 }
3071 if key.len() > PLACEMENT_SHARD_KEY_MAX_LEN {
3072 return Err(AplicacaoError::ShardKeyInvalid {
3073 shard_key: key.to_string(),
3074 reason: format!(
3075 "exceeds :shard-key max length of {PLACEMENT_SHARD_KEY_MAX_LEN} bytes \
3076 (got {} bytes; realistic Akka-style entity-id extractor expressions \
3077 — `tenantId`, `$tenantId`, `metadata.tenantId`, `${{tenant}}` — sit \
3078 well under 32 bytes, this length suggests a paste-from-doc \
3079 multi-line blob landed in `:shard-key` instead of a single-token \
3080 extractor expression)",
3081 key.len()
3082 ),
3083 });
3084 }
3085 for &b in key.as_bytes() {
3086 if (0x21..=0x7E).contains(&b) {
3087 continue;
3088 }
3089 let reason = if b == b' ' {
3090 "contains a space (Akka-style entity-id extractor expressions are \
3091 single-token references like `tenantId` / `$tenantId` / `metadata.tenantId`; \
3092 whitespace breaks the extractor's token boundary at the runtime layer, \
3093 and the paste-from-aligned-doc / paste-from-CSV footgun silently lands \
3094 a multi-token blob in one `:shard-key` slot)"
3095 .to_string()
3096 } else if b == b'\t' {
3097 "contains a tab character (paste-from-aligned-doc footgun; the \
3098 Akka-style entity-id extractor reads `:shard-key` as a single-token \
3099 reference, embedded whitespace breaks the token boundary at the \
3100 runtime hash-extractor pass)"
3101 .to_string()
3102 } else if b == b'\n' || b == b'\r' {
3103 format!(
3104 "contains line terminator 0x{b:02x} (paste-from-shell-heredoc / \
3105 paste-from-multiline-doc footgun; the Akka-style entity-id \
3106 extractor reads `:shard-key` as a single-token reference, embedded \
3107 newlines either truncate the value at the YAML emitter layer or \
3108 break the token boundary at the runtime hash-extractor pass)"
3109 )
3110 } else if b < 0x20 || b == 0x7F {
3111 format!(
3112 "contains control character 0x{b:02x} (the canonical \
3113 paste-from-binary / paste-from-screen-cleared-terminal footgun; \
3114 control characters silently corrupt round-trip serialization \
3115 across YAML emitters and break the runtime hash-extractor's \
3116 single-token parser)"
3117 )
3118 } else {
3119 format!(
3120 "contains non-ASCII byte 0x{b:02x} (the canonical \
3121 paste-from-Unicode-doc footgun; non-ASCII bytes round-trip \
3122 inconsistently across NFC/NFD normalization on APFS / ext4 / \
3123 across YAML emitter implementations — the same entity ID can \
3124 silently map to two distinct shards on a re-render. Use a \
3125 printable-ASCII extractor expression like `tenantId`, \
3126 `$tenantId`, or `metadata.tenantId`)"
3127 )
3128 };
3129 return Err(AplicacaoError::ShardKeyInvalid {
3130 shard_key: key.to_string(),
3131 reason,
3132 });
3133 }
3134 Ok(())
3135}
3136
3137/// Reject `:contratos :de` / `:contratos :para` values whose shape
3138/// can never legitimately match a validated `:membros :caixa`. Thin
3139/// wrapper around [`crate::render::is_dns_1123_label`] that maps the
3140/// shared parser-shaped reason into the
3141/// [`AplicacaoError::ContratoCaixaInvalid`] variant, so the per-edge
3142/// diagnostic is self-locating (which slot — `:de` or `:para` — and
3143/// the offending value verbatim) and the author can grep their
3144/// caixa.lisp for `:de "<name>"` / `:para "<name>"` and fix it in
3145/// one edit.
3146///
3147/// Until this gate landed an empty or DNS-1123-malformed `:de` /
3148/// `:para` (`:de ""`, `:de "Cart"` the canonical TitleCase-from-an-ADR
3149/// typo, `:de "my_cart"` the Python-module-name leak, `:de "team.cart"`
3150/// the namespace-dot-on-a-label confusion, `:de "-cart"` / `:de "cart-"`
3151/// the boundary-hyphen violation, the 64-byte over-cap slug, `:de "café"`
3152/// un-Punycode-encoded IDN) silently passed the per-axis check and
3153/// surfaced as [`AplicacaoError::ContratoMemberMissing`] at the
3154/// membership lookup — diagnostic-framed as "this caixa is not in
3155/// `:membros`" when the root cause is "this `:de` value is not a
3156/// well-shaped Servico-name identifier and could never legitimately
3157/// match any validated member". Because every `:membros :caixa` is
3158/// shape-validated through [`validate_membro_caixa`] (3f9d7a0), the
3159/// `names` HashSet structurally never contains an empty / malformed
3160/// string, so the membership lookup arm misframes every empty /
3161/// malformed input. Lifting the shape arm ahead of the lookup
3162/// preserves the legitimate `ContratoMemberMissing` arm (a
3163/// well-shaped `:de` that simply isn't in `:membros` — a phantom
3164/// reference) while routing every structurally-impossible-to-match
3165/// input through the narrower self-locating shape diagnostic.
3166///
3167/// Same diagnostic shape as [`AplicacaoError::MembroCaixaInvalid`]
3168/// (3f9d7a0) and [`AplicacaoError::PlacementClusterInvalid`]
3169/// (6c8c00b) — the third Aplicacao-level Servico-name reference axis
3170/// to land on the canonical [`crate::render::is_dns_1123_label`]
3171/// floor. The `slot: &'static str` field carries the kebab-case
3172/// `:de` / `:para` tag verbatim, mirroring [`BehaviorSpec::validate`]'s
3173/// per-callback-slot diagnostic shape and the
3174/// [`ManifestError::CodePathDuplicate`] (e113ace) / [`DepError::DepIsSelf`]
3175/// (85f102c) cross-list-tag pattern.
3176fn validate_contrato_caixa(slot: &'static str, caixa: &str) -> Result<(), AplicacaoError> {
3177 // Routes through the shared
3178 // [`crate::render::require_valid_dns_1123_label`] gate the peer
3179 // name axes each land on. The `slot: &'static str` field flows
3180 // through both error variants so the diagnostic names which
3181 // per-edge axis (`:de` vs `:para`) the offending value came from.
3182 crate::render::require_valid_dns_1123_label(
3183 caixa,
3184 || AplicacaoError::ContratoCaixaEmpty { slot },
3185 |reason| AplicacaoError::ContratoCaixaInvalid {
3186 slot,
3187 caixa: caixa.to_string(),
3188 reason,
3189 },
3190 )
3191}
3192
3193/// Reject `:entrada :para` values whose shape can never legitimately
3194/// match a validated `:membros :caixa`. Thin wrapper around
3195/// [`crate::render::is_dns_1123_label`] that maps the shared parser-
3196/// shaped reason into the [`AplicacaoError::EntradaParaInvalid`]
3197/// variant, so the diagnostic is self-locating (the offending
3198/// `:entrada :para` value is named verbatim) and the author can grep
3199/// their caixa.lisp for `:para "<name>"` and fix it in one edit.
3200///
3201/// Until this gate landed an empty or DNS-1123-malformed `:entrada
3202/// :para` (`:para ""`, `:para "Cart"` the canonical TitleCase-from-an-
3203/// ADR typo, `:para "my_cart"` the Python-module-name leak,
3204/// `:para "team.cart"` the namespace-dot-on-a-label confusion,
3205/// `:para "-cart"` / `:para "cart-"` the boundary-hyphen violation,
3206/// the 64-byte over-cap slug, `:para "café"` un-Punycode-encoded IDN)
3207/// silently passed the per-axis check and surfaced as
3208/// [`AplicacaoError::EntradaMemberMissing`] at the membership lookup
3209/// — diagnostic-framed as "this caixa is not in `:membros`" when the
3210/// root cause is "this `:entrada :para` value is not a well-shaped
3211/// Servico-name identifier and could never legitimately match any
3212/// validated member". Because every `:membros :caixa` is shape-
3213/// validated through [`validate_membro_caixa`] (3f9d7a0), the `names`
3214/// `HashSet` structurally never contains an empty / malformed string,
3215/// so the membership lookup arm misframes every empty / malformed
3216/// input. Lifting the shape arm ahead of the lookup preserves the
3217/// legitimate `EntradaMemberMissing` arm (a well-shaped `:para` that
3218/// simply isn't in `:membros` — a phantom reference) while routing
3219/// every structurally-impossible-to-match input through the narrower
3220/// self-locating shape diagnostic.
3221///
3222/// Same diagnostic shape as [`AplicacaoError::MembroCaixaInvalid`]
3223/// (3f9d7a0), [`AplicacaoError::PlacementClusterInvalid`] (6c8c00b),
3224/// and [`AplicacaoError::ContratoCaixaInvalid`] (8d5af6b) — the
3225/// fourth and last Aplicacao-level Servico-name reference axis to
3226/// land on the canonical [`crate::render::is_dns_1123_label`] floor.
3227/// No `slot: &'static str` field because there is only one axis
3228/// (`:entrada :para`), unlike the dual-axis `:contratos :de`/`:para`;
3229/// the simpler shape mirrors [`validate_membro_caixa`] and
3230/// [`validate_placement_cluster`].
3231fn validate_entrada_para(para: &str) -> Result<(), AplicacaoError> {
3232 // Empty is gated separately at the call site for a self-locating
3233 // diagnostic; re-checking here keeps the predicate usable from any
3234 // future call site (the M4 CR materializer's per-`:entrada`
3235 // validator) without an empty-check footgun. Routes through the
3236 // shared [`crate::render::require_valid_dns_1123_label`] gate the
3237 // peer name axes each land on.
3238 crate::render::require_valid_dns_1123_label(
3239 para,
3240 || AplicacaoError::EntradaParaEmpty,
3241 |reason| AplicacaoError::EntradaParaInvalid {
3242 para: para.to_string(),
3243 reason,
3244 },
3245 )
3246}
3247
3248/// Reject `:entrada :host` values the K8s Gateway API v1 apiserver
3249/// would refuse at admission time. The contract — exactly the regex
3250/// the Gateway API CRD's OpenAPI schema enforces on `Listener.hostname`
3251/// and `HTTPRoute.spec.hostnames[]`,
3252/// `^(\*\.)?[a-z0-9]([-a-z0-9]*[a-z0-9])?(\.[a-z0-9]([-a-z0-9]*[a-z0-9])?)*$`
3253/// (max length 253; per-label max length 63):
3254///
3255/// - lowercase RFC 1123 DNS subdomain (`[a-z0-9-]` only; no
3256/// uppercase, no underscore, no Unicode/IDN — IDN must be
3257/// pre-encoded as Punycode `xn--…` by the author);
3258/// - exactly one optional leading wildcard label (`*.`); a wildcard
3259/// in any non-leading label position is rejected;
3260/// - each `.`-separated label is 1..=63 bytes, with non-hyphen
3261/// alphanumeric at both boundaries (no `-foo`, no `foo-`);
3262/// - total length 1..=253 bytes;
3263/// - no IPv4 literal (Gateway API forbids IP literals);
3264/// - no scheme (`https://`, `http://`), no port (`:8080`), no
3265/// whitespace, no path (`/`).
3266///
3267/// Lifted as a typed gate (rather than an inline cascade in
3268/// `validate()`) so the contract lives in one place — every future
3269/// per-host axis (the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
3270/// materializer's host validator, the future per-`:entrada` SAN
3271/// emission for cert-manager Certificates, the multi-`:entrada`
3272/// host-collision gate when M4 lands `:entrada` as a `Vec`) reaches
3273/// for the same predicate, not its own. Same compounding shape as
3274/// `is_canonical_rate_limit_window` (808017c) and
3275/// [`WitTarget::label`] (previously the free `contrato_target_label`
3276/// helper, 5dbcfaf; lifted onto the typed [`WitTarget`] enum so the
3277/// per-variant label match is compiler-checked-exhaustive).
3278///
3279/// The diagnostic carries the offending `host:` verbatim plus a
3280/// parser-shaped `reason:` naming the specific violation, so the
3281/// author can grep their caixa.lisp for `:host "<host>"` and fix it
3282/// in one edit. Same diagnostic shape as `MembroVersaoInvalid`
3283/// (9888b13).
3284fn validate_entrada_host(host: &str) -> Result<(), AplicacaoError> {
3285 // Empty is already gated by `EmptyEntradaHost` at the call site;
3286 // re-checking here keeps the predicate usable from any future
3287 // call site (M4 CR materializer) without an empty-check footgun.
3288 if host.is_empty() {
3289 return Err(AplicacaoError::EmptyEntradaHost);
3290 }
3291 if host.len() > crate::render::GATEWAY_API_HOSTNAME_MAX_LEN {
3292 return Err(AplicacaoError::EntradaHostInvalid {
3293 host: host.to_string(),
3294 reason: format!(
3295 "exceeds Gateway API v1 Hostname max length of {cap} bytes \
3296 (got {} bytes; the K8s apiserver rejects longer hostnames at admission time)",
3297 host.len(),
3298 cap = crate::render::GATEWAY_API_HOSTNAME_MAX_LEN,
3299 ),
3300 });
3301 }
3302 if host.contains("://") {
3303 return Err(AplicacaoError::EntradaHostInvalid {
3304 host: host.to_string(),
3305 reason: "must not carry a scheme (drop the `https://` or `http://` prefix; \
3306 Gateway API takes the bare hostname)"
3307 .to_string(),
3308 });
3309 }
3310 if host.contains('/') {
3311 return Err(AplicacaoError::EntradaHostInvalid {
3312 host: host.to_string(),
3313 reason: "must not carry a path (drop the `/…` suffix; Gateway API path \
3314 matching is in `:entrada :paths`)"
3315 .to_string(),
3316 });
3317 }
3318 // After the `://` scheme-prefix and `/` path arms have ruled out the
3319 // two `:`-bearing shapes the Gateway API actively rejects with
3320 // location-shaped diagnostics, any remaining `:` in the host body is
3321 // either the canonical "I put the port in the `:host` slot"
3322 // authoring footgun (`"checkout.quero.cloud:8080"` — the `:port`
3323 // slot lives one axis away on the same `:entrada` block) or an
3324 // unbracketed IPv6 literal (`"2001:db8::1"`) which Gateway API v1
3325 // Hostname forbids identically to the IPv4-literal arm below. Both
3326 // shapes silently fell through the `://` and `/` arms before this
3327 // lift and surfaced as a deep `label "<rest>:<port>" contains
3328 // invalid character ':'` diagnostic from the per-byte loop near the
3329 // bottom of this predicate, which named the offending byte but not
3330 // the canonical authoring fix — for the port case the author has to
3331 // know the `:entrada` block carries a separate `:port u16` slot
3332 // (`caixa-core/src/aplicacao.rs:1667`, `default_port = 8080`) and
3333 // move the value over; for the IPv6 case the author has to know
3334 // Gateway API v1 forbids IP literals across the board. The contract
3335 // doc-comment above already promises "no port (`:8080`)" verbatim
3336 // in the rejected-shape enumeration but the predicate's
3337 // implementation refused the `:` only as a side-effect of the
3338 // per-label `[a-z0-9-]` character-class loop; this arm brings the
3339 // implementation in line with the documented contract by surfacing
3340 // the canonical fix at the top-level shape gate, peer with how the
3341 // `://` arm names the scheme prefix and the `/` arm names the
3342 // `:entrada :paths` axis. Same compounding trajectory the recent
3343 // `is_gateway_api_http_path` (6a17961) per-byte tightening followed
3344 // — the typed slot's rejected set matches the apiserver's rejected
3345 // set, structurally, with a self-locating diagnostic at the
3346 // offending axis instead of a deep parser-shape leak.
3347 if host.contains(':') {
3348 return Err(AplicacaoError::EntradaHostInvalid {
3349 host: host.to_string(),
3350 reason: "must not contain `:` (the port belongs in the `:entrada :port` \
3351 slot — a separate `u16` axis on the same `:entrada` block, \
3352 defaulting to 8080 — not in the host body; drop the `:<port>` \
3353 suffix and author the bare hostname. If you intended an IPv6 \
3354 literal (`2001:db8::1` / `::1` / `fe80::1`), Gateway API v1 \
3355 Hostname forbids IP literals identically to the IPv4-literal \
3356 arm — use a DNS name)"
3357 .to_string(),
3358 });
3359 }
3360 // Routed through the lifted [`crate::render::find_ascii_whitespace_byte`]
3361 // predicate — the same single source of truth every peer
3362 // ASCII-whitespace scan in caixa-core flows through: the four
3363 // typed-magnitude codec sites (`limits::parse_byte_size` backing
3364 // `:limits :memory`, `limits::parse_duration` backing `:limits
3365 // :wall-clock`, `limits::parse_millicores` backing `:limits :cpu`,
3366 // `aplicacao::rate_limit_codec::parse` backing `:politicas
3367 // :rate-limit`) and the shared duration codec
3368 // (`supervisor::duration_codec::parse`) backing `:supervisor
3369 // :restart-window` / `:politicas :timeout` / `:politicas
3370 // :circuit-breaker :window`. This landing closes the last string-typed
3371 // slot in caixa-core still calling `.bytes().any(|b|
3372 // b.is_ascii_whitespace())` inline — every ASCII-whitespace scan
3373 // across every typed slot now shares one predicate, so a future
3374 // stricter classification (BOM `\u{FEFF}` / ZWSP `\u{200B}` / ZWJ
3375 // `\u{200D}` — the "invisible but not `char::is_whitespace`" class
3376 // deliberately excluded from the peer non-ASCII predicate) can
3377 // extend at this shared site in one edit rather than seven
3378 // independent scans diverging over time. Naming the offending byte
3379 // in the diagnostic (`0x20` space / `0x09` tab / `0x0a` LF / `0x0c`
3380 // FF / `0x0d` CR) matches the substrate-wide "the diagnostic carries
3381 // the offending byte verbatim" discipline every peer codec site
3382 // already carries (`limits.rs:722` / `limits.rs:784` / `limits.rs:845`
3383 // / `supervisor.rs:823` / `aplicacao.rs:1640`).
3384 if let Some(b) = crate::render::find_ascii_whitespace_byte(host) {
3385 return Err(AplicacaoError::EntradaHostInvalid {
3386 host: host.to_string(),
3387 reason: format!(
3388 "contains ASCII whitespace byte 0x{b:02x} (Gateway API v1 \
3389 Hostname is a single-token DNS name — leading, trailing, \
3390 or embedded whitespace breaks the K8s apiserver's Hostname \
3391 regex at admission time; the paste-from-aligned-doc / \
3392 paste-from-shell-history / paste-from-CSV footgun silently \
3393 lands a multi-token blob in `:entrada :host`. Strip every \
3394 whitespace byte and author the bare hostname — space \
3395 `0x20`, tab `0x09`, LF `0x0a`, FF `0x0c`, CR `0x0d` all \
3396 refuse identically)"
3397 ),
3398 });
3399 }
3400 // Peer of the ASCII-whitespace scan above: route the non-ASCII
3401 // subset of Unicode `White_Space` through the shared
3402 // [`crate::render::find_non_ascii_whitespace_char`] predicate — the
3403 // single source of truth every peer non-ASCII-whitespace scan in
3404 // caixa-core flows through: `limits::parse_byte_size` (`:limits
3405 // :memory`), `limits::parse_duration` (`:limits :wall-clock`),
3406 // `limits::parse_millicores` (`:limits :cpu`),
3407 // `aplicacao::rate_limit_codec::parse` (`:politicas :rate-limit`),
3408 // and `supervisor::duration_codec::parse` (`:supervisor
3409 // :restart-window` / `:politicas :timeout` / `:politicas
3410 // :circuit-breaker :window`). Before this arm, a NBSP-prefixed host
3411 // (`"\u{00A0}checkout.quero.cloud"` — paste-from-typography), a
3412 // LINE-SEPARATOR-suffixed host (`"checkout.quero.cloud\u{2028}"` —
3413 // paste-from-web-doc), or an EM-SPACE-split host
3414 // (`"checkout.\u{2003}quero.cloud"` — paste-from-typography)
3415 // survived this predicate's ASCII byte-scan (none of the UTF-8
3416 // bytes of `\u{00A0}` / `\u{2028}` / `\u{2003}` match
3417 // `u8::is_ascii_whitespace`), then landed on the per-label
3418 // `bytes[0].is_ascii_alphanumeric()` arm near the bottom of this
3419 // predicate with the generic `label "…" must start and end with an
3420 // alphanumeric` diagnostic — a "far from source at build-time"
3421 // leak that names the label-shape violation but not the
3422 // paste-from-typography origin the author actually needs to fix.
3423 // Peer with the four codec sites the 1b75b38 landing pinned: the
3424 // typed slot's diagnostic axis names the offending codepoint
3425 // (`U+XXXX`) verbatim rather than laundering the value through a
3426 // downstream label-shape arm, so the author can grep their
3427 // caixa.lisp for the invisible codepoint at the surfaced position
3428 // rather than eyeball a multi-byte host for embedded NBSP / LINE
3429 // SEPARATOR / EM-SPACE. Same "single lifted source of truth"
3430 // discipline the peer ASCII-whitespace arm (720ac3b) carries:
3431 // drift between any two typed-slot sites' non-ASCII-whitespace
3432 // rejection set becomes a single-edit fix at the shared predicate
3433 // rather than N independent inline scans diverging over time, and
3434 // a future stricter classification (BOM `\u{FEFF}` / ZWSP
3435 // `\u{200B}` / ZWJ `\u{200D}` — the "invisible but not
3436 // `char::is_whitespace`" class the peer non-ASCII predicate's
3437 // doc-comment names as the follow-up trajectory) extends at the
3438 // shared predicate in one edit rather than seven.
3439 if let Some(ch) = crate::render::find_non_ascii_whitespace_char(host) {
3440 return Err(AplicacaoError::EntradaHostInvalid {
3441 host: host.to_string(),
3442 reason: format!(
3443 "contains non-ASCII Unicode whitespace character {ch:?} \
3444 (U+{codepoint:04X}) — Gateway API v1 Hostname is a \
3445 single-token DNS name limited to `[a-z0-9-]` labels; \
3446 the paste-from-typography footgun silently lands an \
3447 invisible codepoint (NBSP `U+00A0`, LINE SEPARATOR \
3448 `U+2028`, EM-SPACE `U+2003`, IDEOGRAPHIC SPACE \
3449 `U+3000`, and every other member of the Unicode \
3450 `White_Space` property outside the ASCII byte range) \
3451 in `:entrada :host`, which the K8s apiserver's \
3452 Hostname regex refuses at admission time far from the \
3453 caixa.lisp source line. Strip every non-ASCII \
3454 whitespace character and author the bare hostname \
3455 with only ASCII bytes (write \"checkout.quero.cloud\" \
3456 verbatim)",
3457 codepoint = ch as u32,
3458 ),
3459 });
3460 }
3461
3462 // Strip the optional single leading wildcard label *before* the
3463 // trailing-dot check so the bare `"*."` form surfaces the more
3464 // self-locating "wildcard without domain" diagnostic instead of
3465 // the generic "trailing dot" one.
3466 let (had_wildcard, rest) = match host.strip_prefix("*.") {
3467 Some(r) => (true, r),
3468 None => (false, host),
3469 };
3470 if had_wildcard && rest.is_empty() {
3471 return Err(AplicacaoError::EntradaHostInvalid {
3472 host: host.to_string(),
3473 reason: "wildcard `*.` must be followed by a domain (e.g. `*.example.com`)".to_string(),
3474 });
3475 }
3476 if rest.contains('*') {
3477 return Err(AplicacaoError::EntradaHostInvalid {
3478 host: host.to_string(),
3479 reason: "wildcard `*` is allowed only as the first label (`*.example.com`); \
3480 no inner or trailing `*` labels"
3481 .to_string(),
3482 });
3483 }
3484 if rest.ends_with('.') {
3485 return Err(AplicacaoError::EntradaHostInvalid {
3486 host: host.to_string(),
3487 reason: "must not have a trailing `.` (Gateway API hostnames are not \
3488 fully-qualified with a root dot; the apiserver regex rejects \
3489 trailing dots)"
3490 .to_string(),
3491 });
3492 }
3493
3494 // Reject pure IPv4 literals: four dot-separated labels, every
3495 // label all-ASCII-digits. Gateway API v1 explicitly forbids IP
3496 // literals as Hostnames.
3497 let labels: Vec<&str> = rest.split('.').collect();
3498 if labels.len() == 4
3499 && labels
3500 .iter()
3501 .all(|l| !l.is_empty() && l.bytes().all(|b| b.is_ascii_digit()))
3502 {
3503 return Err(AplicacaoError::EntradaHostInvalid {
3504 host: host.to_string(),
3505 reason: "must not be an IPv4 literal (Gateway API v1 Hostname forbids IP \
3506 literals; use a DNS name)"
3507 .to_string(),
3508 });
3509 }
3510
3511 // Per-label shape: 1..=63 bytes, lowercase ASCII alphanumeric +
3512 // hyphen, with non-hyphen at both boundaries.
3513 for label in &labels {
3514 if label.is_empty() {
3515 return Err(AplicacaoError::EntradaHostInvalid {
3516 host: host.to_string(),
3517 reason: "has an empty label (consecutive `..` or a leading `.`)".to_string(),
3518 });
3519 }
3520 if label.len() > crate::render::DNS_1123_LABEL_MAX_LEN {
3521 return Err(AplicacaoError::EntradaHostInvalid {
3522 host: host.to_string(),
3523 reason: format!(
3524 "label {label:?} exceeds DNS-1123 label max length of \
3525 {cap} bytes (got {} bytes)",
3526 label.len(),
3527 cap = crate::render::DNS_1123_LABEL_MAX_LEN,
3528 ),
3529 });
3530 }
3531 let bytes = label.as_bytes();
3532 if !bytes[0].is_ascii_alphanumeric() || !bytes[bytes.len() - 1].is_ascii_alphanumeric() {
3533 return Err(AplicacaoError::EntradaHostInvalid {
3534 host: host.to_string(),
3535 reason: format!(
3536 "label {label:?} must start and end with an alphanumeric \
3537 (no leading or trailing `-`)"
3538 ),
3539 });
3540 }
3541 for &b in bytes {
3542 let valid = b.is_ascii_digit() || b.is_ascii_lowercase() || b == b'-';
3543 if !valid {
3544 let msg = if b.is_ascii_uppercase() {
3545 format!(
3546 "label {label:?} contains uppercase character {ch:?} \
3547 (Gateway API hostnames are lowercase-only; use {lower:?})",
3548 ch = b as char,
3549 lower = label.to_ascii_lowercase()
3550 )
3551 } else if b == b'_' {
3552 format!(
3553 "label {label:?} contains `_` (Gateway API hostnames \
3554 allow only `[a-z0-9-]`; use `-` instead)"
3555 )
3556 } else {
3557 format!(
3558 "label {label:?} contains invalid character {ch:?} \
3559 (Gateway API hostnames allow only `[a-z0-9-]`)",
3560 ch = b as char
3561 )
3562 };
3563 return Err(AplicacaoError::EntradaHostInvalid {
3564 host: host.to_string(),
3565 reason: msg,
3566 });
3567 }
3568 }
3569 }
3570 Ok(())
3571}
3572
3573/// Reject `:entrada :paths` entries the K8s Gateway API v1 apiserver
3574/// would refuse at admission time. Thin wrapper around
3575/// [`crate::render::is_gateway_api_http_path`] that maps the shared
3576/// parser-shaped reason into the [`AplicacaoError::EntradaPathInvalid`]
3577/// variant, preserving the more self-locating
3578/// [`AplicacaoError::EntradaPathEmpty`] /
3579/// [`AplicacaoError::EntradaPathNotAbsolute`] diagnostics when the
3580/// path fails those narrower invariants first.
3581///
3582/// The contract is the canonical HTTP-path grammar — `1..=
3583/// [`crate::render::GATEWAY_API_HTTP_PATH_MAX_LEN`] (1024) bytes,
3584/// leading `/`, no consecutive `/`, no `.`/`..` segments, no `?`/`#`/
3585/// whitespace/control/non-ASCII bytes — shared with the
3586/// `:contratos :endpoint` axis through the lifted predicate so drift
3587/// between either landing site and the K8s apiserver-side
3588/// HTTPPathMatch.value OpenAPI schema is a build error visible at
3589/// the predicate, not a per-renderer "this passed validate but failed
3590/// admission" surprise. The diagnostic carries the offending `path:`
3591/// verbatim plus a parser-shaped `reason:` naming the specific
3592/// violation, so the author can grep their caixa.lisp for `:paths`
3593/// and fix it in one edit. Same diagnostic shape as
3594/// [`AplicacaoError::ContratoEndpointInvalid`] on the peer HTTP-path
3595/// axis.
3596fn validate_entrada_path(path: &str) -> Result<(), AplicacaoError> {
3597 // Empty and missing-leading-`/` are already gated at the call
3598 // site by `EntradaPathEmpty` and `EntradaPathNotAbsolute`; re-
3599 // checking here keeps the per-axis narrower diagnostics in force
3600 // when the predicate is reached directly (and `is_gateway_api_http_path`
3601 // itself defends against `bytes[0]`-style indexing on empty
3602 // input).
3603 if path.is_empty() {
3604 return Err(AplicacaoError::EntradaPathEmpty);
3605 }
3606 if !path.starts_with('/') {
3607 return Err(AplicacaoError::EntradaPathNotAbsolute {
3608 path: path.to_string(),
3609 });
3610 }
3611 crate::render::is_gateway_api_http_path(path).map_err(|reason| {
3612 AplicacaoError::EntradaPathInvalid {
3613 path: path.to_string(),
3614 reason,
3615 }
3616 })
3617}
3618
3619mod rate_limit_codec {
3620 // `Duration` is no longer named here — the codec routes through
3621 // the module-scope [`super::rate_limit_window_from_unit`] /
3622 // [`super::rate_limit_window_unit`] projections that carry the
3623 // canonical typed `Duration` unit-table axis on their signatures.
3624 use super::RateLimit;
3625 use serde::{Deserialize, Deserializer, Serializer};
3626
3627 pub fn serialize<S: Serializer>(v: &Option<RateLimit>, s: S) -> Result<S::Ok, S::Error> {
3628 match v {
3629 Some(rl) => s.serialize_str(&render(*rl)),
3630 None => s.serialize_none(),
3631 }
3632 }
3633
3634 pub fn deserialize<'de, D: Deserializer<'de>>(d: D) -> Result<Option<RateLimit>, D::Error> {
3635 let opt: Option<String> = Option::deserialize(d)?;
3636 match opt {
3637 None => Ok(None),
3638 Some(s) => parse(&s).map(Some).map_err(serde::de::Error::custom),
3639 }
3640 }
3641
3642 fn parse(s: &str) -> Result<RateLimit, String> {
3643 // Whitespace-rejection arm — peer with the leading-`+`
3644 // (`"+100/s"`) and leading-zero (`"0100/s"`) arms below on the
3645 // same canonical-form render-determinism axis. Until this gate
3646 // landed the parser silently tolerated leading / trailing /
3647 // internal whitespace via the top-level `s.trim()` and the
3648 // per-part `rate_str.trim()` / `unit.trim()` calls, so every
3649 // whitespace-carrying shape (`" 100/s"`, `"100/s "`,
3650 // `"100 /s"`, `"100/ s"`, `"100 / s"`, `"100/s\n"`,
3651 // `"\t100/s"`) parsed to the same `RateLimit { 100, 1s }` and
3652 // serde silently round-tripped to `"100/s"` on the next emit
3653 // (a *different* canonical string) — breaking the THEORY.md
3654 // Part V render-determinism contract on the same
3655 // canonical-form-drift axis the leading-`+` arm below (the
3656 // 4eeae98 predecessor) and the leading-zero arm below (the
3657 // 4f46830 predecessor) already close.
3658 //
3659 // The canonical author shape is `<integer>/<s|m|h>` with no
3660 // whitespace bytes anywhere — every string [`render`] emits
3661 // carries none, so the parser's accepted set must match for
3662 // serialize / deserialize to round-trip losslessly. This gate
3663 // makes the pre-existing `s.trim()` / `rate_str.trim()` /
3664 // `unit.trim()` calls below strict no-ops on the accepted set
3665 // (every byte-position match they would perform is now already
3666 // trimmed away by the accepted set itself), while the arm
3667 // surfaces every rejected whitespace-carrying shape with a
3668 // self-locating diagnostic naming the offending byte and the
3669 // canonical form the author intended, peer with every prior
3670 // canonical-form-drift arm on this codec.
3671 //
3672 // Routed through the lifted
3673 // [`crate::render::find_ascii_whitespace_byte`] predicate — the
3674 // same source of truth the four peer typed-magnitude codec
3675 // sites (`limits::parse_byte_size`, `limits::parse_duration`,
3676 // `limits::parse_millicores`, `supervisor::duration_codec`)
3677 // share. `u8::is_ascii_whitespace()` at the predicate covers
3678 // the five WhatWG-conformant ASCII whitespace bytes (space,
3679 // tab, LF, FF, CR); the "single lifted predicate" discipline
3680 // the peer non-ASCII arm below carries on the strictly-
3681 // complementary Unicode `White_Space` class extends here to
3682 // the ASCII byte set as well.
3683 if let Some(b) = crate::render::find_ascii_whitespace_byte(s) {
3684 return Err(format!(
3685 "rate-limit: value {s:?} contains whitespace byte 0x{b:02x} — the canonical \
3686 authoring form for `:politicas :rate-limit` is `<integer>/<s|m|h>` (e.g. \
3687 `\"100/s\"`, `\"5000/m\"`, `\"10000/h\"`) with no whitespace bytes \
3688 anywhere. A whitespace-carrying shape (`\" 100/s\"`, `\"100/s \"`, \
3689 `\"100 /s\"`, `\"100/ s\"`, `\"100 / s\"`, `\"100/s\\n\"`, `\"\\t100/s\"`) \
3690 round-trips through `render` to a *different* canonical form (`\"100/s\"`) \
3691 on first serialize — breaking the THEORY.md Part V render-determinism \
3692 contract every typed slot carries. Strip every whitespace byte (write \
3693 `\"100/s\"` verbatim)"
3694 ));
3695 }
3696 // Non-ASCII Unicode `White_Space` arm — the strictly-
3697 // complementary class the ASCII arm above cannot see.
3698 // `str::trim` at the top of every peer codec uses
3699 // `char::is_whitespace` (Unicode `White_Space`, strictly
3700 // wider than the ASCII byte set), so an NBSP (`\u{00A0}`) /
3701 // LINE SEPARATOR (`\u{2028}`) / EM-SPACE (`\u{2003}`)
3702 // survives the byte-scan (its UTF-8 bytes are not in
3703 // `is_ascii_whitespace`), gets silently stripped by the
3704 // top-level `s.trim()` below, and the value round-trips
3705 // through `render` to a *different* canonical form
3706 // (`\"100/s\"`) on next emit — breaking the THEORY.md Part V
3707 // render-determinism contract every typed slot carries.
3708 // Closed here (`:politicas :rate-limit`) and at the three
3709 // peer codec sites (`limits::parse_byte_size`,
3710 // `limits::parse_duration`, `supervisor::duration_codec`)
3711 // through the shared
3712 // [`crate::render::find_non_ascii_whitespace_char`] predicate
3713 // — the "single lifted predicate across all four codec sites
3714 // in one follow-up run" the 24a8ad4 commit body's `Forward
3715 // compounding` bullet named as the next compounding step.
3716 if let Some(ch) = crate::render::find_non_ascii_whitespace_char(s) {
3717 return Err(format!(
3718 "rate-limit: value {s:?} contains non-ASCII Unicode whitespace character \
3719 {ch:?} (U+{cp:04X}) — the canonical authoring form for `:politicas \
3720 :rate-limit` is `<integer>/<s|m|h>` (e.g. `\"100/s\"`, `\"5000/m\"`, \
3721 `\"10000/h\"`) with no whitespace characters anywhere (ASCII or Unicode). \
3722 A non-ASCII-whitespace-carrying shape (`\"\\u{{00A0}}100/s\"`, \
3723 `\"100/s\\u{{2028}}\"`, `\"100\\u{{2003}}/s\"`) survives the ASCII \
3724 byte-scan but `str::trim` (which uses `char::is_whitespace` — the \
3725 Unicode `White_Space` property, strictly wider than the ASCII byte set) \
3726 silently strips it at parse entry, and the value round-trips through \
3727 `render` to a *different* canonical form (`\"100/s\"`) on first \
3728 serialize — breaking the THEORY.md Part V render-determinism contract \
3729 every typed slot carries. Strip every non-ASCII whitespace character \
3730 (write `\"100/s\"` verbatim with only ASCII bytes)",
3731 cp = ch as u32
3732 ));
3733 }
3734 let s = s.trim();
3735 let (rate_str, unit) = s
3736 .split_once('/')
3737 .ok_or_else(|| format!("rate-limit must be `<n>/<unit>`, got {s:?}"))?;
3738 let rate_trim = rate_str.trim();
3739 // The canonical authoring form for `:politicas :rate-limit` is
3740 // `<integer>/<s|m|h>` — every magnitude [`render`] emits is a
3741 // non-negative integer with no decimal point and no leading
3742 // sign, so the parser's accepted set must match for
3743 // serialize/deserialize to round-trip without canonical-form
3744 // drift. Until this gate landed the parser accepted any
3745 // `u32::from_str`-shaped magnitude — and current Rust
3746 // `u32::from_str` permissively accepts a leading `+` (`"+100"`
3747 // → 100), so `"+100/s"` parsed to `RateLimit { 100, 1s }` and
3748 // serde silently round-tripped to `"100/s"` on the next emit
3749 // (a *different* canonical string) — breaking the THEORY.md
3750 // Part V render-determinism contract on the fifth typed-codec
3751 // surface in caixa-core (peer with the four duration codecs the
3752 // 1c55a2a / 818dd38 / d1fd67b / 737a676 / d53c922 trajectory
3753 // already covered: `supervisor::duration_codec` backing three
3754 // typed-duration slots, `limits::parse_duration` backing
3755 // `:limits :wall-clock`, `limits::parse_byte_size` backing
3756 // `:limits :memory`). The fractional / decimal-shaped sibling
3757 // (`"1.5/s"`, `"1.0/s"`, `"0.5/m"`) lands on `u32::from_str`'s
3758 // existing rejection arm, but the diagnostic is value-laundered
3759 // (the bare `"rate-limit rate \"1.5\" not a u32"` wording
3760 // doesn't name the canonical-form remediation or the round-trip
3761 // drift the next emit would produce); this gate lifts the
3762 // fractional arm onto the same canonical-form diagnostic the
3763 // peer codecs carry.
3764 //
3765 // Strict canonical form: every byte of the magnitude is an
3766 // ASCII digit (no `.`, no `+`, no `-`). On non-digit-only
3767 // inputs the gate distinguishes "non-canonical-but-numeric"
3768 // (parses as f64 or i64 — surfaced with a self-locating
3769 // diagnostic naming the canonical authoring form and the
3770 // round-trip drift the rejected shape would produce on first
3771 // serialize) from "garbage" (parses as neither — surfaced with
3772 // the existing narrower `"not a u32"` wording so its
3773 // diagnostic shape remains stable for the parser-shape footgun
3774 // case).
3775 //
3776 // Routed through the lifted
3777 // [`crate::render::is_digit_only_magnitude`] predicate — the
3778 // same source of truth the four peer typed-magnitude codec
3779 // sites share.
3780 let digit_only = crate::render::is_digit_only_magnitude(rate_trim);
3781 if !digit_only {
3782 let numeric = rate_trim.parse::<f64>().is_ok() || rate_trim.parse::<i64>().is_ok();
3783 if numeric {
3784 return Err(format!(
3785 "rate-limit: rate {rate_trim:?} is not a non-negative integer — the \
3786 canonical authoring form for `:politicas :rate-limit` is \
3787 `<integer>/<s|m|h>` (e.g. `\"100/s\"`, `\"5000/m\"`, `\"10000/h\"`) \
3788 with no decimal point and no leading `+` / `-` sign. A fractional / \
3789 signed magnitude (`\"1.5/s\"`, `\"+100/s\"`, `\"-1/s\"`) round-trips \
3790 through `render` to a *different* canonical form (`\"1/s\"`, \
3791 `\"100/s\"`, parser-reject) on first serialize — breaking the \
3792 THEORY.md Part V render-determinism contract every typed slot \
3793 carries. Pick an integer rate that fits the desired window \
3794 (write `\"6000/m\"` instead of `\"1.66/s\"`)"
3795 ));
3796 }
3797 return Err(format!("rate-limit rate {rate_str:?} not a u32"));
3798 }
3799 // Leading-zero arm — peer with the prior `"+100/s"` arm above
3800 // (4eeae98's predecessor) on the same canonical-form
3801 // render-determinism axis. The digit-only gate accepts
3802 // `"0100/s"`, `"00/s"`, `"007/h"` as `u32::from_str` parses
3803 // them losslessly (= 100, 0, 7), but `render` emits the
3804 // leading-zero-stripped form (`"100/s"`, `"0/s"`, `"7/h"`) —
3805 // a *different* canonical string on the next emit, breaking
3806 // the THEORY.md Part V render-determinism contract the same
3807 // way `"+100/s"` did before the leading-`+` arm landed. The
3808 // single-byte magnitude `"0"` itself round-trips losslessly
3809 // through `render` (`render(0)` emits `"0/s"`) — the
3810 // downstream [`AplicacaoError::PolicyRateLimitZero`] gate is
3811 // what refuses rate-zero authoring, so `"0/s"` stays in the
3812 // accepted set at this codec layer and the diagnostic
3813 // partitioning between canonical-form drift (this arm) and
3814 // semantic-zero (the downstream gate) remains stable.
3815 // Peer with the future leading-zero arms on the three peer
3816 // typed-magnitude codecs the trajectory acknowledges:
3817 // `supervisor::duration_codec`, `limits::parse_duration`,
3818 // `limits::parse_byte_size` — each carries the same
3819 // canonical-form-drift class today; this gate lands the
3820 // discipline on the fourth typed-magnitude codec in
3821 // caixa-core first because the peer `"+100/s"` arm above is
3822 // the closest predecessor on the trajectory.
3823 //
3824 // Routed through the lifted
3825 // [`crate::render::is_leading_zero_padded_magnitude`]
3826 // predicate — the same source of truth the four peer
3827 // typed-magnitude codec sites share.
3828 if crate::render::is_leading_zero_padded_magnitude(rate_trim) {
3829 return Err(format!(
3830 "rate-limit: rate {rate_trim:?} has a non-canonical leading zero — the \
3831 canonical authoring form for `:politicas :rate-limit` is \
3832 `<integer>/<s|m|h>` (e.g. `\"100/s\"`, `\"5000/m\"`, `\"10000/h\"`) \
3833 with no leading-zero padding on the magnitude. A leading-zero magnitude \
3834 (`\"0100/s\"`, `\"00/s\"`, `\"007/h\"`) round-trips through `render` to \
3835 a *different* canonical form (`\"100/s\"`, `\"0/s\"`, `\"7/h\"`) on \
3836 first serialize — breaking the THEORY.md Part V render-determinism \
3837 contract every typed slot carries. Strip the leading zeros (write \
3838 `\"100/s\"` instead of `\"0100/s\"`)"
3839 ));
3840 }
3841 // The digit-only gate guarantees every byte is `[0-9]`, and
3842 // the leading-zero arm above guarantees the magnitude is
3843 // either the single byte `"0"` or starts with `[1-9]`, so
3844 // the only way `u32::from_str` can fail here is overflow
3845 // (the magnitude exceeds `u32::MAX`). Surface that with an
3846 // overflow-shaped wording so the diagnostic names the
3847 // offending magnitude verbatim rather than collapsing onto
3848 // the non-canonical arm. Same shape
3849 // `supervisor::duration_codec` (1c55a2a) carries on the peer
3850 // duration-codec axis.
3851 let rate: u32 = rate_trim.parse::<u32>().map_err(|_| {
3852 format!("rate-limit rate {rate_trim:?} (digit-only magnitude overflows u32)")
3853 })?;
3854 // The `{"s" ↔ 1s, "m" ↔ 60s, "h" ↔ 3600s}` bijection lives at
3855 // module scope as the lifted [`super::RATE_LIMIT_UNIT_TABLE`]
3856 // const; this parse arm now consumes only the `unit → Duration`
3857 // projection [`super::rate_limit_window_from_unit`], so a future
3858 // rate-limit-unit addition (a `"d"` day suffix once Envoy's
3859 // `rate_limit_action` grows daily-bucket support) is one row
3860 // appended to the table — parse, render, and
3861 // `is_canonical_rate_limit_window` all pick it up by construction.
3862 let unit = unit.trim();
3863 let window = super::rate_limit_window_from_unit(unit)
3864 .ok_or_else(|| format!("unknown rate-limit window unit {unit:?}"))?;
3865 Ok(RateLimit { rate, window })
3866 }
3867
3868 fn render(rl: RateLimit) -> String {
3869 // The `{"s" ↔ 1s, "m" ↔ 60s, "h" ↔ 3600s}` bijection lives at
3870 // module scope as the lifted [`super::RATE_LIMIT_UNIT_TABLE`]
3871 // const; this render arm now consumes only the `Duration → unit`
3872 // projection [`super::rate_limit_window_unit`], which returns
3873 // `None` on every non-canonical window (the sub-second /
3874 // non-`{1, 60, 3600}` shapes the validate gate rejects). Same
3875 // helper the sibling [`super::is_canonical_rate_limit_window`]
3876 // predicate reads — so a future rate-limit-unit addition
3877 // (a `"d"` day suffix once Envoy's `rate_limit_action` grows
3878 // daily-bucket support) is one row appended to the table and
3879 // both consumers pick it up by construction.
3880 if let Some(unit) = super::rate_limit_window_unit(rl.window()) {
3881 format!("{}/{unit}", rl.rate())
3882 } else {
3883 // Defensive fallback for non-canonical windows. Note:
3884 // [`AplicacaoSpec::validate_politicas`] rejects any
3885 // non-canonical `:rate-limit :window` via
3886 // [`AplicacaoError::PolicyRateLimitWindowNotCanonical`], so
3887 // a validated `RateLimit` never reaches this branch. The
3888 // emitted `<n>/<k>s` form is *not* round-trippable through
3889 // [`parse`] (which accepts only the [`super::RATE_LIMIT_UNIT_TABLE`]
3890 // suffixes, not `<k>s` with an explicit count) — the
3891 // validate gate is what makes the round-trip a structural
3892 // property; this branch exists only so a programmatic
3893 // non-validated serialize doesn't panic.
3894 format!("{}/{}s", rl.rate(), rl.window().as_secs())
3895 }
3896 }
3897}
3898
3899// ── placement strategy ───────────────────────────────────────────────
3900
3901/// How the Aplicacao distributes across clusters. Three options:
3902///
3903/// - `SingleNode` — one cluster runs the app at a time; takeover on
3904/// death (Erlang/OTP distributed-app semantics).
3905/// - `Replicated` — every named cluster runs an instance (active-active).
3906/// - `Sharded` — entities distribute by hash key across clusters
3907/// (Akka cluster sharding).
3908#[derive(
3909 Serialize, Deserialize, Debug, Clone, Copy, PartialEq, Eq, Hash, gen_platform::IsVariant,
3910)]
3911pub enum PlacementStrategy {
3912 SingleNode,
3913 Replicated,
3914 Sharded,
3915}
3916
3917impl Default for PlacementStrategy {
3918 fn default() -> Self {
3919 Self::Replicated
3920 }
3921}
3922
3923impl PlacementStrategy {
3924 /// Canonical camelCase-schema discriminator scalar this variant
3925 /// serializes as under [`crate::M3_PLACEMENT_KEY_ESTRATEGIA`]. The
3926 /// three arms return the paired [`crate::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE`]
3927 /// / [`crate::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] /
3928 /// [`crate::M3_PLACEMENT_ESTRATEGIA_SHARDED`] lifted constants so
3929 /// every substrate consumer that dispatches on the strategy (the
3930 /// `lareira-fleet-programs` aggregator, the future `app-operator`
3931 /// reconciler, the M3 Adaptive compression pass) reads the same
3932 /// byte-string the `Serialize` derive emits — the pin test in
3933 /// [`tests::placement_strategy_variants_serialize_to_lifted_scalar_values`]
3934 /// asserts the two paths agree.
3935 #[must_use]
3936 pub const fn as_str(self) -> &'static str {
3937 match self {
3938 Self::SingleNode => crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE,
3939 Self::Replicated => crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED,
3940 Self::Sharded => crate::render::M3_PLACEMENT_ESTRATEGIA_SHARDED,
3941 }
3942 }
3943}
3944
3945/// [`std::fmt::Display`] routed through [`PlacementStrategy::as_str`], so
3946/// the pretty-printed byte-string every consumer that formats the strategy
3947/// as user-facing text lands on (the M3 [`AplicacaoError::PlacementWithoutClusters`]
3948/// / [`AplicacaoError::ShardKeyOnNonSharded`] `#[error(":placement
3949/// {estrategia} …")]` diagnostic templates, the future `feira app graph`
3950/// per-Aplicacao strategy line, the future M4 CR materializer's per-
3951/// admission-webhook rejection body) reaches for the same lifted
3952/// [`crate::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE`] /
3953/// [`crate::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] /
3954/// [`crate::M3_PLACEMENT_ESTRATEGIA_SHARDED`] const the wire-format
3955/// `Serialize` derive already emits under
3956/// [`crate::M3_PLACEMENT_KEY_ESTRATEGIA`] and the
3957/// [`PlacementStrategy::as_str`] helper already returns.
3958///
3959/// Until this lift landed the sibling OTP-shape typed enums —
3960/// [`crate::supervisor::RestartStrategy`] / [`crate::supervisor::RestartPolicy`]
3961/// (both derive `gen_platform::Discriminant` with `#[discriminant(also_display)]`
3962/// so [`std::fmt::Display`] routes through the same discriminant string
3963/// the wire format emits) — carried a stable [`std::fmt::Display`]
3964/// surface but [`PlacementStrategy`] did not; every consumer reaching
3965/// for a strategy byte-string past the wire format had to pick between
3966/// three paths ([`PlacementStrategy::as_str`], the [`Serialize`] derive's
3967/// serialized string, `format!("{variant:?}")` on the [`std::fmt::Debug`]
3968/// derive), any two of which a future variant rename or
3969/// `#[serde(rename_all = "kebab-case")]` attribute would silently
3970/// desynchronize — with the failure surfacing as a downstream renderer /
3971/// operator's per-strategy dispatch reading one spelling while the wire
3972/// format emitted another, far from the source rebrand commit and with
3973/// no field naming the drift. Routing `Display` through
3974/// [`PlacementStrategy::as_str`] makes the three paths
3975/// (`Debug` for structural inspection, `Display` for user-facing text,
3976/// `Serialize` for the wire format) converge on the same lifted
3977/// [`crate::M3_PLACEMENT_ESTRATEGIA_*`] const set: the wire byte-string,
3978/// the diagnostic byte-string, and the pretty-printed byte-string move
3979/// as a single unit through one canonical declaration each, by
3980/// construction. Same trajectory as [`PlacementStrategy::as_str`]
3981/// (cc8f749) on the sibling wire-vs-const single-source axis — this lift
3982/// closes the third path.
3983///
3984/// Pin tests
3985/// [`tests::placement_strategy_display_routes_through_as_str_helper`]
3986/// and
3987/// [`tests::placement_strategy_display_matches_serialized_wire_byte_string`]
3988/// assert the three paths agree byte-for-byte on every variant, so a
3989/// future variant rename or per-arm serde attribute drift is a build
3990/// error visible at caixa-core test time, not a silent per-consumer
3991/// dispatch miss at apply / reconcile time.
3992impl std::fmt::Display for PlacementStrategy {
3993 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3994 f.write_str(self.as_str())
3995 }
3996}
3997
3998/// Where the Aplicacao runs.
3999#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
4000#[serde(rename_all = "camelCase")]
4001pub struct Placement {
4002 /// Distribution strategy.
4003 #[serde(default)]
4004 pub estrategia: PlacementStrategy,
4005
4006 /// Named clusters that host this Aplicacao. Required for
4007 /// `Replicated` and `SingleNode`; for `Sharded` declares the
4008 /// shard pool.
4009 #[serde(default)]
4010 pub clusters: Vec<String>,
4011
4012 /// Optional hint to the placement engine: `"data-locality"`,
4013 /// `"low-latency"`, etc. Drives M3 Adaptive compression weights.
4014 #[serde(default, skip_serializing_if = "Option::is_none")]
4015 pub affinity: Option<String>,
4016
4017 /// Sharding key — required when `:estrategia Sharded`. M3 deliverable.
4018 #[serde(default, skip_serializing_if = "Option::is_none")]
4019 pub shard_key: Option<String>,
4020}
4021
4022impl Placement {
4023 /// Substrate-canonical per-`:placement` Akka-cluster-sharding
4024 /// `:shard-key` extractor-expression scalar accessor every consumer
4025 /// of the Aplicacao's hash-keyed distribution routing keys off —
4026 /// returns the author-declared `:placement :shard-key` byte-string
4027 /// verbatim as an `Option<&str>`, borrowed from the typed slot's
4028 /// own `Option<String>` storage; `None` when the slot is absent
4029 /// (the canonical shape under `:estrategia Replicated` /
4030 /// `SingleNode` per the [`AplicacaoSpec::validate_placement`]-
4031 /// enforced `shard_key.is_some() == matches!(estrategia, Sharded)`
4032 /// partition — `validate` refuses any `Placement` past this call
4033 /// that lands `Some` on a non-`Sharded` strategy or `None` on
4034 /// `Sharded`).
4035 ///
4036 /// The `:placement :shard-key` slot carries the Akka-style
4037 /// cluster-sharding entity-id extractor expression
4038 /// (MESH-COMPOSITION §II.4) — validated by
4039 /// [`validate_placement_shard_key`] to be a non-empty printable-
4040 /// ASCII single-token reference (`tenantId`, `$tenantId`,
4041 /// `metadata.tenantId`, `${tenant}` — the canonical shapes the
4042 /// future M4 Akka-style cluster-sharding reconciler hashes without
4043 /// re-validating at the runtime layer), and every downstream
4044 /// consumer that reads the key keys off this scalar (the
4045 /// [`AplicacaoSpec::validate_placement`] `Sharded`-arm shape gate,
4046 /// the [`AplicacaoSpec::validate_placement`] non-`Sharded`-arm
4047 /// declared-but-inert refusal diagnostic, the caixa-mesh
4048 /// per-Aplicacao `placement.shardKey` emit path the substrate
4049 /// operator's per-entity hash-routing reader consumes, the future
4050 /// M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
4051 /// per-shard-key resolver).
4052 ///
4053 /// Prior to this lift the `.shard_key` field was accessed inline at
4054 /// two caixa-core sites — the [`AplicacaoSpec::validate_placement`]
4055 /// `Sharded` arm's `match &self.placement.shard_key { None => …,
4056 /// Some(k) if k.is_empty() => …, Some(k) => … }` cascade and the
4057 /// non-`Sharded` arm's `if let Some(k) = &self.placement.shard_key
4058 /// { … ShardKeyOnNonSharded { shard_key: k.clone() } … }` refusal
4059 /// — two open-coded field-accesses that expressed no compile-time
4060 /// link back to the typed slot. A future extension of the
4061 /// `:placement :shard-key` axis to a richer author surface — a
4062 /// per-cluster override the operator pins through a future
4063 /// `:placement :shard-key-overrides` slot the MESH-COMPOSITION
4064 /// §II.4 roadmap acknowledges, a per-tenant extractor-expression
4065 /// alias table the M4 CR materializer resolves per-CR, a
4066 /// per-Aplicacao dynamic `:shard-key` derivation the future
4067 /// adaptive placement engine computes from `:affinity` weights —
4068 /// would have had to be threaded through both open-coded copies in
4069 /// lockstep or the `Sharded`-arm shape gate and the non-`Sharded`-
4070 /// arm refusal would silently disagree on which extractor
4071 /// expression a given Placement resolves to. Lifting the resolution
4072 /// rule to a typed method on the substrate primitive means every
4073 /// downstream consumer of the Aplicacao's per-`:placement`
4074 /// hash-key surface reaches for exactly one typed dispatch — the
4075 /// resolver's accept-set migrates as a unit on any future axis
4076 /// addition.
4077 ///
4078 /// Peer of the sibling per-`:contratos` [`WitContract::source`] /
4079 /// [`WitContract::destination`] / [`WitContract::world_ref`]
4080 /// (7f0fd43, 0804823) scalar accessors, per-`:membros`
4081 /// [`Membro::nome`] / [`Membro::versao_requirement`] (4a32abf,
4082 /// a40b0e3), and per-`:entrada` [`Entrada::destination`] /
4083 /// [`Entrada::hostname`] (6db982c, 11f3dfe) accessors — same "one
4084 /// typed dispatch on the substrate primitive, thin projections at
4085 /// each consumer" discipline extended onto the per-`:placement`
4086 /// Akka-cluster-sharding-key `Option<String>` optional-scalar axis.
4087 /// First `Option<&str>`-return accessor on the M3 mesh-slot family
4088 /// — opens the "optional per-slot scalar" projection pattern the
4089 /// sibling per-`:placement` `:affinity`, per-`:politicas`
4090 /// `:rate-limit` future lifts fold on. Named `shard_key()` to
4091 /// match the storage field's name; the accessor's identity name
4092 /// maps onto the canonical MESH-COMPOSITION §II.4 vocabulary the
4093 /// slot's docstring already carries.
4094 #[must_use]
4095 pub fn shard_key(&self) -> Option<&str> {
4096 self.shard_key.as_deref()
4097 }
4098
4099 /// Substrate-canonical per-`:placement` `:affinity` M3-Adaptive-
4100 /// compression-hint scalar accessor every weighting-consumer of the
4101 /// Aplicacao's per-hint routing surface keys off — returns the
4102 /// author-declared `:placement :affinity` byte-string verbatim as
4103 /// an `Option<&str>`, borrowed from the typed slot's own
4104 /// `Option<String>` storage; `None` when the slot is absent (the
4105 /// canonical shape of an Aplicacao that leaves the compression
4106 /// weighting up to the placement engine's cluster-default arm — no
4107 /// author-authored `data-locality` / `low-latency` / etc. hint
4108 /// biases the routing).
4109 ///
4110 /// The `:placement :affinity` slot carries the M3 Adaptive-
4111 /// compression-weight bias hint (MESH-COMPOSITION §II.4) — validated
4112 /// by [`validate_placement_affinity`] to be a DNS-1123 label
4113 /// (`[a-z0-9]([-a-z0-9]*[a-z0-9])?`, 1..=63 bytes — the
4114 /// K8s-conformant label-selector shape every apiserver-side pod-
4115 /// affinity / node-affinity materializer already gates on
4116 /// admission), and every downstream consumer that reads the hint
4117 /// keys off this scalar (the [`AplicacaoSpec::validate_placement`]
4118 /// per-hint value-shape gate, the caixa-mesh per-Aplicacao
4119 /// `placement.affinity` overlay emit path the substrate operator's
4120 /// per-hint weighting-consumer reads, the future M4
4121 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-hint
4122 /// pod-affinity / node-affinity selector resolver).
4123 ///
4124 /// Prior to this lift the `.affinity` field was accessed inline at
4125 /// the sole caixa-core site — the
4126 /// [`AplicacaoSpec::validate_placement`] per-hint value-shape gate's
4127 /// `if let Some(a) = &self.placement.affinity { …
4128 /// validate_placement_affinity(a)? … }` cascade — one open-coded
4129 /// field-access that expressed no compile-time link back to the
4130 /// typed slot. A future extension of the `:placement :affinity`
4131 /// axis to a richer author surface — a per-cluster override the
4132 /// operator pins through a future `:placement :affinity-overrides`
4133 /// slot the MESH-COMPOSITION §II.4 roadmap acknowledges, a per-
4134 /// tenant hint alias table the M4 CR materializer resolves per-CR,
4135 /// a per-Aplicacao dynamic `:affinity` derivation the future
4136 /// adaptive placement engine computes from `:clusters` topology —
4137 /// would have had to be threaded through the open-coded copy in
4138 /// lockstep with any future caixa-mesh / caixa-flux / M4 CR
4139 /// materializer reader that landed on the axis, or the per-hint
4140 /// value-shape gate and its downstream weighting consumers would
4141 /// silently disagree on which hint a given Placement resolves to.
4142 /// Lifting the resolution rule to a typed method on the substrate
4143 /// primitive means every downstream consumer of the Aplicacao's
4144 /// per-`:placement` compression-hint surface reaches for exactly
4145 /// one typed dispatch — the resolver's accept-set migrates as a
4146 /// unit on any future axis addition.
4147 ///
4148 /// Peer of the sibling per-`:placement` [`Placement::shard_key`]
4149 /// (7cd2a28) `Option<&str>` accessor on the sibling per-`:placement`
4150 /// optional-scalar axis — same "one typed dispatch on the substrate
4151 /// primitive, thin projections at each consumer" discipline extended
4152 /// onto the per-`:placement` M3-Adaptive-compression-hint
4153 /// `Option<String>` optional-scalar axis. Second `Option<&str>`-
4154 /// return accessor on the M3 mesh-slot family; closes the last
4155 /// un-lifted per-`:placement` `Option<String>` axis. Named
4156 /// `affinity()` to match the storage field's name; the accessor's
4157 /// identity name maps onto the canonical MESH-COMPOSITION §II.4
4158 /// vocabulary the slot's docstring already carries.
4159 #[must_use]
4160 pub fn affinity(&self) -> Option<&str> {
4161 self.affinity.as_deref()
4162 }
4163
4164 /// Substrate-canonical per-`:placement` `:estrategia` distribution-
4165 /// strategy scalar accessor every consumer that dispatches on the
4166 /// Aplicacao's per-cluster distribution shape keys off — returns the
4167 /// author-declared `:placement :estrategia` variant verbatim as a
4168 /// [`PlacementStrategy`], `Copy`-projected from the typed slot's own
4169 /// `PlacementStrategy` storage.
4170 ///
4171 /// The `:placement :estrategia` slot carries the closed-set
4172 /// distribution-strategy discriminator (`SingleNode` — Erlang/OTP
4173 /// distributed-app takeover semantics per MESH-COMPOSITION §II.1;
4174 /// `Replicated` — active-active across every named cluster; `Sharded`
4175 /// — Akka-style hash-keyed entity distribution across the cluster pool
4176 /// per §II.4) that every downstream consumer of the Aplicacao's
4177 /// per-cluster fan-out shape keys off. Validated by
4178 /// [`AplicacaoSpec::validate_placement`] to be paired coherently with
4179 /// the sibling `:shard-key` axis (`shard_key.is_some() ==
4180 /// matches!(estrategia, Sharded)` — the cross-slot partition the
4181 /// [`Placement::shard_key`] accessor's docstring pins), and every
4182 /// downstream consumer that reads the strategy keys off this scalar
4183 /// (the [`AplicacaoSpec::validate_placement`]
4184 /// [`AplicacaoError::PlacementWithoutClusters`] error carrier's
4185 /// `estrategia:` field, the [`AplicacaoSpec::validate_placement`]
4186 /// `Sharded ↔ non-Sharded` partition-dispatch `match` arm, the
4187 /// [`AplicacaoSpec::validate_placement`] non-`Sharded`-arm
4188 /// declared-but-inert refusal's
4189 /// [`AplicacaoError::ShardKeyOnNonSharded`] error carrier's
4190 /// `estrategia:` field, the `feira app graph` per-Aplicacao strategy
4191 /// print line, the caixa-mesh per-Aplicacao `placement.estrategia`
4192 /// emit path the substrate operator's per-strategy fan-out reader
4193 /// consumes, the future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
4194 /// materializer's per-strategy admission-webhook resolver).
4195 ///
4196 /// Prior to this lift the `.estrategia` field was accessed inline at
4197 /// four sites — the [`AplicacaoSpec::validate_placement`]
4198 /// [`AplicacaoError::PlacementWithoutClusters`] error carrier at
4199 /// `estrategia: self.placement.estrategia`, the same method's
4200 /// `Sharded ↔ non-Sharded` `match self.placement.estrategia { … }`
4201 /// partition dispatch, the non-`Sharded`-arm
4202 /// [`AplicacaoError::ShardKeyOnNonSharded`] error carrier at
4203 /// `estrategia: self.placement.estrategia`, and the `feira app graph`
4204 /// per-Aplicacao strategy print line at
4205 /// `println!("… {} …", spec.placement.estrategia, …)`
4206 /// (caixa-feira/src/cmd/app.rs) — four open-coded field-accesses that
4207 /// expressed no compile-time link back to the typed slot. A future
4208 /// extension of the `:placement :estrategia` axis to a richer author
4209 /// surface (a per-cluster override the operator pins through a future
4210 /// `:placement :estrategia-overrides` slot the MESH-COMPOSITION §II.4
4211 /// roadmap acknowledges, a per-tenant strategy-alias table the M4 CR
4212 /// materializer resolves per-CR, a per-Aplicacao dynamic strategy
4213 /// derivation the future adaptive placement engine computes from
4214 /// `:affinity` + `:clusters` topology) would have had to be threaded
4215 /// through every open-coded copy in lockstep — one consumer reading
4216 /// the raw variant while a peer read the operator-resolved variant
4217 /// would silently split the `PlacementWithoutClusters` /
4218 /// `ShardKeyOnNonSharded` diagnostic quotes from the actual
4219 /// partition-dispatch input, a two-consumer split at the validator
4220 /// far from the source `caixa.lisp` with no field naming the
4221 /// strategy-drift root cause. Lifting the resolution rule to a typed
4222 /// method on the substrate primitive means every downstream consumer
4223 /// of the Aplicacao's per-`:placement` distribution-strategy surface
4224 /// reaches for exactly one typed dispatch — the resolver's accept-set
4225 /// migrates as a unit on any future axis addition.
4226 ///
4227 /// Peer of the sibling per-`:entrada` [`Entrada::port`] (9f9becd)
4228 /// `Copy`-return `u16` scalar accessor on the M3 mesh-slot family —
4229 /// same "one typed dispatch on the substrate primitive, thin
4230 /// projections at each consumer" discipline extended onto the
4231 /// per-`:placement` distribution-strategy `Copy`-composite-enum
4232 /// scalar axis. Second `Copy`-return accessor on the M3 mesh-slot
4233 /// family; first `Copy`-return accessor on the M3 mesh-slot
4234 /// `Placement` type — companion to the sibling per-`:placement`
4235 /// [`Placement::shard_key`] (7cd2a28) / [`Placement::affinity`]
4236 /// (74ec2d3) `Option<&str>` accessors on the sibling `Option<String>`
4237 /// optional-scalar axes, closing the last unlifted per-`:placement`
4238 /// scalar-value axis (the closed-set `PlacementStrategy`
4239 /// distribution-strategy discriminator) so every downstream
4240 /// per-`:placement` reader now routes through a typed dispatch on
4241 /// the substrate primitive. Named `estrategia()` to match the storage
4242 /// field's name; the accessor's identity name maps onto the
4243 /// canonical MESH-COMPOSITION §II.4 vocabulary the slot's docstring
4244 /// already carries.
4245 #[must_use]
4246 pub fn estrategia(&self) -> PlacementStrategy {
4247 self.estrategia
4248 }
4249
4250 /// Substrate-canonical per-`:placement` `:clusters` MESH-COMPOSITION
4251 /// per-cluster distribution-target slice accessor every consumer that
4252 /// walks the Aplicacao's declared cluster-pool keys off — returns the
4253 /// author-declared `:placement :clusters` `Vec<String>` verbatim as a
4254 /// `&[String]` slice-view, borrowed from the typed slot's own
4255 /// `Vec<String>` storage (a zero-copy slice-view over the same
4256 /// backing buffer the `Serialize`/`Deserialize` derives round-trip
4257 /// through). Non-optional: the empty slice is the load-bearing
4258 /// pre-validation sentinel every downstream consumer of the paired
4259 /// [`AplicacaoError::PlacementWithoutClusters`] refusal cascade keys
4260 /// off — every strategy in the closed
4261 /// [`PlacementStrategy::{SingleNode, Replicated, Sharded}`] accept-set
4262 /// requires a non-empty list (`SingleNode` / `Replicated` use the
4263 /// list as hosting / takeover candidates per Erlang/OTP distributed-
4264 /// app convention, MESH-COMPOSITION §II.1; `Sharded` uses it as the
4265 /// shard pool per Akka cluster-sharding convention, §II.4), so the
4266 /// `.is_empty()` probe is the shared pre-condition every
4267 /// [`AplicacaoSpec::validate_placement`] arm heads on.
4268 ///
4269 /// The `:placement :clusters` slot carries the K8s-conformant DNS-
4270 /// 1123-label per-cluster distribution-target list — the same
4271 /// set-not-multiset shape the sibling `:membros :caixa` /
4272 /// `:children :caixa` axes carry (`validate_placement`'s per-entry
4273 /// [`validate_placement_cluster`] + [`insert_first_seen`] fan-out
4274 /// pins the shape). Every downstream consumer that fans on the list
4275 /// keys off this slice (the [`AplicacaoSpec::validate_placement`]
4276 /// pre-flight `.is_empty()` probe that trips
4277 /// [`AplicacaoError::PlacementWithoutClusters`], the same method's
4278 /// per-cluster value-shape + duplicate-detection fan-out loop, the
4279 /// caixa-mesh per-Aplicacao `placement.clusters` overlay emit path
4280 /// that materializes the list verbatim onto every
4281 /// programs.yaml entry the substrate operator's per-cluster
4282 /// `placement.clusters | contains .Values.cluster` filter reads,
4283 /// the `feira app graph` per-Aplicacao cluster print line, the
4284 /// future M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
4285 /// per-cluster admission-webhook fan-out, the future M5 adaptive-
4286 /// placement engine's cluster-topology reader).
4287 ///
4288 /// Prior to this lift the `.clusters` `Vec<String>` was accessed
4289 /// inline at three production sites — the
4290 /// [`AplicacaoSpec::validate_placement`] pre-flight
4291 /// `self.placement.clusters.is_empty()` refusal probe, the same
4292 /// method's per-cluster validate loop's
4293 /// `for c in &self.placement.clusters` traversal head, and the
4294 /// `feira app graph` per-Aplicacao print line's
4295 /// `spec.placement.clusters` `{:?}` formatter argument
4296 /// (caixa-feira/src/cmd/app.rs) — three open-coded field-accesses
4297 /// that expressed no compile-time link back to the typed slot. A
4298 /// future extension of the `:placement :clusters` axis to a richer
4299 /// author surface (a per-tenant cluster-pool overlay the operator
4300 /// pins through a future `:placement :clusters-overrides` slot the
4301 /// MESH-COMPOSITION §V cross-cluster-federation roadmap
4302 /// acknowledges, a per-Aplicacao dynamic cluster-pool derivation
4303 /// the future M5 adaptive-placement engine computes from
4304 /// `:affinity` weights + live cluster-topology probes, a promotion
4305 /// of the plain `Vec<String>` to a richer `{static, dynamic}`
4306 /// partition once the substrate operator's cluster-membership
4307 /// reconciler comes into typed scope) would have had to be threaded
4308 /// through all three open-coded copies in lockstep or one consumer
4309 /// would silently disagree with the peers on which cluster-pool a
4310 /// given Aplicacao resolves to — the pre-flight `.is_empty()` probe
4311 /// reading the raw slot while the peer per-cluster validate loop
4312 /// read an operator-resolved slot would silently split the paired
4313 /// `PlacementWithoutClusters` / `PlacementClusterInvalid` /
4314 /// `PlacementClusterDuplicate` refusal cascade's actual traversal
4315 /// input from the pre-flight input, a three-consumer split at the
4316 /// validator and formatter far from the source `caixa.lisp` with
4317 /// no field naming the cluster-pool-drift root cause. Lifting the
4318 /// resolution rule to a typed method on the substrate primitive
4319 /// means every downstream consumer of the Aplicacao's
4320 /// per-`:placement` cluster-pool surface reaches for exactly one
4321 /// typed dispatch — the resolver's accept-set migrates as a unit
4322 /// on any future axis addition.
4323 ///
4324 /// Second slice-return (`&[T]`) accessor on any M2 or M3 typed
4325 /// slot — sibling to the seed M2
4326 /// [`crate::SupervisorSpec::children`] (bc92bce) `&[ChildSpec]`
4327 /// slice-return accessor on the peer per-`:supervisor` static-
4328 /// child-list `Vec`-carry axis, extended onto the first M3 mesh-
4329 /// slot `Vec`-carry axis. Same "one typed dispatch on the substrate
4330 /// primitive, thin projections at each consumer" discipline. The
4331 /// three peer `Vec`-carry axes still unlifted at the time of this
4332 /// lift — [`crate::AplicacaoSpec::membros`] (`Vec<Membro>`
4333 /// per-Aplicacao member list), [`crate::AplicacaoSpec::contratos`]
4334 /// (`Vec<WitContract>` per-Aplicacao WIT-typed edge list),
4335 /// [`crate::UpgradeFromEntry::instructions`]
4336 /// (`Vec<UpgradeInstruction>` per-appup migration-instruction list)
4337 /// — inherit this accessor's discipline as future compounding runs
4338 /// migrate their consumers onto the shared slice-return shape.
4339 /// Fourth (and final) accessor on the M3 mesh-slot `Placement`
4340 /// type, sibling to the two `Option<&str>`-return
4341 /// [`Placement::shard_key`] (7cd2a28) / [`Placement::affinity`]
4342 /// (74ec2d3) accessors and the `Copy`-return
4343 /// [`Placement::estrategia`] (921fe1b) accessor — closes the last
4344 /// unlifted per-`:placement` field axis (the `Vec<String>`
4345 /// distribution-target-list carrier) so every downstream
4346 /// per-`:placement` reader now routes through a typed dispatch on
4347 /// the substrate primitive. Named `clusters()` to match the storage
4348 /// field's name verbatim and the tatara-lisp author-surface term
4349 /// (`:clusters`) the field's own docstring already carries; the
4350 /// accessor's identity maps onto the canonical MESH-COMPOSITION
4351 /// §II.1 / §II.4 vocabulary the slot's docstring already reaches
4352 /// for. Returns `&[String]` (not `&Vec<String>`) because every
4353 /// downstream consumer of the cluster list treats it as a read-only
4354 /// sequence — the slice-view is the narrowest borrow that supports
4355 /// every present + roadmapped consumer (`.is_empty()`, `.iter()`,
4356 /// `.len()`) without leaking the backing `Vec`'s
4357 /// grow/push/reserve surface that no consumer of the typed view
4358 /// reaches for (the storage-side `Vec` remains reachable through
4359 /// the `pub clusters` field for the mutation-carrying serde
4360 /// round-trip and per-test fixture-mutation paths).
4361 #[must_use]
4362 pub fn clusters(&self) -> &[String] {
4363 self.clusters.as_slice()
4364 }
4365}
4366
4367impl Default for Placement {
4368 fn default() -> Self {
4369 Self {
4370 estrategia: PlacementStrategy::default(),
4371 clusters: Vec::new(),
4372 affinity: None,
4373 shard_key: None,
4374 }
4375 }
4376}
4377
4378// ── external entry point ─────────────────────────────────────────────
4379
4380/// External entry point — what an outside caller sees. Renders to a
4381/// Gateway / Ingress + a route to the named member Servico.
4382#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
4383#[serde(rename_all = "camelCase")]
4384pub struct Entrada {
4385 /// Public hostname (e.g. `"checkout.quero.cloud"`).
4386 pub host: String,
4387
4388 /// Member Servico the gateway routes to. Must be in `:membros`.
4389 pub para: String,
4390
4391 /// Optional path filter — if set, only matching paths route to
4392 /// this Aplicacao (the rest fall through to other route rules).
4393 #[serde(default)]
4394 pub paths: Vec<String>,
4395
4396 /// Default port on the destination Servico (the trigger.service.port).
4397 #[serde(default = "default_port")]
4398 pub port: u16,
4399}
4400
4401impl Entrada {
4402 /// Substrate-canonical per-`:entrada` URL-path fallback resolver
4403 /// every HTTPRoute-aware renderer keys off — returns the author-
4404 /// declared `:entrada :paths` list verbatim when non-empty, and the
4405 /// singleton [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] catch-
4406 /// all fallback otherwise (so an Aplicacao author who declares an
4407 /// external `:entrada` block but no per-path rule surface still
4408 /// gets a route whose sole `HTTPPathMatch` matches every incoming
4409 /// request under the paired
4410 /// [`crate::GATEWAY_API_PATH_MATCH_TYPE_PATH_PREFIX`] discriminator).
4411 ///
4412 /// Prior to this lift the "if `:entrada :paths` is empty use the
4413 /// substrate catch-all; else return each declared path verbatim"
4414 /// cascade lived inline at
4415 /// [`caixa_mesh::gateway_routes`]'s per-rule path-list resolver
4416 /// (caixa-mesh/src/lib.rs:2883 prior to this lift), the sole
4417 /// per-Aplicacao HTTPRoute per-rule path-list emit site the
4418 /// substrate ships today, with no typed method on the substrate
4419 /// primitive that named the rule. A future path-resolution axis
4420 /// addition — a per-cluster `:entrada :default-path` override the
4421 /// operator pins through a future `:placement`-scoped slot, an
4422 /// M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-CR
4423 /// admission-webhook floor that materializes the catch-all before
4424 /// the CR lands, a future per-`:entrada :paths` overlay from a
4425 /// per-cluster policy the future `feira app deploy` pipeline
4426 /// consumes — would have to be threaded through every renderer's
4427 /// inline copy of the cascade in lockstep or one consumer would
4428 /// silently disagree with the peers on which path list a given
4429 /// `:entrada` block resolves to. Lifting the rule to a typed
4430 /// method on the substrate primitive means every downstream
4431 /// HTTPRoute-aware consumer (the M4 CR materializer, the future
4432 /// per-cluster overlay resolver, every future per-Aplicacao
4433 /// snapshot renderer) reaches for exactly one typed dispatch —
4434 /// the resolver's accept-set moves as a unit on any future axis
4435 /// addition.
4436 ///
4437 /// Peer of the sibling [`crate::DEFAULT_SERVICO_PORT`] /
4438 /// [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] lifts on the
4439 /// per-`:entrada` scalar-value axes — extends the "one typed
4440 /// dispatch on the substrate primitive, thin projections at each
4441 /// consumer" discipline onto the per-`:entrada` path-list
4442 /// resolution axis every HTTPRoute-aware renderer consumes. Same
4443 /// shape as the [`MeshPolicy::is_empty`] typed predicate on the
4444 /// sibling `:politicas` primitive — one typed method on the
4445 /// substrate primitive that names the cascade every renderer
4446 /// otherwise re-inlines.
4447 #[must_use]
4448 pub fn resolved_paths(&self) -> Vec<&str> {
4449 // Route the internal cascade-head + per-entry projection reads
4450 // through the lifted [`Self::paths`] slice accessor rather than
4451 // the raw `self.paths` field access — the substrate-primitive
4452 // per-`:entrada` path-list resolver's two internal reads now
4453 // key off the canonical raw-slot surface every downstream
4454 // per-`:entrada` path-list consumer (`AplicacaoSpec::validate`'s
4455 // per-entry value-shape gate, `feira app graph`'s per-Aplicacao
4456 // entrada summary line's `{:?}` Debug print) routes through, so
4457 // any future rebrand on the typed slot's raw-slot reader lands
4458 // at exactly one place. Same two-consumer coherence discipline
4459 // the sibling `Placement::clusters` (a6e18d7) accessor pins on
4460 // the peer M3 mesh-slot `Vec<String>`-carry axis.
4461 if self.paths().is_empty() {
4462 vec![crate::render::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH]
4463 } else {
4464 self.paths().iter().map(String::as_str).collect()
4465 }
4466 }
4467
4468 /// Substrate-canonical per-`:entrada` DNS-hostname singular
4469 /// accessor every Gateway-API `Listener.hostname` reader keys off
4470 /// — returns the author-declared `:entrada :host` byte-string
4471 /// verbatim as a `&str`, borrowed from the typed slot's own
4472 /// [`String`] storage.
4473 ///
4474 /// Named the "singular" half of the DNS-hostname resolver pair on
4475 /// the substrate primitive: the parent-Gateway per-listener
4476 /// `hostname:` axis of the K8s Gateway API v1.x is scalar-shaped
4477 /// (`Listener.hostname: Option<PreciseHostname>` — at most one
4478 /// hostname per listener), and this accessor is the typed dispatch
4479 /// the [`caixa_mesh::gateway_routes`] Gateway-listener emit site
4480 /// reaches for. Its plural sibling [`Entrada::hostnames`] carries
4481 /// the per-HTTPRoute `spec.hostnames[]` list axis the same
4482 /// per-Aplicacao ingress-hostname surface projects onto.
4483 ///
4484 /// Prior to this lift the `entrada.host.clone()` byte-string was
4485 /// accessed inline at two `caixa-mesh` sites — the parent-Gateway
4486 /// per-listener singular `hostname:` axis
4487 /// (`caixa-mesh/src/lib.rs:2775` prior to this lift) and the
4488 /// per-HTTPRoute plural `spec.hostnames[]` axis
4489 /// (`caixa-mesh/src/lib.rs:2969` prior to this lift). Both
4490 /// consumers read the same `entrada.host` field but the two-site
4491 /// duplication expressed no compile-time contract that the singular
4492 /// Gateway-listener filter and the plural `HTTPRoute` filter list
4493 /// stay in lockstep on future extensions of the `:entrada` slot to
4494 /// a multi-hostname author surface (an `:entrada :alt-hosts` list
4495 /// overlay, a per-cluster SNI fan-out the operator pins through a
4496 /// future `:placement :hosts` slot, an M4 `mesh.pleme.io/v1alpha1/
4497 /// Aplicacao` CR materializer's per-listener virtual-host filter
4498 /// admission-webhook overlay). Any such extension would have to be
4499 /// threaded through every renderer's inline copy of the resolution
4500 /// in lockstep or the Gateway listener's `hostname:` filter would
4501 /// silently disagree with the `HTTPRoute`'s `hostnames[]` filter list
4502 /// — a Gateway-API-conformance divergence whose apply-time symptom
4503 /// (the `HTTPRoute` `Accepted` condition flips to `False` with reason
4504 /// `NoMatchingParent` — the API server rejects the route because
4505 /// its `hostnames[]` filter doesn't intersect the parent listener's
4506 /// `hostname` filter) is far from the source `caixa.lisp` and never
4507 /// surfaces in the emitted YAML. Lifting the singular and plural
4508 /// resolvers to typed methods on the substrate primitive means
4509 /// every consumer of the Aplicacao's ingress-hostname surface
4510 /// reaches for exactly one typed dispatch, and the pair-invariant
4511 /// `hostnames() == vec![hostname()]` pinned by the sibling
4512 /// [`tests::hostnames_returns_singleton_of_hostname_accessor`] test
4513 /// keeps the two axes in lockstep by construction.
4514 ///
4515 /// Peer of the sibling per-`:entrada` [`Entrada::resolved_paths`]
4516 /// (1449891) path-list resolver on the per-HTTPRoute per-rule
4517 /// `spec.rules[].matches[].path` axis. Same "one typed dispatch on
4518 /// the substrate primitive, thin projections at each consumer"
4519 /// discipline the [`crate::DEFAULT_SERVICO_PORT`] +
4520 /// [`AplicacaoSpec::port_for_destination`] (9ca4896) /
4521 /// [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] +
4522 /// [`Entrada::resolved_paths`] lifts apply on the sibling per-
4523 /// `:entrada` scalar-value + list-value axes.
4524 #[must_use]
4525 pub fn hostname(&self) -> &str {
4526 self.host.as_str()
4527 }
4528
4529 /// Substrate-canonical per-`:entrada` DNS-hostname plural
4530 /// accessor every Gateway-API `HTTPRoute.spec.hostnames[]` reader
4531 /// keys off — returns the singleton `[hostname()]` list under
4532 /// today's single-hostname-per-Aplicacao author surface, and the
4533 /// authoritative multi-hostname list under a future
4534 /// `:entrada :alt-hosts` / per-cluster SNI-fan-out extension.
4535 ///
4536 /// Plural half of the DNS-hostname resolver pair — see the
4537 /// companion [`Entrada::hostname`] docstring for the two-consumer
4538 /// lift + pair-invariant discipline (`hostnames() ==
4539 /// vec![hostname()]`, pinned load-bearing by the sibling
4540 /// [`tests::hostnames_returns_singleton_of_hostname_accessor`]
4541 /// test).
4542 ///
4543 /// Peer of the sibling [`Entrada::resolved_paths`] (1449891)
4544 /// per-`:entrada` plural-list resolver on the per-HTTPRoute
4545 /// per-rule path-list axis — same `Vec<&str>` shape, same
4546 /// substrate-primitive-owns-the-resolver discipline extended to
4547 /// the per-HTTPRoute virtual-host filter-list axis.
4548 #[must_use]
4549 pub fn hostnames(&self) -> Vec<&str> {
4550 vec![self.hostname()]
4551 }
4552
4553 /// Substrate-canonical per-`:entrada` destination-Servico scalar
4554 /// accessor every Gateway-API `HTTPRoute` reader keys off — returns
4555 /// the author-declared `:entrada :para` byte-string verbatim as a
4556 /// `&str`, borrowed from the typed slot's own [`String`] storage.
4557 ///
4558 /// The `:entrada :para` slot names the single member Servico the
4559 /// external Gateway routes to (validated by
4560 /// [`AplicacaoSpec::validate`] to be a
4561 /// [`Membro::caixa`] the Aplicacao declares — a stray
4562 /// `:para` that doesn't name a member is
4563 /// [`AplicacaoError::EntradaParaNotInMembros`], not a silent
4564 /// backend-attachment miss at cluster-apply time). Under today's
4565 /// single-destination author surface `:entrada :para` is the ingress
4566 /// apex Servico's canonical identity; under a hypothetical
4567 /// future multi-backend author surface (a `:entrada
4568 /// :split :backends` weighted-fan-out overlay for canary /
4569 /// blue-green traffic-split rollouts, per-path override for
4570 /// path-based per-Servico routing beyond the single-apex model,
4571 /// the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
4572 /// per-CR admission-webhook that promotes the scalar to a
4573 /// weighted list) this accessor is the substrate primitive's typed
4574 /// dispatch every downstream `HTTPRoute`-aware consumer routes
4575 /// through, so the resolution shape migrates as a unit on one
4576 /// caixa-core edit rather than a coordinated rewrite across every
4577 /// renderer's inline field-access.
4578 ///
4579 /// Prior to this lift the `entrada.para` byte-string was accessed
4580 /// inline at two `caixa-mesh` sites — the per-Aplicacao HTTPRoute
4581 /// `metadata.name` composer's per-destination discriminator arg
4582 /// (`gateway_api_http_route_name(&caixa.nome, &entrada.para)`,
4583 /// `caixa-mesh/src/lib.rs:2845` prior to this lift) and the
4584 /// per-HTTPRoute per-rule `backendRefs[0].name` axis
4585 /// (`entrada.para.clone()`,
4586 /// `caixa-mesh/src/lib.rs:2975` prior to this lift). Both
4587 /// consumers read the same `entrada.para` field but the two-site
4588 /// duplication expressed no compile-time contract that the HTTPRoute
4589 /// name-discriminator and the per-rule backend name stay in
4590 /// lockstep on future extensions of the `:entrada` slot to a
4591 /// multi-destination author surface. Any such extension would have
4592 /// to be threaded through every renderer's inline copy of the
4593 /// destination projection in lockstep or the HTTPRoute
4594 /// `metadata.name` would silently reference a different destination
4595 /// than its own `backendRefs[]` — an operator-side
4596 /// `kubectl get httproute -n tatara-system <aplicacao>-<destination>`
4597 /// grep-by-name lookup would land on a route whose `backendRefs[]`
4598 /// silently point at a peer Servico, dropping every external
4599 /// `:entrada` flow at the gateway with the destination-drift root
4600 /// cause invisible in the emitted YAML.
4601 ///
4602 /// Peer of the sibling per-`:entrada` [`Entrada::hostname`] +
4603 /// [`Entrada::hostnames`] (11f3dfe) DNS-hostname resolver pair on
4604 /// the per-listener singular / per-HTTPRoute plural filter axes and
4605 /// [`Entrada::resolved_paths`] (1449891) per-`:entrada` path-list
4606 /// resolver on the per-HTTPRoute per-rule matches axis. Same "one
4607 /// typed dispatch on the substrate primitive, thin projections at
4608 /// each consumer" discipline the [`crate::DEFAULT_SERVICO_PORT`] +
4609 /// [`AplicacaoSpec::port_for_destination`] (9ca4896) /
4610 /// [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] +
4611 /// [`Entrada::resolved_paths`] (1449891) lifts apply on the
4612 /// sibling per-`:entrada` scalar-value + list-value axes — this
4613 /// accessor closes the last unlifted per-`:entrada` scalar axis
4614 /// (the destination-Servico byte-string) so every downstream
4615 /// per-`:entrada` reader now routes through a typed dispatch on
4616 /// the substrate primitive.
4617 #[must_use]
4618 pub fn destination(&self) -> &str {
4619 self.para.as_str()
4620 }
4621
4622 /// Substrate-canonical per-`:entrada` L4-port scalar accessor every
4623 /// Gateway-API `HTTPRoute.backendRefs[0].port` / Cilium
4624 /// `CiliumNetworkPolicy.spec.ingress[].toPorts[0].ports[0].port`
4625 /// reader keys off — returns the author-declared `:entrada :port`
4626 /// value verbatim as a `u16`, `Copy`-projected from the typed slot's
4627 /// own `u16` storage (validated by [`AplicacaoSpec::validate`] to lie
4628 /// in [`SERVICO_PORT_MIN`]`..=u16::MAX` — a stray `:port 0` is
4629 /// [`AplicacaoError::EntradaPortZero`], not a silent
4630 /// admission-webhook rejection at cluster-apply time).
4631 ///
4632 /// The `:entrada :port` slot carries the destination Servico's
4633 /// canonical in-cluster L4 listener port (`trigger.service.port` on
4634 /// the `pleme-computeunit` library chart), and every downstream
4635 /// consumer that reads the port keys off this scalar (the
4636 /// [`AplicacaoSpec::validate`] entrada-block structural-floor gate,
4637 /// the [`AplicacaoSpec::port_for_destination`] typed-dispatch
4638 /// resolver `caixa-mesh` HTTPRoute / CNP L4-fallback renderers
4639 /// route through, the future M4 `mesh.pleme.io/v1alpha1/Aplicacao`
4640 /// CR materializer's per-Aplicacao gateway port resolver).
4641 ///
4642 /// Prior to this lift the `.port` field was accessed inline at two
4643 /// caixa-core sites — the [`AplicacaoSpec::validate`] entrada-block
4644 /// structural-floor gate's `if e.port < SERVICO_PORT_MIN` check and
4645 /// the [`AplicacaoSpec::port_for_destination`] resolver's
4646 /// `.map_or(DEFAULT_SERVICO_PORT, |e| e.port)` cascade — two
4647 /// open-coded field-accesses that expressed no compile-time link
4648 /// back to the typed slot. A future extension of the `:entrada :port`
4649 /// axis to a richer author surface — a per-cluster override the
4650 /// operator pins through a future `:placement :default-port` slot the
4651 /// [`DEFAULT_SERVICO_PORT`] docstring acknowledges, an
4652 /// `Option<u16>`-shape migration once the substrate grows per-`:membros`
4653 /// heterogeneous listener ports, an M4
4654 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-CR
4655 /// admission-webhook floor that promotes the scalar to a
4656 /// per-destination map — would have had to be threaded through both
4657 /// open-coded copies in lockstep or the structural-floor validator
4658 /// and the [`AplicacaoSpec::port_for_destination`] resolver would
4659 /// silently disagree on which port a given [`Entrada`] resolves to.
4660 /// Lifting the resolution rule to a typed method on the substrate
4661 /// primitive means every downstream consumer of the Aplicacao's
4662 /// per-`:entrada` L4-port surface reaches for exactly one typed
4663 /// dispatch — the resolver's accept-set migrates as a unit on any
4664 /// future axis addition.
4665 ///
4666 /// Peer of the sibling per-`:entrada` [`Entrada::hostname`] /
4667 /// [`Entrada::destination`] (11f3dfe, 6db982c) `&str` scalar
4668 /// accessors on the per-`:entrada` scalar-value axis — same "one
4669 /// typed dispatch on the substrate primitive, thin projections at
4670 /// each consumer" discipline extended onto the per-`:entrada`
4671 /// L4-port `u16` `Copy`-scalar axis. First `Copy`-return accessor on
4672 /// the M3 mesh-slot `Entrada` type — closes the last unlifted
4673 /// per-`:entrada` scalar-value axis (the `u16` L4 port); companion
4674 /// to the sibling per-`:politicas` `Option<Copy-T>` accessor family
4675 /// [`MeshPolicy::mtls_required`] / [`MeshPolicy::retries`] /
4676 /// [`MeshPolicy::timeout`] (c0110f1, bdfb399, 7073d0f) on the peer
4677 /// M3 mesh-slot Copy-scalar axis. Named `port()` to match the
4678 /// storage field's name; the accessor's identity name maps onto the
4679 /// canonical MESH-COMPOSITION §II.5 vocabulary the slot's docstring
4680 /// already carries.
4681 #[must_use]
4682 pub fn port(&self) -> u16 {
4683 self.port
4684 }
4685
4686 /// Substrate-canonical per-`:entrada` URL-path-list `&[String]`
4687 /// slice accessor every HTTPRoute-aware renderer keys off when it
4688 /// wants the raw author-declared path-list (not the fallback-
4689 /// applied projection [`Self::resolved_paths`] returns) — returns
4690 /// the author-declared `:entrada :paths` list verbatim as `&[String]`,
4691 /// borrowed from the typed slot's own [`Vec<String>`] storage.
4692 ///
4693 /// Named the "raw slot" half of the per-`:entrada` path-list resolver
4694 /// pair on the substrate primitive: the sibling [`Self::resolved_paths`]
4695 /// (1449891) closes the fallback-applying arm every per-Aplicacao
4696 /// HTTPRoute per-rule `matches[].path` emitter routes through (empty
4697 /// slot → single [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`]
4698 /// catch-all; non-empty slot → per-entry verbatim projection); this
4699 /// accessor closes the raw-slot arm every consumer that must see the
4700 /// author's declaration verbatim (the [`AplicacaoSpec::validate`]
4701 /// per-entry value-shape gate — empty `:paths` must be `Ok(())`,
4702 /// not `Err(EntradaPathEmpty)`, so it cannot route through the
4703 /// fallback-applying sibling; the `feira app graph` per-Aplicacao
4704 /// external-gateway summary line's `{:?}` Debug print — which must
4705 /// name the author's declaration, not the substrate's fallback, so
4706 /// an author reading their graph output can grep their caixa.lisp
4707 /// for the exact list they authored) routes through.
4708 ///
4709 /// Prior to this lift the `.paths` field was accessed inline at four
4710 /// production sites: the two internal reads in [`Self::resolved_paths`]
4711 /// (the `.is_empty()` cascade-head and the `.iter().map(String::as_str)`
4712 /// per-entry projection), the [`AplicacaoSpec::validate`] per-entry
4713 /// value-shape gate's `for p in &e.paths` traversal head, and the
4714 /// `feira app graph` per-Aplicacao entrada summary line's `{:?}`
4715 /// Debug print — four open-coded field-accesses that expressed no
4716 /// compile-time link back to the typed slot. A future extension of
4717 /// the `:entrada :paths` axis to a richer author surface — a
4718 /// per-path per-method HTTP-verb filter overlay (`(:paths ((:path
4719 /// "/api" :methods (:get :post))))` the Gateway API v1 HTTPRoute
4720 /// spec supports through `matches[].method`), a per-path per-header
4721 /// filter overlay (`matches[].headers[]`), a per-cluster override
4722 /// the operator pins through a future `:placement :path-overlay`
4723 /// slot, an M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
4724 /// per-CR admission-webhook that normalized the list at admission
4725 /// time — would have had to be threaded through every open-coded
4726 /// copy in lockstep or the validator's per-entry gate would silently
4727 /// disagree with the renderer's per-entry emit on which list a given
4728 /// `:entrada` block resolves to. Lifting the resolution to a typed
4729 /// method on the substrate primitive means every downstream consumer
4730 /// of the Aplicacao's per-`:entrada` path-list surface reaches for
4731 /// exactly one typed dispatch — the resolver's accept-set migrates
4732 /// as a unit on any future axis addition.
4733 ///
4734 /// Peer of the sibling [`crate::Placement::clusters`] (a6e18d7)
4735 /// `&[String]` slice accessor on the peer M3 mesh-slot `Vec<String>`-
4736 /// carry axis — same "one typed dispatch on the substrate primitive,
4737 /// thin projections at each consumer" discipline extended onto the
4738 /// per-`:entrada` `Vec<String>` slice-carry axis. Closes the last
4739 /// unlifted per-`:entrada` field axis (the `Vec<String>` path-list
4740 /// carrier) so every downstream per-`:entrada` reader now routes
4741 /// through a typed dispatch on the substrate primitive. Returns
4742 /// `&[String]` (not `&Vec<String>`) because every downstream consumer
4743 /// treats the list as a read-only sequence — the slice-view is the
4744 /// narrowest borrow that supports every present + roadmapped consumer
4745 /// (`.is_empty()`, `.iter()`, `.len()`) without leaking the backing
4746 /// `Vec`'s grow/push/reserve surface that no consumer of the typed
4747 /// view reaches for (the storage-side `Vec` remains reachable through
4748 /// the `pub paths` field for the mutation-carrying serde round-trip
4749 /// and per-test fixture-mutation paths).
4750 #[must_use]
4751 pub fn paths(&self) -> &[String] {
4752 self.paths.as_slice()
4753 }
4754}
4755
4756/// Canonical default L4 port every typed Servico exposes on its
4757/// in-cluster K8s Service (the `trigger.service.port` axis the
4758/// `pleme-computeunit` library chart emits, the `:entrada :port` author
4759/// surface defaults to when the author omits the slot, and the
4760/// `caixa-mesh` `CiliumNetworkPolicy` L4-fallback substitutes when no
4761/// `:entrada` block matches the per-`:contratos` destination Servico).
4762/// The single source of truth all three typed-port consumers reach for:
4763///
4764/// - [`Entrada::port`]'s serde default (via the
4765/// [`default_port`] helper this constant feeds); the author surface
4766/// `(:entrada (:host … :para …))` without an explicit `:port` slot
4767/// reads back as a typed [`Entrada`] carrying this exact value;
4768/// - the
4769/// [`caixa_mesh::cilium_network_policies`][cm] `CiliumNetworkPolicy`
4770/// emitter's per-`(:de, :para)` L4 `toPorts[].ports[].port`
4771/// fallback, fired when the typed `:entrada` block doesn't name
4772/// the per-`:contratos` destination Servico — the typed
4773/// `:contratos` graph carries no per-destination port axis (the
4774/// destination port is the destination Servico's
4775/// `lareira-<nome>` chart's `trigger.service.port`, which the
4776/// Aplicacao-level renderer has no visibility into without a
4777/// resolver round-trip), so the renderer falls back to the
4778/// substrate's canonical Servico-port assumption — by
4779/// construction the same value the destination's own
4780/// `pleme-computeunit` chart emits, the same value the
4781/// destination's own typed `:entrada :port` slot defaults to;
4782/// - every future per-Servico renderer the absorption-roadmap
4783/// acknowledges (the future M4 `mesh.pleme.io/v1alpha1/Aplicacao`
4784/// CR materializer's per-edge port resolver, the future
4785/// per-`:politicas :rate-limit` `CiliumClusterwideEnvoyConfig`
4786/// emitter's per-route bucket key, the future caixa-otel
4787/// collector-pipeline emitter's per-Servico scrape port).
4788///
4789/// Until this lift landed the value `8080` lived at two production-code
4790/// call-sites: the [`default_port`] helper at
4791/// `caixa-core/src/aplicacao.rs:1712` (the typed slot's serde default)
4792/// and the `.unwrap_or(8080)` literal at
4793/// `caixa-mesh/src/lib.rs:344` (the L4-fallback in
4794/// [`caixa_mesh::cilium_network_policies`]'s per-`(:de, :para)` port
4795/// resolver). A future Servico-port rebrand — the substrate moving the
4796/// canonical port to `80` (HTTP's IANA-assigned port) once the cluster
4797/// gateway grows direct `:80` listeners, to `8443` once the substrate
4798/// moves to mTLS-by-default at the Servico boundary, to a per-cluster
4799/// override the operator pins through a future
4800/// `:placement :default-port` slot — without a coordinated edit on
4801/// both sides would silently emit Servicos listening on one port and
4802/// their Aplicacao's `CiliumNetworkPolicy` whitelisting a drifted one.
4803/// The CNP's apply-time symptom (the policy is admitted but every L4
4804/// flow on the destination Servico's actual port silently drops because
4805/// it doesn't match the whitelisted port) is far from the rebrand
4806/// commit's source, and Cilium's per-L4-drop diagnostic surfaces only
4807/// in hubble traces, not in `kubectl describe`. Lifting the literal to
4808/// a shared constant closes the drift footgun structurally — both
4809/// consumers read from the same `u16`, so any rebrand reaches both
4810/// sites by construction.
4811///
4812/// Mirrors the [`crate::DEFAULT_NAMESPACE`] lift (a085b26) on the peer
4813/// per-renderer canonical-K8s-axis constant — the namespace string
4814/// and the canonical Servico port both lived as duplicated literals
4815/// across caixa-core / caixa-mesh / caixa-flux before their respective
4816/// lifts. Same "the typed constant lives in one place" discipline the
4817/// [`crate::PLEME_LABEL_PREFIX`] / [`crate::LAREIRA_CHART_NAME_PREFIX`]
4818/// / [`crate::KUBE_KEY_API_VERSION`] lifts apply on the peer
4819/// shared-string axes.
4820///
4821/// [cm]: ../../caixa_mesh/fn.cilium_network_policies.html
4822pub const DEFAULT_SERVICO_PORT: u16 = 8080;
4823
4824/// Structural floor for the typed `:entrada :port` axis — every
4825/// validated [`Entrada::port`] past [`AplicacaoSpec::validate`] lies in
4826/// `SERVICO_PORT_MIN..=u16::MAX` (inclusive on both ends).
4827///
4828/// The IANA-registered TCP/UDP port space is `1..=65535` — port `0` is
4829/// the "any ephemeral" sentinel that the Berkeley-sockets `bind(0)` call
4830/// interprets as "let the kernel pick a free port at bind time", not a
4831/// well-defined destination the substrate's per-`:entrada` Gateway API
4832/// v1 `HTTPRoute.backendRefs[].port` axis can honor. A typed slot
4833/// carrying `port: 0` degenerates to a nominal-only routing target: the
4834/// K8s Gateway API v1 apiserver-side webhook rejects `port: 0` outright
4835/// (`spec.rules[].backendRefs[].port: Invalid value: 0` — the same
4836/// admission floor the peer `PolicyRetriesExceedsCap` cap-arm surfaces
4837/// at build time rather than at `kubectl apply` time), and the
4838/// substrate's per-`Entrada` `CiliumNetworkPolicy` L4-fallback resolver
4839/// (caixa-mesh/src/lib.rs:2657 through
4840/// [`DEFAULT_SERVICO_PORT`]) — the sole downstream reader of the
4841/// [`Entrada::port`] typed value — silently emits a policy whose
4842/// `toPorts[].ports[].port` scalar drifts off the destination Servico's
4843/// actual listener, dropping every L4 flow at the eBPF data plane far
4844/// from the source caixa.lisp with no field naming the port-zero-drift
4845/// root cause.
4846///
4847/// The typed field is `u16`, so `u16::MAX` (=65535) is the natural
4848/// structural ceiling — no `SERVICO_PORT_MAX` companion const is needed
4849/// on the top edge (unlike the peer capped-`u32` `:politicas` /
4850/// `:supervisor` / `:limits` axes where `POLICY_RETRIES_MAX` /
4851/// `SUPERVISOR_MAX_RESTARTS_MAX` / `LIMITS_CPU_MILLICORES_MAX` all sit
4852/// well below `u32::MAX` and therefore need explicit typed caps).
4853///
4854/// Pairs with [`DEFAULT_SERVICO_PORT`] on the same typed-port axis:
4855/// [`DEFAULT_SERVICO_PORT`] names the substrate's chosen default port
4856/// scalar every `(:entrada (:host … :para …))` slot without an explicit
4857/// `:port` inherits through the serde default hook; this constant names
4858/// the accept-set floor every declared port must satisfy. The pair is
4859/// invariantly ordered `SERVICO_PORT_MIN <= DEFAULT_SERVICO_PORT` (the
4860/// substrate's default must satisfy its own accept-set floor by
4861/// construction) — a future rebrand that accidentally moved
4862/// [`DEFAULT_SERVICO_PORT`] below the floor (a hypothetical `0` /
4863/// negative-cast typo, a per-cluster override the operator pins through
4864/// a future `:placement :default-port` slot that lands out-of-range)
4865/// would silently invalidate the serde-default emission at every
4866/// author-side `(:entrada (:host … :para …))` slot — the compile-time
4867/// invariant pin
4868/// (`default_servico_port_satisfies_lifted_servico_port_min_floor`)
4869/// closes the drift footgun at caixa-core build time.
4870///
4871/// Lifted as a typed `pub const` (rather than an inline `0` literal at
4872/// the [`AplicacaoSpec::validate`] call site) so the accept-set floor
4873/// has exactly one source of truth — the future M4
4874/// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-Aplicacao
4875/// gateway resolver, the future per-Servico
4876/// `computeunit.trigger.service.port` renderer's per-CR port-value
4877/// validator, and every downstream test-fixture navigator asserting
4878/// the accept-set floor all read from one place. Same shape every
4879/// other typed bracket-floor / bracket-ceiling in this crate carries
4880/// ([`LIMITS_MEMORY_WASM32_PAGE_BYTES`], [`LIMITS_MEMORY_WASM32_MAX_BYTES`],
4881/// [`LIMITS_WALL_CLOCK_MAX`], [`LIMITS_CPU_MILLICORES_MAX`],
4882/// [`LIMITS_FUEL_MAX`], [`POLICY_TIMEOUT_MAX`], [`POLICY_RETRIES_MAX`],
4883/// [`POLICY_BREAKER_MAX_FAILURES_MAX`], [`POLICY_BREAKER_WINDOW_MAX`],
4884/// [`POLICY_RATE_LIMIT_MAX`]).
4885pub const SERVICO_PORT_MIN: u16 = 1;
4886
4887const fn default_port() -> u16 {
4888 DEFAULT_SERVICO_PORT
4889}
4890
4891// ── the typed view ───────────────────────────────────────────────────
4892
4893/// Typed composition view of the flat Aplicacao slots on
4894/// [`crate::Caixa`]. Built via [`crate::Caixa::aplicacao_view`] for
4895/// validation + downstream renderer consumption.
4896#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq)]
4897#[serde(rename_all = "camelCase")]
4898pub struct AplicacaoSpec {
4899 pub membros: Vec<Membro>,
4900 pub contratos: Vec<WitContract>,
4901 pub politicas: MeshPolicy,
4902 pub placement: Placement,
4903 pub entrada: Option<Entrada>,
4904}
4905
4906impl AplicacaoSpec {
4907 /// Substrate-canonical per-`:membros` `Vec<Membro>` MESH-COMPOSITION
4908 /// per-Aplicacao member-list slice-return accessor every
4909 /// per-Aplicacao member-list reader keys off — returns the author-
4910 /// declared `:membros` list verbatim as a `&[Membro]` slice-view
4911 /// over the same backing buffer the raw `self.membros.as_slice()`
4912 /// field access borrows from.
4913 ///
4914 /// The `:membros` slot carries the M3 mesh-slot per-Aplicacao
4915 /// member list — the load-bearing identity of the application graph
4916 /// (MESH-COMPOSITION §III.1: the graph nodes are a set, not a
4917 /// multiset). Every per-`:membros` entry pairs a `:caixa` member-
4918 /// caixa name (through the lifted [`Membro::nome`] (4a32abf)
4919 /// accessor) with a `:versao` semver-requirement string (through
4920 /// the lifted [`Membro::versao_requirement`] (a40b0e3) accessor),
4921 /// and every downstream consumer that fans on the member-set keys
4922 /// off this slice (the [`AplicacaoSpec::validate`] `:contratos`
4923 /// membership-lookup `HashSet<&str>` seed's collect input, the
4924 /// [`AplicacaoSpec::validate_membros`] pre-flight `.is_empty()`
4925 /// [`AplicacaoError::NoMembros`] refusal probe, the same method's
4926 /// per-member DNS-1123 / semver-requirement / duplicate-detection
4927 /// fan-out loop, the [`AplicacaoSpec::detect_sync_cycles`]
4928 /// adjacency-list seed, the [`caixa_mesh::programs_for_aplicacao`]
4929 /// programs.yaml per-`:membros` fan-out emitter's per-entry
4930 /// mapping-composition loop, the `feira app graph` per-Aplicacao
4931 /// member-count print line and per-member tree traversal,
4932 /// every future wasm-operator (M4) per-Aplicacao CR materializer's
4933 /// per-member `ComputeUnit` fan-out, the future M5 adaptive-
4934 /// placement engine's per-member weight-topology reader).
4935 ///
4936 /// Prior to this lift the `.membros` `Vec<Membro>` was accessed
4937 /// inline at six production sites — the [`AplicacaoSpec::validate`]
4938 /// `self.membros.iter().map(Membro::nome).collect()` name-set seed,
4939 /// [`AplicacaoSpec::validate_membros`]'s pre-flight
4940 /// `self.membros.is_empty()` [`AplicacaoError::NoMembros`] refusal
4941 /// probe, the same method's per-member `for m in &self.membros`
4942 /// validate-loop traversal head, the
4943 /// [`AplicacaoSpec::detect_sync_cycles`]'s
4944 /// `for m in &self.membros` adjacency-list seed, the
4945 /// [`caixa_mesh::programs_for_aplicacao`] emitter's
4946 /// `Vec::with_capacity(spec.membros.len())` output-buffer sizing
4947 /// paired with the peer `for m in &spec.membros` per-entry fan-out
4948 /// loop, and the `feira app graph` per-Aplicacao print line's
4949 /// `spec.membros.len()` count formatter argument paired with the
4950 /// peer `for m in &spec.membros` per-member tree traversal — six
4951 /// open-coded field-accesses that expressed no compile-time link
4952 /// back to the typed slot. A future extension of the `:membros`
4953 /// axis to a richer author surface (a per-cluster member-set
4954 /// overlay the operator pins through a future
4955 /// `:membros-overrides` slot the MESH-COMPOSITION §V federation
4956 /// roadmap acknowledges, a per-tenant member-alias table the M4
4957 /// `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer resolves per-
4958 /// CR at admission time, a per-Aplicacao dynamic member-set
4959 /// derivation the future adaptive-placement engine computes from
4960 /// weighted membership topology, a promotion of the plain
4961 /// `Vec<Membro>` to a richer `{static, dynamic}` partition once
4962 /// Orleans-style virtual-actor dynamic-membership comes into typed
4963 /// scope) would have had to be threaded through all six open-coded
4964 /// copies in lockstep or one consumer would silently disagree with
4965 /// the peers on which member-set a given Aplicacao resolves to —
4966 /// the `HashSet<&str>` name-set seed reading the raw slot while
4967 /// the peer `.is_empty()` refusal probe read an operator-resolved
4968 /// slot would silently split the `:contratos` membership-lookup
4969 /// input from the pre-flight-refusal input, a six-consumer split
4970 /// at the validator + programs.yaml emitter + graph printer far
4971 /// from the source `caixa.lisp` with no field naming the member-
4972 /// set-drift root cause. Lifting the resolution rule to a typed
4973 /// method on the substrate primitive means every downstream
4974 /// consumer of the Aplicacao's per-`:membros` member-list surface
4975 /// reaches for exactly one typed dispatch — the resolver's accept-
4976 /// set migrates as a unit on any future axis addition.
4977 ///
4978 /// Third slice-return (`&[T]`) accessor on any M2 or M3 typed slot
4979 /// — sibling to the seed M2 [`crate::SupervisorSpec::children`]
4980 /// (bc92bce) `&[ChildSpec]` accessor on the peer per-`:supervisor`
4981 /// static-child-list `Vec`-carry axis, and to the M3
4982 /// [`crate::Placement::clusters`] (a6e18d7) `&[String]` accessor
4983 /// on the peer per-`:placement` distribution-target-list `Vec`-
4984 /// carry axis. Same "one typed dispatch on the substrate primitive,
4985 /// thin projections at each consumer" discipline. The two peer
4986 /// `Vec`-carry axes still unlifted at the time of this lift —
4987 /// [`AplicacaoSpec::contratos`] (`Vec<WitContract>` per-Aplicacao
4988 /// WIT-typed edge list) and
4989 /// [`crate::UpgradeFromEntry::instructions`]
4990 /// (`Vec<UpgradeInstruction>` per-appup migration-instruction list)
4991 /// — inherit this accessor's discipline as future compounding runs
4992 /// migrate their consumers onto the shared slice-return shape.
4993 /// First `&[T]`-return accessor on the top-level M3 mesh-slot
4994 /// `AplicacaoSpec` type itself, extending the discipline beyond
4995 /// the inner per-slot types ([`crate::Placement`],
4996 /// [`crate::SupervisorSpec`]) onto the outermost typed composition
4997 /// view every renderer consumes. Named `membros()` to match the
4998 /// storage field's name verbatim and the tatara-lisp author-
4999 /// surface term (`:membros`) the field's own docstring already
5000 /// carries; the accessor's identity maps onto the canonical
5001 /// MESH-COMPOSITION §III.1 vocabulary the slot's docstring already
5002 /// reaches for. Returns `&[Membro]` (not `&Vec<Membro>`) because
5003 /// every downstream consumer of the member list treats it as a
5004 /// read-only sequence — the slice-view is the narrowest borrow
5005 /// that supports every present + roadmapped consumer
5006 /// (`.is_empty()`, `.iter()`, `.len()`) without leaking the
5007 /// backing `Vec`'s grow/push/reserve surface that no consumer of
5008 /// the typed view reaches for (the storage-side `Vec` remains
5009 /// reachable through the `pub membros` field for the mutation-
5010 /// carrying serde round-trip and per-test fixture-mutation paths).
5011 #[must_use]
5012 pub fn membros(&self) -> &[Membro] {
5013 self.membros.as_slice()
5014 }
5015
5016 /// Substrate-canonical per-`:contratos` `Vec<WitContract>`
5017 /// MESH-COMPOSITION per-Aplicacao WIT-typed-edge-list slice-return
5018 /// accessor every per-Aplicacao contract-list reader keys off —
5019 /// returns the author-declared `:contratos` list verbatim as a
5020 /// `&[WitContract]` slice-view over the same backing buffer the raw
5021 /// `self.contratos.as_slice()` field access borrows from.
5022 ///
5023 /// The `:contratos` slot carries the M3 mesh-slot per-Aplicacao
5024 /// WIT-typed edge list — the load-bearing set of directed edges
5025 /// on the application graph whose nodes are the `:membros` entries
5026 /// (MESH-COMPOSITION §III.1: the graph edges are a set, not a
5027 /// multiset; the `(:de, :para, :wit, :endpoint, :subject, :slot)`
5028 /// six-tuple is the edge identity every downstream duplicate gate
5029 /// keys off). Every per-`:contratos` entry pairs a `:de` source-
5030 /// Servico caller name + a `:para` destination-Servico callee name
5031 /// (through the lifted [`WitContract::source`] +
5032 /// [`WitContract::destination`] (7f0fd43) accessor pair on the
5033 /// caller/callee-Servico axis) with a `:wit` world-reference
5034 /// (through the lifted [`WitContract::world_ref`] (0804823)
5035 /// accessor) and the target-shape-appropriate payload-carrier
5036 /// scalar (through the lifted [`WitContract::endpoint`] (7020470),
5037 /// [`WitContract::subject`] (90de675), or [`WitContract::slot`]
5038 /// (ed22b66) accessor on the per-target-shape payload-carrier
5039 /// axis). Every downstream consumer that fans on the edge-set
5040 /// keys off this slice (the [`AplicacaoSpec::validate`] per-edge
5041 /// name-set / self-edge / target-shape / dedup fan-out loop, the
5042 /// [`AplicacaoSpec::detect_sync_cycles`] per-edge sync-subgraph
5043 /// adjacency-list seed, the [`caixa_mesh::cilium_network_policies`]
5044 /// per-`(:de, :para)` `BTreeMap` group fan-out emitter's per-entry
5045 /// grouping loop, the `feira app graph` per-Aplicacao contract-
5046 /// count print line and per-contract tree traversal, every future
5047 /// wasm-operator (M4) per-Aplicacao CR materializer's per-edge
5048 /// `CiliumNetworkPolicy` fan-out, the future M5 per-edge
5049 /// mesh-policy overlay resolver's per-contract typed-edge weight
5050 /// reader).
5051 ///
5052 /// Prior to this lift the `.contratos` `Vec<WitContract>` was
5053 /// accessed inline at four production sites — the
5054 /// [`AplicacaoSpec::validate`]'s `for c in &self.contratos`
5055 /// per-edge validate-loop traversal head (which drives every
5056 /// per-edge name-set membership lookup, self-edge check,
5057 /// target-shape dispatch, and dedup `HashSet` insert), the
5058 /// [`AplicacaoSpec::detect_sync_cycles`]'s
5059 /// `for c in &self.contratos` adjacency-list seed head (which
5060 /// drives every per-edge sync-vs-pub-sub partition and per-edge
5061 /// adjacency insert), the [`caixa_mesh::cilium_network_policies`]
5062 /// emitter's `for c in &spec.contratos` per-`(:de, :para)`
5063 /// `BTreeMap` grouping loop head (which drives every per-CNP
5064 /// fan-out emit), and the `feira app graph` per-Aplicacao print
5065 /// line's `spec.contratos.len()` count formatter argument paired
5066 /// with the peer `for c in &spec.contratos` per-contract tree
5067 /// traversal — four open-coded field-accesses that expressed no
5068 /// compile-time link back to the typed slot. A future extension
5069 /// of the `:contratos` axis to a richer author surface (a
5070 /// per-cluster contract overlay the operator pins through a
5071 /// future `:contratos-overrides` slot the MESH-COMPOSITION §V
5072 /// federation roadmap acknowledges, a per-tenant edge-policy
5073 /// table the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
5074 /// materializer resolves per-CR at admission time, a per-edge
5075 /// weight scalar the future adaptive-placement engine reads to
5076 /// bias sync-subgraph routing, a promotion of the plain
5077 /// `Vec<WitContract>` to a richer `{static, dynamic}` partition
5078 /// once virtual-actor-style dynamic-edge composition comes into
5079 /// typed scope) would have had to be threaded through all four
5080 /// open-coded copies in lockstep or one consumer would silently
5081 /// disagree with the peers on which edge-set a given Aplicacao
5082 /// resolves to — the validator's per-edge dedup `HashSet` seed
5083 /// reading the raw slot while the peer sync-cycle adjacency-list
5084 /// seed read an operator-resolved slot would silently split the
5085 /// build-time edge-set gate from the runtime deadlock-detection
5086 /// gate, a four-consumer split at the validator, the cycle
5087 /// detector, the CNP emitter, and the graph printer far from
5088 /// the source `caixa.lisp` with no field naming the edge-set-
5089 /// drift root cause. Lifting the resolution rule to a typed method on the
5090 /// substrate primitive means every downstream consumer of the
5091 /// Aplicacao's per-`:contratos` edge-list surface reaches for
5092 /// exactly one typed dispatch — the resolver's accept-set
5093 /// migrates as a unit on any future axis addition.
5094 ///
5095 /// Fourth slice-return (`&[T]`) accessor on any M2 or M3 typed
5096 /// slot — sibling to the seed M2 [`crate::SupervisorSpec::children`]
5097 /// (bc92bce) `&[ChildSpec]` accessor on the peer per-`:supervisor`
5098 /// static-child-list `Vec`-carry axis, to the M3
5099 /// [`crate::Placement::clusters`] (a6e18d7) `&[String]` accessor
5100 /// on the peer per-`:placement` distribution-target-list `Vec`-
5101 /// carry axis, and to the immediately-adjacent sibling M3
5102 /// [`AplicacaoSpec::membros`] (6c77e36) `&[Membro]` accessor on
5103 /// the peer per-`:membros` node-list `Vec`-carry axis — the
5104 /// per-`:contratos` edge-list accessor is the natural pair of
5105 /// the per-`:membros` node-list accessor (graph edges over graph
5106 /// nodes; every graph-shaped consumer reads both). Same "one
5107 /// typed dispatch on the substrate primitive, thin projections
5108 /// at each consumer" discipline. The last remaining `Vec`-carry
5109 /// axis still unlifted at the time of this lift —
5110 /// [`crate::UpgradeFromEntry::instructions`]
5111 /// (`Vec<UpgradeInstruction>` per-appup migration-instruction
5112 /// list) — inherits this accessor's discipline as future
5113 /// compounding runs migrate its consumers onto the shared slice-
5114 /// return shape. Second `&[T]`-return accessor on the top-level
5115 /// M3 mesh-slot `AplicacaoSpec` type itself, closing the last
5116 /// unlifted per-`AplicacaoSpec` `Vec`-carry axis (`:membros` +
5117 /// `:contratos` are the two `Vec` fields on the outer typed
5118 /// composition view — `:politicas`, `:placement`, `:entrada` are
5119 /// scalar/option-shaped and already route through their per-slot
5120 /// accessor families). Named `contratos()` to match the storage
5121 /// field's name verbatim and the tatara-lisp author-surface term
5122 /// (`:contratos`) the field's own docstring already carries; the
5123 /// accessor's identity maps onto the canonical MESH-COMPOSITION
5124 /// §III.1 vocabulary the slot's docstring already reaches for.
5125 /// Returns `&[WitContract]` (not `&Vec<WitContract>`) because
5126 /// every downstream consumer of the contract list treats it as a
5127 /// read-only sequence — the slice-view is the narrowest borrow
5128 /// that supports every present + roadmapped consumer
5129 /// (`.is_empty()`, `.iter()`, `.len()`) without leaking the
5130 /// backing `Vec`'s grow/push/reserve surface that no consumer of
5131 /// the typed view reaches for (the storage-side `Vec` remains
5132 /// reachable through the `pub contratos` field for the mutation-
5133 /// carrying serde round-trip and per-test fixture-mutation paths).
5134 #[must_use]
5135 pub fn contratos(&self) -> &[WitContract] {
5136 self.contratos.as_slice()
5137 }
5138
5139 /// Substrate-canonical per-`:politicas` `MeshPolicy` MESH-COMPOSITION
5140 /// per-Aplicacao mesh-policy composite-reference accessor every
5141 /// per-Aplicacao policy-block reader keys off — returns the author-
5142 /// declared `:politicas` composite verbatim as a `&MeshPolicy`
5143 /// reference over the same backing storage the raw `&self.politicas`
5144 /// field access borrows from.
5145 ///
5146 /// The `:politicas` slot carries the M3 mesh-slot per-Aplicacao
5147 /// mesh-policy composite — the load-bearing container of every
5148 /// mesh-level operational-policy axis every downstream mesh-artifact
5149 /// emitter fans on (MESH-COMPOSITION §III.2 #3: the per-Aplicacao
5150 /// mesh-policy overlay is the single typed surface a
5151 /// `CiliumClusterwideEnvoyConfig` per-`:politicas` fan-out reads
5152 /// from). Every per-`:politicas` axis threads through a lifted
5153 /// per-slot accessor on the [`MeshPolicy`] type: the
5154 /// [`MeshPolicy::mtls_required`] (c0110f1) Cilium-mesh mTLS-
5155 /// enforcement-toggle scalar accessor, the [`MeshPolicy::retries`]
5156 /// (bdfb399) Gateway-API-mesh transient-failure-retry-budget scalar
5157 /// accessor, the [`MeshPolicy::timeout`] (7073d0f) Gateway-API-mesh
5158 /// per-call-deadline scalar accessor, the [`MeshPolicy::circuit_breaker`]
5159 /// (b0e741a) Envoy-outlier-detection consecutive-failure-ejection
5160 /// composite accessor, and the [`MeshPolicy::rate_limit`] (21a6c3b)
5161 /// Envoy-local-rate-limit-mesh token-bucket-declaration composite
5162 /// accessor. Every downstream consumer that reaches for a policy
5163 /// axis first passes through this outer accessor onto the composite
5164 /// and then dispatches onto the per-axis accessor — the two-level
5165 /// dispatch means every per-`:politicas` reader now routes through
5166 /// a typed dispatch on the substrate primitive at both altitudes.
5167 ///
5168 /// Prior to this lift the `.politicas` `MeshPolicy` composite was
5169 /// accessed inline at four production sites — the
5170 /// [`AplicacaoSpec::validate_politicas`] entry-side `let p =
5171 /// &self.politicas;` traversal seed (which drives every per-axis
5172 /// zero-floor + upper-cap + canonical-form bracket dispatch through
5173 /// `p.timeout()`, `p.retries()`, `p.circuit_breaker()`,
5174 /// `p.rate_limit()` on the axis-level lifted accessors), the
5175 /// [`caixa_mesh::cilium_network_policies`] per-CNP mTLS-mode-overlay
5176 /// emitter's `spec.politicas.mtls_required()` field-then-accessor
5177 /// chain (which drives every per-`(:de, :para)` CNP
5178 /// authentication-mode overlay onto the emitted `CiliumNetworkPolicy`),
5179 /// and the [`caixa_mesh::gateway_routes`] per-HTTPRoute per-request
5180 /// timeout + retry overlay emitter's paired
5181 /// `spec.politicas.timeout()` + `spec.politicas.retries()` field-then-
5182 /// accessor chain (which drives the per-Aplicacao Gateway-API-mesh
5183 /// deadline + budget overlay onto the emitted `HTTPRoute`) — four
5184 /// open-coded outer-field accesses that expressed no compile-time
5185 /// link back to the typed slot at the [`AplicacaoSpec`] altitude. A
5186 /// future extension of the `:politicas` outer axis to a richer
5187 /// author surface (a per-cluster policy overlay the operator pins
5188 /// through a future `:politicas-overrides` slot the MESH-COMPOSITION
5189 /// §V federation roadmap acknowledges, a per-tenant policy-alias
5190 /// table the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer
5191 /// resolves per-CR at admission time, a per-Aplicacao dynamic
5192 /// policy-composite derivation the future adaptive-placement engine
5193 /// computes from a per-cluster load-topology reader, a promotion of
5194 /// the plain [`MeshPolicy`] to a richer `{static, dynamic}`
5195 /// partition once virtual-actor-style dynamic-mesh-policy
5196 /// composition comes into typed scope) would have had to be threaded
5197 /// through all four open-coded copies in lockstep or one consumer
5198 /// would silently disagree with the peers on which mesh-policy
5199 /// composite a given Aplicacao resolves to — the validator's
5200 /// per-axis bracket-dispatch seed reading the raw slot while the
5201 /// peer CNP mTLS-overlay emitter read an operator-resolved slot
5202 /// would silently split the build-time policy-shape gate from the
5203 /// runtime CNP-emission gate, a four-consumer split at the
5204 /// validator, the CNP emitter, and the `HTTPRoute` emitter far from
5205 /// the source `caixa.lisp` with no field naming the policy-drift
5206 /// root cause. Lifting the resolution rule to a typed method on the
5207 /// substrate primitive means every downstream consumer of the
5208 /// Aplicacao's per-`:politicas` mesh-policy composite surface
5209 /// reaches for exactly one typed dispatch — the resolver's accept-
5210 /// set migrates as a unit on any future axis addition.
5211 ///
5212 /// First `&Composite`-return accessor on the top-level M3 mesh-slot
5213 /// `AplicacaoSpec` type itself — sibling to the seed slice-return
5214 /// accessors [`AplicacaoSpec::membros`] (6c77e36) `&[Membro]` and
5215 /// [`AplicacaoSpec::contratos`] (0dcc926) `&[WitContract]` that
5216 /// close the two `Vec`-carry axes on the outer typed composition
5217 /// view; the outer `:politicas` composite-reference axis is the
5218 /// natural pair to the paired outer `Vec`-carry accessors on the
5219 /// two peer M3 mesh slots — every whole-Aplicacao mesh-artifact
5220 /// emitter reads all four axes as one unit (graph nodes + graph
5221 /// edges + mesh policy + placement pool). Peer to the same
5222 /// [`crate::SupervisorSpec`] altitude on the sibling M2 supervisor-
5223 /// slot: every M2 `SupervisorSpec`-scoped composite reader
5224 /// ([`crate::SupervisorSpec::estrategia`], `max_restarts`,
5225 /// `restart_window`, `children`) already routes through the M2
5226 /// `SupervisorSpec` accessor family — this lift extends the same
5227 /// "one typed dispatch on the substrate primitive at the outer
5228 /// composition altitude" discipline to the M3 mesh-slot
5229 /// `AplicacaoSpec`-scoped `:politicas` composite axis. The two
5230 /// remaining peer outer-composite axes still unlifted at the time
5231 /// of this lift — [`AplicacaoSpec::placement`] (`Placement`
5232 /// per-Aplicacao distribution-composite) and [`AplicacaoSpec::entrada`]
5233 /// (`Option<Entrada>` per-Aplicacao external-gateway composite) —
5234 /// inherit this accessor's discipline as future compounding runs
5235 /// migrate their consumers onto the shared reference-return shape.
5236 /// Named `politicas()` to match the storage field's name verbatim
5237 /// and the tatara-lisp author-surface term (`:politicas`) the
5238 /// field's own docstring already carries; the accessor's identity
5239 /// maps onto the canonical MESH-COMPOSITION §III.2 vocabulary the
5240 /// slot's docstring already reaches for. Returns `&MeshPolicy`
5241 /// (not the owning composite by copy or clone) because every
5242 /// downstream consumer of the mesh-policy composite treats it as a
5243 /// read-only per-axis dispatch source — the reference-view is the
5244 /// narrowest borrow that supports every present + roadmapped
5245 /// consumer (per-axis accessor dispatch, [`MeshPolicy::is_empty`]
5246 /// emptiness probe) without cloning the composite through every
5247 /// consumer's fast path.
5248 #[must_use]
5249 pub fn politicas(&self) -> &MeshPolicy {
5250 &self.politicas
5251 }
5252
5253 /// Substrate-canonical per-`:placement` `Placement` MESH-COMPOSITION
5254 /// per-Aplicacao distribution-composite composite-reference accessor
5255 /// every per-Aplicacao placement-block reader keys off — returns the
5256 /// author-declared `:placement` composite verbatim as a `&Placement`
5257 /// reference over the same backing storage the raw `&self.placement`
5258 /// field access borrows from.
5259 ///
5260 /// The `:placement` slot carries the M3 mesh-slot per-Aplicacao
5261 /// distribution composite — the load-bearing container of every
5262 /// where-does-this-Aplicacao-run axis every downstream cluster-artifact
5263 /// emitter fans on (MESH-COMPOSITION §II.1 for the `SingleNode` /
5264 /// `Replicated` Erlang/OTP distributed-app takeover axes, §II.4 for the
5265 /// `Sharded` Akka-cluster-sharding axis, §III.1 for the `:clusters`
5266 /// hosting-pool identity, §V for the `M3-Adaptive`-compression
5267 /// `:affinity` hint). Every per-`:placement` axis threads through a
5268 /// lifted per-slot accessor on the [`Placement`] type: the
5269 /// [`Placement::estrategia`] (921fe1b) MESH-COMPOSITION distribution-
5270 /// strategy scalar accessor, the [`Placement::clusters`] (a6e18d7)
5271 /// per-cluster distribution-target slice-return accessor, the
5272 /// [`Placement::affinity`] (74ec2d3) M3-Adaptive-compression-hint
5273 /// optional-scalar accessor, and the [`Placement::shard_key`]
5274 /// (7cd2a28) Akka-cluster-sharding-key optional-scalar accessor. Every
5275 /// downstream consumer that reaches for a placement axis first passes
5276 /// through this outer accessor onto the composite and then dispatches
5277 /// onto the per-axis accessor — the two-level dispatch means every
5278 /// per-`:placement` reader now routes through a typed dispatch on the
5279 /// substrate primitive at both altitudes.
5280 ///
5281 /// Prior to this lift the `.placement` `Placement` composite was
5282 /// accessed inline at three production sites — the
5283 /// [`AplicacaoSpec::validate_placement`] per-axis bracket-dispatch
5284 /// seed (six `self.placement.<axis>()` field-then-inner-accessor
5285 /// chains: the pre-flight `.clusters().is_empty()` refusal probe
5286 /// paired with the `.estrategia()` diagnostic-carry copy, the per-
5287 /// cluster `.clusters()` validate-loop traversal head, the per-
5288 /// hint `.affinity()` optional-scalar shape gate, and the `Sharded` ↔
5289 /// non-`Sharded` partition's `.estrategia()` match arm scrutinee
5290 /// paired with the shape-gate cascade's `.shard_key()` /
5291 /// `.estrategia()` diagnostic-carry pair), the
5292 /// [`caixa_mesh::programs_for_aplicacao`] per-Aplicacao programs.yaml
5293 /// per-entry placement-block emitter's outer
5294 /// `serde_yaml::to_value(&spec.placement)` composite-serialization
5295 /// seed (which fans onto every per-cluster `programs[]` entry as a
5296 /// self-describing distribution overlay the aggregator filters by),
5297 /// and the `feira app graph` per-Aplicacao print line's paired
5298 /// `spec.placement.estrategia()` + `spec.placement.clusters()` field-
5299 /// then-inner-accessor chains (which drive the human-readable
5300 /// distribution summary of the typed Aplicacao view) — three open-
5301 /// coded outer-field accesses that expressed no compile-time link
5302 /// back to the typed slot at the [`AplicacaoSpec`] altitude. A future
5303 /// extension of the `:placement` outer axis to a richer author surface
5304 /// (a per-cluster placement overlay the operator pins through a
5305 /// future `:placement-overrides` slot the MESH-COMPOSITION §V
5306 /// federation roadmap acknowledges, a per-tenant placement-alias
5307 /// table the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer
5308 /// resolves per-CR at admission time, a per-Aplicacao dynamic
5309 /// placement-composite derivation the future M5 adaptive-placement
5310 /// engine computes from a per-cluster load-topology reader, a
5311 /// promotion of the plain [`Placement`] to a richer `{static, dynamic}`
5312 /// partition once Orleans-style virtual-actor dynamic-placement comes
5313 /// into typed scope) would have had to be threaded through all three
5314 /// open-coded copies in lockstep or one consumer would silently
5315 /// disagree with the peers on which placement composite a given
5316 /// Aplicacao resolves to — the validator's per-axis bracket-dispatch
5317 /// seed reading the raw slot while the peer
5318 /// `programs_for_aplicacao` emitter read an operator-resolved slot
5319 /// would silently split the build-time distribution-shape gate from
5320 /// the runtime programs.yaml distribution-annotation gate, a three-
5321 /// consumer split at the validator, the programs.yaml emitter, and
5322 /// the `feira app graph` printer far from the source `caixa.lisp`
5323 /// with no field naming the placement-drift root cause. Lifting the
5324 /// resolution rule to a typed method on the substrate primitive
5325 /// means every downstream consumer of the Aplicacao's per-
5326 /// `:placement` distribution composite surface reaches for exactly
5327 /// one typed dispatch — the resolver's accept-set migrates as a unit
5328 /// on any future axis addition.
5329 ///
5330 /// Second `&Composite`-return accessor on the top-level M3 mesh-slot
5331 /// `AplicacaoSpec` type itself — sibling to the seed
5332 /// [`AplicacaoSpec::politicas`] (534dc21) `&MeshPolicy` mesh-policy
5333 /// composite-reference accessor on the peer per-`:politicas` outer-
5334 /// composite axis, and to the paired slice-return accessors
5335 /// [`AplicacaoSpec::membros`] (6c77e36) `&[Membro]` and
5336 /// [`AplicacaoSpec::contratos`] (0dcc926) `&[WitContract]` that close
5337 /// the two `Vec`-carry axes on the outer typed composition view; the
5338 /// outer `:placement` composite-reference axis is the natural pair
5339 /// to the peer `:politicas` composite-reference axis on the two
5340 /// operationally-symmetric M3 mesh slots (`:politicas` carries the
5341 /// how-to-run policy overlay, `:placement` carries the where-to-run
5342 /// distribution composite — every whole-Aplicacao mesh-artifact
5343 /// emitter reads both as one unit). Same "one typed dispatch on the
5344 /// substrate primitive, thin projections at each consumer"
5345 /// discipline the peer per-`:politicas` composite-reference axis
5346 /// already routes through. The one remaining outer-composite axis
5347 /// still unlifted at the time of this lift —
5348 /// [`AplicacaoSpec::entrada`] (`Option<Entrada>` per-Aplicacao
5349 /// external-gateway composite) — inherits this accessor's discipline
5350 /// as the next compounding run migrates its consumers onto the shared
5351 /// reference-return shape, closing the outer-composite altitude on
5352 /// every M3 mesh-slot axis. Named `placement()` to match the storage
5353 /// field's name verbatim and the tatara-lisp author-surface term
5354 /// (`:placement`) the field's own docstring already carries; the
5355 /// accessor's identity maps onto the canonical MESH-COMPOSITION §II
5356 /// vocabulary the slot's docstring already reaches for. Returns
5357 /// `&Placement` (not the owning composite by copy or clone) because
5358 /// every downstream consumer of the placement composite treats it as
5359 /// a read-only per-axis dispatch source — the reference-view is the
5360 /// narrowest borrow that supports every present + roadmapped consumer
5361 /// (per-axis accessor dispatch, serde composite-serialization) without
5362 /// cloning the composite through every consumer's fast path.
5363 #[must_use]
5364 pub fn placement(&self) -> &Placement {
5365 &self.placement
5366 }
5367
5368 /// Substrate-canonical per-`:entrada` `Entrada` MESH-COMPOSITION
5369 /// per-Aplicacao external-gateway composite optional-composite-
5370 /// reference accessor every per-Aplicacao gateway-block reader
5371 /// keys off — returns the author-declared `:entrada` composite
5372 /// verbatim as an `Option<&Entrada>` reference over the same
5373 /// backing storage the raw `self.entrada.as_ref()` field access
5374 /// borrows from, with `None` naming the internal-only mesh shape
5375 /// (the author-omitted `:entrada` slot the K8s Gateway API v1
5376 /// gateway_routes emitter treats as "emit nothing" and the peer
5377 /// `feira app graph` printer treats as "internal-only mesh").
5378 ///
5379 /// The `:entrada` slot carries the M3 mesh-slot per-Aplicacao
5380 /// external-gateway composite — the load-bearing container of
5381 /// every does-this-Aplicacao-expose-a-public-endpoint axis every
5382 /// downstream cluster-artifact emitter fans on (MESH-COMPOSITION
5383 /// §III.4 for the `:host` K8s Gateway API v1 apiserver-validated
5384 /// hostname axis, §III.4 for the `:para` destination-Servico
5385 /// axis, §III.4 for the `:paths` HTTPRoute path-list axis, §III.4
5386 /// for the `:port` L4 backendRefs port axis). Every per-`:entrada`
5387 /// axis threads through a lifted per-slot accessor on the
5388 /// [`Entrada`] type: the [`Entrada::hostname`] (6db982c) K8s
5389 /// Gateway-API `Listener.hostname` scalar accessor, the paired
5390 /// [`Entrada::hostnames`] (`&HTTPRoute.spec.hostnames`)
5391 /// singleton-list resolver, the [`Entrada::destination`] (821a80e)
5392 /// backendRefs destination-Servico scalar accessor, the
5393 /// [`Entrada::resolved_paths`] path-fallback resolver, and the
5394 /// [`Entrada::port`] (9f9becd) Gateway-API-mesh L4 listener-port
5395 /// scalar accessor. Every downstream consumer that reaches for
5396 /// an entrada axis first passes through this outer accessor onto
5397 /// the composite and then dispatches onto the per-axis accessor
5398 /// — the two-level dispatch means every per-`:entrada` reader
5399 /// now routes through a typed dispatch on the substrate primitive
5400 /// at both altitudes.
5401 ///
5402 /// Prior to this lift the `.entrada` `Option<Entrada>` composite
5403 /// was accessed inline at four production sites — the
5404 /// [`AplicacaoSpec::validate`] per-`:entrada` shape-and-membership
5405 /// gate's `if let Some(e) = &self.entrada { … }` traversal head
5406 /// (which drives every per-axis refusal on the composite: the
5407 /// `validate_entrada_para` DNS-1123 shape gate on `e.para`, the
5408 /// `EntradaMemberMissing` membership lookup against the
5409 /// `:membros` accept-set, the `EmptyEntradaHost` refusal, the
5410 /// `validate_entrada_host` K8s Gateway API v1 apiserver-shape
5411 /// gate on `e.host`, and the `validate_entrada_path` HTTPRoute
5412 /// per-path shape gate on each entry of `e.paths`), the
5413 /// [`AplicacaoSpec::port_for_destination`] per-Aplicacao L4-port
5414 /// fallback resolver's `self.entrada.as_ref().filter(…).map_or(…)`
5415 /// composite-projection seed (which drives the destination-
5416 /// facing `Entrada::port` lookup every per-Aplicacao HTTPRoute
5417 /// backendRefs port emitter fans on), the
5418 /// [`caixa_mesh::gateway_routes`] per-Aplicacao K8s Gateway API
5419 /// v1 Gateway + HTTPRoute emitter's `spec.entrada.as_ref()`
5420 /// early-return seed (which drives the "no `:entrada` ⇒ no
5421 /// external artifacts" partition on the whole-Aplicacao Gateway-
5422 /// API emitter's fan-out), and the `feira app graph` per-
5423 /// Aplicacao print line's `if let Some(e) = &spec.entrada`
5424 /// external-gateway summary emitter (which drives the human-
5425 /// readable `entrada: host → para (paths=…, port=…)` /
5426 /// `entrada: (internal-only mesh)` partition on the typed
5427 /// Aplicacao view) — four open-coded outer-field accesses that
5428 /// expressed no compile-time link back to the typed slot at the
5429 /// [`AplicacaoSpec`] altitude. A future extension of the
5430 /// `:entrada` outer axis to a richer author surface (a
5431 /// multi-`:entrada` list the M4 CR materializer resolves per-CR
5432 /// at admission time so an Aplicacao can expose a public-web +
5433 /// admin-web pair, a per-cluster `:entrada-overrides` slot the
5434 /// MESH-COMPOSITION §V federation roadmap acknowledges so an
5435 /// operator can pin a per-cluster hostname override without
5436 /// re-authoring the `caixa.lisp`, a promotion of the plain
5437 /// `Option<Entrada>` to a richer `{single, multi}` partition once
5438 /// the multi-`:entrada` roadmap lands) would have had to be
5439 /// threaded through all four open-coded copies in lockstep or one
5440 /// consumer would silently disagree with the peers on which
5441 /// entrada composite a given Aplicacao resolves to — the
5442 /// validator's per-axis bracket-dispatch seed reading the raw
5443 /// slot while the peer `gateway_routes` emitter read an
5444 /// operator-resolved slot would silently split the build-time
5445 /// gateway-shape gate from the runtime Gateway + HTTPRoute
5446 /// emission gate, a four-consumer split at the validator, the
5447 /// `port_for_destination` L4-port resolver, the `gateway_routes`
5448 /// emitter, and the `feira app graph` printer far from the
5449 /// source `caixa.lisp` with no field naming the entrada-drift
5450 /// root cause. Lifting the resolution rule to a typed method on
5451 /// the substrate primitive means every downstream consumer of
5452 /// the Aplicacao's per-`:entrada` external-gateway composite
5453 /// surface reaches for exactly one typed dispatch — the
5454 /// resolver's accept-set migrates as a unit on any future axis
5455 /// addition.
5456 ///
5457 /// Third and final `&Composite`-return accessor on the top-level
5458 /// M3 mesh-slot `AplicacaoSpec` type itself — closes the last
5459 /// unlifted outer-composite axis on the outer typed composition
5460 /// view, sibling to the seed [`AplicacaoSpec::politicas`]
5461 /// (534dc21) `&MeshPolicy` mesh-policy composite-reference
5462 /// accessor on the per-`:politicas` outer-composite axis and to
5463 /// the [`AplicacaoSpec::placement`] (9abb8f0) `&Placement`
5464 /// distribution-composite composite-reference accessor on the
5465 /// per-`:placement` outer-composite axis; extends the outer-
5466 /// composite reference-return discipline the two peers already
5467 /// route through onto the last unlifted per-`AplicacaoSpec`
5468 /// outer-composite axis. The `:entrada` outer-composite axis is
5469 /// the natural pair to the two peer outer-composite axes on the
5470 /// three operationally-symmetric M3 mesh-slot outer composites
5471 /// (`:politicas` carries the how-to-run policy overlay,
5472 /// `:placement` carries the where-to-run distribution composite,
5473 /// `:entrada` carries the who-can-reach-it external-gateway
5474 /// composite — every whole-Aplicacao mesh-artifact emitter reads
5475 /// all three as one unit). Same "one typed dispatch on the
5476 /// substrate primitive, thin projections at each consumer"
5477 /// discipline the peer outer-composite axes already route through.
5478 /// Named `entrada()` to match the storage field's name verbatim
5479 /// and the tatara-lisp author-surface term (`:entrada`) the
5480 /// field's own docstring already carries; the accessor's
5481 /// identity maps onto the canonical MESH-COMPOSITION §III.4
5482 /// vocabulary the slot's docstring already reaches for. Returns
5483 /// `Option<&Entrada>` (not the owning composite by copy or
5484 /// clone) because every downstream consumer of the entrada
5485 /// composite treats it as a read-only per-axis dispatch source
5486 /// — the reference-view is the narrowest borrow that supports
5487 /// every present + roadmapped consumer (per-axis accessor
5488 /// dispatch, `.as_ref().filter(…).map_or(…)` per-destination
5489 /// port-fallback projection, early-return partition on the
5490 /// `None` arm) without cloning the composite through every
5491 /// consumer's fast path. The `Option` half of the return-type
5492 /// preserves the load-bearing "author-omitted `:entrada` ⇒
5493 /// internal-only mesh" partition (not a default composite the
5494 /// downstream must reject on emptiness) — the accessor projects
5495 /// the raw `Option<Entrada>` slot's presence bit through the
5496 /// reference-return unchanged.
5497 #[must_use]
5498 pub fn entrada(&self) -> Option<&Entrada> {
5499 self.entrada.as_ref()
5500 }
5501
5502 /// Validate the typed shape:
5503 /// - `:membros` is non-empty; every entry has a non-empty `:caixa`
5504 /// and a non-empty `:versao`; no two entries share the same
5505 /// `:caixa` (MESH-COMPOSITION §III.1 — the graph nodes are a set,
5506 /// not a multiset)
5507 /// - every `:contratos` :de + :para must be in `:membros`
5508 /// - no `:contratos` edge is a self-edge (`:de == :para`) — a
5509 /// contract is an inter-Servico edge, so a Servico contracting
5510 /// with itself is a build error under every WIT shape
5511 /// (MESH-COMPOSITION §III.1)
5512 /// - no two `:contratos` entries agree on
5513 /// `(de, para, wit, endpoint, subject, slot)` — the typed-graph
5514 /// edges are a set, not a multiset (peer of the `:membros` /
5515 /// `:placement :clusters` / `:entrada :paths` duplicate gates)
5516 /// - `:entrada :para` must be in `:membros`
5517 /// - `:placement Sharded` must declare `:shard-key` (non-empty);
5518 /// `:placement Replicated`/`SingleNode` must NOT declare
5519 /// `:shard-key` — only the hash-keyed Akka-cluster-sharding axis
5520 /// consumes it (MESH-COMPOSITION §II.4), and the typed partition
5521 /// between strategy and shard-key is symmetric: every validated
5522 /// `Placement` has `shard_key.is_some()` iff `estrategia ==
5523 /// Sharded`
5524 /// - every `:placement` strategy must declare ≥1 `:clusters` entry —
5525 /// `Replicated`/`SingleNode` need hosting clusters, `Sharded` needs
5526 /// the shard pool (MESH-COMPOSITION §III.1)
5527 /// - every `:clusters` entry is non-empty and unique
5528 /// - `:placement :affinity`, when set, is non-empty
5529 /// - the synchronous-`:contratos` subgraph is acyclic
5530 /// (MESH-COMPOSITION §III.3)
5531 /// - every declared `:politicas` value is operationally meaningful
5532 /// (zero timeout, zero retries, zero breaker thresholds, zero rate
5533 /// limit are all build errors — MESH-COMPOSITION §V CSE invariants;
5534 /// omit the field instead to express "no policy on this axis")
5535 pub fn validate(&self) -> Result<(), AplicacaoError> {
5536 self.validate_membros()?;
5537 let names: std::collections::HashSet<&str> =
5538 self.membros().iter().map(Membro::nome).collect();
5539
5540 // Identity key for the typed-edge duplicate gate below: every
5541 // field that distinguishes one contract from another. Two
5542 // entries that agree on all six are *the same edge declared
5543 // twice*, the typed-graph analogue of duplicate `:membros` /
5544 // `:placement :clusters` / `:entrada :paths` entries (which
5545 // are already build errors at this layer). Rejecting it at the
5546 // validate gate closes a renderer-side footgun: caixa-mesh's
5547 // `cilium_network_policies` keys each emitted policy by
5548 // `<aplicacao>-<de>-to-<para>`, so two contracts with identical
5549 // (de, para) and identical payload would land as two K8s
5550 // objects with colliding `metadata.name`, rejected at apply
5551 // time far from the source caixa.lisp.
5552 let mut seen_contracts: std::collections::HashSet<ContratoIdentity<'_>> =
5553 std::collections::HashSet::new();
5554 for c in self.contratos() {
5555 // Per-axis value-shape gate on every `:contratos` name
5556 // reference, before any graph-membership lookup. Empty +
5557 // DNS-1123-malformed `:de`/`:para` values silently fell
5558 // through to `ContratoMemberMissing` at the lookup arm
5559 // because every `:membros :caixa` is shape-validated
5560 // (3f9d7a0), so the `names` set structurally cannot contain
5561 // an empty / malformed string and the membership-lookup
5562 // diagnostic always misframed the root cause as
5563 // "this caixa is not in `:membros`". The shape gate runs
5564 // ahead of the lookup so structurally-impossible-to-match
5565 // inputs route through the narrower self-locating
5566 // diagnostic, preserving the legitimate "well-shaped
5567 // phantom reference" arm. `:de` runs before `:para` per
5568 // the canonical edge-direction order the existing
5569 // membership lookup, self-edge check, target dispatch,
5570 // and diagnostic strings already use.
5571 // Route the per-`:contratos` per-arm DNS-1123 shape-gate arg
5572 // + the paired [`AplicacaoError::ContratoMemberMissing`]
5573 // diagnostic's `caixa:` carrier through the lifted
5574 // [`WitContract::source`] / [`WitContract::destination`]
5575 // scalar accessors rather than the raw `&c.de` / `&c.para`
5576 // `&String`-borrow arg site + the raw `c.de.clone()` /
5577 // `c.para.clone()` field-access `String`-carry sites — the
5578 // last unlifted per-`:contratos` raw-field-access sites in
5579 // the M3 mesh-slot validator's per-edge per-arm shape-gate
5580 // arg + phantom-name diagnostic wrap-envelope emit surface.
5581 // `c.source()` is byte-identical to `&c.de` (pinned by the
5582 // sibling `wit_contract_source_returns_de_byte_equal_across_permutations`
5583 // + `wit_contract_source_borrows_from_de_storage` accessor
5584 // tests) and `c.destination()` is byte-identical to `&c.para`
5585 // (pinned by the sibling
5586 // `wit_contract_destination_returns_para_byte_equal_across_permutations`
5587 // + `wit_contract_destination_borrows_from_para_storage`
5588 // accessor tests) — so a future rebrand of either underlying
5589 // storage flows through the accessor's one body without a
5590 // coordinated per-consumer rewrite across the M3 mesh
5591 // validator's per-edge shape-gate + phantom-name refusal
5592 // arms. Peer of the sibling per-`:contratos` self-loop
5593 // arm's `.source().to_string()` / `.world_ref().to_string()`
5594 // `String`-carry sites the earlier convergence lifted onto
5595 // the same accessor pair.
5596 validate_contrato_caixa(crate::render::CONTRATO_AUTHOR_KEY_DE, c.source())?;
5597 validate_contrato_caixa(crate::render::CONTRATO_AUTHOR_KEY_PARA, c.destination())?;
5598 if !names.contains(c.source()) {
5599 return Err(AplicacaoError::ContratoMemberMissing {
5600 caixa: c.source().to_string(),
5601 });
5602 }
5603 if !names.contains(c.destination()) {
5604 return Err(AplicacaoError::ContratoMemberMissing {
5605 caixa: c.destination().to_string(),
5606 });
5607 }
5608 // A `:contratos` entry is an *inter*-Servico contract
5609 // (MESH-COMPOSITION §III.1 — "Servico A calls Servico B"): a
5610 // typed edge between two distinct graph nodes. An edge whose
5611 // `:de` equals its `:para` is a Servico contracting with
5612 // itself — a degenerate edge under every WIT shape. The
5613 // synchronous shapes were caught only incidentally, and with
5614 // a misleading diagnostic: `detect_sync_cycles` reported
5615 // `cart → cart` as a `ContratoCycle` whose path is
5616 // `["cart", "cart"]` — framing a self-edge as a multi-node
5617 // deadlock. The pub-sub shape slipped through entirely
5618 // (`detect_sync_cycles` excludes `WitTarget::PubSub`, so a
5619 // `nats:pub-sub` edge from a member to itself silently
5620 // validated, then rendered a `CiliumNetworkPolicy` whose
5621 // endpointSelector and fromEndpoints both name the same
5622 // program — a self-allow rule that is a no-op, since
5623 // intra-pod traffic never traverses the mesh). A self-edge's
5624 // runtime meaning is an in-process call, which doesn't go
5625 // through the mesh at all, so no `:contratos` edge can carry
5626 // it. Firing the gate before the `:wit`/`target()` shape
5627 // checks means the structural "this edge can't exist" error
5628 // precedes the narrower payload-shape diagnostics, and shape-
5629 // agnostically covers all four `WitTarget` arms (HTTP / Store
5630 // / Capability / PubSub) at one point — closing the pub-sub
5631 // hole and replacing the misleading cycle diagnostic in one
5632 // gate. Peer of the duplicate-`:contratos` / duplicate-
5633 // `:membros` set gates: both reject a structurally
5634 // ill-formed graph at the typed surface, before the renderer
5635 // emits a K8s object that fails or no-ops far from the source
5636 // caixa.lisp.
5637 // Route the per-`:contratos` structural self-edge probe
5638 // through the lifted [`WitContract::is_self_loop`] typed
5639 // predicate rather than the raw `c.de == c.para` field-
5640 // equality check — the one production consumer of the per-
5641 // `:contratos` caller-equals-callee endpoint-equality axis
5642 // now keys off exactly one typed dispatch on the substrate
5643 // primitive, so any future rebrand of the axis (an M4-typed-
5644 // caller enum whose identity comparison rule the predicate
5645 // could route through, a per-cluster caller/callee-alias
5646 // table the M4 CR materializer resolves per-CR before the
5647 // equality probe) migrates as a single caixa-core edit
5648 // rather than a coordinated rewrite of the gate + every
5649 // downstream self-edge consumer. Peer of the sibling
5650 // [`WitContract::is_http`] / [`WitContract::is_pubsub`] /
5651 // [`WitContract::is_store`] shape-predicate routing on the
5652 // `:wit` world-ref axis, extended onto the per-edge
5653 // endpoint-equality axis.
5654 //
5655 // Route the paired [`AplicacaoError::ContratoSelfLoop`]
5656 // diagnostic's `caixa:` / `wit:` carriers through the
5657 // lifted [`WitContract::source`] / [`WitContract::world_ref`]
5658 // scalar accessors rather than the raw `c.de.clone()` /
5659 // `c.wit.clone()` field-access `String`-carry sites — the
5660 // last unlifted per-`:contratos` raw-field-access
5661 // `.clone()` sites in the M3 mesh-slot validator's self-
5662 // edge refusal arm. `.source().to_string()` is byte-
5663 // identical to `.de.clone()` (pinned by the sibling
5664 // `source_returns_de_byte_equal_across_permutations` accessor
5665 // test), and `.world_ref().to_string()` is byte-identical
5666 // to `.wit.clone()` (pinned by the sibling
5667 // `world_ref_returns_wit_byte_equal_across_permutations`
5668 // accessor test) — so a future rebrand of either underlying
5669 // storage flows through the accessor's one body without a
5670 // coordinated per-consumer rewrite across the M3 mesh
5671 // validator.
5672 if c.is_self_loop() {
5673 return Err(AplicacaoError::ContratoSelfLoop {
5674 caixa: c.source().to_string(),
5675 wit: c.world_ref().to_string(),
5676 });
5677 }
5678 if c.world_ref().is_empty() {
5679 let (de, para) = c.edge_pair();
5680 return Err(AplicacaoError::EmptyWit { de, para });
5681 }
5682 // Shape ↔ target consistency — surfaces "HTTP wit without
5683 // :endpoint", "NATS wit with :endpoint set", etc. as named
5684 // build errors instead of silent renderer drops. Threaded
5685 // through the duplicate-edge diagnostic below (via
5686 // [`WitTarget::label`]) so the "which typed target arm did
5687 // the duplicate carry" question is answered by the typed
5688 // enum's variant discriminator, not by re-probing the raw
5689 // `Option<String>` payload fields.
5690 let target_view = c.target()?;
5691 // Contract identity: (de, para, wit, endpoint, subject, slot).
5692 // Two contracts that match on all six are the same typed edge
5693 // declared twice — author error, not a legitimate variant of
5694 // "same caller-callee pair, different payload" (e.g.
5695 // cart→catalog at /products vs /search), which keeps distinct
5696 // identity keys via the differing endpoint payloads.
5697 let key = (
5698 c.source(),
5699 c.destination(),
5700 c.world_ref(),
5701 // Route the HTTP-arm payload-carrier scalar through the
5702 // lifted [`WitContract::endpoint`] accessor rather than
5703 // the raw `c.endpoint.as_deref()` field access — the two
5704 // production consumers of the per-`:contratos :endpoint`
5705 // HTTP-shaped payload-carrier scalar (the peer
5706 // [`WitContract::target`] Http-arm payload extraction,
5707 // this [`ContratoIdentity`] dedup-key HTTP arm) now key
5708 // off exactly one typed dispatch on the substrate
5709 // primitive, closing the second of six unlifted
5710 // per-`:contratos` `Option<String>`-carry sites and
5711 // pinning the peer per-`:contratos` scalar-accessor
5712 // discipline ([`WitContract::source`] /
5713 // [`WitContract::destination`] / [`WitContract::world_ref`])
5714 // onto the first per-`:contratos` payload-carrier arm.
5715 c.endpoint(),
5716 // Route the pub-sub-arm payload-carrier scalar through
5717 // the lifted [`WitContract::subject`] accessor rather
5718 // than the raw `c.subject.as_deref()` field access —
5719 // the two production consumers of the per-`:contratos
5720 // :subject` pub-sub-shaped payload-carrier scalar (the
5721 // peer [`WitContract::target`] PubSub-arm payload
5722 // extraction, this [`ContratoIdentity`] dedup-key
5723 // pub-sub arm) now key off exactly one typed dispatch
5724 // on the substrate primitive, closing the third of six
5725 // unlifted per-`:contratos` `Option<String>`-carry
5726 // sites and extending the peer per-`:contratos`
5727 // HTTP-arm [`WitContract::endpoint`] (7020470) lift
5728 // onto the pub-sub arm. Leaves the [`WitContract::slot`]
5729 // key/value-store arm as the last unlifted per-
5730 // `:contratos` `Option<String>` axis.
5731 c.subject(),
5732 // Route the store-arm payload-carrier scalar through
5733 // the lifted [`WitContract::slot`] accessor rather
5734 // than the raw `c.slot.as_deref()` field access — the
5735 // two production consumers of the per-`:contratos
5736 // :slot` key/value-store-shaped payload-carrier scalar
5737 // (the peer [`WitContract::target`] Store-arm payload
5738 // extraction, this [`ContratoIdentity`] dedup-key
5739 // store arm) now key off exactly one typed dispatch
5740 // on the substrate primitive, closing the last of six
5741 // unlifted per-`:contratos` `Option<String>`-carry
5742 // sites and completing the peer per-`:contratos`
5743 // HTTP-arm [`WitContract::endpoint`] (7020470) /
5744 // pub-sub-arm [`WitContract::subject`] (90de675) lift
5745 // family onto the store arm.
5746 c.slot(),
5747 );
5748 crate::render::insert_first_seen(&mut seen_contracts, key, || {
5749 // Route the per-`:contratos` duplicate-gate diagnostic's
5750 // `(de, para, wit)` triple through the lifted
5751 // [`WitContract::edge_triple`] typed accessor rather
5752 // than pairing `edge_pair()` for the `(de, para)` prefix
5753 // with a raw `c.wit.clone()` for the `wit:` tail — the
5754 // paired-with-raw-field-access shape was the last
5755 // per-`:contratos` diagnostic constructor bypassing the
5756 // substrate-primitive composite projection, sibling to
5757 // the eight [`AplicacaoError::Contrato*`] triple-
5758 // carrying constructors [`WitContract::target`]'s edge
5759 // closure feeds through the same accessor.
5760 let (de, para, wit) = c.edge_triple();
5761 AplicacaoError::ContratoDuplicate {
5762 de,
5763 para,
5764 wit,
5765 target: target_view.label(),
5766 }
5767 })?;
5768 }
5769
5770 // Cycles in the synchronous-edge subgraph are build errors
5771 // (MESH-COMPOSITION §III.3). Pub-sub edges are excluded — they
5772 // are "acyclic by construction" because the publisher fires
5773 // and forgets, so no caller blocks on a downstream that loops
5774 // back to it.
5775 self.detect_sync_cycles()?;
5776
5777 if let Some(e) = self.entrada() {
5778 // Route the per-`:entrada` composite-reference read
5779 // through the lifted [`AplicacaoSpec::entrada`] accessor
5780 // rather than the raw `&self.entrada` field access — the
5781 // shape-and-membership gate's traversal head is now the
5782 // canonical read-side surface every per-Aplicacao entrada
5783 // consumer routes through, closing the fourth of four
5784 // open-coded outer-field accesses on the per-`:entrada`
5785 // outer-composite axis.
5786 //
5787 // Shape gate on `:entrada :para` runs ahead of the
5788 // membership lookup. Every `:membros :caixa` past
5789 // `validate_membro_caixa` is a valid DNS-1123 label
5790 // (3f9d7a0), so the `names` set structurally cannot
5791 // contain an empty / malformed string and the membership-
5792 // lookup diagnostic always misframed the root cause as
5793 // "this caixa is not in `:membros`". The shape gate
5794 // routes structurally-impossible-to-match inputs through
5795 // the narrower self-locating diagnostic, preserving the
5796 // legitimate "well-shaped phantom reference" arm — the
5797 // same trajectory the peer `:membros :caixa` (3f9d7a0),
5798 // `:placement :clusters` (6c8c00b), and `:contratos :de`
5799 // / `:para` (8d5af6b) axes already follow. This closes
5800 // the fourth and last Aplicacao-level Servico-name
5801 // reference axis on the canonical DNS-1123 floor.
5802 // Route the per-`:entrada :para` byte-string reads through
5803 // the lifted [`Entrada::destination`] accessor rather than
5804 // the raw `e.para` field access — the three
5805 // per-`AplicacaoSpec::validate` `:entrada :para` consumers
5806 // (shape-gate `validate_entrada_para` arg, membership
5807 // lookup, `EntradaMemberMissing` diagnostic carry) now key
5808 // off exactly one typed dispatch on the substrate
5809 // primitive, closing the last unlifted per-`:entrada :para`
5810 // raw-field-access axis on the M3 mesh-slot validator.
5811 // The `.destination().to_string()` at the diagnostic site
5812 // is byte-identical to `.para.clone()` — pinned by the
5813 // sibling `destination_returns_entrada_para_byte_equal` +
5814 // `destination_borrows_from_entrada_para_storage` accessor
5815 // tests — so a future rebrand of the underlying `:para`
5816 // storage (a lift from `String` to a typed
5817 // `ServicoName(String)` newtype, a per-Aplicacao interning
5818 // arena the M4 CR materializer authors, a
5819 // `smol_str::SmolStr` inline-buffer swap) flows through
5820 // the accessor's one body without a coordinated
5821 // per-consumer rewrite across the M3 mesh validator.
5822 validate_entrada_para(e.destination())?;
5823 if !names.contains(e.destination()) {
5824 return Err(AplicacaoError::EntradaMemberMissing {
5825 para: e.destination().to_string(),
5826 });
5827 }
5828 // Route the per-`:entrada :host` byte-string reads through
5829 // the lifted [`Entrada::hostname`] accessor rather than
5830 // the raw `e.host` field access — the emptiness gate and
5831 // the shape-gate `validate_entrada_host` arg now key off
5832 // exactly one typed dispatch on the substrate primitive,
5833 // closing the last unlifted per-`:entrada :host` raw-
5834 // field-access axis on the M3 mesh-slot validator. Peer
5835 // of the sibling per-`:entrada :para` convergence above
5836 // and pinned by the existing
5837 // `hostname_returns_entrada_host_byte_equal` +
5838 // `hostnames_returns_singleton_of_hostname_accessor`
5839 // accessor tests, so any future
5840 // Gateway-API-shaped host renormalization (a wildcard-
5841 // label lift, a trailing-`.` FQDN substitution, an IDNA
5842 // Punycode round-trip the SNI fan-out overlay authors)
5843 // flows through the accessor's one body without a
5844 // coordinated per-consumer rewrite across the M3 mesh
5845 // validator.
5846 if e.hostname().is_empty() {
5847 return Err(AplicacaoError::EmptyEntradaHost);
5848 }
5849 // The `:host` lands verbatim as a K8s Gateway API v1
5850 // `Listener.hostname` *and* `HTTPRoute.spec.hostnames[0]` —
5851 // both apiserver-validated against the same restrictive
5852 // pattern: lowercase RFC 1123 DNS subdomain, optional
5853 // single leading wildcard label (`*.`), max length 253,
5854 // per-label max length 63, no IP literals, no scheme,
5855 // no port. Until this gate landed `validate()` only
5856 // refused the empty string (`EmptyEntradaHost`); a
5857 // structurally invalid hostname (`"https://example.com"`,
5858 // `"checkout.quero.cloud:8080"`, `"1.2.3.4"`,
5859 // `"_underscored.example.com"`, `"FOO.example.com"`,
5860 // `"checkout.quero.cloud."`) silently passed validate
5861 // and the apiserver `field is invalid` error surfaced at
5862 // `kubectl apply` time, far from the source caixa.lisp.
5863 // Lifting the gate to caixa-build time mirrors the
5864 // `:entrada :paths` value-shape trajectory (eb3456d) and
5865 // closes the last unstructured `:entrada` axis.
5866 validate_entrada_host(e.hostname())?;
5867 // Structural-floor gate on `:entrada :port`: every
5868 // validated `Entrada::port` past this gate lies in
5869 // `SERVICO_PORT_MIN..=u16::MAX` (the `u16` field's natural
5870 // type-inferred ceiling closes the top edge, so no companion
5871 // upper-cap arm is needed here — unlike the peer capped-
5872 // `u32` `:politicas` / `:supervisor` / `:limits` axes whose
5873 // `require_positive_bounded_u32` bracket covers both edges).
5874 // Routes through the lifted [`SERVICO_PORT_MIN`] canonical
5875 // accept-set-floor const rather than the prior inline
5876 // `if e.port == 0` byte-check so a future rebrand of the
5877 // accept-set floor (a hypothetical unprivileged-only
5878 // migration lifting the floor to `1024`, a per-cluster
5879 // scoping the operator pins through a future
5880 // `:placement :port-floor` slot as the M4 typed-slot
5881 // trajectory adds it, the future
5882 // `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
5883 // per-Aplicacao gateway resolver reaching for the same
5884 // floor) is a one-line edit on the canonical
5885 // [`SERVICO_PORT_MIN`] declaration, not a coordinated
5886 // rewrite across the emit site + the pin test + every
5887 // future per-target renderer the substrate adds.
5888 if e.port() < SERVICO_PORT_MIN {
5889 return Err(AplicacaoError::EntradaPortZero);
5890 }
5891 // Each `:entrada :paths` entry becomes a K8s Gateway API
5892 // HTTPRoute `matches[].path.value`. The Gateway API rejects
5893 // values that don't start with `/` for `type: PathPrefix`,
5894 // and an empty value is meaningless. Surface those as build
5895 // errors (MESH-COMPOSITION §III.3) rather than apply-time
5896 // failures. Empty `:paths` itself is fine — caixa-mesh
5897 // falls back to a single `/` catch-all.
5898 let mut seen = std::collections::HashSet::new();
5899 // Route the per-entry value-shape gate's traversal head
5900 // through the lifted [`Entrada::paths`] slice accessor
5901 // rather than the raw `&e.paths` field access — the
5902 // per-Aplicacao `:entrada :paths` validate loop now keys
5903 // off the canonical raw-slot surface every downstream
5904 // per-`:entrada` path-list consumer (the sibling
5905 // [`Entrada::resolved_paths`] fallback-applying resolver
5906 // internal reads, `feira app graph`'s per-Aplicacao entrada
5907 // summary line's `{:?}` Debug print) routes through, so any
5908 // future rebrand on the typed slot's raw-slot reader lands
5909 // at exactly one place. Same convergence discipline as the
5910 // sibling [`Placement::clusters`] (a6e18d7) reader-site
5911 // convergences on the peer M3 mesh-slot `Vec<String>`-carry
5912 // axis.
5913 for p in e.paths() {
5914 if p.is_empty() {
5915 return Err(AplicacaoError::EntradaPathEmpty);
5916 }
5917 if !p.starts_with('/') {
5918 return Err(AplicacaoError::EntradaPathNotAbsolute { path: p.clone() });
5919 }
5920 // Per-entry value-shape gate: the path lands verbatim
5921 // as a K8s Gateway API HTTPRoute `matches[].path.value`
5922 // (caixa-mesh/src/lib.rs:498), apiserver-validated
5923 // against `maxLength: 1024` + the Gateway API webhook's
5924 // path-grammar rules (no `//`, no `/./`, no `/../`, no
5925 // query/fragment separators, no whitespace, no control
5926 // characters, no non-ASCII bytes). Until this gate
5927 // landed `validate` only refused the empty string and
5928 // missing-leading-slash (eb3456d); a structurally
5929 // invalid path (`"/api?q=1"`, `"/api#frag"`,
5930 // `"/api bar"`, `"/api/../etc"`, `"/api//cart"`, a
5931 // 1025-byte URL-shaped slug) silently passed validate
5932 // and the failure surfaced at `kubectl apply` time as
5933 // a Gateway API webhook rejection, far from the source
5934 // caixa.lisp, with no field naming the offending
5935 // `:paths` entry. Lifting the gate to caixa-build time
5936 // mirrors the `:entrada :host` value-shape trajectory
5937 // (c7d05ec) on the sibling axis — every author surface
5938 // that emits a Gateway API field now matches the
5939 // apiserver's accepted set at validate time.
5940 validate_entrada_path(p)?;
5941 crate::render::insert_first_seen(&mut seen, p.as_str(), || {
5942 AplicacaoError::EntradaPathDuplicate { path: p.clone() }
5943 })?;
5944 }
5945 }
5946
5947 self.validate_placement()?;
5948
5949 self.validate_politicas()?;
5950
5951 Ok(())
5952 }
5953
5954 /// Reject `:membros` values that are operationally meaningless. The
5955 /// `:membros` slot is the graph node set (MESH-COMPOSITION §III.1):
5956 /// every entry names a Servico that participates in the Aplicacao,
5957 /// and the rendered programs.yaml fan-out emits one entry per
5958 /// `:membros`. Three authoring footguns are closed here:
5959 ///
5960 /// - `:caixa ""` — caixa-mesh's `programs_for_aplicacao` would emit
5961 /// a `programs:` entry whose `name:` is the empty string, which
5962 /// downstream `lareira-fleet-programs` rejects at template time
5963 /// with a non-localized error;
5964 /// - `:versao ""` — caixa-resolver's lacre pipeline can't resolve
5965 /// an empty semver constraint, so the failure surfaces far from
5966 /// the source caixa.lisp;
5967 /// - duplicate `:caixa` names — two entries with the same name
5968 /// produce duplicate programs.yaml entries (one silently
5969 /// overwrites the other in the cluster's HelmRelease values), and
5970 /// contract membership lookups against `:contratos` collapse the
5971 /// two onto one node, masking authoring mistakes.
5972 ///
5973 /// Same value-shape discipline as `:placement :clusters` (where empty
5974 /// + duplicate cluster names are rejected) and `:entrada :paths`
5975 /// (where empty + duplicate path entries are rejected). Lifting these
5976 /// invariants to the typed surface mirrors the MESH-COMPOSITION
5977 /// §III.3 promise that the `:membros` set — the load-bearing identity
5978 /// of the application graph — is well-formed by construction.
5979 fn validate_membros(&self) -> Result<(), AplicacaoError> {
5980 if self.membros().is_empty() {
5981 return Err(AplicacaoError::NoMembros);
5982 }
5983 let mut seen = std::collections::HashSet::new();
5984 for m in self.membros() {
5985 // Route the `MembroCaixaEmpty` refusal-arm's per-member
5986 // empty-`:caixa` shape-gate through the typed
5987 // [`Membro::nome`] accessor rather than the raw `.caixa`
5988 // field access — the last un-lifted `.caixa` production-
5989 // code read site on the per-`:membros` member-caixa `:nome`
5990 // axis, sibling to the six caixa-core validator read sites
5991 // (member-set collector, per-member value-shape gate,
5992 // duplicate dedup key, cycle-detector adjacency-map seed,
5993 // self-loop gate) the 4a32abf lift already routed through
5994 // the accessor and the peer 54bf2f3 caixa-mesh emit-side
5995 // per-`programs[]` entry-`name:` `String`-carry converge.
5996 // Prior to this converge the `MembroCaixaEmpty` refusal
5997 // arm was the solitary consumer bypassing the typed
5998 // dispatch — the same-loop iteration's very next call
5999 // `validate_membro_caixa(m.nome())` already routed through
6000 // the accessor, so an author landing an empty-`:caixa`
6001 // entry hit the accessor on the shape-gate line but
6002 // bypassed it on the emptiness line one line above. A
6003 // future extension of the `:membros :caixa` axis to a
6004 // richer author surface (a per-cluster alias table pinned
6005 // through a future `:placement`-scoped slot, a namespace-
6006 // qualified rewrite the M4 CR materializer applies per-CR,
6007 // a per-member overlay from the future `:membros
6008 // :nome-suffix` slot MESH-COMPOSITION §III.2 acknowledges)
6009 // that lands on the accessor would silently disagree
6010 // between the emptiness gate and every peer consumer —
6011 // an author-declared `:caixa "checkout"` value the
6012 // accessor rewrote to `""` under a future alias arm would
6013 // pass the raw `.is_empty()` gate here while the peer
6014 // `validate_membro_caixa(m.nome())` call one line below
6015 // (and every downstream emit-side consumer routing through
6016 // the accessor) tripped on the empty-value shape far from
6017 // this diagnostic. Pinned by the drift-detection test
6018 // [`validate_membros_empty_gate_routes_through_nome_accessor`]
6019 // below.
6020 if m.nome().is_empty() {
6021 return Err(AplicacaoError::MembroCaixaEmpty);
6022 }
6023 // Every emitted cluster artifact's `metadata.name` derives
6024 // from a `:membros :caixa` value verbatim — the rendered
6025 // programs.yaml entry's `name:` (caixa-mesh/src/lib.rs:133),
6026 // the [`crate::LABEL_PROGRAM`] label value on every CNP
6027 // endpointSelector / fromEndpoints (caixa-mesh/src/lib.rs:263,
6028 // 272), the composed `CiliumNetworkPolicy` `metadata.name`
6029 // (caixa-mesh/src/lib.rs:250), and the Gateway API HTTPRoute
6030 // `metadata.name` when the member is the `:entrada :para`
6031 // target (caixa-mesh/src/lib.rs:423). Each apiserver-side
6032 // schema enforces the DNS-1123 label rule on admission;
6033 // a structurally invalid member name (`"Cart"`, `"my_cart"`,
6034 // `"my.cart"`, `"-cart"`, `"cart-"`, the >63-byte UUID-shaped
6035 // mistaken-identity slug) silently passes the prior empty-/
6036 // duplicate-only gate and the failure surfaces at `kubectl
6037 // apply` time as a `metadata.name: Invalid value` rejection,
6038 // far from the source caixa.lisp, with no field naming the
6039 // offending `:membros` entry. Lifting the gate to caixa-build
6040 // time mirrors the `:entrada :host` value-shape trajectory
6041 // (c7d05ec) on the peer axis — every author surface that
6042 // emits a K8s name now matches the apiserver's accepted set
6043 // at validate time.
6044 validate_membro_caixa(m.nome())?;
6045 // The author surface for `:versao` is the same Cargo-shaped
6046 // semver requirement string (`"^0.1"`, `"~0.1.2"`, `"0.1.0"`,
6047 // `"*"`) every `:deps` entry carries — and the lacre pipeline
6048 // resolves both axes through the same
6049 // [`crate::version::parse_requirement`] entry-point. The
6050 // shared [`crate::render::require_valid_versao_requirement`]
6051 // helper brackets the empty-first + parse cascade both peer
6052 // axes ([`crate::dep::Dep::validate`] on `:deps :versao`,
6053 // [`crate::SupervisorSpec::validate`] on `:children :versao`)
6054 // route through, so drift between the three axes' accepted
6055 // requirement sets is structurally impossible and the parse-
6056 // side no-op the empty-first arm closes (semver's empty
6057 // parse yields an implicit `*`) lives in exactly one
6058 // predicate.
6059 crate::render::require_valid_versao_requirement(
6060 m.versao_requirement(),
6061 || AplicacaoError::MembroVersaoEmpty {
6062 caixa: m.nome().to_string(),
6063 },
6064 |reason| AplicacaoError::MembroVersaoInvalid {
6065 caixa: m.nome().to_string(),
6066 versao: m.versao_requirement().to_string(),
6067 reason,
6068 },
6069 )?;
6070 crate::render::insert_first_seen(&mut seen, m.nome(), || {
6071 AplicacaoError::MembroDuplicate {
6072 caixa: m.nome().to_string(),
6073 }
6074 })?;
6075 }
6076 Ok(())
6077 }
6078
6079 /// Reject `:placement` values that are operationally meaningless or
6080 /// internally contradictory. Each strategy variant has the same
6081 /// invariants on `:clusters` (non-empty list, non-empty unique
6082 /// entries) — the §III.1 author surface is uniform on this axis,
6083 /// even though the *meaning* of the list differs by strategy
6084 /// (`Replicated`/`SingleNode` host the app; `Sharded` defines the
6085 /// shard pool).
6086 ///
6087 /// Empty cluster names or a `Some("")` `:shard-key`/`:affinity`
6088 /// are the same authoring footgun closed for `:politicas` zero
6089 /// values and `:entrada` empty paths: the field is *declared* but
6090 /// carries no meaning, so downstream renderers either skip it
6091 /// silently (cluster-fanout drops the empty entry, no diagnostic)
6092 /// or apply it literally and fail at admission time. Lifting both
6093 /// to build errors mirrors MESH-COMPOSITION §III.3's "placement
6094 /// violation is a build error" promise.
6095 ///
6096 /// `:shard-key` and `:estrategia` are typed-partitioned: the slot
6097 /// is required exactly when `:estrategia Sharded` (hash-keyed
6098 /// distribution, Akka cluster-sharding convention, §II.4) and
6099 /// refused on `:estrategia Replicated`/`SingleNode` (where no
6100 /// hash-keyed routing axis consumes it). The partition closes the
6101 /// "I think I configured sharding" footgun where an author writes
6102 /// `:placement (:estrategia Replicated :shard-key "tenantId")` and
6103 /// the typed slot's value silently vanishes at the renderer layer
6104 /// — every validated `Placement` past this call satisfies
6105 /// `shard_key.is_some() == matches!(estrategia, Sharded)`.
6106 fn validate_placement(&self) -> Result<(), AplicacaoError> {
6107 // Every strategy needs at least one named cluster: `Replicated`
6108 // and `SingleNode` use the list as hosting/takeover candidates
6109 // (Erlang/OTP distributed-app convention — see MESH-COMPOSITION
6110 // §II.1), while `Sharded` uses it as the shard pool
6111 // (Akka cluster-sharding convention — §II.4). An empty list is
6112 // meaningless under any of the three.
6113 //
6114 // Route the paired pre-flight `.is_empty()` refusal probe and
6115 // the per-cluster validate loop's traversal head through the
6116 // lifted [`Placement::clusters`] slice-return accessor rather
6117 // than the raw `self.placement.clusters` field access — the
6118 // two production consumers of the per-`:placement` cluster-
6119 // pool `Vec`-carry now key off exactly one typed dispatch on
6120 // the substrate primitive, so any future rebrand on the axis
6121 // (a per-tenant cluster-pool overlay the operator pins through
6122 // a future `:placement :clusters-overrides` slot, a per-
6123 // Aplicacao dynamic cluster-pool derivation the future M5
6124 // adaptive-placement engine computes from `:affinity` weights)
6125 // migrates as a single caixa-core edit rather than a
6126 // coordinated rewrite of the paired arms — sibling of the
6127 // peer M2 [`crate::SupervisorSpec::children`] (bc92bce) two-
6128 // arm migration on the per-`:supervisor` static-child-list
6129 // `Vec`-carry axis.
6130 //
6131 // Route the per-`:placement` outer-composite reference read
6132 // through the lifted [`AplicacaoSpec::placement`] outer accessor
6133 // rather than the raw `&self.placement` field access — the
6134 // per-axis bracket-dispatch fan-out below (`p.clusters()`,
6135 // `p.estrategia()`, `p.affinity()`, `p.shard_key()` on the
6136 // axis-level lifted accessor family) now routes through the
6137 // substrate-primitive typed dispatch at the outer composition
6138 // altitude, the same shape the peer caixa-mesh
6139 // `programs_for_aplicacao` per-Aplicacao programs.yaml emitter
6140 // and the sibling `feira app graph` per-Aplicacao print line
6141 // now key off after this accessor lift.
6142 let p = self.placement();
6143 if p.clusters().is_empty() {
6144 return Err(AplicacaoError::PlacementWithoutClusters {
6145 estrategia: p.estrategia(),
6146 });
6147 }
6148 let mut seen = std::collections::HashSet::new();
6149 for c in p.clusters() {
6150 // Per-entry value-shape gate: the cluster name lands in
6151 // every K8s context / `lareira-fleet-programs` aggregator
6152 // filter / future M4 CR materializer's per-cluster axis
6153 // a validated `:clusters` entry passes through, each
6154 // enforcing the DNS-1123 label rule on admission. Same
6155 // typed-shape trajectory as `:membros :caixa` (3f9d7a0)
6156 // on the peer name axis — both axes' validated values
6157 // are guaranteed-accepted by the apiserver without
6158 // re-validation at any downstream renderer or admission
6159 // layer.
6160 validate_placement_cluster(c)?;
6161 crate::render::insert_first_seen(&mut seen, c.as_str(), || {
6162 AplicacaoError::PlacementClusterDuplicate { cluster: c.clone() }
6163 })?;
6164 }
6165 // Route the per-`:placement :affinity` per-hint value-shape
6166 // gate through the typed [`Placement::affinity`] accessor rather
6167 // than the raw `&self.placement.affinity` field access — the
6168 // sole open-coded field-access site on the per-`:placement`
6169 // M3-Adaptive-compression-hint axis the accessor lift now owns.
6170 // The `Some(a)`-bound `a` narrows from `&String` to `&str` under
6171 // the accessor's `Option<&str>` return type;
6172 // [`validate_placement_affinity`]'s `&str` parameter accepts
6173 // the narrower borrow without a re-allocation, so the routing
6174 // change is byte-for-byte in the pass arm and remains
6175 // byte-for-byte in every failure diagnostic
6176 // ([`AplicacaoError::PlacementAffinityInvalid`]'s `affinity:
6177 // String` field is populated inside
6178 // [`validate_placement_affinity`] via the peer `.to_string()`
6179 // path on the same borrowed slice). Peer of the sibling
6180 // `PlacementStrategy::Sharded`-arm `:shard-key` shape-gate
6181 // routing through [`Placement::shard_key`] at the caixa-core
6182 // site above — extends the "read `:placement` optional-scalars
6183 // through the typed accessor" discipline to the second
6184 // `Option<String>`-shape slot on the M3 mesh-slot family.
6185 //
6186 // Per-hint value-shape gate: the `:affinity` value lands
6187 // verbatim in the M3 Adaptive compression overlay
6188 // (caixa-mesh's `placement.affinity` emission) and every
6189 // future M4 placement-engine routing axis keying off the
6190 // hint as a K8s `app.pleme.io/affinity-hint=<value>` label
6191 // selector — each enforces the DNS-1123 label rule on
6192 // admission. Same typed-shape trajectory as `:placement
6193 // :clusters` (6c8c00b) on the sibling slot and the four
6194 // Servico-name reference axes (`:membros :caixa` 3f9d7a0,
6195 // `:placement :clusters` 6c8c00b, `:contratos :de`/`:para`
6196 // 8d5af6b, `:entrada :para` b0e8748) — the fifth typed slot
6197 // on the Aplicacao surface to land on the canonical
6198 // [`crate::render::is_dns_1123_label`] floor.
6199 if let Some(a) = p.affinity() {
6200 validate_placement_affinity(a)?;
6201 }
6202 match p.estrategia() {
6203 // Route the `Sharded`-arm shape-gate cascade through the
6204 // typed [`Placement::shard_key`] accessor rather than the
6205 // raw `&self.placement.shard_key` field access — one of the
6206 // two open-coded field-access sites on the per-`:placement`
6207 // Akka-cluster-sharding-key axis the accessor lift now
6208 // owns. The `Some(k)`-bound `k` narrows from `&String` to
6209 // `&str` under the accessor's `Option<&str>` return type;
6210 // `str::is_empty` and [`validate_placement_shard_key`]'s
6211 // `&str` parameter both accept the narrower borrow without
6212 // a re-allocation.
6213 PlacementStrategy::Sharded => match p.shard_key() {
6214 None => return Err(AplicacaoError::ShardedWithoutKey),
6215 Some(k) if k.is_empty() => return Err(AplicacaoError::ShardedKeyEmpty),
6216 // Per-axis value-shape gate on the Akka-cluster-sharding
6217 // `:shard-key` extractor expression. The shape gate runs
6218 // after the more self-locating `ShardedKeyEmpty` arm so
6219 // a `:shard-key ""` surfaces the narrower empty
6220 // diagnostic first; every non-empty `:shard-key` past
6221 // this call is guaranteed to be a printable-ASCII
6222 // single-token reference the future M4 Akka-style
6223 // cluster-sharding reconciler can hash without
6224 // re-validating at the runtime layer. Mirrors the
6225 // payload-axis shape gates on the peer `:contratos`
6226 // `:endpoint`/`:subject`/`:slot` axes (4f0390b /
6227 // 63e18a0 / c4213a4) — each lifts the runtime parser's
6228 // intersection-floor to a caixa-build-time gate.
6229 Some(k) => validate_placement_shard_key(k)?,
6230 },
6231 // `:shard-key` is the Akka-cluster-sharding axis
6232 // (MESH-COMPOSITION §II.4) — hash-keyed entity distribution
6233 // across the cluster pool. `Replicated` (active-active across
6234 // every named cluster) and `SingleNode` (Erlang/OTP
6235 // distributed-app takeover/failover, §II.1) have no hash-keyed
6236 // routing axis to consume the slot; downstream renderers
6237 // (caixa-mesh's `placement.shardKey` overlay at
6238 // caixa-mesh/src/lib.rs:909, the future M4 Akka-style cluster-
6239 // sharding reconciler) ignore `:shard-key` outside the
6240 // `Sharded` arm by construction. Until this gate landed an
6241 // author who wrote `:placement (:estrategia Replicated
6242 // :shard-key "tenantId")` (an off-by-one strategy typo, a
6243 // copy-paste from a Sharded sibling caixa, the "I think I
6244 // configured sharding" footgun) silently passed validate and
6245 // the typed slot's value vanished at the renderer layer with
6246 // no diagnostic — the canonical "declared-but-inert" footgun
6247 // the empty-:affinity / empty-shard-key / zero-:politicas /
6248 // empty-:contratos-target gates already close on every other
6249 // declare-but-no-opinion axis (2d71a9a / 5dbcfaf / c7c7799).
6250 // Lifting the rejection to a build-time gate closes the
6251 // Sharded ↔ non-Sharded partition over the typed
6252 // `:placement` slot: every validated `Placement` past this
6253 // call has `shard_key.is_some()` iff `estrategia ==
6254 // Sharded`, structurally — the future Akka reconciler can
6255 // reach for `placement.shard_key` knowing it's `Some` exactly
6256 // when the strategy consumes it, without re-deriving the
6257 // partition from inline strategy probes.
6258 PlacementStrategy::Replicated | PlacementStrategy::SingleNode => {
6259 // Route the non-`Sharded`-arm declared-but-inert refusal
6260 // through the typed [`Placement::shard_key`] accessor —
6261 // the second of the two open-coded field-access sites the
6262 // accessor lift now owns. The `Some(k)`-bound `k` narrows
6263 // from `&String` to `&str`; the `AplicacaoError::
6264 // ShardKeyOnNonSharded { shard_key: String }` diagnostic
6265 // materializes the owned `String` via `k.to_string()`
6266 // (peer to the sibling per-Membro `String`-carry sites
6267 // 4127bb6 routed through `m.nome().to_string()` /
6268 // `m.versao_requirement().to_string()`), so the whole
6269 // `Sharded` ↔ non-`Sharded` partition on the
6270 // `:shard-key` axis now flows through the same typed
6271 // dispatch as the sibling `Sharded`-arm shape gate.
6272 if let Some(k) = p.shard_key() {
6273 return Err(AplicacaoError::ShardKeyOnNonSharded {
6274 estrategia: p.estrategia(),
6275 shard_key: k.to_string(),
6276 });
6277 }
6278 }
6279 }
6280 Ok(())
6281 }
6282
6283 /// Reject `:politicas` values that are operationally meaningless.
6284 /// Each axis is optional — omitting it expresses "no policy on this
6285 /// axis". Carrying a *zero* value for a declared axis is the bug
6286 /// this function rejects: zero is either
6287 ///
6288 /// - re-interpreted as "infinite" by downstream proxies (Envoy's
6289 /// `RouteAction.timeout = 0s` disables the timeout entirely),
6290 /// directly contradicting MESH-COMPOSITION §V CSE invariant
6291 /// "every Aplicacao declares :politicas :timeout (no infinite
6292 /// blocking)", or
6293 /// - a renderer footgun (a 0-failure circuit breaker trips on the
6294 /// first call; a 0-rate rate-limit denies every request).
6295 ///
6296 /// Lifting these "0 means the opposite of what you think" idioms to
6297 /// the typed Aplicacao surface as build errors mirrors the §III.3
6298 /// promise that contract drift, capability leaks, and cycles are all
6299 /// build errors — not runtime surprises.
6300 fn validate_politicas(&self) -> Result<(), AplicacaoError> {
6301 // Route the per-`:politicas` composite-reference read through
6302 // the lifted [`AplicacaoSpec::politicas`] outer accessor rather
6303 // than the raw `&self.politicas` field access — the per-axis
6304 // bracket-dispatch fan-out below (`p.timeout()`, `p.retries()`,
6305 // `p.circuit_breaker()`, `p.rate_limit()`) now routes through
6306 // the substrate-primitive typed dispatch at the outer
6307 // composition altitude AND at every per-axis altitude, matching
6308 // the peer caixa-mesh CNP mTLS-overlay + HTTPRoute
6309 // timeout/retry-overlay emitters that already key off the same
6310 // per-axis accessor family. The four-axis fan-out is now
6311 // uniformly `p.<axis>()` — the last two raw `p.timeout` /
6312 // `p.retries` field-access sites (co-resident with the peer
6313 // `p.circuit_breaker()` / `p.rate_limit()` accessor sites that
6314 // b0e741a / 21a6c3b already lifted) now route through
6315 // [`MeshPolicy::timeout`] / [`MeshPolicy::retries`], closing
6316 // the per-`:politicas` bracket-dispatch fan-out's raw-field-
6317 // access axis on the M3 mesh-slot family.
6318 let p = self.politicas();
6319 if let Some(t) = p.timeout() {
6320 // Zero-floor + integer-millisecond canonical-form +
6321 // upper-cap bracket on the typed `:timeout` axis. See
6322 // [`crate::render::require_positive_canonical_bounded_duration`]
6323 // for the full three-arm ordering discipline (zero-floor
6324 // strictly precedes the canonical-form arm so
6325 // `Duration::ZERO` surfaces the self-locating
6326 // `PolicyTimeoutZero` diagnostic naming the omit-axis
6327 // remediation; canonical-form strictly precedes the cap
6328 // arm so a sub-millisecond above-cap `Duration` surfaces
6329 // the more fundamental round-trip-shape diagnostic first)
6330 // and the four peer typed-`Duration` sites that now share
6331 // this canonical bracket. Every validated value lies in
6332 // `1ms..=POLICY_TIMEOUT_MAX` (1ms..=1h), integer-millisecond
6333 // granularity — the same top-and-bottom-edge discipline
6334 // [`POLICY_RETRIES_MAX`] and
6335 // [`POLICY_BREAKER_MAX_FAILURES_MAX`] apply on the sibling
6336 // capped-`u32` `:politicas` axes.
6337 crate::render::require_positive_canonical_bounded_duration(
6338 t,
6339 POLICY_TIMEOUT_MAX,
6340 || AplicacaoError::PolicyTimeoutZero,
6341 |timeout| AplicacaoError::PolicyTimeoutNotCanonical { timeout },
6342 |timeout| AplicacaoError::PolicyTimeoutExceedsCap { timeout },
6343 )?;
6344 }
6345 if let Some(r) = p.retries() {
6346 // Zero-floor + upper-cap bracket on the typed `:retries`
6347 // axis. See [`crate::render::require_positive_bounded_u32`]
6348 // for the ordering discipline (zero-floor arm strictly
6349 // precedes cap arm so `Some(0)` surfaces the self-locating
6350 // `PolicyRetriesZero` diagnostic with its omit-axis
6351 // remediation directly named, not the misleading
6352 // `0 > POLICY_RETRIES_MAX == false` cap-arm miss). Until
6353 // this bracket landed the top edge ran all the way to
6354 // `u32::MAX` and a struct-literal `MeshPolicy { retries:
6355 // Some(100_000), .. }` (or the equivalent author-surface
6356 // `(:retries 100000)` / `(:retries 4294967295)` typo
6357 // landing in the slot) silently passed validate. The
6358 // runtime substrate consuming the value (Envoy's
6359 // `retry_policy.num_retries`, the future
6360 // `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
6361 // MESH-COMPOSITION §III.2 #3 names) then turned a typed
6362 // policy into a thundering-herd amplification vector —
6363 // the caller's one request fans out to `retries`
6364 // server-side calls per edge per traversal, multiplying
6365 // load by `(retries+1)^depth` across the
6366 // synchronous-`:contratos` subgraph at the precise moment
6367 // the substrate is already failing (transient failure is
6368 // the trigger), exactly the failure mode AWS App Mesh's
6369 // explicit `maxRetries ≤ 10` schema cap exists to prevent.
6370 // The bracket set is `1..=POLICY_RETRIES_MAX`. Peer with
6371 // the sibling capped-`u32` `:politicas` axes
6372 // (`max_failures`, `rate_limit.rate`) and the peer capped-
6373 // `u32` axes in `:supervisor :max-restarts` +
6374 // `:limits :cpu`; all five now route through the same
6375 // canonical bracket helper.
6376 crate::render::require_positive_bounded_u32(
6377 r,
6378 POLICY_RETRIES_MAX,
6379 || AplicacaoError::PolicyRetriesZero,
6380 |retries| AplicacaoError::PolicyRetriesExceedsCap { retries },
6381 )?;
6382 }
6383 if let Some(cb) = p.circuit_breaker() {
6384 // Zero-floor + upper-cap bracket on the typed
6385 // `:max-failures` axis. See
6386 // [`crate::render::require_positive_bounded_u32`] for the
6387 // ordering discipline (zero-floor arm strictly precedes
6388 // cap arm so `max_failures == 0` surfaces the
6389 // self-locating `PolicyBreakerZeroFailures` diagnostic
6390 // with its omit-axis remediation directly named, not the
6391 // misleading `0 > POLICY_BREAKER_MAX_FAILURES_MAX ==
6392 // false` cap-arm miss). Until this bracket landed the top
6393 // edge ran all the way to `u32::MAX` and a struct-literal
6394 // `CircuitBreaker { max_failures: 100_000, .. }` (or the
6395 // equivalent author-surface `(:max-failures 100000)` /
6396 // `(:max-failures 4294967295)` typo landing in the slot)
6397 // silently passed validate. The runtime substrate
6398 // consuming the value (Envoy's
6399 // `outlier_detection.consecutive_5xx`, the future
6400 // `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
6401 // MESH-COMPOSITION §III.2 #3 names) then turned a typed
6402 // breaker policy into a no-op — the trip threshold is
6403 // structurally so high that no realistic
6404 // failures-per-`:window` traffic shape can reach it, the
6405 // breaker never trips, and every typed-slot consumer
6406 // emits an Envoy / Cilium L7 overlay carrying a
6407 // protection that is structurally never enforced. The
6408 // bracket set is `1..=POLICY_BREAKER_MAX_FAILURES_MAX`;
6409 // peer with `retries` and `rate_limit.rate` on the same
6410 // helper.
6411 crate::render::require_positive_bounded_u32(
6412 cb.max_failures(),
6413 POLICY_BREAKER_MAX_FAILURES_MAX,
6414 || AplicacaoError::PolicyBreakerZeroFailures,
6415 |max_failures| AplicacaoError::PolicyBreakerMaxFailuresExceedsCap { max_failures },
6416 )?;
6417 // Zero-floor + integer-millisecond canonical-form +
6418 // upper-cap bracket on the typed `:window` axis. See
6419 // [`crate::render::require_positive_canonical_bounded_duration`]
6420 // for the full three-arm ordering discipline (peer to the
6421 // `:timeout` site immediately above); every validated
6422 // value lies in `1ms..=POLICY_BREAKER_WINDOW_MAX`
6423 // (1ms..=1h), integer-millisecond granularity — the same
6424 // top-and-bottom-edge discipline
6425 // [`POLICY_TIMEOUT_MAX`] applies on the sibling
6426 // duration-typed `:politicas :timeout` axis.
6427 crate::render::require_positive_canonical_bounded_duration(
6428 cb.window(),
6429 POLICY_BREAKER_WINDOW_MAX,
6430 || AplicacaoError::PolicyBreakerZeroWindow,
6431 |window| AplicacaoError::PolicyBreakerWindowNotCanonical { window },
6432 |window| AplicacaoError::PolicyBreakerWindowExceedsCap { window },
6433 )?;
6434 }
6435 if let Some(rl) = p.rate_limit() {
6436 // Zero-floor + upper-cap bracket on the typed
6437 // `:rate-limit` rate axis. See
6438 // [`crate::render::require_positive_bounded_u32`] for the
6439 // ordering discipline (zero-floor arm strictly precedes
6440 // cap arm so `rl.rate == 0` surfaces the self-locating
6441 // `PolicyRateLimitZero` diagnostic with its omit-axis
6442 // remediation directly named, not the misleading
6443 // `0 > POLICY_RATE_LIMIT_MAX == false` cap-arm miss).
6444 // Until this bracket landed the top edge ran all the way
6445 // to `u32::MAX` and a struct-literal
6446 // `RateLimit { rate: u32::MAX, .. }` (or the equivalent
6447 // author-surface `(:rate-limit "4294967295/s")` /
6448 // `(:rate-limit "100000000/m")` typo landing in the slot)
6449 // silently passed validate. The runtime substrate
6450 // consuming the value (Envoy's
6451 // `local_rate_limit.token_bucket.max_tokens`, the future
6452 // `CiliumClusterwideEnvoyConfig` per-`:politicas` overlay
6453 // MESH-COMPOSITION §III.2 #3 names) then turned a typed
6454 // rate-limit policy into a no-op limiter: the bucket
6455 // capacity is structurally so high that no realistic
6456 // per-edge traffic shape can drain it, the limiter never
6457 // trips, and every typed-slot consumer emits a "rate
6458 // declared" L7 overlay carrying enforcement that is
6459 // structurally never reached — the canonical
6460 // declared-but-inert footgun the sibling
6461 // [`POLICY_BREAKER_MAX_FAILURES_MAX`] cap arm closes on
6462 // the peer no-op-breaker shape. The bracket set is
6463 // `1..=POLICY_RATE_LIMIT_MAX`; peer with `retries` and
6464 // `max_failures` on the same helper. The rate bracket
6465 // strictly precedes the window-canonical gate so a
6466 // structurally absurd rate magnitude surfaces the more
6467 // fundamental amplification-shape diagnostic before the
6468 // narrower codec-round-trip-shape diagnostic on `:window`.
6469 crate::render::require_positive_bounded_u32(
6470 rl.rate(),
6471 POLICY_RATE_LIMIT_MAX,
6472 || AplicacaoError::PolicyRateLimitZero,
6473 |rate| AplicacaoError::PolicyRateLimitExceedsCap { rate },
6474 )?;
6475 // The `:rate-limit` author surface is the canonical
6476 // `"<n>/<s|m|h>"` form, and the [`rate_limit_codec`] parser
6477 // accepts exactly the three-unit set (1s/60s/3600s) the
6478 // [`rate_limit_codec::render`] formatter emits the canonical
6479 // unit suffix for. A `RateLimit` whose `:window` is anything
6480 // else (zero, 30s, 45s, 120s, 86400s, …) is constructible
6481 // programmatically (struct literals in Rust + the typed
6482 // `Duration` field) but renders to a `<n>/<k>s` fragment
6483 // (the codec's fall-through) the parser then rejects on
6484 // round-trip — silently breaking the THEORY.md §V.2.7
6485 // render-determinism contract for any consumer that
6486 // serializes-then-deserializes the typed slot. Lifting the
6487 // canonical-window invariant to a build-time gate at
6488 // `validate_politicas` makes the codec's round-trip property
6489 // a structural property of the validated typed value:
6490 // every `RateLimit` past `AplicacaoSpec::validate` has a
6491 // window the codec round-trips losslessly, so the next
6492 // typed-slot wiring (the future `CiliumClusterwideEnvoyConfig`
6493 // emitter for `:politicas :rate-limit`, MESH-COMPOSITION
6494 // §III.2 #3) reaches for `rate_limit.window` knowing the
6495 // value is in the codec's accepted set without re-validating
6496 // at the renderer layer. Same trajectory as c4213a4 (typed
6497 // WitContract endpoint/subject/slot value-shape gates) and
6498 // the b0c8389 :behavior + :upgrade-from script-path lifts:
6499 // the typed slot's valid set matches its codec's accepted
6500 // set, structurally.
6501 if !is_canonical_rate_limit_window(rl.window()) {
6502 return Err(AplicacaoError::PolicyRateLimitWindowNotCanonical {
6503 window: rl.window(),
6504 });
6505 }
6506 }
6507 Ok(())
6508 }
6509
6510 /// Detect cycles in the synchronous-edge subgraph of `:contratos`.
6511 /// A synchronous edge is any contract whose typed [`WitTarget`] is
6512 /// `Http`, `Store`, or `Capability` — the caller blocks on the
6513 /// callee, so a cycle would deadlock at runtime. Pub-sub edges
6514 /// (`WitTarget::PubSub`) are skipped: an event publisher does not
6515 /// block on its subscribers, so they can never close a sync loop.
6516 ///
6517 /// Iterative DFS with three-coloring; the reported cycle is the
6518 /// path of caixa names traversed from the back-edge target around
6519 /// to itself, in declaration order. Adjacency lists and DFS roots
6520 /// are visited in `BTreeMap` key order so the diagnostic is
6521 /// deterministic across runs.
6522 fn detect_sync_cycles(&self) -> Result<(), AplicacaoError> {
6523 use std::collections::{BTreeMap, BTreeSet};
6524
6525 #[derive(Clone, Copy, PartialEq, Eq)]
6526 enum Mark {
6527 White,
6528 Gray,
6529 Black,
6530 }
6531
6532 let mut adj: BTreeMap<&str, BTreeSet<&str>> = BTreeMap::new();
6533 for m in self.membros() {
6534 adj.entry(m.nome()).or_default();
6535 }
6536 for c in self.contratos() {
6537 // target() was already called by validate(); re-running here
6538 // keeps detect_sync_cycles self-contained for callers that
6539 // reuse it (M4 per-edge policy resolver) without revalidating.
6540 //
6541 // The pub-sub-arm check routes through the lifted
6542 // [`WitTarget::is_pubsub`] `gen_platform::IsVariant`-derived
6543 // arm-discriminator predicate rather than a raw `matches!(…,
6544 // WitTarget::PubSub { .. })` on the variant so a future
6545 // rebrand on the axis (an M4 per-edge WIT registry split of
6546 // [`WitTarget::PubSub`] into shape-specific peers, a
6547 // per-consumer rename that the accept-set already carries)
6548 // reaches this call site through the derive rather than a
6549 // scattered per-arm `matches!` rewrite — same
6550 // `IsVariant`-derived-arm-discriminator discipline the
6551 // peer closed-set typed enums ([`crate::CaixaKind`] via
6552 // f5bba80, [`PlacementStrategy`] via 766ec63,
6553 // [`crate::supervisor::RestartStrategy`] +
6554 // [`crate::supervisor::RestartPolicy`],
6555 // [`crate::upgrade::UpgradeInstruction`] via 915a934)
6556 // already route through on the substrate's other typed-enum
6557 // arm-discriminator axes.
6558 if c.target()?.is_pubsub() {
6559 continue;
6560 }
6561 adj.entry(c.source()).or_default().insert(c.destination());
6562 }
6563
6564 let mut color: BTreeMap<&str, Mark> = adj.keys().map(|k| (*k, Mark::White)).collect();
6565 let mut parent: BTreeMap<&str, &str> = BTreeMap::new();
6566
6567 // Stable DFS root order — BTreeMap iteration is sorted by key.
6568 let roots: Vec<&str> = adj.keys().copied().collect();
6569
6570 // Frame: (node, sorted-neighbours snapshot, next-edge index).
6571 for root in roots {
6572 if color.get(root).copied().unwrap_or(Mark::White) != Mark::White {
6573 continue;
6574 }
6575 let root_neighbors: Vec<&str> = adj
6576 .get(root)
6577 .map(|s| s.iter().copied().collect())
6578 .unwrap_or_default();
6579 let mut stack: Vec<(&str, Vec<&str>, usize)> = vec![(root, root_neighbors, 0)];
6580 color.insert(root, Mark::Gray);
6581
6582 loop {
6583 // Read+advance the top frame in one borrow scope so we
6584 // can later mutate the stack (push/pop) without holding
6585 // a borrow across.
6586 let step: Option<(&str, Option<&str>)> = stack.last_mut().map(|top| {
6587 let node = top.0;
6588 if top.2 >= top.1.len() {
6589 (node, None)
6590 } else {
6591 let nxt = top.1[top.2];
6592 top.2 += 1;
6593 (node, Some(nxt))
6594 }
6595 });
6596 let Some((node, nxt_opt)) = step else { break };
6597 let Some(nxt) = nxt_opt else {
6598 color.insert(node, Mark::Black);
6599 stack.pop();
6600 continue;
6601 };
6602 let nxt_color = color.get(nxt).copied().unwrap_or(Mark::White);
6603 match nxt_color {
6604 Mark::Gray => {
6605 // Reconstruct the cycle from `node` back through
6606 // the parent chain to `nxt`, then close.
6607 let mut cycle = Vec::new();
6608 let mut cur = node;
6609 cycle.push(cur.to_string());
6610 while cur != nxt {
6611 match parent.get(cur).copied() {
6612 Some(p) => {
6613 cur = p;
6614 cycle.push(cur.to_string());
6615 }
6616 None => break,
6617 }
6618 }
6619 cycle.reverse();
6620 cycle.push(nxt.to_string());
6621 return Err(AplicacaoError::ContratoCycle { cycle });
6622 }
6623 Mark::White => {
6624 parent.insert(nxt, node);
6625 color.insert(nxt, Mark::Gray);
6626 let nxt_neighbors: Vec<&str> = adj
6627 .get(nxt)
6628 .map(|s| s.iter().copied().collect())
6629 .unwrap_or_default();
6630 stack.push((nxt, nxt_neighbors, 0));
6631 }
6632 Mark::Black => {}
6633 }
6634 }
6635 }
6636 Ok(())
6637 }
6638
6639 /// Substrate-canonical destination-facing TCP port every emitted
6640 /// per-Aplicacao artifact must key `destination`-shaped port axes
6641 /// off. Returns the typed `:entrada :port` scalar when this
6642 /// Aplicacao's `:entrada` block names `destination` under its
6643 /// `:para` axis (the destination Servico *is* the ingress apex, so
6644 /// the substrate honors the author-declared listener port
6645 /// verbatim), and the lifted [`DEFAULT_SERVICO_PORT`] canonical
6646 /// fallback otherwise (every non-apex destination — the internal
6647 /// mesh Servicos `:contratos` reach across, the future per-edge
6648 /// policy resolver's per-destination probe targets, the
6649 /// M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's per-CNP
6650 /// L4 port resolver — reads the same substrate-canonical port floor
6651 /// by construction).
6652 ///
6653 /// Prior to this lift the "if :entrada matches this destination use
6654 /// its :port, else fall back to `DEFAULT_SERVICO_PORT`" cascade
6655 /// lived inline at [`caixa_mesh::cilium_network_policies`]'s per-
6656 /// `(:de, :para)` L4-port resolution site (caixa-mesh/src/lib.rs:2652
6657 /// prior to this lift), with no typed method on the substrate primitive
6658 /// that named the rule. A future per-destination port axis addition
6659 /// — a per-`:contratos` explicit `:port` slot the M4 typed-edge
6660 /// registry adds, a per-`:membros` `:port` overlay once heterogeneous
6661 /// per-Servico listener ports land, a per-cluster override the operator
6662 /// pins through a future `:placement :default-port` slot — would have
6663 /// to be threaded through every renderer's inline cascade in lockstep
6664 /// or one consumer would silently disagree on which port a given
6665 /// destination Servico's ingress lands at. Lifting the rule to a
6666 /// typed method on the substrate primitive means the M4 CR
6667 /// materializer, the future per-edge policy resolver, and every
6668 /// downstream test-fixture navigator reach for exactly one typed
6669 /// dispatch — the resolver's accept-set moves as a unit on any
6670 /// future axis addition.
6671 ///
6672 /// Peer of the [`WitTarget::payload_pair`] (6788ed6) /
6673 /// [`RATE_LIMIT_UNIT_TABLE`] (808017c) canonical "one dispatch on
6674 /// the typed primitive, thin projections at each consumer"
6675 /// discipline lifts on the sibling `:contratos` payload / `:politicas
6676 /// :rate-limit` unit-suffix axes; extends the discipline onto the
6677 /// destination-facing port-resolution axis every per-Aplicacao
6678 /// L4-fallback renderer consumes.
6679 #[must_use]
6680 pub fn port_for_destination(&self, destination: &str) -> u16 {
6681 // Route the per-`:entrada` composite-reference read through
6682 // the lifted [`AplicacaoSpec::entrada`] accessor rather than
6683 // the raw `self.entrada.as_ref()` field access — the
6684 // per-destination L4-port fallback resolver's composite-
6685 // projection seed is now the canonical read-side surface
6686 // every per-Aplicacao entrada consumer routes through, peer
6687 // of the sibling `validate` per-`:entrada` shape-and-
6688 // membership gate migration on the same outer-composite
6689 // axis.
6690 // Route the per-`:entrada` apex-destination membership probe
6691 // through the lifted [`Entrada::destination`] accessor rather
6692 // than the raw `e.para == destination` field access — the last
6693 // un-lifted `.para` production-code read site on the per-
6694 // `:entrada` `:para` axis, sibling to the four caixa-core
6695 // consumer sites the peer 15ddd8c converge already routed
6696 // through the accessor (the three
6697 // `AplicacaoSpec::validate`-side per-`:entrada` shape-and-
6698 // membership gate sites: the `validate_entrada_para` DNS-1123
6699 // shape gate, the per-`:membros` membership lookup, and the
6700 // `EntradaTargetMissing` diagnostic-carry `String`-clone) and
6701 // the peer emit-side per-Aplicacao `HTTPRoute` per-parent-refs
6702 // `entrada.para`-projection converge at
6703 // caixa-core/src/render.rs (the `gateway_api_http_route_name`
6704 // route-name projection site). Prior to this converge the
6705 // `port_for_destination` resolver was the solitary consumer
6706 // bypassing the typed dispatch on the `.para` axis — the two
6707 // `caixa-mesh` per-`(HTTPRoute, CNP)` emit sites at
6708 // caixa-mesh/src/lib.rs:3173 (`entrada.destination()`) and
6709 // caixa-mesh/src/lib.rs:2739 (`c.destination()`) that already
6710 // reach through the same accessor family compose with this
6711 // resolver at the emit boundary via the apex-identity
6712 // invariant `spec.port_for_destination(entrada.destination())
6713 // == entrada.port` the sibling
6714 // [`port_for_destination_at_entrada_destination_returns_entrada_port_across_permutations`]
6715 // pin pins across four permutations. A future extension of the
6716 // `:entrada :para` axis to a richer author surface (a per-
6717 // cluster alias overlay the operator pins through a future
6718 // `:placement`-scoped slot, a namespace-qualified rewrite the
6719 // M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer applies
6720 // per-CR, a `:entrada :para-aliases` overlay MESH-COMPOSITION
6721 // §III.2 acknowledges) that lands on the accessor would silently
6722 // disagree between this resolver and the two `caixa-mesh` emit
6723 // sites — an author-declared `:para "cart"` value the accessor
6724 // rewrote to `"cart-v2"` under a future canary arm would leave
6725 // the resolver's membership arm falling through to
6726 // `DEFAULT_SERVICO_PORT` (matching against the raw un-aliased
6727 // `.para`) while the peer emit-site consumers landed on the
6728 // accessor-projected value at `caixa-mesh/src/lib.rs:3173` and
6729 // silently disagreed on which destination port a given typed
6730 // `:entrada` resolves to at cluster-apply time. Pinned by the
6731 // drift-detection test
6732 // [`port_for_destination_apex_arm_routes_through_destination_accessor`]
6733 // below.
6734 self.entrada()
6735 .filter(|e| e.destination() == destination)
6736 .map_or(DEFAULT_SERVICO_PORT, Entrada::port)
6737 }
6738}
6739
6740/// Cross-slot coherence gate on the Aplicacao graph: no `:membros :caixa`
6741/// entry may name the Aplicacao's own `:nome`.
6742///
6743/// An Aplicacao that lists itself as a member is a degenerate self-edge in
6744/// the typed graph — the application graph is a DAG rooted at the Aplicacao
6745/// (MESH-COMPOSITION §III.1 names `:membros` as the set of *constituent*
6746/// Servicos that compose the app; an Aplicacao is never its own constituent),
6747/// and the lacre pipeline's closure-resolution would otherwise be handed a
6748/// node that is its own parent: a one-node cycle it either rejects far from
6749/// the source `caixa.lisp` (the resolver detecting infinite recursion on the
6750/// closure walk) or, worse, recurses on until it exhausts the lacre stack.
6751/// Because every `:nome` is a globally-unique substrate identity (DNS-1123
6752/// label + lacre closure root), a member whose `:caixa` equals the
6753/// Aplicacao's `:nome` *is* the Aplicacao itself, not a coincidentally-named
6754/// peer.
6755///
6756/// Lives outside [`AplicacaoSpec::validate`] because the typed view carries
6757/// the membros but not the parent `:nome`; mirrors the cross-slot precedence
6758/// gate `validate_upgrade_from_against_versao` and the supervision-tree
6759/// self-parent gate `crate::supervisor::validate_no_self_supervision`
6760/// (ad4abf1) — the same "an edge from a graph node to itself is structurally
6761/// not a tree/mesh edge" discipline, here on the second typed-graph axis
6762/// (the Aplicacao :membros set; the supervision-tree :children list was the
6763/// first). Closes the kind ↔ self-edge coverage on both typed-graph kinds:
6764/// every validated Supervisor's children are distinct from its `:nome`,
6765/// every validated Aplicacao's membros are distinct from its `:nome`. The
6766/// transitive consequence is that `:entrada :para` and `:contratos`
6767/// `:de`/`:para` — already gated to be members of `:membros` — also cannot
6768/// name the Aplicacao itself, without re-deriving the partition.
6769pub fn validate_no_self_membership(
6770 membros: &[Membro],
6771 parent_nome: &str,
6772) -> Result<(), AplicacaoError> {
6773 for m in membros {
6774 if m.nome() == parent_nome {
6775 return Err(AplicacaoError::MembroIsSelfAplicacao {
6776 caixa: parent_nome.to_string(),
6777 });
6778 }
6779 }
6780 Ok(())
6781}
6782
6783#[derive(Debug, Error, PartialEq, Eq)]
6784pub enum AplicacaoError {
6785 #[error("Aplicacao must declare at least one :membros entry")]
6786 NoMembros,
6787 #[error(
6788 ":membros entry has empty :caixa (every member must name a Servico; \
6789 omit the entry instead of carrying an empty name)"
6790 )]
6791 MembroCaixaEmpty,
6792 #[error(
6793 ":membros entry :caixa {caixa:?} is not a valid DNS-1123 label: {reason} \
6794 (the K8s apiserver enforces this rule on every `metadata.name` / Service \
6795 name / label value the member name lands in; use a lowercase \
6796 alphanumeric + hyphen identifier like `\"checkout\"` or `\"cart-v2\"`)"
6797 )]
6798 MembroCaixaInvalid { caixa: String, reason: String },
6799 #[error(
6800 ":membros entry {caixa:?} has empty :versao (every member must pin a \
6801 semver constraint that resolves through the lacre pipeline)"
6802 )]
6803 MembroVersaoEmpty { caixa: String },
6804 #[error(
6805 ":membros entry {caixa:?} :versao {versao:?} is not a valid semver \
6806 requirement: {reason} (use Cargo-shaped forms like `\"^0.1\"`, \
6807 `\"~0.1.2\"`, `\"0.1.0\"`, or `\"*\"` — the same shape `:deps :versao` \
6808 carries; the lacre pipeline resolves both through the same parser)"
6809 )]
6810 MembroVersaoInvalid {
6811 caixa: String,
6812 versao: String,
6813 reason: String,
6814 },
6815 #[error(
6816 ":membros entry {caixa:?} appears more than once (the graph node set \
6817 is a set, not a multiset; duplicate members produce duplicate \
6818 programs.yaml entries and ambiguous :contratos membership lookups)"
6819 )]
6820 MembroDuplicate { caixa: String },
6821 #[error(
6822 "aplicacao {caixa:?} lists itself as a :membros entry — an Aplicacao is \
6823 never its own constituent Servico (the application graph is a DAG rooted \
6824 at the Aplicacao; :membros names the *other* caixas that compose the \
6825 app, not the app itself). Since every :nome is a globally-unique \
6826 substrate identity, a member naming the Aplicacao's own :nome is a \
6827 one-node lacre-closure recursion, not a coincidentally-named peer; \
6828 drop the self-referential :membros entry or rename it to the actual \
6829 constituent caixa."
6830 )]
6831 MembroIsSelfAplicacao { caixa: String },
6832 #[error(
6833 "contrato {slot} is empty (every :contratos entry's :de and :para must name a \
6834 caixa declared in :membros; omit the contract or fill the {slot} field with a \
6835 member name)"
6836 )]
6837 ContratoCaixaEmpty { slot: &'static str },
6838 #[error(
6839 "contrato {slot} {caixa:?} is not a valid DNS-1123 label: {reason} (every \
6840 :contratos {slot} value names a member of :membros, which is itself a \
6841 DNS-1123 label per the K8s apiserver's `metadata.name` rule on every \
6842 object the member name lands in — Service, Pod, identity-based Cilium \
6843 selector; use a lowercase alphanumeric + hyphen identifier like \
6844 `\"checkout\"` or `\"cart-v2\"`)"
6845 )]
6846 ContratoCaixaInvalid {
6847 slot: &'static str,
6848 caixa: String,
6849 reason: String,
6850 },
6851 #[error("contrato references caixa {caixa:?} not declared in :membros")]
6852 ContratoMemberMissing { caixa: String },
6853 #[error(
6854 "contrato {caixa:?} → {caixa:?} (:wit {wit:?}) is a self-edge — a :contratos \
6855 entry is an inter-Servico contract whose :de and :para must name distinct \
6856 :membros; a Servico's calls to itself are in-process, not mesh edges (drop \
6857 the contract, or point :para at the member it actually calls)"
6858 )]
6859 ContratoSelfLoop { caixa: String, wit: String },
6860 #[error("contrato {de:?} → {para:?} has empty :wit")]
6861 EmptyWit { de: String, para: String },
6862 #[error(
6863 "contrato {de:?} → {para:?} :wit {wit:?} is not a valid WIT world reference: \
6864 {reason} (the substrate dispatches `:wit` values on the canonical \
6865 lowercase `<namespace>:<package>(/<interface>)?(@<version>)?` shape — \
6866 `wasi:http/proxy`, `nats:pub-sub`, `wasi:keyvalue/store` — and silently \
6867 demotes unmatched shapes to a capability-only L4 edge; use a lowercase \
6868 kebab-case identifier per segment)"
6869 )]
6870 ContratoWitInvalid {
6871 de: String,
6872 para: String,
6873 wit: String,
6874 reason: String,
6875 },
6876 #[error(
6877 ":entrada :para is empty (every :entrada must route to a caixa declared in \
6878 :membros; fill the :para field with a member name)"
6879 )]
6880 EntradaParaEmpty,
6881 #[error(
6882 ":entrada :para {para:?} is not a valid DNS-1123 label: {reason} (every \
6883 :entrada :para value names a member of :membros, which is itself a DNS-1123 \
6884 label per the K8s apiserver's `metadata.name` rule on every object the \
6885 member name lands in — Service backendRefs, HTTPRoute spec, identity-based \
6886 Cilium selector; use a lowercase alphanumeric + hyphen identifier like \
6887 `\"checkout\"` or `\"cart-v2\"`)"
6888 )]
6889 EntradaParaInvalid { para: String, reason: String },
6890 #[error(":entrada routes to caixa {para:?} not declared in :membros")]
6891 EntradaMemberMissing { para: String },
6892 #[error(":entrada must declare a non-empty :host")]
6893 EmptyEntradaHost,
6894 #[error(
6895 ":entrada :host {host:?} is not a valid Gateway API v1 Hostname: {reason} \
6896 (the K8s apiserver enforces the same shape on Gateway `Listener.hostname` and \
6897 `HTTPRoute.spec.hostnames` at admission time; use a lowercase RFC 1123 DNS name \
6898 like `\"checkout.quero.cloud\"` or `\"*.quero.cloud\"`)"
6899 )]
6900 EntradaHostInvalid { host: String, reason: String },
6901 #[error(":entrada :port must be in 1..=65535, got 0")]
6902 EntradaPortZero,
6903 #[error(":entrada :paths entry is empty (use the empty list to match all)")]
6904 EntradaPathEmpty,
6905 #[error(
6906 ":entrada :paths entry {path:?} must start with `/` (Gateway API PathPrefix invariant)"
6907 )]
6908 EntradaPathNotAbsolute { path: String },
6909 #[error(
6910 ":entrada :paths entry {path:?} is not a valid Gateway API v1 HTTPPathMatch \
6911 value: {reason} (the K8s apiserver enforces the same shape on \
6912 `HTTPRoute.spec.rules[].matches[].path.value` at admission time; use a \
6913 single-`/`-prefixed printable-ASCII path like `\"/api/cart\"` — RFC 3986 \
6914 requires percent-encoding `%XX` for non-ASCII and whitespace)"
6915 )]
6916 EntradaPathInvalid { path: String, reason: String },
6917 #[error(":entrada :paths entry {path:?} appears more than once")]
6918 EntradaPathDuplicate { path: String },
6919 #[error(
6920 ":placement {estrategia} requires at least one :clusters entry \
6921 (Replicated/SingleNode: hosting/takeover candidates; Sharded: shard pool)"
6922 )]
6923 PlacementWithoutClusters { estrategia: PlacementStrategy },
6924 #[error(":placement :clusters entry is empty (cluster names must be non-empty)")]
6925 PlacementClusterEmpty,
6926 #[error(
6927 ":placement :clusters entry {cluster:?} is not a valid DNS-1123 label: {reason} \
6928 (cluster names land in the K8s context keying every per-cluster `kubeconfig`, \
6929 in the `lareira-fleet-programs` aggregator's `clusters[]` filter, and in the \
6930 future M4 cross-cluster fan-out's per-entry namespace prefix / cluster identity \
6931 — each enforces the DNS-1123 label rule; use a lowercase alphanumeric + hyphen \
6932 identifier like `\"rio\"` or `\"mar-east\"`)"
6933 )]
6934 PlacementClusterInvalid { cluster: String, reason: String },
6935 #[error(":placement :clusters entry {cluster:?} appears more than once")]
6936 PlacementClusterDuplicate { cluster: String },
6937 #[error(
6938 ":placement :affinity must be non-empty when set (omit :affinity to express \
6939 `no placement hint`)"
6940 )]
6941 PlacementAffinityEmpty,
6942 #[error(
6943 ":placement :affinity {affinity:?} is not a valid DNS-1123 label: {reason} \
6944 (placement hints land verbatim in the M3 Adaptive compression overlay's \
6945 `placement.affinity` field and in every future M4 placement-engine routing \
6946 axis keying off the hint as a K8s `app.pleme.io/affinity-hint=<value>` label \
6947 selector — both enforce the DNS-1123 label rule on admission; use a \
6948 lowercase alphanumeric + hyphen hint like `\"data-locality\"`, \
6949 `\"low-latency\"`, or `\"anti-affinity\"`)"
6950 )]
6951 PlacementAffinityInvalid { affinity: String, reason: String },
6952 #[error(":placement Sharded requires :shard-key")]
6953 ShardedWithoutKey,
6954 #[error(
6955 ":placement Sharded :shard-key must be non-empty (a `Some(\"\")` shard key \
6956 hashes every entity onto the same shard, defeating sharding entirely)"
6957 )]
6958 ShardedKeyEmpty,
6959 #[error(
6960 ":placement Sharded :shard-key {shard_key:?} is not a valid Akka-style \
6961 entity-id extractor expression: {reason} (the future M4 Akka-style \
6962 cluster-sharding reconciler — MESH-COMPOSITION §II.4 — reads `:shard-key` \
6963 as a single-token property reference and hashes the extracted entity ID \
6964 to compute shard placement; use a printable-ASCII extractor expression \
6965 like `\"tenantId\"`, `\"$tenantId\"`, `\"metadata.tenantId\"`, or \
6966 `\"${{tenant}}\"`)"
6967 )]
6968 ShardKeyInvalid { shard_key: String, reason: String },
6969 #[error(
6970 ":placement {estrategia} carries :shard-key {shard_key:?} — only :estrategia \
6971 Sharded consumes :shard-key (hash-keyed entity distribution, Akka cluster-sharding \
6972 convention); :estrategia Replicated runs every cluster active-active and \
6973 :estrategia SingleNode takes over a single cluster at a time (Erlang/OTP \
6974 distributed-app convention) — both ignore the slot. Drop :shard-key, or switch \
6975 to :estrategia Sharded if hash-keyed routing is the intent"
6976 )]
6977 ShardKeyOnNonSharded {
6978 estrategia: PlacementStrategy,
6979 shard_key: String,
6980 },
6981 #[error("contrato {de:?} → {para:?} (:wit {wit:?}) is missing required `:{expected}` field")]
6982 ContratoMissingTarget {
6983 de: String,
6984 para: String,
6985 wit: String,
6986 expected: &'static str,
6987 },
6988 #[error(
6989 "contrato {de:?} → {para:?} (:wit {wit:?}) carries the wrong target field — \
6990 expected `:{expected}` only"
6991 )]
6992 ContratoWrongTarget {
6993 de: String,
6994 para: String,
6995 wit: String,
6996 expected: &'static str,
6997 },
6998 #[error(
6999 "HTTP contrato {de:?} → {para:?} :endpoint is empty (use a non-empty path \
7000 like `/charge`; an empty endpoint renders as a `path: \"\"` Cilium L7 rule \
7001 that matches no traffic and silently drops every request)"
7002 )]
7003 ContratoEndpointEmpty { de: String, para: String },
7004 #[error(
7005 "HTTP contrato {de:?} → {para:?} :endpoint {endpoint:?} must start with `/` \
7006 (Cilium L7 :path + Gateway API PathPrefix invariant — same shape required of \
7007 :entrada :paths)"
7008 )]
7009 ContratoEndpointNotAbsolute {
7010 de: String,
7011 para: String,
7012 endpoint: String,
7013 },
7014 #[error(
7015 "HTTP contrato {de:?} → {para:?} :endpoint {endpoint:?} is not a valid \
7016 Cilium L7 `path:` / Gateway API v1 HTTPPathMatch value: {reason} (caixa-mesh \
7017 emits the :endpoint verbatim as the Cilium L7 `path:` rule at \
7018 caixa-mesh/src/lib.rs:311; the K8s apiserver enforces the same HTTPPathMatch \
7019 shape on `:entrada :paths`. Use a single-`/`-prefixed printable-ASCII path \
7020 like `\"/charge\"` — RFC 3986 requires percent-encoding `%XX` for non-ASCII \
7021 and whitespace)"
7022 )]
7023 ContratoEndpointInvalid {
7024 de: String,
7025 para: String,
7026 endpoint: String,
7027 reason: String,
7028 },
7029 #[error(
7030 "pub-sub contrato {de:?} → {para:?} :subject is empty (publish without a \
7031 subject is a no-op subscribe; omit :subject only if the WIT world is not \
7032 pub-sub-shaped)"
7033 )]
7034 ContratoSubjectEmpty { de: String, para: String },
7035 #[error(
7036 "pub-sub contrato {de:?} → {para:?} :subject {subject:?} is not a valid \
7037 NATS subject: {reason} (the NATS server's subject parser enforces the \
7038 same shape — `.`-separated tokens of `[A-Za-z0-9_-]`, with the `*` \
7039 single-token and `>` multi-token wildcards — at publish/subscribe time; \
7040 use a token-by-token form like `\"checkout.events.charge.failed\"` or \
7041 `\"orders.*.completed\"` — a malformed subject silently drops every \
7042 message at runtime far from the source caixa.lisp)"
7043 )]
7044 ContratoSubjectInvalid {
7045 de: String,
7046 para: String,
7047 subject: String,
7048 reason: String,
7049 },
7050 #[error(
7051 "store contrato {de:?} → {para:?} :slot is empty (an empty slot template \
7052 addresses the bucket root, defeating the per-key isolation the slot exists \
7053 for; omit :slot only if the WIT world is not store-shaped)"
7054 )]
7055 ContratoSlotEmpty { de: String, para: String },
7056 #[error(
7057 "store contrato {de:?} → {para:?} :slot {slot:?} is not a valid \
7058 WASI keyvalue store slot template: {reason} (the substrate enforces \
7059 the printable-ASCII intersection-floor every kv backend admits — \
7060 use a single-token path / template expression like `\"checkout/$orderId\"`, \
7061 `\"users:{{tenant}}/{{id}}\"`, or `\"session.tokens.<sid>\"`; RFC 3986 requires \
7062 percent-encoding `%XX` for non-ASCII and whitespace — a malformed \
7063 slot either gets rejected on write by strict backends or silently \
7064 corrupts the next read on permissive ones, far from the source caixa.lisp)"
7065 )]
7066 ContratoSlotInvalid {
7067 de: String,
7068 para: String,
7069 slot: String,
7070 reason: String,
7071 },
7072 #[error(
7073 "synchronous :contratos form a cycle ({}); break with a NATS pub-sub edge \
7074 or an event-sourced indirection (MESH-COMPOSITION §III.3)",
7075 cycle.join(" → ")
7076 )]
7077 ContratoCycle { cycle: Vec<String> },
7078 #[error(
7079 ":contratos entry {de:?} → {para:?} (:wit {wit:?} {target}) appears more \
7080 than once (the typed graph edges are a set, not a multiset; duplicate \
7081 contracts would render as colliding `CiliumNetworkPolicy` `metadata.name` \
7082 values that K8s admission rejects far from the source caixa.lisp)"
7083 )]
7084 ContratoDuplicate {
7085 de: String,
7086 para: String,
7087 wit: String,
7088 target: String,
7089 },
7090 #[error(
7091 ":politicas :timeout must be > 0 (Envoy interprets a zero timeout as `infinite`, \
7092 contradicting MESH-COMPOSITION §V `no infinite blocking`); omit :timeout to \
7093 express `no per-call deadline on this axis`"
7094 )]
7095 PolicyTimeoutZero,
7096 #[error(
7097 ":politicas :retries must be > 0 when set; omit :retries to express \
7098 `no retries on transient failure`"
7099 )]
7100 PolicyRetriesZero,
7101 #[error(
7102 ":politicas :retries ({retries}) exceeds the mesh-policy ceiling \
7103 (POLICY_RETRIES_MAX = 10) — a value above this cap turns the typed \
7104 retry policy into a thundering-herd amplification vector on transient \
7105 failure (one caller request fans out to `(retries+1)^depth` server-side \
7106 calls across the synchronous-:contratos subgraph), exactly the failure \
7107 mode AWS App Mesh's `maxRetries ≤ 10` schema cap exists to prevent. \
7108 Pin a value in 1..=10 (Envoy / Istio production playbooks recommend ≤ 5) \
7109 or omit :retries to disable retries entirely"
7110 )]
7111 PolicyRetriesExceedsCap { retries: u32 },
7112 #[error(
7113 ":politicas :circuit-breaker :max-failures must be > 0 (a zero-threshold \
7114 breaker trips on the first call); omit :circuit-breaker to disable it"
7115 )]
7116 PolicyBreakerZeroFailures,
7117 #[error(
7118 ":politicas :circuit-breaker :max-failures ({max_failures}) exceeds the \
7119 mesh-policy ceiling (POLICY_BREAKER_MAX_FAILURES_MAX = 1000) — a value \
7120 above this cap turns the typed breaker policy into a no-op: the trip \
7121 threshold is structurally so high that no realistic failures-per-:window \
7122 traffic shape can reach it, so the breaker never trips and every typed-slot \
7123 consumer (the future CiliumClusterwideEnvoyConfig per-:politicas overlay, \
7124 Envoy's outlier_detection.consecutive_5xx) emits a protection that is \
7125 structurally never enforced. Pin a value in 1..=1000 (Hystrix / Istio / \
7126 Envoy / Polly / Resilience4j production playbooks recommend 5..=50) or \
7127 omit :circuit-breaker to disable the breaker entirely"
7128 )]
7129 PolicyBreakerMaxFailuresExceedsCap { max_failures: u32 },
7130 #[error(
7131 ":politicas :circuit-breaker :window must be > 0 (a zero-window breaker \
7132 tracks no failures); omit :circuit-breaker to disable it"
7133 )]
7134 PolicyBreakerZeroWindow,
7135 #[error(
7136 ":politicas :rate-limit rate must be > 0 (a zero-rate limit denies every \
7137 request); omit :rate-limit to disable rate limiting"
7138 )]
7139 PolicyRateLimitZero,
7140 #[error(
7141 ":politicas :rate-limit rate ({rate}) exceeds the mesh-policy ceiling \
7142 (POLICY_RATE_LIMIT_MAX = 1000000) — a value above this cap turns the typed \
7143 rate-limit policy into a no-op limiter: the token-bucket capacity is \
7144 structurally so high that no realistic per-edge traffic shape can drain it, \
7145 so the limiter never trips and every typed-slot consumer (the future \
7146 CiliumClusterwideEnvoyConfig per-:politicas overlay, Envoy's \
7147 local_rate_limit.token_bucket.max_tokens) emits a rate-limit declaration \
7148 that is structurally never enforced. Pin a value in 1..=1000000 (Envoy / \
7149 Istio / Kong / NGINX production playbooks recommend 10..=10000 RPS; \
7150 Cloudflare / AWS API Gateway typical 10000..=100000 per-minute; \
7151 Cloudflare Enterprise rate-plans run to ~1M per-hour) or omit :rate-limit \
7152 to disable rate limiting entirely"
7153 )]
7154 PolicyRateLimitExceedsCap { rate: u32 },
7155 #[error(
7156 ":politicas :rate-limit :window must be exactly 1s, 1m (60s), or 1h (3600s) — \
7157 the canonical authoring forms `\"<n>/s\"`, `\"<n>/m\"`, `\"<n>/h\"` the \
7158 rate-limit codec round-trips losslessly; got {window:?} which renders to a \
7159 non-round-trippable form (omit :rate-limit to disable, or pick one of the \
7160 three canonical windows)"
7161 )]
7162 PolicyRateLimitWindowNotCanonical { window: Duration },
7163 #[error(
7164 ":politicas :timeout must be an integer number of milliseconds — the canonical \
7165 authoring form `\"<integer><unit>\"` for unit ∈ {{`ms`,`s`,`m`,`h`}} the shared \
7166 duration codec round-trips losslessly; got {timeout:?} which carries a \
7167 sub-millisecond residue that either truncates to a different `Duration` on \
7168 re-parse (e.g. `Duration::from_micros(1500)` → renders `\"1ms\"` → parses back \
7169 to 1ms, not 1.5ms) or renders as `\"0s\"` (sub-millisecond magnitude) the \
7170 zero-floor gate rejects on re-validate. Pick an integer-millisecond magnitude \
7171 (e.g. `\"30s\"`, `\"1500ms\"`, `\"2m\"`, `\"1h\"`)"
7172 )]
7173 PolicyTimeoutNotCanonical { timeout: Duration },
7174 #[error(
7175 ":politicas :timeout ({timeout:?}) exceeds the mesh-policy ceiling \
7176 (POLICY_TIMEOUT_MAX = 1h = 3600s) — a value above this cap turns the typed \
7177 per-call deadline into a nominal-only contract (Envoy / Cilium L7 timeout \
7178 overlays carry a deadline so long no realistic synchronous-:contratos \
7179 traversal can reach it), and the MESH-COMPOSITION §V \"no infinite blocking\" \
7180 CSE invariant degenerates to enforcement only at the per-Servico \
7181 `:limits :wall-clock` layer — far above the per-edge granularity the typed \
7182 `:politicas :timeout` slot is meant to express. Pin a value in 1ms..=1h \
7183 (Envoy / Istio / Linkerd / AWS App Mesh production playbooks all recommend \
7184 ≤ 60s; the Kubernetes ingress-nginx documented `proxy_read_timeout` band \
7185 maxes out at the same `3600s` ceiling) or omit :timeout to express \
7186 `no per-call deadline on this axis` (the synchronous-call deadline then \
7187 relies entirely on the per-Servico `:limits :wall-clock` axis)"
7188 )]
7189 PolicyTimeoutExceedsCap { timeout: Duration },
7190 #[error(
7191 ":politicas :circuit-breaker :window must be an integer number of milliseconds — \
7192 the canonical authoring form `\"<integer><unit>\"` for unit ∈ {{`ms`,`s`,`m`,`h`}} \
7193 the shared duration codec round-trips losslessly; got {window:?} which carries a \
7194 sub-millisecond residue that either truncates to a different `Duration` on \
7195 re-parse or renders as `\"0s\"` the zero-floor gate rejects on re-validate. \
7196 Pick an integer-millisecond magnitude (e.g. `\"60s\"`, `\"500ms\"`, `\"2m\"`)"
7197 )]
7198 PolicyBreakerWindowNotCanonical { window: Duration },
7199 #[error(
7200 ":politicas :circuit-breaker :window ({window:?}) exceeds the mesh-policy ceiling \
7201 (POLICY_BREAKER_WINDOW_MAX = 1h = 3600s) — a value above this cap turns the typed \
7202 rolling-window breaker into a lifetime-counter breaker: the failure-counting window \
7203 is structurally so long that transient failures are never forgotten, the breaker \
7204 trips once and stays tripped for the lifetime of the component, and every typed-slot \
7205 consumer (the future CiliumClusterwideEnvoyConfig per-:politicas overlay, Envoy's \
7206 outlier_detection.interval) emits a \"rolling\" window that exists only nominally. \
7207 Pin a value in 1ms..=1h (Hystrix / resilience4j / Istio / Envoy production playbooks \
7208 default to 10s; AWS App Mesh maxes out at ~5m) or omit :circuit-breaker to disable \
7209 the breaker entirely"
7210 )]
7211 PolicyBreakerWindowExceedsCap { window: Duration },
7212}
7213
7214#[cfg(test)]
7215mod tests {
7216 use super::*;
7217
7218 fn membro(name: &str, ver: &str) -> Membro {
7219 Membro {
7220 caixa: name.into(),
7221 versao: ver.into(),
7222 }
7223 }
7224
7225 fn contract_http(de: &str, para: &str, ep: &str) -> WitContract {
7226 WitContract {
7227 de: de.into(),
7228 para: para.into(),
7229 wit: "wasi:http/proxy".into(),
7230 endpoint: Some(ep.into()),
7231 subject: None,
7232 slot: None,
7233 }
7234 }
7235
7236 fn three_member_spec() -> AplicacaoSpec {
7237 AplicacaoSpec {
7238 membros: vec![
7239 membro("catalog", "^0.1"),
7240 membro("cart", "^0.1"),
7241 membro("payment", "^0.2"),
7242 ],
7243 contratos: vec![
7244 contract_http("cart", "catalog", "/products/:id"),
7245 contract_http("cart", "payment", "/charge"),
7246 ],
7247 politicas: MeshPolicy {
7248 timeout: Some(Duration::from_secs(30)),
7249 retries: Some(3),
7250 mtls_required: Some(true),
7251 ..Default::default()
7252 },
7253 placement: Placement {
7254 estrategia: PlacementStrategy::Replicated,
7255 clusters: vec!["rio".into(), "mar".into()],
7256 affinity: Some("data-locality".into()),
7257 shard_key: None,
7258 },
7259 entrada: Some(Entrada {
7260 host: "checkout.quero.cloud".into(),
7261 para: "cart".into(),
7262 paths: vec!["/api/cart".into(), "/api/products".into()],
7263 port: 8080,
7264 }),
7265 }
7266 }
7267
7268 #[test]
7269 fn happy_path_validates() {
7270 three_member_spec().validate().unwrap();
7271 }
7272
7273 #[test]
7274 fn rejects_empty_membros() {
7275 let mut s = three_member_spec();
7276 s.membros = vec![];
7277 assert_eq!(s.validate().unwrap_err(), AplicacaoError::NoMembros);
7278 }
7279
7280 #[test]
7281 fn rejects_empty_membro_caixa() {
7282 // A `:caixa ""` entry has no name to render into programs.yaml
7283 // and no caixa.lisp to resolve at lacre time.
7284 let mut s = three_member_spec();
7285 s.membros[1].caixa = String::new();
7286 assert_eq!(s.validate().unwrap_err(), AplicacaoError::MembroCaixaEmpty);
7287 }
7288
7289 #[test]
7290 fn rejects_empty_membro_versao() {
7291 // A `:versao ""` entry can't pin a semver constraint, so the
7292 // lacre pipeline fails far from the source.
7293 let mut s = three_member_spec();
7294 s.membros[2].versao = String::new();
7295 let err = s.validate().unwrap_err();
7296 assert!(
7297 matches!(err, AplicacaoError::MembroVersaoEmpty { ref caixa } if caixa == "payment"),
7298 "got {err:?}"
7299 );
7300 }
7301
7302 #[test]
7303 fn rejects_duplicate_membro_caixa() {
7304 // Two `:membros` entries with the same `:caixa` collapse to one
7305 // node in the membership HashSet, which masks `:contratos`
7306 // membership errors and produces duplicate programs.yaml entries.
7307 let mut s = three_member_spec();
7308 s.membros.push(membro("cart", "^0.2"));
7309 let err = s.validate().unwrap_err();
7310 assert!(
7311 matches!(err, AplicacaoError::MembroDuplicate { ref caixa } if caixa == "cart"),
7312 "got {err:?}"
7313 );
7314 }
7315
7316 #[test]
7317 fn rejects_invalid_membro_versao_requirement() {
7318 // The fail-before-pass-after pin: a non-empty but malformed
7319 // semver requirement (`"^bad-version"`) silently passed
7320 // `validate()` on every pre-gate codebase because the prior
7321 // shape only refused the empty string. The parse failure
7322 // surfaced far downstream at lacre-resolve time with a
7323 // `semver::Error` that didn't name which `:membros` entry
7324 // carried the typo. The new gate moves the check to caixa-build
7325 // time at the source caixa.lisp.
7326 let mut s = three_member_spec();
7327 s.membros[2].versao = "^bad-version".into();
7328 let err = s.validate().unwrap_err();
7329 assert!(
7330 matches!(
7331 err,
7332 AplicacaoError::MembroVersaoInvalid { ref caixa, ref versao, .. }
7333 if caixa == "payment" && versao == "^bad-version"
7334 ),
7335 "got {err:?}"
7336 );
7337 }
7338
7339 #[test]
7340 fn rejects_membro_versao_with_double_caret_typo() {
7341 // `"^^0.1"` is the canonical doubled-caret typo — looks like a
7342 // Cargo-shaped requirement on first glance but fails the parser
7343 // because semver doesn't accept stacked operators. Pin this
7344 // adjacent-shape footgun explicitly so a future relaxation that
7345 // accepts "looks-canonical-but-isn't" forms surfaces here.
7346 let mut s = three_member_spec();
7347 s.membros[0].versao = "^^0.1".into();
7348 let err = s.validate().unwrap_err();
7349 assert!(
7350 matches!(
7351 err,
7352 AplicacaoError::MembroVersaoInvalid { ref caixa, ref versao, .. }
7353 if caixa == "catalog" && versao == "^^0.1"
7354 ),
7355 "got {err:?}"
7356 );
7357 }
7358
7359 #[test]
7360 fn rejects_membro_versao_with_v_prefixed_tag() {
7361 // `"v0.1"` is the canonical "git-tag-shape leaking into the
7362 // semver requirement slot" typo — an author copies the
7363 // publish-side git-tag string verbatim into `:versao`, but
7364 // Cargo's semver parser rejects the leading `v` (only digits +
7365 // canonical operators are valid in the major-version
7366 // position). The gate's diagnostic names which member entry
7367 // carried the v-prefix so the fix is one edit, not a grep
7368 // through every member's `:versao`. (Note: bare `x`-glob
7369 // shorthands like `^0.1.x` are *accepted* by the semver crate
7370 // as an `*` wildcard on the patch axis — they're a Cargo-side
7371 // valid shape, not a typo, so the gate intentionally lets them
7372 // through.)
7373 let mut s = three_member_spec();
7374 s.membros[1].versao = "v0.1".into();
7375 let err = s.validate().unwrap_err();
7376 assert!(
7377 matches!(
7378 err,
7379 AplicacaoError::MembroVersaoInvalid { ref caixa, ref versao, .. }
7380 if caixa == "cart" && versao == "v0.1"
7381 ),
7382 "got {err:?}"
7383 );
7384 }
7385
7386 #[test]
7387 fn accepts_canonical_membro_versao_forms() {
7388 // The four Cargo-shaped requirement forms `:deps :versao`
7389 // already accepts via `crate::parse_requirement` must pass the
7390 // membros gate without re-validating at the resolver layer.
7391 // Pin every leg so a future tightening of the canonical set
7392 // surfaces here as a test failure.
7393 for form in [
7394 "^0.1", // caret — minor-range pin (the most common shape)
7395 "~0.1.2", // tilde — patch-range pin
7396 "0.1.0", // exact — single-version pin
7397 "*", // wildcard — explicitly any-version (semver::VersionReq::STAR)
7398 ">=0.1, <2", // multi-range — comma-separated comparators
7399 ] {
7400 let mut s = three_member_spec();
7401 for m in &mut s.membros {
7402 m.versao = form.into();
7403 }
7404 s.validate()
7405 .unwrap_or_else(|e| panic!("canonical form {form:?} must validate, got {e:?}"));
7406 }
7407 }
7408
7409 #[test]
7410 fn membro_versao_empty_takes_precedence_over_invalid() {
7411 // Order pin: the existing `MembroVersaoEmpty` diagnostic
7412 // (which doesn't try to parse) fires before the new
7413 // `MembroVersaoInvalid` parse-side diagnostic, so an empty
7414 // `:versao` keeps its narrower error message — `parse_requirement`
7415 // would also reject `""`, but the empty-string arm is the more
7416 // self-locating diagnostic for the author.
7417 let mut s = three_member_spec();
7418 s.membros[1].versao = String::new();
7419 let err = s.validate().unwrap_err();
7420 assert!(
7421 matches!(err, AplicacaoError::MembroVersaoEmpty { ref caixa } if caixa == "cart"),
7422 "got {err:?}"
7423 );
7424 }
7425
7426 #[test]
7427 fn membro_versao_invalid_fires_before_duplicate_check() {
7428 // Order pin: a malformed requirement on a non-duplicate entry
7429 // surfaces *its own* diagnostic (which names the offending
7430 // `:versao` string), even when a later entry would otherwise
7431 // collapse onto an earlier name. The per-entry shape gate runs
7432 // inline before the duplicate-key insert, parallel to
7433 // `membros_validation_runs_before_contratos_membership_check`
7434 // and `duplicate_contrato_gate_runs_after_target_shape_check`.
7435 let mut s = three_member_spec();
7436 s.membros[0].versao = "^bad".into();
7437 s.membros.push(membro("cart", "^0.2")); // would otherwise raise MembroDuplicate
7438 let err = s.validate().unwrap_err();
7439 assert!(
7440 matches!(
7441 err,
7442 AplicacaoError::MembroVersaoInvalid { ref caixa, .. } if caixa == "catalog"
7443 ),
7444 "got {err:?}"
7445 );
7446 }
7447
7448 #[test]
7449 fn membro_versao_invalid_diagnostic_carries_offending_versao() {
7450 // The diagnostic-shape pin: the error names the offending
7451 // `:versao` value verbatim so the author can grep their
7452 // caixa.lisp without re-running the build, and carries a
7453 // non-empty `reason` from `semver::VersionReq::parse` so the
7454 // parser's own wording flows through to the diagnostic.
7455 let mut s = three_member_spec();
7456 s.membros[2].versao = "not-a-req".into();
7457 let err = s.validate().unwrap_err();
7458 let AplicacaoError::MembroVersaoInvalid {
7459 caixa,
7460 versao,
7461 reason,
7462 } = err
7463 else {
7464 panic!("expected MembroVersaoInvalid, got other variant");
7465 };
7466 assert_eq!(caixa, "payment");
7467 assert_eq!(versao, "not-a-req");
7468 assert!(
7469 !reason.is_empty(),
7470 "MembroVersaoInvalid `reason` must carry the parser's wording verbatim"
7471 );
7472 }
7473
7474 #[test]
7475 fn membro_versao_invalid_runs_before_contratos_check() {
7476 // A malformed `:versao` on any member must surface its own
7477 // diagnostic (which names *which* member to fix) before any
7478 // `:contratos` membership lookup raises `ContratoMemberMissing`.
7479 // The `:contratos` gate runs after `validate_membros`, so this
7480 // is structurally guaranteed — pin it explicitly so a future
7481 // refactor that reorders the gates surfaces here.
7482 let mut s = three_member_spec();
7483 s.membros[1].versao = "^^0.1".into();
7484 // Add a contrato whose `:para` doesn't exist — would normally
7485 // raise ContratoMemberMissing at the membership lookup, but
7486 // the membros gate must fire first.
7487 s.contratos
7488 .push(contract_http("cart", "phantom", "/never-reached"));
7489 let err = s.validate().unwrap_err();
7490 assert!(
7491 matches!(err, AplicacaoError::MembroVersaoInvalid { .. }),
7492 "expected MembroVersaoInvalid to fire before ContratoMemberMissing, got {err:?}"
7493 );
7494 }
7495
7496 #[test]
7497 fn membros_validation_runs_before_contratos_membership_check() {
7498 // If `:membros` carries a duplicate, the membership-collapse
7499 // would silently accept a `:contratos :para "phantom"` so long
7500 // as some entry hashes to "phantom". Pinning order: the
7501 // duplicate-membros error fires first, regardless of whether
7502 // contratos reference real members.
7503 let mut s = three_member_spec();
7504 s.membros = vec![
7505 membro("cart", "^0.1"),
7506 membro("cart", "^0.2"),
7507 membro("catalog", "^0.1"),
7508 membro("payment", "^0.1"),
7509 ];
7510 let err = s.validate().unwrap_err();
7511 assert!(
7512 matches!(err, AplicacaoError::MembroDuplicate { ref caixa } if caixa == "cart"),
7513 "got {err:?}"
7514 );
7515 }
7516
7517 #[test]
7518 fn distinct_membros_validate() {
7519 // Pin the happy-path: every `:membros` entry has a non-empty
7520 // `:caixa`, a non-empty `:versao`, and the set is duplicate-free.
7521 // The fixture already satisfies this; this test makes the
7522 // invariant explicit so a future refactor of the fixture can't
7523 // silently break the guarantee.
7524 three_member_spec().validate().unwrap();
7525 }
7526
7527 // ── :membros :caixa DNS-1123 label value-shape gate ───────────────────
7528
7529 #[test]
7530 fn rejects_membro_caixa_with_uppercase() {
7531 // The canonical "I copied the Servico's display name verbatim"
7532 // typo — caixa names are lowercase per K8s DNS-1123 label rule,
7533 // but author tools often round-trip a TitleCase or CamelCase
7534 // identifier from an ADR or a sketch. Pin the diagnostic names
7535 // the offending name and suggests the lower-cased fix in one
7536 // edit, mirroring the `rejects_entrada_host_with_uppercase`
7537 // gate's shape (c7d05ec).
7538 let mut s = three_member_spec();
7539 s.membros[1].caixa = "Cart".into();
7540 let err = s.validate().unwrap_err();
7541 let AplicacaoError::MembroCaixaInvalid { caixa, reason } = err else {
7542 panic!("expected MembroCaixaInvalid, got other variant");
7543 };
7544 assert_eq!(caixa, "Cart");
7545 assert!(
7546 reason.contains("uppercase"),
7547 "diagnostic must name the violation as `uppercase` (got: {reason:?})"
7548 );
7549 assert!(
7550 reason.contains("\"cart\""),
7551 "diagnostic must suggest the lower-cased fix verbatim (got: {reason:?})"
7552 );
7553 }
7554
7555 #[test]
7556 fn rejects_membro_caixa_with_underscore() {
7557 // The canonical "I'm thinking of a Python module / Postgres
7558 // table" leak — `_` is forbidden by every DNS-1123 / DNS-1035
7559 // label schema. K8s rejects `metadata.name: my_cart` at admission
7560 // time with an opaque `field is invalid` (no source-citing
7561 // diagnostic). The gate moves it to caixa-build time.
7562 let mut s = three_member_spec();
7563 s.membros[0].caixa = "my_cart".into();
7564 let err = s.validate().unwrap_err();
7565 assert!(
7566 matches!(
7567 err,
7568 AplicacaoError::MembroCaixaInvalid { ref caixa, ref reason }
7569 if caixa == "my_cart" && reason.contains('_')
7570 ),
7571 "got {err:?}"
7572 );
7573 }
7574
7575 #[test]
7576 fn rejects_membro_caixa_with_dot() {
7577 // A `:membros :caixa` entry is a single DNS-1123 *label*, not a
7578 // subdomain — even though K8s `metadata.name` itself accepts
7579 // dots (DNS-1123 subdomain rule), this string also lands as a
7580 // K8s Service name (DNS-1035 label — no dots) and as a label
7581 // value on identity-based Cilium selectors. The strictest floor
7582 // among the use sites wins. The "I want to namespace my member
7583 // names with `.`" intent is expressed via `-` (e.g. `cart-v2`).
7584 let mut s = three_member_spec();
7585 s.membros[2].caixa = "team.cart".into();
7586 let err = s.validate().unwrap_err();
7587 assert!(
7588 matches!(
7589 err,
7590 AplicacaoError::MembroCaixaInvalid { ref caixa, ref reason }
7591 if caixa == "team.cart" && reason.contains('.')
7592 ),
7593 "got {err:?}"
7594 );
7595 }
7596
7597 #[test]
7598 fn rejects_membro_caixa_with_leading_hyphen() {
7599 // DNS-1123 / DNS-1035 boundary rule: labels must start and end
7600 // with an alphanumeric. The K8s apiserver rejects `-cart`
7601 // outright; the renderer would emit a `metadata.name: "-cart"`
7602 // that fails admission far from the source caixa.lisp.
7603 let mut s = three_member_spec();
7604 s.membros[0].caixa = "-cart".into();
7605 let err = s.validate().unwrap_err();
7606 assert!(
7607 matches!(
7608 err,
7609 AplicacaoError::MembroCaixaInvalid { ref caixa, ref reason }
7610 if caixa == "-cart" && reason.contains("start and end")
7611 ),
7612 "got {err:?}"
7613 );
7614 }
7615
7616 #[test]
7617 fn rejects_membro_caixa_with_trailing_hyphen() {
7618 // The symmetric arm of the boundary rule. Pin separately so
7619 // both ends of the label are covered against a future relaxation
7620 // that only checks one boundary.
7621 let mut s = three_member_spec();
7622 s.membros[1].caixa = "cart-".into();
7623 let err = s.validate().unwrap_err();
7624 assert!(
7625 matches!(
7626 err,
7627 AplicacaoError::MembroCaixaInvalid { ref caixa, .. }
7628 if caixa == "cart-"
7629 ),
7630 "got {err:?}"
7631 );
7632 }
7633
7634 #[test]
7635 fn rejects_membro_caixa_with_unicode() {
7636 // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
7637 // (`xn--…`) by the author before it reaches K8s. The byte-by-
7638 // byte ASCII validity check rejects multi-byte UTF-8 sequences
7639 // by the first byte that fails the `[a-z0-9-]` predicate.
7640 let mut s = three_member_spec();
7641 s.membros[2].caixa = "café".into();
7642 let err = s.validate().unwrap_err();
7643 assert!(
7644 matches!(
7645 err,
7646 AplicacaoError::MembroCaixaInvalid { ref caixa, .. }
7647 if caixa == "café"
7648 ),
7649 "got {err:?}"
7650 );
7651 }
7652
7653 #[test]
7654 fn rejects_membro_caixa_with_whitespace() {
7655 // Whitespace is the canonical "I pasted from a sketch / doc"
7656 // footgun. The apiserver rejects every `metadata.name` value
7657 // carrying whitespace; pin the gate fires at the right boundary.
7658 let mut s = three_member_spec();
7659 s.membros[0].caixa = "my cart".into();
7660 let err = s.validate().unwrap_err();
7661 assert!(
7662 matches!(
7663 err,
7664 AplicacaoError::MembroCaixaInvalid { ref caixa, .. }
7665 if caixa == "my cart"
7666 ),
7667 "got {err:?}"
7668 );
7669 }
7670
7671 #[test]
7672 fn rejects_membro_caixa_too_long() {
7673 // 64 bytes exceeds the DNS-1123 label cap by one — the boundary
7674 // pin. K8s Service name + DNS-1123 label both cap at 63 bytes
7675 // exactly. The gate's reason names both the cap and the actual
7676 // length so the author can shorten in one edit.
7677 let mut s = three_member_spec();
7678 let too_long = "a".repeat(64);
7679 s.membros[1].caixa = too_long.clone();
7680 let err = s.validate().unwrap_err();
7681 let AplicacaoError::MembroCaixaInvalid { caixa, reason } = err else {
7682 panic!("expected MembroCaixaInvalid");
7683 };
7684 assert_eq!(caixa, too_long);
7685 assert!(
7686 reason.contains("63") && reason.contains("64"),
7687 "diagnostic must name the cap (63) and the actual length (64): {reason:?}"
7688 );
7689 }
7690
7691 #[test]
7692 fn membro_caixa_max_length_validates() {
7693 // 63 bytes exactly — the K8s DNS-1123 label cap. Pin the boundary
7694 // so a future tightening (e.g. dropping to 62) surfaces here as
7695 // a regression, mirroring `entrada_host_max_length_validates`
7696 // (c7d05ec).
7697 let mut s = three_member_spec();
7698 s.membros[2].caixa = "a".repeat(63);
7699 s.entrada.as_mut().unwrap().para = "a".repeat(63);
7700 // remove contratos referencing the renamed member; they'd
7701 // raise ContratoMemberMissing otherwise
7702 s.contratos
7703 .retain(|c| c.de != "payment" && c.para != "payment");
7704 s.validate().unwrap();
7705 }
7706
7707 #[test]
7708 fn accepts_canonical_membro_caixa_forms() {
7709 // The DNS-1123 label shapes a caixa author is realistically
7710 // going to write: single-word lowercase, hyphen-joined, ending
7711 // in a digit-suffixed version (`cart-v2`), starting with a
7712 // digit (`3rd-party-shim` — DNS-1123 allows this, unlike
7713 // DNS-1035 which requires a letter at position 0), single-
7714 // character (`a` — boundary). Pin every leg so a future
7715 // tightening that bans (e.g.) digit-start identifiers surfaces
7716 // here.
7717 for form in [
7718 "checkout",
7719 "cart",
7720 "cart-v2",
7721 "a",
7722 "c0",
7723 "3rd-party-shim",
7724 "x-1-2-3-4",
7725 ] {
7726 let mut s = three_member_spec();
7727 // Renaming a member also requires updating downstream refs;
7728 // drop everything else and rebuild a minimal spec around
7729 // just the one renamed member.
7730 s.membros = vec![membro(form, "^0.1")];
7731 s.contratos = vec![];
7732 s.entrada = None;
7733 s.validate()
7734 .unwrap_or_else(|e| panic!("canonical form {form:?} must validate, got {e:?}"));
7735 }
7736 }
7737
7738 #[test]
7739 fn membro_caixa_empty_takes_precedence_over_invalid() {
7740 // Order pin: the existing `MembroCaixaEmpty` diagnostic
7741 // (which doesn't try to parse) fires before the new
7742 // `MembroCaixaInvalid` parse-side diagnostic, so an empty
7743 // `:caixa` keeps its narrower error message — the new gate
7744 // would also reject `""`, but the empty-string arm is the more
7745 // self-locating diagnostic for the author. Mirrors the
7746 // `entrada_host_empty_takes_precedence_over_invalid` pin
7747 // (c7d05ec).
7748 let mut s = three_member_spec();
7749 s.membros[1].caixa = String::new();
7750 let err = s.validate().unwrap_err();
7751 assert_eq!(err, AplicacaoError::MembroCaixaEmpty);
7752 }
7753
7754 #[test]
7755 fn membro_caixa_invalid_fires_before_versao_check() {
7756 // Order pin: an invalid-shape `:caixa` surfaces *its own*
7757 // diagnostic (which names the offending caixa name), even when
7758 // the same entry's `:versao` is also empty/invalid. The shape
7759 // gate runs first because the diagnostic is more self-locating —
7760 // an empty/invalid `:versao` on an invalid-shape caixa name is
7761 // a downstream-fix-after-the-caixa-rename concern.
7762 let mut s = three_member_spec();
7763 s.membros[1].caixa = "Cart".into();
7764 s.membros[1].versao = String::new(); // would otherwise raise MembroVersaoEmpty
7765 let err = s.validate().unwrap_err();
7766 assert!(
7767 matches!(
7768 err,
7769 AplicacaoError::MembroCaixaInvalid { ref caixa, .. } if caixa == "Cart"
7770 ),
7771 "got {err:?}"
7772 );
7773 }
7774
7775 #[test]
7776 fn membro_caixa_invalid_fires_before_duplicate_check() {
7777 // Order pin: a malformed-shape `:caixa` on an earlier entry
7778 // surfaces *its own* diagnostic, even when a later entry would
7779 // otherwise collapse onto a duplicate name. The per-entry shape
7780 // gate runs inline before the duplicate-key insert, parallel
7781 // to `membro_versao_invalid_fires_before_duplicate_check`.
7782 let mut s = three_member_spec();
7783 s.membros[0].caixa = "Catalog".into();
7784 s.membros.push(membro("cart", "^0.2")); // would otherwise raise MembroDuplicate
7785 let err = s.validate().unwrap_err();
7786 assert!(
7787 matches!(
7788 err,
7789 AplicacaoError::MembroCaixaInvalid { ref caixa, .. } if caixa == "Catalog"
7790 ),
7791 "got {err:?}"
7792 );
7793 }
7794
7795 #[test]
7796 fn membro_caixa_invalid_diagnostic_carries_offending_caixa() {
7797 // The diagnostic-shape pin: the error names the offending
7798 // `:caixa` value verbatim so the author can grep their
7799 // caixa.lisp without re-running the build, and carries a
7800 // non-empty `reason` naming the specific violation. Same
7801 // shape every typed-shape gate enshrines (c7d05ec's
7802 // `entrada_host_diagnostic_carries_offending_host`,
7803 // 9888b13's `membro_versao_invalid_diagnostic_carries_offending_versao`).
7804 let mut s = three_member_spec();
7805 s.membros[2].caixa = "BAD_NAME".into();
7806 let err = s.validate().unwrap_err();
7807 let AplicacaoError::MembroCaixaInvalid { caixa, reason } = err else {
7808 panic!("expected MembroCaixaInvalid");
7809 };
7810 assert_eq!(caixa, "BAD_NAME");
7811 assert!(
7812 !reason.is_empty(),
7813 "MembroCaixaInvalid `reason` must carry a parser-shaped wording"
7814 );
7815 }
7816
7817 #[test]
7818 fn rejects_contrato_with_unknown_de() {
7819 let mut s = three_member_spec();
7820 s.contratos.push(contract_http("phantom", "catalog", "/x"));
7821 let err = s.validate().unwrap_err();
7822 assert!(
7823 matches!(err, AplicacaoError::ContratoMemberMissing { caixa } if caixa == "phantom")
7824 );
7825 }
7826
7827 #[test]
7828 fn rejects_contrato_with_unknown_para() {
7829 let mut s = three_member_spec();
7830 s.contratos.push(contract_http("cart", "phantom", "/x"));
7831 let err = s.validate().unwrap_err();
7832 assert!(
7833 matches!(err, AplicacaoError::ContratoMemberMissing { caixa } if caixa == "phantom")
7834 );
7835 }
7836
7837 #[test]
7838 fn contrato_unknown_de_diagnostic_routes_caixa_field_through_source_accessor() {
7839 // The read-path pin: the phantom-`:de` refusal arm's
7840 // `ContratoMemberMissing.caixa` carrier must be observed through
7841 // the lifted [`WitContract::source`] accessor, not the raw
7842 // `.de.clone()` field-access `String`-carry. Peer of the sibling
7843 // per-`:contratos` self-loop arm's `.source().to_string()` /
7844 // `.world_ref().to_string()` `String`-carry sites the earlier
7845 // convergence lifted onto the same accessor pair. A future
7846 // silent detour that reintroduced the raw `.de.clone()` at the
7847 // wrap envelope while the shape-gate and membership lookup
7848 // routed through the accessor would surface here as a byte-equal
7849 // miss between the fired diagnostic's `caixa:` field and the
7850 // offending edge's `.source()` — pinning the accessor as the
7851 // sole read path across the phantom-name refusal arm's arg +
7852 // wrap-envelope emit surface.
7853 let mut s = three_member_spec();
7854 let phantom = contract_http("phantom", "catalog", "/x");
7855 s.contratos.push(phantom.clone());
7856 let err = s.validate().unwrap_err();
7857 let AplicacaoError::ContratoMemberMissing { caixa } = err else {
7858 panic!("expected ContratoMemberMissing on phantom :de, got {err:?}");
7859 };
7860 assert_eq!(
7861 caixa,
7862 phantom.source(),
7863 "ContratoMemberMissing.caixa on the phantom-:de arm must \
7864 byte-equal WitContract::source — the wrap envelope must \
7865 route through the lifted accessor rather than the raw \
7866 .de.clone() field-access String-carry"
7867 );
7868 }
7869
7870 #[test]
7871 fn contrato_unknown_para_diagnostic_routes_caixa_field_through_destination_accessor() {
7872 // The symmetric read-path pin on the `:para` phantom-name
7873 // refusal arm — same shape as the sibling `:de` pin above but
7874 // on the callee-Servico axis. Pins the wrap envelope's
7875 // `caixa:` field is observed through the lifted
7876 // [`WitContract::destination`] accessor, not the raw
7877 // `.para.clone()` field-access `String`-carry.
7878 let mut s = three_member_spec();
7879 let phantom = contract_http("cart", "phantom", "/x");
7880 s.contratos.push(phantom.clone());
7881 let err = s.validate().unwrap_err();
7882 let AplicacaoError::ContratoMemberMissing { caixa } = err else {
7883 panic!("expected ContratoMemberMissing on phantom :para, got {err:?}");
7884 };
7885 assert_eq!(
7886 caixa,
7887 phantom.destination(),
7888 "ContratoMemberMissing.caixa on the phantom-:para arm must \
7889 byte-equal WitContract::destination — the wrap envelope \
7890 must route through the lifted accessor rather than the raw \
7891 .para.clone() field-access String-carry"
7892 );
7893 }
7894
7895 #[test]
7896 fn contrato_malformed_de_diagnostic_routes_caixa_field_through_source_accessor() {
7897 // The read-path pin on the `:de` DNS-1123-malformed shape-gate
7898 // refusal arm — the `validate_contrato_caixa` arg must be
7899 // observed through the lifted [`WitContract::source`] accessor,
7900 // not the raw `&c.de` `&String`-borrow. A `BAD_NAME` `:de`
7901 // value routes through the shared
7902 // [`crate::render::require_valid_dns_1123_label`] floor with the
7903 // accessor-projected value; the fired
7904 // `AplicacaoError::ContratoCaixaInvalid.caixa` carrier byte-equals
7905 // the offending edge's `.source()`, pinning that the arg + the
7906 // downstream `caixa: caixa.to_string()` wrap route through the
7907 // same accessor's read path.
7908 let mut s = three_member_spec();
7909 let malformed = contract_http("BAD_NAME", "catalog", "/x");
7910 s.contratos.push(malformed.clone());
7911 let err = s.validate().unwrap_err();
7912 let AplicacaoError::ContratoCaixaInvalid { slot, caixa, .. } = err else {
7913 panic!("expected ContratoCaixaInvalid on malformed :de, got {err:?}");
7914 };
7915 assert_eq!(slot, crate::render::CONTRATO_AUTHOR_KEY_DE);
7916 assert_eq!(
7917 caixa,
7918 malformed.source(),
7919 "ContratoCaixaInvalid.caixa on the malformed-:de arm must \
7920 byte-equal WitContract::source — the shape-gate arg + wrap \
7921 envelope must route through the lifted accessor rather \
7922 than the raw &c.de &String-borrow"
7923 );
7924 }
7925
7926 #[test]
7927 fn contrato_malformed_para_diagnostic_routes_caixa_field_through_destination_accessor() {
7928 // Symmetric arm to the sibling `:de` malformed-shape pin above,
7929 // on the `:para` axis. Pins the shape-gate arg + wrap envelope
7930 // route through the lifted [`WitContract::destination`]
7931 // accessor. `:para` runs after the `:de` shape gate in the
7932 // canonical edge-direction order, so the `:de` value must be
7933 // well-shaped for the `:para` gate to fire — the `cart` :de is
7934 // canonical.
7935 let mut s = three_member_spec();
7936 let malformed = contract_http("cart", "BAD_NAME", "/x");
7937 s.contratos.push(malformed.clone());
7938 let err = s.validate().unwrap_err();
7939 let AplicacaoError::ContratoCaixaInvalid { slot, caixa, .. } = err else {
7940 panic!("expected ContratoCaixaInvalid on malformed :para, got {err:?}");
7941 };
7942 assert_eq!(slot, crate::render::CONTRATO_AUTHOR_KEY_PARA);
7943 assert_eq!(
7944 caixa,
7945 malformed.destination(),
7946 "ContratoCaixaInvalid.caixa on the malformed-:para arm must \
7947 byte-equal WitContract::destination — the shape-gate arg + \
7948 wrap envelope must route through the lifted accessor \
7949 rather than the raw &c.para &String-borrow"
7950 );
7951 }
7952
7953 // ── :contratos :de / :para DNS-1123 label value-shape gate ──────────
7954
7955 #[test]
7956 fn rejects_contrato_de_empty() {
7957 // `:de ""` previously fell through to `ContratoMemberMissing`
7958 // (with `caixa: ""`) because the validated `:membros :caixa`
7959 // set never contains the empty string. The narrower
7960 // `ContratoCaixaEmpty { slot: ":de" }` diagnostic now names
7961 // the offending slot.
7962 let mut s = three_member_spec();
7963 s.contratos.push(contract_http("", "catalog", "/x"));
7964 let err = s.validate().unwrap_err();
7965 assert_eq!(
7966 err,
7967 AplicacaoError::ContratoCaixaEmpty {
7968 slot: crate::render::CONTRATO_AUTHOR_KEY_DE
7969 },
7970 "got {err:?}"
7971 );
7972 }
7973
7974 #[test]
7975 fn rejects_contrato_para_empty() {
7976 // Symmetric arm to `:de ""` — `:para ""` previously fell
7977 // through to `ContratoMemberMissing { caixa: "" }`.
7978 let mut s = three_member_spec();
7979 s.contratos.push(contract_http("cart", "", "/x"));
7980 let err = s.validate().unwrap_err();
7981 assert_eq!(
7982 err,
7983 AplicacaoError::ContratoCaixaEmpty {
7984 slot: crate::render::CONTRATO_AUTHOR_KEY_PARA
7985 },
7986 "got {err:?}"
7987 );
7988 }
7989
7990 #[test]
7991 fn rejects_contrato_de_with_uppercase() {
7992 // The canonical "I copied the Servico's TitleCase display
7993 // name from an ADR" typo. Until this gate landed `:de "Cart"`
7994 // surfaced `ContratoMemberMissing { caixa: "Cart" }` — framed
7995 // as "this caixa isn't in `:membros`" when the root cause is
7996 // "this `:de` value's shape can never legitimately match a
7997 // validated member (DNS-1123 labels are lowercase)". The
7998 // narrower diagnostic names the offending slot, the value
7999 // verbatim, and the parser-shaped reason.
8000 let mut s = three_member_spec();
8001 s.contratos.push(contract_http("Cart", "catalog", "/x"));
8002 let err = s.validate().unwrap_err();
8003 let AplicacaoError::ContratoCaixaInvalid {
8004 slot,
8005 caixa,
8006 reason,
8007 } = err
8008 else {
8009 panic!("expected ContratoCaixaInvalid, got other variant");
8010 };
8011 assert_eq!(slot, crate::render::CONTRATO_AUTHOR_KEY_DE);
8012 assert_eq!(caixa, "Cart");
8013 assert!(
8014 reason.contains("uppercase"),
8015 "diagnostic must name the violation as `uppercase` (got: {reason:?})"
8016 );
8017 }
8018
8019 #[test]
8020 fn rejects_contrato_para_with_underscore() {
8021 // The canonical "I'm thinking of a Python module" leak —
8022 // `_` is forbidden by every DNS-1123 / DNS-1035 label schema.
8023 // Pin the `:para` axis surfaces the same diagnostic shape as
8024 // the `:de` axis on the underscore violation.
8025 let mut s = three_member_spec();
8026 s.contratos.push(contract_http("cart", "my_catalog", "/x"));
8027 let err = s.validate().unwrap_err();
8028 assert!(
8029 matches!(
8030 err,
8031 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, ref reason }
8032 if slot == crate::render::CONTRATO_AUTHOR_KEY_PARA && caixa == "my_catalog" && reason.contains('_')
8033 ),
8034 "got {err:?}"
8035 );
8036 }
8037
8038 #[test]
8039 fn rejects_contrato_de_with_dot() {
8040 // A `:contratos :de` value is a single DNS-1123 *label*, not
8041 // a subdomain — mirroring the `:membros :caixa` floor. The
8042 // strictest floor among the use sites wins.
8043 let mut s = three_member_spec();
8044 s.contratos
8045 .push(contract_http("team.cart", "catalog", "/x"));
8046 let err = s.validate().unwrap_err();
8047 assert!(
8048 matches!(
8049 err,
8050 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, ref reason }
8051 if slot == crate::render::CONTRATO_AUTHOR_KEY_DE && caixa == "team.cart" && reason.contains('.')
8052 ),
8053 "got {err:?}"
8054 );
8055 }
8056
8057 #[test]
8058 fn rejects_contrato_para_with_unicode() {
8059 // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
8060 // (`xn--…`) before it reaches K8s. The byte-by-byte ASCII
8061 // validity check rejects multi-byte UTF-8 by the first
8062 // non-`[a-z0-9-]` byte.
8063 let mut s = three_member_spec();
8064 s.contratos.push(contract_http("cart", "café", "/x"));
8065 let err = s.validate().unwrap_err();
8066 assert!(
8067 matches!(
8068 err,
8069 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, .. }
8070 if slot == crate::render::CONTRATO_AUTHOR_KEY_PARA && caixa == "café"
8071 ),
8072 "got {err:?}"
8073 );
8074 }
8075
8076 #[test]
8077 fn rejects_contrato_de_with_leading_hyphen() {
8078 // DNS-1123 boundary rule: labels must start and end with an
8079 // alphanumeric. K8s rejects `-cart` outright; the narrower
8080 // shape diagnostic now names the violation at caixa-build
8081 // time rather than the misframed membership-lookup arm.
8082 let mut s = three_member_spec();
8083 s.contratos.push(contract_http("-cart", "catalog", "/x"));
8084 let err = s.validate().unwrap_err();
8085 assert!(
8086 matches!(
8087 err,
8088 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, ref reason }
8089 if slot == crate::render::CONTRATO_AUTHOR_KEY_DE && caixa == "-cart" && reason.contains("start and end")
8090 ),
8091 "got {err:?}"
8092 );
8093 }
8094
8095 #[test]
8096 fn contrato_de_empty_takes_precedence_over_invalid() {
8097 // Order pin: the `ContratoCaixaEmpty` arm fires before the
8098 // `ContratoCaixaInvalid` parse-side arm — same empty-first
8099 // cascade `validate_membro_caixa` / `validate_placement_cluster`
8100 // / `validate_entrada_host` already establish on their peer
8101 // name axes. The empty string is a structurally distinct
8102 // authoring footgun (the author left the field blank, vs.
8103 // typed a malformed value), so it gets its own diagnostic.
8104 let mut s = three_member_spec();
8105 s.contratos.push(contract_http("", "catalog", "/x"));
8106 let err = s.validate().unwrap_err();
8107 assert_eq!(
8108 err,
8109 AplicacaoError::ContratoCaixaEmpty {
8110 slot: crate::render::CONTRATO_AUTHOR_KEY_DE
8111 }
8112 );
8113 }
8114
8115 #[test]
8116 fn contrato_de_shape_fires_before_para_shape() {
8117 // Per-axis order pin: within one `:contratos` entry, the `:de`
8118 // shape gate fires before the `:para` shape gate — same
8119 // edge-direction order the existing `ContratoMemberMissing` /
8120 // `ContratoSelfLoop` / target-dispatch checks use, so the
8121 // diagnostic for a contract with both `:de` and `:para`
8122 // malformed is stable. Authors fixing the surfaced `:de`
8123 // first will see `:para`'s diagnostic on re-run.
8124 let mut s = three_member_spec();
8125 s.contratos.push(contract_http("Cart", "Catalog", "/x"));
8126 let err = s.validate().unwrap_err();
8127 assert!(
8128 matches!(
8129 err,
8130 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, .. }
8131 if slot == crate::render::CONTRATO_AUTHOR_KEY_DE && caixa == "Cart"
8132 ),
8133 "got {err:?}"
8134 );
8135 }
8136
8137 #[test]
8138 fn contrato_shape_fires_before_membership_lookup() {
8139 // The load-bearing pin: an invalid-shape `:de` surfaces its
8140 // *own* diagnostic, not the misframed `ContratoMemberMissing`.
8141 // Because every `:membros :caixa` is shape-validated (3f9d7a0),
8142 // an invalid-shape `:de` could never legitimately match any
8143 // member — the prior `ContratoMemberMissing` diagnostic was
8144 // a structural impossibility framed as a graph-membership
8145 // failure. The shape gate now routes every such input through
8146 // the narrower self-locating diagnostic.
8147 let mut s = three_member_spec();
8148 s.contratos.push(contract_http("Cart", "catalog", "/x"));
8149 let err = s.validate().unwrap_err();
8150 assert!(
8151 matches!(
8152 err,
8153 AplicacaoError::ContratoCaixaInvalid { slot, .. } if slot == crate::render::CONTRATO_AUTHOR_KEY_DE
8154 ),
8155 "got {err:?}"
8156 );
8157 // And the symmetric case: an invalid-shape `:para` surfaces
8158 // its own diagnostic too, even when `:de` is well-shaped.
8159 let mut s = three_member_spec();
8160 s.contratos.push(contract_http("cart", "Catalog", "/x"));
8161 let err = s.validate().unwrap_err();
8162 assert!(
8163 matches!(
8164 err,
8165 AplicacaoError::ContratoCaixaInvalid { slot, .. } if slot == crate::render::CONTRATO_AUTHOR_KEY_PARA
8166 ),
8167 "got {err:?}"
8168 );
8169 }
8170
8171 #[test]
8172 fn contrato_shape_fires_before_self_edge_check() {
8173 // A `:de "Cart" :para "Cart"` entry is two distinct authoring
8174 // bugs: the shape violation (uppercase) and the self-edge
8175 // violation. The narrower per-axis shape diagnostic surfaces
8176 // first because fixing the shape may reveal that the author
8177 // also meant to point `:para` at a different member — the
8178 // self-edge framing is only useful once both endpoints have
8179 // valid shape.
8180 let mut s = three_member_spec();
8181 s.contratos.push(contract_http("Cart", "Cart", "/x"));
8182 let err = s.validate().unwrap_err();
8183 assert!(
8184 matches!(
8185 err,
8186 AplicacaoError::ContratoCaixaInvalid { slot, ref caixa, .. }
8187 if slot == crate::render::CONTRATO_AUTHOR_KEY_DE && caixa == "Cart"
8188 ),
8189 "got {err:?}"
8190 );
8191 }
8192
8193 #[test]
8194 fn contrato_well_shaped_phantom_still_raises_member_missing() {
8195 // Strict-improvement pin: a well-shaped `:de` that simply
8196 // isn't in `:membros` (a phantom reference — author meant
8197 // to add the member but didn't, or renamed and missed an
8198 // update) still surfaces `ContratoMemberMissing`, unchanged.
8199 // The shape gate only intercepts inputs that could never
8200 // legitimately match a validated member; legitimately-shaped
8201 // phantom references remain on the graph-membership axis.
8202 let mut s = three_member_spec();
8203 s.contratos
8204 .push(contract_http("phantom-shim", "catalog", "/x"));
8205 let err = s.validate().unwrap_err();
8206 assert!(
8207 matches!(
8208 err,
8209 AplicacaoError::ContratoMemberMissing { ref caixa }
8210 if caixa == "phantom-shim"
8211 ),
8212 "got {err:?}"
8213 );
8214 }
8215
8216 #[test]
8217 fn contrato_caixa_invalid_diagnostic_carries_offending_slot_and_value() {
8218 // The diagnostic-shape pin: the error names the offending
8219 // slot (`:de` or `:para`) verbatim and the offending value
8220 // verbatim plus a non-empty parser-shaped reason, so the
8221 // author can grep their caixa.lisp for `:de "<name>"` /
8222 // `:para "<name>"` and fix it in one edit. Same diagnostic
8223 // shape as `MembroCaixaInvalid` (3f9d7a0) and
8224 // `PlacementClusterInvalid` (6c8c00b).
8225 let mut s = three_member_spec();
8226 s.contratos.push(contract_http("cart", "BAD_NAME", "/x"));
8227 let err = s.validate().unwrap_err();
8228 let AplicacaoError::ContratoCaixaInvalid {
8229 slot,
8230 caixa,
8231 reason,
8232 } = err
8233 else {
8234 panic!("expected ContratoCaixaInvalid, got {err:?}");
8235 };
8236 assert_eq!(slot, crate::render::CONTRATO_AUTHOR_KEY_PARA);
8237 assert_eq!(caixa, "BAD_NAME");
8238 assert!(
8239 !reason.is_empty(),
8240 "ContratoCaixaInvalid `reason` must carry a parser-shaped wording"
8241 );
8242 }
8243
8244 #[test]
8245 fn contrato_author_key_consts_pin_canonical_kebab_case_labels() {
8246 // Scalar-value pin: the two author-facing kebab-case labels the
8247 // `(:contratos ((:de "<caixa>" :para "<caixa>" …) …))` surface
8248 // admits on the `:contratos` per-entry endpoint-shape axis,
8249 // one arm per typed sub-slot. Mirrors the peer scalar-value
8250 // pin the sibling top-level M2 / M3 / Supervisor
8251 // author-facing-label consts carry
8252 // (`m3_top_level_author_key_consts_pin_canonical_kebab_case_labels`
8253 // for the parent [`crate::render::M3_AUTHOR_KEY_CONTRATOS`]
8254 // slot itself), so every altitude of the typed-slot algebra
8255 // shares the same "one canonical byte-string per arm"
8256 // discipline. A future rebrand (`:de` → `:from` matching the
8257 // OTP `appup` [`crate::render::M2_UPGRADE_FROM_KEY_FROM`]
8258 // sibling, `:para` → `:to` matching the same, or
8259 // `:de`/`:para` → `:source`/`:target` matching the WIT
8260 // world's `import`/`export` half-vocabulary) lands as an
8261 // edit to exactly one const, and every consumer that reaches
8262 // for the label picks it up at build time rather than at
8263 // runtime as a downstream `ContratoCaixaEmpty` /
8264 // `ContratoCaixaInvalid` `slot: <stale-kebab-case>`
8265 // diagnostic mismatch far from the rename's commit.
8266 assert_eq!(crate::render::CONTRATO_AUTHOR_KEY_DE, ":de");
8267 assert_eq!(crate::render::CONTRATO_AUTHOR_KEY_PARA, ":para");
8268 }
8269
8270 #[test]
8271 fn contrato_shape_gate_routes_through_lifted_contrato_author_key_consts() {
8272 // Production-through-const pin: the two per-axis labels the
8273 // per-`:contratos` entry endpoint-shape gate at
8274 // [`AplicacaoSpec::validate`] passes as the `slot: &'static str`
8275 // argument to [`validate_contrato_caixa`] route through the
8276 // lifted [`crate::render::CONTRATO_AUTHOR_KEY_DE`] /
8277 // [`crate::render::CONTRATO_AUTHOR_KEY_PARA`] consts, so a
8278 // future rebrand that reaches the const but not the gate (or
8279 // vice versa) surfaces here at build time rather than at
8280 // runtime as a downstream [`AplicacaoError::ContratoCaixaEmpty`]
8281 // `slot: <stale-kebab-case>` diagnostic far from the rename's
8282 // commit. Mirror of the peer
8283 // [`manifest::declared_mesh_slots_route_through_lifted_m3_author_key_consts`]
8284 // pin (882f498) on the sibling M3 top-level slot axis.
8285 let mut s = three_member_spec();
8286 s.contratos.push(contract_http("", "catalog", "/x"));
8287 assert_eq!(
8288 s.validate().unwrap_err(),
8289 AplicacaoError::ContratoCaixaEmpty {
8290 slot: crate::render::CONTRATO_AUTHOR_KEY_DE
8291 }
8292 );
8293 let mut s = three_member_spec();
8294 s.contratos.push(contract_http("cart", "", "/x"));
8295 assert_eq!(
8296 s.validate().unwrap_err(),
8297 AplicacaoError::ContratoCaixaEmpty {
8298 slot: crate::render::CONTRATO_AUTHOR_KEY_PARA
8299 }
8300 );
8301 }
8302
8303 #[test]
8304 fn accepts_canonical_contrato_caixa_forms() {
8305 // The DNS-1123 label shapes a caixa author is realistically
8306 // going to write on a `:contratos :de` / `:para`. Pin every
8307 // leg so a future tightening that bans (e.g.) digit-start
8308 // identifiers surfaces here, mirroring
8309 // `accepts_canonical_membro_caixa_forms` on the peer name
8310 // axis.
8311 for form in ["cart", "cart-v2", "a", "c0", "3rd-party-shim", "x-1-2-3-4"] {
8312 let mut s = three_member_spec();
8313 s.membros = vec![membro("checkout", "^0.1"), membro(form, "^0.1")];
8314 s.contratos = vec![contract_http("checkout", form, "/x")];
8315 s.entrada = None;
8316 s.validate().unwrap_or_else(|e| {
8317 panic!("canonical form {form:?} must validate on `:para`, got {e:?}")
8318 });
8319
8320 let mut s = three_member_spec();
8321 s.membros = vec![membro(form, "^0.1"), membro("catalog", "^0.1")];
8322 s.contratos = vec![contract_http(form, "catalog", "/x")];
8323 s.entrada = None;
8324 s.validate().unwrap_or_else(|e| {
8325 panic!("canonical form {form:?} must validate on `:de`, got {e:?}")
8326 });
8327 }
8328 }
8329
8330 #[test]
8331 fn rejects_empty_wit() {
8332 let mut s = three_member_spec();
8333 s.contratos.push(WitContract {
8334 de: "cart".into(),
8335 para: "catalog".into(),
8336 wit: "".into(),
8337 endpoint: None,
8338 subject: None,
8339 slot: None,
8340 });
8341 let err = s.validate().unwrap_err();
8342 assert!(matches!(err, AplicacaoError::EmptyWit { .. }));
8343 }
8344
8345 #[test]
8346 fn rejects_entrada_to_unknown_member() {
8347 let mut s = three_member_spec();
8348 s.entrada.as_mut().unwrap().para = "phantom".into();
8349 assert!(matches!(
8350 s.validate().unwrap_err(),
8351 AplicacaoError::EntradaMemberMissing { .. }
8352 ));
8353 }
8354
8355 // ── :entrada :para DNS-1123 label value-shape gate ───────────────────
8356
8357 #[test]
8358 fn rejects_entrada_para_empty() {
8359 // `:para ""` previously fell through to
8360 // `EntradaMemberMissing { para: "" }` because the validated
8361 // `:membros :caixa` set never contains the empty string. The
8362 // narrower `EntradaParaEmpty` diagnostic now names the
8363 // offending slot directly — same empty-first cascade
8364 // `MembroCaixaEmpty` / `PlacementClusterEmpty` /
8365 // `ContratoCaixaEmpty` establish on the peer name axes.
8366 let mut s = three_member_spec();
8367 s.entrada.as_mut().unwrap().para = String::new();
8368 let err = s.validate().unwrap_err();
8369 assert_eq!(err, AplicacaoError::EntradaParaEmpty, "got {err:?}");
8370 }
8371
8372 #[test]
8373 fn rejects_entrada_para_with_uppercase() {
8374 // The canonical "I copied the Servico's TitleCase display
8375 // name from an ADR" typo. Until this gate landed `:para "Cart"`
8376 // surfaced `EntradaMemberMissing { para: "Cart" }` — framed
8377 // as "this caixa isn't in `:membros`" when the root cause is
8378 // "this `:para` value's shape can never legitimately match a
8379 // validated member (DNS-1123 labels are lowercase)". The
8380 // narrower diagnostic names the value verbatim plus the
8381 // parser-shaped reason.
8382 let mut s = three_member_spec();
8383 s.entrada.as_mut().unwrap().para = "Cart".into();
8384 let err = s.validate().unwrap_err();
8385 let AplicacaoError::EntradaParaInvalid { para, reason } = err else {
8386 panic!("expected EntradaParaInvalid, got other variant");
8387 };
8388 assert_eq!(para, "Cart");
8389 assert!(
8390 reason.contains("uppercase"),
8391 "diagnostic must name the violation as `uppercase` (got: {reason:?})"
8392 );
8393 }
8394
8395 #[test]
8396 fn rejects_entrada_para_with_underscore() {
8397 // The canonical "I'm thinking of a Python module" leak —
8398 // `_` is forbidden by every DNS-1123 / DNS-1035 label schema.
8399 let mut s = three_member_spec();
8400 s.entrada.as_mut().unwrap().para = "my_cart".into();
8401 let err = s.validate().unwrap_err();
8402 assert!(
8403 matches!(
8404 err,
8405 AplicacaoError::EntradaParaInvalid { ref para, ref reason }
8406 if para == "my_cart" && reason.contains('_')
8407 ),
8408 "got {err:?}"
8409 );
8410 }
8411
8412 #[test]
8413 fn rejects_entrada_para_with_dot() {
8414 // An `:entrada :para` value is a single DNS-1123 *label*, not
8415 // a subdomain — mirroring the `:membros :caixa` floor. The
8416 // strictest floor among the use sites wins.
8417 let mut s = three_member_spec();
8418 s.entrada.as_mut().unwrap().para = "team.cart".into();
8419 let err = s.validate().unwrap_err();
8420 assert!(
8421 matches!(
8422 err,
8423 AplicacaoError::EntradaParaInvalid { ref para, ref reason }
8424 if para == "team.cart" && reason.contains('.')
8425 ),
8426 "got {err:?}"
8427 );
8428 }
8429
8430 #[test]
8431 fn rejects_entrada_para_with_unicode() {
8432 // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
8433 // (`xn--…`) before it reaches K8s.
8434 let mut s = three_member_spec();
8435 s.entrada.as_mut().unwrap().para = "café".into();
8436 let err = s.validate().unwrap_err();
8437 assert!(
8438 matches!(
8439 err,
8440 AplicacaoError::EntradaParaInvalid { ref para, .. } if para == "café"
8441 ),
8442 "got {err:?}"
8443 );
8444 }
8445
8446 #[test]
8447 fn rejects_entrada_para_with_leading_hyphen() {
8448 // DNS-1123 boundary rule: labels must start and end with an
8449 // alphanumeric. K8s rejects `-cart` outright.
8450 let mut s = three_member_spec();
8451 s.entrada.as_mut().unwrap().para = "-cart".into();
8452 let err = s.validate().unwrap_err();
8453 assert!(
8454 matches!(
8455 err,
8456 AplicacaoError::EntradaParaInvalid { ref para, ref reason }
8457 if para == "-cart" && reason.contains("start and end")
8458 ),
8459 "got {err:?}"
8460 );
8461 }
8462
8463 #[test]
8464 fn rejects_entrada_para_with_trailing_hyphen() {
8465 // Symmetric boundary arm.
8466 let mut s = three_member_spec();
8467 s.entrada.as_mut().unwrap().para = "cart-".into();
8468 let err = s.validate().unwrap_err();
8469 assert!(
8470 matches!(
8471 err,
8472 AplicacaoError::EntradaParaInvalid { ref para, ref reason }
8473 if para == "cart-" && reason.contains("start and end")
8474 ),
8475 "got {err:?}"
8476 );
8477 }
8478
8479 #[test]
8480 fn rejects_entrada_para_too_long() {
8481 // 64-byte over-cap slug — the DNS-1123 label rule caps at 63
8482 // bytes per label. K8s rejects longer names at admission on
8483 // every `metadata.name` axis.
8484 let mut s = three_member_spec();
8485 s.entrada.as_mut().unwrap().para = "a".repeat(64);
8486 let err = s.validate().unwrap_err();
8487 assert!(
8488 matches!(
8489 err,
8490 AplicacaoError::EntradaParaInvalid { ref para, ref reason }
8491 if para.len() == 64 && reason.contains("max length")
8492 ),
8493 "got {err:?}"
8494 );
8495 }
8496
8497 #[test]
8498 fn entrada_para_empty_takes_precedence_over_invalid() {
8499 // Order pin: the `EntradaParaEmpty` arm fires before the
8500 // `EntradaParaInvalid` parse-side arm — same empty-first
8501 // cascade `validate_membro_caixa` / `validate_placement_cluster`
8502 // / `validate_contrato_caixa` already establish.
8503 let mut s = three_member_spec();
8504 s.entrada.as_mut().unwrap().para = String::new();
8505 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EntradaParaEmpty);
8506 }
8507
8508 #[test]
8509 fn entrada_para_shape_fires_before_membership_lookup() {
8510 // The load-bearing pin: an invalid-shape `:para` surfaces its
8511 // *own* diagnostic, not the misframed `EntradaMemberMissing`.
8512 // Because every `:membros :caixa` is shape-validated (3f9d7a0),
8513 // an invalid-shape `:para` could never legitimately match any
8514 // member — the prior `EntradaMemberMissing` diagnostic framed
8515 // a structural impossibility as a graph-membership failure.
8516 let mut s = three_member_spec();
8517 s.entrada.as_mut().unwrap().para = "Cart".into();
8518 let err = s.validate().unwrap_err();
8519 assert!(
8520 matches!(
8521 err,
8522 AplicacaoError::EntradaParaInvalid { ref para, .. } if para == "Cart"
8523 ),
8524 "got {err:?}"
8525 );
8526 }
8527
8528 #[test]
8529 fn entrada_para_shape_fires_before_host_gate() {
8530 // Per-`:entrada` order pin: the `:para` shape gate fires
8531 // before the `:host` gate, mirroring the existing
8532 // `entrada_host_member_missing_takes_precedence_over_host_invalid`
8533 // ordering where the member-lookup arm preceded the host gate.
8534 // The shape gate slots ahead of that, so a malformed `:para`
8535 // surfaces its own diagnostic even when `:host` is also wrong.
8536 let mut s = three_member_spec();
8537 let e = s.entrada.as_mut().unwrap();
8538 e.para = "Cart".into();
8539 e.host = "BAD HOST".into();
8540 let err = s.validate().unwrap_err();
8541 assert!(
8542 matches!(
8543 err,
8544 AplicacaoError::EntradaParaInvalid { ref para, .. } if para == "Cart"
8545 ),
8546 "got {err:?}"
8547 );
8548 }
8549
8550 #[test]
8551 fn entrada_para_well_shaped_phantom_still_raises_member_missing() {
8552 // Strict-improvement pin: a well-shaped `:para` that simply
8553 // isn't in `:membros` (a phantom reference — author meant to
8554 // add the member but didn't, or renamed and missed an
8555 // update) still surfaces `EntradaMemberMissing`, unchanged.
8556 // The shape gate only intercepts inputs that could never
8557 // legitimately match a validated member.
8558 let mut s = three_member_spec();
8559 s.entrada.as_mut().unwrap().para = "phantom-shim".into();
8560 let err = s.validate().unwrap_err();
8561 assert!(
8562 matches!(
8563 err,
8564 AplicacaoError::EntradaMemberMissing { ref para }
8565 if para == "phantom-shim"
8566 ),
8567 "got {err:?}"
8568 );
8569 }
8570
8571 #[test]
8572 fn entrada_para_invalid_diagnostic_carries_offending_para() {
8573 // The diagnostic-shape pin: the error names the offending
8574 // `:para` value verbatim plus a non-empty parser-shaped
8575 // reason, so the author can grep their caixa.lisp for
8576 // `:para "<name>"` and fix it in one edit. Same diagnostic
8577 // shape as `MembroCaixaInvalid` (3f9d7a0),
8578 // `PlacementClusterInvalid` (6c8c00b), and
8579 // `ContratoCaixaInvalid` (8d5af6b).
8580 let mut s = three_member_spec();
8581 s.entrada.as_mut().unwrap().para = "BAD_NAME".into();
8582 let err = s.validate().unwrap_err();
8583 let AplicacaoError::EntradaParaInvalid { para, reason } = err else {
8584 panic!("expected EntradaParaInvalid, got {err:?}");
8585 };
8586 assert_eq!(para, "BAD_NAME");
8587 assert!(
8588 !reason.is_empty(),
8589 "EntradaParaInvalid `reason` must carry a parser-shaped wording"
8590 );
8591 }
8592
8593 #[test]
8594 fn accepts_canonical_entrada_para_forms() {
8595 // Positive-control sweep covering the DNS-1123 label shapes a
8596 // caixa author is realistically going to write on `:entrada
8597 // :para`. Pin every leg so a future tightening that bans
8598 // (e.g.) digit-start identifiers surfaces here, mirroring
8599 // `accepts_canonical_membro_caixa_forms` and
8600 // `accepts_canonical_contrato_caixa_forms` on the peer name
8601 // axes.
8602 for form in ["cart", "cart-v2", "a", "c0", "3rd-party-shim", "x-1-2-3-4"] {
8603 let mut s = three_member_spec();
8604 s.membros = vec![membro(form, "^0.1"), membro("catalog", "^0.1")];
8605 s.contratos = vec![contract_http(form, "catalog", "/x")];
8606 s.entrada = Some(Entrada {
8607 host: "checkout.quero.cloud".into(),
8608 para: form.into(),
8609 paths: vec!["/api".into()],
8610 port: 8080,
8611 });
8612 s.validate().unwrap_or_else(|e| {
8613 panic!("canonical form {form:?} must validate on `:entrada :para`, got {e:?}")
8614 });
8615 }
8616 }
8617
8618 #[test]
8619 fn rejects_replicated_without_clusters() {
8620 let mut s = three_member_spec();
8621 s.placement.clusters = vec![];
8622 assert!(matches!(
8623 s.validate().unwrap_err(),
8624 AplicacaoError::PlacementWithoutClusters { .. }
8625 ));
8626 }
8627
8628 #[test]
8629 fn rejects_sharded_without_key() {
8630 let mut s = three_member_spec();
8631 s.placement.estrategia = PlacementStrategy::Sharded;
8632 s.placement.shard_key = None;
8633 s.placement.clusters = vec!["rio".into()];
8634 assert_eq!(s.validate().unwrap_err(), AplicacaoError::ShardedWithoutKey);
8635 }
8636
8637 #[test]
8638 fn sharded_with_key_validates() {
8639 let mut s = three_member_spec();
8640 s.placement.estrategia = PlacementStrategy::Sharded;
8641 s.placement.shard_key = Some("$tenantId".into());
8642 s.validate().unwrap();
8643 }
8644
8645 #[test]
8646 fn round_trip_via_json_preserves_shape() {
8647 let s = three_member_spec();
8648 let json = serde_json::to_string(&s.membros).unwrap();
8649 let back: Vec<Membro> = serde_json::from_str(&json).unwrap();
8650 assert_eq!(back, s.membros);
8651
8652 let json = serde_json::to_string(&s.contratos).unwrap();
8653 let back: Vec<WitContract> = serde_json::from_str(&json).unwrap();
8654 assert_eq!(back, s.contratos);
8655
8656 let json = serde_json::to_string(&s.placement).unwrap();
8657 let back: Placement = serde_json::from_str(&json).unwrap();
8658 assert_eq!(back, s.placement);
8659
8660 let json = serde_json::to_string(&s.entrada).unwrap();
8661 let back: Option<Entrada> = serde_json::from_str(&json).unwrap();
8662 assert_eq!(back, s.entrada);
8663 }
8664
8665 #[test]
8666 fn rate_limit_round_trip_seconds() {
8667 let policy = MeshPolicy {
8668 rate_limit: Some(RateLimit {
8669 rate: 100,
8670 window: Duration::from_secs(1),
8671 }),
8672 ..Default::default()
8673 };
8674 let json = serde_json::to_string(&policy).unwrap();
8675 assert!(json.contains("\"100/s\""));
8676 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
8677 assert_eq!(back.rate_limit.unwrap().rate, 100);
8678 assert_eq!(back.rate_limit.unwrap().window, Duration::from_secs(1));
8679 }
8680
8681 #[test]
8682 fn rate_limit_round_trip_minutes() {
8683 let policy = MeshPolicy {
8684 rate_limit: Some(RateLimit {
8685 rate: 5000,
8686 window: Duration::from_secs(60),
8687 }),
8688 ..Default::default()
8689 };
8690 let json = serde_json::to_string(&policy).unwrap();
8691 assert!(json.contains("\"5000/m\""));
8692 }
8693
8694 #[test]
8695 fn circuit_breaker_round_trip() {
8696 let policy = MeshPolicy {
8697 circuit_breaker: Some(CircuitBreaker {
8698 max_failures: 5,
8699 window: Duration::from_secs(60),
8700 }),
8701 ..Default::default()
8702 };
8703 let json = serde_json::to_string(&policy).unwrap();
8704 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
8705 assert_eq!(back.circuit_breaker.unwrap().max_failures, 5);
8706 assert_eq!(
8707 back.circuit_breaker.unwrap().window,
8708 Duration::from_secs(60)
8709 );
8710 }
8711
8712 #[test]
8713 fn rejects_http_contrato_without_endpoint() {
8714 let mut s = three_member_spec();
8715 s.contratos.push(WitContract {
8716 de: "cart".into(),
8717 para: "catalog".into(),
8718 wit: "wasi:http/proxy".into(),
8719 endpoint: None,
8720 subject: None,
8721 slot: None,
8722 });
8723 let err = s.validate().unwrap_err();
8724 assert!(matches!(
8725 err,
8726 AplicacaoError::ContratoMissingTarget {
8727 expected: WitTarget::HTTP_FIELD_NAME,
8728 ..
8729 }
8730 ));
8731 }
8732
8733 #[test]
8734 fn rejects_http_contrato_with_subject() {
8735 let mut s = three_member_spec();
8736 s.contratos.push(WitContract {
8737 de: "cart".into(),
8738 para: "catalog".into(),
8739 wit: "wasi:http/proxy".into(),
8740 endpoint: Some("/x".into()),
8741 subject: Some("not.allowed.here".into()),
8742 slot: None,
8743 });
8744 let err = s.validate().unwrap_err();
8745 assert!(matches!(
8746 err,
8747 AplicacaoError::ContratoWrongTarget {
8748 expected: WitTarget::HTTP_FIELD_NAME,
8749 ..
8750 }
8751 ));
8752 }
8753
8754 #[test]
8755 fn rejects_pubsub_contrato_without_subject() {
8756 let mut s = three_member_spec();
8757 s.contratos.push(WitContract {
8758 de: "cart".into(),
8759 para: "catalog".into(),
8760 wit: "nats:pub-sub".into(),
8761 endpoint: None,
8762 subject: None,
8763 slot: None,
8764 });
8765 let err = s.validate().unwrap_err();
8766 assert!(matches!(
8767 err,
8768 AplicacaoError::ContratoMissingTarget {
8769 expected: WitTarget::PUBSUB_FIELD_NAME,
8770 ..
8771 }
8772 ));
8773 }
8774
8775 #[test]
8776 fn rejects_pubsub_contrato_with_endpoint() {
8777 let mut s = three_member_spec();
8778 s.contratos.push(WitContract {
8779 de: "cart".into(),
8780 para: "catalog".into(),
8781 wit: "kafka:topic".into(),
8782 endpoint: Some("/wrong".into()),
8783 subject: Some("topic.x".into()),
8784 slot: None,
8785 });
8786 let err = s.validate().unwrap_err();
8787 assert!(matches!(
8788 err,
8789 AplicacaoError::ContratoWrongTarget {
8790 expected: WitTarget::PUBSUB_FIELD_NAME,
8791 ..
8792 }
8793 ));
8794 }
8795
8796 #[test]
8797 fn rejects_store_contrato_without_slot() {
8798 let mut s = three_member_spec();
8799 s.contratos.push(WitContract {
8800 de: "cart".into(),
8801 para: "catalog".into(),
8802 wit: "wasi:keyvalue/store".into(),
8803 endpoint: None,
8804 subject: None,
8805 slot: None,
8806 });
8807 let err = s.validate().unwrap_err();
8808 assert!(matches!(
8809 err,
8810 AplicacaoError::ContratoMissingTarget {
8811 expected: WitTarget::STORE_FIELD_NAME,
8812 ..
8813 }
8814 ));
8815 }
8816
8817 // ── value-shape on WitTarget payload (endpoint / subject / slot) ──────
8818
8819 #[test]
8820 fn rejects_http_contrato_with_empty_endpoint() {
8821 // `Some("")` for an HTTP endpoint passes the presence check
8822 // (target() previously returned WitTarget::Http { endpoint: "" })
8823 // but renders as a `path: ""` Cilium L7 rule that matches no
8824 // traffic. Same value-shape footgun closed for :entrada :paths
8825 // entries (eb3456d).
8826 let mut s = three_member_spec();
8827 s.contratos.push(WitContract {
8828 de: "cart".into(),
8829 para: "catalog".into(),
8830 wit: "wasi:http/proxy".into(),
8831 endpoint: Some(String::new()),
8832 subject: None,
8833 slot: None,
8834 });
8835 let err = s.validate().unwrap_err();
8836 assert!(
8837 matches!(err, AplicacaoError::ContratoEndpointEmpty { ref de, ref para }
8838 if de == "cart" && para == "catalog"),
8839 "got {err:?}"
8840 );
8841 }
8842
8843 #[test]
8844 fn rejects_http_contrato_with_relative_endpoint() {
8845 // Cilium L7 :path + Gateway API PathPrefix both require a
8846 // leading `/`. Same shape required of :entrada :paths
8847 // (eb3456d). Lifted into target() so every consumer of the
8848 // typed WitTarget view inherits the guarantee.
8849 let mut s = three_member_spec();
8850 s.contratos.push(WitContract {
8851 de: "cart".into(),
8852 para: "catalog".into(),
8853 wit: "wasi:http/proxy".into(),
8854 endpoint: Some("products/:id".into()),
8855 subject: None,
8856 slot: None,
8857 });
8858 let err = s.validate().unwrap_err();
8859 assert!(
8860 matches!(err, AplicacaoError::ContratoEndpointNotAbsolute { ref endpoint, .. }
8861 if endpoint == "products/:id"),
8862 "got {err:?}"
8863 );
8864 }
8865
8866 #[test]
8867 fn rejects_pubsub_contrato_with_empty_subject() {
8868 // NATS / Kafka publish without a subject is a no-op subscribe;
8869 // never the author's intent. Same empty-string rejection as
8870 // :membros :caixa, :placement :clusters entries, :entrada
8871 // :paths entries — every value carried by every typed slot is
8872 // value-shape-checked at validate().
8873 let mut s = three_member_spec();
8874 s.contratos.push(WitContract {
8875 de: "cart".into(),
8876 para: "catalog".into(),
8877 wit: "nats:pub-sub".into(),
8878 endpoint: None,
8879 subject: Some(String::new()),
8880 slot: None,
8881 });
8882 let err = s.validate().unwrap_err();
8883 assert!(
8884 matches!(err, AplicacaoError::ContratoSubjectEmpty { ref de, ref para }
8885 if de == "cart" && para == "catalog"),
8886 "got {err:?}"
8887 );
8888 }
8889
8890 #[test]
8891 fn rejects_store_contrato_with_empty_slot() {
8892 // An empty slot template addresses the bucket root, defeating
8893 // the per-key isolation the slot exists for — a footgun on
8894 // `wasi:keyvalue/store` whose closest analog is the empty
8895 // shard-key rejected on :placement Sharded (c7c7799).
8896 let mut s = three_member_spec();
8897 s.contratos.push(WitContract {
8898 de: "cart".into(),
8899 para: "catalog".into(),
8900 wit: "wasi:keyvalue/store".into(),
8901 endpoint: None,
8902 subject: None,
8903 slot: Some(String::new()),
8904 });
8905 let err = s.validate().unwrap_err();
8906 assert!(
8907 matches!(err, AplicacaoError::ContratoSlotEmpty { ref de, ref para }
8908 if de == "cart" && para == "catalog"),
8909 "got {err:?}"
8910 );
8911 }
8912
8913 #[test]
8914 fn http_contrato_root_endpoint_validates() {
8915 // Pin the boundary case: a single-`/` endpoint is the catch-all
8916 // form the Gateway HTTPRoute renderer falls back to when
8917 // :entrada :paths is empty (caixa-mesh::gateway_routes), so it
8918 // must remain a valid contrato endpoint too.
8919 let mut s = three_member_spec();
8920 s.contratos.push(contract_http("cart", "catalog", "/"));
8921 s.validate().unwrap();
8922 }
8923
8924 // ── :contratos :endpoint value-shape gate ────────────────────────────
8925 //
8926 // Mirrors the `:entrada :paths` value-shape suite on the peer
8927 // HTTP-path axis. Until this gate landed `WitContract::target()`
8928 // only refused the empty string + the missing-leading-`/` form
8929 // (c4213a4); a structurally invalid endpoint passed validate and
8930 // landed verbatim as a Cilium L7 `path:` rule
8931 // (caixa-mesh/src/lib.rs:311) that either silently dropped all
8932 // traffic or was rejected at apply time by Cilium policy admission.
8933 // Every authoring footgun the K8s Gateway API webhook / Cilium
8934 // policy validator would catch on admission now becomes a caixa-
8935 // build-time `ContratoEndpointInvalid` with the offending
8936 // `:endpoint` + `:de` + `:para` named verbatim. Same diagnostic
8937 // shape as `EntradaPathInvalid` on the sibling axis; same shared
8938 // predicate (`crate::render::is_gateway_api_http_path`) ensures
8939 // drift between the two axes' rule enforcement is a build error
8940 // at the predicate.
8941
8942 fn contrato_endpoint_err(ep: &str) -> AplicacaoError {
8943 // Fresh spec per call so the would-be-duplicate edge
8944 // `(cart, catalog, wasi:http/proxy, ep)` doesn't collide with
8945 // `three_member_spec`'s pre-existing
8946 // `(cart, catalog, …, /products/:id)` entry — only the
8947 // endpoint payload differs.
8948 let mut s = three_member_spec();
8949 s.contratos.push(contract_http("cart", "catalog", ep));
8950 s.validate().unwrap_err()
8951 }
8952
8953 #[test]
8954 fn rejects_http_contrato_endpoint_with_query() {
8955 // Fail-before-pass-after pin — pre-gate the `?token=X` suffix
8956 // silently rendered as a Cilium L7 `path: "/charge?token=X"`
8957 // rule the L7 matcher would never satisfy.
8958 let err = contrato_endpoint_err("/charge?token=X");
8959 assert!(
8960 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
8961 if endpoint == "/charge?token=X" && reason.contains("must not contain `?`")),
8962 "got {err:?}"
8963 );
8964 }
8965
8966 #[test]
8967 fn rejects_http_contrato_endpoint_with_fragment() {
8968 let err = contrato_endpoint_err("/charge#frag");
8969 assert!(
8970 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
8971 if endpoint == "/charge#frag" && reason.contains("must not contain `#`")),
8972 "got {err:?}"
8973 );
8974 }
8975
8976 #[test]
8977 fn rejects_http_contrato_endpoint_with_whitespace() {
8978 let err = contrato_endpoint_err("/foo bar");
8979 assert!(
8980 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
8981 if endpoint == "/foo bar" && reason.contains("whitespace")),
8982 "got {err:?}"
8983 );
8984 }
8985
8986 #[test]
8987 fn rejects_http_contrato_endpoint_with_control_char() {
8988 let err = contrato_endpoint_err("/api/\x01bar");
8989 assert!(
8990 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
8991 if endpoint == "/api/\x01bar" && reason.contains("control character")),
8992 "got {err:?}"
8993 );
8994 }
8995
8996 #[test]
8997 fn rejects_http_contrato_endpoint_with_non_ascii() {
8998 let err = contrato_endpoint_err("/api/café");
8999 assert!(
9000 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
9001 if endpoint == "/api/café" && reason.contains("non-ASCII")),
9002 "got {err:?}"
9003 );
9004 }
9005
9006 #[test]
9007 fn rejects_http_contrato_endpoint_with_consecutive_slashes() {
9008 let err = contrato_endpoint_err("/api//cart");
9009 assert!(
9010 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
9011 if endpoint == "/api//cart" && reason.contains("consecutive `/`")),
9012 "got {err:?}"
9013 );
9014 }
9015
9016 #[test]
9017 fn rejects_http_contrato_endpoint_with_dot_segment() {
9018 let err = contrato_endpoint_err("/api/./cart");
9019 assert!(
9020 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
9021 if endpoint == "/api/./cart" && reason.contains("`.` segment")),
9022 "got {err:?}"
9023 );
9024 }
9025
9026 #[test]
9027 fn rejects_http_contrato_endpoint_with_parent_segment() {
9028 // Path-traversal in a contrato endpoint is the canonical
9029 // "L7 rule that the workload's HTTP server's path-resolution
9030 // logic interprets differently than the policy enforcer"
9031 // footgun. Rejected outright at validate time.
9032 let err = contrato_endpoint_err("/api/../etc");
9033 assert!(
9034 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
9035 if endpoint == "/api/../etc" && reason.contains("`..` parent-segment")),
9036 "got {err:?}"
9037 );
9038 }
9039
9040 #[test]
9041 fn rejects_http_contrato_endpoint_too_long() {
9042 // 1025-byte endpoint — one over the Gateway API
9043 // HTTPPathMatch.value `maxLength: 1024` cap. The Cilium L7
9044 // path matcher has no inherent length limit but the policy
9045 // CR itself rides through the K8s apiserver, which enforces
9046 // ConfigMap-shaped limits; sharing the Gateway API cap is the
9047 // conservative floor.
9048 let big = format!("/api/{}", "a".repeat(1020));
9049 assert_eq!(big.len(), 1025);
9050 let err = contrato_endpoint_err(&big);
9051 assert!(
9052 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
9053 if endpoint == &big && reason.contains("max length of 1024")),
9054 "got {err:?}"
9055 );
9056 }
9057
9058 #[test]
9059 fn http_contrato_endpoint_max_length_validates() {
9060 // 1024-byte endpoint — exactly the cap. Boundary pin: drift
9061 // in the cap surfaces here and at
9062 // `rejects_http_contrato_endpoint_too_long` simultaneously,
9063 // mirroring `entrada_path_max_length_validates` on the peer
9064 // axis.
9065 let big = format!("/api/{}", "a".repeat(1019));
9066 assert_eq!(big.len(), 1024);
9067 let mut s = three_member_spec();
9068 s.contratos.push(contract_http("cart", "catalog", &big));
9069 s.validate().unwrap();
9070 }
9071
9072 #[test]
9073 fn http_contrato_endpoint_accepts_canonical_forms() {
9074 // Positive-set sweep: every canonical HTTP-path shape the
9075 // sibling `:entrada :paths` axis accepts (the bare-root `/`,
9076 // plain paths, hidden-file-style `.config` segments distinct
9077 // from the `.` segment, digit-bearing segments, the canonical
9078 // route-template `:param` form, trailing-slash form,
9079 // percent-encoded segments, the `/foo..bar` interior-`..`-
9080 // substring forms that are NOT `..` segments) must remain a
9081 // valid contrato endpoint too. Drift between this list and
9082 // the entrada path positive sweep surfaces at the shared
9083 // `is_gateway_api_http_path` substrate-side suite — one
9084 // source of truth. Uses a fresh `(payment, catalog)` edge so
9085 // none of the swept endpoints collide with the pre-existing
9086 // `(cart, catalog, /products/:id)` / `(cart, payment,
9087 // /charge)` entries in `three_member_spec`.
9088 for ep in [
9089 "/",
9090 "/charge",
9091 "/v1/charge",
9092 "/api/.config",
9093 "/products/:id",
9094 "/api/cart/",
9095 "/api/caf%C3%A9",
9096 "/foo..bar",
9097 "/...",
9098 ] {
9099 let mut s = three_member_spec();
9100 s.contratos.push(contract_http("payment", "catalog", ep));
9101 s.validate()
9102 .unwrap_or_else(|e| panic!("expected {ep:?} to validate, got {e:?}"));
9103 }
9104 }
9105
9106 #[test]
9107 fn contrato_endpoint_empty_takes_precedence_over_invalid() {
9108 // Ordering pin: `ContratoEndpointEmpty` is the more self-
9109 // locating diagnostic on `""` and must lead — the value-
9110 // shape gate is only reached after the empty-check fires.
9111 // Mirrors `entrada_path_empty_takes_precedence_over_invalid`
9112 // on the peer axis.
9113 let mut s = three_member_spec();
9114 s.contratos.push(WitContract {
9115 de: "cart".into(),
9116 para: "catalog".into(),
9117 wit: "wasi:http/proxy".into(),
9118 endpoint: Some(String::new()),
9119 subject: None,
9120 slot: None,
9121 });
9122 let err = s.validate().unwrap_err();
9123 assert!(
9124 matches!(err, AplicacaoError::ContratoEndpointEmpty { .. }),
9125 "got {err:?}"
9126 );
9127 }
9128
9129 #[test]
9130 fn contrato_endpoint_not_absolute_takes_precedence_over_invalid() {
9131 // Ordering pin: an endpoint without a leading `/` surfaces the
9132 // narrower `ContratoEndpointNotAbsolute` diagnostic first; the
9133 // value-shape gate is only consulted on endpoints that already
9134 // satisfy the absolute-prefix invariant. Mirrors
9135 // `entrada_path_not_absolute_takes_precedence_over_invalid`.
9136 let err = contrato_endpoint_err("bad path");
9137 assert!(
9138 matches!(err, AplicacaoError::ContratoEndpointNotAbsolute { ref endpoint, .. }
9139 if endpoint == "bad path"),
9140 "got {err:?}"
9141 );
9142 }
9143
9144 #[test]
9145 fn contrato_endpoint_invalid_diagnostic_carries_offending_endpoint() {
9146 // Diagnostic-shape pin — the offending `:endpoint` + `:de` +
9147 // `:para` + a non-empty reason flow through verbatim so the
9148 // author can grep their caixa.lisp for the offending contrato
9149 // block and fix it in one edit. Same shape as
9150 // `entrada_path_diagnostic_carries_offending_path`.
9151 let err = contrato_endpoint_err("/api?q=1");
9152 match err {
9153 AplicacaoError::ContratoEndpointInvalid {
9154 de,
9155 para,
9156 endpoint,
9157 reason,
9158 } => {
9159 assert_eq!(de, "cart");
9160 assert_eq!(para, "catalog");
9161 assert_eq!(endpoint, "/api?q=1");
9162 assert!(!reason.is_empty(), "reason field must be non-empty");
9163 }
9164 other => panic!("expected ContratoEndpointInvalid, got {other:?}"),
9165 }
9166 }
9167
9168 #[test]
9169 fn target_view_payload_is_guaranteed_nonempty_after_target_call() {
9170 // The compounding theorem: every &str inside a WitTarget
9171 // returned by target() is non-empty (and absolute, for Http).
9172 // Renderers downstream of typed_view() can rely on this
9173 // without re-checking — the type system carries the proof.
9174 let http = contract_http("cart", "catalog", "/x");
9175 match http.target().unwrap() {
9176 WitTarget::Http { endpoint } => {
9177 assert!(!endpoint.is_empty());
9178 assert!(endpoint.starts_with('/'));
9179 }
9180 other => panic!("expected Http, got {other:?}"),
9181 }
9182 let nats = WitContract {
9183 de: "a".into(),
9184 para: "b".into(),
9185 wit: "nats:pub-sub".into(),
9186 endpoint: None,
9187 subject: Some("topic.x".into()),
9188 slot: None,
9189 };
9190 match nats.target().unwrap() {
9191 WitTarget::PubSub { subject } => assert!(!subject.is_empty()),
9192 other => panic!("expected PubSub, got {other:?}"),
9193 }
9194 let kv = WitContract {
9195 de: "a".into(),
9196 para: "b".into(),
9197 wit: "wasi:keyvalue/store".into(),
9198 endpoint: None,
9199 subject: None,
9200 slot: Some("checkout/$orderId".into()),
9201 };
9202 match kv.target().unwrap() {
9203 WitTarget::Store { slot } => assert!(!slot.is_empty()),
9204 other => panic!("expected Store, got {other:?}"),
9205 }
9206 }
9207
9208 #[test]
9209 fn target_diagnostic_names_offending_endpoint_value() {
9210 // When the malformed endpoint string is non-trivial, the
9211 // diagnostic carries the actual value back to the author —
9212 // not a generic "endpoint malformed" error.
9213 let bad = WitContract {
9214 de: "src".into(),
9215 para: "dst".into(),
9216 wit: "wasi:http/proxy".into(),
9217 endpoint: Some("api/v1/charge".into()),
9218 subject: None,
9219 slot: None,
9220 };
9221 match bad.target().unwrap_err() {
9222 AplicacaoError::ContratoEndpointNotAbsolute { de, para, endpoint } => {
9223 assert_eq!(de, "src");
9224 assert_eq!(para, "dst");
9225 assert_eq!(endpoint, "api/v1/charge");
9226 }
9227 other => panic!("expected ContratoEndpointNotAbsolute, got {other:?}"),
9228 }
9229 }
9230
9231 #[test]
9232 fn rejects_unknown_wit_with_target_set() {
9233 let mut s = three_member_spec();
9234 s.contratos.push(WitContract {
9235 de: "cart".into(),
9236 para: "catalog".into(),
9237 wit: "custom:exchange".into(),
9238 endpoint: Some("/leaked".into()),
9239 subject: None,
9240 slot: None,
9241 });
9242 let err = s.validate().unwrap_err();
9243 assert!(matches!(
9244 err,
9245 AplicacaoError::ContratoWrongTarget {
9246 expected: WitTarget::CAPABILITY_EXPECTED,
9247 ..
9248 }
9249 ));
9250 }
9251
9252 #[test]
9253 fn wit_target_capability_expected_pins_wrong_target_diagnostic_scalar() {
9254 // Pin the Capability-arm `ContratoWrongTarget::expected` scalar
9255 // single-sourced onto [`WitTarget::CAPABILITY_EXPECTED`] — the
9256 // fourth arm of the same "which payload field name goes in the
9257 // diagnostic" dispatch the payload-arm [`WitTarget::HTTP_FIELD_NAME`]
9258 // / [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`]
9259 // consts cover on the peer HTTP / PubSub / Store arms
9260 // (`wit_target_field_name_pins_per_variant`). Until this lift
9261 // landed the byte-string sat twice — once inline in the
9262 // [`WitContract::target`] Capability-arm rejection at the
9263 // production dispatch, once in `rejects_unknown_wit_with_target_set`
9264 // pinning against the same literal — with no compile-time link
9265 // between them. Same "one canonical declaration, next to the
9266 // variant" trajectory the peer [`WitTarget::CAPABILITY_LABEL`]
9267 // lift established for the payload-less arm's human-readable
9268 // label axis; this test is the shape peer of
9269 // `wit_target_label_pins_per_variant`'s Capability-arm assertion
9270 // pair (routes-through-const + scalar-value pin) on the
9271 // wrong-target diagnostic-scalar axis.
9272 //
9273 // Fail-before-pass-after was verified locally by mutating the
9274 // const declaration to `"capability"` — the scalar-value pin
9275 // below fires (`"capability" != "none"`) and the routes-through
9276 // assertion below still holds (production and const walk in
9277 // lockstep), which is the correct behavior: a rename on the
9278 // const drifts here first, not at a downstream consumer.
9279 assert_eq!(WitTarget::CAPABILITY_EXPECTED, "none");
9280
9281 let mut s = three_member_spec();
9282 s.contratos.push(WitContract {
9283 de: "cart".into(),
9284 para: "catalog".into(),
9285 wit: "custom:exchange".into(),
9286 endpoint: Some("/leaked".into()),
9287 subject: None,
9288 slot: None,
9289 });
9290 match s.validate().unwrap_err() {
9291 AplicacaoError::ContratoWrongTarget { expected, .. } => {
9292 assert_eq!(expected, WitTarget::CAPABILITY_EXPECTED);
9293 }
9294 other => panic!("expected ContratoWrongTarget, got {other:?}"),
9295 }
9296 }
9297
9298 #[test]
9299 fn unknown_wit_capability_only_validates() {
9300 let mut s = three_member_spec();
9301 s.contratos.push(WitContract {
9302 de: "cart".into(),
9303 para: "catalog".into(),
9304 // A WIT world we haven't yet shaped — accept it as a typed
9305 // capability edge so authors aren't blocked while the WIT
9306 // registry catches up. No payload field may be carried.
9307 wit: "custom:exchange".into(),
9308 endpoint: None,
9309 subject: None,
9310 slot: None,
9311 });
9312 s.validate().unwrap();
9313 let added = s.contratos.last().unwrap();
9314 assert_eq!(added.target().unwrap(), WitTarget::Capability);
9315 }
9316
9317 #[test]
9318 fn target_typed_view_round_trips_each_shape() {
9319 let http = contract_http("cart", "catalog", "/products/:id");
9320 assert_eq!(
9321 http.target().unwrap(),
9322 WitTarget::Http {
9323 endpoint: "/products/:id"
9324 }
9325 );
9326 let nats = WitContract {
9327 de: "a".into(),
9328 para: "b".into(),
9329 wit: "nats:pub-sub".into(),
9330 endpoint: None,
9331 subject: Some("topic.x".into()),
9332 slot: None,
9333 };
9334 assert_eq!(
9335 nats.target().unwrap(),
9336 WitTarget::PubSub { subject: "topic.x" }
9337 );
9338 let kv = WitContract {
9339 de: "a".into(),
9340 para: "b".into(),
9341 wit: "wasi:keyvalue/store".into(),
9342 endpoint: None,
9343 subject: None,
9344 slot: Some("checkout/$orderId".into()),
9345 };
9346 assert_eq!(
9347 kv.target().unwrap(),
9348 WitTarget::Store {
9349 slot: "checkout/$orderId"
9350 }
9351 );
9352 }
9353
9354 #[test]
9355 fn wit_contract_kind_predicates() {
9356 let http = contract_http("a", "b", "/x");
9357 assert!(http.is_http());
9358 assert!(!http.is_pubsub());
9359 assert!(!http.is_store());
9360
9361 let nats = WitContract {
9362 de: "a".into(),
9363 para: "b".into(),
9364 wit: "nats:pub-sub".into(),
9365 endpoint: None,
9366 subject: Some("topic.x".into()),
9367 slot: None,
9368 };
9369 assert!(nats.is_pubsub());
9370 assert!(!nats.is_http());
9371
9372 let kv = WitContract {
9373 de: "a".into(),
9374 para: "b".into(),
9375 wit: "wasi:keyvalue/store".into(),
9376 endpoint: None,
9377 subject: None,
9378 slot: Some("checkout/$orderId".into()),
9379 };
9380 assert!(kv.is_store());
9381 assert!(!kv.is_http());
9382 }
9383
9384 // ── :contratos :wit value-shape gate ─────────────────────────────────
9385 //
9386 // Mirrors the `:contratos :endpoint` value-shape suite on the peer
9387 // dispatch-discriminator axis. Until this gate landed
9388 // `WitContract::target()` accepted any non-empty string and
9389 // silently demoted unrecognized shapes to a capability-only L4
9390 // edge — the canonical "I thought I had L7 HTTP routing, got
9391 // L4-only" footgun. Every authoring footgun the WIT registry's
9392 // own grammar rejects (uppercase, hyphen-for-colon typo,
9393 // whitespace, empty package, doubled `@`, …) now becomes a
9394 // caixa-build-time `ContratoWitInvalid` with the offending
9395 // `:wit` + `:de` + `:para` named verbatim. Same diagnostic shape
9396 // as `ContratoEndpointInvalid` on the sibling axis; same shared
9397 // predicate (`crate::render::is_wit_world_ref`) ensures drift
9398 // between any two axes' rule enforcement is a build error at the
9399 // predicate, not piecemeal across renderers.
9400
9401 fn contrato_wit_err(wit: &str) -> AplicacaoError {
9402 // Fresh spec per call so the new contract doesn't collide on
9403 // identity with `three_member_spec`'s pre-existing entries.
9404 // The new edge uses `(payment, catalog)` — a pair the fixture
9405 // doesn't already declare — with no payload field set, so the
9406 // wit-shape gate fires before any payload-shape arm.
9407 let mut s = three_member_spec();
9408 s.contratos.push(WitContract {
9409 de: "payment".into(),
9410 para: "catalog".into(),
9411 wit: wit.into(),
9412 endpoint: None,
9413 subject: None,
9414 slot: None,
9415 });
9416 s.validate().unwrap_err()
9417 }
9418
9419 #[test]
9420 fn rejects_wit_with_uppercase_namespace() {
9421 // Fail-before-pass-after pin — pre-gate `:wit "WASI:http/proxy"`
9422 // didn't match the lowercase `wasi:http/` prefix is_http() keys
9423 // off, so the dispatch fell through to the capability arm and
9424 // the contract silently rendered as an L4-only Cilium edge.
9425 // The new gate surfaces the uppercase typo at validate time
9426 // with the offending `:wit` named.
9427 let err = contrato_wit_err("WASI:http/proxy");
9428 assert!(
9429 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9430 if wit == "WASI:http/proxy" && reason.contains("lowercase")),
9431 "got {err:?}"
9432 );
9433 }
9434
9435 #[test]
9436 fn rejects_wit_with_hyphen_for_colon_typo() {
9437 // The canonical "I forgot the `:` separator" typo — pre-gate
9438 // this passed as Capability silently, so the renderer emitted
9439 // an L4-only policy where the author expected L7 HTTP rules.
9440 let err = contrato_wit_err("wasi-http/proxy");
9441 assert!(
9442 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9443 if wit == "wasi-http/proxy" && reason.contains("must contain a `:`")),
9444 "got {err:?}"
9445 );
9446 }
9447
9448 #[test]
9449 fn rejects_wit_with_multiple_colons() {
9450 // Doubled `:` — the namespace/package split has nowhere to
9451 // anchor, so the dispatch silently demotes to Capability.
9452 let err = contrato_wit_err("wasi:http:proxy");
9453 assert!(
9454 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9455 if wit == "wasi:http:proxy" && reason.contains("exactly one `:`")),
9456 "got {err:?}"
9457 );
9458 }
9459
9460 #[test]
9461 fn rejects_wit_with_empty_package() {
9462 // `wasi:` — namespace alone with no package. Pre-gate this
9463 // failed neither the is_http nor is_pubsub nor is_store
9464 // prefix check (none of `wasi:http/`, `wasi:keyvalue/` match
9465 // a bare `wasi:`), so it silently demoted to Capability.
9466 let err = contrato_wit_err("wasi:");
9467 assert!(
9468 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9469 if wit == "wasi:" && reason.contains("package") && reason.contains("must not be empty")),
9470 "got {err:?}"
9471 );
9472 }
9473
9474 #[test]
9475 fn rejects_wit_with_underscore() {
9476 // Underscore — WIT identifiers are kebab-case, same rule
9477 // DNS-1123 enforces on its peer axes. The diagnostic carries
9478 // the explicit "use `-` instead" remediation.
9479 let err = contrato_wit_err("wasi:http_proxy");
9480 assert!(
9481 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9482 if wit == "wasi:http_proxy" && reason.contains('_')),
9483 "got {err:?}"
9484 );
9485 }
9486
9487 #[test]
9488 fn rejects_wit_with_whitespace() {
9489 // Whitespace mid-token — the prefix check matches but the
9490 // package-and-onward parse silently demoted to Capability.
9491 let err = contrato_wit_err("wasi:http proxy");
9492 assert!(
9493 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9494 if wit == "wasi:http proxy" && reason.contains("whitespace")),
9495 "got {err:?}"
9496 );
9497 }
9498
9499 #[test]
9500 fn rejects_wit_with_non_ascii() {
9501 // Un-percent-encoded non-ASCII byte — the canonical "I copied
9502 // the package name from a doc with smart quotes / accented
9503 // characters" footgun.
9504 let err = contrato_wit_err("wasi:caf\u{e9}/proxy");
9505 assert!(
9506 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9507 if wit == "wasi:caf\u{e9}/proxy" && reason.contains("non-ASCII")),
9508 "got {err:?}"
9509 );
9510 }
9511
9512 #[test]
9513 fn rejects_wit_with_consecutive_hyphens() {
9514 // `pub--sub` — WIT identifiers join words with single hyphens.
9515 let err = contrato_wit_err("nats:pub--sub");
9516 assert!(
9517 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9518 if wit == "nats:pub--sub" && reason.contains("consecutive `-`")),
9519 "got {err:?}"
9520 );
9521 }
9522
9523 #[test]
9524 fn rejects_wit_with_trailing_at_no_version() {
9525 // `wasi:http/proxy@` — the version-suffix author started to
9526 // type `@0.2.0` and stopped, leaving a stray `@`. The WIT
9527 // parser would reject this; surface it at validate time.
9528 let err = contrato_wit_err("wasi:http/proxy@");
9529 assert!(
9530 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9531 if wit == "wasi:http/proxy@" && reason.contains("trailing `@`")),
9532 "got {err:?}"
9533 );
9534 }
9535
9536 #[test]
9537 fn rejects_wit_too_long() {
9538 // 129-byte WIT reference — one over the WIT_IDENT_MAX_LEN cap.
9539 // The legitimate-shape arms all pass (lowercase, single `:`,
9540 // kebab-case identifiers); only the cap arm fires. Surfaces
9541 // the paste-from-binary / accidental-multi-line-blob landing
9542 // footgun. Mirrors `rejects_http_contrato_endpoint_too_long`
9543 // on the peer axis.
9544 let big = format!("wasi:{}", "a".repeat(124));
9545 assert_eq!(big.len(), 129);
9546 let err = contrato_wit_err(&big);
9547 assert!(
9548 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, ref reason, .. }
9549 if wit == &big && reason.contains("max length of 128")),
9550 "got {err:?}"
9551 );
9552 }
9553
9554 #[test]
9555 fn wit_max_length_validates() {
9556 // 128-byte WIT reference — exactly the cap. Boundary pin:
9557 // drift in the cap surfaces here and at `rejects_wit_too_long`
9558 // simultaneously, mirroring
9559 // `http_contrato_endpoint_max_length_validates` on the peer
9560 // axis.
9561 let big = format!("wasi:{}", "a".repeat(123));
9562 assert_eq!(big.len(), 128);
9563 let mut s = three_member_spec();
9564 s.contratos.push(WitContract {
9565 de: "payment".into(),
9566 para: "catalog".into(),
9567 wit: big,
9568 endpoint: None,
9569 subject: None,
9570 slot: None,
9571 });
9572 s.validate().unwrap();
9573 }
9574
9575 #[test]
9576 fn wit_accepts_canonical_forms_at_aplicacao_layer() {
9577 // Positive-set sweep through the AplicacaoSpec::validate
9578 // surface (rather than the substrate-side predicate directly)
9579 // — pins every shape the existing test fixtures + the
9580 // checkout-aplicacao example carry, so the gate's accept-set
9581 // matches the substrate's emit-set. Drift between this list
9582 // and `render::tests::wit_world_ref_accepts_canonical_forms`
9583 // surfaces at the substrate layer's positive sweep — one
9584 // source of truth for the rule.
9585 for wit in [
9586 "wasi:http/proxy",
9587 "wasi:keyvalue/store",
9588 "nats:pub-sub",
9589 "kafka:topic",
9590 "custom:exchange",
9591 "pleme:cap/audit",
9592 "wasi:http/proxy@0.2.0",
9593 ] {
9594 // Payload field paired to the dispatched WIT shape so the
9595 // shape-↔-target arm doesn't fire instead of the wit-shape
9596 // arm we're exercising. Routes off the same
9597 // `wit_shape_is_http` / `wit_shape_is_pubsub` /
9598 // `wit_shape_is_store` free functions the production
9599 // `WitContract::is_http` / `is_pubsub` / `is_store`
9600 // methods delegate to (both consult the lifted
9601 // `WIT_HTTP_SHAPE_PREFIXES` / `WIT_PUBSUB_SHAPE_PREFIXES`
9602 // / `WIT_STORE_SHAPE_PREFIXES` prefix sets), so any
9603 // future prefix addition to the routing accept-set
9604 // reaches this test's payload-dispatch arm by
9605 // construction — no per-test-site drift can hide a
9606 // shape-→-target-slot mismatch that would silently
9607 // demote a canonical `:wit` value to the
9608 // `(None, None, None)` capability-only arm and let the
9609 // `AplicacaoSpec::validate` positive sweep pass on a
9610 // shape it should exercise as HTTP / pub-sub / store.
9611 let (endpoint, subject, slot) = if wit_shape_is_http(wit) {
9612 (Some("/x".into()), None, None)
9613 } else if wit_shape_is_pubsub(wit) {
9614 (None, Some("topic.x".into()), None)
9615 } else if wit_shape_is_store(wit) {
9616 (None, None, Some("bucket/$key".into()))
9617 } else {
9618 (None, None, None)
9619 };
9620 let mut s = three_member_spec();
9621 s.contratos.push(WitContract {
9622 de: "payment".into(),
9623 para: "catalog".into(),
9624 wit: wit.into(),
9625 endpoint,
9626 subject,
9627 slot,
9628 });
9629 s.validate()
9630 .unwrap_or_else(|e| panic!("canonical WIT {wit:?} must validate, got {e:?}"));
9631 }
9632 }
9633
9634 #[test]
9635 fn wit_shape_predicates_accept_canonical_prefix_set() {
9636 // Positive-set sweep pinning every prefix in
9637 // WIT_HTTP_SHAPE_PREFIXES / WIT_PUBSUB_SHAPE_PREFIXES /
9638 // WIT_STORE_SHAPE_PREFIXES against the three free-function
9639 // dispatch predicates. The six prefixes are the load-bearing
9640 // routing keys the substrate's WIT-shape dispatch consults
9641 // (L7-HTTP-vs-L4, pub-sub-cycle exclusion,
9642 // key/value-store-slot admission); any drift between the
9643 // free-function accept-set and this list surfaces here
9644 // rather than at apply time as a silent
9645 // shape-→-capability-only demotion.
9646 assert!(wit_shape_is_http("wasi:http/proxy"));
9647 assert!(wit_shape_is_http("wasi:http/proxy@0.2.0"));
9648 assert!(wit_shape_is_http("http:incoming"));
9649
9650 assert!(wit_shape_is_pubsub("nats:pub-sub"));
9651 assert!(wit_shape_is_pubsub("kafka:topic"));
9652
9653 assert!(wit_shape_is_store("wasi:keyvalue/store"));
9654 assert!(wit_shape_is_store("kv:cache/session"));
9655 }
9656
9657 #[test]
9658 fn wit_shape_predicates_reject_uncanonical_forms() {
9659 // Negative-set pin: the six canonical prefixes are
9660 // lowercase-only (mirrors the `is_wit_world_ref` substrate
9661 // predicate's lowercase invariant — see its docstring on the
9662 // "I thought I had L7 HTTP routing, got L4-only" footgun).
9663 // The empty string, an uppercase-prefixed form, a hyphen-
9664 // instead-of-colon typo, and a bare kebab identifier all miss
9665 // every shape arm — reachable-by-construction only via the
9666 // `is_wit_world_ref` gate that admission-checks the `:wit`
9667 // value first, but pinned here so any future
9668 // free-function change (e.g. a case-insensitive
9669 // `wit.to_ascii_lowercase().starts_with(p)` slip) surfaces at
9670 // this unit level.
9671 for wit in ["", "WASI:HTTP/proxy", "wasi-http/proxy", "custom-shape"] {
9672 assert!(!wit_shape_is_http(wit), "{wit:?} must not be HTTP");
9673 assert!(!wit_shape_is_pubsub(wit), "{wit:?} must not be pubsub");
9674 assert!(!wit_shape_is_store(wit), "{wit:?} must not be store");
9675 }
9676 }
9677
9678 #[test]
9679 fn wit_shape_predicates_partition_canonical_set() {
9680 // Every canonical prefix routes to exactly one shape arm —
9681 // the three prefix sets are pairwise disjoint. Pins the
9682 // routing property [`WitContract::target`] relies on: an
9683 // `is_http()` return of `true` guarantees `is_pubsub()` and
9684 // `is_store()` return `false`, so the shape-→-target-slot
9685 // dispatch (endpoint vs subject vs slot) is unambiguous.
9686 // Drift (e.g. a future `"kv:"` moved into the HTTP set
9687 // without removal from the store set) would silently route
9688 // one prefix to two arms and the first-matching-arm order
9689 // becomes load-bearing — this pin surfaces it as a build
9690 // error instead.
9691 for prefix in WIT_HTTP_SHAPE_PREFIXES {
9692 let sample = format!("{prefix}x");
9693 assert!(wit_shape_is_http(&sample));
9694 assert!(!wit_shape_is_pubsub(&sample));
9695 assert!(!wit_shape_is_store(&sample));
9696 }
9697 for prefix in WIT_PUBSUB_SHAPE_PREFIXES {
9698 let sample = format!("{prefix}x");
9699 assert!(!wit_shape_is_http(&sample));
9700 assert!(wit_shape_is_pubsub(&sample));
9701 assert!(!wit_shape_is_store(&sample));
9702 }
9703 for prefix in WIT_STORE_SHAPE_PREFIXES {
9704 let sample = format!("{prefix}x");
9705 assert!(!wit_shape_is_http(&sample));
9706 assert!(!wit_shape_is_pubsub(&sample));
9707 assert!(wit_shape_is_store(&sample));
9708 }
9709 }
9710
9711 #[test]
9712 fn wit_shape_matches_scans_prefix_set_with_starts_with_semantics() {
9713 // Positive pin: [`wit_shape_matches`] is exactly the
9714 // `PREFIXES.iter().any(|p| wit.starts_with(p))` combinator,
9715 // parameterized on the accept-set. Two-prefix accept-set,
9716 // one-prefix accept-set, and empty accept-set (which must
9717 // reject everything, including the empty string — an empty
9718 // `any()` fold returns `false`) all pinned so a future
9719 // reimplementation that swaps `starts_with` for `contains`,
9720 // `==`, or a case-folded comparator surfaces at unit-test
9721 // time.
9722 let two = &["wasi:http/", "http:"];
9723 assert!(wit_shape_matches("wasi:http/proxy", two));
9724 assert!(wit_shape_matches("http:incoming", two));
9725 assert!(!wit_shape_matches("wasi:keyvalue/store", two));
9726
9727 let one = &["nats:"];
9728 assert!(wit_shape_matches("nats:pub-sub", one));
9729 assert!(!wit_shape_matches("kafka:topic", one));
9730
9731 // Empty accept-set matches nothing — the identity element
9732 // for the disjunctive `any()` fold across the prefix set.
9733 // Reachable via a future `wit_shape_is_<name>` const paired
9734 // to a still-empty prefix table on a nascent shape-arm draft.
9735 let empty: &[&str] = &[];
9736 assert!(!wit_shape_matches("wasi:http/proxy", empty));
9737 assert!(!wit_shape_matches("", empty));
9738
9739 // starts_with, not contains: a prefix embedded mid-string
9740 // never matches. Pins the routing invariant [`WitContract::target`]
9741 // relies on (an authored `:wit "custom:wasi:http/"` string
9742 // does not silently route through the HTTP arm just because
9743 // it happens to contain the canonical HTTP prefix).
9744 assert!(!wit_shape_matches("custom:wasi:http/proxy", two));
9745 }
9746
9747 #[test]
9748 fn wit_shape_predicates_delegate_to_wit_shape_matches() {
9749 // Equivalence pin: each per-shape predicate is exactly
9750 // `wit_shape_matches(wit, WIT_<SHAPE>_SHAPE_PREFIXES)`. Sweeps
9751 // every canonical prefix + the empty string + one negative
9752 // sample against every peer so a future predicate that grew
9753 // its own inline `iter().any(starts_with)` (rather than
9754 // delegating through the lifted combinator) drifts loudly here
9755 // — the peer-const table's contents must agree with the
9756 // predicate's accept-set by construction.
9757 let samples = [
9758 String::new(),
9759 "wasi:http/proxy".to_string(),
9760 "http:incoming".to_string(),
9761 "nats:pub-sub".to_string(),
9762 "kafka:topic".to_string(),
9763 "wasi:keyvalue/store".to_string(),
9764 "kv:cache/session".to_string(),
9765 "custom-shape".to_string(),
9766 "WASI:HTTP/proxy".to_string(),
9767 ];
9768 for wit in &samples {
9769 assert_eq!(
9770 wit_shape_is_http(wit),
9771 wit_shape_matches(wit, WIT_HTTP_SHAPE_PREFIXES),
9772 "wit_shape_is_http drifted from combinator on {wit:?}",
9773 );
9774 assert_eq!(
9775 wit_shape_is_pubsub(wit),
9776 wit_shape_matches(wit, WIT_PUBSUB_SHAPE_PREFIXES),
9777 "wit_shape_is_pubsub drifted from combinator on {wit:?}",
9778 );
9779 assert_eq!(
9780 wit_shape_is_store(wit),
9781 wit_shape_matches(wit, WIT_STORE_SHAPE_PREFIXES),
9782 "wit_shape_is_store drifted from combinator on {wit:?}",
9783 );
9784 }
9785 }
9786
9787 #[test]
9788 fn wit_contract_shape_methods_delegate_to_free_functions() {
9789 // Equivalence pin: `WitContract::is_http` / `is_pubsub` /
9790 // `is_store` are `&self` conveniences on top of the free
9791 // functions — for every canonical prefix the method's return
9792 // matches its free-function peer. Sweeps the union of the
9793 // three prefix sets so a future method that grew its own
9794 // inline prefix logic (rather than delegating) drifts loudly
9795 // here on the first prefix the free function accepts and the
9796 // method doesn't.
9797 for shape_set in [
9798 WIT_HTTP_SHAPE_PREFIXES,
9799 WIT_PUBSUB_SHAPE_PREFIXES,
9800 WIT_STORE_SHAPE_PREFIXES,
9801 ] {
9802 for prefix in shape_set {
9803 let c = WitContract {
9804 de: "cart".into(),
9805 para: "catalog".into(),
9806 wit: format!("{prefix}x"),
9807 endpoint: None,
9808 subject: None,
9809 slot: None,
9810 };
9811 assert_eq!(c.is_http(), wit_shape_is_http(&c.wit));
9812 assert_eq!(c.is_pubsub(), wit_shape_is_pubsub(&c.wit));
9813 assert_eq!(c.is_store(), wit_shape_is_store(&c.wit));
9814 }
9815 }
9816 }
9817
9818 #[test]
9819 fn empty_wit_takes_precedence_over_invalid() {
9820 // Ordering pin: `EmptyWit` is the more self-locating
9821 // diagnostic on `""` and must lead — the value-shape gate is
9822 // only reached after the empty-check fires. Mirrors
9823 // `contrato_endpoint_empty_takes_precedence_over_invalid` on
9824 // the peer payload axis.
9825 let mut s = three_member_spec();
9826 s.contratos.push(WitContract {
9827 de: "payment".into(),
9828 para: "catalog".into(),
9829 wit: String::new(),
9830 endpoint: None,
9831 subject: None,
9832 slot: None,
9833 });
9834 let err = s.validate().unwrap_err();
9835 assert!(
9836 matches!(err, AplicacaoError::EmptyWit { .. }),
9837 "got {err:?}"
9838 );
9839 }
9840
9841 #[test]
9842 fn wit_invalid_fires_before_payload_shape_arm() {
9843 // Ordering pin: a malformed `:wit` surfaces *its own*
9844 // diagnostic (which names the offending wit verbatim) before
9845 // any payload-field check — a contrato whose wit is
9846 // structurally invalid AND carries a wrong target field
9847 // returns `ContratoWitInvalid`, not `ContratoWrongTarget`,
9848 // because the dispatch on the wit is what decides which
9849 // payload field is "right" in the first place. Without this
9850 // ordering, the author would see "wrong target field" for a
9851 // wit that hasn't even been parsed, which doesn't name the
9852 // root cause.
9853 let mut s = three_member_spec();
9854 s.contratos.push(WitContract {
9855 de: "payment".into(),
9856 para: "catalog".into(),
9857 // Hyphen-for-colon typo + endpoint set: pre-gate this
9858 // raised `ContratoWrongTarget { expected: "none" }` (the
9859 // Capability arm rejecting the endpoint), masking the
9860 // real authoring mistake (the wit isn't `wasi:http/proxy`).
9861 wit: "wasi-http/proxy".into(),
9862 endpoint: Some("/x".into()),
9863 subject: None,
9864 slot: None,
9865 });
9866 let err = s.validate().unwrap_err();
9867 assert!(
9868 matches!(err, AplicacaoError::ContratoWitInvalid { ref wit, .. }
9869 if wit == "wasi-http/proxy"),
9870 "got {err:?}"
9871 );
9872 }
9873
9874 #[test]
9875 fn wit_invalid_diagnostic_carries_offending_wit() {
9876 // Diagnostic-shape pin — the offending `:wit` + `:de` +
9877 // `:para` + a non-empty reason flow through verbatim so the
9878 // author can grep their caixa.lisp for the offending contrato
9879 // block and fix it in one edit. Same shape as
9880 // `contrato_endpoint_invalid_diagnostic_carries_offending_endpoint`.
9881 let err = contrato_wit_err("WASI:HTTP/proxy");
9882 match err {
9883 AplicacaoError::ContratoWitInvalid {
9884 de,
9885 para,
9886 wit,
9887 reason,
9888 } => {
9889 assert_eq!(de, "payment");
9890 assert_eq!(para, "catalog");
9891 assert_eq!(wit, "WASI:HTTP/proxy");
9892 assert!(!reason.is_empty(), "reason field must be non-empty");
9893 }
9894 other => panic!("expected ContratoWitInvalid, got {other:?}"),
9895 }
9896 }
9897
9898 // ── :contratos :subject value-shape gate ─────────────────────────────
9899 //
9900 // Mirrors the `:contratos :endpoint` / `:contratos :wit` value-shape
9901 // suites on the peer payload axes. Until this gate landed
9902 // `WitContract::target()` only refused the empty string; a
9903 // structurally invalid subject silently passed validate and the
9904 // failure surfaced at runtime as a NATS server-side `-ERR 'Invalid
9905 // Subject'` on publish / subscribe, or as a silent message drop,
9906 // far from the source caixa.lisp. Every authoring footgun the
9907 // NATS server's subject parser would catch on admission now
9908 // becomes a caixa-build-time `ContratoSubjectInvalid` with the
9909 // offending `:subject` + `:de` + `:para` named verbatim. Same
9910 // diagnostic shape as `ContratoEndpointInvalid` /
9911 // `ContratoWitInvalid` on the peer payload axes; same shared
9912 // predicate (`crate::render::is_nats_subject`) ensures drift
9913 // between any two axes' rule enforcement is a build error at the
9914 // predicate, not piecemeal across renderers.
9915
9916 fn contrato_subject_err(subject: &str) -> AplicacaoError {
9917 // Fresh spec per call so the new contract doesn't collide on
9918 // identity with `three_member_spec`'s pre-existing entries.
9919 // The new edge uses `(payment, catalog)` — a pair the fixture
9920 // doesn't already declare — with `:wit "nats:pub-sub"` and the
9921 // varying `:subject`, so the subject-shape gate fires cleanly
9922 // after the wit-shape gate (which `"nats:pub-sub"` passes).
9923 let mut s = three_member_spec();
9924 s.contratos.push(WitContract {
9925 de: "payment".into(),
9926 para: "catalog".into(),
9927 wit: "nats:pub-sub".into(),
9928 endpoint: None,
9929 subject: Some(subject.into()),
9930 slot: None,
9931 });
9932 s.validate().unwrap_err()
9933 }
9934
9935 #[test]
9936 fn rejects_pubsub_contrato_subject_with_whitespace() {
9937 // Fail-before-pass-after pin — pre-gate `"foo bar"` silently
9938 // landed at the NATS server as a malformed subject the parser
9939 // rejects with `-ERR 'Invalid Subject'`. Now caught at the
9940 // source caixa.lisp.
9941 let err = contrato_subject_err("foo bar");
9942 assert!(
9943 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
9944 if subject == "foo bar" && reason.contains("whitespace")),
9945 "got {err:?}"
9946 );
9947 }
9948
9949 #[test]
9950 fn rejects_pubsub_contrato_subject_with_control_char() {
9951 let err = contrato_subject_err("foo\x01bar");
9952 assert!(
9953 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
9954 if subject == "foo\x01bar" && reason.contains("control character")),
9955 "got {err:?}"
9956 );
9957 }
9958
9959 #[test]
9960 fn rejects_pubsub_contrato_subject_with_non_ascii() {
9961 // Un-percent-encoded non-ASCII byte — the canonical "I copied
9962 // the subject from a doc with smart quotes / accented
9963 // characters" footgun.
9964 let err = contrato_subject_err("foo.caf\u{e9}");
9965 assert!(
9966 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
9967 if subject == "foo.caf\u{e9}" && reason.contains("non-ASCII")),
9968 "got {err:?}"
9969 );
9970 }
9971
9972 #[test]
9973 fn rejects_pubsub_contrato_subject_with_leading_dot() {
9974 // Empty leading token — NATS rejects.
9975 let err = contrato_subject_err(".foo");
9976 assert!(
9977 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
9978 if subject == ".foo" && reason.contains("must not start with `.`")),
9979 "got {err:?}"
9980 );
9981 }
9982
9983 #[test]
9984 fn rejects_pubsub_contrato_subject_with_trailing_dot() {
9985 // Empty trailing token — NATS rejects. The remediation
9986 // (use `>` instead) is in the reason string.
9987 let err = contrato_subject_err("foo.");
9988 assert!(
9989 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
9990 if subject == "foo." && reason.contains("must not end with `.`")),
9991 "got {err:?}"
9992 );
9993 }
9994
9995 #[test]
9996 fn rejects_pubsub_contrato_subject_with_consecutive_dots() {
9997 // The canonical "I forgot to fill in the middle segment"
9998 // typo — `"foo..bar"`. NATS rejects empty tokens.
9999 let err = contrato_subject_err("foo..bar");
10000 assert!(
10001 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
10002 if subject == "foo..bar" && reason.contains("consecutive `.`")),
10003 "got {err:?}"
10004 );
10005 }
10006
10007 #[test]
10008 fn rejects_pubsub_contrato_subject_with_non_trailing_multi_wildcard() {
10009 // `foo.>.bar` — `>` is the multi-token wildcard, only allowed
10010 // as the final segment. Pre-gate this passed as a typed edge
10011 // and surfaced at runtime as a NATS subscribe rejection.
10012 let err = contrato_subject_err("foo.>.bar");
10013 assert!(
10014 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
10015 if subject == "foo.>.bar" && reason.contains("only allowed as the final segment")),
10016 "got {err:?}"
10017 );
10018 }
10019
10020 #[test]
10021 fn rejects_pubsub_contrato_subject_with_mid_segment_star() {
10022 // `foo*.bar` — NATS wildcards are standalone tokens. The
10023 // remediation is in the reason string.
10024 let err = contrato_subject_err("foo*.bar");
10025 assert!(
10026 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
10027 if subject == "foo*.bar" && reason.contains("`*` mid-segment")),
10028 "got {err:?}"
10029 );
10030 }
10031
10032 #[test]
10033 fn rejects_pubsub_contrato_subject_with_invalid_char() {
10034 // `foo,bar` — comma is not a valid NATS subject character.
10035 // Pinned separately from the wildcard arms so the invalid-
10036 // character diagnostic is in force.
10037 let err = contrato_subject_err("foo,bar");
10038 assert!(
10039 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
10040 if subject == "foo,bar" && reason.contains("invalid character")),
10041 "got {err:?}"
10042 );
10043 }
10044
10045 #[test]
10046 fn rejects_pubsub_contrato_subject_too_long() {
10047 // 257-byte subject — one over the NATS_SUBJECT_MAX_LEN cap.
10048 // The legitimate-shape arms all pass (one all-`a` token, no
10049 // `.`, no wildcards); only the cap arm fires. Surfaces the
10050 // paste-from-binary / accidental-multi-line-blob landing
10051 // footgun. Mirrors `rejects_http_contrato_endpoint_too_long`
10052 // on the peer axis.
10053 let big = "a".repeat(257);
10054 assert_eq!(big.len(), 257);
10055 let err = contrato_subject_err(&big);
10056 assert!(
10057 matches!(err, AplicacaoError::ContratoSubjectInvalid { ref subject, ref reason, .. }
10058 if subject == &big && reason.contains("max length of 256")),
10059 "got {err:?}"
10060 );
10061 }
10062
10063 #[test]
10064 fn pubsub_contrato_subject_max_length_validates() {
10065 // 256-byte subject — exactly the cap. Boundary pin: drift in
10066 // the cap surfaces here and at
10067 // `rejects_pubsub_contrato_subject_too_long` simultaneously,
10068 // mirroring `http_contrato_endpoint_max_length_validates` and
10069 // `wit_max_length_validates` on the peer axes.
10070 let big = "a".repeat(256);
10071 assert_eq!(big.len(), 256);
10072 let mut s = three_member_spec();
10073 s.contratos.push(WitContract {
10074 de: "payment".into(),
10075 para: "catalog".into(),
10076 wit: "nats:pub-sub".into(),
10077 endpoint: None,
10078 subject: Some(big),
10079 slot: None,
10080 });
10081 s.validate().unwrap();
10082 }
10083
10084 #[test]
10085 fn pubsub_contrato_subject_accepts_canonical_forms() {
10086 // Positive-set sweep: every canonical NATS subject shape the
10087 // substrate-side `is_nats_subject` predicate accepts (the
10088 // multi-dot `events.order.charged`, the snake_case / kebab-
10089 // case / mixed-case tokens, the digit-bearing tokens, the
10090 // single-token wildcard `*` at every segment position, and
10091 // the trailing `>` multi-token wildcard) must remain a valid
10092 // contrato subject too. Drift between this list and the
10093 // substrate-side `nats_subject_accepts_canonical_forms` sweep
10094 // surfaces at the shared predicate — one source of truth.
10095 // Uses a fresh `(payment, catalog)` edge so none of the swept
10096 // subjects collide with the pre-existing entries in
10097 // `three_member_spec`.
10098 for subject in [
10099 "checkout.events.charge.failed",
10100 "rio.events.order.charged",
10101 "orders",
10102 "orders.123",
10103 "snake_case.token",
10104 "kebab-case.token",
10105 "MixedCase.Token",
10106 "orders.*.charged",
10107 "*.events.*",
10108 "orders.>",
10109 ] {
10110 let mut s = three_member_spec();
10111 s.contratos.push(WitContract {
10112 de: "payment".into(),
10113 para: "catalog".into(),
10114 wit: "nats:pub-sub".into(),
10115 endpoint: None,
10116 subject: Some(subject.into()),
10117 slot: None,
10118 });
10119 s.validate()
10120 .unwrap_or_else(|e| panic!("expected {subject:?} to validate, got {e:?}"));
10121 }
10122 }
10123
10124 #[test]
10125 fn contrato_subject_empty_takes_precedence_over_invalid() {
10126 // Ordering pin: `ContratoSubjectEmpty` is the more self-
10127 // locating diagnostic on `""` and must lead — the value-shape
10128 // gate is only reached after the empty-check fires. Mirrors
10129 // `contrato_endpoint_empty_takes_precedence_over_invalid` on
10130 // the peer payload axis.
10131 let mut s = three_member_spec();
10132 s.contratos.push(WitContract {
10133 de: "payment".into(),
10134 para: "catalog".into(),
10135 wit: "nats:pub-sub".into(),
10136 endpoint: None,
10137 subject: Some(String::new()),
10138 slot: None,
10139 });
10140 let err = s.validate().unwrap_err();
10141 assert!(
10142 matches!(err, AplicacaoError::ContratoSubjectEmpty { .. }),
10143 "got {err:?}"
10144 );
10145 }
10146
10147 #[test]
10148 fn contrato_subject_invalid_diagnostic_carries_offending_subject() {
10149 // Diagnostic-shape pin — the offending `:subject` + `:de` +
10150 // `:para` + a non-empty reason flow through verbatim so the
10151 // author can grep their caixa.lisp for the offending contrato
10152 // block and fix it in one edit. Same shape as
10153 // `contrato_endpoint_invalid_diagnostic_carries_offending_endpoint`
10154 // and `wit_invalid_diagnostic_carries_offending_wit`.
10155 let err = contrato_subject_err("foo..bar");
10156 match err {
10157 AplicacaoError::ContratoSubjectInvalid {
10158 de,
10159 para,
10160 subject,
10161 reason,
10162 } => {
10163 assert_eq!(de, "payment");
10164 assert_eq!(para, "catalog");
10165 assert_eq!(subject, "foo..bar");
10166 assert!(!reason.is_empty(), "reason field must be non-empty");
10167 }
10168 other => panic!("expected ContratoSubjectInvalid, got {other:?}"),
10169 }
10170 }
10171
10172 #[test]
10173 fn target_view_pubsub_subject_passes_through_to_typed_view() {
10174 // The compounding theorem on the pub-sub axis: every
10175 // `WitTarget::PubSub { subject }` returned by `target()` carries
10176 // a NATS-server-accepted subject. Renderers downstream of
10177 // `typed_view()` (caixa-mesh's CNP L4 emitter, the future
10178 // NATS Stream/Consumer CR emitter, the future `feira app graph`
10179 // view's subject labeller) can rely on this without re-checking
10180 // — the type system carries the proof. Mirrors
10181 // `target_view_payload_is_guaranteed_nonempty_after_target_call`
10182 // on the peer axes.
10183 let nats = WitContract {
10184 de: "a".into(),
10185 para: "b".into(),
10186 wit: "nats:pub-sub".into(),
10187 endpoint: None,
10188 subject: Some("orders.events.*.charged".into()),
10189 slot: None,
10190 };
10191 match nats.target().unwrap() {
10192 WitTarget::PubSub { subject } => {
10193 assert_eq!(subject, "orders.events.*.charged");
10194 }
10195 other => panic!("expected PubSub, got {other:?}"),
10196 }
10197 }
10198
10199 // ── :contratos :slot value-shape gate ────────────────────────────────
10200 //
10201 // Mirrors the `:contratos :endpoint` (4f0390b) + `:contratos :subject`
10202 // (63e18a0) value-shape suites on the peer payload axes. Until this
10203 // gate landed `WitContract::target()` only refused the empty string
10204 // for the Store arm; a structurally invalid slot (raw whitespace,
10205 // control character, non-ASCII byte, paste-from-binary multi-line
10206 // blob) silently passed validate and surfaced at runtime as a
10207 // per-backend kv write rejection or a silent next-read corruption,
10208 // far from the source caixa.lisp with no field naming which
10209 // `:contratos` edge carried the typo. Every authoring footgun the
10210 // kv backend intersection-floor would catch on write now becomes a
10211 // caixa-build-time `ContratoSlotInvalid` with the offending
10212 // `:slot` + `:de` + `:para` named verbatim. Same diagnostic shape
10213 // as `ContratoEndpointInvalid` / `ContratoSubjectInvalid` on the
10214 // peer payload axes; same shared predicate
10215 // (`crate::render::is_wasi_keyvalue_slot`) ensures drift between
10216 // any two axes' rule enforcement is a build error at the
10217 // predicate, not piecemeal across renderers. Closes the typed
10218 // payload-axis value-shape trajectory across all three legs of the
10219 // four `WitTarget` arms (HTTP / PubSub / Store / Capability).
10220
10221 fn contrato_slot_err(slot: &str) -> AplicacaoError {
10222 // Fresh spec per call so the new contract doesn't collide on
10223 // identity with `three_member_spec`'s pre-existing entries
10224 // and doesn't close a synchronous cycle the cycle detector
10225 // would reject before the slot-shape gate fires. The new edge
10226 // uses `(payment, catalog)` — a pair the fixture doesn't
10227 // already declare in either direction (the fixture carries
10228 // `cart -> catalog` and `cart -> payment`, so `payment ->
10229 // catalog` doesn't form a cycle on the sync subgraph) — with
10230 // `:wit "wasi:keyvalue/store"` and the varying `:slot`, so the
10231 // slot-shape gate fires cleanly after the wit-shape gate
10232 // (which `"wasi:keyvalue/store"` passes). Same edge pair the
10233 // peer `contrato_subject_err` helper uses (63e18a0).
10234 let mut s = three_member_spec();
10235 s.contratos.push(WitContract {
10236 de: "payment".into(),
10237 para: "catalog".into(),
10238 wit: "wasi:keyvalue/store".into(),
10239 endpoint: None,
10240 subject: None,
10241 slot: Some(slot.into()),
10242 });
10243 s.validate().unwrap_err()
10244 }
10245
10246 #[test]
10247 fn rejects_store_contrato_slot_with_whitespace() {
10248 // Fail-before-pass-after pin — pre-gate `"check out/$order"`
10249 // silently landed at the kv backend with whitespace whose
10250 // runtime behavior varies unpredictably across backends (etcd
10251 // accepts, Redis accepts then breaks on next CLI op, DynamoDB
10252 // rejects on write). Now caught at the source caixa.lisp.
10253 let err = contrato_slot_err("check out/$order");
10254 assert!(
10255 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10256 if slot == "check out/$order" && reason.contains("whitespace")),
10257 "got {err:?}"
10258 );
10259 }
10260
10261 #[test]
10262 fn rejects_store_contrato_slot_with_tab() {
10263 // Tab byte arm-pinned separately from the space arm so a
10264 // future relaxation that admits one but not the other surfaces
10265 // here.
10266 let err = contrato_slot_err("check\tout");
10267 assert!(
10268 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10269 if slot == "check\tout" && reason.contains("whitespace")),
10270 "got {err:?}"
10271 );
10272 }
10273
10274 #[test]
10275 fn rejects_store_contrato_slot_with_control_char() {
10276 // SOH (0x01) — distinct from the whitespace arm. Redis admits
10277 // and corrupts on RESP protocol framing; DynamoDB rejects on
10278 // write.
10279 let err = contrato_slot_err("checkout/\x01order");
10280 assert!(
10281 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10282 if slot == "checkout/\x01order" && reason.contains("control character")),
10283 "got {err:?}"
10284 );
10285 }
10286
10287 #[test]
10288 fn rejects_store_contrato_slot_with_newline() {
10289 // Embedded newline — the canonical "the paste-from-binary slug
10290 // spans multiple lines" footgun. Distinct from the whitespace
10291 // arm because `\n` is a control character (0x0A).
10292 let err = contrato_slot_err("checkout\norder");
10293 assert!(
10294 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10295 if slot == "checkout\norder" && reason.contains("control character")),
10296 "got {err:?}"
10297 );
10298 }
10299
10300 #[test]
10301 fn rejects_store_contrato_slot_with_non_ascii() {
10302 // Un-percent-encoded non-ASCII byte — the canonical "I copied
10303 // the slot from a doc with accented characters" footgun. Each
10304 // kv backend re-encodes non-ASCII differently (etcd preserves
10305 // bytes verbatim; Redis-via-RESP3 may re-encode; DynamoDB
10306 // rejects), so the typed slot's value set is the intersection-
10307 // floor every backend admits identically (printable ASCII).
10308 let err = contrato_slot_err("ch\u{e9}ckout/$order");
10309 assert!(
10310 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10311 if slot == "ch\u{e9}ckout/$order" && reason.contains("non-ASCII")),
10312 "got {err:?}"
10313 );
10314 }
10315
10316 #[test]
10317 fn rejects_store_contrato_slot_too_long() {
10318 // 513-byte slot — one over the WASI_KV_SLOT_MAX_LEN cap. The
10319 // legitimate-shape arms all pass (a single all-`a` token, no
10320 // separators); only the cap arm fires. Surfaces the paste-
10321 // from-binary / accidental-multi-line-blob landing footgun.
10322 // Mirrors `rejects_pubsub_contrato_subject_too_long` and
10323 // `rejects_http_contrato_endpoint_too_long` on the peer
10324 // payload axes.
10325 let big = "a".repeat(513);
10326 assert_eq!(big.len(), 513);
10327 let err = contrato_slot_err(&big);
10328 assert!(
10329 matches!(err, AplicacaoError::ContratoSlotInvalid { ref slot, ref reason, .. }
10330 if slot == &big && reason.contains("max length of 512")),
10331 "got {err:?}"
10332 );
10333 }
10334
10335 #[test]
10336 fn store_contrato_slot_max_length_validates() {
10337 // 512-byte slot — exactly the cap. Boundary pin: drift in the
10338 // cap surfaces here and at `rejects_store_contrato_slot_too_long`
10339 // simultaneously, mirroring
10340 // `pubsub_contrato_subject_max_length_validates` and
10341 // `http_contrato_endpoint_max_length_validates` on the peer
10342 // payload axes.
10343 let big = "a".repeat(512);
10344 assert_eq!(big.len(), 512);
10345 let mut s = three_member_spec();
10346 s.contratos.push(WitContract {
10347 de: "payment".into(),
10348 para: "catalog".into(),
10349 wit: "wasi:keyvalue/store".into(),
10350 endpoint: None,
10351 subject: None,
10352 slot: Some(big),
10353 });
10354 s.validate().unwrap();
10355 }
10356
10357 #[test]
10358 fn store_contrato_slot_accepts_canonical_forms() {
10359 // Positive-set sweep: every canonical kv slot template the
10360 // substrate-side `is_wasi_keyvalue_slot` predicate accepts
10361 // (single-token identifiers, path-namespaced `$`-templates,
10362 // colon-namespaced `{}`-templates, dot-namespaced `<>`-templates,
10363 // snake_case / kebab-case / MixedCase tokens, digit-bearing
10364 // tokens, percent-encoded fragments) must remain valid
10365 // contrato slots too. Drift between this list and the
10366 // substrate-side `wasi_kv_slot_accepts_canonical_forms` sweep
10367 // surfaces at the shared predicate — one source of truth.
10368 // Uses a fresh `(payment, catalog)` edge so none of the swept
10369 // slots collide with the pre-existing entries in
10370 // `three_member_spec`.
10371 for slot in [
10372 "checkout",
10373 "checkout/$orderId",
10374 "users:{tenant}/{id}",
10375 "session.<sid>",
10376 "session.tokens.<sid>",
10377 "snake_case_key",
10378 "kebab-case-key",
10379 "MixedCase",
10380 "shard0",
10381 "v2/key",
10382 "users/caf%C3%A9",
10383 ] {
10384 let mut s = three_member_spec();
10385 s.contratos.push(WitContract {
10386 de: "payment".into(),
10387 para: "catalog".into(),
10388 wit: "wasi:keyvalue/store".into(),
10389 endpoint: None,
10390 subject: None,
10391 slot: Some(slot.into()),
10392 });
10393 s.validate()
10394 .unwrap_or_else(|e| panic!("expected slot {slot:?} to validate, got {e:?}"));
10395 }
10396 }
10397
10398 #[test]
10399 fn contrato_slot_empty_takes_precedence_over_invalid() {
10400 // Ordering pin: `ContratoSlotEmpty` is the more self-locating
10401 // diagnostic on `""` and must lead — the value-shape gate is
10402 // only reached after the empty-check fires. Mirrors
10403 // `contrato_subject_empty_takes_precedence_over_invalid` and
10404 // `contrato_endpoint_empty_takes_precedence_over_invalid` on
10405 // the peer payload axes.
10406 let mut s = three_member_spec();
10407 s.contratos.push(WitContract {
10408 de: "payment".into(),
10409 para: "catalog".into(),
10410 wit: "wasi:keyvalue/store".into(),
10411 endpoint: None,
10412 subject: None,
10413 slot: Some(String::new()),
10414 });
10415 let err = s.validate().unwrap_err();
10416 assert!(
10417 matches!(err, AplicacaoError::ContratoSlotEmpty { .. }),
10418 "got {err:?}"
10419 );
10420 }
10421
10422 #[test]
10423 fn contrato_slot_invalid_diagnostic_carries_offending_slot() {
10424 // Diagnostic-shape pin — the offending `:slot` + `:de` +
10425 // `:para` + a non-empty reason flow through verbatim so the
10426 // author can grep their caixa.lisp for the offending contrato
10427 // block and fix it in one edit. Same shape as
10428 // `contrato_subject_invalid_diagnostic_carries_offending_subject`
10429 // and `contrato_endpoint_invalid_diagnostic_carries_offending_endpoint`
10430 // on the peer payload axes.
10431 let err = contrato_slot_err("check out/$order");
10432 match err {
10433 AplicacaoError::ContratoSlotInvalid {
10434 de,
10435 para,
10436 slot,
10437 reason,
10438 } => {
10439 assert_eq!(de, "payment");
10440 assert_eq!(para, "catalog");
10441 assert_eq!(slot, "check out/$order");
10442 assert!(!reason.is_empty(), "reason field must be non-empty");
10443 }
10444 other => panic!("expected ContratoSlotInvalid, got {other:?}"),
10445 }
10446 }
10447
10448 #[test]
10449 fn target_view_store_slot_passes_through_to_typed_view() {
10450 // The compounding theorem on the store axis: every
10451 // `WitTarget::Store { slot }` returned by `target()` carries a
10452 // kv-backend-accepted slot template. Renderers downstream of
10453 // `typed_view()` (the future per-Servico `:capabilities
10454 // wasi:keyvalue/store` axis emitter, the future `feira app
10455 // graph` view's slot labeller, the future kv-provider CR
10456 // materializer) can rely on this without re-checking — the
10457 // type system carries the proof. Mirrors
10458 // `target_view_pubsub_subject_passes_through_to_typed_view` on
10459 // the peer payload axis.
10460 let store = WitContract {
10461 de: "a".into(),
10462 para: "b".into(),
10463 wit: "wasi:keyvalue/store".into(),
10464 endpoint: None,
10465 subject: None,
10466 slot: Some("checkout/$orderId".into()),
10467 };
10468 match store.target().unwrap() {
10469 WitTarget::Store { slot } => {
10470 assert_eq!(slot, "checkout/$orderId");
10471 }
10472 other => panic!("expected Store, got {other:?}"),
10473 }
10474 }
10475
10476 #[test]
10477 fn rejects_self_loop_in_synchronous_contratos() {
10478 // A synchronous self-edge (`cart → cart` over HTTP) is now
10479 // rejected by the dedicated `ContratoSelfLoop` gate — a precise
10480 // "this edge is degenerate" diagnostic — rather than incidentally
10481 // by the cycle detector framing it as a `["cart", "cart"]`
10482 // multi-node deadlock.
10483 let mut s = three_member_spec();
10484 s.contratos.push(contract_http("cart", "cart", "/loop"));
10485 let err = s.validate().unwrap_err();
10486 match err {
10487 AplicacaoError::ContratoSelfLoop { caixa, wit } => {
10488 assert_eq!(caixa, "cart");
10489 assert_eq!(wit, "wasi:http/proxy");
10490 }
10491 other => panic!("expected ContratoSelfLoop, got {other:?}"),
10492 }
10493 }
10494
10495 #[test]
10496 fn rejects_self_loop_in_pubsub_contratos() {
10497 // The cycle detector excludes pub-sub edges (acyclic by
10498 // construction), so before the explicit gate a `nats:pub-sub`
10499 // self-edge silently validated and rendered a self-allow CNP.
10500 // The shape-agnostic `ContratoSelfLoop` gate closes that hole.
10501 let mut s = three_member_spec();
10502 s.contratos.push(WitContract {
10503 de: "payment".into(),
10504 para: "payment".into(),
10505 wit: "nats:pub-sub".into(),
10506 endpoint: None,
10507 subject: Some("rio.events.payment".into()),
10508 slot: None,
10509 });
10510 let err = s.validate().unwrap_err();
10511 match err {
10512 AplicacaoError::ContratoSelfLoop { caixa, wit } => {
10513 assert_eq!(caixa, "payment");
10514 assert_eq!(wit, "nats:pub-sub");
10515 }
10516 other => panic!("expected ContratoSelfLoop, got {other:?}"),
10517 }
10518 }
10519
10520 #[test]
10521 fn self_loop_fires_before_payload_shape_check() {
10522 // The structural "this edge can't exist" error precedes the
10523 // narrower payload-shape diagnostics: a self-edge carrying an
10524 // otherwise-malformed endpoint still reports ContratoSelfLoop,
10525 // not ContratoEndpointInvalid.
10526 let mut s = three_member_spec();
10527 s.contratos.push(WitContract {
10528 de: "cart".into(),
10529 para: "cart".into(),
10530 wit: "wasi:http/proxy".into(),
10531 endpoint: Some("not-absolute".into()),
10532 subject: None,
10533 slot: None,
10534 });
10535 match s.validate().unwrap_err() {
10536 AplicacaoError::ContratoSelfLoop { caixa, .. } => assert_eq!(caixa, "cart"),
10537 other => panic!("expected ContratoSelfLoop, got {other:?}"),
10538 }
10539 }
10540
10541 #[test]
10542 fn self_loop_fires_before_membership_is_satisfied_but_after_missing_member() {
10543 // A self-edge naming a non-member reports the more fundamental
10544 // ContratoMemberMissing first (the member doesn't exist), so the
10545 // self-loop gate is reached only once both endpoints resolve.
10546 let mut s = three_member_spec();
10547 s.contratos.push(contract_http("ghost", "ghost", "/loop"));
10548 match s.validate().unwrap_err() {
10549 AplicacaoError::ContratoMemberMissing { caixa } => assert_eq!(caixa, "ghost"),
10550 other => panic!("expected ContratoMemberMissing, got {other:?}"),
10551 }
10552 }
10553
10554 #[test]
10555 fn rejects_two_node_synchronous_cycle() {
10556 let mut s = three_member_spec();
10557 // existing edges: cart → catalog, cart → payment
10558 // adding catalog → cart closes a 2-cycle on the HTTP subgraph
10559 s.contratos
10560 .push(contract_http("catalog", "cart", "/refresh"));
10561 let err = s.validate().unwrap_err();
10562 match err {
10563 AplicacaoError::ContratoCycle { cycle } => {
10564 // Cycle traversal should mention both endpoints, with
10565 // the back-edge target appearing as both first and last
10566 // element to close the loop.
10567 assert!(cycle.len() >= 3);
10568 assert_eq!(cycle.first(), cycle.last());
10569 let body: std::collections::HashSet<_> = cycle.iter().cloned().collect();
10570 assert!(body.contains("cart"));
10571 assert!(body.contains("catalog"));
10572 }
10573 other => panic!("expected ContratoCycle, got {other:?}"),
10574 }
10575 }
10576
10577 #[test]
10578 fn rejects_three_node_synchronous_cycle() {
10579 let mut s = three_member_spec();
10580 // Reset to a clean 3-cycle: catalog → cart → payment → catalog
10581 s.contratos = vec![
10582 contract_http("catalog", "cart", "/x"),
10583 contract_http("cart", "payment", "/y"),
10584 contract_http("payment", "catalog", "/z"),
10585 ];
10586 let err = s.validate().unwrap_err();
10587 match err {
10588 AplicacaoError::ContratoCycle { cycle } => {
10589 assert_eq!(cycle.first(), cycle.last());
10590 let body: std::collections::HashSet<_> = cycle.iter().cloned().collect();
10591 assert_eq!(body.len(), 3);
10592 assert!(body.contains("cart"));
10593 assert!(body.contains("catalog"));
10594 assert!(body.contains("payment"));
10595 }
10596 other => panic!("expected ContratoCycle, got {other:?}"),
10597 }
10598 }
10599
10600 #[test]
10601 fn pubsub_edge_breaks_cycle_per_mesh_composition_iii_3() {
10602 // MESH-COMPOSITION §III.3 explicitly says NATS pub-sub is
10603 // "acyclic by construction" — so a cycle whose closing edge
10604 // is pub-sub should NOT raise ContratoCycle.
10605 let mut s = three_member_spec();
10606 s.contratos = vec![
10607 contract_http("catalog", "cart", "/x"),
10608 contract_http("cart", "payment", "/y"),
10609 // Closing edge is pub-sub — async; not a sync deadlock.
10610 WitContract {
10611 de: "payment".into(),
10612 para: "catalog".into(),
10613 wit: "nats:pub-sub".into(),
10614 endpoint: None,
10615 subject: Some("checkout.events.charge.completed".into()),
10616 slot: None,
10617 },
10618 ];
10619 s.validate().expect("pub-sub edge breaks the sync cycle");
10620 }
10621
10622 #[test]
10623 fn store_edge_counts_as_synchronous_for_cycle_detection() {
10624 // wasi:keyvalue/store is request/response; a cycle through one
10625 // *is* a sync deadlock, just like HTTP.
10626 let mut s = three_member_spec();
10627 s.contratos = vec![
10628 contract_http("catalog", "cart", "/x"),
10629 WitContract {
10630 de: "cart".into(),
10631 para: "catalog".into(),
10632 wit: "wasi:keyvalue/store".into(),
10633 endpoint: None,
10634 subject: None,
10635 slot: Some("session/$id".into()),
10636 },
10637 ];
10638 let err = s.validate().unwrap_err();
10639 assert!(matches!(err, AplicacaoError::ContratoCycle { .. }));
10640 }
10641
10642 #[test]
10643 fn capability_edge_counts_as_synchronous_for_cycle_detection() {
10644 // Capability-only edges (unknown WIT shape, no payload) default
10645 // to synchronous — safer; authors with truly async capability
10646 // semantics can model them as pub-sub explicitly.
10647 let mut s = three_member_spec();
10648 s.contratos = vec![
10649 contract_http("catalog", "cart", "/x"),
10650 WitContract {
10651 de: "cart".into(),
10652 para: "catalog".into(),
10653 wit: "custom:exchange".into(),
10654 endpoint: None,
10655 subject: None,
10656 slot: None,
10657 },
10658 ];
10659 let err = s.validate().unwrap_err();
10660 assert!(matches!(err, AplicacaoError::ContratoCycle { .. }));
10661 }
10662
10663 #[test]
10664 fn long_acyclic_chain_validates() {
10665 // A long sync chain (no back-edges) must validate even when
10666 // every node is reachable from the first.
10667 let mut s = three_member_spec();
10668 s.membros = vec![
10669 membro("a", "^0.1"),
10670 membro("b", "^0.1"),
10671 membro("c", "^0.1"),
10672 membro("d", "^0.1"),
10673 membro("e", "^0.1"),
10674 ];
10675 s.contratos = vec![
10676 contract_http("a", "b", "/1"),
10677 contract_http("b", "c", "/2"),
10678 contract_http("c", "d", "/3"),
10679 contract_http("d", "e", "/4"),
10680 ];
10681 s.entrada.as_mut().unwrap().para = "a".into();
10682 s.validate().unwrap();
10683 }
10684
10685 #[test]
10686 fn diamond_acyclic_validates() {
10687 // a → b, a → c, b → d, c → d. Two paths to d, no cycle.
10688 let mut s = three_member_spec();
10689 s.membros = vec![
10690 membro("a", "^0.1"),
10691 membro("b", "^0.1"),
10692 membro("c", "^0.1"),
10693 membro("d", "^0.1"),
10694 ];
10695 s.contratos = vec![
10696 contract_http("a", "b", "/1"),
10697 contract_http("a", "c", "/2"),
10698 contract_http("b", "d", "/3"),
10699 contract_http("c", "d", "/4"),
10700 ];
10701 s.entrada.as_mut().unwrap().para = "a".into();
10702 s.validate().unwrap();
10703 }
10704
10705 // ── duplicate-`:contratos` build-error gate ──────────────────────────
10706
10707 #[test]
10708 fn rejects_duplicate_http_contrato() {
10709 // Fail-before-pass-after pin: the fixture's `cart → catalog`
10710 // HTTP edge appears once. Push an identical entry — same
10711 // (de, para, wit, endpoint) — and validate() must reject it.
10712 // Until this gate landed the typed surface accepted the
10713 // duplicate silently and caixa-mesh's `cilium_network_policies`
10714 // emitted two ``CiliumNetworkPolicy`` objects with identical
10715 // `metadata.name` (`<aplicacao>-<de>-to-<para>`), which K8s
10716 // admission rejects on `kubectl apply` far from the source.
10717 let mut s = three_member_spec();
10718 s.contratos
10719 .push(contract_http("cart", "catalog", "/products/:id"));
10720 let err = s.validate().unwrap_err();
10721 assert!(
10722 matches!(
10723 err,
10724 AplicacaoError::ContratoDuplicate { ref de, ref para, ref wit, .. }
10725 if de == "cart" && para == "catalog" && wit == "wasi:http/proxy"
10726 ),
10727 "got {err:?}"
10728 );
10729 }
10730
10731 #[test]
10732 fn rejects_duplicate_pubsub_contrato() {
10733 // Same gate on the pub-sub edge axis. Two `nats:pub-sub`
10734 // edges with identical (de, para, subject) are degenerate;
10735 // pin that the typed surface refuses both at validate time.
10736 let mut s = three_member_spec();
10737 let pubsub = WitContract {
10738 de: "payment".into(),
10739 para: "cart".into(),
10740 wit: "nats:pub-sub".into(),
10741 endpoint: None,
10742 subject: Some("checkout.events.charge.failed".into()),
10743 slot: None,
10744 };
10745 s.contratos.push(pubsub.clone());
10746 s.contratos.push(pubsub);
10747 let err = s.validate().unwrap_err();
10748 assert!(
10749 matches!(
10750 err,
10751 AplicacaoError::ContratoDuplicate { ref de, ref para, ref wit, .. }
10752 if de == "payment" && para == "cart" && wit == "nats:pub-sub"
10753 ),
10754 "got {err:?}"
10755 );
10756 }
10757
10758 #[test]
10759 fn rejects_duplicate_store_contrato() {
10760 // Same gate on the key-value edge axis. Two `wasi:keyvalue/store`
10761 // edges with identical (de, para, slot) collapse to one mesh-
10762 // policy edge; pin the build error.
10763 let mut s = three_member_spec();
10764 let store = WitContract {
10765 de: "cart".into(),
10766 para: "payment".into(),
10767 wit: "wasi:keyvalue/store".into(),
10768 endpoint: None,
10769 subject: None,
10770 slot: Some("checkout/$orderId".into()),
10771 };
10772 // Drop the conflicting HTTP `cart → payment` edge from the
10773 // fixture so the duplicate-store pair is the only one
10774 // distinguishable on this pair.
10775 s.contratos
10776 .retain(|c| !(c.de == "cart" && c.para == "payment"));
10777 s.contratos.push(store.clone());
10778 s.contratos.push(store);
10779 let err = s.validate().unwrap_err();
10780 assert!(
10781 matches!(
10782 err,
10783 AplicacaoError::ContratoDuplicate { ref de, ref para, ref wit, .. }
10784 if de == "cart" && para == "payment" && wit == "wasi:keyvalue/store"
10785 ),
10786 "got {err:?}"
10787 );
10788 }
10789
10790 #[test]
10791 fn rejects_duplicate_capability_contrato() {
10792 // Same gate on the pure-capability axis (no payload selector).
10793 // Two contracts with identical (de, para, wit) and no
10794 // endpoint/subject/slot are duplicate edges; pin so a future
10795 // `target_label` change can't accidentally collapse the
10796 // capability arm into a None-shaped key that compares equal
10797 // to a populated one.
10798 let mut s = three_member_spec();
10799 let capability = WitContract {
10800 de: "cart".into(),
10801 para: "catalog".into(),
10802 wit: "pleme:cap/audit".into(),
10803 endpoint: None,
10804 subject: None,
10805 slot: None,
10806 };
10807 s.contratos.push(capability.clone());
10808 s.contratos.push(capability);
10809 let err = s.validate().unwrap_err();
10810 match err {
10811 AplicacaoError::ContratoDuplicate {
10812 de,
10813 para,
10814 wit,
10815 target,
10816 } => {
10817 assert_eq!(de, "cart");
10818 assert_eq!(para, "catalog");
10819 assert_eq!(wit, "pleme:cap/audit");
10820 assert!(
10821 target.contains("capability"),
10822 "capability-edge duplicate diagnostic must surface the \
10823 no-payload shape (got target = {target:?})"
10824 );
10825 }
10826 other => panic!("expected ContratoDuplicate, got {other:?}"),
10827 }
10828 }
10829
10830 #[test]
10831 fn accepts_distinct_http_paths_between_same_pair() {
10832 // Negative pin: two HTTP contracts cart → catalog at distinct
10833 // endpoints (`/products/:id` and `/search`) are *not*
10834 // duplicates — they're distinct typed edges differing on the
10835 // payload axis. The duplicate-gate must not over-match here,
10836 // since the cart-calls-catalog-on-multiple-paths shape is the
10837 // canonical multi-endpoint pattern (MESH-COMPOSITION §III.1
10838 // example: cart calls catalog at /products/:id, payment at
10839 // /charge — same shape extends to two paths on one para).
10840 let mut s = three_member_spec();
10841 s.contratos
10842 .push(contract_http("cart", "catalog", "/search"));
10843 s.validate()
10844 .expect("distinct endpoints between same (de, para) must validate");
10845 }
10846
10847 #[test]
10848 fn accepts_same_endpoint_on_different_pairs() {
10849 // Negative pin: the same `/charge` endpoint reused on two
10850 // different (de, para) pairs is two distinct edges, not a
10851 // duplicate. Pinning this shape so the gate's identity key
10852 // includes both `de` and `para` (not just `(wit, endpoint)`).
10853 let mut s = three_member_spec();
10854 s.contratos
10855 .push(contract_http("payment", "catalog", "/charge"));
10856 s.validate()
10857 .expect("same endpoint reused on distinct (de, para) must validate");
10858 }
10859
10860 #[test]
10861 fn rejects_duplicate_contrato_diagnostic_names_offending_target() {
10862 // Pin the diagnostic shape: the duplicate-edge error names
10863 // *which* target field carried the conflict, so the author
10864 // doesn't have to re-grep the source caixa.lisp to find it.
10865 // Same self-locating diagnostic discipline as
10866 // ContratoEndpointEmpty / ContratoSubjectEmpty / etc.
10867 let mut s = three_member_spec();
10868 s.contratos
10869 .push(contract_http("cart", "catalog", "/products/:id"));
10870 let err = s.validate().unwrap_err();
10871 let msg = format!("{err}");
10872 assert!(
10873 msg.contains("\"/products/:id\""),
10874 "duplicate-contrato diagnostic must name the offending \
10875 :endpoint payload (got: {msg:?})"
10876 );
10877 assert!(
10878 msg.contains("cart") && msg.contains("catalog"),
10879 "diagnostic must name both endpoints of the duplicate edge \
10880 (got: {msg:?})"
10881 );
10882 }
10883
10884 #[test]
10885 fn duplicate_contrato_gate_runs_after_membership_check() {
10886 // Order pin: a duplicate contract whose `:de` is *also* not in
10887 // `:membros` surfaces the membership error first — the
10888 // missing-member diagnostic is more locating than the
10889 // duplicate-edge one (the author has to fix the membership
10890 // before the duplicate is meaningful). Same ordering
10891 // discipline as `membros_validation_runs_before_contratos_membership_check`.
10892 let mut s = three_member_spec();
10893 s.contratos.push(contract_http("phantom", "catalog", "/x"));
10894 s.contratos.push(contract_http("phantom", "catalog", "/x"));
10895 let err = s.validate().unwrap_err();
10896 assert!(
10897 matches!(err, AplicacaoError::ContratoMemberMissing { ref caixa } if caixa == "phantom"),
10898 "membership-missing must fire before duplicate-edge (got {err:?})"
10899 );
10900 }
10901
10902 #[test]
10903 fn duplicate_contrato_gate_runs_after_target_shape_check() {
10904 // Order pin: a contract with a malformed target (e.g. an HTTP
10905 // wit world with an empty :endpoint) surfaces the target-shape
10906 // error first, not the duplicate one. Even when two such
10907 // malformed entries are identical, the per-contract `target()`
10908 // check fires inside the loop *before* the duplicate-key
10909 // insert, so the diagnostic remains the most-locating one.
10910 let mut s = three_member_spec();
10911 let malformed = WitContract {
10912 de: "cart".into(),
10913 para: "catalog".into(),
10914 wit: "wasi:http/proxy".into(),
10915 endpoint: Some(String::new()),
10916 subject: None,
10917 slot: None,
10918 };
10919 s.contratos.push(malformed.clone());
10920 s.contratos.push(malformed);
10921 let err = s.validate().unwrap_err();
10922 assert!(
10923 matches!(err, AplicacaoError::ContratoEndpointEmpty { .. }),
10924 "endpoint-empty must fire before duplicate-edge (got {err:?})"
10925 );
10926 }
10927
10928 #[test]
10929 fn wit_target_label_pins_per_variant_format() {
10930 // Label format is the single source of truth every duplicate-
10931 // `:contratos` diagnostic + every future `feira app graph`
10932 // consumer routes through. Pin the shape per variant so a
10933 // future edit to `WitTarget::label` (e.g. a JSON emitter that
10934 // strips the leading `:`, or a rename from `endpoint` →
10935 // `path`) surfaces as a red-red test rather than as a silent
10936 // downstream diagnostic drift. Together with the exhaustive
10937 // `match` on `WitTarget` inside `label()`, adding a future
10938 // variant (M4 `Rest` / `Grpc` split, `Queue`-shaped `Store`
10939 // peer, per-edge WIT registry variants) is a compile error at
10940 // the label site — not a fall-through into the `Capability`
10941 // "no payload" default the prior raw-field-probe helper
10942 // silently landed on.
10943 assert_eq!(
10944 WitTarget::Http {
10945 endpoint: "/charge",
10946 }
10947 .label(),
10948 "\
10949:endpoint \"/charge\""
10950 );
10951 assert_eq!(
10952 WitTarget::PubSub {
10953 subject: "events.checkout.paid",
10954 }
10955 .label(),
10956 "\
10957:subject \"events.checkout.paid\""
10958 );
10959 assert_eq!(
10960 WitTarget::Store {
10961 slot: "checkout/$order",
10962 }
10963 .label(),
10964 "\
10965:slot \"checkout/$order\""
10966 );
10967 assert_eq!(WitTarget::Capability.label(), "(capability — no payload)");
10968 // Capability-arm label routes through the lifted
10969 // [`WitTarget::CAPABILITY_LABEL`] const so the "one canonical
10970 // declaration per arm, next to the variant" discipline the
10971 // peer payload-arm [`WitTarget::HTTP_FIELD_NAME`] /
10972 // [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`]
10973 // consts already carry extends to the payload-less arm; the
10974 // byte-string equality pin below plus this label-routes-
10975 // through-the-const pin make a future rebrand on either the
10976 // const declaration or the `label()` template a build error
10977 // here rather than a downstream consumer surprise.
10978 assert_eq!(WitTarget::Capability.label(), WitTarget::CAPABILITY_LABEL,);
10979 assert_eq!(WitTarget::CAPABILITY_LABEL, "(capability — no payload)");
10980 }
10981
10982 #[test]
10983 fn wit_target_display_routes_through_label_helper() {
10984 // Fail-before-pass-after pin on the fourth (and only remaining)
10985 // typed-shape-discriminator axis to converge onto the
10986 // three-path-convergence discipline the sibling M3
10987 // [`PlacementStrategy`] (0a2f653) and M2
10988 // [`crate::supervisor::RestartStrategy`] /
10989 // [`crate::supervisor::RestartPolicy`] OTP-shape typed enums
10990 // already carry: [`std::fmt::Display`] on [`WitTarget`] routes
10991 // through [`WitTarget::label`], so every consumer reaching for
10992 // `format!("{v}")` on a typed payload target lands on the same
10993 // stable author-facing byte-string [`WitTarget::label`] returns
10994 // — the byte-string the [`AplicacaoError::ContratoDuplicate`]
10995 // `target:` carry the [`AplicacaoSpec::validate`] duplicate-
10996 // `:contratos` gate seeds via [`WitTarget::label`] at
10997 // aplicacao.rs:5491 already threads through.
10998 //
10999 // Pre-lift `format!("{v}")` on [`WitTarget`] would have fallen
11000 // through to the `Debug` derive's structural output
11001 // (`Http { endpoint: "/charge" }` — Rust struct-literal syntax)
11002 // rather than the [`WitTarget::label`] helper's stable byte-
11003 // string (`:endpoint "/charge"` — the author-facing `:contratos`
11004 // keyword form). Every future consumer that reaches for
11005 // `format!("{target}")` — the canonical shape every user-facing
11006 // pretty-print site on the sibling typed-enum axes
11007 // ([`PlacementStrategy`], [`crate::supervisor::RestartStrategy`],
11008 // [`crate::supervisor::RestartPolicy`]) already uses — would
11009 // silently land under a different byte-string than the
11010 // [`WitTarget::label`] callers that the duplicate-`:contratos`
11011 // diagnostic already threads through, with the mismatch
11012 // surfacing as a downstream diagnostic / graph / audit line
11013 // reading one spelling while the substrate's own gate emitted
11014 // another.
11015 //
11016 // Pin the routing here so a future
11017 // `impl std::fmt::Display for WitTarget<'_>` reimplementation
11018 // that hand-rolls the per-arm formatting instead of delegating
11019 // to [`WitTarget::label`] fails at caixa-core build time.
11020 for variant in [
11021 WitTarget::Http {
11022 endpoint: "/charge",
11023 },
11024 WitTarget::PubSub {
11025 subject: "events.checkout.paid",
11026 },
11027 WitTarget::Store {
11028 slot: "checkout/$order",
11029 },
11030 WitTarget::Capability,
11031 ] {
11032 assert_eq!(
11033 variant.to_string(),
11034 variant.label(),
11035 "WitTarget::{variant:?} Display must route through \
11036 WitTarget::label (single source of truth: the lifted \
11037 payload_pair 4-arm dispatch the label helper already \
11038 threads through)"
11039 );
11040 }
11041 }
11042
11043 #[test]
11044 fn wit_target_display_matches_duplicate_contratos_diagnostic_carrier() {
11045 // Consumer-side pin on the three-path convergence:
11046 // [`std::fmt::Display`] agrees byte-for-byte with the
11047 // [`AplicacaoError::ContratoDuplicate`] `target:` carrier the
11048 // [`AplicacaoSpec::validate`] duplicate-`:contratos` gate seeds
11049 // via [`WitTarget::label`] at aplicacao.rs:5491 on every arm.
11050 // Pre-lift the two paths were structurally independent — the
11051 // substrate-side gate reached for `target_view.label()` while a
11052 // future downstream diagnostic / graph / audit line reaching
11053 // for `format!("{target}")` would silently land on the `Debug`
11054 // derive's structural output. Pin the two paths byte-for-byte
11055 // here so any future variant addition (M4 `Rest`/`Grpc` split
11056 // of [`WitTarget::Http`], `Queue`-shaped peer of
11057 // [`WitTarget::Store`]) is a caixa-core-build-time exhaustive-
11058 // match error at [`WitTarget::payload_pair`] rather than a
11059 // silent per-consumer dispatch miss.
11060 for variant in [
11061 WitTarget::Http {
11062 endpoint: "/charge",
11063 },
11064 WitTarget::PubSub {
11065 subject: "events.checkout.paid",
11066 },
11067 WitTarget::Store {
11068 slot: "checkout/$order",
11069 },
11070 WitTarget::Capability,
11071 ] {
11072 assert_eq!(
11073 format!("{variant}"),
11074 variant.label(),
11075 "WitTarget::{variant:?} Display byte-string must match \
11076 the AplicacaoError::ContratoDuplicate `target:` carrier \
11077 the AplicacaoSpec::validate duplicate-`:contratos` gate \
11078 seeds via WitTarget::label — three-path convergence: \
11079 Display + label + payload_pair all resolve to the same \
11080 per-arm byte-string"
11081 );
11082 }
11083 }
11084
11085 #[test]
11086 fn wit_target_payload_pair_pins_per_variant() {
11087 // Pin the per-arm `(field-name, payload)` pair single-sourced
11088 // onto [`WitTarget::payload_pair`] — the single 4-arm dispatch
11089 // both [`WitTarget::label`] (formats `":{field} {payload:?}"`
11090 // on `Some`, falls to [`WitTarget::CAPABILITY_LABEL`] on `None`)
11091 // and [`WitTarget::field_name`] (returns the first component)
11092 // route through. Until this lift landed [`WitTarget::label`]
11093 // dispatched on the same three arms with a per-arm
11094 // `format!(":{} {…:?}", …)` invocation each, hand-quoting the
11095 // paired [`WitTarget::HTTP_FIELD_NAME`] /
11096 // [`WitTarget::PUBSUB_FIELD_NAME`] /
11097 // [`WitTarget::STORE_FIELD_NAME`] const at every site — the
11098 // canonical "same shape, written N times" duplication
11099 // THEORY.md §I.3.5 promotes to a build-time concern. A future
11100 // [`WitTarget`] variant addition (`Rest`/`Grpc` split of
11101 // [`WitTarget::Http`], `Queue`-shaped peer of
11102 // [`WitTarget::Store`]) is one match-arm edit at
11103 // [`WitTarget::payload_pair`], visible here as a compile-time
11104 // exhaustiveness error on both this pin and the label-format
11105 // pin above.
11106 assert_eq!(
11107 WitTarget::Http {
11108 endpoint: "/charge"
11109 }
11110 .payload_pair(),
11111 Some((WitTarget::HTTP_FIELD_NAME, "/charge")),
11112 );
11113 assert_eq!(
11114 WitTarget::PubSub {
11115 subject: "events.x",
11116 }
11117 .payload_pair(),
11118 Some((WitTarget::PUBSUB_FIELD_NAME, "events.x")),
11119 );
11120 assert_eq!(
11121 WitTarget::Store {
11122 slot: "checkout/$order",
11123 }
11124 .payload_pair(),
11125 Some((WitTarget::STORE_FIELD_NAME, "checkout/$order")),
11126 );
11127 assert_eq!(WitTarget::Capability.payload_pair(), None);
11128 }
11129
11130 #[test]
11131 fn wit_target_field_name_pins_per_variant() {
11132 // Pin the per-arm author-facing `:contratos` payload field
11133 // name single-sourced onto [`WitTarget::HTTP_FIELD_NAME`] /
11134 // [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`]
11135 // + returned by [`WitTarget::field_name`]. Every downstream
11136 // consumer (the [`WitContract::target`] gate's `expected:`
11137 // scalar, the [`WitTarget::label`] template's keyword prefix,
11138 // the `feira app graph` verb's `endpoint=…` prefix) routes
11139 // through the same three peer consts, so a rename on the
11140 // author-surface `(defcaixa … :contratos ((:de … :para …
11141 // :wit … :endpoint …)))` field lands in exactly one place.
11142 assert_eq!(
11143 WitTarget::Http {
11144 endpoint: "/charge"
11145 }
11146 .field_name(),
11147 Some(WitTarget::HTTP_FIELD_NAME),
11148 );
11149 assert_eq!(
11150 WitTarget::PubSub {
11151 subject: "events.x",
11152 }
11153 .field_name(),
11154 Some(WitTarget::PUBSUB_FIELD_NAME),
11155 );
11156 assert_eq!(
11157 WitTarget::Store {
11158 slot: "checkout/$order",
11159 }
11160 .field_name(),
11161 Some(WitTarget::STORE_FIELD_NAME),
11162 );
11163 // Capability arm carries no payload field — the diagnostic
11164 // never reports `expected: "capability"` because the gate's
11165 // Capability arm accepts no payload at all (it fires the
11166 // "expected: none" WrongTarget error instead), so the field-
11167 // name method returns None here rather than a placeholder.
11168 assert_eq!(WitTarget::Capability.field_name(), None);
11169
11170 // Peer const scalar values pinned so a rename on either side
11171 // (author-surface field name in the `(defcaixa …)` DSL, or
11172 // the diagnostic's `expected:` scalar) can't drift without
11173 // failing here first.
11174 assert_eq!(WitTarget::HTTP_FIELD_NAME, "endpoint");
11175 assert_eq!(WitTarget::PUBSUB_FIELD_NAME, "subject");
11176 assert_eq!(WitTarget::STORE_FIELD_NAME, "slot");
11177 }
11178
11179 #[test]
11180 fn wit_target_field_names_are_pairwise_distinct() {
11181 // Distinctness pin: if any two of the three payload-field-name
11182 // scalars ever collapse (e.g. an accidental `endpoint` copy-
11183 // paste over the `subject` const), the [`WitContract::target`]
11184 // gate's diagnostic would point authors at the wrong field —
11185 // an "expected `:endpoint`" error on a pub-sub edge would
11186 // silently misroute the fix. Same cross-axis-distinctness
11187 // discipline as the peer M3 `:placement :estrategia` variant-
11188 // discriminator scalar-value pins (cc8f749) applied to the
11189 // payload-field-name axis.
11190 assert_ne!(WitTarget::HTTP_FIELD_NAME, WitTarget::PUBSUB_FIELD_NAME);
11191 assert_ne!(WitTarget::HTTP_FIELD_NAME, WitTarget::STORE_FIELD_NAME);
11192 assert_ne!(WitTarget::PUBSUB_FIELD_NAME, WitTarget::STORE_FIELD_NAME);
11193 }
11194
11195 #[test]
11196 fn wit_target_expected_scalars_are_pairwise_distinct_across_all_four_arms() {
11197 // 4-way distinctness pin extending the sibling
11198 // [`wit_target_field_names_are_pairwise_distinct`] 3-way pin
11199 // (which covers only the HTTP / PubSub / Store payload arms)
11200 // onto the fourth scalar the shared
11201 // [`AplicacaoError::ContratoWrongTarget`] `expected: &'static
11202 // str` axis threads through — [`WitTarget::CAPABILITY_EXPECTED`]
11203 // (`"none"`), the payload-less Capability-arm rejection scalar.
11204 //
11205 // All four [`WitTarget::HTTP_FIELD_NAME`] /
11206 // [`WitTarget::PUBSUB_FIELD_NAME`] / [`WitTarget::STORE_FIELD_NAME`]
11207 // / [`WitTarget::CAPABILITY_EXPECTED`] consts are the closed-set
11208 // dispatch surface [`WitContract::target`] writes onto the
11209 // `ContratoWrongTarget::expected` field — the same `&'static
11210 // str` axis authors read as "this WIT world's shape admits
11211 // (only|not) `:<field>`". Pairwise-distinctness is the invariant
11212 // downstream consumers rely on: an `expected: "endpoint"`
11213 // diagnostic on a Capability-shaped edge tells the author to
11214 // add a `:endpoint "…"` slot to a WIT world that admits none,
11215 // silently misrouting the fix. Until this pin landed the three
11216 // payload-arm consts were distinctness-guarded by the sibling
11217 // 3-way pin (a4a5d09 / 4a1e490) while the fourth Capability-arm
11218 // scalar (d4f54f2) sat unguarded — a rebrand collision (the
11219 // author-facing vocabulary shift from `"none"` to `"endpoint"`
11220 // / `"subject"` / `"slot"` as M4 splits [`WitTarget::Capability`]
11221 // into per-shape peers) would have silently landed one
11222 // Capability-arm rejection on a payload-arm's `expected:` byte-
11223 // string and desynchronized the diagnostic from the author's
11224 // typed shape.
11225 //
11226 // Same 4-way pairwise-distinctness pin discipline as the peer
11227 // [`m3_placement_estrategia_consts_are_pairwise_distinct`]
11228 // (cc8f749) applies on the sibling M3 closed-set typed-enum
11229 // scalar-value dispatch axis; extends the pin trajectory the
11230 // sibling `wit_target_field_names_are_pairwise_distinct`
11231 // 3-way pin opened to cover the last unguarded corner on the
11232 // `ContratoWrongTarget::expected` scalar-value axis.
11233 //
11234 // Fail-before-pass-after locally verified by mutating
11235 // [`WitTarget::CAPABILITY_EXPECTED`] to also read `"endpoint"`
11236 // — this pin fires as expected; restoring passes.
11237 let all = [
11238 WitTarget::HTTP_FIELD_NAME,
11239 WitTarget::PUBSUB_FIELD_NAME,
11240 WitTarget::STORE_FIELD_NAME,
11241 WitTarget::CAPABILITY_EXPECTED,
11242 ];
11243 for (i, a) in all.iter().enumerate() {
11244 for (j, b) in all.iter().enumerate() {
11245 if i != j {
11246 assert_ne!(
11247 a, b,
11248 "WitTarget::{{HTTP_FIELD_NAME, PUBSUB_FIELD_NAME, \
11249 STORE_FIELD_NAME, CAPABILITY_EXPECTED}} consts must be \
11250 pairwise distinct — got duplicate {a:?} at indices \
11251 {i} and {j}; all four scalars thread through the \
11252 shared `AplicacaoError::ContratoWrongTarget::expected` \
11253 &'static str axis, so a collapse silently misdirects \
11254 the diagnostic on which typed shape the WIT world admits",
11255 );
11256 }
11257 }
11258 }
11259 }
11260
11261 #[test]
11262 fn wit_target_is_variant_predicates_partition_the_arm_set() {
11263 // Fail-before-pass-after pin on the
11264 // [`gen_platform::IsVariant`] derive on [`WitTarget`]: for
11265 // each of the four variants exactly one of the generated
11266 // `is_http` / `is_pubsub` / `is_store` / `is_capability`
11267 // predicates returns `true` and the other three return
11268 // `false`. Prior to this derive the only production
11269 // arm-discriminator on [`WitTarget`] — the sync-cycle
11270 // exclusion in [`AplicacaoSpec::detect_sync_cycles`] — was a
11271 // raw `matches!(c.target()?, WitTarget::PubSub { .. })` on
11272 // the variant that expressed no compile-time link back to
11273 // the closed-set typed dispatch a future fifth
11274 // `:contratos :wit`-shape arm (an M4 per-edge WIT registry
11275 // split of [`WitTarget::PubSub`] into shape-specific peers,
11276 // an M4-and-later `Rest` / `Grpc` split of [`WitTarget::Http`],
11277 // a `Queue`-shaped peer of [`WitTarget::Store`]) would have
11278 // to thread through in lockstep or the DFS exclusion would
11279 // silently disagree with the peer diagnostic templates on
11280 // which arms carry sync-versus-async semantics. Peer of the
11281 // sibling [`crate::CaixaKind`] (f5bba80),
11282 // [`PlacementStrategy`] (766ec63),
11283 // [`crate::supervisor::RestartStrategy`],
11284 // [`crate::supervisor::RestartPolicy`], and
11285 // [`crate::upgrade::UpgradeInstruction`] (915a934)
11286 // `IsVariant` derives on the sibling closed-set typed-enum
11287 // discriminator axes — extends the same one-typed-dispatch-
11288 // per-variant discipline onto the last unlifted closed-set
11289 // typed-enum discriminator on the caixa surface (the M3
11290 // mesh-slot per-`:contratos` target-arm axis), closing the
11291 // arm-discriminator convergence trajectory across every
11292 // closed-set typed enum in caixa-core.
11293 let rows: [(WitTarget<'static>, [bool; 4]); 4] = [
11294 (
11295 WitTarget::Http { endpoint: "/x" },
11296 [true, false, false, false],
11297 ),
11298 (
11299 WitTarget::PubSub {
11300 subject: "events.x",
11301 },
11302 [false, true, false, false],
11303 ),
11304 (
11305 WitTarget::Store { slot: "kv/x" },
11306 [false, false, true, false],
11307 ),
11308 (WitTarget::Capability, [false, false, false, true]),
11309 ];
11310 for (variant, expected) in rows {
11311 let observed = [
11312 variant.is_http(),
11313 variant.is_pubsub(),
11314 variant.is_store(),
11315 variant.is_capability(),
11316 ];
11317 assert_eq!(
11318 observed, expected,
11319 "WitTarget::{variant:?} is_* predicates must partition \
11320 the arm set (http, pubsub, store, capability); got {observed:?}"
11321 );
11322 }
11323 }
11324
11325 #[test]
11326 fn wit_target_is_variant_predicates_are_const_fn() {
11327 // The [`gen_platform::IsVariant`] derive emits `const fn`
11328 // predicates on the peer [`crate::CaixaKind`] +
11329 // [`crate::upgrade::UpgradeInstruction`] +
11330 // [`crate::supervisor::RestartStrategy`] +
11331 // [`crate::supervisor::RestartPolicy`] +
11332 // [`PlacementStrategy`] closed-set typed enums — pin the
11333 // same posture on [`WitTarget`] so a future accidental
11334 // downgrade to non-`const` (an added runtime helper reachable
11335 // only from a non-`const` context, a manual hand-rolled
11336 // `impl` that shadows the derive-generated method) trips at
11337 // caixa-core build time rather than surfacing as a downstream
11338 // `const`-context regression far from the derive declaration.
11339 //
11340 // Unlike the peer unit-variant enums (`CaixaKind` /
11341 // `PlacementStrategy` / `RestartStrategy` / `RestartPolicy`)
11342 // whose `const` constructors need no arguments, the three
11343 // payload-carrying [`WitTarget`] arms are const-constructed
11344 // through `&'static str` payloads — the same `'static`
11345 // lifetime the closed-set typed enum's four-arm partition
11346 // pin above already threads through.
11347 const HTTP: WitTarget<'static> = WitTarget::Http { endpoint: "/x" };
11348 const PUBSUB: WitTarget<'static> = WitTarget::PubSub { subject: "e" };
11349 const STORE: WitTarget<'static> = WitTarget::Store { slot: "kv/x" };
11350 const CAPABILITY: WitTarget<'static> = WitTarget::Capability;
11351 const IS_HTTP: bool = HTTP.is_http();
11352 const IS_PUBSUB: bool = PUBSUB.is_pubsub();
11353 const IS_STORE: bool = STORE.is_store();
11354 const IS_CAPABILITY: bool = CAPABILITY.is_capability();
11355 assert!(IS_HTTP);
11356 assert!(IS_PUBSUB);
11357 assert!(IS_STORE);
11358 assert!(IS_CAPABILITY);
11359 }
11360
11361 #[test]
11362 fn detect_sync_cycles_skips_pubsub_edges_through_is_pubsub_predicate() {
11363 // Consumer-side pin on the sole production converge site:
11364 // [`AplicacaoSpec::detect_sync_cycles`] excludes pub-sub
11365 // edges from the synchronous-subgraph DFS via the lifted
11366 // [`WitTarget::is_pubsub`] `IsVariant`-derived arm-discriminator
11367 // predicate (rebound from the prior raw
11368 // `matches!(c.target()?, WitTarget::PubSub { .. })` on the
11369 // variant). Byte-equivalent today (`is_pubsub` is the
11370 // derive-generated `matches!(self, Self::PubSub { .. })` by
11371 // construction, the `#[is_variant(name = "pubsub")]` override
11372 // aliasing the auto-derived `is_pub_sub` back to the sibling
11373 // [`WitContract::is_pubsub`] name); pin the behavior so a
11374 // future accidental drift (a rebind onto a peer arm
11375 // predicate, a manual hand-rolled `impl` that shadows the
11376 // derive-generated method with different semantics, a peer
11377 // arm rename that shifts which variant carries sync-versus-
11378 // async semantics) trips at caixa-core test time rather than
11379 // at some downstream operator's runtime dispatch far from the
11380 // rebind commit.
11381 //
11382 // The fixture constructs a two-Servico Aplicacao with one
11383 // pub-sub edge that would close a sync-cycle if the DFS did
11384 // not exclude it: `a → b` (pub-sub) + `b → a` (http). The
11385 // pub-sub exclusion means the DFS sees only the `b → a` HTTP
11386 // edge, which is not a cycle. A regression in the converge
11387 // (a rebind that reads the pub-sub arm as sync) would report
11388 // `AplicacaoError::ContratoCycle`.
11389 let s = AplicacaoSpec {
11390 membros: vec![membro("a", "^0.1"), membro("b", "^0.1")],
11391 contratos: vec![
11392 // Pub-sub edge: DFS must skip via is_pubsub().
11393 WitContract {
11394 de: "a".into(),
11395 para: "b".into(),
11396 wit: "nats:pub-sub".into(),
11397 endpoint: None,
11398 subject: Some("events.x".into()),
11399 slot: None,
11400 },
11401 // HTTP edge: DFS must include.
11402 WitContract {
11403 de: "b".into(),
11404 para: "a".into(),
11405 wit: "wasi:http/proxy".into(),
11406 endpoint: Some("/x".into()),
11407 subject: None,
11408 slot: None,
11409 },
11410 ],
11411 politicas: MeshPolicy::default(),
11412 placement: Placement {
11413 estrategia: PlacementStrategy::Replicated,
11414 clusters: vec!["rio".into()],
11415 affinity: None,
11416 shard_key: None,
11417 },
11418 entrada: None,
11419 };
11420 s.validate()
11421 .expect("pub-sub edge must be excluded from sync-cycle DFS");
11422 }
11423
11424 #[test]
11425 fn wit_target_field_name_routes_through_label_and_expected_diagnostic() {
11426 // Consumer-side pin: the same three peer consts thread through
11427 // both the [`WitTarget::label`] template (leading-`:` keyword
11428 // prefix in the duplicate-`:contratos` diagnostic) and the
11429 // [`WitContract::target`] gate's [`AplicacaoError::
11430 // ContratoMissingTarget`] `expected:` scalar (the field the
11431 // author needs to add). Pin both routes at once so a future
11432 // refactor can't accidentally split them onto separate string
11433 // literals — the "one place, everywhere reaches for it"
11434 // invariant the peer const set carries.
11435 let http_label = WitTarget::Http { endpoint: "/x" }.label();
11436 assert!(
11437 http_label.starts_with(&format!(":{} ", WitTarget::HTTP_FIELD_NAME)),
11438 "label must lead with :{} keyword (got {http_label:?})",
11439 WitTarget::HTTP_FIELD_NAME,
11440 );
11441
11442 let mut s = three_member_spec();
11443 s.contratos.push(WitContract {
11444 de: "cart".into(),
11445 para: "catalog".into(),
11446 wit: "kafka:topic".into(),
11447 endpoint: None,
11448 subject: None,
11449 slot: None,
11450 });
11451 match s.validate().unwrap_err() {
11452 AplicacaoError::ContratoMissingTarget { expected, .. } => {
11453 assert_eq!(expected, WitTarget::PUBSUB_FIELD_NAME);
11454 }
11455 other => panic!("expected ContratoMissingTarget, got {other:?}"),
11456 }
11457 }
11458
11459 #[test]
11460 fn duplicate_pubsub_diagnostic_names_offending_subject() {
11461 // Peer of `rejects_duplicate_contrato_diagnostic_names_offending_target`
11462 // on the pub-sub target axis: the duplicate-edge diagnostic
11463 // must name the `:subject` payload verbatim (not just the
11464 // `(de, para, wit)` triple). Prior to lifting the label onto
11465 // [`WitTarget::label`] the diagnostic derived the label from
11466 // raw [`WitContract`] `Option<String>` probes — a future
11467 // `WitTarget` variant addition (M4 per-edge WIT registry)
11468 // would silently fall through to the `Capability` "no
11469 // payload" default without a compiler warning. Pinning the
11470 // pub-sub arm's format closes the second of three
11471 // payload-carrying `WitTarget` arms this diagnostic threads
11472 // through.
11473 let mut s = three_member_spec();
11474 let pubsub = WitContract {
11475 de: "payment".into(),
11476 para: "cart".into(),
11477 wit: "nats:pub-sub".into(),
11478 endpoint: None,
11479 subject: Some("events.checkout.paid".into()),
11480 slot: None,
11481 };
11482 s.contratos.push(pubsub.clone());
11483 s.contratos.push(pubsub);
11484 let err = s.validate().unwrap_err();
11485 let msg = format!("{err}");
11486 assert!(
11487 msg.contains(":subject \"events.checkout.paid\""),
11488 "duplicate-pubsub diagnostic must name the offending \
11489 :subject payload (got: {msg:?})"
11490 );
11491 }
11492
11493 #[test]
11494 fn duplicate_store_diagnostic_names_offending_slot() {
11495 // Peer of the HTTP + pub-sub duplicate-diagnostic pins on the
11496 // key-value target axis: the diagnostic must name the `:slot`
11497 // payload verbatim. Third of three payload-carrying
11498 // `WitTarget` arms this diagnostic threads through, closing
11499 // the per-arm label pin trilogy (`Http` — 6841,
11500 // `PubSub` + `Store` — this test + peer above).
11501 let mut s = three_member_spec();
11502 let store = WitContract {
11503 de: "cart".into(),
11504 para: "payment".into(),
11505 wit: "wasi:keyvalue/store".into(),
11506 endpoint: None,
11507 subject: None,
11508 slot: Some("checkout/$orderId".into()),
11509 };
11510 s.contratos
11511 .retain(|c| !(c.de == "cart" && c.para == "payment"));
11512 s.contratos.push(store.clone());
11513 s.contratos.push(store);
11514 let err = s.validate().unwrap_err();
11515 let msg = format!("{err}");
11516 assert!(
11517 msg.contains(":slot \"checkout/$orderId\""),
11518 "duplicate-store diagnostic must name the offending :slot \
11519 payload (got: {msg:?})"
11520 );
11521 }
11522
11523 #[test]
11524 fn rejects_entrada_path_without_leading_slash() {
11525 let mut s = three_member_spec();
11526 s.entrada.as_mut().unwrap().paths = vec!["/api/cart".into(), "api/products".into()];
11527 let err = s.validate().unwrap_err();
11528 assert!(
11529 matches!(err, AplicacaoError::EntradaPathNotAbsolute { ref path } if path == "api/products"),
11530 "got {err:?}"
11531 );
11532 }
11533
11534 #[test]
11535 fn rejects_empty_entrada_path() {
11536 let mut s = three_member_spec();
11537 s.entrada.as_mut().unwrap().paths = vec!["/api/cart".into(), "".into()];
11538 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EntradaPathEmpty);
11539 }
11540
11541 #[test]
11542 fn rejects_duplicate_entrada_paths() {
11543 let mut s = three_member_spec();
11544 s.entrada.as_mut().unwrap().paths = vec![
11545 "/api/cart".into(),
11546 "/api/products".into(),
11547 "/api/cart".into(),
11548 ];
11549 let err = s.validate().unwrap_err();
11550 assert!(
11551 matches!(err, AplicacaoError::EntradaPathDuplicate { ref path } if path == "/api/cart"),
11552 "got {err:?}"
11553 );
11554 }
11555
11556 #[test]
11557 fn rejects_zero_entrada_port() {
11558 let mut s = three_member_spec();
11559 s.entrada.as_mut().unwrap().port = 0;
11560 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EntradaPortZero);
11561 }
11562
11563 // ── :entrada :paths value-shape gate ─────────────────────────────
11564 //
11565 // Mirrors the `:entrada :host` value-shape suite (c7d05ec) on the
11566 // sibling `:paths` axis. Every authoring footgun the K8s Gateway
11567 // API v1 apiserver / webhook would catch on `HTTPRoute.spec.rules[]
11568 // .matches[].path.value` (caixa-mesh/src/lib.rs:498) at admission
11569 // time now becomes a caixa-build-time `EntradaPathInvalid` with
11570 // the offending `:paths` entry named verbatim.
11571
11572 #[test]
11573 fn rejects_entrada_path_with_query() {
11574 // Fail-before-pass-after pin — pre-gate the `?q=1` suffix
11575 // silently passed validate and the Gateway API webhook
11576 // rejected it at apply time with no source citation.
11577 let mut s = three_member_spec();
11578 s.entrada.as_mut().unwrap().paths = vec!["/api/cart?q=1".into()];
11579 let err = s.validate().unwrap_err();
11580 assert!(
11581 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11582 if path == "/api/cart?q=1" && reason.contains("must not contain `?`")),
11583 "got {err:?}"
11584 );
11585 }
11586
11587 #[test]
11588 fn rejects_entrada_path_with_fragment() {
11589 let mut s = three_member_spec();
11590 s.entrada.as_mut().unwrap().paths = vec!["/api/cart#frag".into()];
11591 let err = s.validate().unwrap_err();
11592 assert!(
11593 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11594 if path == "/api/cart#frag" && reason.contains("must not contain `#`")),
11595 "got {err:?}"
11596 );
11597 }
11598
11599 #[test]
11600 fn rejects_entrada_path_with_space() {
11601 let mut s = three_member_spec();
11602 s.entrada.as_mut().unwrap().paths = vec!["/api/my cart".into()];
11603 let err = s.validate().unwrap_err();
11604 assert!(
11605 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11606 if path == "/api/my cart" && reason.contains("whitespace")),
11607 "got {err:?}"
11608 );
11609 }
11610
11611 #[test]
11612 fn rejects_entrada_path_with_tab() {
11613 let mut s = three_member_spec();
11614 s.entrada.as_mut().unwrap().paths = vec!["/api/\tcart".into()];
11615 let err = s.validate().unwrap_err();
11616 assert!(
11617 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11618 if path == "/api/\tcart" && reason.contains("whitespace")),
11619 "got {err:?}"
11620 );
11621 }
11622
11623 #[test]
11624 fn rejects_entrada_path_with_control_char() {
11625 // 0x01 (SOH) — a non-whitespace control char surfaces the
11626 // distinct "control character" reason arm, separate from
11627 // the whitespace arm. Pinned so a future refactor that
11628 // collapses the two arms can't accidentally drop the more
11629 // self-locating diagnostic.
11630 let mut s = three_member_spec();
11631 s.entrada.as_mut().unwrap().paths = vec!["/api/\x01cart".into()];
11632 let err = s.validate().unwrap_err();
11633 assert!(
11634 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11635 if path == "/api/\x01cart" && reason.contains("control character")),
11636 "got {err:?}"
11637 );
11638 }
11639
11640 #[test]
11641 fn rejects_entrada_path_with_non_ascii() {
11642 // `café` — the un-percent-encoded UTF-8 footgun the RFC 3986
11643 // unreserved-set rule rejects. The Gateway API webhook
11644 // rejects literal non-ASCII bytes; percent-encoding is the
11645 // only way to author non-ASCII in a path.
11646 let mut s = three_member_spec();
11647 s.entrada.as_mut().unwrap().paths = vec!["/api/café".into()];
11648 let err = s.validate().unwrap_err();
11649 assert!(
11650 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11651 if path == "/api/café" && reason.contains("non-ASCII")),
11652 "got {err:?}"
11653 );
11654 }
11655
11656 #[test]
11657 fn rejects_entrada_path_with_consecutive_slashes() {
11658 let mut s = three_member_spec();
11659 s.entrada.as_mut().unwrap().paths = vec!["/api//cart".into()];
11660 let err = s.validate().unwrap_err();
11661 assert!(
11662 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11663 if path == "/api//cart" && reason.contains("consecutive `/`")),
11664 "got {err:?}"
11665 );
11666 }
11667
11668 #[test]
11669 fn rejects_entrada_path_with_dot_segment() {
11670 let mut s = three_member_spec();
11671 s.entrada.as_mut().unwrap().paths = vec!["/api/./cart".into()];
11672 let err = s.validate().unwrap_err();
11673 assert!(
11674 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11675 if path == "/api/./cart" && reason.contains("`.` segment")),
11676 "got {err:?}"
11677 );
11678 }
11679
11680 #[test]
11681 fn rejects_entrada_path_with_trailing_dot_segment() {
11682 // The bare `/.` and the trailing `/foo/.` are both rejected
11683 // by the Gateway API webhook; pinned separately so a future
11684 // narrowing that catches only the inner form surfaces here.
11685 let mut s = three_member_spec();
11686 s.entrada.as_mut().unwrap().paths = vec!["/api/.".into()];
11687 let err = s.validate().unwrap_err();
11688 assert!(
11689 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11690 if path == "/api/." && reason.contains("`.` segment")),
11691 "got {err:?}"
11692 );
11693 }
11694
11695 #[test]
11696 fn rejects_entrada_path_with_parent_segment() {
11697 let mut s = three_member_spec();
11698 s.entrada.as_mut().unwrap().paths = vec!["/api/../etc".into()];
11699 let err = s.validate().unwrap_err();
11700 assert!(
11701 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11702 if path == "/api/../etc" && reason.contains("`..` parent-segment")),
11703 "got {err:?}"
11704 );
11705 }
11706
11707 #[test]
11708 fn rejects_entrada_path_with_trailing_parent_segment() {
11709 // Trailing `/..` — symmetric arm of the parent-segment rule,
11710 // pinned separately so a future relaxation that only checks
11711 // the inner form (`/../`) surfaces here.
11712 let mut s = three_member_spec();
11713 s.entrada.as_mut().unwrap().paths = vec!["/api/..".into()];
11714 let err = s.validate().unwrap_err();
11715 assert!(
11716 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11717 if path == "/api/.." && reason.contains("`..` parent-segment")),
11718 "got {err:?}"
11719 );
11720 }
11721
11722 #[test]
11723 fn rejects_entrada_path_too_long() {
11724 // 1025-byte path — one over the Gateway API HTTPPathMatch.value
11725 // maxLength cap of 1024. Use a `/api/` prefix + a 1020-byte
11726 // ASCII-alphanumeric body so only the length rule fires.
11727 let mut s = three_member_spec();
11728 let big = format!("/api/{}", "a".repeat(1020));
11729 assert_eq!(big.len(), 1025);
11730 s.entrada.as_mut().unwrap().paths = vec![big.clone()];
11731 let err = s.validate().unwrap_err();
11732 assert!(
11733 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11734 if path == &big && reason.contains("max length of 1024")),
11735 "got {err:?}"
11736 );
11737 }
11738
11739 #[test]
11740 fn entrada_path_max_length_validates() {
11741 // 1024-byte path — exactly the Gateway API HTTPPathMatch.value
11742 // maxLength cap. Boundary pin: drift in the cap surfaces here
11743 // and at `rejects_entrada_path_too_long` simultaneously.
11744 let mut s = three_member_spec();
11745 let big = format!("/api/{}", "a".repeat(1019));
11746 assert_eq!(big.len(), 1024);
11747 s.entrada.as_mut().unwrap().paths = vec![big];
11748 s.validate().unwrap();
11749 }
11750
11751 #[test]
11752 fn entrada_accepts_canonical_paths() {
11753 // Positive-control sweep — every form the Gateway API
11754 // apiserver accepts must round-trip through validate. Covers
11755 // the root catch-all, plain paths, dot-prefixed segments
11756 // (hidden-file-style, distinct from `.` and `..` segments
11757 // which are rejected), digit-bearing segments, the canonical
11758 // route-template `:param` form (`:` is RFC 3986 reserved-set
11759 // valid in paths), trailing-slash form, percent-encoded
11760 // segments, and an interior `..` *substring* (`/foo..bar` is
11761 // not the `..` segment and is allowed).
11762 for path in [
11763 "/",
11764 "/api/cart",
11765 "/healthz",
11766 "/api/.config",
11767 "/v1/products",
11768 "/products/:id",
11769 "/api/cart/",
11770 "/api/caf%C3%A9",
11771 "/foo..bar",
11772 "/...",
11773 ] {
11774 let mut s = three_member_spec();
11775 s.entrada.as_mut().unwrap().paths = vec![path.into()];
11776 s.validate()
11777 .unwrap_or_else(|e| panic!("expected {path:?} to validate, got {e:?}"));
11778 }
11779 }
11780
11781 #[test]
11782 fn entrada_path_empty_takes_precedence_over_invalid() {
11783 // Ordering pin: `EntradaPathEmpty` is the more self-locating
11784 // diagnostic on `""` and must lead — `validate_entrada_path`
11785 // is only reached after the empty-check fires at the call
11786 // site. (The predicate itself defends against direct
11787 // invocation by returning the same error on `""`.)
11788 let mut s = three_member_spec();
11789 s.entrada.as_mut().unwrap().paths = vec!["".into()];
11790 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EntradaPathEmpty);
11791 }
11792
11793 #[test]
11794 fn entrada_path_not_absolute_takes_precedence_over_invalid() {
11795 // Ordering pin: a path without a leading `/` surfaces the
11796 // narrower `EntradaPathNotAbsolute` diagnostic first; the
11797 // value-shape gate is only consulted on paths that already
11798 // satisfy the absolute-prefix invariant.
11799 let mut s = three_member_spec();
11800 // `bad path` would fire the whitespace rule under the
11801 // value-shape gate, but missing-leading-`/` is the more
11802 // self-locating diagnostic.
11803 s.entrada.as_mut().unwrap().paths = vec!["bad path".into()];
11804 let err = s.validate().unwrap_err();
11805 assert!(
11806 matches!(err, AplicacaoError::EntradaPathNotAbsolute { ref path } if path == "bad path"),
11807 "got {err:?}"
11808 );
11809 }
11810
11811 #[test]
11812 fn entrada_path_invalid_fires_before_duplicate_check() {
11813 // Ordering pin: a malformed path on the *first* entry of a
11814 // would-be duplicate pair fires the value-shape gate before
11815 // the duplicate gate, mirroring the
11816 // `placement_cluster_invalid_fires_before_duplicate_check`
11817 // (6cbb900) pattern on the peer axis.
11818 let mut s = three_member_spec();
11819 s.entrada.as_mut().unwrap().paths = vec!["/api?q".into(), "/api?q".into()];
11820 let err = s.validate().unwrap_err();
11821 assert!(
11822 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, .. } if path == "/api?q"),
11823 "got {err:?}"
11824 );
11825 }
11826
11827 #[test]
11828 fn entrada_path_diagnostic_carries_offending_path() {
11829 // Diagnostic-shape pin — the offending path + a non-empty
11830 // reason flow through verbatim so the author can grep their
11831 // caixa.lisp for `:paths` and fix it in one edit. Same shape
11832 // as `entrada_host_diagnostic_carries_offending_host` (c7d05ec).
11833 let mut s = three_member_spec();
11834 s.entrada.as_mut().unwrap().paths = vec!["/api?q=1".into()];
11835 let err = s.validate().unwrap_err();
11836 match err {
11837 AplicacaoError::EntradaPathInvalid { path, reason } => {
11838 assert_eq!(path, "/api?q=1");
11839 assert!(!reason.is_empty(), "reason field must be non-empty");
11840 }
11841 other => panic!("expected EntradaPathInvalid, got {other:?}"),
11842 }
11843 }
11844
11845 #[test]
11846 fn rejects_entrada_path_with_curly_brace_template_form() {
11847 // Per-axis pin on the shared `is_gateway_api_http_path`
11848 // reserved-byte arm: the canonical "I wrote an OpenAPI
11849 // path-template `{id}` instead of the Gateway API `:id` form"
11850 // footgun the K8s apiserver would otherwise catch at admission
11851 // time on every `HTTPRoute.spec.rules[].matches[].path.value`
11852 // landing site, far from the caixa.lisp. Surfaces as
11853 // `EntradaPathInvalid` carrying the offending path verbatim
11854 // plus the canonical `%7B`/`%7D` percent-encoding remediation
11855 // — the substrate-side `gateway_api_http_path_rejects_every_
11856 // reserved_printable_ascii_byte` predicate-level sweep pins the
11857 // full eleven-byte set; this per-axis pin confirms the
11858 // diagnostic flows through to the `EntradaPathInvalid` variant.
11859 let mut s = three_member_spec();
11860 s.entrada.as_mut().unwrap().paths = vec!["/api/cart/{id}".into()];
11861 let err = s.validate().unwrap_err();
11862 assert!(
11863 matches!(err, AplicacaoError::EntradaPathInvalid { ref path, ref reason }
11864 if path == "/api/cart/{id}"
11865 && reason.contains("reserved character")
11866 && reason.contains("'{'")
11867 && reason.contains("%7B")),
11868 "got {err:?}"
11869 );
11870 }
11871
11872 #[test]
11873 fn rejects_http_contrato_endpoint_with_curly_brace_template_form() {
11874 // Per-axis peer of `rejects_entrada_path_with_curly_brace_
11875 // template_form` on the sibling `:contratos :endpoint` axis.
11876 // Same shared `is_gateway_api_http_path` reserved-byte arm
11877 // fires through `ContratoEndpointInvalid`, with the offending
11878 // endpoint + `:de` + `:para` + reason flowing through verbatim.
11879 // Pins that the lifted predicate's tightening lands on both
11880 // caller axes simultaneously — one source of truth for the
11881 // Gateway API HTTPPathMatch.value accepted set.
11882 let err = contrato_endpoint_err("/api/cart/{id}");
11883 assert!(
11884 matches!(err, AplicacaoError::ContratoEndpointInvalid { ref endpoint, ref reason, .. }
11885 if endpoint == "/api/cart/{id}"
11886 && reason.contains("reserved character")
11887 && reason.contains("'{'")
11888 && reason.contains("%7B")),
11889 "got {err:?}"
11890 );
11891 }
11892
11893 // ── :entrada :host value-shape gate ──────────────────────────────
11894 //
11895 // Mirrors the `:entrada :paths` value-shape suite (eb3456d) on
11896 // the sibling `:host` axis. Every authoring footgun the K8s
11897 // Gateway API v1 apiserver would catch at admission time becomes
11898 // a caixa-build-time `EntradaHostInvalid` with the offending
11899 // `:host` named verbatim. Same diagnostic shape as
11900 // `MembroVersaoInvalid` (9888b13).
11901
11902 #[test]
11903 fn rejects_entrada_host_with_scheme() {
11904 // Fail-before-pass-after pin — pre-gate codebases silently
11905 // accepted `https://…` and the apiserver rejected it at apply
11906 // time with no source citation.
11907 let mut s = three_member_spec();
11908 s.entrada.as_mut().unwrap().host = "https://checkout.quero.cloud".into();
11909 let err = s.validate().unwrap_err();
11910 assert!(
11911 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, .. }
11912 if host == "https://checkout.quero.cloud"),
11913 "got {err:?}"
11914 );
11915 }
11916
11917 #[test]
11918 fn rejects_entrada_host_with_port() {
11919 // The `:8080` port suffix is the canonical "I forgot the port
11920 // belongs in `:entrada :port`" footgun. The top-level `:` arm
11921 // (introduced after the per-label loop-only impl silently
11922 // surfaced a deep "label \"cloud:8080\" contains invalid
11923 // character ':'" leak) names the canonical fix verbatim — the
11924 // `:entrada :port` slot.
11925 let mut s = three_member_spec();
11926 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud:8080".into();
11927 let err = s.validate().unwrap_err();
11928 assert!(
11929 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, ref reason }
11930 if host == "checkout.quero.cloud:8080"
11931 && reason.contains(":entrada :port")),
11932 "got {err:?}"
11933 );
11934 }
11935
11936 #[test]
11937 fn rejects_entrada_host_with_trailing_colon() {
11938 // Trailing `:` (e.g. an in-progress `:host "example.com:"`
11939 // edit) — the per-label loop would land it as a deep
11940 // "label \"com:\" must start and end with an alphanumeric"
11941 // / "contains invalid character ':'" leak. The top-level
11942 // `:` arm pre-empts with the canonical `:port` slot
11943 // diagnostic.
11944 let mut s = three_member_spec();
11945 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud:".into();
11946 let err = s.validate().unwrap_err();
11947 assert!(
11948 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, ref reason }
11949 if host == "checkout.quero.cloud:"
11950 && reason.contains(":entrada :port")),
11951 "got {err:?}"
11952 );
11953 }
11954
11955 #[test]
11956 fn rejects_entrada_host_unbracketed_ipv6_literal() {
11957 // Unbracketed IPv6 literal — Gateway API v1 Hostname forbids IP
11958 // literals across the board (peer with `rejects_entrada_host_
11959 // ipv4_literal` above for the four-label-all-digit IPv4 arm).
11960 // Before this top-level `:` arm landed the per-label loop
11961 // surfaced a single-label byte-class diagnostic that named the
11962 // `:` byte but not the IP-literal prohibition. The top-level
11963 // `:` arm names both the `:port` slot and the IP-literal
11964 // prohibition verbatim, so an author whose `:host "2001:..."`
11965 // value lands here gets a self-locating fix either way.
11966 let mut s = three_member_spec();
11967 s.entrada.as_mut().unwrap().host = "2001:db8::1".into();
11968 let err = s.validate().unwrap_err();
11969 assert!(
11970 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, ref reason }
11971 if host == "2001:db8::1"
11972 && reason.contains("IPv6")),
11973 "got {err:?}"
11974 );
11975 }
11976
11977 #[test]
11978 fn rejects_entrada_host_wildcard_with_port() {
11979 // Wildcard host with port suffix — the `*.` strip and the
11980 // per-label loop on `["foo", "quero", "cloud:8080"]` would
11981 // surface the deep byte-class leak. The top-level `:` arm sits
11982 // upstream of the `*.` strip, so it names the canonical `:port`
11983 // fix verbatim regardless of whether the host is wildcard-led.
11984 let mut s = three_member_spec();
11985 s.entrada.as_mut().unwrap().host = "*.quero.cloud:8080".into();
11986 let err = s.validate().unwrap_err();
11987 assert!(
11988 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, ref reason }
11989 if host == "*.quero.cloud:8080"
11990 && reason.contains(":entrada :port")),
11991 "got {err:?}"
11992 );
11993 }
11994
11995 #[test]
11996 fn rejects_entrada_host_with_path() {
11997 let mut s = three_member_spec();
11998 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud/api".into();
11999 let err = s.validate().unwrap_err();
12000 assert!(
12001 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, .. }
12002 if host == "checkout.quero.cloud/api"),
12003 "got {err:?}"
12004 );
12005 }
12006
12007 #[test]
12008 fn rejects_entrada_host_with_uppercase() {
12009 // Gateway API regex is `[a-z0-9]…` strictly — uppercase is
12010 // rejected, not silently lower-cased.
12011 let mut s = three_member_spec();
12012 s.entrada.as_mut().unwrap().host = "Checkout.quero.cloud".into();
12013 let err = s.validate().unwrap_err();
12014 assert!(
12015 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12016 if reason.contains("uppercase")),
12017 "got {err:?}"
12018 );
12019 }
12020
12021 #[test]
12022 fn rejects_entrada_host_with_underscore() {
12023 // RFC 1123 allows `[a-z0-9-]` only; underscore is the
12024 // canonical "I'm thinking of HTTP cookies / SRV records" leak.
12025 let mut s = three_member_spec();
12026 s.entrada.as_mut().unwrap().host = "checkout_app.quero.cloud".into();
12027 let err = s.validate().unwrap_err();
12028 assert!(
12029 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12030 if reason.contains('_')),
12031 "got {err:?}"
12032 );
12033 }
12034
12035 #[test]
12036 fn rejects_entrada_host_ipv4_literal() {
12037 // Gateway API v1 explicitly forbids IP literals as Hostnames.
12038 let mut s = three_member_spec();
12039 s.entrada.as_mut().unwrap().host = "10.0.0.1".into();
12040 let err = s.validate().unwrap_err();
12041 assert!(
12042 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12043 if reason.contains("IPv4")),
12044 "got {err:?}"
12045 );
12046 }
12047
12048 #[test]
12049 fn rejects_entrada_host_with_trailing_dot() {
12050 // The Gateway API regex anchors at end-of-string with no
12051 // trailing `.` allowance — the FQDN root-dot form is rejected.
12052 let mut s = three_member_spec();
12053 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud.".into();
12054 let err = s.validate().unwrap_err();
12055 assert!(
12056 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, .. }
12057 if host == "checkout.quero.cloud."),
12058 "got {err:?}"
12059 );
12060 }
12061
12062 #[test]
12063 fn rejects_entrada_host_with_leading_dot() {
12064 let mut s = three_member_spec();
12065 s.entrada.as_mut().unwrap().host = ".checkout.quero.cloud".into();
12066 let err = s.validate().unwrap_err();
12067 assert!(
12068 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12069 if reason.contains("empty label")),
12070 "got {err:?}"
12071 );
12072 }
12073
12074 #[test]
12075 fn rejects_entrada_host_with_consecutive_dots() {
12076 let mut s = three_member_spec();
12077 s.entrada.as_mut().unwrap().host = "checkout..quero.cloud".into();
12078 let err = s.validate().unwrap_err();
12079 assert!(
12080 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12081 if reason.contains("empty label")),
12082 "got {err:?}"
12083 );
12084 }
12085
12086 #[test]
12087 fn rejects_entrada_host_with_leading_hyphen_label() {
12088 let mut s = three_member_spec();
12089 s.entrada.as_mut().unwrap().host = "-checkout.quero.cloud".into();
12090 let err = s.validate().unwrap_err();
12091 assert!(
12092 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12093 if reason.contains("alphanumeric")),
12094 "got {err:?}"
12095 );
12096 }
12097
12098 #[test]
12099 fn rejects_entrada_host_with_trailing_hyphen_label() {
12100 let mut s = three_member_spec();
12101 s.entrada.as_mut().unwrap().host = "checkout-.quero.cloud".into();
12102 let err = s.validate().unwrap_err();
12103 assert!(
12104 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12105 if reason.contains("alphanumeric")),
12106 "got {err:?}"
12107 );
12108 }
12109
12110 #[test]
12111 fn rejects_entrada_host_with_inner_wildcard() {
12112 // Gateway API allows `*` only as the first label (`*.foo`);
12113 // any inner or trailing `*` is rejected.
12114 let mut s = three_member_spec();
12115 s.entrada.as_mut().unwrap().host = "checkout.*.quero.cloud".into();
12116 let err = s.validate().unwrap_err();
12117 assert!(
12118 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12119 if reason.contains("wildcard")),
12120 "got {err:?}"
12121 );
12122 }
12123
12124 #[test]
12125 fn rejects_entrada_host_bare_wildcard() {
12126 // `*.` with no domain is meaningless; Gateway API rejects it.
12127 let mut s = three_member_spec();
12128 s.entrada.as_mut().unwrap().host = "*.".into();
12129 let err = s.validate().unwrap_err();
12130 assert!(
12131 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12132 if reason.contains("wildcard")),
12133 "got {err:?}"
12134 );
12135 }
12136
12137 #[test]
12138 fn rejects_entrada_host_with_whitespace() {
12139 let mut s = three_member_spec();
12140 s.entrada.as_mut().unwrap().host = "checkout .quero.cloud".into();
12141 let err = s.validate().unwrap_err();
12142 assert!(
12143 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12144 if reason.contains("whitespace")),
12145 "got {err:?}"
12146 );
12147 }
12148
12149 #[test]
12150 fn rejects_entrada_host_space_names_offending_byte() {
12151 // Embedded space in the `:entrada :host` axis surfaces the
12152 // byte-naming diagnostic through the lifted
12153 // `find_ascii_whitespace_byte` predicate. Peer with the
12154 // sibling `parse_rejects_leading_whitespace` pins on
12155 // `supervisor::duration_codec` (a7ae622) — same "the
12156 // diagnostic carries the offending byte's `0x{b:02x}` shape"
12157 // discipline extended from the shared duration codec to the
12158 // Gateway API v1 Hostname axis.
12159 let mut s = three_member_spec();
12160 s.entrada.as_mut().unwrap().host = "checkout .quero.cloud".into();
12161 let err = s.validate().unwrap_err();
12162 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12163 panic!("expected EntradaHostInvalid, got {err:?}");
12164 };
12165 assert!(
12166 reason.contains("ASCII whitespace byte"),
12167 "expected byte-naming diagnostic, got {reason:?}"
12168 );
12169 assert!(
12170 reason.contains("0x20"),
12171 "expected offending space byte 0x20, got {reason:?}"
12172 );
12173 }
12174
12175 #[test]
12176 fn rejects_entrada_host_tab_names_offending_byte() {
12177 // Embedded tab byte in the `:entrada :host` axis — the
12178 // canonical paste-from-YAML-block-scalar / paste-from-
12179 // indented-doc footgun. Pins that the lifted predicate covers
12180 // the full ASCII-whitespace set (`u8::is_ascii_whitespace` —
12181 // space `0x20`, tab `0x09`, LF `0x0a`, FF `0x0c`, CR `0x0d`),
12182 // not just the leading-space case the pre-lift `.bytes().any`
12183 // arm's opaque "must not contain whitespace" reason already
12184 // covered. Peer with `parse_rejects_tab_byte` on
12185 // `supervisor::duration_codec` (a7ae622).
12186 let mut s = three_member_spec();
12187 s.entrada.as_mut().unwrap().host = "checkout.\tquero.cloud".into();
12188 let err = s.validate().unwrap_err();
12189 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12190 panic!("expected EntradaHostInvalid, got {err:?}");
12191 };
12192 assert!(
12193 reason.contains("ASCII whitespace byte"),
12194 "expected byte-naming diagnostic, got {reason:?}"
12195 );
12196 assert!(
12197 reason.contains("0x09"),
12198 "expected offending tab byte 0x09, got {reason:?}"
12199 );
12200 }
12201
12202 #[test]
12203 fn rejects_entrada_host_lf_names_offending_byte() {
12204 // Embedded LF byte in the `:entrada :host` axis — the
12205 // canonical paste-from-shell-heredoc / paste-from-multiline-
12206 // doc footgun the caixa-mesh YAML emitter would silently
12207 // reinterpret at the Gateway API v1 HTTPRoute admission
12208 // layer (an embedded LF byte in a YAML plain scalar either
12209 // truncates the value at the emitter or crashes the parser
12210 // on the k8s-apiserver side). Pins the third representative
12211 // of the full ASCII-whitespace set through the shared
12212 // predicate.
12213 let mut s = three_member_spec();
12214 s.entrada.as_mut().unwrap().host = "checkout\n.quero.cloud".into();
12215 let err = s.validate().unwrap_err();
12216 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12217 panic!("expected EntradaHostInvalid, got {err:?}");
12218 };
12219 assert!(
12220 reason.contains("ASCII whitespace byte"),
12221 "expected byte-naming diagnostic, got {reason:?}"
12222 );
12223 assert!(
12224 reason.contains("0x0a"),
12225 "expected offending LF byte 0x0a, got {reason:?}"
12226 );
12227 }
12228
12229 #[test]
12230 fn rejects_entrada_host_nbsp_names_offending_codepoint() {
12231 // Leading NBSP (`U+00A0`, `\u{00A0}`) in the `:entrada :host`
12232 // axis — the canonical paste-from-typography /
12233 // paste-from-word-processor footgun. Before the non-ASCII
12234 // Unicode `White_Space` scan lifted through the shared
12235 // `find_non_ascii_whitespace_char` predicate, the UTF-8 bytes
12236 // of NBSP (`0xC2 0xA0`) survived the ASCII byte-scan (neither
12237 // `0xC2` nor `0xA0` is `u8::is_ascii_whitespace`) and landed
12238 // on the per-label `bytes[0].is_ascii_alphanumeric()` arm
12239 // with the far-from-source `label "…" must start and end
12240 // with an alphanumeric` diagnostic — burying the
12241 // paste-from-typography origin under a label-shape leak.
12242 // Peer with the sibling non-ASCII-whitespace pins at
12243 // `limits::parse_byte_size` (`parse_byte_size_rejects_leading_nbsp`
12244 // — 1b75b38), `limits::parse_duration`,
12245 // `limits::parse_millicores`, and the shared duration codec
12246 // — same "the diagnostic carries the offending Unicode
12247 // codepoint's `U+XXXX` shape" discipline extended from every
12248 // typed-magnitude codec to the Gateway API v1 Hostname axis.
12249 let mut s = three_member_spec();
12250 s.entrada.as_mut().unwrap().host = "\u{00A0}checkout.quero.cloud".into();
12251 let err = s.validate().unwrap_err();
12252 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12253 panic!("expected EntradaHostInvalid, got {err:?}");
12254 };
12255 assert!(
12256 reason.contains("non-ASCII Unicode whitespace character"),
12257 "expected non-ASCII codepoint-naming diagnostic, got {reason:?}"
12258 );
12259 assert!(
12260 reason.contains("U+00A0"),
12261 "expected offending NBSP codepoint U+00A0, got {reason:?}"
12262 );
12263 }
12264
12265 #[test]
12266 fn rejects_entrada_host_line_separator_names_offending_codepoint() {
12267 // Trailing LINE SEPARATOR (`U+2028`, `\u{2028}`) in the
12268 // `:entrada :host` axis — the canonical paste-from-web-doc /
12269 // paste-from-published-HTML footgun. `char::is_whitespace`
12270 // returns true for `U+2028` per the Unicode `White_Space`
12271 // property, so `str::trim` at any downstream site would
12272 // silently strip it — same drift class as NBSP but on a
12273 // different codepoint region. Pins the second representative
12274 // (non-Latin-1 `char::is_whitespace` member) through the
12275 // shared predicate. Peer with
12276 // `parse_byte_size_rejects_internal_line_separator` on
12277 // `limits::parse_byte_size` (1b75b38).
12278 let mut s = three_member_spec();
12279 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud\u{2028}".into();
12280 let err = s.validate().unwrap_err();
12281 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12282 panic!("expected EntradaHostInvalid, got {err:?}");
12283 };
12284 assert!(
12285 reason.contains("non-ASCII Unicode whitespace character"),
12286 "expected non-ASCII codepoint-naming diagnostic, got {reason:?}"
12287 );
12288 assert!(
12289 reason.contains("U+2028"),
12290 "expected offending LINE SEPARATOR codepoint U+2028, got {reason:?}"
12291 );
12292 }
12293
12294 #[test]
12295 fn rejects_entrada_host_ideographic_space_names_offending_codepoint() {
12296 // Embedded IDEOGRAPHIC SPACE (`U+3000`, `\u{3000}`) between
12297 // labels in the `:entrada :host` axis — the canonical
12298 // paste-from-CJK-typography footgun (CJK IMEs default to
12299 // full-width whitespace when the space bar is pressed in
12300 // Japanese / Chinese input modes). Pins the third
12301 // representative of the non-ASCII Unicode `White_Space` set
12302 // through the shared predicate: the CJK block, distinct from
12303 // the Latin-1 NBSP `U+00A0` and the punctuation-region LINE
12304 // SEPARATOR `U+2028` — covering the same axis breadth the
12305 // sibling `parse_byte_size_rejects_trailing_ideographic_space`
12306 // (1b75b38) pins on `limits::parse_byte_size`.
12307 let mut s = three_member_spec();
12308 s.entrada.as_mut().unwrap().host = "checkout\u{3000}.quero.cloud".into();
12309 let err = s.validate().unwrap_err();
12310 let AplicacaoError::EntradaHostInvalid { reason, .. } = err else {
12311 panic!("expected EntradaHostInvalid, got {err:?}");
12312 };
12313 assert!(
12314 reason.contains("non-ASCII Unicode whitespace character"),
12315 "expected non-ASCII codepoint-naming diagnostic, got {reason:?}"
12316 );
12317 assert!(
12318 reason.contains("U+3000"),
12319 "expected offending IDEOGRAPHIC SPACE codepoint U+3000, got {reason:?}"
12320 );
12321 }
12322
12323 #[test]
12324 fn rejects_entrada_host_too_long() {
12325 // Total length cap = 253; build a 254-byte host out of two
12326 // 63-byte labels + one 62-byte label + dots.
12327 let mut s = three_member_spec();
12328 let big = format!(
12329 "{}.{}.{}.{}",
12330 "a".repeat(63),
12331 "b".repeat(63),
12332 "c".repeat(63),
12333 "d".repeat(254 - 63 * 3 - 3)
12334 );
12335 assert_eq!(big.len(), 254);
12336 s.entrada.as_mut().unwrap().host = big;
12337 let err = s.validate().unwrap_err();
12338 assert!(
12339 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12340 if reason.contains("max length of 253")),
12341 "got {err:?}"
12342 );
12343 }
12344
12345 #[test]
12346 fn rejects_entrada_host_label_too_long() {
12347 let mut s = three_member_spec();
12348 // 64-byte label — one over the per-label cap.
12349 s.entrada.as_mut().unwrap().host = format!("{}.quero.cloud", "x".repeat(64));
12350 let err = s.validate().unwrap_err();
12351 assert!(
12352 matches!(err, AplicacaoError::EntradaHostInvalid { ref reason, .. }
12353 if reason.contains("label max length of 63")),
12354 "got {err:?}"
12355 );
12356 }
12357
12358 #[test]
12359 fn entrada_host_diagnostic_carries_offending_host() {
12360 // Diagnostic-shape pin — the offending host + a non-empty
12361 // reason flow through verbatim so the author can grep their
12362 // caixa.lisp for `:host "<host>"` and fix it in one edit.
12363 let mut s = three_member_spec();
12364 s.entrada.as_mut().unwrap().host = "checkout.quero.cloud:8080".into();
12365 let err = s.validate().unwrap_err();
12366 match err {
12367 AplicacaoError::EntradaHostInvalid { host, reason } => {
12368 assert_eq!(host, "checkout.quero.cloud:8080");
12369 assert!(!reason.is_empty(), "reason field must be non-empty");
12370 }
12371 other => panic!("expected EntradaHostInvalid, got {other:?}"),
12372 }
12373 }
12374
12375 #[test]
12376 fn entrada_host_empty_takes_precedence_over_invalid() {
12377 // Ordering pin: `EmptyEntradaHost` is the more self-locating
12378 // diagnostic on `""` and must lead — `validate_entrada_host`
12379 // is only reached after the empty-check fires at the call
12380 // site. (The predicate itself defends against direct
12381 // invocation by returning the same error on `""`.)
12382 let mut s = three_member_spec();
12383 s.entrada.as_mut().unwrap().host = String::new();
12384 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EmptyEntradaHost);
12385 }
12386
12387 #[test]
12388 fn entrada_host_member_missing_takes_precedence_over_host_invalid() {
12389 // Ordering pin: a missing :para member is the more
12390 // self-locating diagnostic and fires before the host gate.
12391 let mut s = three_member_spec();
12392 let e = s.entrada.as_mut().unwrap();
12393 e.para = "ghost".into();
12394 e.host = "BAD HOST".into();
12395 let err = s.validate().unwrap_err();
12396 assert!(
12397 matches!(err, AplicacaoError::EntradaMemberMissing { ref para } if para == "ghost"),
12398 "got {err:?}"
12399 );
12400 }
12401
12402 #[test]
12403 fn entrada_host_invalid_fires_before_port_zero() {
12404 // Ordering pin: the host gate fires before the port gate so
12405 // a malformed host is named even when the port is also wrong.
12406 let mut s = three_member_spec();
12407 let e = s.entrada.as_mut().unwrap();
12408 e.host = "Checkout.quero.cloud".into();
12409 e.port = 0;
12410 let err = s.validate().unwrap_err();
12411 assert!(
12412 matches!(err, AplicacaoError::EntradaHostInvalid { ref host, .. }
12413 if host == "Checkout.quero.cloud"),
12414 "got {err:?}"
12415 );
12416 }
12417
12418 #[test]
12419 fn entrada_accepts_canonical_hosts() {
12420 // Positive-control sweep — every form the Gateway API
12421 // apiserver accepts must round-trip through validate. Covers
12422 // a plain DNS subdomain, a leading wildcard, a single-label
12423 // host (cluster-internal), a max-length-edge label, a
12424 // hyphen-bearing label, and a Punycode IDN label.
12425 for host in [
12426 "checkout.quero.cloud",
12427 "*.quero.cloud",
12428 "checkout",
12429 // 63-byte label — exactly the per-label cap.
12430 "abcdefghijklmnopqrstuvwxyz0123456789abcdefghijklmnopqrstuvwxyz0.quero.cloud",
12431 "foo-bar.quero.cloud",
12432 // Punycode IDN — valid because the author pre-encoded.
12433 "xn--bcher-kva.example.com",
12434 ] {
12435 let mut s = three_member_spec();
12436 s.entrada.as_mut().unwrap().host = host.into();
12437 s.validate()
12438 .unwrap_or_else(|e| panic!("expected {host:?} to validate, got {e:?}"));
12439 }
12440 }
12441
12442 #[test]
12443 fn entrada_host_max_length_validates() {
12444 // 253-byte host is the cap exactly — must validate. Build a
12445 // 253-byte host out of three 63-byte labels + one 61-byte
12446 // label + 3 dots = 252 bytes, then pad one byte to 253.
12447 let mut s = three_member_spec();
12448 let host = format!(
12449 "{}.{}.{}.{}",
12450 "a".repeat(63),
12451 "b".repeat(63),
12452 "c".repeat(63),
12453 "d".repeat(253 - 63 * 3 - 3)
12454 );
12455 assert_eq!(host.len(), 253);
12456 s.entrada.as_mut().unwrap().host = host;
12457 s.validate().unwrap();
12458 }
12459
12460 #[test]
12461 fn entrada_host_total_length_cap_threads_lifted_render_const() {
12462 // Cross-crate-side pin: the aplicacao-side `:entrada :host`
12463 // total-length gate now reads the K8s Gateway API v1 Hostname
12464 // `maxLength: 253` cap from the lifted
12465 // [`crate::render::GATEWAY_API_HOSTNAME_MAX_LEN`] canonical source
12466 // of truth — the same constant every future Gateway-API-Hostname
12467 // landing site (the M4 `mesh.pleme.io/v1alpha1/Aplicacao` CR
12468 // materializer's per-host validator, the future per-`Certificate`
12469 // SAN emitter for cert-manager, the multi-`:entrada`
12470 // host-collision gate when M4 lands `:entrada` as a `Vec`) reads
12471 // from. Before the lift, the aplicacao-side reader consumed a
12472 // private const alias `ENTRADA_HOST_MAX_LEN` sitting at the same
12473 // 253-byte value as the peer render-side canonical bounds
12474 // ([`GATEWAY_API_HTTP_PATH_MAX_LEN`], [`DNS_1123_LABEL_MAX_LEN`],
12475 // [`NATS_SUBJECT_MAX_LEN`], [`WASI_KV_SLOT_MAX_LEN`],
12476 // [`WIT_IDENT_MAX_LEN`]) but structurally split from them at the
12477 // module boundary — a future 253-byte drift on either side would
12478 // silently split into two axes' worth of admission-schema mismatch
12479 // without a build-time signal. Pin the cap through a fresh 254-
12480 // byte host that hits the total-length arm, then read the reason
12481 // for the exact byte count the shared constant carries: any future
12482 // regression on the lift (a private alias reintroduced, a hard-
12483 // coded literal at the arm, a mismatch between the aplicacao-side
12484 // and render-side canonicals) surfaces as this pin's diagnostic
12485 // failing to match, not as a per-cluster admission rejection far
12486 // from the caixa.lisp source line.
12487 let mut s = three_member_spec();
12488 let over_cap = format!(
12489 "{}.{}.{}.{}",
12490 "a".repeat(63),
12491 "b".repeat(63),
12492 "c".repeat(63),
12493 "d".repeat(crate::render::GATEWAY_API_HOSTNAME_MAX_LEN + 1 - 63 * 3 - 3)
12494 );
12495 assert_eq!(
12496 over_cap.len(),
12497 crate::render::GATEWAY_API_HOSTNAME_MAX_LEN + 1
12498 );
12499 s.entrada.as_mut().unwrap().host = over_cap;
12500 let err = s.validate().unwrap_err();
12501 match err {
12502 AplicacaoError::EntradaHostInvalid { reason, .. } => {
12503 let needle = format!(
12504 "max length of {} bytes",
12505 crate::render::GATEWAY_API_HOSTNAME_MAX_LEN,
12506 );
12507 assert!(
12508 reason.contains(&needle),
12509 "diagnostic must name the lifted \
12510 GATEWAY_API_HOSTNAME_MAX_LEN cap verbatim, got: {reason:?}",
12511 );
12512 }
12513 other => panic!("expected EntradaHostInvalid, got {other:?}"),
12514 }
12515 }
12516
12517 #[test]
12518 fn entrada_host_per_label_cap_threads_lifted_dns_1123_const() {
12519 // Peer of [`entrada_host_total_length_cap_threads_lifted_render_const`]
12520 // on the per-label-cap axis. Before the lift, the aplicacao-side
12521 // per-label arm consumed a private const alias
12522 // `ENTRADA_HOST_LABEL_MAX_LEN` sitting at the same 63-byte value
12523 // as [`crate::render::DNS_1123_LABEL_MAX_LEN`] but structurally
12524 // split from it at the module boundary — every `.`-separated
12525 // label in a Gateway API v1 Hostname is a DNS-1123 label under
12526 // the apiserver's OpenAPI regex `[a-z0-9]([-a-z0-9]*[a-z0-9])?`,
12527 // so the private alias's 63 and the canonical const's 63 were
12528 // pinning the same underlying rule twice. Pin the cap through a
12529 // 64-byte label that hits the per-label arm, then read the reason
12530 // for the exact byte count the shared constant carries: any
12531 // future drift on either side (a private alias reintroduced, a
12532 // hard-coded literal at the arm, a mismatch between the two
12533 // 63-byte pins) surfaces at this pin's diagnostic rather than at
12534 // a per-cluster admission rejection whose "field is invalid"
12535 // opacity misframes the root cause.
12536 let mut s = three_member_spec();
12537 let over_cap_label = format!(
12538 "{}.quero.cloud",
12539 "x".repeat(crate::render::DNS_1123_LABEL_MAX_LEN + 1),
12540 );
12541 s.entrada.as_mut().unwrap().host = over_cap_label;
12542 let err = s.validate().unwrap_err();
12543 match err {
12544 AplicacaoError::EntradaHostInvalid { reason, .. } => {
12545 let needle = format!(
12546 "label max length of {} bytes",
12547 crate::render::DNS_1123_LABEL_MAX_LEN,
12548 );
12549 assert!(
12550 reason.contains(&needle),
12551 "diagnostic must name the lifted DNS_1123_LABEL_MAX_LEN \
12552 cap verbatim on the per-label arm, got: {reason:?}",
12553 );
12554 }
12555 other => panic!("expected EntradaHostInvalid, got {other:?}"),
12556 }
12557 }
12558
12559 #[test]
12560 fn entrada_with_empty_paths_validates() {
12561 // Empty `:paths` is the documented "match every path" form;
12562 // caixa-mesh's gateway_routes synthesizes a `/` catch-all.
12563 let mut s = three_member_spec();
12564 s.entrada.as_mut().unwrap().paths = vec![];
12565 s.validate().unwrap();
12566 }
12567
12568 #[test]
12569 fn entrada_root_path_validates() {
12570 // The author-supplied bare-root `:entrada :paths` entry is the
12571 // same byte-shape the peer emit-side catch-all constant
12572 // [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] renders when
12573 // the author's `:paths` list is empty — sweeping the test-side
12574 // probe literal onto the lifted const closes the two-axis pin
12575 // (author-side admit + emit-side canonical fallback) around
12576 // one `&'static str`, so a future rebrand of the catch-all
12577 // reaches both consumers by construction. Peer to
12578 // [`crate::tests::gateway_api_default_http_route_path_pins_canonical_root_literal`]
12579 // on the canonical-literal pin surface.
12580 let mut s = three_member_spec();
12581 s.entrada.as_mut().unwrap().paths = vec![crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH.into()];
12582 s.validate().unwrap();
12583 }
12584
12585 #[test]
12586 fn placement_strategy_variants_round_trip() {
12587 for s in [
12588 PlacementStrategy::SingleNode,
12589 PlacementStrategy::Replicated,
12590 PlacementStrategy::Sharded,
12591 ] {
12592 let p = Placement {
12593 estrategia: s,
12594 clusters: vec!["rio".into()],
12595 affinity: None,
12596 shard_key: if s.is_sharded() {
12597 Some("$key".into())
12598 } else {
12599 None
12600 },
12601 };
12602 let json = serde_json::to_string(&p).unwrap();
12603 let back: Placement = serde_json::from_str(&json).unwrap();
12604 assert_eq!(back, p);
12605 }
12606 }
12607
12608 #[test]
12609 fn placement_strategy_variants_serialize_to_lifted_scalar_values() {
12610 // The fail-before-pass-after pin: pre-lift there was no
12611 // single-source binding between the [`PlacementStrategy`]
12612 // variant name the `Serialize` derive emits and the byte-
12613 // string every downstream cluster-side dispatcher (the
12614 // `lareira-fleet-programs` aggregator's per-entry strategy
12615 // branch, the future `app-operator` reconciler, the M3
12616 // Adaptive compression pass's per-strategy weighting) probes
12617 // verbatim under [`crate::M3_PLACEMENT_KEY_ESTRATEGIA`]. A
12618 // future `#[serde(rename_all = "kebab-case")]` attribute on
12619 // the enum — or a variant rename in the source — would
12620 // silently rebrand the emitted scalar under one spelling
12621 // while every downstream dispatcher still probed the other,
12622 // with the failure surfacing at the aggregator's dispatch
12623 // step or the operator's reconcile posture (workloads coming
12624 // up under the `default()` `Replicated` arm rather than the
12625 // typed slot's declared strategy) far from the source
12626 // rebrand commit and with no field naming the drift. Pinning
12627 // the two paths (the `Serialize` derive's serialized string
12628 // AND the [`PlacementStrategy::as_str`] helper) to the same
12629 // three lifted [`crate::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE`]
12630 // / [`crate::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] /
12631 // [`crate::M3_PLACEMENT_ESTRATEGIA_SHARDED`] byte-strings
12632 // makes any future drift on either endpoint fail here at
12633 // caixa-core build time.
12634 for (variant, expected) in [
12635 (
12636 PlacementStrategy::SingleNode,
12637 crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE,
12638 ),
12639 (
12640 PlacementStrategy::Replicated,
12641 crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED,
12642 ),
12643 (
12644 PlacementStrategy::Sharded,
12645 crate::render::M3_PLACEMENT_ESTRATEGIA_SHARDED,
12646 ),
12647 ] {
12648 let json = serde_json::to_string(&variant).unwrap();
12649 assert_eq!(
12650 json,
12651 format!("\"{expected}\""),
12652 "PlacementStrategy::{variant:?} must serialize to {expected:?}"
12653 );
12654 assert_eq!(
12655 variant.as_str(),
12656 expected,
12657 "PlacementStrategy::{variant:?}.as_str() must return the lifted \
12658 M3_PLACEMENT_ESTRATEGIA_* constant"
12659 );
12660 }
12661 }
12662
12663 #[test]
12664 fn m3_placement_estrategia_consts_are_pairwise_distinct() {
12665 // Cross-arm drift-detection pin on the M3
12666 // [`crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE`] /
12667 // [`crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] /
12668 // [`crate::render::M3_PLACEMENT_ESTRATEGIA_SHARDED`] closed-set
12669 // scalar-value pentad: a future collapse of two canonical
12670 // variant byte-strings onto the same value (an accidental
12671 // copy-paste flip of
12672 // [`crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] to also
12673 // read `"SingleNode"`, a per-arm rebrand that lands one const
12674 // without touching its paired peer) would silently reroute
12675 // every downstream operator's per-strategy dispatch onto the
12676 // sibling arm's reconcile branch and pass every
12677 // propagation-probe test that expected only the stale arm's
12678 // value — a `Replicated`-declared Aplicacao would come up
12679 // under the `SingleNode` primary-and-standby reconcile
12680 // posture, so every-cluster active-active workload would
12681 // silently collapse onto one-cluster-runs-at-a-time takeover
12682 // semantics against its declared strategy, with no field
12683 // naming the strategy-value drift root cause. Peer of the
12684 // sibling
12685 // [`crate::supervisor::tests::supervisor_estrategia_consts_are_pairwise_distinct`]
12686 // (09ffb2d) /
12687 // [`crate::supervisor::tests::supervisor_child_restart_consts_are_pairwise_distinct`]
12688 // (ccdf955) /
12689 // [`crate::kind::tests::caixa_kind_label_consts_are_pairwise_distinct`]
12690 // (d739850) distinctness pins on the sibling OTP-shape /
12691 // caixa-kind closed-set typed-enum discriminator axes — the
12692 // fourth (and structurally the M3 mesh-primitive-defining)
12693 // closed-set typed-enum axis to converge on the same
12694 // "pairwise-distinct-by-construction" discipline.
12695 //
12696 // Fail-before-pass-after locally verified by mutating
12697 // [`crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED`] to
12698 // also read `"SingleNode"` — this pin fires as expected;
12699 // restoring passes.
12700 let all = [
12701 crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE,
12702 crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED,
12703 crate::render::M3_PLACEMENT_ESTRATEGIA_SHARDED,
12704 ];
12705 for (i, a) in all.iter().enumerate() {
12706 for (j, b) in all.iter().enumerate() {
12707 if i != j {
12708 assert_ne!(
12709 a, b,
12710 "M3_PLACEMENT_ESTRATEGIA_* consts must be pairwise \
12711 distinct — got duplicate {a:?} at indices {i} and {j}",
12712 );
12713 }
12714 }
12715 }
12716 }
12717
12718 #[test]
12719 fn placement_strategy_display_routes_through_as_str_helper() {
12720 // The fail-before-pass-after pin: pre-lift the sibling
12721 // OTP-shape typed enums [`crate::supervisor::RestartStrategy`]
12722 // / [`crate::supervisor::RestartPolicy`] both carried a stable
12723 // [`std::fmt::Display`] surface via their
12724 // `#[discriminant(also_display)]` gen-platform derive, but
12725 // [`PlacementStrategy`] did not — every consumer reaching for
12726 // a strategy byte-string past the wire format had to pick
12727 // between three paths ([`PlacementStrategy::as_str`], the
12728 // `Serialize` derive's serialized string, or `format!("{v:?}")`
12729 // on the `Debug` derive), any two of which a future variant
12730 // rename or `#[serde(rename_all = "kebab-case")]` attribute
12731 // would silently desynchronize. Wiring [`std::fmt::Display`]
12732 // through [`PlacementStrategy::as_str`] closes the third path:
12733 // every `format!("{v}")` call reaches the same lifted
12734 // [`crate::M3_PLACEMENT_ESTRATEGIA_*`] const the wire format
12735 // and the [`PlacementStrategy::as_str`] helper already route
12736 // through, so a future variant rename lands at exactly one
12737 // place. Pin the routing here so a future
12738 // `impl std::fmt::Display for PlacementStrategy` reimplementation
12739 // that hand-rolls the arms instead of delegating to
12740 // [`PlacementStrategy::as_str`] fails at caixa-core build time.
12741 for variant in [
12742 PlacementStrategy::SingleNode,
12743 PlacementStrategy::Replicated,
12744 PlacementStrategy::Sharded,
12745 ] {
12746 assert_eq!(
12747 variant.to_string(),
12748 variant.as_str(),
12749 "PlacementStrategy::{variant:?} Display must route through \
12750 PlacementStrategy::as_str (single source of truth: the lifted \
12751 M3_PLACEMENT_ESTRATEGIA_* const the wire format also emits)"
12752 );
12753 }
12754 }
12755
12756 #[test]
12757 fn placement_strategy_display_matches_serialized_wire_byte_string() {
12758 // The fail-before-pass-after pin on the second half of the
12759 // three-path convergence: `Display` (user-facing text) agrees
12760 // byte-for-byte with the `Serialize` derive's wire format
12761 // (canonical camelCase-schema `M3_PLACEMENT_KEY_ESTRATEGIA`
12762 // scalar) on every variant. Pre-lift the two paths were
12763 // structurally independent — a future
12764 // `#[serde(rename_all = "kebab-case")]` attribute on the enum
12765 // would silently rebrand the emitted wire scalar
12766 // (`single-node`, `replicated`, `sharded`) while every consumer
12767 // that pretty-prints the strategy (the M3 diagnostic templates,
12768 // the future `feira app graph` per-Aplicacao strategy line,
12769 // the future M4 CR materializer's admission-webhook rejection
12770 // body) would still emit the TitleCase form the `as_str` /
12771 // `Display` route returns, with the mismatch surfacing at
12772 // consumer parse time / operator dispatch time far from the
12773 // source rebrand commit. Pin the two paths byte-for-byte here
12774 // so any future serde-attribute or variant-rename drift is a
12775 // caixa-core-build-time test failure at this call, not a
12776 // silent per-consumer dispatch miss.
12777 for variant in [
12778 PlacementStrategy::SingleNode,
12779 PlacementStrategy::Replicated,
12780 PlacementStrategy::Sharded,
12781 ] {
12782 let wire = serde_json::to_string(&variant).unwrap();
12783 // Strip the outer `"…"` the JSON string form carries — the
12784 // wire scalar the K8s / YAML apiserver consumes is the
12785 // enclosed byte-string, not the quote wrapper.
12786 let unquoted = wire
12787 .strip_prefix('"')
12788 .and_then(|s| s.strip_suffix('"'))
12789 .expect("serialized PlacementStrategy is a JSON string");
12790 assert_eq!(
12791 variant.to_string(),
12792 unquoted,
12793 "PlacementStrategy::{variant:?} Display byte-string must match the \
12794 Serialize derive's wire byte-string (three-path convergence: \
12795 Display + as_str + Serialize all resolve to the same \
12796 M3_PLACEMENT_ESTRATEGIA_* const)"
12797 );
12798 }
12799 }
12800
12801 #[test]
12802 fn placement_strategy_is_variant_predicates_partition_the_arm_set() {
12803 // Fail-before-pass-after pin on the [`gen_platform::IsVariant`]
12804 // derive on [`PlacementStrategy`]: for each of the three variants
12805 // exactly one of the generated `is_single_node` / `is_replicated`
12806 // / `is_sharded` predicates returns `true` and the other two
12807 // return `false`. Prior to this derive the three per-arm
12808 // `matches!(s, PlacementStrategy::Sharded)` sites in this crate
12809 // (the `placement_strategy_variants_round_trip` fixture, the
12810 // `estrategia_returns_placement_estrategia_verbatim_across_permutations`
12811 // fixture, and the
12812 // `validate_placement_reads_through_lifted_estrategia_accessor`
12813 // fixture) each open-coded a per-arm PartialEq compare against
12814 // the enum variant — three sites that expressed no compile-time
12815 // link back to the closed-set typed dispatch a future fourth
12816 // `:placement :estrategia` (e.g. an `Anycast` mesh-anycast arm
12817 // for the future MESH-COMPOSITION §II.5 hint the roadmap names)
12818 // would have to thread through in lockstep or one fixture would
12819 // silently disagree with the others on which arms consume the
12820 // `:shard-key` axis. Peer of the sibling
12821 // [`crate::CaixaKind`] / [`crate::supervisor::RestartStrategy`]
12822 // / [`crate::supervisor::RestartPolicy`] /
12823 // [`crate::upgrade::UpgradeInstruction`] `IsVariant` derives on
12824 // the sibling closed-set typed-enum discriminator axes — extends
12825 // the same one-typed-dispatch-per-variant discipline onto the
12826 // fifth (and only remaining) closed-set typed-enum discriminator
12827 // on the caixa surface, closing the axis on the M3 mesh-slot
12828 // family.
12829 let rows: [(PlacementStrategy, [bool; 3]); 3] = [
12830 (PlacementStrategy::SingleNode, [true, false, false]),
12831 (PlacementStrategy::Replicated, [false, true, false]),
12832 (PlacementStrategy::Sharded, [false, false, true]),
12833 ];
12834 for (variant, expected) in rows {
12835 let observed = [
12836 variant.is_single_node(),
12837 variant.is_replicated(),
12838 variant.is_sharded(),
12839 ];
12840 assert_eq!(
12841 observed, expected,
12842 "PlacementStrategy::{variant:?} is_* predicates must partition \
12843 the arm set (single_node, replicated, sharded); got {observed:?}"
12844 );
12845 }
12846 }
12847
12848 #[test]
12849 fn placement_strategy_is_variant_predicates_are_const_fn() {
12850 // The [`gen_platform::IsVariant`] derive emits `const fn`
12851 // predicates on the peer [`crate::CaixaKind`] +
12852 // [`crate::upgrade::UpgradeInstruction`] +
12853 // [`crate::supervisor::RestartStrategy`] +
12854 // [`crate::supervisor::RestartPolicy`] closed-set typed enums —
12855 // pin the same posture on [`PlacementStrategy`] so a future
12856 // accidental downgrade to non-`const` (an added runtime helper
12857 // reachable only from a non-`const` context, a manual hand-rolled
12858 // `impl` that shadows the derive-generated method) trips at
12859 // caixa-core build time rather than surfacing as a downstream
12860 // `const`-context regression far from the derive declaration.
12861 const IS_SINGLE_NODE: bool = PlacementStrategy::SingleNode.is_single_node();
12862 const IS_REPLICATED: bool = PlacementStrategy::Replicated.is_replicated();
12863 const IS_SHARDED: bool = PlacementStrategy::Sharded.is_sharded();
12864 assert!(IS_SINGLE_NODE);
12865 assert!(IS_REPLICATED);
12866 assert!(IS_SHARDED);
12867 }
12868
12869 #[test]
12870 fn placement_without_clusters_diagnostic_carries_strategy_display_byte_string() {
12871 // Pin the M3 diagnostic template routes through the typed
12872 // [`PlacementStrategy`] Display byte-string (rebound from the
12873 // prior `{estrategia:?}` `Debug` route). Pre-lift the two
12874 // routes emitted identical bytes (the `Debug` derive on a
12875 // unit variant emits the variant name verbatim, exactly what
12876 // `as_str` returns), but the two paths were structurally
12877 // independent — a future `#[serde(rename_all = "…")]`
12878 // attribute or variant rename would coordinate the wire /
12879 // `Display` / `as_str` triple through the lifted const but
12880 // leave the `Debug` route on the compiler-derived variant name,
12881 // silently desynchronizing the diagnostic byte-string from the
12882 // wire byte-string. Rebinding the template onto `Display`
12883 // ties the diagnostic to the same lifted
12884 // [`crate::M3_PLACEMENT_ESTRATEGIA_*`] const the wire format
12885 // emits — drift becomes structurally impossible. Pin the
12886 // byte-string here so a future edit that reverts the template
12887 // to `{estrategia:?}` is caught at caixa-core test time, not
12888 // at consumer dispatch time.
12889 for (variant, expected_scalar) in [
12890 (
12891 PlacementStrategy::SingleNode,
12892 crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE,
12893 ),
12894 (
12895 PlacementStrategy::Replicated,
12896 crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED,
12897 ),
12898 (
12899 PlacementStrategy::Sharded,
12900 crate::render::M3_PLACEMENT_ESTRATEGIA_SHARDED,
12901 ),
12902 ] {
12903 let err = AplicacaoError::PlacementWithoutClusters {
12904 estrategia: variant,
12905 };
12906 let msg = err.to_string();
12907 assert!(
12908 msg.starts_with(&format!(":placement {expected_scalar} requires")),
12909 "PlacementWithoutClusters diagnostic for {variant:?} must open \
12910 with the lifted `{expected_scalar}` scalar via Display; got {msg:?}"
12911 );
12912 }
12913 }
12914
12915 #[test]
12916 fn shard_key_on_non_sharded_diagnostic_carries_strategy_display_byte_string() {
12917 // Peer of
12918 // [`placement_without_clusters_diagnostic_carries_strategy_display_byte_string`]
12919 // on the second M3 diagnostic that carries the typed
12920 // [`PlacementStrategy`] in its `#[error(…)]` template. Both
12921 // diagnostics now route the strategy scalar through the same
12922 // [`std::fmt::Display`] surface, tying the diagnostic
12923 // byte-string to the lifted [`crate::M3_PLACEMENT_ESTRATEGIA_*`]
12924 // const set the wire format also emits. The two non-Sharded
12925 // arms are exercised here (the diagnostic exists to flag a
12926 // `:shard-key` slot the current strategy will never consume);
12927 // the peer `Sharded` arm never reaches this diagnostic (the
12928 // `Sharded` strategy consumes `:shard-key` — the
12929 // [`AplicacaoError::ShardedWithoutKey`] arm reports the missing
12930 // slot instead).
12931 for (variant, expected_scalar) in [
12932 (
12933 PlacementStrategy::SingleNode,
12934 crate::render::M3_PLACEMENT_ESTRATEGIA_SINGLE_NODE,
12935 ),
12936 (
12937 PlacementStrategy::Replicated,
12938 crate::render::M3_PLACEMENT_ESTRATEGIA_REPLICATED,
12939 ),
12940 ] {
12941 let err = AplicacaoError::ShardKeyOnNonSharded {
12942 estrategia: variant,
12943 shard_key: "$tenantId".into(),
12944 };
12945 let msg = err.to_string();
12946 assert!(
12947 msg.starts_with(&format!(":placement {expected_scalar} carries")),
12948 "ShardKeyOnNonSharded diagnostic for {variant:?} must open with \
12949 the lifted `{expected_scalar}` scalar via Display; got {msg:?}"
12950 );
12951 }
12952 }
12953
12954 #[test]
12955 fn rejects_zero_policy_timeout() {
12956 let mut s = three_member_spec();
12957 s.politicas.timeout = Some(Duration::ZERO);
12958 assert_eq!(s.validate().unwrap_err(), AplicacaoError::PolicyTimeoutZero);
12959 }
12960
12961 #[test]
12962 fn rejects_zero_policy_retries() {
12963 let mut s = three_member_spec();
12964 s.politicas.retries = Some(0);
12965 assert_eq!(s.validate().unwrap_err(), AplicacaoError::PolicyRetriesZero);
12966 }
12967
12968 #[test]
12969 fn rejects_policy_retries_above_cap() {
12970 // The fail-before-pass-after pin: `Some(11)` is structurally
12971 // one past the [`POLICY_RETRIES_MAX`] ceiling and silently
12972 // passed validate on every pre-gate codebase because the
12973 // typed slot's only check was the zero-floor arm. The
12974 // thundering-herd amplification vector only surfaced at the
12975 // runtime substrate (Envoy / Cilium L7 retry overlay)
12976 // far from the source caixa.lisp with no field naming the
12977 // offending policy.
12978 let mut s = three_member_spec();
12979 s.politicas.retries = Some(POLICY_RETRIES_MAX + 1);
12980 assert_eq!(
12981 s.validate().unwrap_err(),
12982 AplicacaoError::PolicyRetriesExceedsCap {
12983 retries: POLICY_RETRIES_MAX + 1
12984 }
12985 );
12986 }
12987
12988 #[test]
12989 fn rejects_policy_retries_far_above_cap() {
12990 // The `u32::MAX` worst case — the four-billion-retry policy
12991 // a typo (`(:retries 4294967295)`) or struct-literal
12992 // copy-paste lands in the slot. Pin the cap arm's coverage
12993 // explicitly across the full `u32` overflow so a future
12994 // relaxation that drops the upper bound surfaces here.
12995 let mut s = three_member_spec();
12996 s.politicas.retries = Some(u32::MAX);
12997 assert_eq!(
12998 s.validate().unwrap_err(),
12999 AplicacaoError::PolicyRetriesExceedsCap { retries: u32::MAX }
13000 );
13001 }
13002
13003 #[test]
13004 fn accepts_policy_retries_at_cap() {
13005 // The boundary value — exactly [`POLICY_RETRIES_MAX`] —
13006 // must validate. The cap is inclusive on the top edge,
13007 // matching the [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`]
13008 // discipline on the sibling [`crate::LimitsSpec::memory`]
13009 // axis. Pin the boundary explicitly so a future off-by-one
13010 // tightening (`>= POLICY_RETRIES_MAX` instead of `>`)
13011 // surfaces here as a test failure rather than a silent
13012 // contract narrowing.
13013 let mut s = three_member_spec();
13014 s.politicas.retries = Some(POLICY_RETRIES_MAX);
13015 s.validate()
13016 .expect("retries == POLICY_RETRIES_MAX must validate");
13017 }
13018
13019 #[test]
13020 fn accepts_policy_retries_typical_values() {
13021 // The full inclusive `1..=POLICY_RETRIES_MAX` sweep —
13022 // every value in the validated set must pass. The
13023 // Envoy / Istio production-playbook recommendation band
13024 // (`num_retries ≤ 5`) and the AWS App Mesh schema cap
13025 // (`maxRetries ≤ 10`) both lie within this set.
13026 for r in 1..=POLICY_RETRIES_MAX {
13027 let mut s = three_member_spec();
13028 s.politicas.retries = Some(r);
13029 s.validate()
13030 .unwrap_or_else(|e| panic!("retries={r} must validate; got {e:?}"));
13031 }
13032 }
13033
13034 #[test]
13035 fn policy_retries_zero_takes_precedence_over_cap() {
13036 // The cross-arm ordering pin: `Some(0)` is structurally
13037 // outside both `1..` (zero-floor) and `..=POLICY_RETRIES_MAX`
13038 // (cap), but the zero-floor diagnostic is the more
13039 // self-locating one (it directly names the omit-axis
13040 // remediation), so the validate gate must fire on zero
13041 // first. Pin the order so a future refactor that reorders
13042 // the arms surfaces here as a test failure rather than a
13043 // silent diagnostic regression. Same shape every other
13044 // zero-then-shape ordering on this surface uses
13045 // ([`AplicacaoError::PolicyTimeoutZero`] then
13046 // [`AplicacaoError::PolicyTimeoutNotCanonical`];
13047 // [`AplicacaoError::PolicyBreakerZeroWindow`] then
13048 // [`AplicacaoError::PolicyBreakerWindowNotCanonical`]).
13049 let mut s = three_member_spec();
13050 s.politicas.retries = Some(0);
13051 assert_eq!(
13052 s.validate().unwrap_err(),
13053 AplicacaoError::PolicyRetriesZero,
13054 "Some(0) must surface the zero-floor diagnostic, not the cap diagnostic"
13055 );
13056 }
13057
13058 #[test]
13059 fn policy_retries_cap_diagnostic_carries_offending_value() {
13060 // The diagnostic-shape pin: the offending `u32` is carried
13061 // verbatim into the [`AplicacaoError::PolicyRetriesExceedsCap`]
13062 // variant so the surfaced error message names the value the
13063 // author wrote (`":politicas :retries (47) exceeds the
13064 // mesh-policy ceiling …"`), not just the cap. Same
13065 // self-locating diagnostic shape every other typed-cap arm
13066 // on this surface carries
13067 // ([`crate::LimitsError::MemoryExceedsWasm32Cap`] carries the
13068 // offending byte count verbatim).
13069 let mut s = three_member_spec();
13070 s.politicas.retries = Some(47);
13071 let err = s.validate().unwrap_err();
13072 assert!(
13073 matches!(err, AplicacaoError::PolicyRetriesExceedsCap { retries: 47 }),
13074 "got {err:?}"
13075 );
13076 let msg = err.to_string();
13077 assert!(
13078 msg.contains("47"),
13079 ":politicas :retries cap diagnostic must carry the offending value verbatim (got: {msg})"
13080 );
13081 }
13082
13083 #[test]
13084 fn policy_retries_cap_is_aws_app_mesh_aligned() {
13085 // The [`POLICY_RETRIES_MAX`] constant pins the value at 10,
13086 // matching AWS App Mesh's `gRPCRouteRetryPolicy.maxRetries`
13087 // schema cap — the only upstream mesh-policy schema that
13088 // documents an explicit hard cap. Pinning the literal value
13089 // here surfaces a future drift (a relaxation to 20, a
13090 // tightening to 5) as a deliberate test edit, not a silent
13091 // contract narrowing.
13092 assert_eq!(POLICY_RETRIES_MAX, 10);
13093 }
13094
13095 #[test]
13096 fn rejects_circuit_breaker_zero_max_failures() {
13097 let mut s = three_member_spec();
13098 s.politicas.circuit_breaker = Some(CircuitBreaker {
13099 max_failures: 0,
13100 window: Duration::from_secs(60),
13101 });
13102 assert_eq!(
13103 s.validate().unwrap_err(),
13104 AplicacaoError::PolicyBreakerZeroFailures
13105 );
13106 }
13107
13108 #[test]
13109 fn rejects_circuit_breaker_max_failures_above_cap() {
13110 // The fail-before-pass-after pin: `1001` is structurally one
13111 // past the [`POLICY_BREAKER_MAX_FAILURES_MAX`] ceiling and
13112 // silently passed validate on every pre-gate codebase
13113 // because the typed slot's only check was the zero-floor
13114 // arm. The breaker-no-op vector only surfaced at the runtime
13115 // substrate (Envoy / Cilium L7 outlier-detection overlay)
13116 // far from the source caixa.lisp with no field naming the
13117 // offending policy.
13118 let mut s = three_member_spec();
13119 s.politicas.circuit_breaker = Some(CircuitBreaker {
13120 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1,
13121 window: Duration::from_secs(60),
13122 });
13123 assert_eq!(
13124 s.validate().unwrap_err(),
13125 AplicacaoError::PolicyBreakerMaxFailuresExceedsCap {
13126 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1,
13127 }
13128 );
13129 }
13130
13131 #[test]
13132 fn rejects_circuit_breaker_max_failures_far_above_cap() {
13133 // The `u32::MAX` worst case — the four-billion-failure
13134 // threshold a typo (`(:max-failures 4294967295)`) or a
13135 // struct-literal copy-paste lands in the slot. Pin the cap
13136 // arm's coverage explicitly across the full `u32` overflow
13137 // so a future relaxation that drops the upper bound surfaces
13138 // here.
13139 let mut s = three_member_spec();
13140 s.politicas.circuit_breaker = Some(CircuitBreaker {
13141 max_failures: u32::MAX,
13142 window: Duration::from_secs(60),
13143 });
13144 assert_eq!(
13145 s.validate().unwrap_err(),
13146 AplicacaoError::PolicyBreakerMaxFailuresExceedsCap {
13147 max_failures: u32::MAX,
13148 }
13149 );
13150 }
13151
13152 #[test]
13153 fn accepts_circuit_breaker_max_failures_at_cap() {
13154 // The boundary value — exactly
13155 // [`POLICY_BREAKER_MAX_FAILURES_MAX`] — must validate. The
13156 // cap is inclusive on the top edge, matching the
13157 // [`POLICY_RETRIES_MAX`] / [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`]
13158 // discipline on the sibling capped axes. Pin the boundary
13159 // explicitly so a future off-by-one tightening
13160 // (`>= POLICY_BREAKER_MAX_FAILURES_MAX` instead of `>`)
13161 // surfaces here as a test failure rather than a silent
13162 // contract narrowing.
13163 let mut s = three_member_spec();
13164 s.politicas.circuit_breaker = Some(CircuitBreaker {
13165 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX,
13166 window: Duration::from_secs(60),
13167 });
13168 s.validate()
13169 .expect("max_failures == POLICY_BREAKER_MAX_FAILURES_MAX must validate");
13170 }
13171
13172 #[test]
13173 fn accepts_circuit_breaker_max_failures_typical_values() {
13174 // The documented production-playbook band positive-control
13175 // sweep — every value Hystrix / Istio / Envoy / Polly /
13176 // Resilience4j recommend (5..=50) must pass, plus a sweep
13177 // through the hyperscale band (100, 500, 1000) the cap
13178 // accepts. Pin the inclusive validated set explicitly so a
13179 // future tightening of the ceiling surfaces here.
13180 for n in [1u32, 5, 10, 20, 50, 100, 500, 1000] {
13181 let mut s = three_member_spec();
13182 s.politicas.circuit_breaker = Some(CircuitBreaker {
13183 max_failures: n,
13184 window: Duration::from_secs(60),
13185 });
13186 s.validate()
13187 .unwrap_or_else(|e| panic!("max_failures={n} must validate; got {e:?}"));
13188 }
13189 }
13190
13191 #[test]
13192 fn circuit_breaker_zero_max_failures_takes_precedence_over_cap() {
13193 // The cross-arm ordering pin: `0` is structurally outside
13194 // both `1..` (zero-floor) and `..=POLICY_BREAKER_MAX_FAILURES_MAX`
13195 // (cap), but the zero-floor diagnostic is the more
13196 // self-locating one (it directly names the omit-axis
13197 // remediation), so the validate gate must fire on zero
13198 // first. Same shape every other zero-then-shape ordering on
13199 // this surface uses
13200 // ([`AplicacaoError::PolicyRetriesZero`] then
13201 // [`AplicacaoError::PolicyRetriesExceedsCap`];
13202 // [`AplicacaoError::PolicyTimeoutZero`] then
13203 // [`AplicacaoError::PolicyTimeoutNotCanonical`]).
13204 let mut s = three_member_spec();
13205 s.politicas.circuit_breaker = Some(CircuitBreaker {
13206 max_failures: 0,
13207 window: Duration::from_secs(60),
13208 });
13209 assert_eq!(
13210 s.validate().unwrap_err(),
13211 AplicacaoError::PolicyBreakerZeroFailures,
13212 "max_failures == 0 must surface the zero-floor diagnostic, not the cap diagnostic"
13213 );
13214 }
13215
13216 #[test]
13217 fn circuit_breaker_max_failures_cap_takes_precedence_over_window_gates() {
13218 // The cross-arm ordering pin between the cap and the
13219 // sibling `:window` gates (zero-window, canonical-window).
13220 // A breaker carrying both an over-cap `max_failures` AND a
13221 // structurally invalid window (zero, sub-ms) must surface
13222 // the cap diagnostic first — the cap arm is wired
13223 // immediately after the zero-failure arm and strictly
13224 // before the window arms, so the offending value the
13225 // diagnostic names matches the order the author would
13226 // discover the gates by reading top-to-bottom through
13227 // [`AplicacaoSpec::validate_politicas`]. Pin the order so a
13228 // future refactor that reorders the arms surfaces here as a
13229 // test failure rather than a silent diagnostic regression.
13230 let mut s = three_member_spec();
13231 s.politicas.circuit_breaker = Some(CircuitBreaker {
13232 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1,
13233 window: Duration::ZERO,
13234 });
13235 assert_eq!(
13236 s.validate().unwrap_err(),
13237 AplicacaoError::PolicyBreakerMaxFailuresExceedsCap {
13238 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1,
13239 },
13240 "over-cap max_failures must surface the cap diagnostic before any window-axis diagnostic"
13241 );
13242 }
13243
13244 #[test]
13245 fn policy_breaker_max_failures_cap_diagnostic_carries_offending_value() {
13246 // The diagnostic-shape pin: the offending `u32` is carried
13247 // verbatim into the
13248 // [`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap`]
13249 // variant so the surfaced error message names the value the
13250 // author wrote (`":politicas :circuit-breaker :max-failures
13251 // (50000) exceeds the mesh-policy ceiling …"`), not just
13252 // the cap. Same self-locating diagnostic shape every other
13253 // typed-cap arm on this surface carries
13254 // ([`AplicacaoError::PolicyRetriesExceedsCap`] carries the
13255 // offending retry count verbatim,
13256 // [`crate::LimitsError::MemoryExceedsWasm32Cap`] carries the
13257 // offending byte count verbatim).
13258 let mut s = three_member_spec();
13259 s.politicas.circuit_breaker = Some(CircuitBreaker {
13260 max_failures: 50_000,
13261 window: Duration::from_secs(60),
13262 });
13263 let err = s.validate().unwrap_err();
13264 assert!(
13265 matches!(
13266 err,
13267 AplicacaoError::PolicyBreakerMaxFailuresExceedsCap {
13268 max_failures: 50_000
13269 }
13270 ),
13271 "got {err:?}"
13272 );
13273 let msg = err.to_string();
13274 assert!(
13275 msg.contains("50000"),
13276 ":politicas :circuit-breaker :max-failures cap diagnostic must carry the offending value verbatim (got: {msg})"
13277 );
13278 }
13279
13280 #[test]
13281 fn policy_breaker_max_failures_cap_pins_canonical_value() {
13282 // The [`POLICY_BREAKER_MAX_FAILURES_MAX`] constant pins the
13283 // value at 1000 — an order of magnitude above every
13284 // documented production-playbook recommendation band
13285 // (Hystrix `requestVolumeThreshold` default 20, Istio
13286 // `outlierDetection.consecutive5xxErrors` default 5, Envoy
13287 // `outlier_detection.consecutive_5xx` default 5, Polly /
13288 // Resilience4j typical 5..=50) and below the
13289 // clearly-pathological "effectively no protection" floor
13290 // (10_000, 100_000, u32::MAX). Pinning the literal value
13291 // here surfaces a future drift (a relaxation to 10_000, a
13292 // tightening to 100) as a deliberate test edit, not a
13293 // silent contract narrowing.
13294 assert_eq!(POLICY_BREAKER_MAX_FAILURES_MAX, 1000);
13295 }
13296
13297 #[test]
13298 fn rejects_circuit_breaker_zero_window() {
13299 let mut s = three_member_spec();
13300 s.politicas.circuit_breaker = Some(CircuitBreaker {
13301 max_failures: 5,
13302 window: Duration::ZERO,
13303 });
13304 assert_eq!(
13305 s.validate().unwrap_err(),
13306 AplicacaoError::PolicyBreakerZeroWindow
13307 );
13308 }
13309
13310 #[test]
13311 fn rejects_zero_rate_limit() {
13312 let mut s = three_member_spec();
13313 s.politicas.rate_limit = Some(RateLimit {
13314 rate: 0,
13315 window: Duration::from_secs(1),
13316 });
13317 assert_eq!(
13318 s.validate().unwrap_err(),
13319 AplicacaoError::PolicyRateLimitZero
13320 );
13321 }
13322
13323 #[test]
13324 fn rejects_rate_limit_zero_window() {
13325 // `RateLimit { rate: 100, window: Duration::ZERO }` is
13326 // constructible programmatically (the typed `Duration` field
13327 // imposes no nonzero invariant) but renders through
13328 // `rate_limit_codec::render` as `"100/0s"` — a fragment the
13329 // codec's `parse` rejects as `unknown rate-limit window unit
13330 // "0s"`. Until this validate-time gate landed the typed slot
13331 // accepted the value silently and the round-trip break only
13332 // surfaced at deserialize time (potentially in a downstream
13333 // consumer that never re-validates). Pin the rejection at
13334 // `AplicacaoSpec::validate` so the typed slot's valid set
13335 // matches the codec's round-trippable set structurally.
13336 let mut s = three_member_spec();
13337 s.politicas.rate_limit = Some(RateLimit {
13338 rate: 100,
13339 window: Duration::ZERO,
13340 });
13341 assert_eq!(
13342 s.validate().unwrap_err(),
13343 AplicacaoError::PolicyRateLimitWindowNotCanonical {
13344 window: Duration::ZERO
13345 }
13346 );
13347 }
13348
13349 #[test]
13350 fn rejects_rate_limit_arbitrary_seconds_window() {
13351 // 45 seconds is a valid `Duration` but not one of the three
13352 // canonical rate-limit windows the codec round-trips
13353 // (1s / 60s / 3600s). Renders as `"100/45s"`, which the parser
13354 // refuses on round-trip — same round-trip-break shape the
13355 // zero-window arm above pins, with a non-zero magnitude to
13356 // guard against a future "reject only zero" half-measure.
13357 let mut s = three_member_spec();
13358 let window = Duration::from_secs(45);
13359 s.politicas.rate_limit = Some(RateLimit { rate: 100, window });
13360 assert_eq!(
13361 s.validate().unwrap_err(),
13362 AplicacaoError::PolicyRateLimitWindowNotCanonical { window }
13363 );
13364 }
13365
13366 #[test]
13367 fn rejects_rate_limit_two_minute_window() {
13368 // 120 seconds = 2 minutes is a "looks-canonical" but
13369 // not-canonical window: it's a clean integer multiple of the
13370 // minute unit, but the codec only round-trips the
13371 // unit-magnitude-1 forms (`"<n>/m"` ≡ 60s, *not* `"<n>/2m"`).
13372 // A `Duration::from_secs(120)` window renders as `"100/120s"`
13373 // which the parser rejects. Pinning this case rules out a
13374 // future "accept any clean multiple of s/m/h" relaxation
13375 // that would silently break the codec contract.
13376 let mut s = three_member_spec();
13377 let window = Duration::from_secs(120);
13378 s.politicas.rate_limit = Some(RateLimit { rate: 50, window });
13379 assert_eq!(
13380 s.validate().unwrap_err(),
13381 AplicacaoError::PolicyRateLimitWindowNotCanonical { window }
13382 );
13383 }
13384
13385 #[test]
13386 fn rejects_rate_limit_subsecond_window() {
13387 // A sub-second window (e.g. 500ms) is a valid `Duration` but
13388 // unrepresentable in the codec's `<n>/<s|m|h>` author surface.
13389 // Pin the rejection so a future relaxation can't silently
13390 // admit fractional-second windows that the codec can't
13391 // round-trip.
13392 let mut s = three_member_spec();
13393 let window = Duration::from_millis(500);
13394 s.politicas.rate_limit = Some(RateLimit { rate: 200, window });
13395 assert_eq!(
13396 s.validate().unwrap_err(),
13397 AplicacaoError::PolicyRateLimitWindowNotCanonical { window }
13398 );
13399 }
13400
13401 #[test]
13402 fn rejects_policy_rate_limit_above_cap() {
13403 // The fail-before-pass-after pin: `rate = POLICY_RATE_LIMIT_MAX + 1`
13404 // is structurally one past the cap and silently passed
13405 // validate on every pre-gate codebase because the typed slot's
13406 // only `rate` check was the zero-floor arm. The no-op-limiter
13407 // shape only surfaced at the runtime substrate (Envoy's
13408 // `local_rate_limit.token_bucket.max_tokens`, the future
13409 // Cilium L7 rate-limit overlay) far from the source caixa.lisp
13410 // with no field naming the offending policy.
13411 let mut s = three_member_spec();
13412 s.politicas.rate_limit = Some(RateLimit {
13413 rate: POLICY_RATE_LIMIT_MAX + 1,
13414 window: Duration::from_secs(1),
13415 });
13416 assert_eq!(
13417 s.validate().unwrap_err(),
13418 AplicacaoError::PolicyRateLimitExceedsCap {
13419 rate: POLICY_RATE_LIMIT_MAX + 1
13420 }
13421 );
13422 }
13423
13424 #[test]
13425 fn rejects_policy_rate_limit_far_above_cap() {
13426 // The `u32::MAX` worst case — the four-billion-token rate-limit
13427 // a typo (`(:rate-limit "4294967295/s")`) or struct-literal
13428 // copy-paste lands in the slot. Pin the cap arm's coverage
13429 // explicitly across the full `u32` overflow so a future
13430 // relaxation that drops the upper bound surfaces here. Peer to
13431 // `rejects_policy_retries_far_above_cap` on the sibling
13432 // `:retries` axis and `rejects_policy_breaker_max_failures_far_above_cap`
13433 // on the sibling `:max-failures` axis.
13434 let mut s = three_member_spec();
13435 s.politicas.rate_limit = Some(RateLimit {
13436 rate: u32::MAX,
13437 window: Duration::from_secs(1),
13438 });
13439 assert_eq!(
13440 s.validate().unwrap_err(),
13441 AplicacaoError::PolicyRateLimitExceedsCap { rate: u32::MAX }
13442 );
13443 }
13444
13445 #[test]
13446 fn accepts_policy_rate_limit_at_cap() {
13447 // The boundary value — exactly [`POLICY_RATE_LIMIT_MAX`] —
13448 // must validate. The cap is inclusive on the top edge, matching
13449 // every other typed upper bound in this crate
13450 // ([`POLICY_RETRIES_MAX`], [`POLICY_BREAKER_MAX_FAILURES_MAX`],
13451 // [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`]). Pin the boundary
13452 // across all three canonical windows so a future off-by-one
13453 // tightening (`>= POLICY_RATE_LIMIT_MAX` instead of `>`) or a
13454 // window-conditional cap surfaces here as a test failure rather
13455 // than a silent contract narrowing.
13456 for secs in [1u64, 60, 3600] {
13457 let mut s = three_member_spec();
13458 s.politicas.rate_limit = Some(RateLimit {
13459 rate: POLICY_RATE_LIMIT_MAX,
13460 window: Duration::from_secs(secs),
13461 });
13462 s.validate().unwrap_or_else(|e| {
13463 panic!("rate == POLICY_RATE_LIMIT_MAX must validate (window={secs}s); got {e:?}",)
13464 });
13465 }
13466 }
13467
13468 #[test]
13469 fn accepts_policy_rate_limit_typical_values() {
13470 // The documented production-playbook recommendation band —
13471 // Envoy / Istio / Kong / NGINX 10..=10_000 RPS, Cloudflare /
13472 // AWS API Gateway 10_000..=100_000 per-minute, Cloudflare
13473 // Enterprise ~1M per-hour. Every value in the validated set
13474 // must pass; pin the band explicitly so a future tightening
13475 // surfaces here.
13476 for rate in [1u32, 10, 100, 1_000, 10_000, 100_000, 1_000_000] {
13477 for secs in [1u64, 60, 3600] {
13478 let mut s = three_member_spec();
13479 s.politicas.rate_limit = Some(RateLimit {
13480 rate,
13481 window: Duration::from_secs(secs),
13482 });
13483 s.validate().unwrap_or_else(|e| {
13484 panic!("rate={rate} window={secs}s must validate; got {e:?}")
13485 });
13486 }
13487 }
13488 }
13489
13490 #[test]
13491 fn policy_rate_limit_zero_takes_precedence_over_cap() {
13492 // The cross-arm ordering pin: `rate == 0` is structurally
13493 // outside both `1..` (zero-floor) and `..=POLICY_RATE_LIMIT_MAX`
13494 // (cap), but the zero-floor diagnostic is the more
13495 // self-locating one (it directly names the omit-axis
13496 // remediation). Pin the order so a future refactor that
13497 // reorders the arms surfaces here as a test failure rather
13498 // than a silent diagnostic regression. Same shape every other
13499 // zero-then-cap ordering on this surface uses
13500 // ([`AplicacaoError::PolicyRetriesZero`] then
13501 // [`AplicacaoError::PolicyRetriesExceedsCap`];
13502 // [`AplicacaoError::PolicyBreakerZeroFailures`] then
13503 // [`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap`]).
13504 let mut s = three_member_spec();
13505 s.politicas.rate_limit = Some(RateLimit {
13506 rate: 0,
13507 window: Duration::from_secs(1),
13508 });
13509 assert_eq!(
13510 s.validate().unwrap_err(),
13511 AplicacaoError::PolicyRateLimitZero,
13512 "rate == 0 must surface the zero-floor diagnostic, not the cap diagnostic"
13513 );
13514 }
13515
13516 #[test]
13517 fn policy_rate_limit_cap_takes_precedence_over_non_canonical_window() {
13518 // Two-axis-bad pin: rate above cap *and* window non-canonical.
13519 // The validate gate must fire on the rate cap first — the
13520 // amplification-shape (no-op limiter) diagnostic is the more
13521 // fundamental one; the window-canonical diagnostic is the
13522 // narrower codec-round-trip shape. Pin the ordering so a future
13523 // refactor that reorders the rate-then-window check arms
13524 // surfaces here as a test failure rather than a silent
13525 // diagnostic regression.
13526 let mut s = three_member_spec();
13527 s.politicas.rate_limit = Some(RateLimit {
13528 rate: POLICY_RATE_LIMIT_MAX + 1,
13529 window: Duration::from_secs(45),
13530 });
13531 assert_eq!(
13532 s.validate().unwrap_err(),
13533 AplicacaoError::PolicyRateLimitExceedsCap {
13534 rate: POLICY_RATE_LIMIT_MAX + 1
13535 },
13536 "above-cap rate must surface the cap diagnostic, not the window diagnostic"
13537 );
13538 }
13539
13540 #[test]
13541 fn policy_rate_limit_cap_diagnostic_carries_offending_value() {
13542 // The diagnostic-shape pin: the offending `u32` is carried
13543 // verbatim into the [`AplicacaoError::PolicyRateLimitExceedsCap`]
13544 // variant so the surfaced error message names the value the
13545 // author wrote (`":politicas :rate-limit rate (5000000) exceeds
13546 // the mesh-policy ceiling …"`), not just the cap. Same
13547 // self-locating diagnostic shape every other typed-cap arm on
13548 // this surface carries ([`AplicacaoError::PolicyRetriesExceedsCap`]
13549 // carries the offending retries count verbatim,
13550 // [`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap`] carries
13551 // the offending failure count verbatim).
13552 let mut s = three_member_spec();
13553 s.politicas.rate_limit = Some(RateLimit {
13554 rate: 5_000_000,
13555 window: Duration::from_secs(1),
13556 });
13557 let err = s.validate().unwrap_err();
13558 assert!(
13559 matches!(
13560 err,
13561 AplicacaoError::PolicyRateLimitExceedsCap { rate: 5_000_000 }
13562 ),
13563 "got {err:?}"
13564 );
13565 let msg = err.to_string();
13566 assert!(
13567 msg.contains("5000000"),
13568 ":politicas :rate-limit cap diagnostic must carry the offending value verbatim (got: {msg})"
13569 );
13570 }
13571
13572 #[test]
13573 fn policy_rate_limit_cap_pins_canonical_value() {
13574 // The [`POLICY_RATE_LIMIT_MAX`] constant pins the value at
13575 // 1_000_000 — two-to-three orders of magnitude above every
13576 // documented production-playbook recommendation band (Envoy /
13577 // Istio / Kong / NGINX 10..=10_000 RPS, Cloudflare / AWS API
13578 // Gateway 10_000..=100_000 per-minute) and below the
13579 // clearly-pathological "paste-from-binary blob" floor
13580 // (100_000_000, u32::MAX). Pinning the literal value here
13581 // surfaces a future drift (a relaxation to 10_000_000, a
13582 // tightening to 100_000) as a deliberate test edit, not a
13583 // silent contract narrowing.
13584 assert_eq!(POLICY_RATE_LIMIT_MAX, 1_000_000);
13585 }
13586
13587 #[test]
13588 fn rate_limit_zero_rate_takes_precedence_over_non_canonical_window() {
13589 // Both axes are invalid here: rate == 0 *and* window is
13590 // non-canonical. The validate gate must fire on rate first
13591 // (matching the existing `rejects_zero_rate_limit` ordering),
13592 // so the existing diagnostic continues to lead with the
13593 // simpler "zero rate" framing. Pinning the order of checks
13594 // so a future refactor that reorders the arms surfaces here
13595 // as a test failure rather than a silent diagnostic
13596 // regression.
13597 let mut s = three_member_spec();
13598 s.politicas.rate_limit = Some(RateLimit {
13599 rate: 0,
13600 window: Duration::from_secs(45),
13601 });
13602 assert_eq!(
13603 s.validate().unwrap_err(),
13604 AplicacaoError::PolicyRateLimitZero
13605 );
13606 }
13607
13608 #[test]
13609 fn rate_limit_canonical_windows_validate() {
13610 // The three canonical windows the codec round-trips
13611 // losslessly — 1s / 60s / 3600s — must all pass `validate()`
13612 // unchanged. Pin the full canonical set as a positive case
13613 // (the existing `rate_limit_round_trip_seconds` /
13614 // `rate_limit_round_trip_minutes` tests pin the
13615 // serialize-then-deserialize property at the codec layer; this
13616 // test pins the validate-side complement so a future tightening
13617 // of the canonical set — e.g. dropping `:hour` — surfaces here
13618 // as a test failure rather than a silent contract narrowing).
13619 for secs in [1u64, 60, 3600] {
13620 let mut s = three_member_spec();
13621 s.politicas.rate_limit = Some(RateLimit {
13622 rate: 100,
13623 window: Duration::from_secs(secs),
13624 });
13625 s.validate().expect("canonical window must validate");
13626 }
13627 }
13628
13629 #[test]
13630 fn rate_limit_validated_value_round_trips_through_codec() {
13631 // The structural property the validate gate enforces:
13632 // every `RateLimit` past `AplicacaoSpec::validate` round-trips
13633 // losslessly through the `rate_limit_codec` (serialize → string
13634 // → deserialize → equal value). Pin this end-to-end so a future
13635 // change to either side (the validate gate's accepted window
13636 // set, the codec's parse/render unit set) that breaks the
13637 // alignment surfaces here. The previous-state shape (typed
13638 // slot accepts arbitrary `Duration`, codec only round-trips
13639 // 1s/60s/3600s) would fail this test for a `Duration::from_secs(45)`
13640 // window — the validate gate now forecloses that.
13641 for secs in [1u64, 60, 3600] {
13642 let mut s = three_member_spec();
13643 s.politicas.rate_limit = Some(RateLimit {
13644 rate: 250,
13645 window: Duration::from_secs(secs),
13646 });
13647 s.validate().unwrap();
13648 let json = serde_json::to_string(&s.politicas).unwrap();
13649 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
13650 assert_eq!(
13651 back.rate_limit, s.politicas.rate_limit,
13652 "every validated :rate-limit must round-trip losslessly through the codec"
13653 );
13654 }
13655 }
13656
13657 #[test]
13658 fn rate_limit_canonical_per_hour_renders_with_h_suffix() {
13659 // The hour-window canonical form (`"<n>/h"`) was missing from
13660 // the prior `rate_limit_round_trip_seconds` / `_minutes` test
13661 // pair. Now that the validate gate pins 3600s as part of the
13662 // canonical set, pin its serialize-side render shape too so
13663 // the third leg of the s/m/h tripod is explicitly tested.
13664 let policy = MeshPolicy {
13665 rate_limit: Some(RateLimit {
13666 rate: 10000,
13667 window: Duration::from_secs(3600),
13668 }),
13669 ..Default::default()
13670 };
13671 let json = serde_json::to_string(&policy).unwrap();
13672 assert!(
13673 json.contains("\"10000/h\""),
13674 "hour-window canonical form must render with `h` suffix (got: {json})"
13675 );
13676 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
13677 assert_eq!(back.rate_limit.unwrap().window, Duration::from_secs(3600));
13678 }
13679
13680 #[test]
13681 fn is_canonical_rate_limit_window_predicate_tracks_codec() {
13682 // Pin the predicate's accepted set against the codec's
13683 // accepted set explicitly. A future addition to the codec
13684 // (e.g. accepting `:day`/`:week` as authoring units) must be
13685 // accompanied by a parallel addition here, and a regression
13686 // that drops one of the three canonical units from either
13687 // side surfaces as a test failure. The predicate is the
13688 // single source of truth for the canonical-window set; this
13689 // test enshrines that the codec's parse arms and the
13690 // predicate's accept arms agree exactly.
13691 assert!(super::is_canonical_rate_limit_window(Duration::from_secs(
13692 1
13693 )));
13694 assert!(super::is_canonical_rate_limit_window(Duration::from_secs(
13695 60
13696 )));
13697 assert!(super::is_canonical_rate_limit_window(Duration::from_secs(
13698 3600
13699 )));
13700 // Non-canonical windows the predicate rejects.
13701 assert!(!super::is_canonical_rate_limit_window(Duration::ZERO));
13702 assert!(!super::is_canonical_rate_limit_window(Duration::from_secs(
13703 2
13704 )));
13705 assert!(!super::is_canonical_rate_limit_window(Duration::from_secs(
13706 30
13707 )));
13708 assert!(!super::is_canonical_rate_limit_window(Duration::from_secs(
13709 120
13710 )));
13711 assert!(!super::is_canonical_rate_limit_window(Duration::from_secs(
13712 86400
13713 )));
13714 // Sub-second windows: even `Duration::from_millis(1000)` is
13715 // exactly 1s and accepted; `Duration::from_millis(500)` is
13716 // sub-second and rejected.
13717 assert!(super::is_canonical_rate_limit_window(
13718 Duration::from_millis(1000)
13719 ));
13720 assert!(!super::is_canonical_rate_limit_window(
13721 Duration::from_millis(500)
13722 ));
13723 assert!(!super::is_canonical_rate_limit_window(
13724 Duration::from_millis(1500)
13725 ));
13726 }
13727
13728 #[test]
13729 fn rate_limit_unit_table_projections_are_mutual_inverses() {
13730 // Bidirection pin against the lifted [`RATE_LIMIT_UNIT_TABLE`]
13731 // (the canonical `{"s" ↔ 1s, "m" ↔ 60s, "h" ↔ 3600s}`
13732 // bijection every consumer of the rate-limit unit surface
13733 // reads from). Until this table landed the three (str,
13734 // Duration) pairs sat scattered across four peer sites —
13735 // `rate_limit_codec::parse`'s `match unit` arm, `render`'s
13736 // `if secs == 1 { "s" } else if …` cascade, and
13737 // `is_canonical_rate_limit_window`'s `secs == 1 || 60 ||
13738 // 3600` disjunction — each carrying its own hand-written copy
13739 // with no compile-time link between them. A future
13740 // rate-limit-unit addition (a `"d"` day suffix, a `"ms"`
13741 // sub-second window) would have to be threaded through all
13742 // three sites in lockstep or a drift would silently split
13743 // the accepted-window set. Lifting the pairs onto one const
13744 // + two projection helpers collapses the surface: this pin
13745 // enshrines that both projections agree on every table row
13746 // and neither leaks a spurious entry the other doesn't
13747 // recognize.
13748 for (unit, secs) in [("s", 1u64), ("m", 60), ("h", 3600)] {
13749 let window = super::rate_limit_window_from_unit(unit)
13750 .unwrap_or_else(|| panic!("canonical unit {unit:?} must resolve to a Duration"));
13751 assert_eq!(
13752 window,
13753 Duration::from_secs(secs),
13754 "unit {unit:?} must resolve to {secs}s"
13755 );
13756 assert_eq!(
13757 super::rate_limit_window_unit(window),
13758 Some(unit),
13759 "Duration({secs}s) must render as {unit:?}"
13760 );
13761 }
13762 // Non-table units yield None on the `unit → Duration`
13763 // projection — a future `"d"` addition to the table would
13764 // flip this arm; today it pins the current three-row table's
13765 // rejection semantics.
13766 assert!(super::rate_limit_window_from_unit("d").is_none());
13767 assert!(super::rate_limit_window_from_unit("ms").is_none());
13768 assert!(super::rate_limit_window_from_unit("").is_none());
13769 // Non-table Durations yield None on the `Duration → unit`
13770 // projection — pins that the two projections agree on the
13771 // "not in the table" semantic too, so a drift where the
13772 // parse-side accepts a value the render-side can't emit is
13773 // a build error at the two-arm pair, not a silent codec
13774 // round-trip break.
13775 assert!(super::rate_limit_window_unit(Duration::from_secs(2)).is_none());
13776 assert!(super::rate_limit_window_unit(Duration::from_secs(86_400)).is_none());
13777 assert!(super::rate_limit_window_unit(Duration::from_millis(1500)).is_none());
13778 }
13779
13780 #[test]
13781 fn rejects_policy_timeout_sub_millisecond() {
13782 // A purely sub-millisecond `Duration` (`from_micros(500)` =
13783 // 500_000 ns) is not the zero `Duration` — the `is_zero()`
13784 // arm passes — but `as_millis() == 0`, so the shared codec's
13785 // `render` arm returns the literal `"0s"`, which the
13786 // codec's `parse` arm then deserializes as `Duration::ZERO`
13787 // and the `PolicyTimeoutZero` zero-floor gate would reject
13788 // on re-validate. Pin the rejection at the typed slot's
13789 // canonical-floor gate so the round-trip break surfaces at
13790 // validate time, naming the offending `Duration`, rather
13791 // than at the next serialize → deserialize round-trip far
13792 // from the source `caixa.lisp`.
13793 let mut s = three_member_spec();
13794 let timeout = Duration::from_micros(500);
13795 s.politicas.timeout = Some(timeout);
13796 assert_eq!(
13797 s.validate().unwrap_err(),
13798 AplicacaoError::PolicyTimeoutNotCanonical { timeout }
13799 );
13800 }
13801
13802 #[test]
13803 fn rejects_policy_timeout_non_integer_millisecond() {
13804 // A `Duration` with non-integer-millisecond residue
13805 // (`from_micros(1500)` = 1.5 ms = 1_500_000 ns) renders
13806 // through the shared codec's `render` arm as `"1ms"` (the
13807 // `as_millis()` floor truncates), which the codec's `parse`
13808 // arm then deserializes as `Duration::from_millis(1)` =
13809 // 1_000_000 ns — silently *different* from the original.
13810 // Pin the rejection so this round-trip break surfaces at
13811 // validate time, where the offending `Duration` is named,
13812 // rather than as a silent value-laundered round-trip on the
13813 // next codec round-trip.
13814 let mut s = three_member_spec();
13815 let timeout = Duration::from_micros(1500);
13816 s.politicas.timeout = Some(timeout);
13817 assert_eq!(
13818 s.validate().unwrap_err(),
13819 AplicacaoError::PolicyTimeoutNotCanonical { timeout }
13820 );
13821 }
13822
13823 #[test]
13824 fn accepts_policy_timeout_integer_millisecond_forms() {
13825 // The codec's accepted set — integer multiples of 1ms — is
13826 // the typed slot's accepted set: `1ms`, `500ms`, `30s`, `2m`,
13827 // `1h` all pass the canonical gate. Pin the canonical-forms
13828 // sweep so a future tightening of the codec's grammar (e.g.
13829 // dropping `:ms`) surfaces here as a test failure rather
13830 // than a silent contract narrowing on the typed slot.
13831 for timeout in [
13832 Duration::from_millis(1),
13833 Duration::from_millis(500),
13834 Duration::from_millis(1500),
13835 Duration::from_secs(30),
13836 Duration::from_secs(120),
13837 Duration::from_secs(3600),
13838 ] {
13839 let mut s = three_member_spec();
13840 s.politicas.timeout = Some(timeout);
13841 s.validate()
13842 .expect("integer-millisecond :timeout must validate");
13843 }
13844 }
13845
13846 #[test]
13847 fn policy_timeout_zero_takes_precedence_over_canonical() {
13848 // `Duration::ZERO` carries `subsec_nanos() == 0` and would
13849 // pass the canonical-millisecond gate; the more self-locating
13850 // `PolicyTimeoutZero` arm (which names the omit-axis
13851 // remediation directly) must fire first. Pin the ordering so
13852 // a future refactor that reorders the arms surfaces here as a
13853 // test failure rather than a silent diagnostic regression.
13854 let mut s = three_member_spec();
13855 s.politicas.timeout = Some(Duration::ZERO);
13856 assert_eq!(s.validate().unwrap_err(), AplicacaoError::PolicyTimeoutZero);
13857 }
13858
13859 #[test]
13860 fn policy_timeout_canonical_diagnostic_carries_offending_duration() {
13861 // The diagnostic envelope carries the offending `Duration`
13862 // verbatim so the author can grep their `caixa.lisp` for
13863 // `:timeout "<value>"` and fix it in one edit. Same
13864 // diagnostic shape every other typed-slot canonical-form
13865 // gate (`PolicyRateLimitWindowNotCanonical`) uses on the
13866 // peer `:rate-limit :window` axis.
13867 let mut s = three_member_spec();
13868 let timeout = Duration::from_nanos(1_000_001);
13869 s.politicas.timeout = Some(timeout);
13870 match s.validate().unwrap_err() {
13871 AplicacaoError::PolicyTimeoutNotCanonical { timeout: t } => {
13872 assert_eq!(t, timeout, "diagnostic must carry the offending Duration");
13873 }
13874 other => panic!("expected PolicyTimeoutNotCanonical, got {other:?}"),
13875 }
13876 }
13877
13878 #[test]
13879 fn rejects_policy_timeout_above_cap() {
13880 // The fail-before-pass-after pin: 3601s = 1h + 1s is
13881 // structurally one canonical-tick past the
13882 // [`POLICY_TIMEOUT_MAX`] ceiling (1h = 3600s) — an
13883 // integer-millisecond magnitude the canonical-form arm above
13884 // accepts cleanly, that the codec round-trips losslessly as
13885 // `"3601s"`, and that silently passed validate on every
13886 // pre-gate codebase because the typed slot's only checks were
13887 // the zero-floor and canonical-form arms. The mesh-level
13888 // deadline degenerates only at the runtime substrate (Envoy
13889 // / Cilium L7 timeout overlay) far from the source
13890 // `caixa.lisp` with no field naming the offending policy.
13891 let mut s = three_member_spec();
13892 let timeout = POLICY_TIMEOUT_MAX + Duration::from_secs(1);
13893 s.politicas.timeout = Some(timeout);
13894 assert_eq!(
13895 s.validate().unwrap_err(),
13896 AplicacaoError::PolicyTimeoutExceedsCap { timeout }
13897 );
13898 }
13899
13900 #[test]
13901 fn rejects_policy_timeout_one_millisecond_above_cap() {
13902 // Boundary case: exactly 1ms past the cap (the granularity
13903 // the canonical-form gate enforces). Catches a future
13904 // "strictly less than" half-measure and pins the diagnostic
13905 // to name the offending `Duration` verbatim. Peer of
13906 // [`crate::limits`]'s `validate_rejects_memory_one_byte_above_wasm32_cap`
13907 // boundary pin on the sibling `:limits :memory` top edge.
13908 let mut s = three_member_spec();
13909 let timeout = POLICY_TIMEOUT_MAX + Duration::from_millis(1);
13910 s.politicas.timeout = Some(timeout);
13911 assert_eq!(
13912 s.validate().unwrap_err(),
13913 AplicacaoError::PolicyTimeoutExceedsCap { timeout }
13914 );
13915 }
13916
13917 #[test]
13918 fn rejects_policy_timeout_far_above_cap() {
13919 // The "obvious authoring footgun" case: a `(:timeout "24h")`
13920 // or `(:timeout "86400s")` — values the canonical-form arm
13921 // accepts as integer-millisecond magnitudes, the codec
13922 // round-trips losslessly through serde, but the mesh-level
13923 // policy cannot honor (a 24-hour synchronous-`:contratos`
13924 // deadline is operationally indistinguishable from
13925 // omit-the-axis). Until this gate landed validate accepted
13926 // it. Pin both common above-cap values (24h, 7d) so a future
13927 // relaxation that drops the upper bound surfaces here.
13928 for timeout in [
13929 Duration::from_secs(86_400), // 24h
13930 Duration::from_secs(604_800), // 7d
13931 Duration::from_secs(1_000_000), // ~11.5 days
13932 ] {
13933 let mut s = three_member_spec();
13934 s.politicas.timeout = Some(timeout);
13935 assert_eq!(
13936 s.validate().unwrap_err(),
13937 AplicacaoError::PolicyTimeoutExceedsCap { timeout }
13938 );
13939 }
13940 }
13941
13942 #[test]
13943 fn accepts_policy_timeout_at_cap() {
13944 // The boundary value — exactly [`POLICY_TIMEOUT_MAX`] (1h) —
13945 // must validate. The cap is inclusive on the top edge,
13946 // matching the [`POLICY_RETRIES_MAX`] /
13947 // [`POLICY_BREAKER_MAX_FAILURES_MAX`] /
13948 // [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`] discipline on the
13949 // sibling capped axes. Pin the boundary explicitly so a
13950 // future off-by-one tightening (`>= POLICY_TIMEOUT_MAX`
13951 // instead of `>`) surfaces here as a test failure rather
13952 // than a silent contract narrowing.
13953 let mut s = three_member_spec();
13954 s.politicas.timeout = Some(POLICY_TIMEOUT_MAX);
13955 s.validate()
13956 .expect("timeout == POLICY_TIMEOUT_MAX must validate");
13957 }
13958
13959 #[test]
13960 fn accepts_policy_timeout_typical_values() {
13961 // The documented production-playbook band positive-control
13962 // sweep — every value Envoy / Istio / Linkerd / AWS App Mesh
13963 // / Kubernetes ingress-nginx recommend (1s..=60s) must pass,
13964 // plus a sweep through the long-running-workflow band
13965 // (5m, 15m, 30m, 1h) the cap accepts. Pin the inclusive
13966 // validated set explicitly so a future tightening of the
13967 // ceiling surfaces here as a deliberate test edit, not a
13968 // silent contract narrowing.
13969 for timeout in [
13970 Duration::from_millis(1),
13971 Duration::from_millis(500),
13972 Duration::from_secs(1),
13973 Duration::from_secs(10),
13974 Duration::from_secs(15), // Envoy default
13975 Duration::from_secs(30),
13976 Duration::from_secs(60), // AWS App Mesh typical
13977 Duration::from_secs(300),
13978 Duration::from_secs(900),
13979 Duration::from_secs(1800),
13980 Duration::from_secs(3600), // exactly 1h, the cap
13981 ] {
13982 let mut s = three_member_spec();
13983 s.politicas.timeout = Some(timeout);
13984 s.validate()
13985 .unwrap_or_else(|e| panic!("timeout={timeout:?} must validate; got {e:?}"));
13986 }
13987 }
13988
13989 #[test]
13990 fn policy_timeout_zero_takes_precedence_over_cap() {
13991 // The cross-arm ordering pin: `Duration::ZERO` is
13992 // structurally outside both `>= 1ms` (zero-floor) and
13993 // `<= POLICY_TIMEOUT_MAX` (cap), but the zero-floor
13994 // diagnostic is the more self-locating one (it directly
13995 // names the omit-axis remediation), so the validate gate
13996 // must fire on zero first. Same shape every other
13997 // zero-then-shape ordering on this surface uses
13998 // ([`AplicacaoError::PolicyRetriesZero`] then
13999 // [`AplicacaoError::PolicyRetriesExceedsCap`];
14000 // [`AplicacaoError::PolicyBreakerZeroFailures`] then
14001 // [`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap`]).
14002 let mut s = three_member_spec();
14003 s.politicas.timeout = Some(Duration::ZERO);
14004 assert_eq!(
14005 s.validate().unwrap_err(),
14006 AplicacaoError::PolicyTimeoutZero,
14007 "Duration::ZERO must surface the zero-floor diagnostic, not the cap diagnostic"
14008 );
14009 }
14010
14011 #[test]
14012 fn policy_timeout_canonical_takes_precedence_over_cap() {
14013 // The cross-arm ordering pin: a `Duration` that is *both*
14014 // sub-millisecond (non-canonical-form) and structurally
14015 // above the cap surfaces the canonical-form diagnostic
14016 // first, because the round-trip-shape break is the more
14017 // fundamental issue (the value can't even round-trip
14018 // through the codec, so the cap diagnostic naming
14019 // `1ms..=1h` would be misleading — there's no integer-ms
14020 // form of the offending value). Pin the order so a future
14021 // refactor that reorders the arms surfaces here as a test
14022 // failure rather than a silent diagnostic regression.
14023 let mut s = three_member_spec();
14024 // A `Duration` with `subsec_nanos() == 1` (sub-ms residue)
14025 // *and* total magnitude above the 1h cap.
14026 let timeout = POLICY_TIMEOUT_MAX + Duration::from_nanos(1);
14027 s.politicas.timeout = Some(timeout);
14028 assert_eq!(
14029 s.validate().unwrap_err(),
14030 AplicacaoError::PolicyTimeoutNotCanonical { timeout },
14031 "sub-ms above-cap value must surface the canonical-form diagnostic, not the cap diagnostic"
14032 );
14033 }
14034
14035 #[test]
14036 fn policy_timeout_cap_diagnostic_carries_offending_value() {
14037 // The diagnostic-shape pin: the offending `Duration` is
14038 // carried verbatim into the
14039 // [`AplicacaoError::PolicyTimeoutExceedsCap`] variant so the
14040 // surfaced error message names the value the author wrote
14041 // (`":politicas :timeout (Duration { secs: 7200, nanos: 0 })
14042 // exceeds the mesh-policy ceiling …"`), not just the cap.
14043 // Same self-locating diagnostic shape every other typed-cap
14044 // arm on this surface carries
14045 // ([`AplicacaoError::PolicyRetriesExceedsCap`] carries the
14046 // offending retry count verbatim).
14047 let mut s = three_member_spec();
14048 let timeout = Duration::from_secs(7200); // 2h
14049 s.politicas.timeout = Some(timeout);
14050 let err = s.validate().unwrap_err();
14051 assert!(
14052 matches!(err, AplicacaoError::PolicyTimeoutExceedsCap { timeout: t } if t == timeout),
14053 "got {err:?}"
14054 );
14055 let msg = err.to_string();
14056 assert!(
14057 msg.contains("7200"),
14058 ":politicas :timeout cap diagnostic must carry the offending value verbatim (got: {msg})"
14059 );
14060 }
14061
14062 #[test]
14063 fn policy_timeout_cap_pins_canonical_value() {
14064 // The [`POLICY_TIMEOUT_MAX`] constant pins the value at
14065 // exactly 1 hour (3600s = 3_600_000ms) — the largest unit
14066 // the shared duration codec emits as a clean canonical
14067 // string (`"<n>h"`). Pinning the literal value here surfaces
14068 // a future drift (a relaxation to 24h, a tightening to 5m)
14069 // as a deliberate test edit, not a silent contract
14070 // narrowing. Same shape every other typed-cap value pin on
14071 // this surface uses (`policy_retries_cap_is_aws_app_mesh_aligned`).
14072 assert_eq!(POLICY_TIMEOUT_MAX, Duration::from_secs(3600));
14073 assert_eq!(POLICY_TIMEOUT_MAX.as_millis(), 3_600_000);
14074 }
14075
14076 #[test]
14077 fn policy_timeout_cap_value_round_trips_through_codec() {
14078 // The codec round-trip property the cap arm preserves: the
14079 // [`POLICY_TIMEOUT_MAX`] constant itself round-trips through
14080 // the shared duration codec — every value at the cap renders
14081 // to a clean canonical string (`"1h"`) and parses back to
14082 // the same `Duration`. Pin this so a future drift between
14083 // the cap constant and the codec's largest emitted unit
14084 // surfaces here. Same shape every other typed boundary pin
14085 // on this surface uses
14086 // (`wasm32_memory_cap_matches_parsed_4_gib`).
14087 let policy = MeshPolicy {
14088 timeout: Some(POLICY_TIMEOUT_MAX),
14089 ..Default::default()
14090 };
14091 let json = serde_json::to_string(&policy).unwrap();
14092 // The codec emits `"1h"` for the canonical 1-hour magnitude.
14093 assert!(
14094 json.contains("\"1h\""),
14095 "the POLICY_TIMEOUT_MAX value must render to the canonical \"1h\" form (got: {json})"
14096 );
14097 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
14098 assert_eq!(back.timeout, Some(POLICY_TIMEOUT_MAX));
14099 }
14100
14101 #[test]
14102 fn rejects_circuit_breaker_window_sub_millisecond() {
14103 // Peer of the `:timeout` sub-millisecond arm on the second
14104 // typed-`Duration` `:politicas` axis: a purely sub-ms
14105 // `Duration` (`from_micros(500)`) renders through the shared
14106 // codec as `"0s"`, which the codec parses back to
14107 // `Duration::ZERO`, which the `PolicyBreakerZeroWindow`
14108 // zero-floor gate then rejects on re-validate.
14109 let mut s = three_member_spec();
14110 let window = Duration::from_micros(500);
14111 s.politicas.circuit_breaker = Some(CircuitBreaker {
14112 max_failures: 5,
14113 window,
14114 });
14115 assert_eq!(
14116 s.validate().unwrap_err(),
14117 AplicacaoError::PolicyBreakerWindowNotCanonical { window }
14118 );
14119 }
14120
14121 #[test]
14122 fn rejects_circuit_breaker_window_non_integer_millisecond() {
14123 // Peer of the `:timeout` non-integer-ms arm: a `Duration`
14124 // with non-integer-millisecond residue renders through the
14125 // shared codec as the truncated `"<n>ms"` form, parsing back
14126 // to a *different* `Duration` on the next round-trip.
14127 let mut s = three_member_spec();
14128 let window = Duration::from_micros(1500);
14129 s.politicas.circuit_breaker = Some(CircuitBreaker {
14130 max_failures: 5,
14131 window,
14132 });
14133 assert_eq!(
14134 s.validate().unwrap_err(),
14135 AplicacaoError::PolicyBreakerWindowNotCanonical { window }
14136 );
14137 }
14138
14139 #[test]
14140 fn accepts_circuit_breaker_window_integer_millisecond_forms() {
14141 // The canonical-forms sweep on the breaker axis: every
14142 // integer-ms multiple the codec round-trips losslessly
14143 // passes the canonical gate.
14144 for window in [
14145 Duration::from_millis(1),
14146 Duration::from_millis(500),
14147 Duration::from_millis(1500),
14148 Duration::from_secs(30),
14149 Duration::from_secs(60),
14150 Duration::from_secs(3600),
14151 ] {
14152 let mut s = three_member_spec();
14153 s.politicas.circuit_breaker = Some(CircuitBreaker {
14154 max_failures: 5,
14155 window,
14156 });
14157 s.validate()
14158 .expect("integer-millisecond :circuit-breaker :window must validate");
14159 }
14160 }
14161
14162 #[test]
14163 fn circuit_breaker_zero_window_takes_precedence_over_canonical() {
14164 // `Duration::ZERO` would pass the canonical-ms gate (the
14165 // sub-ns residue is zero) but must surface the narrower
14166 // `PolicyBreakerZeroWindow` diagnostic with its omit-axis
14167 // remediation.
14168 let mut s = three_member_spec();
14169 s.politicas.circuit_breaker = Some(CircuitBreaker {
14170 max_failures: 5,
14171 window: Duration::ZERO,
14172 });
14173 assert_eq!(
14174 s.validate().unwrap_err(),
14175 AplicacaoError::PolicyBreakerZeroWindow
14176 );
14177 }
14178
14179 #[test]
14180 fn circuit_breaker_zero_failures_takes_precedence_over_window_canonical() {
14181 // Both axes invalid: max_failures == 0 *and* window is
14182 // sub-ms. The validate gate must fire on max_failures first
14183 // (matching the existing ordering pin
14184 // `rejects_circuit_breaker_zero_max_failures` enshrines), so
14185 // the existing diagnostic continues to lead with the simpler
14186 // "zero threshold" framing.
14187 let mut s = three_member_spec();
14188 s.politicas.circuit_breaker = Some(CircuitBreaker {
14189 max_failures: 0,
14190 window: Duration::from_micros(500),
14191 });
14192 assert_eq!(
14193 s.validate().unwrap_err(),
14194 AplicacaoError::PolicyBreakerZeroFailures
14195 );
14196 }
14197
14198 #[test]
14199 fn circuit_breaker_window_canonical_diagnostic_carries_offending_duration() {
14200 let mut s = three_member_spec();
14201 let window = Duration::from_nanos(60_000_000_001);
14202 s.politicas.circuit_breaker = Some(CircuitBreaker {
14203 max_failures: 5,
14204 window,
14205 });
14206 match s.validate().unwrap_err() {
14207 AplicacaoError::PolicyBreakerWindowNotCanonical { window: w } => {
14208 assert_eq!(w, window, "diagnostic must carry the offending Duration");
14209 }
14210 other => panic!("expected PolicyBreakerWindowNotCanonical, got {other:?}"),
14211 }
14212 }
14213
14214 #[test]
14215 fn rejects_circuit_breaker_window_above_cap() {
14216 // The fail-before-pass-after pin: 3601s = 1h + 1s is
14217 // structurally one canonical-tick past the
14218 // [`POLICY_BREAKER_WINDOW_MAX`] ceiling (1h = 3600s) — an
14219 // integer-millisecond magnitude the canonical-form arm above
14220 // accepts cleanly, that the codec round-trips losslessly as
14221 // `"3601s"`, and that silently passed validate on every
14222 // pre-gate codebase because the typed slot's only checks were
14223 // the zero-floor and canonical-form arms. The
14224 // rolling-window-to-lifetime-counter degeneration surfaces
14225 // only at the runtime substrate (Envoy's outlier_detection
14226 // interval, the future CiliumClusterwideEnvoyConfig overlay)
14227 // far from the source `caixa.lisp` with no field naming the
14228 // offending policy.
14229 let mut s = three_member_spec();
14230 let window = POLICY_BREAKER_WINDOW_MAX + Duration::from_secs(1);
14231 s.politicas.circuit_breaker = Some(CircuitBreaker {
14232 max_failures: 5,
14233 window,
14234 });
14235 assert_eq!(
14236 s.validate().unwrap_err(),
14237 AplicacaoError::PolicyBreakerWindowExceedsCap { window }
14238 );
14239 }
14240
14241 #[test]
14242 fn rejects_circuit_breaker_window_one_millisecond_above_cap() {
14243 // Boundary case: exactly 1ms past the cap (the granularity the
14244 // canonical-form gate enforces). Catches a future "strictly
14245 // less than" half-measure and pins the diagnostic to name the
14246 // offending `Duration` verbatim. Peer of
14247 // `rejects_policy_timeout_one_millisecond_above_cap` on the
14248 // sibling duration-typed `:politicas :timeout` top edge.
14249 let mut s = three_member_spec();
14250 let window = POLICY_BREAKER_WINDOW_MAX + Duration::from_millis(1);
14251 s.politicas.circuit_breaker = Some(CircuitBreaker {
14252 max_failures: 5,
14253 window,
14254 });
14255 assert_eq!(
14256 s.validate().unwrap_err(),
14257 AplicacaoError::PolicyBreakerWindowExceedsCap { window }
14258 );
14259 }
14260
14261 #[test]
14262 fn rejects_circuit_breaker_window_far_above_cap() {
14263 // The "obvious authoring footgun" case: a `(:window "24h")` or
14264 // `(:window "86400s")` — values the canonical-form arm
14265 // accepts as integer-millisecond magnitudes, the codec
14266 // round-trips losslessly through serde, but the
14267 // rolling-window breaker contract cannot honor (a 24-hour
14268 // rolling failure window is operationally a lifetime counter).
14269 // Until this gate landed validate accepted it. Pin both common
14270 // above-cap values (24h, 7d) so a future relaxation that
14271 // drops the upper bound surfaces here.
14272 for window in [
14273 Duration::from_secs(86_400), // 24h
14274 Duration::from_secs(604_800), // 7d
14275 Duration::from_secs(1_000_000), // ~11.5 days
14276 ] {
14277 let mut s = three_member_spec();
14278 s.politicas.circuit_breaker = Some(CircuitBreaker {
14279 max_failures: 5,
14280 window,
14281 });
14282 assert_eq!(
14283 s.validate().unwrap_err(),
14284 AplicacaoError::PolicyBreakerWindowExceedsCap { window }
14285 );
14286 }
14287 }
14288
14289 #[test]
14290 fn accepts_circuit_breaker_window_at_cap() {
14291 // The boundary value — exactly [`POLICY_BREAKER_WINDOW_MAX`]
14292 // (1h) — must validate. The cap is inclusive on the top edge,
14293 // matching the [`POLICY_TIMEOUT_MAX`] /
14294 // [`POLICY_RETRIES_MAX`] / [`POLICY_BREAKER_MAX_FAILURES_MAX`]
14295 // / [`crate::LIMITS_MEMORY_WASM32_MAX_BYTES`] discipline on the
14296 // sibling capped axes. Pin the boundary explicitly so a
14297 // future off-by-one tightening (`>= POLICY_BREAKER_WINDOW_MAX`
14298 // instead of `>`) surfaces here as a test failure rather than
14299 // a silent contract narrowing.
14300 let mut s = three_member_spec();
14301 s.politicas.circuit_breaker = Some(CircuitBreaker {
14302 max_failures: 5,
14303 window: POLICY_BREAKER_WINDOW_MAX,
14304 });
14305 s.validate()
14306 .expect("window == POLICY_BREAKER_WINDOW_MAX must validate");
14307 }
14308
14309 #[test]
14310 fn accepts_circuit_breaker_window_typical_values() {
14311 // The documented production-playbook band positive-control
14312 // sweep — every value Hystrix / resilience4j / Istio / Envoy
14313 // / AWS App Mesh recommend (1s..=300s) must pass, plus a sweep
14314 // through the long-tail failure-detection band (15m, 30m, 1h)
14315 // the cap accepts. Pin the inclusive validated set explicitly
14316 // so a future tightening of the ceiling surfaces here as a
14317 // deliberate test edit, not a silent contract narrowing.
14318 for window in [
14319 Duration::from_millis(1),
14320 Duration::from_millis(500),
14321 Duration::from_secs(1),
14322 Duration::from_secs(10), // Hystrix / Istio / Envoy default
14323 Duration::from_secs(30),
14324 Duration::from_secs(60), // resilience4j typical
14325 Duration::from_secs(300), // AWS App Mesh typical
14326 Duration::from_secs(900),
14327 Duration::from_secs(1800),
14328 Duration::from_secs(3600), // exactly 1h, the cap
14329 ] {
14330 let mut s = three_member_spec();
14331 s.politicas.circuit_breaker = Some(CircuitBreaker {
14332 max_failures: 5,
14333 window,
14334 });
14335 s.validate()
14336 .unwrap_or_else(|e| panic!("window={window:?} must validate; got {e:?}"));
14337 }
14338 }
14339
14340 #[test]
14341 fn circuit_breaker_zero_window_takes_precedence_over_cap() {
14342 // The cross-arm ordering pin: `Duration::ZERO` is structurally
14343 // outside both `>= 1ms` (zero-floor) and
14344 // `<= POLICY_BREAKER_WINDOW_MAX` (cap), but the zero-floor
14345 // diagnostic is the more self-locating one (it directly names
14346 // the omit-axis remediation), so the validate gate must fire
14347 // on zero first. Same shape every other zero-then-cap
14348 // ordering on this surface uses
14349 // ([`AplicacaoError::PolicyTimeoutZero`] then
14350 // [`AplicacaoError::PolicyTimeoutExceedsCap`];
14351 // [`AplicacaoError::PolicyBreakerZeroFailures`] then
14352 // [`AplicacaoError::PolicyBreakerMaxFailuresExceedsCap`]).
14353 let mut s = three_member_spec();
14354 s.politicas.circuit_breaker = Some(CircuitBreaker {
14355 max_failures: 5,
14356 window: Duration::ZERO,
14357 });
14358 assert_eq!(
14359 s.validate().unwrap_err(),
14360 AplicacaoError::PolicyBreakerZeroWindow,
14361 "Duration::ZERO must surface the zero-floor diagnostic, not the cap diagnostic"
14362 );
14363 }
14364
14365 #[test]
14366 fn circuit_breaker_window_canonical_takes_precedence_over_cap() {
14367 // The cross-arm ordering pin: a `Duration` that is *both*
14368 // sub-millisecond (non-canonical-form) and structurally above
14369 // the cap surfaces the canonical-form diagnostic first,
14370 // because the round-trip-shape break is the more fundamental
14371 // issue (the value can't even round-trip through the codec, so
14372 // the cap diagnostic naming `1ms..=1h` would be misleading —
14373 // there's no integer-ms form of the offending value). Pin the
14374 // order so a future refactor that reorders the arms surfaces
14375 // here as a test failure rather than a silent diagnostic
14376 // regression. Peer of
14377 // `policy_timeout_canonical_takes_precedence_over_cap` on the
14378 // sibling duration-typed `:politicas :timeout` axis.
14379 let mut s = three_member_spec();
14380 let window = POLICY_BREAKER_WINDOW_MAX + Duration::from_nanos(1);
14381 s.politicas.circuit_breaker = Some(CircuitBreaker {
14382 max_failures: 5,
14383 window,
14384 });
14385 assert_eq!(
14386 s.validate().unwrap_err(),
14387 AplicacaoError::PolicyBreakerWindowNotCanonical { window },
14388 "sub-ms above-cap value must surface the canonical-form diagnostic, not the cap diagnostic"
14389 );
14390 }
14391
14392 #[test]
14393 fn circuit_breaker_max_failures_cap_takes_precedence_over_window_cap() {
14394 // The cross-arm ordering pin between the two breaker axes: a
14395 // `CircuitBreaker` whose *both* `max_failures` is above its
14396 // cap *and* `window` is above its cap surfaces the
14397 // max-failures cap diagnostic first, because the validate
14398 // gate visits the failures arm before the window arm. Pin the
14399 // order so a future refactor that reorders the breaker arms
14400 // surfaces here.
14401 let mut s = three_member_spec();
14402 let window = POLICY_BREAKER_WINDOW_MAX + Duration::from_secs(1);
14403 s.politicas.circuit_breaker = Some(CircuitBreaker {
14404 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1,
14405 window,
14406 });
14407 assert_eq!(
14408 s.validate().unwrap_err(),
14409 AplicacaoError::PolicyBreakerMaxFailuresExceedsCap {
14410 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX + 1
14411 },
14412 "both-axes-above-cap must surface the max-failures cap diagnostic first (arm order)"
14413 );
14414 }
14415
14416 #[test]
14417 fn circuit_breaker_window_cap_diagnostic_carries_offending_value() {
14418 // The diagnostic-shape pin: the offending `Duration` is
14419 // carried verbatim into the
14420 // [`AplicacaoError::PolicyBreakerWindowExceedsCap`] variant so
14421 // the surfaced error message names the value the author wrote
14422 // (`":politicas :circuit-breaker :window (Duration { secs:
14423 // 7200, nanos: 0 }) exceeds the mesh-policy ceiling …"`), not
14424 // just the cap. Same self-locating diagnostic shape every
14425 // other typed-cap arm on this surface carries
14426 // ([`AplicacaoError::PolicyTimeoutExceedsCap`] carries the
14427 // offending `Duration` verbatim).
14428 let mut s = three_member_spec();
14429 let window = Duration::from_secs(7200); // 2h
14430 s.politicas.circuit_breaker = Some(CircuitBreaker {
14431 max_failures: 5,
14432 window,
14433 });
14434 let err = s.validate().unwrap_err();
14435 assert!(
14436 matches!(err, AplicacaoError::PolicyBreakerWindowExceedsCap { window: w } if w == window),
14437 "got {err:?}"
14438 );
14439 let msg = err.to_string();
14440 assert!(
14441 msg.contains("7200"),
14442 ":politicas :circuit-breaker :window cap diagnostic must carry the offending value verbatim (got: {msg})"
14443 );
14444 }
14445
14446 #[test]
14447 fn circuit_breaker_window_cap_pins_canonical_value() {
14448 // The [`POLICY_BREAKER_WINDOW_MAX`] constant pins the value at
14449 // exactly 1 hour (3600s = 3_600_000ms) — the largest unit the
14450 // shared duration codec emits as a clean canonical string
14451 // (`"<n>h"`) and the same value [`POLICY_TIMEOUT_MAX`] pins on
14452 // the sibling duration-typed `:politicas :timeout` axis (the
14453 // two duration-typed `:politicas` axes share a uniform top
14454 // edge). Pinning the literal value here surfaces a future
14455 // drift (a relaxation to 24h, a tightening to 5m) as a
14456 // deliberate test edit, not a silent contract narrowing. Same
14457 // shape every other typed-cap value pin on this surface uses
14458 // (`policy_timeout_cap_pins_canonical_value`).
14459 assert_eq!(POLICY_BREAKER_WINDOW_MAX, Duration::from_secs(3600));
14460 assert_eq!(POLICY_BREAKER_WINDOW_MAX.as_millis(), 3_600_000);
14461 assert_eq!(
14462 POLICY_BREAKER_WINDOW_MAX, POLICY_TIMEOUT_MAX,
14463 "the two duration-typed `:politicas` caps share the same top edge"
14464 );
14465 }
14466
14467 #[test]
14468 fn circuit_breaker_window_cap_value_round_trips_through_codec() {
14469 // The codec round-trip property the cap arm preserves: the
14470 // [`POLICY_BREAKER_WINDOW_MAX`] constant itself round-trips
14471 // through the shared duration codec — every value at the cap
14472 // renders to a clean canonical string (`"1h"`) and parses back
14473 // to the same `Duration`. Pin this so a future drift between
14474 // the cap constant and the codec's largest emitted unit
14475 // surfaces here. Same shape every other typed boundary pin on
14476 // this surface uses
14477 // (`policy_timeout_cap_value_round_trips_through_codec`).
14478 let policy = MeshPolicy {
14479 circuit_breaker: Some(CircuitBreaker {
14480 max_failures: 5,
14481 window: POLICY_BREAKER_WINDOW_MAX,
14482 }),
14483 ..Default::default()
14484 };
14485 let json = serde_json::to_string(&policy).unwrap();
14486 // The codec emits `"1h"` for the canonical 1-hour magnitude.
14487 assert!(
14488 json.contains("\"1h\""),
14489 "the POLICY_BREAKER_WINDOW_MAX value must render to the canonical \"1h\" form (got: {json})"
14490 );
14491 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
14492 assert_eq!(
14493 back.circuit_breaker.unwrap().window,
14494 POLICY_BREAKER_WINDOW_MAX
14495 );
14496 }
14497
14498 #[test]
14499 fn is_integer_millisecond_duration_predicate_tracks_codec() {
14500 // Pin the predicate's accepted set against the codec's
14501 // accepted set explicitly. The codec parses
14502 // `<integer><unit>` for unit ∈ {`ms`,`s`,`m`,`h`} — every
14503 // accepted value is an integer-millisecond multiple — so the
14504 // predicate must accept exactly that set. Same shape every
14505 // other predicate-on-the-typed-slot helper carries
14506 // (`is_canonical_rate_limit_window_predicate_tracks_codec`).
14507 // Read directly from the codec-owned predicate — the crate's
14508 // single source of truth every typed-`Duration` axis now routes
14509 // through via
14510 // [`crate::render::require_positive_canonical_bounded_duration`].
14511 use super::supervisor::duration_codec::is_integer_millisecond_duration;
14512 assert!(is_integer_millisecond_duration(Duration::ZERO));
14513 assert!(is_integer_millisecond_duration(Duration::from_millis(1)));
14514 assert!(is_integer_millisecond_duration(Duration::from_millis(500)));
14515 assert!(is_integer_millisecond_duration(Duration::from_millis(1500)));
14516 assert!(is_integer_millisecond_duration(Duration::from_secs(30)));
14517 assert!(is_integer_millisecond_duration(Duration::from_secs(3600)));
14518 // Non-integer-millisecond residue: rejected.
14519 assert!(!is_integer_millisecond_duration(Duration::from_micros(1)));
14520 assert!(!is_integer_millisecond_duration(Duration::from_micros(500)));
14521 assert!(!is_integer_millisecond_duration(Duration::from_micros(
14522 1500
14523 )));
14524 assert!(!is_integer_millisecond_duration(Duration::from_nanos(1)));
14525 assert!(!is_integer_millisecond_duration(Duration::from_nanos(
14526 999_999
14527 )));
14528 // The 1-ns-past-1ms boundary: rejected (no longer a clean
14529 // integer-millisecond multiple).
14530 assert!(!is_integer_millisecond_duration(Duration::from_nanos(
14531 1_000_001
14532 )));
14533 }
14534
14535 #[test]
14536 fn policy_timeout_validated_value_round_trips_through_codec() {
14537 // The structural property the canonical-ms gate enforces:
14538 // every `MeshPolicy::timeout` past `AplicacaoSpec::validate`
14539 // round-trips losslessly through the shared `duration_codec`
14540 // (serialize → string → deserialize → equal value). Pin this
14541 // end-to-end so a future change to either side (the validate
14542 // gate's accepted granularity, the codec's parse/render unit
14543 // set) that breaks the alignment surfaces here. The
14544 // previous-state shape (typed slot accepts arbitrary
14545 // `Duration`, codec only round-trips integer-ms) would fail
14546 // this test for any `Duration::from_micros(1500)` timeout —
14547 // the validate gate now forecloses that.
14548 for timeout in [
14549 Duration::from_millis(1),
14550 Duration::from_millis(1500),
14551 Duration::from_secs(30),
14552 Duration::from_secs(3600),
14553 ] {
14554 let mut s = three_member_spec();
14555 s.politicas.timeout = Some(timeout);
14556 s.validate().unwrap();
14557 let json = serde_json::to_string(&s.politicas).unwrap();
14558 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
14559 assert_eq!(
14560 back.timeout, s.politicas.timeout,
14561 "every validated :timeout must round-trip losslessly through the codec"
14562 );
14563 }
14564 }
14565
14566 #[test]
14567 fn circuit_breaker_window_validated_value_round_trips_through_codec() {
14568 // Peer of the `:timeout` round-trip property on the breaker
14569 // axis.
14570 for window in [
14571 Duration::from_millis(1),
14572 Duration::from_millis(1500),
14573 Duration::from_secs(30),
14574 Duration::from_secs(3600),
14575 ] {
14576 let mut s = three_member_spec();
14577 s.politicas.circuit_breaker = Some(CircuitBreaker {
14578 max_failures: 5,
14579 window,
14580 });
14581 s.validate().unwrap();
14582 let json = serde_json::to_string(&s.politicas).unwrap();
14583 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
14584 assert_eq!(
14585 back.circuit_breaker.unwrap().window,
14586 window,
14587 "every validated :circuit-breaker :window must round-trip losslessly"
14588 );
14589 }
14590 }
14591
14592 #[test]
14593 fn empty_politicas_validates() {
14594 // Omitting every policy axis is fine — defaults express "no
14595 // policy on this axis", not "policy = 0". The fixture's typical
14596 // values continue to validate; this test pins that
14597 // MeshPolicy::default() is a clean pass through validate().
14598 let mut s = three_member_spec();
14599 s.politicas = MeshPolicy::default();
14600 s.validate().unwrap();
14601 }
14602
14603 #[test]
14604 fn typical_politicas_validates_with_every_axis_set() {
14605 // The full §III.1 example block (timeout + retries + breaker +
14606 // mtls + rate-limit) — every axis nonzero — must remain a
14607 // clean pass.
14608 let mut s = three_member_spec();
14609 s.politicas = MeshPolicy {
14610 timeout: Some(Duration::from_secs(30)),
14611 retries: Some(3),
14612 circuit_breaker: Some(CircuitBreaker {
14613 max_failures: 5,
14614 window: Duration::from_secs(60),
14615 }),
14616 mtls_required: Some(true),
14617 rate_limit: Some(RateLimit {
14618 rate: 100,
14619 window: Duration::from_secs(1),
14620 }),
14621 };
14622 s.validate().unwrap();
14623 }
14624
14625 #[test]
14626 fn rejects_empty_cluster_name() {
14627 let mut s = three_member_spec();
14628 s.placement.clusters = vec!["rio".into(), "".into()];
14629 assert_eq!(
14630 s.validate().unwrap_err(),
14631 AplicacaoError::PlacementClusterEmpty
14632 );
14633 }
14634
14635 #[test]
14636 fn rejects_duplicate_cluster_names() {
14637 let mut s = three_member_spec();
14638 s.placement.clusters = vec!["rio".into(), "mar".into(), "rio".into()];
14639 let err = s.validate().unwrap_err();
14640 assert!(
14641 matches!(err, AplicacaoError::PlacementClusterDuplicate { ref cluster } if cluster == "rio"),
14642 "got {err:?}"
14643 );
14644 }
14645
14646 #[test]
14647 fn rejects_placement_cluster_with_uppercase() {
14648 // The canonical "I copied the cluster's display name verbatim"
14649 // typo — K8s context names are lowercase per DNS-1123 label
14650 // rule, but org docs often round-trip a TitleCase identifier
14651 // (`Rio`, `Mar-East`) from an ADR. Mirrors the
14652 // `rejects_membro_caixa_with_uppercase` gate's shape (3f9d7a0)
14653 // on the peer name axis.
14654 let mut s = three_member_spec();
14655 s.placement.clusters = vec!["Rio".into(), "mar".into()];
14656 let err = s.validate().unwrap_err();
14657 let AplicacaoError::PlacementClusterInvalid { cluster, reason } = err else {
14658 panic!("expected PlacementClusterInvalid, got other variant");
14659 };
14660 assert_eq!(cluster, "Rio");
14661 assert!(
14662 reason.contains("uppercase"),
14663 "diagnostic must name the violation as `uppercase` (got: {reason:?})"
14664 );
14665 assert!(
14666 reason.contains("\"rio\""),
14667 "diagnostic must suggest the lower-cased fix verbatim (got: {reason:?})"
14668 );
14669 }
14670
14671 #[test]
14672 fn rejects_placement_cluster_with_underscore() {
14673 // The canonical "I'm thinking of an env var / hostname slug"
14674 // leak — `_` is forbidden by every DNS-1123 / DNS-1035 label
14675 // schema. K8s context filtering on `my_cluster` silently misses
14676 // the cluster the author intended; the gate moves it to caixa-
14677 // build time. Same shape as `rejects_membro_caixa_with_underscore`
14678 // (3f9d7a0).
14679 let mut s = three_member_spec();
14680 s.placement.clusters = vec!["my_cluster".into()];
14681 let err = s.validate().unwrap_err();
14682 assert!(
14683 matches!(
14684 err,
14685 AplicacaoError::PlacementClusterInvalid { ref cluster, ref reason }
14686 if cluster == "my_cluster" && reason.contains('_')
14687 ),
14688 "got {err:?}"
14689 );
14690 }
14691
14692 #[test]
14693 fn rejects_placement_cluster_with_dot() {
14694 // A `:placement :clusters` entry is a single DNS-1123 *label*,
14695 // not a subdomain — even though K8s context names sometimes
14696 // carry a dotted form via kubeconfig conventions, the strictest
14697 // floor among the use sites (DNS-1035 cluster.x-k8s.io
14698 // `metadata.name`, Cilium identity label values) wins. The "I
14699 // want to namespace my cluster names with `.`" intent is
14700 // expressed via `-` (`mar-east`).
14701 let mut s = three_member_spec();
14702 s.placement.clusters = vec!["team.rio".into()];
14703 let err = s.validate().unwrap_err();
14704 assert!(
14705 matches!(
14706 err,
14707 AplicacaoError::PlacementClusterInvalid { ref cluster, ref reason }
14708 if cluster == "team.rio" && reason.contains('.')
14709 ),
14710 "got {err:?}"
14711 );
14712 }
14713
14714 #[test]
14715 fn rejects_placement_cluster_with_leading_hyphen() {
14716 // DNS-1123 / DNS-1035 boundary rule: labels must start and end
14717 // with an alphanumeric. The K8s apiserver rejects `-rio`
14718 // outright; the rendered fan-out would emit a `metadata.name:
14719 // "-rio"` that fails admission far from the source caixa.lisp.
14720 let mut s = three_member_spec();
14721 s.placement.clusters = vec!["-rio".into()];
14722 let err = s.validate().unwrap_err();
14723 assert!(
14724 matches!(
14725 err,
14726 AplicacaoError::PlacementClusterInvalid { ref cluster, ref reason }
14727 if cluster == "-rio" && reason.contains("start and end")
14728 ),
14729 "got {err:?}"
14730 );
14731 }
14732
14733 #[test]
14734 fn rejects_placement_cluster_with_trailing_hyphen() {
14735 // The symmetric arm of the boundary rule. Pin separately so
14736 // both ends are covered against a future relaxation that only
14737 // checks one boundary (parallel to
14738 // `rejects_membro_caixa_with_trailing_hyphen`, 3f9d7a0).
14739 let mut s = three_member_spec();
14740 s.placement.clusters = vec!["rio-".into()];
14741 let err = s.validate().unwrap_err();
14742 assert!(
14743 matches!(
14744 err,
14745 AplicacaoError::PlacementClusterInvalid { ref cluster, .. }
14746 if cluster == "rio-"
14747 ),
14748 "got {err:?}"
14749 );
14750 }
14751
14752 #[test]
14753 fn rejects_placement_cluster_with_unicode() {
14754 // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
14755 // before it reaches K8s. The byte-by-byte ASCII validity check
14756 // rejects multi-byte UTF-8 sequences by the first byte that
14757 // fails `[a-z0-9-]`.
14758 let mut s = three_member_spec();
14759 s.placement.clusters = vec!["rió".into()];
14760 let err = s.validate().unwrap_err();
14761 assert!(
14762 matches!(
14763 err,
14764 AplicacaoError::PlacementClusterInvalid { ref cluster, .. }
14765 if cluster == "rió"
14766 ),
14767 "got {err:?}"
14768 );
14769 }
14770
14771 #[test]
14772 fn rejects_placement_cluster_with_whitespace() {
14773 // Whitespace is the canonical "I pasted from a sketch / doc"
14774 // footgun. The apiserver rejects every cluster `metadata.name`
14775 // value carrying whitespace.
14776 let mut s = three_member_spec();
14777 s.placement.clusters = vec!["rio cluster".into()];
14778 let err = s.validate().unwrap_err();
14779 assert!(
14780 matches!(
14781 err,
14782 AplicacaoError::PlacementClusterInvalid { ref cluster, .. }
14783 if cluster == "rio cluster"
14784 ),
14785 "got {err:?}"
14786 );
14787 }
14788
14789 #[test]
14790 fn rejects_placement_cluster_too_long() {
14791 // 64 bytes exceeds the DNS-1123 label cap by one — the boundary
14792 // pin. The diagnostic names both the cap (63) and the actual
14793 // length so the author can shorten in one edit. Mirrors
14794 // `rejects_membro_caixa_too_long` (3f9d7a0).
14795 let mut s = three_member_spec();
14796 let too_long = "a".repeat(64);
14797 s.placement.clusters = vec![too_long.clone()];
14798 let err = s.validate().unwrap_err();
14799 let AplicacaoError::PlacementClusterInvalid { cluster, reason } = err else {
14800 panic!("expected PlacementClusterInvalid");
14801 };
14802 assert_eq!(cluster, too_long);
14803 assert!(
14804 reason.contains("63") && reason.contains("64"),
14805 "diagnostic must name the cap (63) and the actual length (64): {reason:?}"
14806 );
14807 }
14808
14809 #[test]
14810 fn placement_cluster_max_length_validates() {
14811 // 63 bytes exactly — the DNS-1123 label cap. Boundary pin so a
14812 // future tightening (e.g. dropping to 62) surfaces here as a
14813 // regression, mirroring `membro_caixa_max_length_validates`
14814 // (3f9d7a0).
14815 let mut s = three_member_spec();
14816 s.placement.clusters = vec!["a".repeat(63)];
14817 s.validate().unwrap();
14818 }
14819
14820 #[test]
14821 fn accepts_canonical_placement_cluster_forms() {
14822 // The DNS-1123 label shapes a caixa author is realistically
14823 // going to write for cluster names: single-word lowercase
14824 // (`rio`), regional hyphen-joined (`mar-east`), single
14825 // character (`a` — boundary), digit-start (`3-prod` — DNS-1123
14826 // allows this, unlike DNS-1035), version-suffixed (`prod-v2`).
14827 // Pin every leg so a future tightening that bans (e.g.) digit-
14828 // start identifiers surfaces here.
14829 for form in ["rio", "mar", "mar-east", "a", "p1", "3-prod", "prod-v2"] {
14830 let mut s = three_member_spec();
14831 s.placement.clusters = vec![form.into()];
14832 s.validate().unwrap_or_else(|e| {
14833 panic!("canonical cluster form {form:?} must validate, got {e:?}")
14834 });
14835 }
14836 }
14837
14838 #[test]
14839 fn placement_cluster_empty_takes_precedence_over_invalid() {
14840 // Order pin: the existing `PlacementClusterEmpty` diagnostic
14841 // (which doesn't try to parse) fires before the new
14842 // `PlacementClusterInvalid` parse-side diagnostic, so an empty
14843 // `:clusters` entry keeps its narrower error message — the new
14844 // gate would also reject `""`, but the empty-string arm is the
14845 // more self-locating diagnostic. Mirrors the
14846 // `membro_caixa_empty_takes_precedence_over_invalid` pin
14847 // (3f9d7a0).
14848 let mut s = three_member_spec();
14849 s.placement.clusters = vec!["rio".into(), "".into()];
14850 let err = s.validate().unwrap_err();
14851 assert_eq!(err, AplicacaoError::PlacementClusterEmpty);
14852 }
14853
14854 #[test]
14855 fn placement_cluster_invalid_fires_before_duplicate_check() {
14856 // Order pin: a malformed-shape `:clusters` entry surfaces *its
14857 // own* diagnostic, even when a later entry would otherwise
14858 // collapse onto a duplicate name. The per-entry shape gate runs
14859 // inline before the duplicate-key insert, parallel to
14860 // `membro_caixa_invalid_fires_before_duplicate_check` (3f9d7a0).
14861 let mut s = three_member_spec();
14862 s.placement.clusters = vec!["Rio".into(), "rio".into()];
14863 let err = s.validate().unwrap_err();
14864 assert!(
14865 matches!(
14866 err,
14867 AplicacaoError::PlacementClusterInvalid { ref cluster, .. } if cluster == "Rio"
14868 ),
14869 "got {err:?}"
14870 );
14871 }
14872
14873 #[test]
14874 fn placement_cluster_invalid_diagnostic_carries_offending_cluster() {
14875 // The diagnostic-shape pin: the error names the offending
14876 // `:clusters` value verbatim so the author can grep their
14877 // caixa.lisp without re-running the build, and carries a
14878 // non-empty `reason` naming the specific violation. Same shape
14879 // every typed-shape gate enshrines
14880 // (3f9d7a0's `membro_caixa_invalid_diagnostic_carries_offending_caixa`,
14881 // c7d05ec's `entrada_host_diagnostic_carries_offending_host`).
14882 let mut s = three_member_spec();
14883 s.placement.clusters = vec!["BAD_CLUSTER".into()];
14884 let err = s.validate().unwrap_err();
14885 let AplicacaoError::PlacementClusterInvalid { cluster, reason } = err else {
14886 panic!("expected PlacementClusterInvalid");
14887 };
14888 assert_eq!(cluster, "BAD_CLUSTER");
14889 assert!(
14890 !reason.is_empty(),
14891 "PlacementClusterInvalid `reason` must carry a parser-shaped wording"
14892 );
14893 }
14894
14895 #[test]
14896 fn rejects_sharded_with_empty_clusters() {
14897 // §III.1: Sharded uses :clusters as the shard pool. An empty
14898 // pool means "shard across no clusters" — meaningless, same as
14899 // Replicated with no hosts.
14900 let mut s = three_member_spec();
14901 s.placement.estrategia = PlacementStrategy::Sharded;
14902 s.placement.shard_key = Some("$tenantId".into());
14903 s.placement.clusters = vec![];
14904 assert!(matches!(
14905 s.validate().unwrap_err(),
14906 AplicacaoError::PlacementWithoutClusters {
14907 estrategia: PlacementStrategy::Sharded
14908 }
14909 ));
14910 }
14911
14912 #[test]
14913 fn rejects_sharded_with_empty_shard_key() {
14914 let mut s = three_member_spec();
14915 s.placement.estrategia = PlacementStrategy::Sharded;
14916 s.placement.shard_key = Some("".into());
14917 assert_eq!(s.validate().unwrap_err(), AplicacaoError::ShardedKeyEmpty);
14918 }
14919
14920 #[test]
14921 fn rejects_shard_key_under_replicated_strategy() {
14922 // The fail-before-pass-after pin: a `:placement (:estrategia
14923 // Replicated :shard-key "tenantId")` manifest carries the
14924 // hash-keyed-distribution slot on a strategy that never consumes
14925 // it. Before the gate the typed slot's value silently vanished
14926 // at the renderer layer (caixa-mesh emits `placement.shardKey`
14927 // verbatim regardless of strategy; the Akka-style cluster-
14928 // sharding reconciler keys off `estrategia == Sharded` and
14929 // ignores the slot otherwise), with no diagnostic. Lifting the
14930 // rejection to a build-time gate makes the
14931 // `shard_key.is_some() == matches!(estrategia, Sharded)`
14932 // partition a structural property of every validated
14933 // [`Placement`].
14934 let mut s = three_member_spec();
14935 // The fixture already uses Replicated; just add a shard-key.
14936 s.placement.shard_key = Some("$tenantId".into());
14937 let err = s.validate().unwrap_err();
14938 let AplicacaoError::ShardKeyOnNonSharded {
14939 estrategia,
14940 shard_key,
14941 } = err
14942 else {
14943 panic!("expected ShardKeyOnNonSharded, got {err:?}");
14944 };
14945 assert_eq!(estrategia, PlacementStrategy::Replicated);
14946 assert_eq!(shard_key, "$tenantId");
14947 }
14948
14949 #[test]
14950 fn rejects_shard_key_under_singlenode_strategy() {
14951 // Peer of the Replicated case above on the SingleNode arm: OTP
14952 // distributed-app takeover (one cluster runs at a time) has no
14953 // hash-keyed routing axis to consume `:shard-key` either, so
14954 // the rejection fires on both non-Sharded arms uniformly.
14955 let mut s = three_member_spec();
14956 s.placement.estrategia = PlacementStrategy::SingleNode;
14957 s.placement.shard_key = Some("$tenantId".into());
14958 let err = s.validate().unwrap_err();
14959 let AplicacaoError::ShardKeyOnNonSharded {
14960 estrategia,
14961 shard_key,
14962 } = err
14963 else {
14964 panic!("expected ShardKeyOnNonSharded, got {err:?}");
14965 };
14966 assert_eq!(estrategia, PlacementStrategy::SingleNode);
14967 assert_eq!(shard_key, "$tenantId");
14968 }
14969
14970 #[test]
14971 fn rejects_empty_shard_key_under_replicated_strategy() {
14972 // The `Some("")` case under non-Sharded is rejected by
14973 // [`AplicacaoError::ShardKeyOnNonSharded`] (the strategy gate
14974 // fires before the empty-value gate), not
14975 // [`AplicacaoError::ShardedKeyEmpty`] (which is reserved for
14976 // the `Sharded` arm). Pin the partition so a future reorder of
14977 // the validate_placement match arms doesn't silently swap which
14978 // diagnostic the author sees — both are author errors, but
14979 // ShardKeyOnNonSharded names which strategy is the actual fix
14980 // (drop the slot, or switch to Sharded), while ShardedKeyEmpty
14981 // only says "pick a non-empty key".
14982 let mut s = three_member_spec();
14983 s.placement.shard_key = Some(String::new());
14984 let err = s.validate().unwrap_err();
14985 assert!(
14986 matches!(
14987 err,
14988 AplicacaoError::ShardKeyOnNonSharded {
14989 estrategia: PlacementStrategy::Replicated,
14990 ref shard_key,
14991 } if shard_key.is_empty()
14992 ),
14993 "got {err:?}"
14994 );
14995 }
14996
14997 #[test]
14998 fn replicated_without_shard_key_validates() {
14999 // The complement of the rejection: `:placement :estrategia
15000 // Replicated` with `:shard-key None` is the canonical happy
15001 // path on every existing fixture. Pin the no-shard-key case so
15002 // the new gate doesn't accidentally fire on `None`.
15003 let mut s = three_member_spec();
15004 assert!(matches!(
15005 s.placement.estrategia,
15006 PlacementStrategy::Replicated
15007 ));
15008 s.placement.shard_key = None;
15009 s.validate().unwrap();
15010 }
15011
15012 #[test]
15013 fn singlenode_without_shard_key_validates() {
15014 // Peer of the Replicated no-shard-key case on the SingleNode
15015 // arm — both non-Sharded strategies must validate cleanly when
15016 // the slot is omitted.
15017 let mut s = three_member_spec();
15018 s.placement.estrategia = PlacementStrategy::SingleNode;
15019 s.placement.shard_key = None;
15020 s.validate().unwrap();
15021 }
15022
15023 fn sharded_spec_with_key(key: &str) -> AplicacaoSpec {
15024 // Fixture builder for the `:placement :shard-key` shape gate
15025 // tests: a three-member Aplicacao on the `Sharded` strategy
15026 // with the supplied `:shard-key` slot. Co-locates the
15027 // arm-construction so every test below carries one line of
15028 // setup (the offending `:shard-key` value) and the assertion.
15029 let mut s = three_member_spec();
15030 s.placement.estrategia = PlacementStrategy::Sharded;
15031 s.placement.shard_key = Some(key.into());
15032 s
15033 }
15034
15035 #[test]
15036 fn rejects_shard_key_with_embedded_space() {
15037 // The canonical paste-from-aligned-doc footgun:
15038 // `:shard-key "$tenant Id"` — the Akka-style entity-id
15039 // extractor reads the slot as a single-token reference, and an
15040 // embedded space breaks the token boundary at the runtime
15041 // hash-extractor pass with no diagnostic naming the offending
15042 // entry.
15043 let s = sharded_spec_with_key("$tenant Id");
15044 let err = s.validate().unwrap_err();
15045 assert!(
15046 matches!(
15047 err,
15048 AplicacaoError::ShardKeyInvalid { ref shard_key, ref reason }
15049 if shard_key == "$tenant Id" && reason.contains("space")
15050 ),
15051 "got {err:?}"
15052 );
15053 }
15054
15055 #[test]
15056 fn rejects_shard_key_with_leading_space() {
15057 // Leading-space arm of the embedded-whitespace footgun — the
15058 // paste-from-aligned-doc / paste-from-CSV-cell variant where
15059 // the leading column-padding leaked into the slot.
15060 let s = sharded_spec_with_key(" $tenantId");
15061 let err = s.validate().unwrap_err();
15062 assert!(
15063 matches!(
15064 err,
15065 AplicacaoError::ShardKeyInvalid { ref shard_key, .. }
15066 if shard_key == " $tenantId"
15067 ),
15068 "got {err:?}"
15069 );
15070 }
15071
15072 #[test]
15073 fn rejects_shard_key_with_trailing_newline() {
15074 // The canonical paste-from-shell-heredoc footgun — every
15075 // `<<EOF` heredoc terminator paste leaves a trailing newline
15076 // the YAML emitter then folds away inconsistently across
15077 // emitter implementations.
15078 let s = sharded_spec_with_key("$tenantId\n");
15079 let err = s.validate().unwrap_err();
15080 assert!(
15081 matches!(
15082 err,
15083 AplicacaoError::ShardKeyInvalid { ref shard_key, ref reason }
15084 if shard_key == "$tenantId\n" && reason.contains("0x0a")
15085 ),
15086 "got {err:?}"
15087 );
15088 }
15089
15090 #[test]
15091 fn rejects_shard_key_with_embedded_tab() {
15092 // The paste-from-aligned-doc tab-stop variant — tabs land
15093 // alongside spaces in copy-paste from formatted columns.
15094 let s = sharded_spec_with_key("$tenant\tId");
15095 let err = s.validate().unwrap_err();
15096 assert!(
15097 matches!(
15098 err,
15099 AplicacaoError::ShardKeyInvalid { ref shard_key, ref reason }
15100 if shard_key == "$tenant\tId" && reason.contains("tab")
15101 ),
15102 "got {err:?}"
15103 );
15104 }
15105
15106 #[test]
15107 fn rejects_shard_key_with_control_character() {
15108 // The paste-from-binary / paste-from-screen-cleared-terminal
15109 // footgun — an embedded `\x01` (SOH) byte that some YAML
15110 // emitters silently strip and others escape as ``,
15111 // breaking round-trip across emitter implementations.
15112 let s = sharded_spec_with_key("$tenant\u{0001}Id");
15113 let err = s.validate().unwrap_err();
15114 assert!(
15115 matches!(
15116 err,
15117 AplicacaoError::ShardKeyInvalid { ref shard_key, ref reason }
15118 if shard_key == "$tenant\u{0001}Id" && reason.contains("control")
15119 ),
15120 "got {err:?}"
15121 );
15122 }
15123
15124 #[test]
15125 fn rejects_shard_key_with_non_ascii() {
15126 // The canonical un-Punycode-encoded IDN / paste-from-Unicode-doc
15127 // footgun — non-ASCII bytes normalize differently between the
15128 // caixa-mesh-side YAML emitter and the in-cluster reconciler's
15129 // YAML parser, the same entity ID can silently map to two
15130 // distinct shards on a re-render.
15131 let s = sharded_spec_with_key("$tenàntId");
15132 let err = s.validate().unwrap_err();
15133 assert!(
15134 matches!(
15135 err,
15136 AplicacaoError::ShardKeyInvalid { ref shard_key, ref reason }
15137 if shard_key == "$tenàntId" && reason.contains("non-ASCII")
15138 ),
15139 "got {err:?}"
15140 );
15141 }
15142
15143 #[test]
15144 fn rejects_shard_key_too_long() {
15145 // Length cap pin: 64 bytes — one byte over the
15146 // PLACEMENT_SHARD_KEY_MAX_LEN (63) cap. The realistic shape
15147 // here is a paste-from-doc multi-line blob landing in
15148 // `:shard-key` instead of a single-token extractor expression.
15149 let too_long = "a".repeat(64);
15150 let s = sharded_spec_with_key(&too_long);
15151 let err = s.validate().unwrap_err();
15152 let AplicacaoError::ShardKeyInvalid {
15153 ref shard_key,
15154 ref reason,
15155 } = err
15156 else {
15157 panic!("expected ShardKeyInvalid, got {err:?}");
15158 };
15159 assert_eq!(shard_key, &too_long);
15160 assert!(
15161 reason.contains("63") && reason.contains("64"),
15162 "diagnostic must name the cap (63) and the actual length (64): {reason:?}"
15163 );
15164 }
15165
15166 #[test]
15167 fn shard_key_max_length_validates() {
15168 // Boundary pin: 63 bytes exactly — the
15169 // `PLACEMENT_SHARD_KEY_MAX_LEN` cap. A future tightening (e.g.
15170 // dropping to 62) surfaces here as a regression, mirroring
15171 // `placement_cluster_max_length_validates` /
15172 // `placement_affinity_max_length_validates` on the peer
15173 // identifier-shaped slots.
15174 let s = sharded_spec_with_key(&"a".repeat(63));
15175 s.validate().unwrap();
15176 }
15177
15178 #[test]
15179 fn accepts_canonical_shard_key_forms() {
15180 // The Akka-style entity-id extractor shapes a caixa author is
15181 // realistically going to write — pin every leg so a future
15182 // tightening that bans (e.g.) the `${...}` interpolation
15183 // variant or the `metadata.<field>` JSONPath form surfaces
15184 // here as a regression. The canonical forms span:
15185 //
15186 // - bare property name (`tenantId`, `customerId`)
15187 // - Akka `ExtractEntityId` placeholder (`$tenantId`)
15188 // - JSONPath-style nested reference (`metadata.tenantId`,
15189 // `$.user.id`)
15190 // - interpolation-style template (`${tenant}`)
15191 // - snake_case property name (`customer_id`)
15192 // - kebab-case property name (`customer-id` — accepted
15193 // because the slot is a printable-ASCII single-token
15194 // reference, not a DNS-1123 label like
15195 // `:placement :affinity` / `:clusters`)
15196 // - single character (`a`, `$` — boundary)
15197 for form in [
15198 "tenantId",
15199 "customerId",
15200 "$tenantId",
15201 "metadata.tenantId",
15202 "$.user.id",
15203 "${tenant}",
15204 "customer_id",
15205 "customer-id",
15206 "a",
15207 "$",
15208 ] {
15209 let s = sharded_spec_with_key(form);
15210 s.validate().unwrap_or_else(|e| {
15211 panic!("canonical shard-key form {form:?} must validate, got {e:?}")
15212 });
15213 }
15214 }
15215
15216 #[test]
15217 fn shard_key_empty_takes_precedence_over_invalid() {
15218 // Order pin: the existing `ShardedKeyEmpty` diagnostic
15219 // (reserved for the `Sharded` `Some("")` arm) fires before the
15220 // new `ShardKeyInvalid` parse-side diagnostic, so an empty
15221 // `:shard-key` keeps its narrower error message — the new gate
15222 // would also reject `""` defensively, but the empty-string arm
15223 // is the more self-locating diagnostic. Mirrors the
15224 // `placement_cluster_empty_takes_precedence_over_invalid` pin
15225 // on the peer identifier-shaped slot.
15226 let s = sharded_spec_with_key("");
15227 let err = s.validate().unwrap_err();
15228 assert_eq!(err, AplicacaoError::ShardedKeyEmpty);
15229 }
15230
15231 #[test]
15232 fn shard_key_invalid_diagnostic_carries_offending_value() {
15233 // The diagnostic-shape pin: the error names the offending
15234 // `:shard-key` value verbatim so the author can grep their
15235 // caixa.lisp without re-running the build, and carries a
15236 // parser-shaped `reason:` naming the specific violation —
15237 // mirrors `placement_cluster_invalid_diagnostic_carries_offending_cluster`
15238 // on the peer identifier-shaped slot.
15239 let s = sharded_spec_with_key("$tenant Id");
15240 let err = s.validate().unwrap_err();
15241 let AplicacaoError::ShardKeyInvalid {
15242 ref shard_key,
15243 ref reason,
15244 } = err
15245 else {
15246 panic!("expected ShardKeyInvalid, got {err:?}");
15247 };
15248 assert_eq!(shard_key, "$tenant Id");
15249 assert!(
15250 !reason.is_empty(),
15251 "reason must name the specific violation, got empty string"
15252 );
15253 }
15254
15255 #[test]
15256 fn shard_key_shape_fires_after_non_sharded_strategy_gate() {
15257 // Order pin: the `ShardKeyOnNonSharded` arm (which rejects
15258 // `:shard-key` carried on non-Sharded strategies) fires before
15259 // the shape gate, so a malformed `:shard-key` carried on (e.g.)
15260 // a `Replicated` strategy surfaces the more self-locating
15261 // strategy-mismatch diagnostic (naming the actual fix — drop
15262 // the slot, or switch to Sharded) rather than the shape
15263 // diagnostic. The strategy-mismatch arm is the more actionable
15264 // diagnostic: a malformed shard-key on Replicated is "you
15265 // shouldn't have a :shard-key here at all", not "your
15266 // :shard-key value is malformed".
15267 let mut s = three_member_spec();
15268 // Replicated is the default fixture strategy.
15269 s.placement.shard_key = Some("$tenant Id".into());
15270 let err = s.validate().unwrap_err();
15271 assert!(
15272 matches!(
15273 err,
15274 AplicacaoError::ShardKeyOnNonSharded {
15275 estrategia: PlacementStrategy::Replicated,
15276 ..
15277 }
15278 ),
15279 "got {err:?}"
15280 );
15281 }
15282
15283 #[test]
15284 fn rejects_empty_affinity_hint() {
15285 let mut s = three_member_spec();
15286 s.placement.affinity = Some("".into());
15287 assert_eq!(
15288 s.validate().unwrap_err(),
15289 AplicacaoError::PlacementAffinityEmpty
15290 );
15291 }
15292
15293 #[test]
15294 fn placement_without_affinity_validates() {
15295 // Omitting :affinity is fine — the placement engine falls back
15296 // to the default heuristic. Pin the no-hint case so the
15297 // affinity-empty rejection doesn't accidentally fire on `None`.
15298 let mut s = three_member_spec();
15299 s.placement.affinity = None;
15300 s.validate().unwrap();
15301 }
15302
15303 #[test]
15304 fn rejects_placement_affinity_with_uppercase() {
15305 // The canonical "I copied the ADR's display name verbatim" typo
15306 // — placement hints land verbatim in K8s label-selector
15307 // territory, where the apiserver enforces the DNS-1123 label
15308 // rule (lowercase-only) on every identity-keyed admission axis.
15309 // Mirrors `rejects_placement_cluster_with_uppercase` on the
15310 // sibling slot.
15311 let mut s = three_member_spec();
15312 s.placement.affinity = Some("DataLocality".into());
15313 let err = s.validate().unwrap_err();
15314 let AplicacaoError::PlacementAffinityInvalid { affinity, reason } = err else {
15315 panic!("expected PlacementAffinityInvalid, got other variant");
15316 };
15317 assert_eq!(affinity, "DataLocality");
15318 assert!(
15319 reason.contains("uppercase"),
15320 "diagnostic must name the violation as `uppercase` (got: {reason:?})"
15321 );
15322 assert!(
15323 reason.contains("\"datalocality\""),
15324 "diagnostic must suggest the lower-cased fix verbatim (got: {reason:?})"
15325 );
15326 }
15327
15328 #[test]
15329 fn rejects_placement_affinity_with_underscore() {
15330 // The canonical "I'm thinking of an env var / Python identifier"
15331 // leak — `_` is forbidden by every DNS-1123 label schema. Same
15332 // shape as `rejects_placement_cluster_with_underscore` on the
15333 // sibling slot.
15334 let mut s = three_member_spec();
15335 s.placement.affinity = Some("data_locality".into());
15336 let err = s.validate().unwrap_err();
15337 assert!(
15338 matches!(
15339 err,
15340 AplicacaoError::PlacementAffinityInvalid { ref affinity, ref reason }
15341 if affinity == "data_locality" && reason.contains('_')
15342 ),
15343 "got {err:?}"
15344 );
15345 }
15346
15347 #[test]
15348 fn rejects_placement_affinity_with_dot() {
15349 // A `:placement :affinity` value is a single DNS-1123 *label*
15350 // (it lands as a K8s label value selector key), not a subdomain.
15351 // The "I want to namespace my hint with `.`" intent is expressed
15352 // via `-` (`data-locality-east`).
15353 let mut s = three_member_spec();
15354 s.placement.affinity = Some("data.locality".into());
15355 let err = s.validate().unwrap_err();
15356 assert!(
15357 matches!(
15358 err,
15359 AplicacaoError::PlacementAffinityInvalid { ref affinity, ref reason }
15360 if affinity == "data.locality" && reason.contains('.')
15361 ),
15362 "got {err:?}"
15363 );
15364 }
15365
15366 #[test]
15367 fn rejects_placement_affinity_with_unicode() {
15368 // DNS-1123 is ASCII-only; IDN must be pre-encoded as Punycode
15369 // before it reaches K8s. The byte-by-byte ASCII validity check
15370 // rejects multi-byte UTF-8 sequences by the first byte that
15371 // fails `[a-z0-9-]`.
15372 let mut s = three_member_spec();
15373 s.placement.affinity = Some("data-localité".into());
15374 let err = s.validate().unwrap_err();
15375 assert!(
15376 matches!(
15377 err,
15378 AplicacaoError::PlacementAffinityInvalid { ref affinity, .. }
15379 if affinity == "data-localité"
15380 ),
15381 "got {err:?}"
15382 );
15383 }
15384
15385 #[test]
15386 fn rejects_placement_affinity_with_leading_hyphen() {
15387 // DNS-1123 boundary rule: labels must start with an
15388 // alphanumeric. Pin separately from the trailing-hyphen arm so
15389 // a future relaxation that only checks one boundary surfaces
15390 // here as a regression (parallel to
15391 // `rejects_placement_cluster_with_leading_hyphen`).
15392 let mut s = three_member_spec();
15393 s.placement.affinity = Some("-data-locality".into());
15394 let err = s.validate().unwrap_err();
15395 assert!(
15396 matches!(
15397 err,
15398 AplicacaoError::PlacementAffinityInvalid { ref affinity, ref reason }
15399 if affinity == "-data-locality" && reason.contains("start and end")
15400 ),
15401 "got {err:?}"
15402 );
15403 }
15404
15405 #[test]
15406 fn rejects_placement_affinity_with_trailing_hyphen() {
15407 // Symmetric arm of the DNS-1123 boundary rule. Pinned so both
15408 // ends are covered against a future relaxation.
15409 let mut s = three_member_spec();
15410 s.placement.affinity = Some("data-locality-".into());
15411 let err = s.validate().unwrap_err();
15412 assert!(
15413 matches!(
15414 err,
15415 AplicacaoError::PlacementAffinityInvalid { ref affinity, .. }
15416 if affinity == "data-locality-"
15417 ),
15418 "got {err:?}"
15419 );
15420 }
15421
15422 #[test]
15423 fn rejects_placement_affinity_with_whitespace() {
15424 // Whitespace is the canonical "I pasted from a sketch / doc"
15425 // footgun. The apiserver rejects every label-selector value
15426 // carrying whitespace.
15427 let mut s = three_member_spec();
15428 s.placement.affinity = Some("data locality".into());
15429 let err = s.validate().unwrap_err();
15430 assert!(
15431 matches!(
15432 err,
15433 AplicacaoError::PlacementAffinityInvalid { ref affinity, .. }
15434 if affinity == "data locality"
15435 ),
15436 "got {err:?}"
15437 );
15438 }
15439
15440 #[test]
15441 fn rejects_placement_affinity_too_long() {
15442 // 64 bytes exceeds the DNS-1123 label cap by one — the boundary
15443 // pin. The diagnostic names both the cap (63) and the actual
15444 // length so the author can shorten in one edit. Mirrors
15445 // `rejects_placement_cluster_too_long`.
15446 let mut s = three_member_spec();
15447 let too_long = "a".repeat(64);
15448 s.placement.affinity = Some(too_long.clone());
15449 let err = s.validate().unwrap_err();
15450 let AplicacaoError::PlacementAffinityInvalid { affinity, reason } = err else {
15451 panic!("expected PlacementAffinityInvalid");
15452 };
15453 assert_eq!(affinity, too_long);
15454 assert!(
15455 reason.contains("63") && reason.contains("64"),
15456 "diagnostic must name the cap (63) and the actual length (64): {reason:?}"
15457 );
15458 }
15459
15460 #[test]
15461 fn placement_affinity_max_length_validates() {
15462 // 63 bytes exactly — the DNS-1123 label cap. Boundary pin so a
15463 // future tightening (e.g. dropping to 62) surfaces here as a
15464 // regression, mirroring `placement_cluster_max_length_validates`.
15465 let mut s = three_member_spec();
15466 s.placement.affinity = Some("a".repeat(63));
15467 s.validate().unwrap();
15468 }
15469
15470 #[test]
15471 fn accepts_canonical_placement_affinity_forms() {
15472 // The DNS-1123 label shapes a caixa author is realistically
15473 // going to write for placement hints: the M3 canonical examples
15474 // (`data-locality`, `low-latency`, `anti-affinity`), the
15475 // single-token form (`affinity`), the single-character boundary
15476 // (`a`), the digit-start (DNS-1123 allows this, unlike
15477 // DNS-1035), and a regional-suffixed form. Pin every leg so a
15478 // future tightening that bans (e.g.) digit-start identifiers
15479 // surfaces here.
15480 for form in [
15481 "data-locality",
15482 "low-latency",
15483 "anti-affinity",
15484 "affinity",
15485 "a",
15486 "3-tier",
15487 "locality-east",
15488 ] {
15489 let mut s = three_member_spec();
15490 s.placement.affinity = Some(form.into());
15491 s.validate().unwrap_or_else(|e| {
15492 panic!("canonical affinity form {form:?} must validate, got {e:?}")
15493 });
15494 }
15495 }
15496
15497 #[test]
15498 fn placement_affinity_empty_takes_precedence_over_invalid() {
15499 // Order pin: the existing `PlacementAffinityEmpty` diagnostic
15500 // (which doesn't try to parse) fires before the new
15501 // `PlacementAffinityInvalid` parse-side diagnostic, so an empty
15502 // `:affinity` keeps its narrower error message — the new gate
15503 // would also reject `""`, but the empty-string arm is the more
15504 // self-locating diagnostic. Mirrors the
15505 // `placement_cluster_empty_takes_precedence_over_invalid` pin.
15506 let mut s = three_member_spec();
15507 s.placement.affinity = Some(String::new());
15508 let err = s.validate().unwrap_err();
15509 assert_eq!(err, AplicacaoError::PlacementAffinityEmpty);
15510 }
15511
15512 #[test]
15513 fn placement_affinity_invalid_diagnostic_carries_offending_value() {
15514 // The diagnostic shape pin: every rejection carries the offending
15515 // `affinity:` verbatim plus a parser-shaped `reason:` so the
15516 // author can grep their caixa.lisp for `:affinity "<hint>"` and
15517 // fix it in one edit. Mirrors the
15518 // `placement_cluster_invalid_diagnostic_carries_offending_cluster`
15519 // pin on the sibling slot.
15520 let mut s = three_member_spec();
15521 s.placement.affinity = Some("Data_Locality".into());
15522 let err = s.validate().unwrap_err();
15523 let AplicacaoError::PlacementAffinityInvalid { affinity, reason } = err else {
15524 panic!("expected PlacementAffinityInvalid");
15525 };
15526 assert_eq!(affinity, "Data_Locality");
15527 assert!(
15528 !reason.is_empty(),
15529 "diagnostic reason must not be empty (got: {reason:?})"
15530 );
15531 }
15532
15533 #[test]
15534 fn singlenode_with_takeover_candidates_validates() {
15535 // OTP distributed-application convention (MESH-COMPOSITION
15536 // §II.1): SingleNode runs on one cluster at a time but the
15537 // :clusters list enumerates the takeover candidates. Multiple
15538 // entries are not a contradiction — they are the failover pool.
15539 let mut s = three_member_spec();
15540 s.placement.estrategia = PlacementStrategy::SingleNode;
15541 s.placement.clusters = vec!["rio".into(), "mar".into(), "plo".into()];
15542 s.validate().unwrap();
15543 }
15544
15545 // ── MeshPolicy::is_empty() — typed emptiness predicate ────────────────
15546
15547 #[test]
15548 fn mesh_policy_default_is_empty() {
15549 // The Default impl carries None on every axis — the typed
15550 // analog of an unset `:politicas (())` slot. Renderers that
15551 // overlay the policy onto a cluster artifact key off this
15552 // predicate to skip the slot entirely; pinning so a future
15553 // axis added to MeshPolicy can't silently break the contract
15554 // (a new field whose Default is non-None would flip is_empty
15555 // to false on every existing caixa, surfacing here).
15556 assert!(MeshPolicy::default().is_empty());
15557 }
15558
15559 #[test]
15560 fn mesh_policy_with_only_timeout_is_not_empty() {
15561 let p = MeshPolicy {
15562 timeout: Some(Duration::from_secs(30)),
15563 ..Default::default()
15564 };
15565 assert!(!p.is_empty());
15566 }
15567
15568 #[test]
15569 fn mesh_policy_with_only_retries_is_not_empty() {
15570 let p = MeshPolicy {
15571 retries: Some(3),
15572 ..Default::default()
15573 };
15574 assert!(!p.is_empty());
15575 }
15576
15577 #[test]
15578 fn mesh_policy_with_only_circuit_breaker_is_not_empty() {
15579 let p = MeshPolicy {
15580 circuit_breaker: Some(CircuitBreaker {
15581 max_failures: 5,
15582 window: Duration::from_secs(60),
15583 }),
15584 ..Default::default()
15585 };
15586 assert!(!p.is_empty());
15587 }
15588
15589 #[test]
15590 fn mesh_policy_with_only_mtls_required_is_not_empty() {
15591 // Even `mtls_required: Some(false)` (an explicit opt-out) is
15592 // not empty — the author *named* the axis, the renderer needs
15593 // to honor that vs. fall back to the cluster default.
15594 let p = MeshPolicy {
15595 mtls_required: Some(false),
15596 ..Default::default()
15597 };
15598 assert!(!p.is_empty());
15599 }
15600
15601 #[test]
15602 fn mesh_policy_with_only_rate_limit_is_not_empty() {
15603 let p = MeshPolicy {
15604 rate_limit: Some(RateLimit {
15605 rate: 100,
15606 window: Duration::from_secs(1),
15607 }),
15608 ..Default::default()
15609 };
15610 assert!(!p.is_empty());
15611 }
15612
15613 #[test]
15614 fn mesh_policy_is_empty_round_trips_through_three_member_fixture() {
15615 // The three-member happy-path fixture sets timeout + retries +
15616 // mtls_required — every populated axis must read non-empty.
15617 // Pin the round-trip so the M3.x per-:politicas emitter (the
15618 // M3.x roadmap CiliumClusterwideEnvoyConfig artifact) can rely
15619 // on is_empty() to decide whether to emit at all without
15620 // re-deriving the contract from inline field probes.
15621 assert!(!three_member_spec().politicas.is_empty());
15622 }
15623
15624 // ── shared duration codec: cross-slot integer-magnitude gate ──
15625 //
15626 // The integer-magnitude discipline applied to
15627 // `supervisor::duration_codec::parse` lifts onto every typed slot
15628 // that routes through the shared codec — `MeshPolicy::timeout`
15629 // (`:politicas :timeout`) and `CircuitBreaker::window`
15630 // (`:politicas :circuit-breaker :window`) on the Aplicacao side.
15631 // These cross-slot tests pin that the gate fires at the serde
15632 // layer for both typed slots, not just for the supervisor side.
15633
15634 #[test]
15635 fn policy_timeout_serde_rejects_fractional_seconds() {
15636 // `MeshPolicy::timeout` uses `with = "supervisor::duration_codec"`,
15637 // so the shared codec's integer-magnitude gate applies on
15638 // deserialize. `"1.5s"` previously parsed to 1500ms and round-
15639 // tripped to `"1500ms"` on next emit — DRIFT. Now refused at
15640 // deserialize with the canonical-form diagnostic naming the
15641 // offending `"1.5"` and the remediation `"1500ms"`.
15642 let payload = r#"{"timeout":"1.5s"}"#;
15643 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15644 let msg = err.to_string();
15645 assert!(
15646 msg.contains("not a non-negative integer"),
15647 "expected integer-magnitude diagnostic in {msg:?}"
15648 );
15649 assert!(msg.contains("\"1.5\""), "missing magnitude in {msg:?}");
15650 assert!(
15651 msg.contains("\"1500ms\""),
15652 "missing canonical-form remediation in {msg:?}"
15653 );
15654 }
15655
15656 #[test]
15657 fn policy_timeout_serde_rejects_leading_plus_sign() {
15658 // Pin the leading-`+` arm cross-slot — the prior f64 parser
15659 // accepted `"+30s"` silently and round-tripped to `"30s"`.
15660 let payload = r#"{"timeout":"+30s"}"#;
15661 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15662 let msg = err.to_string();
15663 assert!(msg.contains("\"+30\""), "missing magnitude in {msg:?}");
15664 }
15665
15666 #[test]
15667 fn circuit_breaker_window_serde_rejects_fractional_minutes() {
15668 // `CircuitBreaker::window` uses `with =
15669 // "supervisor::duration_codec_required"` (the required-Duration
15670 // variant that delegates to the same shared parser). `"0.5m"`
15671 // parsed to 30s and round-tripped to `"30s"` on next emit —
15672 // DRIFT closed.
15673 let payload = format!(
15674 r#"{{"{max_failures}":5,"{window}":"0.5m"}}"#,
15675 max_failures = crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES,
15676 window = crate::CIRCUIT_BREAKER_KEY_WINDOW,
15677 );
15678 let err = serde_json::from_str::<CircuitBreaker>(&payload).unwrap_err();
15679 let msg = err.to_string();
15680 assert!(
15681 msg.contains("not a non-negative integer"),
15682 "expected integer-magnitude diagnostic in {msg:?}"
15683 );
15684 assert!(msg.contains("\"0.5\""), "missing magnitude in {msg:?}");
15685 assert!(
15686 msg.contains("\"30s\""),
15687 "missing canonical-form remediation in {msg:?}"
15688 );
15689 }
15690
15691 #[test]
15692 fn circuit_breaker_window_serde_accepts_integer_canonical_form() {
15693 // Pin the happy-path on the cross-slot side: every canonical
15694 // author shape `render` ever emits parses cleanly through the
15695 // shared codec on the `CircuitBreaker` slot. The
15696 // codec's accepted set (post-gate) is exactly its emitted set
15697 // for the integer-magnitude class.
15698 for window_lit in ["30s", "500ms", "2m", "1h"] {
15699 let payload = format!(
15700 r#"{{"{max_failures}":5,"{window}":"{window_lit}"}}"#,
15701 max_failures = crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES,
15702 window = crate::CIRCUIT_BREAKER_KEY_WINDOW,
15703 );
15704 let cb: CircuitBreaker = serde_json::from_str(&payload).unwrap_or_else(|e| {
15705 panic!("expected {window_lit:?} to parse cleanly through shared codec: {e}")
15706 });
15707 assert_eq!(cb.max_failures, 5);
15708 }
15709 }
15710
15711 // ── rate_limit_codec: integer-magnitude gate ──
15712 //
15713 // The integer-magnitude discipline the 1c55a2a / 818dd38 / d1fd67b
15714 // / 737a676 / d53c922 trajectory landed on every typed-duration /
15715 // typed-byte-size codec in caixa-core lifts onto the fifth typed
15716 // codec — `rate_limit_codec` — through the digit-only magnitude
15717 // gate on the `<rate>` half of the `<rate>/<unit>` author surface.
15718 // These tests pin the gate at the serde layer for `:politicas
15719 // :rate-limit` (the only typed slot the codec backs), and at the
15720 // codec-internal `parse` layer for the canonical positive cases.
15721
15722 #[test]
15723 fn rate_limit_serde_rejects_fractional_rate() {
15724 // `"1.5/s"` previously hit `u32::from_str`'s rejection arm with
15725 // the value-laundered `"rate-limit rate \"1.5\" not a u32"`
15726 // wording, which didn't name the canonical-form remediation or
15727 // the round-trip drift the next emit would produce. Now refused
15728 // at deserialize with the canonical-form diagnostic naming the
15729 // offending `"1.5"` magnitude and the round-trip drift wording.
15730 let payload = r#"{"rateLimit":"1.5/s"}"#;
15731 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15732 let msg = err.to_string();
15733 assert!(
15734 msg.contains("not a non-negative integer"),
15735 "expected integer-magnitude diagnostic in {msg:?}"
15736 );
15737 assert!(msg.contains("\"1.5\""), "missing magnitude in {msg:?}");
15738 assert!(
15739 msg.contains("THEORY.md"),
15740 "missing render-determinism contract citation in {msg:?}"
15741 );
15742 }
15743
15744 #[test]
15745 fn rate_limit_serde_rejects_leading_plus_sign() {
15746 // `u32::from_str("+100")` returns `Ok(100)` (Rust's
15747 // permissive-`+` parse), so `"+100/s"` silently parsed to
15748 // `RateLimit { 100, 1s }` and round-tripped through `render` to
15749 // `"100/s"` — a *different* canonical string on the next emit,
15750 // breaking the THEORY.md Part V render-determinism contract
15751 // exactly the way the peer duration codecs' `"+30s"` case did.
15752 // This is the load-bearing class the digit-only gate closes
15753 // beyond what `u32::from_str`'s strictness covers on its own.
15754 let payload = r#"{"rateLimit":"+100/s"}"#;
15755 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15756 let msg = err.to_string();
15757 assert!(
15758 msg.contains("not a non-negative integer"),
15759 "expected integer-magnitude diagnostic in {msg:?}"
15760 );
15761 assert!(msg.contains("\"+100\""), "missing magnitude in {msg:?}");
15762 }
15763
15764 #[test]
15765 fn rate_limit_serde_rejects_leading_minus_sign() {
15766 // The signed-negative arm: `"-1/s"` lands on the
15767 // non-canonical-but-numeric branch via the `i64` fallback (the
15768 // `f64` parse also succeeds), surfacing the canonical-form
15769 // diagnostic. Replaces the prior value-laundered "not a u32"
15770 // wording with the unified diagnostic across signs.
15771 let payload = r#"{"rateLimit":"-1/s"}"#;
15772 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15773 let msg = err.to_string();
15774 assert!(
15775 msg.contains("not a non-negative integer"),
15776 "expected integer-magnitude diagnostic in {msg:?}"
15777 );
15778 assert!(msg.contains("\"-1\""), "missing magnitude in {msg:?}");
15779 }
15780
15781 #[test]
15782 fn rate_limit_serde_rejects_decimal_shaped_integer() {
15783 // `"100.0/s"` is integer-valued numerically but not in the
15784 // codec's accepted set — `render` emits `"100/s"`, so the
15785 // round-trip would drift. Lifted to the canonical-form
15786 // diagnostic peer with the duration codec's `"1.0s"` case
15787 // (1c55a2a).
15788 let payload = r#"{"rateLimit":"100.0/s"}"#;
15789 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15790 let msg = err.to_string();
15791 assert!(
15792 msg.contains("not a non-negative integer"),
15793 "expected integer-magnitude diagnostic in {msg:?}"
15794 );
15795 assert!(msg.contains("\"100.0\""), "missing magnitude in {msg:?}");
15796 }
15797
15798 #[test]
15799 fn rate_limit_serde_garbage_still_falls_through_to_not_a_u32() {
15800 // Non-numeric, non-digit-only input lands on the existing
15801 // narrower `"not a u32"` arm (preserved for diagnostic-shape
15802 // stability on the parser-shape footgun case). Pin this so a
15803 // future relaxation of the numeric-fallback predicate doesn't
15804 // silently collapse garbage onto the canonical-form arm — same
15805 // partition the peer duration codecs draw between
15806 // `NonIntegerDurationMagnitude` and `BadDurationMagnitude`.
15807 let payload = r#"{"rateLimit":"abc/s"}"#;
15808 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15809 let msg = err.to_string();
15810 assert!(
15811 msg.contains("not a u32"),
15812 "garbage magnitude must surface the narrower `not a u32` wording, got: {msg:?}"
15813 );
15814 assert!(
15815 !msg.contains("not a non-negative integer"),
15816 "garbage magnitude must NOT surface the canonical-form arm, got: {msg:?}"
15817 );
15818 }
15819
15820 #[test]
15821 fn rate_limit_serde_u32_overflow_surfaces_as_overflow() {
15822 // `u32::MAX + 1` (= 4_294_967_296) is digit-only but exceeds
15823 // u32's range. The digit-only gate passes; `u32::from_str`
15824 // fails on overflow. Surface that with the overflow-shaped
15825 // diagnostic naming the offending magnitude verbatim, peer
15826 // with `supervisor::duration_codec`'s overflow arm. Pinning
15827 // the wording so a future refactor doesn't silently collapse
15828 // overflow onto the canonical-form arm.
15829 let payload = r#"{"rateLimit":"4294967296/s"}"#;
15830 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15831 let msg = err.to_string();
15832 assert!(
15833 msg.contains("overflows u32"),
15834 "expected overflow diagnostic in {msg:?}"
15835 );
15836 assert!(
15837 msg.contains("\"4294967296\""),
15838 "missing offending magnitude in {msg:?}"
15839 );
15840 }
15841
15842 #[test]
15843 fn rate_limit_serde_rejects_leading_zero_magnitude() {
15844 // `"0100/s"` is digit-only, so the existing
15845 // non-digit-only / sign / fractional arm doesn't catch it —
15846 // `u32::from_str("0100")` returns `Ok(100)`, so before this
15847 // gate `"0100/s"` parsed to `RateLimit { 100, 1s }` and
15848 // round-tripped through `render` to `"100/s"` — a *different*
15849 // canonical string on the next emit, breaking the THEORY.md
15850 // Part V render-determinism contract exactly the way the
15851 // peer `"+100/s"` case did before the leading-`+` arm landed.
15852 // This is the load-bearing class the leading-zero gate closes
15853 // beyond what the existing digit-only / sign / fractional
15854 // gates cover, and the peer arm to the leading-`+` test
15855 // (`rate_limit_serde_rejects_leading_plus_sign`) on the same
15856 // canonical-form-drift axis.
15857 let payload = r#"{"rateLimit":"0100/s"}"#;
15858 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15859 let msg = err.to_string();
15860 assert!(
15861 msg.contains("non-canonical leading zero"),
15862 "expected leading-zero diagnostic in {msg:?}"
15863 );
15864 assert!(msg.contains("\"0100\""), "missing magnitude in {msg:?}");
15865 assert!(
15866 msg.contains("THEORY.md"),
15867 "missing render-determinism contract citation in {msg:?}"
15868 );
15869 }
15870
15871 #[test]
15872 fn rate_limit_serde_rejects_multi_digit_zero_magnitude() {
15873 // `"00/s"` is the degenerate leading-zero case — every byte
15874 // is `0`, the magnitude parses to `u32` = 0, and `render(0)`
15875 // emits `"0/s"`. Round-trip drift: `"00/s"` → 0 → `"0/s"`,
15876 // a *different* canonical string, same render-determinism
15877 // violation. The single-byte `"0/s"` itself is in the
15878 // accepted set (round-trips losslessly through `render`,
15879 // refused downstream by `PolicyRateLimitZero`); the
15880 // multi-byte `"00/s"` is not. Pins the boundary between the
15881 // accepted single-`0` and the rejected leading-zero class.
15882 let payload = r#"{"rateLimit":"00/s"}"#;
15883 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15884 let msg = err.to_string();
15885 assert!(
15886 msg.contains("non-canonical leading zero"),
15887 "expected leading-zero diagnostic in {msg:?}"
15888 );
15889 assert!(msg.contains("\"00\""), "missing magnitude in {msg:?}");
15890 }
15891
15892 #[test]
15893 fn rate_limit_serde_rejects_leading_zero_per_hour_window() {
15894 // Cross-window pin — the gate is window-agnostic; the
15895 // leading-zero class is a property of the magnitude, not the
15896 // unit. `"007/h"` → 7 → `"7/h"`, same drift. Mirrors the
15897 // peer `rate_limit_serde_rejects_leading_plus_sign` arm's
15898 // single-window coverage extended across the three canonical
15899 // windows the codec accepts.
15900 let payload = r#"{"rateLimit":"007/h"}"#;
15901 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15902 let msg = err.to_string();
15903 assert!(
15904 msg.contains("non-canonical leading zero"),
15905 "expected leading-zero diagnostic in {msg:?}"
15906 );
15907 assert!(msg.contains("\"007\""), "missing magnitude in {msg:?}");
15908 }
15909
15910 #[test]
15911 fn rate_limit_serde_rejects_leading_whitespace() {
15912 // `" 100/s"` — the canonical paste-from-aligned-doc /
15913 // paste-from-YAML-quoted-plain-scalar footgun. Before this gate
15914 // the top-level `s.trim()` silently ate the leading space and
15915 // parsed the value to `RateLimit { 100, 1s }`, which then
15916 // round-tripped through `render` to `"100/s"` (a *different*
15917 // canonical string on the next emit) — the exact
15918 // canonical-form-drift class the leading-`+` / leading-zero
15919 // arms already close, extended to the whitespace byte class.
15920 let payload = r#"{"rateLimit":" 100/s"}"#;
15921 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15922 let msg = err.to_string();
15923 assert!(
15924 msg.contains("contains whitespace byte"),
15925 "expected whitespace diagnostic in {msg:?}"
15926 );
15927 assert!(msg.contains("0x20"), "missing offending byte in {msg:?}");
15928 assert!(
15929 msg.contains("THEORY.md"),
15930 "missing render-determinism contract citation in {msg:?}"
15931 );
15932 }
15933
15934 #[test]
15935 fn rate_limit_serde_rejects_trailing_whitespace() {
15936 // `"100/s "` — the canonical shell-history / trailing-space
15937 // paste footgun. Before this gate the top-level `s.trim()`
15938 // silently ate the trailing space and parsed to
15939 // `RateLimit { 100, 1s }`, round-tripping to `"100/s"` on the
15940 // next emit — same canonical-form drift as the leading-space
15941 // sibling, closed on the same whitespace-byte arm.
15942 let payload = r#"{"rateLimit":"100/s "}"#;
15943 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15944 let msg = err.to_string();
15945 assert!(
15946 msg.contains("contains whitespace byte"),
15947 "expected whitespace diagnostic in {msg:?}"
15948 );
15949 assert!(msg.contains("0x20"), "missing offending byte in {msg:?}");
15950 }
15951
15952 #[test]
15953 fn rate_limit_serde_rejects_internal_whitespace_around_separator() {
15954 // `"100 / s"` — the canonical typographically-spaced author
15955 // shape (the same idiom every prose reference to a rate limit
15956 // renders as, mistakenly retained when the value is pasted
15957 // into a codec-shaped slot). Before this gate the per-part
15958 // `rate_str.trim()` / `unit.trim()` calls silently ate both
15959 // spaces on either side of `/` and parsed to
15960 // `RateLimit { 100, 1s }`, round-tripping to `"100/s"` — the
15961 // codec's *internal* whitespace-tolerance vector, orthogonal
15962 // to the leading / trailing surface but the same canonical-
15963 // form-drift class. Pins the arm as strictly stronger than the
15964 // pre-existing top-level `s.trim()` behavior: it fires on
15965 // whitespace anywhere in the value, not just at the string
15966 // boundary.
15967 let payload = r#"{"rateLimit":"100 / s"}"#;
15968 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15969 let msg = err.to_string();
15970 assert!(
15971 msg.contains("contains whitespace byte"),
15972 "expected whitespace diagnostic in {msg:?}"
15973 );
15974 assert!(msg.contains("0x20"), "missing offending byte in {msg:?}");
15975 }
15976
15977 #[test]
15978 fn rate_limit_serde_rejects_tab_byte() {
15979 // `"\t100/s"` — the canonical paste-from-indented-doc /
15980 // paste-from-YAML-block-scalar footgun where a tab byte leads
15981 // the magnitude. Pins that the gate covers tab (`0x09`) as
15982 // well as space (`0x20`) — both are `u8::is_ascii_whitespace`
15983 // members and both would be silently swallowed by `s.trim()`
15984 // pre-gate. The `is_ascii_whitespace` coverage extends beyond
15985 // space alone to the full ASCII-whitespace set (space `0x20`,
15986 // tab `0x09`, LF `0x0A`, FF `0x0C`, CR `0x0D`); this test pins
15987 // the tab arm as a representative of the non-space members.
15988 let payload = r#"{"rateLimit":"\t100/s"}"#;
15989 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
15990 let msg = err.to_string();
15991 assert!(
15992 msg.contains("contains whitespace byte"),
15993 "expected whitespace diagnostic in {msg:?}"
15994 );
15995 assert!(
15996 msg.contains("0x09"),
15997 "missing offending tab byte in {msg:?}"
15998 );
15999 }
16000
16001 // ── canonical-form: non-ASCII Unicode `White_Space` rate-limit gate ───
16002 //
16003 // Successor to the ASCII-whitespace arm (1ad7755) on
16004 // `rate_limit_codec` — closes the strictly-complementary class the
16005 // byte-scan cannot see, through the lifted
16006 // [`crate::render::find_non_ascii_whitespace_char`] predicate.
16007
16008 #[test]
16009 fn rate_limit_serde_rejects_leading_nbsp() {
16010 // NBSP prefix — paste-from-typography footgun. Byte-scan
16011 // misses, `str::trim` silently strips it, value drifts to
16012 // `"100/s"` on next serialize.
16013 let payload = "{\"rateLimit\":\"\u{00A0}100/s\"}";
16014 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
16015 let msg = err.to_string();
16016 assert!(
16017 msg.contains("non-ASCII Unicode whitespace character"),
16018 "expected non-ASCII whitespace diagnostic in {msg:?}"
16019 );
16020 assert!(msg.contains("U+00A0"), "missing codepoint in {msg:?}");
16021 }
16022
16023 #[test]
16024 fn rate_limit_serde_rejects_internal_em_space() {
16025 // EM-SPACE (`\u{2003}`) between magnitude and unit — canonical
16026 // paste-from-typography footgun on the `<integer>/<unit>`
16027 // shape.
16028 let payload = "{\"rateLimit\":\"100\u{2003}/s\"}";
16029 let err = serde_json::from_str::<MeshPolicy>(payload).unwrap_err();
16030 let msg = err.to_string();
16031 assert!(
16032 msg.contains("non-ASCII Unicode whitespace character"),
16033 "expected non-ASCII whitespace diagnostic in {msg:?}"
16034 );
16035 assert!(msg.contains("U+2003"), "missing codepoint in {msg:?}");
16036 }
16037
16038 #[test]
16039 fn rate_limit_serde_accepts_ascii_only_canonical_forms_after_unicode_arm() {
16040 // Positive-control pin: every ASCII-only canonical form the
16041 // renderer emits stays accepted through the new arm.
16042 for lit in [r#""100/s""#, r#""5000/m""#, r#""10000/h""#] {
16043 let payload = format!(r#"{{"rateLimit":{lit}}}"#);
16044 let p: MeshPolicy = serde_json::from_str(&payload)
16045 .unwrap_or_else(|e| panic!("expected {lit} to parse; got {e}"));
16046 assert!(p.rate_limit.is_some());
16047 }
16048 }
16049
16050 #[test]
16051 fn rate_limit_serde_accepts_single_zero_magnitude_at_codec_layer() {
16052 // The boundary case — `"0/s"` is the canonical form
16053 // `render(RateLimit { 0, 1s })` emits, so the codec accepts
16054 // it at the parse layer; the downstream
16055 // [`AplicacaoError::PolicyRateLimitZero`] gate refuses
16056 // `rate == 0` at the typed-validate layer above. Pins the
16057 // partition: the leading-zero gate at the codec layer does
16058 // not poach the rate-zero semantic-validation arm at the
16059 // typed-validate layer above (a future stricter codec must
16060 // not reject `"0/s"` here, or it'd collapse the diagnostic
16061 // partitioning that lets `PolicyRateLimitZero` name the
16062 // offending typed slot).
16063 let payload = r#"{"rateLimit":"0/s"}"#;
16064 let policy: MeshPolicy = serde_json::from_str(payload).unwrap_or_else(|e| {
16065 panic!("`\"0/s\"` must parse cleanly through rate_limit_codec: {e}")
16066 });
16067 let rl = policy.rate_limit.expect("rate_limit must be Some");
16068 assert_eq!(rl.rate, 0, "single-`0` magnitude must parse to rate=0");
16069 assert_eq!(
16070 rl.window,
16071 Duration::from_secs(1),
16072 "single-`0` magnitude with `s` unit must parse to window=1s"
16073 );
16074 }
16075
16076 #[test]
16077 fn rate_limit_serde_accepts_canonical_magnitude_with_leading_one() {
16078 // The complementary boundary pin — every magnitude
16079 // `render` emits starts with `[1-9]` (or is the single byte
16080 // `"0"`), so the canonical-form predicate is `(len == 1) ||
16081 // (first byte != '0')`. Pinning the `len > 1 && first byte ==
16082 // '1'` case explicitly so a future tightening of the gate
16083 // (e.g. an over-eager "no leading digit < 5" rule, or a
16084 // mistakenly anchored start-of-magnitude byte check) lands
16085 // here before the canonical-forms-iterating test would catch
16086 // it.
16087 let payload = r#"{"rateLimit":"100/s"}"#;
16088 let policy: MeshPolicy = serde_json::from_str(payload)
16089 .unwrap_or_else(|e| panic!("canonical `\"100/s\"` must parse cleanly: {e}"));
16090 let rl = policy.rate_limit.expect("rate_limit must be Some");
16091 assert_eq!(
16092 rl.rate, 100,
16093 "canonical-100 magnitude must parse to rate=100"
16094 );
16095 }
16096
16097 #[test]
16098 fn rate_limit_serde_accepts_integer_canonical_forms() {
16099 // Pin the happy-path: every canonical author shape `render`
16100 // ever emits parses cleanly through the codec post-gate. The
16101 // codec's accepted set (post-gate) is exactly its emitted set
16102 // for the integer-magnitude class — same property
16103 // `parse_byte_size`'s and `parse_duration`'s integer-magnitude
16104 // gates guarantee on the peer codecs. Iterating across rate
16105 // magnitudes (including `"0"`, which the codec accepts even
16106 // though `validate_politicas` rejects `rate == 0` at the typed
16107 // layer above) closes the codec contract at the parse layer
16108 // independently of the validate layer.
16109 for rate_lit in ["0", "1", "100", "5000", "1000000", "4294967295"] {
16110 for unit_lit in ["s", "m", "h"] {
16111 let lit = format!("{rate_lit}/{unit_lit}");
16112 let payload = format!(r#"{{"rateLimit":{lit:?}}}"#);
16113 let policy: MeshPolicy = serde_json::from_str(&payload).unwrap_or_else(|e| {
16114 panic!("expected {lit:?} to parse cleanly through rate_limit_codec: {e}")
16115 });
16116 let rl = policy.rate_limit.expect("rate_limit must be Some");
16117 assert_eq!(
16118 rl.rate,
16119 rate_lit.parse::<u32>().unwrap(),
16120 "rate mismatch for {lit:?}"
16121 );
16122 }
16123 }
16124 }
16125
16126 #[test]
16127 fn rate_limit_serde_round_trip_holds_for_every_canonical_form() {
16128 // The structural property the gate enforces: serialize ∘
16129 // deserialize is the identity on every canonical author shape.
16130 // Peer of `parse_byte_size`'s and `parse_duration`'s
16131 // `_round_trips_through_render_for_every_canonical_form` tests
16132 // on the rate-limit axis. Before the gate, `"+100/s"` violated
16133 // this (`parse` → `RateLimit { 100, 1s }` → `render` →
16134 // `"100/s"` ≠ `"+100/s"`); the gate forecloses that class.
16135 for rate in [1u32, 100, 5000, 1_000_000] {
16136 for (window, unit) in [
16137 (Duration::from_secs(1), "s"),
16138 (Duration::from_secs(60), "m"),
16139 (Duration::from_secs(3600), "h"),
16140 ] {
16141 let policy = MeshPolicy {
16142 rate_limit: Some(RateLimit { rate, window }),
16143 ..Default::default()
16144 };
16145 let json = serde_json::to_string(&policy).unwrap();
16146 let expected = format!("\"{rate}/{unit}\"");
16147 assert!(
16148 json.contains(&expected),
16149 "expected {expected:?} in {json:?}"
16150 );
16151 let back: MeshPolicy = serde_json::from_str(&json).unwrap();
16152 assert_eq!(
16153 back.rate_limit, policy.rate_limit,
16154 "round-trip for {json:?}"
16155 );
16156 }
16157 }
16158 }
16159
16160 // ── self-membership cross-slot gate ──────────────────────────────
16161
16162 #[test]
16163 fn validate_no_self_membership_rejects_self_named_membro() {
16164 // An Aplicacao whose `:membros` lists its own `:nome` is a
16165 // one-node lacre-closure recursion — rejected, naming the parent.
16166 let membros = vec![
16167 membro("catalog", "^0.1"),
16168 membro("checkout", "^0.1"),
16169 membro("cart", "^0.1"),
16170 ];
16171 let err = validate_no_self_membership(&membros, "checkout").unwrap_err();
16172 assert!(
16173 matches!(err, AplicacaoError::MembroIsSelfAplicacao { ref caixa } if caixa == "checkout"),
16174 "got {err:?}"
16175 );
16176 }
16177
16178 #[test]
16179 fn validate_no_self_membership_accepts_distinct_membros() {
16180 // Positive control: distinct member names (including a member
16181 // that is itself an Aplicacao — recursive composition is valid,
16182 // MESH-COMPOSITION §V) pass the gate.
16183 let membros = vec![membro("catalog", "^0.1"), membro("sub-aplicacao", "^0.1")];
16184 validate_no_self_membership(&membros, "checkout").unwrap();
16185 }
16186
16187 #[test]
16188 fn validate_no_self_membership_empty_membros_is_vacuously_ok() {
16189 // An empty `:membros` is rejected by `AplicacaoSpec::validate`'s
16190 // `NoMembros` arm (the more-fundamental "graph must have nodes"
16191 // gate), not by this cross-slot self-edge gate. Keeping the
16192 // self-membership predicate vacuously-ok on the empty input
16193 // matches its supervisor-axis peer
16194 // (`validate_no_self_supervision_empty_children_is_ok`) and
16195 // makes the gate composable from any future call site (an M4
16196 // CR materializer's per-membros validator) without re-checking
16197 // emptiness.
16198 validate_no_self_membership(&[], "checkout").unwrap();
16199 }
16200
16201 #[test]
16202 fn validate_no_self_membership_diagnostic_names_offending_caixa() {
16203 // Pinning the Display: the self-membership diagnostic must name
16204 // the offending caixa verbatim + the "lists itself" framing the
16205 // author can grep for, so the cluster-far failure surfaces at
16206 // build time with one-line remediation. Same diagnostic shape
16207 // as the supervisor-axis `ChildSupervisesSelf` peer.
16208 let membros = vec![membro("orquestra", "^0.1")];
16209 let err = validate_no_self_membership(&membros, "orquestra").unwrap_err();
16210 let msg = err.to_string();
16211 assert!(
16212 msg.contains("orquestra"),
16213 "diagnostic must name the offending caixa nome (got: {msg:?})"
16214 );
16215 assert!(
16216 msg.contains("lists itself"),
16217 "diagnostic must use the canonical `lists itself` framing (got: {msg:?})"
16218 );
16219 }
16220
16221 #[test]
16222 fn default_servico_port_constant_pins_canonical_8080_literal() {
16223 // The canonical-constant arm — pins [`DEFAULT_SERVICO_PORT`]
16224 // at the verbatim `8080` literal both consumers (the
16225 // `Entrada::port` serde default via [`default_port`] and the
16226 // `caixa-mesh` `CiliumNetworkPolicy` L4-fallback at
16227 // `caixa-mesh/src/lib.rs:344`) read from. Peer with the
16228 // [`crate::DEFAULT_NAMESPACE`]-pins-`"tatara-system"`
16229 // discipline (a085b26) on the per-renderer canonical-K8s-axis
16230 // string-constant axis: a future refactor that drifts the
16231 // constant out from under either consumer surfaces here ahead
16232 // of every per-renderer's first emission. The literal value
16233 // matches the well-known HTTP-alt port the `pleme-computeunit`
16234 // library chart already emits as its `trigger.service.port`
16235 // default — by construction the same value the substrate
16236 // assumes about every Servico's in-cluster L4 listener.
16237 assert_eq!(
16238 DEFAULT_SERVICO_PORT, 8080,
16239 "canonical Servico port literal must remain `8080` verbatim — \
16240 this is the value both the `Entrada::port` serde default and the \
16241 caixa-mesh `CiliumNetworkPolicy` L4-fallback read from"
16242 );
16243 }
16244
16245 #[test]
16246 fn default_port_helper_returns_canonical_servico_port_constant() {
16247 // The bridge-arm — pins that the [`default_port`] helper
16248 // [`Entrada::port`]'s `#[serde(default = "default_port")]`
16249 // attribute hooks routes through the lifted
16250 // [`DEFAULT_SERVICO_PORT`] constant, not an open-coded
16251 // literal. A future refactor that re-introduces the `8080`
16252 // literal at the helper's return site (silently re-opening
16253 // the drift footgun this lift closed) surfaces here ahead of
16254 // every author-side `(:entrada (:host … :para …))` slot
16255 // without an explicit `:port`. Peer with the
16256 // `default_namespace_re_export_points_at_caixa_core_canonical`
16257 // pin on the caixa-mesh-side re-export axis.
16258 assert_eq!(
16259 default_port(),
16260 DEFAULT_SERVICO_PORT,
16261 "the serde-default helper must route through the lifted constant"
16262 );
16263 }
16264
16265 #[test]
16266 fn entrada_serde_default_port_inherits_canonical_servico_port_constant() {
16267 // The end-to-end pin — an author-surface `(:entrada (:host …
16268 // :para …))` without an explicit `:port` slot deserializes to
16269 // a typed [`Entrada`] carrying [`DEFAULT_SERVICO_PORT`]
16270 // verbatim. Routes the canonical lifted constant through both
16271 // the serde-default machinery (the `#[serde(default =
16272 // "default_port")]` attribute) and the typed-value-shape
16273 // contract (the resulting [`Entrada::port`] value). A future
16274 // refactor that drifts either axis — replacing the serde
16275 // hook's helper, changing the typed slot's wire shape — would
16276 // surface here before any per-renderer's CNP / Gateway /
16277 // HTTPRoute emission consumed the drifted default.
16278 let entrada: Entrada =
16279 serde_yaml::from_str("host: checkout.quero.cloud\npara: cart\n").expect("yaml parses");
16280 assert_eq!(
16281 entrada.port, DEFAULT_SERVICO_PORT,
16282 "the serde default must materialize as the lifted canonical Servico port"
16283 );
16284 }
16285
16286 #[test]
16287 fn servico_port_min_pins_canonical_accept_set_floor() {
16288 // The canonical-constant arm — pins [`SERVICO_PORT_MIN`] at the
16289 // verbatim `1` literal every typed `:entrada :port` acceptance
16290 // gate keys off. Peer with the
16291 // [`default_servico_port_constant_pins_canonical_8080_literal`]
16292 // discipline on the canonical-Servico-port-constant axis: a
16293 // future refactor that drifts the accept-set floor out from
16294 // under the sole consumer at [`AplicacaoSpec::validate`]'s
16295 // `if e.port < SERVICO_PORT_MIN` gate surfaces here ahead of
16296 // every per-`:entrada` `EntradaPortZero` diagnostic. The
16297 // literal value matches the IANA-registered TCP/UDP port
16298 // space floor (`1..=65535` — port `0` is the "any ephemeral"
16299 // sentinel, not a well-defined destination the substrate's
16300 // per-`Entrada` Gateway API v1 `HTTPRoute.backendRefs[].port`
16301 // axis can honor).
16302 assert_eq!(
16303 SERVICO_PORT_MIN, 1,
16304 "canonical Servico port accept-set floor must remain `1` verbatim — \
16305 this is the value the `AplicacaoSpec::validate` gate at \
16306 `if e.port < SERVICO_PORT_MIN` rejects `port: 0` against"
16307 );
16308 }
16309
16310 #[test]
16311 fn default_servico_port_satisfies_lifted_servico_port_min_floor() {
16312 // The cross-const invariant pin — the substrate's canonical
16313 // default port must satisfy its own accept-set floor by
16314 // construction: `SERVICO_PORT_MIN <= DEFAULT_SERVICO_PORT`.
16315 // A future rebrand that moved [`DEFAULT_SERVICO_PORT`] below
16316 // [`SERVICO_PORT_MIN`] — a hypothetical `0` typo, a per-cluster
16317 // override the operator pins through a future
16318 // `:placement :default-port` slot that lands out-of-range, a
16319 // per-edition Servico-port migration that lifted the floor
16320 // above the previous default without coordinating the pair —
16321 // would silently invalidate the serde-default emission at
16322 // every author-side `(:entrada (:host … :para …))` slot
16323 // without an explicit `:port`: the default port would fall
16324 // below the accept-set floor, the `AplicacaoSpec::validate`
16325 // gate would reject every default-carrying Aplicacao as
16326 // `EntradaPortZero`, and the substrate's typed
16327 // `(defcaixa … :kind Aplicacao)` surface would fail validate
16328 // on every Aplicacao whose author omitted `:entrada :port`
16329 // for the substrate's chosen default — a class of authoring-
16330 // surface footguns the compile-time pin structurally closes.
16331 // Peer with the
16332 // [`standalone_and_cluster_bundle_lareira_enabled_defaults_are_inverse_by_construction`]
16333 // (27f9b34) cross-const invariant pin discipline on the peer
16334 // canonical-Helm-per-values-block child-chart-enablement-toggle
16335 // axis pair.
16336 assert!(
16337 SERVICO_PORT_MIN <= DEFAULT_SERVICO_PORT,
16338 "the substrate's canonical default port ({DEFAULT_SERVICO_PORT}) must \
16339 satisfy its own accept-set floor (SERVICO_PORT_MIN = {SERVICO_PORT_MIN}) — \
16340 every default-carrying `(:entrada (:host … :para …))` slot without an \
16341 explicit `:port` inherits `DEFAULT_SERVICO_PORT` through the serde default \
16342 hook and must pass the `AplicacaoSpec::validate` floor gate by construction"
16343 );
16344 }
16345
16346 #[test]
16347 fn entrada_port_zero_gate_routes_through_lifted_servico_port_min_floor() {
16348 // The gate-site pin — asserts the `AplicacaoSpec::validate`
16349 // floor gate at `if e.port < SERVICO_PORT_MIN` fires the
16350 // `EntradaPortZero` diagnostic on the below-floor input
16351 // `port: 0` (the only below-floor value the `u16` field can
16352 // carry — `SERVICO_PORT_MIN` is `1`, so the below-floor set
16353 // is the singleton `{0}`). A future refactor that drifts the
16354 // gate off the lifted const (silently re-introducing an
16355 // inline `if e.port == 0` byte-check) surfaces here — the
16356 // pin cannot distinguish `< 1` from `== 0` on the current
16357 // floor, but it *does* pin that the diagnostic fires on `0`
16358 // through whichever gate is wired, so any future accept-set
16359 // floor migration (a hypothetical unprivileged-only
16360 // migration lifting `SERVICO_PORT_MIN` to `1024`) must
16361 // update this test alongside the const declaration —
16362 // structurally guaranteeing the gate + accept-set + pin
16363 // trio move together. Peer with the
16364 // [`rejects_zero_entrada_port`] behavioral pin on the same
16365 // per-`:entrada :port` axis — that pin asserts the pre-lift
16366 // behavioral contract (`port: 0` → `EntradaPortZero`); this
16367 // pin adds the structural link to the lifted floor const.
16368 assert_eq!(SERVICO_PORT_MIN, 1, "current floor pinned above");
16369 let mut s = three_member_spec();
16370 s.entrada.as_mut().unwrap().port = 0;
16371 assert_eq!(s.validate().unwrap_err(), AplicacaoError::EntradaPortZero);
16372 }
16373
16374 // ── drift-detection: serde-derive-to-MEMBRO_KEY_* identity ────────────
16375
16376 #[test]
16377 fn membro_serde_keys_match_lifted_membro_key_consts() {
16378 // Load-bearing invariant: the two `MEMBRO_KEY_*` consts
16379 // ([`crate::MEMBRO_KEY_CAIXA`] / [`crate::MEMBRO_KEY_VERSAO`])
16380 // name the exact camelCase JSON keys the
16381 // `#[serde(rename_all = "camelCase")]` attribute on
16382 // [`Membro`] emits. Serialize a fully-populated `Membro` and pin
16383 // that each canonical byte-sequence appears verbatim in the
16384 // JSON — a future accidental `rename_all = "snake_case"` /
16385 // `"kebab-case"` / verbatim-field-name flip at the derive
16386 // attribute (any of which would silently break every downstream
16387 // JSON consumer that reaches for one of the two consts via
16388 // `Value::get(...)`) surfaces here as a build-time test failure
16389 // at `aplicacao.rs`, not as an apply-time
16390 // `.get(<stale-canonical-const>)` returning `None` far from the
16391 // derive-attr drift's commit. Peer with the sibling
16392 // `supervisor_spec_serde_keys_match_lifted_supervisor_key_consts`
16393 // (40cc4e5) pin on the M2 supervision-tree top-level axis —
16394 // same discipline the SupervisorSpec top-level lift established,
16395 // extended here to the M3 [`Membro`] per-`:membros` axis.
16396 let m = Membro {
16397 caixa: "catalog".into(),
16398 versao: "^0.1".into(),
16399 };
16400 let json = serde_json::to_string(&m).unwrap();
16401 for key in [crate::MEMBRO_KEY_CAIXA, crate::MEMBRO_KEY_VERSAO] {
16402 let quoted = format!("\"{key}\"");
16403 assert!(
16404 json.contains("ed),
16405 "serialized Membro must carry the lifted MEMBRO_KEY_* \
16406 byte-sequence {quoted} verbatim in the JSON emission \
16407 (got: {json})",
16408 );
16409 }
16410 }
16411
16412 #[test]
16413 fn membro_key_consts_are_pairwise_distinct() {
16414 // Cross-axis drift-detection pin: a future collapse of the two
16415 // canonical [`Membro`] per-entry byte-strings onto the same
16416 // value (e.g. an accidental copy-paste flip of
16417 // [`crate::MEMBRO_KEY_VERSAO`] to also read `"caixa"`) would
16418 // silently reroute every downstream probe on one axis onto the
16419 // sibling axis's overlay entry and pass every propagation-probe
16420 // test that expected only the stale axis's value. Peer of the
16421 // sibling four-way distinct pin on the `SUPERVISOR_KEY_*` tetrad
16422 // (40cc4e5).
16423 let all = [crate::MEMBRO_KEY_CAIXA, crate::MEMBRO_KEY_VERSAO];
16424 for (i, a) in all.iter().enumerate() {
16425 for b in all.iter().skip(i + 1) {
16426 assert_ne!(
16427 a, b,
16428 "MEMBRO_KEY_* consts must be pairwise-distinct \
16429 canonical byte-sequences — got `{a}` == `{b}`",
16430 );
16431 }
16432 }
16433 }
16434
16435 // ── Entrada::resolved_paths — the substrate-canonical per-`:entrada`
16436 // URL-path fallback resolver every HTTPRoute-aware renderer
16437 // reaching for a per-rule path-list resolution routes through.
16438 // The four pin tests below fix the four-way accept-set the
16439 // resolver must always honor: (:paths-non-empty-verbatim,
16440 // :paths-empty-falls-back-to-catchall, :paths-single-entry-verbatim,
16441 // :paths-preserves-order-across-multiple-entries) — drift on any
16442 // arm surfaces at caixa-core build time rather than at cluster-
16443 // apply time. Peer discipline with `MeshPolicy::is_empty` on the
16444 // sibling `:politicas` typed-primitive dispatch axis.
16445
16446 fn entrada_with_paths(paths: Vec<&str>) -> Entrada {
16447 Entrada {
16448 host: "example.com".into(),
16449 para: "cart".into(),
16450 paths: paths.into_iter().map(String::from).collect(),
16451 port: DEFAULT_SERVICO_PORT,
16452 }
16453 }
16454
16455 #[test]
16456 fn resolved_paths_returns_declared_paths_verbatim_when_non_empty() {
16457 // The typed `:entrada :paths` slot carries an author-declared
16458 // list — the resolver returns each entry verbatim, no
16459 // catch-all substitution. The canonical "author declared
16460 // paths, honor them verbatim" arm of the path-list dispatch.
16461 let e = entrada_with_paths(vec!["/api/cart", "/api/products"]);
16462 assert_eq!(
16463 e.resolved_paths(),
16464 vec!["/api/cart", "/api/products"],
16465 "resolved_paths must return each `:entrada :paths` entry \
16466 verbatim when the typed slot is non-empty (got {:?})",
16467 e.resolved_paths(),
16468 );
16469 }
16470
16471 #[test]
16472 fn resolved_paths_falls_back_to_gateway_api_default_http_route_path_when_paths_empty() {
16473 // Empty `:entrada :paths` slot — the resolver substitutes the
16474 // singleton [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`]
16475 // catch-all fallback verbatim. Pins the empty-arm of the
16476 // resolver's four-way accept-set against a future silent
16477 // detour that returned an empty Vec (which would emit an
16478 // HTTPRoute with zero rules — silently dropping every
16479 // external `:entrada` flow at admission time), routed to a
16480 // different fallback shape, or dropped the catch-all
16481 // altogether.
16482 let e = entrada_with_paths(vec![]);
16483 assert_eq!(
16484 e.resolved_paths(),
16485 vec![crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH],
16486 "resolved_paths on empty `:entrada :paths` must fall back \
16487 to the lifted GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH catch-\
16488 all — got {:?}",
16489 e.resolved_paths(),
16490 );
16491 }
16492
16493 #[test]
16494 fn resolved_paths_returns_single_declared_path_verbatim_when_len_one() {
16495 // Single-entry `:entrada :paths` — the resolver returns the
16496 // single declared path verbatim, NOT the catch-all fallback
16497 // (author declared a path, honor it — the empty-arm and the
16498 // len-1 arm are semantically distinct axes of the resolver's
16499 // accept-set). Pins that the resolver treats "author declared
16500 // one path" as authored input, not as the empty case.
16501 let e = entrada_with_paths(vec!["/api/only"]);
16502 assert_eq!(
16503 e.resolved_paths(),
16504 vec!["/api/only"],
16505 "resolved_paths on single-entry `:entrada :paths` must \
16506 return the declared path verbatim, NOT the catch-all \
16507 fallback (got {:?})",
16508 e.resolved_paths(),
16509 );
16510 }
16511
16512 #[test]
16513 fn resolved_paths_preserves_author_declared_order() {
16514 // The `:entrada :paths` list is author-ordered — the resolver
16515 // preserves the author's declaration order verbatim, since
16516 // per-rule dispatch order at the K8s Gateway API HTTPRoute
16517 // consumer is significant (first-match-wins under the
16518 // path-prefix matcher). Pins against a future silent
16519 // re-sort / dedup / normalize detour that reordered author
16520 // input.
16521 let e = entrada_with_paths(vec!["/z/last", "/a/first", "/m/mid"]);
16522 assert_eq!(
16523 e.resolved_paths(),
16524 vec!["/z/last", "/a/first", "/m/mid"],
16525 "resolved_paths must preserve author-declared `:entrada \
16526 :paths` order verbatim — got {:?}",
16527 e.resolved_paths(),
16528 );
16529 }
16530
16531 // ── Entrada::paths — the substrate-canonical per-`:entrada` raw-
16532 // slot `&[String]` slice accessor every per-`:entrada` consumer
16533 // that must see the author's declaration verbatim (not the
16534 // fallback-applied projection the sibling `resolved_paths`
16535 // returns) routes through. The three pin tests below fix the
16536 // accept-set the accessor must honor: (:non-empty-byte-equal,
16537 // :empty-projects-empty-slice, :preserves-author-declared-order)
16538 // — drift on any arm surfaces at caixa-core build time rather
16539 // than at cluster-apply time. Peer discipline with the sibling
16540 // [`Placement::clusters`] (a6e18d7) `&[String]` accessor on the
16541 // peer M3 mesh-slot `Vec<String>`-carry axis.
16542
16543 #[test]
16544 fn paths_returns_entrada_paths_slice_byte_equal_across_permutations() {
16545 // Byte-equal pin: [`Entrada::paths`] must project the raw
16546 // `:entrada :paths` `Vec<String>` verbatim as a `&[String]`
16547 // slice borrowed from the typed slot's own [`Vec<String>`]
16548 // storage — no re-ordering, no dedup, no per-entry normalization,
16549 // no fallback substitution (the fallback-applying projection is
16550 // the sibling [`Entrada::resolved_paths`] resolver). Pins against
16551 // a future silent detour that re-normalized the list, dropped
16552 // duplicates the [`AplicacaoSpec::validate`]
16553 // `EntradaPathDuplicate` refusal already rejects at build time,
16554 // or (most severe) accidentally routed through the fallback-
16555 // applying sibling and returned the substrate catch-all when
16556 // the author declared an empty list — collapsing the raw-slot
16557 // and fallback-applied axes into one and breaking the
16558 // [`AplicacaoSpec::validate`] "empty `:paths` is `Ok(())`" contract.
16559 //
16560 // Peer of the sibling
16561 // [`Placement::clusters`]-shape byte-equal pin
16562 // `placement_clusters_returns_clusters_slice_byte_equal_across_permutations`
16563 // (a6e18d7) on the peer M3 mesh-slot `Vec<String>`-carry axis.
16564 let fixtures: Vec<Vec<String>> = vec![
16565 Vec::new(),
16566 vec!["/api/cart".into()],
16567 vec!["/api/cart".into(), "/api/products".into()],
16568 vec!["/z/last".into(), "/a/first".into(), "/m/mid".into()],
16569 ];
16570 for paths in fixtures {
16571 let e = Entrada {
16572 host: "example.com".into(),
16573 para: "cart".into(),
16574 paths: paths.clone(),
16575 port: DEFAULT_SERVICO_PORT,
16576 };
16577 assert_eq!(
16578 e.paths(),
16579 paths.as_slice(),
16580 "Entrada::paths must return :entrada :paths verbatim \
16581 (got {:?}, expected {:?})",
16582 e.paths(),
16583 paths.as_slice(),
16584 );
16585 assert_eq!(
16586 e.paths(),
16587 e.paths.as_slice(),
16588 "Entrada::paths accessor and .paths.as_slice() field \
16589 access must byte-equal — the accessor is the substrate-\
16590 primitive typed dispatch every downstream per-`:entrada` \
16591 raw-slot path-list consumer must route through",
16592 );
16593 assert_eq!(
16594 e.paths().len(),
16595 e.paths.len(),
16596 "Entrada::paths().len() must byte-equal self.paths.len() \
16597 — a length drift would silently split the paired \
16598 pre-flight cascade-head `.is_empty()` probe input in \
16599 the sibling [`Entrada::resolved_paths`] resolver from \
16600 the per-entry validate loop's traversal input in \
16601 [`AplicacaoSpec::validate`]",
16602 );
16603 }
16604 }
16605
16606 #[test]
16607 fn resolved_paths_reads_through_lifted_paths_accessor() {
16608 // Two-consumer coherence pin: the [`Entrada::resolved_paths`]
16609 // pre-flight `.paths().is_empty()` cascade-head probe (which
16610 // must trip the [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`]
16611 // catch-all fallback arm when the accessor projects the empty
16612 // slice) and the per-entry `.paths().iter().map(String::as_str)`
16613 // projection (which must reach every entry in the same order
16614 // the accessor projects, so the sibling
16615 // [`AplicacaoSpec::validate`] per-entry gate and the resolver's
16616 // per-entry projection stay in lockstep by construction) must
16617 // both key off the lifted accessor. Pins the two-site coherence
16618 // by exercising each production consumer end-to-end: (1) the
16619 // catch-all-fallback arm under the empty slice, (2) the
16620 // author-declared-verbatim arm under a two-entry cohort whose
16621 // per-entry projection must byte-equal the input's per-entry
16622 // author-declared paths in the author's declared order.
16623 //
16624 // Peer of the sibling M3
16625 // [`AplicacaoSpec::validate_placement`]-shape two-consumer pin
16626 // `validate_placement_reads_through_lifted_clusters_accessor`
16627 // on the sibling `Placement::clusters` reader-site convergence.
16628 let empty = entrada_with_paths(vec![]);
16629 assert_eq!(
16630 empty.resolved_paths(),
16631 vec![crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH],
16632 "resolved_paths on empty :entrada :paths must trip the \
16633 lifted [`crate::GATEWAY_API_DEFAULT_HTTP_ROUTE_PATH`] \
16634 catch-all fallback — routing through the lifted paths() \
16635 accessor must not silently drop the fallback arm",
16636 );
16637
16638 let declared = entrada_with_paths(vec!["/api/cart", "/api/products"]);
16639 assert_eq!(
16640 declared.resolved_paths(),
16641 vec!["/api/cart", "/api/products"],
16642 "resolved_paths on non-empty :entrada :paths must return each \
16643 entry verbatim in the author's declared order — routing \
16644 through the lifted paths() accessor must not silently \
16645 reorder or drop entries",
16646 );
16647 // Byte-equal pin against the raw-slot accessor to keep the
16648 // fallback-applying resolver's per-entry projection input in
16649 // lockstep with the raw-slot accessor's projection.
16650 let raw_projected: Vec<&str> = declared.paths().iter().map(String::as_str).collect();
16651 assert_eq!(
16652 declared.resolved_paths(),
16653 raw_projected,
16654 "resolved_paths non-empty projection must byte-equal the \
16655 lifted paths() accessor's per-entry String::as_str projection \
16656 — the two projections share the same input slice by \
16657 construction, so any drift here would surface a silent \
16658 re-ordering / dedup / normalization detour in the resolver",
16659 );
16660 }
16661
16662 #[test]
16663 fn validate_reads_through_lifted_entrada_paths_accessor() {
16664 // Two-consumer coherence pin: the [`AplicacaoSpec::validate`]
16665 // per-entry value-shape gate's `for p in e.paths()` traversal
16666 // (which must reach every entry in the same order the accessor
16667 // projects, so both the per-entry `EntradaPathEmpty` /
16668 // `EntradaPathNotAbsolute` / `EntradaPathInvalid` gates and
16669 // the duplicate-detection HashSet insert that trips
16670 // [`AplicacaoError::EntradaPathDuplicate`] key off the accessor's
16671 // projection) must route through the lifted accessor. Pins the
16672 // coherence by exercising each production consumer end-to-end:
16673 // (1) the `EntradaPathEmpty` refusal fires on the second entry
16674 // of a two-entry cohort whose head is valid but tail is empty
16675 // (which requires the loop to reach the second entry through
16676 // the accessor), and (2) the `EntradaPathDuplicate` refusal
16677 // fires on the second entry of a two-entry cohort that shares
16678 // a path (which requires the loop to reach both entries — a
16679 // first-entry-only projection would silently pass since the
16680 // dedup HashSet has room for the first insert).
16681 //
16682 // Peer of the sibling
16683 // `validate_placement_reads_through_lifted_clusters_accessor`
16684 // on the sibling `Placement::clusters` reader-site convergence.
16685 let base = crate::AplicacaoSpec {
16686 membros: vec![crate::Membro {
16687 caixa: "cart".into(),
16688 versao: "^0.1".into(),
16689 }],
16690 contratos: Vec::new(),
16691 politicas: crate::MeshPolicy::default(),
16692 placement: crate::Placement {
16693 estrategia: crate::PlacementStrategy::SingleNode,
16694 clusters: vec!["rio".into()],
16695 shard_key: None,
16696 affinity: None,
16697 },
16698 entrada: Some(Entrada {
16699 host: "example.com".into(),
16700 para: "cart".into(),
16701 paths: vec!["/api/cart".into(), String::new()],
16702 port: DEFAULT_SERVICO_PORT,
16703 }),
16704 };
16705 assert_eq!(
16706 base.validate(),
16707 Err(crate::AplicacaoError::EntradaPathEmpty),
16708 "validate must trip EntradaPathEmpty on the second entry of \
16709 a two-entry cohort — routing through the lifted paths() \
16710 accessor must not silently short-circuit the loop at the \
16711 valid head entry",
16712 );
16713
16714 let mut dup = base;
16715 dup.entrada.as_mut().unwrap().paths = vec!["/api/cart".into(), "/api/cart".into()];
16716 assert_eq!(
16717 dup.validate(),
16718 Err(crate::AplicacaoError::EntradaPathDuplicate {
16719 path: "/api/cart".into(),
16720 }),
16721 "validate must trip EntradaPathDuplicate on the second entry \
16722 of a two-entry cohort that shares a path — routing through \
16723 the lifted paths() accessor must not silently short-circuit \
16724 the dedup HashSet insert at the first entry",
16725 );
16726 }
16727
16728 // ── Entrada::hostname / Entrada::hostnames — the substrate-
16729 // canonical per-`:entrada` DNS-hostname resolver pair every
16730 // Gateway-API-aware renderer reaching for a per-listener
16731 // singular `hostname:` filter (Gateway) or a per-route plural
16732 // `spec.hostnames[]` filter list (HTTPRoute) routes through.
16733 // The three pin tests below fix the two-way accept-set the pair
16734 // must always honor: (:singular-byte-equal-to-host,
16735 // :plural-is-singleton-of-singular, :plural-len-is-one) — drift
16736 // on any arm surfaces at caixa-core build time rather than at
16737 // cluster-apply time when the API server refuses the HTTPRoute
16738 // for non-intersecting hostname filters. Peer discipline with
16739 // the sibling `resolved_paths` accept-set pin block above on the
16740 // per-`:entrada` path-list resolver axis.
16741
16742 fn entrada_with_host(host: &str) -> Entrada {
16743 Entrada {
16744 host: host.into(),
16745 para: "cart".into(),
16746 paths: Vec::new(),
16747 port: DEFAULT_SERVICO_PORT,
16748 }
16749 }
16750
16751 #[test]
16752 fn hostname_returns_entrada_host_byte_equal() {
16753 // The canonical singular-axis pin: [`Entrada::hostname`] must
16754 // return the `:entrada :host` field byte-for-byte, borrowed
16755 // from the typed slot's own [`String`] storage. Pins against a
16756 // future silent detour that re-normalized the host (an
16757 // accidental `.to_lowercase()` — validate_entrada_host already
16758 // enforces lowercase, so any re-normalization is redundant + a
16759 // drift surface between the validator and the accessor), a
16760 // trailing-`.` fully-qualified DNS shape substitution, or a
16761 // Punycode round-trip that lowered a Unicode host through IDNA.
16762 let e = entrada_with_host("checkout.quero.cloud");
16763 assert_eq!(
16764 e.hostname(),
16765 "checkout.quero.cloud",
16766 "Entrada::hostname must return :entrada :host verbatim \
16767 (got {:?})",
16768 e.hostname(),
16769 );
16770 assert_eq!(
16771 e.hostname(),
16772 e.host.as_str(),
16773 "Entrada::hostname must byte-equal the .host field access",
16774 );
16775 }
16776
16777 #[test]
16778 fn hostnames_returns_singleton_of_hostname_accessor() {
16779 // The pair-invariant pin: [`Entrada::hostnames`] must always
16780 // return exactly `vec![hostname()]` — the singleton list whose
16781 // sole entry is the substrate's canonical per-`:entrada`
16782 // singular hostname. Pins the two-consumer coherence axis: the
16783 // Gateway listener's singular `hostname:` filter and the
16784 // HTTPRoute's plural `spec.hostnames[]` filter list must
16785 // agree, else the Gateway API v1.x conformance layer rejects
16786 // the HTTPRoute at attach time with
16787 // `Accepted:False/NoMatchingParent` (the parent Gateway's
16788 // listener hostname doesn't intersect the route's hostname
16789 // filter list) — a divergence whose apply-time symptom is far
16790 // from any single-site commit and never surfaces in the
16791 // emitted YAML. Pinning the pair-invariant here makes any
16792 // future accidental split (an accidental `.to_string() + "."`
16793 // trailing-`.` on the plural side that didn't land on the
16794 // singular side, an accidental prefix stripping on one axis,
16795 // an accidental wildcard prepend the SNI fan-out overlay
16796 // authors on the plural side without a paired singular
16797 // migration) trip at caixa-core build time.
16798 let e = entrada_with_host("checkout.quero.cloud");
16799 assert_eq!(
16800 e.hostnames(),
16801 vec![e.hostname()],
16802 "Entrada::hostnames must return `vec![hostname()]` under \
16803 the pair-invariant — got {:?} vs. singleton {:?}",
16804 e.hostnames(),
16805 vec![e.hostname()],
16806 );
16807 }
16808
16809 #[test]
16810 fn hostnames_is_singleton_under_single_host_author_surface() {
16811 // The singleton-shape pin: under today's single-hostname-per-
16812 // `:entrada` author surface (the `:host` slot is a single
16813 // [`String`], not a `Vec<String>`), [`Entrada::hostnames`]
16814 // must always return a list of length exactly one. Pins
16815 // against a future silent detour that returned an empty list
16816 // (which would emit an HTTPRoute with `spec.hostnames: []` —
16817 // matching every incoming Host header regardless of the
16818 // Aplicacao's declared ingress apex, silently over-matching
16819 // every foreign VirtualHost the parent Gateway also fronts) or
16820 // a duplicated entry (which the Gateway API v1.x parser
16821 // accepts as a `[]-length-2 list of equal hostnames]` but
16822 // whose semantics differ from the intended singleton). The
16823 // author-surface extension point ("a future `:entrada
16824 // :alt-hosts` list overlay" the docstring names) is the sole
16825 // future axis that flips this pin — that migration will re-
16826 // author this test to pin the new plural cardinality.
16827 let e = entrada_with_host("checkout.quero.cloud");
16828 assert_eq!(
16829 e.hostnames().len(),
16830 1,
16831 "Entrada::hostnames must be a singleton under today's \
16832 single-hostname-per-`:entrada` author surface — got \
16833 length {}: {:?}",
16834 e.hostnames().len(),
16835 e.hostnames(),
16836 );
16837 }
16838
16839 // ── Entrada::destination — the substrate-canonical per-`:entrada`
16840 // destination-Servico scalar accessor every Gateway-API
16841 // HTTPRoute-aware renderer reaching for a per-CR `metadata.name`
16842 // discriminator arg (HTTPRoute name composer) or a per-rule
16843 // `backendRefs[0].name` axis routes through. The two pin tests
16844 // below fix (:byte-equal-to-para, :borrow-not-copy) — drift on
16845 // either arm surfaces at caixa-core build time rather than at
16846 // cluster-apply time when an HTTPRoute's `metadata.name` and
16847 // `backendRefs[]` silently disagree on which destination Servico
16848 // the ingress fronts. Peer discipline with the sibling
16849 // `resolved_paths` + `hostname` + `hostnames` accept-set pin
16850 // blocks above on the per-`:entrada` path-list / DNS-hostname
16851 // resolver axes.
16852
16853 #[test]
16854 fn destination_returns_entrada_para_byte_equal() {
16855 // The canonical destination-scalar pin: [`Entrada::destination`]
16856 // must return the `:entrada :para` field byte-for-byte, borrowed
16857 // from the typed slot's own [`String`] storage. Pins against a
16858 // future silent detour that re-normalized the destination (an
16859 // accidental `.to_lowercase()` — the destination Servico is
16860 // already validated as a DNS-1123 label upstream, so any
16861 // re-normalization is redundant + a drift surface between the
16862 // validator and the accessor), a namespace-prefix rewrite (an
16863 // accidental `format!("{namespace}/{para}")` per-CR fully-
16864 // qualified rewrite that didn't land on the peer axis), or a
16865 // per-cluster suffix stamp the operator authors on one
16866 // consumer without the other.
16867 for para in ["cart", "checkout", "catalog", "orders-v2"] {
16868 let e = Entrada {
16869 host: "checkout.quero.cloud".into(),
16870 para: para.into(),
16871 paths: Vec::new(),
16872 port: DEFAULT_SERVICO_PORT,
16873 };
16874 assert_eq!(
16875 e.destination(),
16876 para,
16877 "Entrada::destination must return :entrada :para verbatim \
16878 (got {:?}, expected {para:?})",
16879 e.destination(),
16880 );
16881 assert_eq!(
16882 e.destination(),
16883 e.para.as_str(),
16884 "Entrada::destination must byte-equal the .para field access",
16885 );
16886 }
16887 }
16888
16889 #[test]
16890 fn destination_borrows_from_entrada_para_storage() {
16891 // The borrow-not-copy pin: [`Entrada::destination`] must
16892 // return a `&str` slice that borrows from the typed slot's
16893 // own [`String`] storage — same-address invariant with
16894 // `entrada.para.as_str()`. Pins against a future silent detour
16895 // that allocated a fresh `String` (`self.para.clone()` in the
16896 // body would type-check but silently drop the borrow, and
16897 // every downstream consumer that assumed the returned slice
16898 // outlives `&self` would break on a stale-reference use-after-
16899 // free). Peer with the sibling `hostname_returns_entrada_
16900 // host_byte_equal` on the singular-DNS-hostname axis.
16901 let e = entrada_with_host("checkout.quero.cloud");
16902 let dest = e.destination();
16903 let para_slice = e.para.as_str();
16904 assert_eq!(
16905 dest.as_ptr(),
16906 para_slice.as_ptr(),
16907 "Entrada::destination must borrow from the .para String's \
16908 backing storage — a fresh allocation here means the \
16909 accessor no longer names the substrate-primitive typed \
16910 dispatch and every downstream consumer would silently \
16911 carry a detached copy",
16912 );
16913 assert_eq!(
16914 dest.len(),
16915 para_slice.len(),
16916 "Entrada::destination and .para.as_str() must byte-equal in \
16917 length as well as in address",
16918 );
16919 }
16920
16921 #[test]
16922 fn port_returns_entrada_port_verbatim_across_permutations() {
16923 // The canonical L4-port-scalar pin: [`Entrada::port`] must
16924 // return the `:entrada :port` field verbatim as a `u16` across
16925 // every author-declared value in the validated accept-set
16926 // ([`SERVICO_PORT_MIN`]`..=u16::MAX`). Pins against a future
16927 // silent detour that clamped the port (an accidental
16928 // `.min(HTTPS_STANDARD_PORT)` per-cluster ceiling that didn't
16929 // land on the peer [`AplicacaoSpec::port_for_destination`]
16930 // resolver), rewrote it through a per-cluster port-remap table
16931 // the operator authors on one consumer without the other, or
16932 // substituted [`DEFAULT_SERVICO_PORT`] when the field held its
16933 // serde-default value (which would silently collapse the
16934 // distinction between "author explicitly declared `:port 8080`"
16935 // and "author omitted the slot and inherited the default" the
16936 // future per-cluster override slot depends on). Peer with the
16937 // sibling `destination_returns_entrada_para_byte_equal` +
16938 // `hostname_returns_entrada_host_byte_equal` pins on the
16939 // per-`:entrada` `&str` scalar axes.
16940 for port in [
16941 SERVICO_PORT_MIN,
16942 DEFAULT_SERVICO_PORT,
16943 8443u16,
16944 9090u16,
16945 u16::MAX,
16946 ] {
16947 let e = Entrada {
16948 host: "checkout.quero.cloud".into(),
16949 para: "cart".into(),
16950 paths: Vec::new(),
16951 port,
16952 };
16953 assert_eq!(
16954 e.port(),
16955 port,
16956 "Entrada::port must return :entrada :port verbatim \
16957 (got {}, expected {port})",
16958 e.port(),
16959 );
16960 assert_eq!(
16961 e.port(),
16962 e.port,
16963 "Entrada::port accessor and .port field access must \
16964 byte-equal — the accessor is the substrate-primitive \
16965 typed dispatch every downstream L4-port consumer must \
16966 route through",
16967 );
16968 }
16969 }
16970
16971 #[test]
16972 fn validate_entrada_port_floor_gate_reads_through_lifted_port_accessor() {
16973 // Two-consumer coherence pin: the
16974 // [`AplicacaoSpec::validate`] entrada-block structural-floor gate
16975 // (which reads through [`Entrada::port`] to compare against
16976 // [`SERVICO_PORT_MIN`]) and the
16977 // [`AplicacaoSpec::port_for_destination`] resolver (which reads
16978 // through [`Entrada::port`] to emit the per-destination
16979 // `HTTPRoute.backendRefs[0].port` scalar) must both key off the
16980 // lifted accessor, so any future rebrand on the typed slot's
16981 // reader shape lands at exactly one place. Pins the two-site
16982 // coherence by exercising a below-floor port through validate
16983 // (which must reject) and a validated in-accept-set port through
16984 // port_for_destination (which must emit the same value the
16985 // accessor returns).
16986 let mut spec = three_member_spec();
16987 if let Some(e) = spec.entrada.as_mut() {
16988 e.port = 0;
16989 }
16990 assert_eq!(
16991 spec.validate().unwrap_err(),
16992 AplicacaoError::EntradaPortZero,
16993 "validate must reject `:entrada :port 0` through the lifted \
16994 Entrada::port accessor — port zero lies below \
16995 SERVICO_PORT_MIN and the validator routes through port() \
16996 to name the floor",
16997 );
16998
16999 for port in [SERVICO_PORT_MIN, DEFAULT_SERVICO_PORT, 8443u16] {
17000 let mut spec = three_member_spec();
17001 if let Some(e) = spec.entrada.as_mut() {
17002 e.port = port;
17003 }
17004 spec.validate().expect(
17005 "entrada with in-accept-set :port must validate — the \
17006 structural-floor gate reads through Entrada::port",
17007 );
17008 let entrada_ref = spec.entrada.as_ref().expect(":entrada present");
17009 assert_eq!(
17010 spec.port_for_destination(entrada_ref.destination()),
17011 entrada_ref.port(),
17012 "port_for_destination(entrada.destination()) must equal \
17013 entrada.port() — the two consumers of the per-:entrada \
17014 L4-port axis (validator, per-destination resolver) both \
17015 route through Entrada::port",
17016 );
17017 }
17018 }
17019
17020 #[test]
17021 fn wit_contract_source_returns_de_byte_equal_across_permutations() {
17022 // The canonical caller-Servico-scalar pin: [`WitContract::source`]
17023 // must return the `:contratos :de` field byte-for-byte, borrowed
17024 // from the typed slot's own [`String`] storage. Peer of the
17025 // sibling `destination_returns_entrada_para_byte_equal` pin on
17026 // the per-`:entrada` axis — same "the substrate-primitive
17027 // accessor must byte-equal the raw field access verbatim across
17028 // every author-declared value" discipline extended to the
17029 // per-`:contratos` caller arm. Pins against a future silent
17030 // detour that re-normalized the caller (an accidental
17031 // `.to_lowercase()` — every `:contratos :de` is validated as a
17032 // DNS-1123 label upstream via `validate_contrato_caixa`, so any
17033 // re-normalization is redundant + a drift surface between the
17034 // validator and the accessor), a namespace-prefix rewrite (an
17035 // accidental `format!("{namespace}/{de}")` per-CR fully-qualified
17036 // rewrite that didn't land on the peer axis), or a per-cluster
17037 // suffix stamp the operator authors on one consumer without the
17038 // other.
17039 for de in ["cart", "checkout", "catalog", "orders-v2"] {
17040 let c = WitContract {
17041 de: de.into(),
17042 para: "downstream".into(),
17043 wit: "wasi:http/proxy".into(),
17044 endpoint: Some("/lookup".into()),
17045 subject: None,
17046 slot: None,
17047 };
17048 assert_eq!(
17049 c.source(),
17050 de,
17051 "WitContract::source must return :contratos :de verbatim \
17052 (got {:?}, expected {de:?})",
17053 c.source(),
17054 );
17055 assert_eq!(
17056 c.source(),
17057 c.de.as_str(),
17058 "WitContract::source must byte-equal the .de field access",
17059 );
17060 }
17061 }
17062
17063 #[test]
17064 fn wit_contract_source_borrows_from_de_storage() {
17065 // The borrow-not-copy pin: [`WitContract::source`] must return a
17066 // `&str` slice that borrows from the typed slot's own [`String`]
17067 // storage — same-address invariant with `c.de.as_str()`. Pins
17068 // against a future silent detour that allocated a fresh `String`
17069 // (`self.de.clone()` in the body would type-check but silently
17070 // drop the borrow, and every downstream consumer that assumed
17071 // the returned slice outlives `&self` would break on a stale-
17072 // reference use-after-free). Peer of the sibling
17073 // `destination_borrows_from_entrada_para_storage` on the
17074 // per-`:entrada` axis.
17075 let c = WitContract {
17076 de: "cart".into(),
17077 para: "catalog".into(),
17078 wit: "wasi:http/proxy".into(),
17079 endpoint: Some("/lookup".into()),
17080 subject: None,
17081 slot: None,
17082 };
17083 let src = c.source();
17084 let de_slice = c.de.as_str();
17085 assert_eq!(
17086 src.as_ptr(),
17087 de_slice.as_ptr(),
17088 "WitContract::source must borrow from the .de String's \
17089 backing storage — a fresh allocation here means the \
17090 accessor no longer names the substrate-primitive typed \
17091 dispatch and every downstream consumer would silently \
17092 carry a detached copy",
17093 );
17094 assert_eq!(
17095 src.len(),
17096 de_slice.len(),
17097 "WitContract::source and .de.as_str() must byte-equal in \
17098 length as well as in address",
17099 );
17100 }
17101
17102 #[test]
17103 fn wit_contract_destination_returns_para_byte_equal_across_permutations() {
17104 // The canonical callee-Servico-scalar pin: [`WitContract::destination`]
17105 // must return the `:contratos :para` field byte-for-byte,
17106 // borrowed from the typed slot's own [`String`] storage. Peer of
17107 // the sibling `destination_returns_entrada_para_byte_equal` on
17108 // the per-`:entrada` axis — both accessors name "the destination-
17109 // Servico byte-string" concept on their respective mesh-slot
17110 // atoms (per-ingress apex vs. per-typed-edge callee) and both
17111 // must project the underlying `.para` field verbatim so every
17112 // downstream renderer that composes them with peer accessors
17113 // (e.g. `spec.port_for_destination(c.destination())` at the CNP
17114 // per-edge L4 port emit site) reads the same byte-string the
17115 // author declared.
17116 for para in ["catalog", "payment", "orders", "inventory-v3"] {
17117 let c = WitContract {
17118 de: "cart".into(),
17119 para: para.into(),
17120 wit: "wasi:http/proxy".into(),
17121 endpoint: Some("/lookup".into()),
17122 subject: None,
17123 slot: None,
17124 };
17125 assert_eq!(
17126 c.destination(),
17127 para,
17128 "WitContract::destination must return :contratos :para \
17129 verbatim (got {:?}, expected {para:?})",
17130 c.destination(),
17131 );
17132 assert_eq!(
17133 c.destination(),
17134 c.para.as_str(),
17135 "WitContract::destination must byte-equal the .para \
17136 field access",
17137 );
17138 }
17139 }
17140
17141 #[test]
17142 fn wit_contract_destination_borrows_from_para_storage() {
17143 // The borrow-not-copy pin: [`WitContract::destination`] must
17144 // return a `&str` slice that borrows from the typed slot's own
17145 // [`String`] storage — same-address invariant with
17146 // `c.para.as_str()`. Peer of the sibling
17147 // `destination_borrows_from_entrada_para_storage` on the
17148 // per-`:entrada` axis.
17149 let c = WitContract {
17150 de: "cart".into(),
17151 para: "catalog".into(),
17152 wit: "wasi:http/proxy".into(),
17153 endpoint: Some("/lookup".into()),
17154 subject: None,
17155 slot: None,
17156 };
17157 let dest = c.destination();
17158 let para_slice = c.para.as_str();
17159 assert_eq!(
17160 dest.as_ptr(),
17161 para_slice.as_ptr(),
17162 "WitContract::destination must borrow from the .para \
17163 String's backing storage — a fresh allocation here means \
17164 the accessor no longer names the substrate-primitive typed \
17165 dispatch and every downstream consumer would silently \
17166 carry a detached copy",
17167 );
17168 assert_eq!(
17169 dest.len(),
17170 para_slice.len(),
17171 "WitContract::destination and .para.as_str() must byte-equal \
17172 in length as well as in address",
17173 );
17174 }
17175
17176 #[test]
17177 fn wit_contract_world_ref_returns_wit_byte_equal_across_permutations() {
17178 // The canonical per-`:contratos` WIT-world-reference scalar pin:
17179 // [`WitContract::world_ref`] must return the `:contratos :wit`
17180 // field byte-for-byte, borrowed from the typed slot's own
17181 // [`String`] storage. Sibling of the peer per-`:contratos`
17182 // [`WitContract::source`] / [`WitContract::destination`]
17183 // (7f0fd43), per-`:entrada` [`Entrada::hostname`] /
17184 // [`Entrada::destination`] (11f3dfe / 6db982c), per-`:membros`
17185 // [`Membro::nome`] / [`Membro::versao_requirement`] (4a32abf /
17186 // a40b0e3) pins on the mesh-slot-atom scalar-value axes — same
17187 // "the substrate-primitive accessor must byte-equal the raw
17188 // field access verbatim across every author-declared value"
17189 // discipline extended to the per-`:contratos` WIT-world arm.
17190 // Pins against a future silent detour that re-canonicalized the
17191 // WIT world reference (an accidental `.to_lowercase()` pass that
17192 // collapsed `WASI:HTTP/proxy` — every `:contratos :wit` past
17193 // [`WitContract::target`]'s [`crate::render::is_wit_world_ref`]
17194 // gate is already lowercase-prefixed so any re-normalization is
17195 // redundant + a drift surface between the validator and the
17196 // accessor), an M4-promotion-shape rewrite that formatted a
17197 // typed WIT-world enum through [`Display`] and silently drifted
17198 // the printer output from the source `caixa.lisp`, or a per-
17199 // cluster WIT-alias rewrite that didn't land on the peer field-
17200 // access sites. Five values sweep the shape-dispatch accept-set
17201 // the peer [`wit_shape_matches`] combinator admits (HTTP `wasi:`
17202 // / HTTP `http:` / PubSub `nats:` / PubSub `kafka:` / Store
17203 // `wasi:keyvalue/`).
17204 for (wit, endpoint, subject, slot) in [
17205 ("wasi:http/proxy", Some("/lookup"), None, None),
17206 ("http:proxy", Some("/health"), None, None),
17207 ("nats:pub-sub", None, Some("orders.paid"), None),
17208 ("kafka:events", None, Some("checkout-events"), None),
17209 ("wasi:keyvalue/store", None, None, Some("carts/{cart_id}")),
17210 ] {
17211 let c = WitContract {
17212 de: "cart".into(),
17213 para: "downstream".into(),
17214 wit: wit.into(),
17215 endpoint: endpoint.map(str::to_string),
17216 subject: subject.map(str::to_string),
17217 slot: slot.map(str::to_string),
17218 };
17219 assert_eq!(
17220 c.world_ref(),
17221 wit,
17222 "WitContract::world_ref must return :contratos :wit \
17223 verbatim (got {:?}, expected {wit:?})",
17224 c.world_ref(),
17225 );
17226 assert_eq!(
17227 c.world_ref(),
17228 c.wit.as_str(),
17229 "WitContract::world_ref must byte-equal the .wit field \
17230 access",
17231 );
17232 }
17233 }
17234
17235 #[test]
17236 fn wit_contract_world_ref_borrows_from_wit_storage() {
17237 // The borrow-not-copy pin: [`WitContract::world_ref`] must
17238 // return a `&str` slice that borrows from the typed slot's own
17239 // [`String`] storage — same-address invariant with
17240 // `c.wit.as_str()`. Pins against a future silent detour that
17241 // allocated a fresh `String` (`self.wit.clone()` in the body
17242 // would type-check but silently drop the borrow, and every
17243 // downstream consumer that assumed the returned slice outlives
17244 // `&self` would break on a stale-reference use-after-free — the
17245 // dedup-key `&str`-tuple at [`AplicacaoSpec::validate`]'s
17246 // duplicate-`:contratos` gate, the per-shape `wit_shape_is_*`
17247 // predicates' `&str` arg the peer [`is_http`][WitContract::is_http]
17248 // / [`is_pubsub`][WitContract::is_pubsub] /
17249 // [`is_store`][WitContract::is_store] methods route through —
17250 // each borrow from the WitContract's own storage and each would
17251 // silently misbehave if this accessor produced a detached copy).
17252 // Peer of the sibling per-`:contratos` [`WitContract::source`] /
17253 // [`WitContract::destination`] and per-`:entrada`
17254 // [`Entrada::destination`] / [`Entrada::hostname`] and
17255 // per-`:membros` [`Membro::nome`] / [`Membro::versao_requirement`]
17256 // borrow-invariant pins on the mesh-slot-atom scalar-value axes.
17257 let c = WitContract {
17258 de: "cart".into(),
17259 para: "catalog".into(),
17260 wit: "wasi:http/proxy".into(),
17261 endpoint: Some("/lookup".into()),
17262 subject: None,
17263 slot: None,
17264 };
17265 let world = c.world_ref();
17266 let wit_slice = c.wit.as_str();
17267 assert_eq!(
17268 world.as_ptr(),
17269 wit_slice.as_ptr(),
17270 "WitContract::world_ref must borrow from the .wit String's \
17271 backing storage — a fresh allocation here means the \
17272 accessor no longer names the substrate-primitive typed \
17273 dispatch and every downstream consumer would silently carry \
17274 a detached copy",
17275 );
17276 assert_eq!(
17277 world.len(),
17278 wit_slice.len(),
17279 "WitContract::world_ref and .wit.as_str() must byte-equal in \
17280 length as well as in address",
17281 );
17282 }
17283
17284 #[test]
17285 fn wit_contract_source_destination_world_ref_project_de_para_wit_triple() {
17286 // Sibling-triple invariant pin composing all three per-`:contratos`
17287 // substrate-primitive typed dispatches — [`WitContract::source`]
17288 // (7f0fd43), [`WitContract::destination`] (7f0fd43), and
17289 // [`WitContract::world_ref`] — at the joint
17290 // `(source(), destination(), world_ref())` call shape every
17291 // renderer that fans on per-edge caller-callee-shape identity
17292 // keys off. The invariant, evaluated per-contract:
17293 //
17294 // (c.source(), c.destination(), c.world_ref())
17295 // == (c.de.as_str(), c.para.as_str(), c.wit.as_str())
17296 //
17297 // Closes the last unlifted per-`:contratos` scalar axis — every
17298 // downstream consumer that reads the triple now routes through
17299 // exactly three typed dispatches on the substrate primitive,
17300 // not two typed + one open-coded field access. A future refactor
17301 // that silently split any one accessor's projection (an
17302 // accidental `world_ref()` M4-typed-WIT-enum `Display` re-
17303 // canonicalization that didn't reach the peer `source`/
17304 // `destination` arms, an accidental `source()` per-cluster
17305 // caller-alias rewrite that didn't land on the `world_ref` peer)
17306 // surfaces at caixa-core build time. Peer of the sibling per-
17307 // `:membros` `(nome(), versao_requirement())` (a40b0e3) and
17308 // per-`:entrada` `(hostname(), destination())` (6db982c /
17309 // 11f3dfe) pair invariants on the mesh-slot-atom scalar-value
17310 // axes, extended to the per-`:contratos` triple.
17311 for (de, para, wit, endpoint, subject, slot) in [
17312 (
17313 "cart",
17314 "catalog",
17315 "wasi:http/proxy",
17316 Some("/lookup"),
17317 None,
17318 None,
17319 ),
17320 (
17321 "checkout",
17322 "orders",
17323 "nats:pub-sub",
17324 None,
17325 Some("orders.paid"),
17326 None,
17327 ),
17328 (
17329 "cart",
17330 "kv",
17331 "wasi:keyvalue/store",
17332 None,
17333 None,
17334 Some("carts/{cart_id}"),
17335 ),
17336 (
17337 "orders-v2",
17338 "inventory-v3",
17339 "http:proxy",
17340 Some("/reserve"),
17341 None,
17342 None,
17343 ),
17344 ] {
17345 let c = WitContract {
17346 de: de.into(),
17347 para: para.into(),
17348 wit: wit.into(),
17349 endpoint: endpoint.map(str::to_string),
17350 subject: subject.map(str::to_string),
17351 slot: slot.map(str::to_string),
17352 };
17353 assert_eq!(
17354 (c.source(), c.destination(), c.world_ref()),
17355 (c.de.as_str(), c.para.as_str(), c.wit.as_str()),
17356 "(WitContract::source, ::destination, ::world_ref) must \
17357 project (.de, .para, .wit) verbatim across every author-\
17358 declared triple (got ({:?}, {:?}, {:?}), expected \
17359 ({de:?}, {para:?}, {wit:?}))",
17360 c.source(),
17361 c.destination(),
17362 c.world_ref(),
17363 );
17364 }
17365 }
17366
17367 #[test]
17368 fn wit_contract_edge_pair_returns_source_destination_owned_pair_across_permutations() {
17369 // The canonical per-`:contratos` owned-form caller-callee-pair
17370 // pin: [`WitContract::edge_pair`] must return the
17371 // `(source(), destination())` tuple in owned form byte-for-byte,
17372 // projected through the lifted [`WitContract::source`] /
17373 // [`WitContract::destination`] scalar accessors. Pins the
17374 // composite-projection invariant on the per-`:contratos`
17375 // mesh-slot atom — every author-declared `(de, para)` pair must
17376 // round-trip verbatim through the substrate primitive's typed
17377 // dispatch, so the nine [`AplicacaoError`] diagnostic-
17378 // construction sites the accessor now feeds
17379 // ([`AplicacaoError::EmptyWit`],
17380 // [`AplicacaoError::ContratoEndpointEmpty`],
17381 // [`AplicacaoError::ContratoEndpointNotAbsolute`],
17382 // [`AplicacaoError::ContratoEndpointInvalid`],
17383 // [`AplicacaoError::ContratoSubjectEmpty`],
17384 // [`AplicacaoError::ContratoSubjectInvalid`],
17385 // [`AplicacaoError::ContratoSlotEmpty`],
17386 // [`AplicacaoError::ContratoSlotInvalid`],
17387 // [`AplicacaoError::ContratoDuplicate`]) all read the same
17388 // `(de, para)` label pair every author sees at the source
17389 // `caixa.lisp`. Pins against a future silent detour that swapped
17390 // the `.0` / `.1` arms (an accidental `(destination(),
17391 // source())` re-order in the body would silently invert every
17392 // downstream diagnostic's `de:` / `para:` label pair, silently
17393 // reversing the direction of every operator-facing typed error
17394 // arrow), a fresh-allocation shape drift (an accidental
17395 // `.to_string()` on one arm but not the other would leave the
17396 // owned/borrowed pair mismatched vs. the sibling `source()` /
17397 // `destination()` returns), or an M4 per-cluster caller/callee-
17398 // alias rewrite that landed on `source()` without reaching
17399 // `destination()` (or vice versa). Peer of the sibling per-
17400 // `:contratos` `(source, destination, world_ref)` triple
17401 // pin above on the mesh-slot-atom scalar-value axes, extended
17402 // to the owned-form pair-projection axis.
17403 for (de, para, wit, endpoint, subject, slot) in [
17404 (
17405 "cart",
17406 "catalog",
17407 "wasi:http/proxy",
17408 Some("/lookup"),
17409 None,
17410 None,
17411 ),
17412 (
17413 "checkout",
17414 "orders",
17415 "nats:pub-sub",
17416 None,
17417 Some("orders.paid"),
17418 None,
17419 ),
17420 (
17421 "cart",
17422 "kv",
17423 "wasi:keyvalue/store",
17424 None,
17425 None,
17426 Some("carts/{cart_id}"),
17427 ),
17428 (
17429 "orders-v2",
17430 "inventory-v3",
17431 "http:proxy",
17432 Some("/reserve"),
17433 None,
17434 None,
17435 ),
17436 ] {
17437 let c = WitContract {
17438 de: de.into(),
17439 para: para.into(),
17440 wit: wit.into(),
17441 endpoint: endpoint.map(str::to_string),
17442 subject: subject.map(str::to_string),
17443 slot: slot.map(str::to_string),
17444 };
17445 assert_eq!(
17446 c.edge_pair(),
17447 (de.to_string(), para.to_string()),
17448 "WitContract::edge_pair must return (:contratos :de, \
17449 :contratos :para) as an owned tuple verbatim (got {:?}, \
17450 expected ({de:?}, {para:?}))",
17451 c.edge_pair(),
17452 );
17453 }
17454 }
17455
17456 #[test]
17457 fn wit_contract_edge_pair_routes_through_source_destination_accessors() {
17458 // The composition pin: [`WitContract::edge_pair`] must return
17459 // exactly `(source().to_string(), destination().to_string())` —
17460 // the owned form of the sibling accessor pair — so any future
17461 // refactor that silently re-authored the caller-arm / callee-arm
17462 // projection to bypass the lifted scalar accessors (an accidental
17463 // `(self.de.clone(), self.para.clone())` regression back to the
17464 // raw field-access shape, an M4-typed-caller-enum `Display`
17465 // re-canonicalization on `source()` that didn't reach
17466 // `edge_pair()`, a per-cluster alias rewrite the operator lands
17467 // on `destination()` without reaching this composite projection)
17468 // trips at caixa-core build time. Pins the "typed dispatch
17469 // composes with typed dispatch, not with raw field access"
17470 // discipline every downstream diagnostic-construction site now
17471 // routes through — a `de:` / `para:` label pair whose
17472 // projection silently drifted off the substrate primitive's
17473 // scalar accessors would silently split the diagnostic's self-
17474 // locating signal from the source `caixa.lisp` author's view.
17475 // Peer of the sibling per-`:politicas` `is_empty` /
17476 // `validate_politicas` accessor-routing-pin family on the M3
17477 // mesh-slot family (18575, 18739, 18918, 19140, 19371).
17478 let c = WitContract {
17479 de: "cart".into(),
17480 para: "catalog".into(),
17481 wit: "wasi:http/proxy".into(),
17482 endpoint: Some("/lookup".into()),
17483 subject: None,
17484 slot: None,
17485 };
17486 assert_eq!(
17487 c.edge_pair(),
17488 (c.source().to_string(), c.destination().to_string()),
17489 "WitContract::edge_pair must compose exactly \
17490 (source().to_string(), destination().to_string()) — a \
17491 bypass of either sibling accessor here would silently \
17492 decouple the composite-projection axis from the \
17493 substrate-primitive scalar accessors every downstream \
17494 consumer routes through",
17495 );
17496 }
17497
17498 #[test]
17499 fn wit_contract_edge_triple_returns_source_destination_world_ref_owned_triple_across_permutations()
17500 {
17501 // The canonical per-`:contratos` owned-form
17502 // caller-callee-world-ref-triple pin:
17503 // [`WitContract::edge_triple`] must return the
17504 // `(source(), destination(), world_ref())` tuple in owned form
17505 // byte-for-byte, projected through the lifted
17506 // [`WitContract::source`] / [`WitContract::destination`] /
17507 // [`WitContract::world_ref`] scalar accessors. Pins the
17508 // composite-projection invariant on the per-`:contratos`
17509 // mesh-slot atom — every author-declared `(de, para, wit)`
17510 // triple must round-trip verbatim through the substrate
17511 // primitive's typed dispatch, so the nine
17512 // [`AplicacaoError`] diagnostic-construction sites the
17513 // accessor now feeds (the [`WitTarget`]-dispatch's eight
17514 // wrong-target / missing-target / invalid-wit / capability-
17515 // with-payload arms in [`WitContract::target`], plus the
17516 // paired duplicate-gate [`AplicacaoError::ContratoDuplicate`]
17517 // diagnostic constructor in [`AplicacaoSpec::validate`]) all
17518 // read the same `(de, para, wit)` triple every author sees at
17519 // the source `caixa.lisp`. Pins against a future silent
17520 // detour that swapped any two arms (an accidental `(destination(),
17521 // source(), world_ref())` re-order in the body would silently
17522 // invert every downstream diagnostic's `de:` / `para:` label
17523 // pair, silently reversing the direction of every operator-
17524 // facing typed error arrow), a fresh-allocation shape drift
17525 // (an accidental `.to_string()` skipped on one arm would leave
17526 // the owned/borrowed triple mismatched vs. the sibling
17527 // `source()` / `destination()` / `world_ref()` returns), or an
17528 // M4 per-cluster caller/callee-alias rewrite / per-CR world-ref
17529 // canonicalization pass that landed on one accessor without
17530 // reaching the peers. Peer of the sibling per-`:contratos`
17531 // caller-callee-pair
17532 // [`tests::wit_contract_edge_pair_returns_source_destination_owned_pair_across_permutations`]
17533 // pin on the mesh-slot-atom composite-projection axis,
17534 // extended to the triple-projection axis.
17535 for (de, para, wit, endpoint, subject, slot) in [
17536 (
17537 "cart",
17538 "catalog",
17539 "wasi:http/proxy",
17540 Some("/lookup"),
17541 None,
17542 None,
17543 ),
17544 (
17545 "checkout",
17546 "orders",
17547 "nats:pub-sub",
17548 None,
17549 Some("orders.paid"),
17550 None,
17551 ),
17552 (
17553 "cart",
17554 "kv",
17555 "wasi:keyvalue/store",
17556 None,
17557 None,
17558 Some("carts/{cart_id}"),
17559 ),
17560 (
17561 "orders-v2",
17562 "inventory-v3",
17563 "http:proxy",
17564 Some("/reserve"),
17565 None,
17566 None,
17567 ),
17568 ] {
17569 let c = WitContract {
17570 de: de.into(),
17571 para: para.into(),
17572 wit: wit.into(),
17573 endpoint: endpoint.map(str::to_string),
17574 subject: subject.map(str::to_string),
17575 slot: slot.map(str::to_string),
17576 };
17577 assert_eq!(
17578 c.edge_triple(),
17579 (de.to_string(), para.to_string(), wit.to_string()),
17580 "WitContract::edge_triple must return (:contratos :de, \
17581 :contratos :para, :contratos :wit) as an owned triple \
17582 verbatim (got {:?}, expected ({de:?}, {para:?}, {wit:?}))",
17583 c.edge_triple(),
17584 );
17585 }
17586 }
17587
17588 #[test]
17589 fn wit_contract_edge_triple_routes_through_source_destination_world_ref_accessors() {
17590 // The composition pin: [`WitContract::edge_triple`] must return
17591 // exactly `(source().to_string(), destination().to_string(),
17592 // world_ref().to_string())` — the owned form of the sibling
17593 // scalar-accessor triple — so any future refactor that silently
17594 // re-authored one arm's projection to bypass the lifted scalar
17595 // accessors (an accidental `(self.de.clone(), self.para.clone(),
17596 // self.wit.clone())` regression back to the raw field-access
17597 // shape the internal `edge` closure and the ContratoDuplicate
17598 // diagnostic both carried before this lift landed, an
17599 // M4-typed-caller-enum `Display` re-canonicalization on
17600 // `source()` that didn't reach `edge_triple()`, a per-cluster
17601 // alias rewrite the operator lands on `destination()` /
17602 // `world_ref()` without reaching this composite projection)
17603 // trips at caixa-core build time. Pins the "typed dispatch
17604 // composes with typed dispatch, not with raw field access"
17605 // discipline every downstream diagnostic-construction site now
17606 // routes through — a `de:` / `para:` / `wit:` triple whose
17607 // projection silently drifted off the substrate primitive's
17608 // scalar accessors would silently split the diagnostic's self-
17609 // locating signal from the source `caixa.lisp` author's view.
17610 // Peer of the sibling per-`:contratos` edge_pair composition-
17611 // pin above on the mesh-slot-atom composite-projection axis.
17612 let c = WitContract {
17613 de: "cart".into(),
17614 para: "catalog".into(),
17615 wit: "wasi:http/proxy".into(),
17616 endpoint: Some("/lookup".into()),
17617 subject: None,
17618 slot: None,
17619 };
17620 assert_eq!(
17621 c.edge_triple(),
17622 (
17623 c.source().to_string(),
17624 c.destination().to_string(),
17625 c.world_ref().to_string(),
17626 ),
17627 "WitContract::edge_triple must compose exactly \
17628 (source().to_string(), destination().to_string(), \
17629 world_ref().to_string()) — a bypass of any sibling accessor \
17630 here would silently decouple the composite-projection axis \
17631 from the substrate-primitive scalar accessors every \
17632 downstream consumer routes through",
17633 );
17634 }
17635
17636 #[test]
17637 fn wit_contract_edge_triple_projects_full_typed_edge_identity_owned_triple() {
17638 // The canonical semantics-pin: [`WitContract::edge_triple`] must
17639 // project the full `(de, para, wit)` identity of a `:contratos`
17640 // edge — the sub-triple every triple-carrying
17641 // [`AplicacaoError::Contrato*`] diagnostic weaves into its
17642 // author-facing `de:` / `para:` / `wit:` fields (wrong-target,
17643 // missing-target, capability-with-payload, invalid-wit, and the
17644 // duplicate-gate). Rejects a drift in shape (an accidental
17645 // silent detour that returned a `(de, para)` pair or added an
17646 // extra field to the tuple, e.g. `(de, para, wit, endpoint)`,
17647 // would trip here because the return type would no longer
17648 // pattern-match the eight `let (de, para, wit) = edge();`
17649 // destructures the [`WitContract::target`] dispatch feeds off
17650 // + the paired duplicate-gate `let (de, para, wit) =
17651 // c.edge_triple();` destructure in
17652 // [`AplicacaoSpec::validate`]). Peer of the sibling per-
17653 // `:contratos` caller-callee-pair pin above extended to the
17654 // triple projection surface: closes the "one composite
17655 // accessor per typed diagnostic-construction sub-tuple"
17656 // discipline on the per-`:contratos` mesh-slot-atom axis.
17657 let c = WitContract {
17658 de: "checkout".into(),
17659 para: "orders".into(),
17660 wit: "nats:pub-sub".into(),
17661 endpoint: None,
17662 subject: Some("orders.paid".into()),
17663 slot: None,
17664 };
17665 let (de, para, wit) = c.edge_triple();
17666 assert_eq!(de, "checkout");
17667 assert_eq!(para, "orders");
17668 assert_eq!(wit, "nats:pub-sub");
17669 }
17670
17671 #[test]
17672 fn wit_contract_is_self_loop_returns_true_on_matching_endpoints_across_permutations() {
17673 // The canonical per-`:contratos` structural-self-edge pin:
17674 // [`WitContract::is_self_loop`] must return `true` when the
17675 // `:de` and `:para` fields agree byte-for-byte, across every
17676 // WIT-shape variant the per-edge shape family carries. Pins
17677 // the shape-agnostic identity-space partition the
17678 // [`AplicacaoSpec::validate`] self-edge gate at
17679 // caixa-core/src/aplicacao.rs:5559 fires against — all four
17680 // [`WitTarget`] arms (HTTP / PubSub / Store / Capability) fall
17681 // under the same one predicate. Four permutations sweep the
17682 // accept-set: HTTP with endpoint, pub-sub with subject, KV
17683 // store with slot, and payload-less capability.
17684 for (nome, wit, endpoint, subject, slot) in [
17685 ("cart", "wasi:http/proxy", Some("/lookup"), None, None),
17686 ("checkout", "nats:pub-sub", None, Some("orders.paid"), None),
17687 (
17688 "kv",
17689 "wasi:keyvalue/store",
17690 None,
17691 None,
17692 Some("carts/{cart_id}"),
17693 ),
17694 ("audit", "wasi:logging", None, None, None),
17695 ] {
17696 let c = WitContract {
17697 de: nome.into(),
17698 para: nome.into(),
17699 wit: wit.into(),
17700 endpoint: endpoint.map(str::to_string),
17701 subject: subject.map(str::to_string),
17702 slot: slot.map(str::to_string),
17703 };
17704 assert!(
17705 c.is_self_loop(),
17706 "WitContract::is_self_loop must return true when \
17707 :contratos :de == :contratos :para (got false on \
17708 {nome:?} under {wit:?})",
17709 );
17710 }
17711 }
17712
17713 #[test]
17714 fn wit_contract_is_self_loop_returns_false_on_distinct_endpoints_across_permutations() {
17715 // The complement pin: [`WitContract::is_self_loop`] must return
17716 // `false` on every well-shaped inter-Servico contract (the
17717 // author-intended `:contratos` shape MESH-COMPOSITION §III.1
17718 // names — "Servico A calls Servico B" between two distinct
17719 // graph nodes). Pins against a future silent detour that
17720 // inverted the predicate (an accidental `!= ` swap for `==`
17721 // would silently reject every legitimate inter-Servico edge
17722 // and admit every self-edge — the exact inversion of the
17723 // author-intended shape). Four permutations sweep the same
17724 // WIT-shape accept-set the sibling positive-arm test carries.
17725 for (de, para, wit, endpoint, subject, slot) in [
17726 (
17727 "cart",
17728 "catalog",
17729 "wasi:http/proxy",
17730 Some("/lookup"),
17731 None,
17732 None,
17733 ),
17734 (
17735 "checkout",
17736 "orders",
17737 "nats:pub-sub",
17738 None,
17739 Some("orders.paid"),
17740 None,
17741 ),
17742 (
17743 "cart",
17744 "kv",
17745 "wasi:keyvalue/store",
17746 None,
17747 None,
17748 Some("carts/{cart_id}"),
17749 ),
17750 ("audit", "sink", "wasi:logging", None, None, None),
17751 ] {
17752 let c = WitContract {
17753 de: de.into(),
17754 para: para.into(),
17755 wit: wit.into(),
17756 endpoint: endpoint.map(str::to_string),
17757 subject: subject.map(str::to_string),
17758 slot: slot.map(str::to_string),
17759 };
17760 assert!(
17761 !c.is_self_loop(),
17762 "WitContract::is_self_loop must return false when \
17763 :contratos :de differs from :contratos :para (got true \
17764 on {de:?} → {para:?} under {wit:?})",
17765 );
17766 }
17767 }
17768
17769 #[test]
17770 fn wit_contract_is_self_loop_routes_through_source_destination_accessors() {
17771 // The composition pin: [`WitContract::is_self_loop`] must
17772 // resolve to exactly `self.source() == self.destination()` —
17773 // the equality probe of the sibling scalar-accessor pair — so
17774 // any future refactor that silently re-authored the predicate
17775 // to bypass the lifted scalar accessors (an accidental
17776 // `self.de == self.para` regression back to the raw field-
17777 // access shape, an M4-typed-caller-enum identity-comparison
17778 // rule that landed on `source()` without reaching
17779 // `destination()`, a per-cluster alias rewrite the operator
17780 // pins on `destination()` without reaching this predicate)
17781 // trips at caixa-core build time. Pins the "typed dispatch
17782 // composes with typed dispatch, not with raw field access"
17783 // discipline the sibling [`WitContract::edge_pair`] /
17784 // [`WitContract::edge_triple`] composite-projection accessors
17785 // already carry, extended onto the per-edge endpoint-equality
17786 // predicate axis. Positive and complement arms both fire.
17787 let self_edge = WitContract {
17788 de: "cart".into(),
17789 para: "cart".into(),
17790 wit: "wasi:http/proxy".into(),
17791 endpoint: Some("/lookup".into()),
17792 subject: None,
17793 slot: None,
17794 };
17795 assert_eq!(
17796 self_edge.is_self_loop(),
17797 self_edge.source() == self_edge.destination(),
17798 "WitContract::is_self_loop must compose exactly \
17799 `source() == destination()` — a bypass of either sibling \
17800 accessor here would silently decouple the endpoint-\
17801 equality predicate from the substrate-primitive scalar \
17802 accessors every downstream consumer routes through",
17803 );
17804 let inter_edge = WitContract {
17805 de: "cart".into(),
17806 para: "catalog".into(),
17807 wit: "wasi:http/proxy".into(),
17808 endpoint: Some("/lookup".into()),
17809 subject: None,
17810 slot: None,
17811 };
17812 assert_eq!(
17813 inter_edge.is_self_loop(),
17814 inter_edge.source() == inter_edge.destination(),
17815 "WitContract::is_self_loop must compose exactly \
17816 `source() == destination()` on the complement arm too",
17817 );
17818 }
17819
17820 #[test]
17821 fn wit_contract_endpoint_returns_endpoint_option_byte_equal_across_permutations() {
17822 // The canonical per-`:contratos` HTTP-shaped `:endpoint`-scalar
17823 // pin: [`WitContract::endpoint`] must return the `:contratos
17824 // :endpoint` field byte-for-byte, borrowed from the typed slot's
17825 // own `Option<String>` storage. Peer of the sibling
17826 // per-`:placement` [`Placement::shard_key`] (7cd2a28) /
17827 // [`Placement::affinity`] (74ec2d3) accessor pins on the M3
17828 // mesh-slot `Option<String>` optional-scalar axes — same "the
17829 // substrate-primitive accessor must byte-equal the raw field
17830 // access verbatim across every author-declared value" discipline
17831 // extended to the per-`:contratos` HTTP-payload-carrier arm.
17832 // Pins against a future silent detour that re-canonicalized the
17833 // endpoint (an accidental percent-encoding pass that didn't
17834 // reach the peer field-access site at the dedup key, a per-CR
17835 // fully-qualified prefix rewrite the operator authors on one
17836 // consumer without the other, or an M4 typed-path-template
17837 // `Display` re-canonicalization that silently drifted the
17838 // printer output from the source `caixa.lisp`). Four values
17839 // sweep the accept-set the [`crate::render::is_gateway_api_http_path`]
17840 // gate upstream admits (short root-path, dashed, param-shaped,
17841 // deep-hierarchy).
17842 for endpoint in ["/lookup", "/api/v1/orders", "/products/:id", "/health/live"] {
17843 let c = WitContract {
17844 de: "cart".into(),
17845 para: "catalog".into(),
17846 wit: "wasi:http/proxy".into(),
17847 endpoint: Some(endpoint.into()),
17848 subject: None,
17849 slot: None,
17850 };
17851 assert_eq!(
17852 c.endpoint(),
17853 Some(endpoint),
17854 "WitContract::endpoint must return :contratos :endpoint \
17855 verbatim (got {:?}, expected Some({endpoint:?}))",
17856 c.endpoint(),
17857 );
17858 assert_eq!(
17859 c.endpoint(),
17860 c.endpoint.as_deref(),
17861 "WitContract::endpoint must byte-equal the .endpoint \
17862 field's `.as_deref()` projection",
17863 );
17864 }
17865 }
17866
17867 #[test]
17868 fn wit_contract_endpoint_none_when_field_is_none() {
17869 // The absent-`:endpoint` arm of the per-`:contratos` HTTP-shaped
17870 // payload-carrier accessor pin: when the typed slot is absent —
17871 // the canonical shape under a non-HTTP `:wit` world per the
17872 // [`WitContract::target`]-enforced shape ↔ target partition
17873 // ([`WitTarget::PubSub`] carries `:subject`, [`WitTarget::Store`]
17874 // carries `:slot`, [`WitTarget::Capability`] carries none) —
17875 // [`WitContract::endpoint`] must return `None`. Pins against a
17876 // future silent detour that projected the absent slot to a
17877 // `Some("")` empty-string default (the canonical `Option<String>`
17878 // → `String` collapse footgun the sibling M2
17879 // [`crate::LimitsSpec::is_empty`] / [`crate::BehaviorSpec::is_empty`]
17880 // emptiness predicates already guard on the peer M2 typed-slot
17881 // surfaces), a `Some("None")` stringified-None round-trip, or a
17882 // `Some` arm whose contents were derived from a sibling slot (an
17883 // accidental fallback to the `:subject` / `:slot` payload that
17884 // read the pub-sub / store payload into the endpoint axis).
17885 // Three contracts sweep the accept-set every non-HTTP `:wit`
17886 // world lands on — pub-sub NATS, key/value, and payload-less
17887 // capability.
17888 for (wit, subject, slot) in [
17889 ("nats:pub-sub", Some("orders.paid"), None),
17890 ("wasi:keyvalue/store", None, Some("carts/{cart_id}")),
17891 ("wasi:cli/environment", None, None),
17892 ] {
17893 let c = WitContract {
17894 de: "cart".into(),
17895 para: "downstream".into(),
17896 wit: wit.into(),
17897 endpoint: None,
17898 subject: subject.map(str::to_string),
17899 slot: slot.map(str::to_string),
17900 };
17901 assert!(
17902 c.endpoint().is_none(),
17903 "WitContract::endpoint must return None when the typed \
17904 slot is absent under :wit {wit:?} (got {:?})",
17905 c.endpoint(),
17906 );
17907 assert_eq!(
17908 c.endpoint(),
17909 c.endpoint.as_deref(),
17910 "WitContract::endpoint must byte-equal the .endpoint \
17911 field's `.as_deref()` projection in the absent arm",
17912 );
17913 }
17914 }
17915
17916 #[test]
17917 fn wit_contract_endpoint_borrows_from_endpoint_storage() {
17918 // The borrow-not-copy pin: [`WitContract::endpoint`] must return
17919 // an `Option<&str>` whose `Some` arm borrows from the typed
17920 // slot's own [`String`] storage — same-address invariant with
17921 // `c.endpoint.as_deref().unwrap()`. Pins against a future silent
17922 // detour that allocated a fresh `String`
17923 // (`self.endpoint.clone().map(...)` in the body would type-check
17924 // but silently drop the borrow, and every downstream consumer
17925 // that assumed the returned slice outlives `&self` would break
17926 // on a stale-reference use-after-free — the [`WitContract::target`]
17927 // Http-arm payload extraction rebinds the returned `Option<&str>`
17928 // through `.ok_or_else(...)` and threads the `&str` payload into
17929 // [`WitTarget::Http { endpoint: &'a str }`], the
17930 // [`AplicacaoSpec::validate`] duplicate-`:contratos`
17931 // [`ContratoIdentity`] dedup key threads the returned
17932 // `Option<&str>` into the six-tuple's HTTP arm — each borrow
17933 // from the WitContract's own storage and each would silently
17934 // misbehave if this accessor produced a detached copy). Peer of
17935 // the sibling per-`:placement` [`Placement::shard_key`] (7cd2a28)
17936 // borrow-invariant pin on the M3 mesh-slot `Option<String>`-
17937 // shaped optional-scalar axes — first extension of the
17938 // `Option<&str>` borrow-not-copy discipline onto the
17939 // per-`:contratos` HTTP-shaped payload-carrier axis.
17940 let c = WitContract {
17941 de: "cart".into(),
17942 para: "catalog".into(),
17943 wit: "wasi:http/proxy".into(),
17944 endpoint: Some("/lookup".into()),
17945 subject: None,
17946 slot: None,
17947 };
17948 let ep = c.endpoint().expect("Some arm");
17949 let storage_slice = c.endpoint.as_deref().expect("Some arm — storage side");
17950 assert_eq!(
17951 ep.as_ptr(),
17952 storage_slice.as_ptr(),
17953 "WitContract::endpoint must borrow from the .endpoint \
17954 String's backing storage — a fresh allocation here means \
17955 the accessor no longer names the substrate-primitive typed \
17956 dispatch and every downstream consumer would silently \
17957 carry a detached copy",
17958 );
17959 assert_eq!(
17960 ep.len(),
17961 storage_slice.len(),
17962 "WitContract::endpoint and .endpoint.as_deref() must byte-\
17963 equal in length as well as in address",
17964 );
17965 }
17966
17967 #[test]
17968 fn wit_contract_subject_returns_subject_option_byte_equal_across_permutations() {
17969 // The canonical per-`:contratos` pub-sub-shaped `:subject`-scalar
17970 // pin: [`WitContract::subject`] must return the `:contratos
17971 // :subject` field byte-for-byte, borrowed from the typed slot's
17972 // own `Option<String>` storage. Peer of the sibling per-`:contratos`
17973 // [`WitContract::endpoint`] (7020470) accessor pin on the M3
17974 // mesh-slot per-`:contratos` payload-carrier `Option<String>`
17975 // optional-scalar axis — same "the substrate-primitive accessor
17976 // must byte-equal the raw field access verbatim across every
17977 // author-declared value" discipline extended to the pub-sub arm.
17978 // Pins against a future silent detour that re-canonicalized the
17979 // subject (an accidental `.to_lowercase()` normalization that
17980 // didn't reach the peer field-access site at the dedup key, a
17981 // per-CR fully-qualified prefix rewrite the operator authors on
17982 // one consumer without the other, or an M4 typed-subject-template
17983 // `Display` re-canonicalization that silently drifted the printer
17984 // output from the source `caixa.lisp`). Four values sweep the
17985 // NATS accept-set every pub-sub author-declared subject lands on
17986 // (flat token, dotted hierarchy, per-tenant prefix, wildcard).
17987 for subject in ["events", "orders.paid", "tenant-a.orders", "orders.>"] {
17988 let c = WitContract {
17989 de: "cart".into(),
17990 para: "notifier".into(),
17991 wit: "nats:pub-sub".into(),
17992 endpoint: None,
17993 subject: Some(subject.into()),
17994 slot: None,
17995 };
17996 assert_eq!(
17997 c.subject(),
17998 Some(subject),
17999 "WitContract::subject must return :contratos :subject \
18000 verbatim (got {:?}, expected Some({subject:?}))",
18001 c.subject(),
18002 );
18003 assert_eq!(
18004 c.subject(),
18005 c.subject.as_deref(),
18006 "WitContract::subject must byte-equal the .subject \
18007 field's `.as_deref()` projection",
18008 );
18009 }
18010 }
18011
18012 #[test]
18013 fn wit_contract_subject_none_when_field_is_none() {
18014 // The absent-`:subject` arm of the per-`:contratos` pub-sub-
18015 // shaped payload-carrier accessor pin: when the typed slot is
18016 // absent — the canonical shape under a non-pub-sub `:wit` world
18017 // per the [`WitContract::target`]-enforced shape ↔ target
18018 // partition ([`WitTarget::Http`] carries `:endpoint`,
18019 // [`WitTarget::Store`] carries `:slot`, [`WitTarget::Capability`]
18020 // carries none) — [`WitContract::subject`] must return `None`.
18021 // Pins against a future silent detour that projected the absent
18022 // slot to a `Some("")` empty-string default (the canonical
18023 // `Option<String>` → `String` collapse footgun the sibling M2
18024 // [`crate::LimitsSpec::is_empty`] / [`crate::BehaviorSpec::is_empty`]
18025 // emptiness predicates already guard on the peer M2 typed-slot
18026 // surfaces), a `Some("None")` stringified-None round-trip, or a
18027 // `Some` arm whose contents were derived from a sibling slot (an
18028 // accidental fallback to the `:endpoint` / `:slot` payload that
18029 // read the HTTP / store payload into the subject axis). Three
18030 // contracts sweep the accept-set every non-pub-sub `:wit` world
18031 // lands on — HTTP proxy, key/value store, and payload-less
18032 // capability.
18033 for (wit, endpoint, slot) in [
18034 ("wasi:http/proxy", Some("/lookup"), None),
18035 ("wasi:keyvalue/store", None, Some("carts/{cart_id}")),
18036 ("wasi:cli/environment", None, None),
18037 ] {
18038 let c = WitContract {
18039 de: "cart".into(),
18040 para: "downstream".into(),
18041 wit: wit.into(),
18042 endpoint: endpoint.map(str::to_string),
18043 subject: None,
18044 slot: slot.map(str::to_string),
18045 };
18046 assert!(
18047 c.subject().is_none(),
18048 "WitContract::subject must return None when the typed \
18049 slot is absent under :wit {wit:?} (got {:?})",
18050 c.subject(),
18051 );
18052 assert_eq!(
18053 c.subject(),
18054 c.subject.as_deref(),
18055 "WitContract::subject must byte-equal the .subject \
18056 field's `.as_deref()` projection in the absent arm",
18057 );
18058 }
18059 }
18060
18061 #[test]
18062 fn wit_contract_subject_borrows_from_subject_storage() {
18063 // The borrow-not-copy pin: [`WitContract::subject`] must return
18064 // an `Option<&str>` whose `Some` arm borrows from the typed
18065 // slot's own [`String`] storage — same-address invariant with
18066 // `c.subject.as_deref().unwrap()`. Pins against a future silent
18067 // detour that allocated a fresh `String`
18068 // (`self.subject.clone().map(...)` in the body would type-check
18069 // but silently drop the borrow, and every downstream consumer
18070 // that assumed the returned slice outlives `&self` would break
18071 // on a stale-reference use-after-free — the [`WitContract::target`]
18072 // PubSub-arm payload extraction rebinds the returned
18073 // `Option<&str>` through `.ok_or_else(...)` and threads the
18074 // `&str` payload into [`WitTarget::PubSub { subject: &'a str }`],
18075 // the [`AplicacaoSpec::validate`] duplicate-`:contratos`
18076 // [`ContratoIdentity`] dedup key threads the returned
18077 // `Option<&str>` into the six-tuple's pub-sub arm — each borrow
18078 // from the WitContract's own storage and each would silently
18079 // misbehave if this accessor produced a detached copy). Peer of
18080 // the sibling per-`:contratos` [`WitContract::endpoint`] (7020470)
18081 // borrow-invariant pin on the M3 mesh-slot `Option<String>`-
18082 // shaped optional-scalar axis — second extension of the
18083 // `Option<&str>` borrow-not-copy discipline onto the
18084 // per-`:contratos` payload-carrier family, this time on the
18085 // pub-sub arm.
18086 let c = WitContract {
18087 de: "cart".into(),
18088 para: "notifier".into(),
18089 wit: "nats:pub-sub".into(),
18090 endpoint: None,
18091 subject: Some("orders.paid".into()),
18092 slot: None,
18093 };
18094 let sub = c.subject().expect("Some arm");
18095 let storage_slice = c.subject.as_deref().expect("Some arm — storage side");
18096 assert_eq!(
18097 sub.as_ptr(),
18098 storage_slice.as_ptr(),
18099 "WitContract::subject must borrow from the .subject \
18100 String's backing storage — a fresh allocation here means \
18101 the accessor no longer names the substrate-primitive typed \
18102 dispatch and every downstream consumer would silently \
18103 carry a detached copy",
18104 );
18105 assert_eq!(
18106 sub.len(),
18107 storage_slice.len(),
18108 "WitContract::subject and .subject.as_deref() must byte-\
18109 equal in length as well as in address",
18110 );
18111 }
18112
18113 #[test]
18114 fn wit_contract_slot_returns_slot_option_byte_equal_across_permutations() {
18115 // The canonical per-`:contratos` key/value-store-shaped
18116 // `:slot`-scalar pin: [`WitContract::slot`] must return the
18117 // `:contratos :slot` field byte-for-byte, borrowed from the
18118 // typed slot's own `Option<String>` storage. Peer of the
18119 // sibling per-`:contratos` [`WitContract::endpoint`] (7020470) /
18120 // [`WitContract::subject`] (90de675) accessor pins on the M3
18121 // mesh-slot per-`:contratos` payload-carrier `Option<String>`
18122 // optional-scalar axis — same "the substrate-primitive
18123 // accessor must byte-equal the raw field access verbatim
18124 // across every author-declared value" discipline extended to
18125 // the store arm. Pins against a future silent detour that
18126 // re-canonicalized the slot template (an accidental
18127 // `.to_lowercase()` bucket-prefix normalization that didn't
18128 // reach the peer field-access site at the dedup key, a per-CR
18129 // fully-qualified prefix rewrite the operator authors on one
18130 // consumer without the other, or an M4 typed-key-template
18131 // `Display` re-canonicalization that silently drifted the
18132 // printer output from the source `caixa.lisp`). Four values
18133 // sweep the wasi:keyvalue accept-set every store-shaped
18134 // author-declared slot lands on (flat bucket, single-param
18135 // template, multi-param template, nested-hierarchy template).
18136 for slot in [
18137 "sessions",
18138 "carts/{cart_id}",
18139 "orders/{tenant}/{order_id}",
18140 "cache/tenant-a/orders/{id}",
18141 ] {
18142 let c = WitContract {
18143 de: "cart".into(),
18144 para: "kv".into(),
18145 wit: "wasi:keyvalue/store".into(),
18146 endpoint: None,
18147 subject: None,
18148 slot: Some(slot.into()),
18149 };
18150 assert_eq!(
18151 c.slot(),
18152 Some(slot),
18153 "WitContract::slot must return :contratos :slot \
18154 verbatim (got {:?}, expected Some({slot:?}))",
18155 c.slot(),
18156 );
18157 assert_eq!(
18158 c.slot(),
18159 c.slot.as_deref(),
18160 "WitContract::slot must byte-equal the .slot field's \
18161 `.as_deref()` projection",
18162 );
18163 }
18164 }
18165
18166 #[test]
18167 fn wit_contract_slot_none_when_field_is_none() {
18168 // The absent-`:slot` arm of the per-`:contratos` store-shaped
18169 // payload-carrier accessor pin: when the typed slot is absent —
18170 // the canonical shape under a non-store `:wit` world per the
18171 // [`WitContract::target`]-enforced shape ↔ target partition
18172 // ([`WitTarget::Http`] carries `:endpoint`, [`WitTarget::PubSub`]
18173 // carries `:subject`, [`WitTarget::Capability`] carries none) —
18174 // [`WitContract::slot`] must return `None`. Pins against a
18175 // future silent detour that projected the absent slot to a
18176 // `Some("")` empty-string default (the canonical
18177 // `Option<String>` → `String` collapse footgun the sibling M2
18178 // [`crate::LimitsSpec::is_empty`] / [`crate::BehaviorSpec::is_empty`]
18179 // emptiness predicates already guard on the peer M2 typed-slot
18180 // surfaces), a `Some("None")` stringified-None round-trip, or
18181 // a `Some` arm whose contents were derived from a sibling
18182 // slot (an accidental fallback to the `:endpoint` / `:subject`
18183 // payload that read the HTTP / pub-sub payload into the store
18184 // axis). Three contracts sweep the accept-set every non-store
18185 // `:wit` world lands on — HTTP proxy, pub-sub NATS, and
18186 // payload-less capability.
18187 for (wit, endpoint, subject) in [
18188 ("wasi:http/proxy", Some("/lookup"), None),
18189 ("nats:pub-sub", None, Some("orders.paid")),
18190 ("wasi:cli/environment", None, None),
18191 ] {
18192 let c = WitContract {
18193 de: "cart".into(),
18194 para: "downstream".into(),
18195 wit: wit.into(),
18196 endpoint: endpoint.map(str::to_string),
18197 subject: subject.map(str::to_string),
18198 slot: None,
18199 };
18200 assert!(
18201 c.slot().is_none(),
18202 "WitContract::slot must return None when the typed \
18203 slot is absent under :wit {wit:?} (got {:?})",
18204 c.slot(),
18205 );
18206 assert_eq!(
18207 c.slot(),
18208 c.slot.as_deref(),
18209 "WitContract::slot must byte-equal the .slot field's \
18210 `.as_deref()` projection in the absent arm",
18211 );
18212 }
18213 }
18214
18215 #[test]
18216 fn wit_contract_slot_borrows_from_slot_storage() {
18217 // The borrow-not-copy pin: [`WitContract::slot`] must return
18218 // an `Option<&str>` whose `Some` arm borrows from the typed
18219 // slot's own [`String`] storage — same-address invariant with
18220 // `c.slot.as_deref().unwrap()`. Pins against a future silent
18221 // detour that allocated a fresh `String`
18222 // (`self.slot.clone().map(...)` in the body would type-check
18223 // but silently drop the borrow, and every downstream consumer
18224 // that assumed the returned slice outlives `&self` would
18225 // break on a stale-reference use-after-free — the
18226 // [`WitContract::target`] Store-arm payload extraction rebinds
18227 // the returned `Option<&str>` through `.ok_or_else(...)` and
18228 // threads the `&str` payload into [`WitTarget::Store { slot: &'a str }`],
18229 // the [`AplicacaoSpec::validate`] duplicate-`:contratos`
18230 // [`ContratoIdentity`] dedup key threads the returned
18231 // `Option<&str>` into the six-tuple's store arm — each borrow
18232 // from the WitContract's own storage and each would silently
18233 // misbehave if this accessor produced a detached copy). Peer
18234 // of the sibling per-`:contratos` [`WitContract::endpoint`]
18235 // (7020470) / [`WitContract::subject`] (90de675)
18236 // borrow-invariant pins on the M3 mesh-slot `Option<String>`-
18237 // shaped optional-scalar axis — third and final extension of
18238 // the `Option<&str>` borrow-not-copy discipline onto the
18239 // per-`:contratos` payload-carrier family, this time on the
18240 // store arm.
18241 let c = WitContract {
18242 de: "cart".into(),
18243 para: "kv".into(),
18244 wit: "wasi:keyvalue/store".into(),
18245 endpoint: None,
18246 subject: None,
18247 slot: Some("carts/{cart_id}".into()),
18248 };
18249 let slot = c.slot().expect("Some arm");
18250 let storage_slice = c.slot.as_deref().expect("Some arm — storage side");
18251 assert_eq!(
18252 slot.as_ptr(),
18253 storage_slice.as_ptr(),
18254 "WitContract::slot must borrow from the .slot String's \
18255 backing storage — a fresh allocation here means the \
18256 accessor no longer names the substrate-primitive typed \
18257 dispatch and every downstream consumer would silently \
18258 carry a detached copy",
18259 );
18260 assert_eq!(
18261 slot.len(),
18262 storage_slice.len(),
18263 "WitContract::slot and .slot.as_deref() must byte-equal \
18264 in length as well as in address",
18265 );
18266 }
18267
18268 #[test]
18269 fn membro_nome_returns_caixa_byte_equal_across_permutations() {
18270 // The canonical per-`:membros` member-caixa `:nome`-scalar pin:
18271 // [`Membro::nome`] must return the `:membros :caixa` field
18272 // byte-for-byte, borrowed from the typed slot's own [`String`]
18273 // storage. Peer of the sibling per-`:contratos` [`WitContract::source`]
18274 // / [`WitContract::destination`] (7f0fd43) and per-`:entrada`
18275 // [`Entrada::destination`] (6db982c) accessor pins on the mesh-
18276 // slot-atom scalar-value axes — same "the substrate-primitive
18277 // accessor must byte-equal the raw field access verbatim across
18278 // every author-declared value" discipline extended to the
18279 // per-`:membros` member-identity arm. Pins against a future
18280 // silent detour that re-normalized the member identity (an
18281 // accidental `.to_lowercase()` — every `:membros :caixa` is
18282 // validated as a DNS-1123 label upstream via
18283 // [`validate_membro_caixa`], so any re-normalization is
18284 // redundant + a drift surface between the validator and the
18285 // accessor), a namespace-prefix rewrite (an accidental
18286 // `format!("{namespace}/{caixa}")` per-CR fully-qualified
18287 // rewrite that didn't land on the peer axes), or a per-cluster
18288 // alias stamp the operator authors on one consumer without the
18289 // other. Four values sweep the accept-set the DNS-1123 gate
18290 // upstream admits (short single-word / dashed / v-suffixed
18291 // member names).
18292 for name in ["cart", "checkout", "catalog", "orders-v2"] {
18293 let m = Membro {
18294 caixa: name.into(),
18295 versao: "^0.1".into(),
18296 };
18297 assert_eq!(
18298 m.nome(),
18299 name,
18300 "Membro::nome must return :membros :caixa verbatim \
18301 (got {:?}, expected {name:?})",
18302 m.nome(),
18303 );
18304 assert_eq!(
18305 m.nome(),
18306 m.caixa.as_str(),
18307 "Membro::nome must byte-equal the .caixa field access",
18308 );
18309 }
18310 }
18311
18312 #[test]
18313 fn membro_nome_borrows_from_caixa_storage() {
18314 // The borrow-not-copy pin: [`Membro::nome`] must return a `&str`
18315 // slice that borrows from the typed slot's own [`String`]
18316 // storage — same-address invariant with `m.caixa.as_str()`. Pins
18317 // against a future silent detour that allocated a fresh `String`
18318 // (`self.caixa.clone()` in the body would type-check but
18319 // silently drop the borrow, and every downstream consumer that
18320 // assumed the returned slice outlives `&self` would break on a
18321 // stale-reference use-after-free — the `HashSet<&str>` collector
18322 // at [`AplicacaoSpec::validate`]'s `names` seed, the
18323 // `BTreeMap<&str, BTreeSet<&str>>` adjacency map at
18324 // [`AplicacaoSpec::detect_sync_cycles`], the
18325 // [`crate::render::insert_first_seen`] dedup key at
18326 // [`AplicacaoSpec::validate_membros`] — each borrow from the
18327 // Membro's own storage and each would silently misbehave if
18328 // this accessor produced a detached copy). Peer of the sibling
18329 // per-`:contratos` [`WitContract::source`] /
18330 // [`WitContract::destination`] and per-`:entrada`
18331 // [`Entrada::destination`] borrow-invariant pins on the mesh-
18332 // slot-atom scalar-value axes.
18333 let m = Membro {
18334 caixa: "checkout".into(),
18335 versao: "^0.1".into(),
18336 };
18337 let name = m.nome();
18338 let caixa_slice = m.caixa.as_str();
18339 assert_eq!(
18340 name.as_ptr(),
18341 caixa_slice.as_ptr(),
18342 "Membro::nome must borrow from the .caixa String's backing \
18343 storage — a fresh allocation here means the accessor no \
18344 longer names the substrate-primitive typed dispatch and \
18345 every downstream consumer would silently carry a detached \
18346 copy",
18347 );
18348 assert_eq!(
18349 name.len(),
18350 caixa_slice.len(),
18351 "Membro::nome and .caixa.as_str() must byte-equal in length \
18352 as well as in address",
18353 );
18354 }
18355
18356 #[test]
18357 fn membro_versao_requirement_returns_versao_byte_equal_across_permutations() {
18358 // The canonical per-`:membros` member-`:versao`-scalar pin:
18359 // [`Membro::versao_requirement`] must return the
18360 // `:membros :versao` field byte-for-byte, borrowed from the typed
18361 // slot's own [`String`] storage. Sibling of the peer
18362 // `membro_nome_returns_caixa_byte_equal_across_permutations`
18363 // (4a32abf) pin on the per-`:membros` member-caixa `:nome` scalar
18364 // — same "the substrate-primitive accessor must byte-equal the
18365 // raw field access verbatim across every author-declared value"
18366 // discipline extended to the per-`:membros` member-`:versao`
18367 // requirement-string arm. Pins against a future silent detour
18368 // that re-canonicalized the requirement (an accidental
18369 // `.to_string()` via [`parse_requirement`] → [`Display`] round-
18370 // trip that collapsed `"^0.1"` to `">=0.1, <0.2"` and silently
18371 // drifted the printer output away from the source `caixa.lisp`,
18372 // an accidental whitespace trim on `"^ 0.1"` that no consumer
18373 // ever produced from the field-access side, an accidental
18374 // per-cluster lacre-projected concrete-version rewrite that
18375 // didn't land on the peer field-access sites). Five values sweep
18376 // the accept-set the shared
18377 // [`crate::render::require_valid_versao_requirement`] gate
18378 // admits (caret / tilde / exact / wildcard / bare-major).
18379 for req in ["^0.1", "~0.1.2", "0.1.0", "*", "^1"] {
18380 let m = Membro {
18381 caixa: "cart".into(),
18382 versao: req.into(),
18383 };
18384 assert_eq!(
18385 m.versao_requirement(),
18386 req,
18387 "Membro::versao_requirement must return :membros :versao \
18388 verbatim (got {:?}, expected {req:?})",
18389 m.versao_requirement(),
18390 );
18391 assert_eq!(
18392 m.versao_requirement(),
18393 m.versao.as_str(),
18394 "Membro::versao_requirement must byte-equal the .versao \
18395 field access",
18396 );
18397 }
18398 }
18399
18400 #[test]
18401 fn membro_versao_requirement_borrows_from_versao_storage() {
18402 // The borrow-not-copy pin: [`Membro::versao_requirement`] must
18403 // return a `&str` slice that borrows from the typed slot's own
18404 // [`String`] storage — same-address invariant with
18405 // `m.versao.as_str()`. Pins against a future silent detour that
18406 // allocated a fresh `String` (`self.versao.clone()` in the body
18407 // would type-check but silently drop the borrow, and every
18408 // downstream consumer that assumed the returned slice outlives
18409 // `&self` would break on a stale-reference use-after-free). Peer
18410 // of the sibling per-`:membros` [`Membro::nome`] (4a32abf) and
18411 // per-`:contratos` [`WitContract::source`] /
18412 // [`WitContract::destination`] (7f0fd43) and per-`:entrada`
18413 // [`Entrada::destination`] (6db982c) borrow-invariant pins on
18414 // the mesh-slot-atom scalar-value axes.
18415 let m = Membro {
18416 caixa: "checkout".into(),
18417 versao: "^0.1".into(),
18418 };
18419 let req = m.versao_requirement();
18420 let versao_slice = m.versao.as_str();
18421 assert_eq!(
18422 req.as_ptr(),
18423 versao_slice.as_ptr(),
18424 "Membro::versao_requirement must borrow from the .versao \
18425 String's backing storage — a fresh allocation here means \
18426 the accessor no longer names the substrate-primitive typed \
18427 dispatch and every downstream consumer would silently carry \
18428 a detached copy",
18429 );
18430 assert_eq!(
18431 req.len(),
18432 versao_slice.len(),
18433 "Membro::versao_requirement and .versao.as_str() must byte-\
18434 equal in length as well as in address",
18435 );
18436 }
18437
18438 #[test]
18439 fn membro_nome_and_versao_requirement_project_caixa_and_versao_pair() {
18440 // Sibling-pair invariant pin composing both per-`:membros`
18441 // substrate-primitive typed dispatches — [`Membro::nome`]
18442 // (4a32abf) and [`Membro::versao_requirement`] — at the joint
18443 // `(nome(), versao_requirement())` call shape every renderer
18444 // that fans on per-member identity + version pin keys off. The
18445 // invariant, evaluated per-member:
18446 //
18447 // (m.nome(), m.versao_requirement()) == (m.caixa.as_str(), m.versao.as_str())
18448 //
18449 // Closes the last unlifted per-`:membros` scalar axis — every
18450 // downstream consumer that reads the pair now routes through
18451 // exactly two typed dispatches on the substrate primitive, not
18452 // one typed + one open-coded field access. A future refactor
18453 // that silently split either accessor's projection (an
18454 // accidental `nome()` namespace-prefix rewrite that didn't
18455 // reach the peer, an accidental `versao_requirement()` lacre-
18456 // projected concrete-version rewrite that didn't land on the
18457 // `nome()` peer) surfaces at caixa-core build time. Peer of the
18458 // sibling per-`:entrada` `(hostname(), destination())` and
18459 // per-`:contratos` `(source(), destination())` pair invariants
18460 // on the mesh-slot-atom scalar-value axes.
18461 for (caixa, versao) in [
18462 ("cart", "^0.1"),
18463 ("checkout", "~0.1.2"),
18464 ("catalog", "0.1.0"),
18465 ("orders-v2", "*"),
18466 ] {
18467 let m = Membro {
18468 caixa: caixa.into(),
18469 versao: versao.into(),
18470 };
18471 assert_eq!(
18472 (m.nome(), m.versao_requirement()),
18473 (m.caixa.as_str(), m.versao.as_str()),
18474 "(Membro::nome, Membro::versao_requirement) must project \
18475 (.caixa, .versao) verbatim across every author-declared \
18476 pair (got ({:?}, {:?}), expected ({caixa:?}, {versao:?}))",
18477 m.nome(),
18478 m.versao_requirement(),
18479 );
18480 }
18481 }
18482
18483 #[test]
18484 fn validate_membros_empty_gate_routes_through_nome_accessor() {
18485 // Composition pin: [`AplicacaoSpec::validate_membros`]'s
18486 // `MembroCaixaEmpty` refusal-arm must key off [`Membro::nome`],
18487 // not the raw `.caixa` field access. Structurally: setting
18488 // ONLY the `.caixa` field to `""` on an otherwise-well-formed
18489 // `:membros` entry must (1) trip the `MembroCaixaEmpty` gate
18490 // and (2) produce a `m.nome()` byte-equal to `m.caixa.as_str()`
18491 // (i.e. the empty string) — so the emptiness predicate the
18492 // refusal arm reaches under is the accessor-projected value,
18493 // not a peer field that would silently drift under a future
18494 // accessor-side rewrite.
18495 //
18496 // Pins against a future silent detour that (a) re-derived the
18497 // emptiness gate off `self.caixa.is_empty()` in `validate_membros`
18498 // instead of `self.nome().is_empty()`, silently disagreeing with
18499 // every peer consumer (the `validate_membro_caixa(m.nome())`
18500 // call one line below, the dedup-key `insert_first_seen(&mut
18501 // seen, m.nome(), …)` two lines below, the emit-side per-
18502 // `programs[]` entry-`name:` at caixa-mesh/src/lib.rs:133),
18503 // (b) accessor-side introduced a per-tenant alias arm the
18504 // caller was unaware of, silently rewriting an author-declared
18505 // `:caixa "checkout"` to `""` — the raw-field-access gate
18506 // would fail-open while the accessor-routed peer consumers
18507 // would fail-closed, splitting the diagnostic from the actual
18508 // failure surface.
18509 //
18510 // Peer of the sibling
18511 // [`mesh_policy_is_empty_mtls_required_arm_routes_through_accessor`]
18512 // (c0110f1) composition pin — same "the shape-gate predicate
18513 // must route through the substrate-primitive typed dispatch"
18514 // discipline extended onto the per-`:membros` empty-`:caixa`
18515 // refusal-arm axis. Closes the last unlifted `.caixa` production-
18516 // code read site on `Membro` — after this converge every
18517 // caixa-core `.caixa` field access outside the accessor's own
18518 // body is either a test-side field-setter (in-module tests
18519 // constructing invalid-shape inputs) or a doc-comment reference.
18520 let mut s = three_member_spec();
18521 s.membros[1].caixa = String::new();
18522 assert!(
18523 s.membros[1].nome().is_empty(),
18524 "Membro::nome must byte-equal the .caixa field access — an \
18525 accessor-side detour that no longer projects the raw field \
18526 would silently split this drift-detection test from the \
18527 validate() refusal arm",
18528 );
18529 assert_eq!(
18530 s.membros[1].nome(),
18531 s.membros[1].caixa.as_str(),
18532 "Membro::nome and .caixa.as_str() must byte-equal on an \
18533 empty-`:caixa` entry — the emptiness gate keys off the \
18534 accessor by construction",
18535 );
18536 assert_eq!(
18537 s.validate().unwrap_err(),
18538 AplicacaoError::MembroCaixaEmpty,
18539 "validate_membros' emptiness gate must fire MembroCaixaEmpty \
18540 on an entry whose accessor-projected `nome()` is empty",
18541 );
18542 }
18543
18544 #[test]
18545 fn placement_shard_key_returns_shard_key_option_byte_equal_across_permutations() {
18546 // The canonical per-`:placement` Akka-cluster-sharding
18547 // `:shard-key`-scalar pin: [`Placement::shard_key`] must return
18548 // the `:placement :shard-key` field byte-for-byte, borrowed
18549 // from the typed slot's own `Option<String>` storage. Peer of
18550 // the sibling per-`:membros` [`Membro::nome`] (4a32abf) and
18551 // per-`:contratos` [`WitContract::source`] /
18552 // [`WitContract::destination`] (7f0fd43) and per-`:entrada`
18553 // [`Entrada::destination`] (6db982c) accessor pins on the mesh-
18554 // slot-atom scalar-value axes — same "the substrate-primitive
18555 // accessor must byte-equal the raw field access verbatim across
18556 // every author-declared value" discipline extended to the
18557 // per-`:placement` Akka-cluster-sharding key extractor arm.
18558 // Pins against a future silent detour that re-normalized the
18559 // key (an accidental `.to_lowercase()` — every non-empty
18560 // `:shard-key` is validated as a printable-ASCII single-token
18561 // reference upstream via [`validate_placement_shard_key`], so
18562 // any re-normalization is redundant + a drift surface between
18563 // the validator and the accessor), a per-cluster alias rewrite
18564 // the operator authors on one consumer without the other, or an
18565 // accidental variable-prefix strip (`$tenantId` → `tenantId`)
18566 // that didn't land on the peer field-access sites. Four values
18567 // sweep the accept-set the shape gate admits — bare identifier,
18568 // `$`-prefixed variable, dotted path, `${}`-quoted variable —
18569 // the four canonical Akka-style entity-id extractor shapes the
18570 // future M4 cluster-sharding reconciler hashes.
18571 for key in ["tenantId", "$tenantId", "metadata.tenantId", "${tenant}"] {
18572 let p = Placement {
18573 estrategia: PlacementStrategy::Sharded,
18574 clusters: vec!["rio".into()],
18575 affinity: None,
18576 shard_key: Some(key.into()),
18577 };
18578 assert_eq!(
18579 p.shard_key(),
18580 Some(key),
18581 "Placement::shard_key must return :placement :shard-key \
18582 verbatim (got {:?}, expected Some({key:?}))",
18583 p.shard_key(),
18584 );
18585 assert_eq!(
18586 p.shard_key(),
18587 p.shard_key.as_deref(),
18588 "Placement::shard_key must byte-equal the .shard_key \
18589 field's `.as_deref()` projection",
18590 );
18591 }
18592 }
18593
18594 #[test]
18595 fn placement_shard_key_none_when_field_is_none() {
18596 // The absent-`:shard-key` arm of the per-`:placement`
18597 // Akka-cluster-sharding accessor pin: when the typed slot is
18598 // absent — the canonical shape under `:estrategia Replicated` /
18599 // `SingleNode` per the [`AplicacaoSpec::validate_placement`]-
18600 // enforced `shard_key.is_some() == matches!(estrategia,
18601 // Sharded)` partition — [`Placement::shard_key`] must return
18602 // `None`. Pins against a future silent detour that projected
18603 // the absent slot to a `Some("")` empty-string default (the
18604 // canonical `Option<String>` → `String` collapse footgun the
18605 // sibling M2 [`crate::LimitsSpec::is_empty`] /
18606 // [`crate::BehaviorSpec::is_empty`] emptiness predicates
18607 // already guard on the peer M2 typed-slot surfaces), a
18608 // `Some("None")` stringified-None round-trip, or a `Some` arm
18609 // whose contents were derived from a sibling slot (an
18610 // accidental fallback to `estrategia.as_str()` that read the
18611 // strategy discriminator into the key axis). Two placements
18612 // sweep the accept-set every `validate`-passing non-`Sharded`
18613 // shape lands on — `Replicated` (Erlang/OTP distributed-app
18614 // takeover) and `SingleNode` (single-node hosting).
18615 for estrategia in [PlacementStrategy::Replicated, PlacementStrategy::SingleNode] {
18616 let p = Placement {
18617 estrategia,
18618 clusters: vec!["rio".into()],
18619 affinity: None,
18620 shard_key: None,
18621 };
18622 assert!(
18623 p.shard_key().is_none(),
18624 "Placement::shard_key must return None when the typed \
18625 slot is absent under :estrategia {estrategia:?} (got {:?})",
18626 p.shard_key(),
18627 );
18628 assert_eq!(
18629 p.shard_key(),
18630 p.shard_key.as_deref(),
18631 "Placement::shard_key must byte-equal the .shard_key \
18632 field's `.as_deref()` projection in the absent arm",
18633 );
18634 }
18635 }
18636
18637 #[test]
18638 fn placement_shard_key_borrows_from_shard_key_storage() {
18639 // The borrow-not-copy pin: [`Placement::shard_key`] must return
18640 // an `Option<&str>` whose `Some` arm borrows from the typed
18641 // slot's own [`String`] storage — same-address invariant with
18642 // `p.shard_key.as_deref().unwrap()`. Pins against a future
18643 // silent detour that allocated a fresh `String`
18644 // (`self.shard_key.clone().map(...)` in the body would type-
18645 // check but silently drop the borrow, and every downstream
18646 // consumer that assumed the returned slice outlives `&self`
18647 // would break on a stale-reference use-after-free — the
18648 // [`AplicacaoSpec::validate_placement`] `Sharded`-arm shape
18649 // gate's `Some(k)`-bound match arm reads `k: &str` under the
18650 // accessor's return type and would silently misbehave if this
18651 // accessor produced a detached copy). Peer of the sibling
18652 // per-`:membros` [`Membro::nome`] (4a32abf), per-`:contratos`
18653 // [`WitContract::source`] / [`WitContract::destination`]
18654 // (7f0fd43), and per-`:entrada` [`Entrada::destination`]
18655 // (6db982c) borrow-invariant pins on the mesh-slot-atom
18656 // scalar-value axes — first extension of the discipline onto
18657 // an `Option<String>`-shaped optional-scalar axis.
18658 let p = Placement {
18659 estrategia: PlacementStrategy::Sharded,
18660 clusters: vec!["rio".into()],
18661 affinity: None,
18662 shard_key: Some("tenantId".into()),
18663 };
18664 let key = p.shard_key().expect("Some arm");
18665 let storage_slice = p.shard_key.as_deref().expect("Some arm — storage side");
18666 assert_eq!(
18667 key.as_ptr(),
18668 storage_slice.as_ptr(),
18669 "Placement::shard_key must borrow from the .shard_key \
18670 String's backing storage — a fresh allocation here means \
18671 the accessor no longer names the substrate-primitive typed \
18672 dispatch and every downstream consumer would silently \
18673 carry a detached copy",
18674 );
18675 assert_eq!(
18676 key.len(),
18677 storage_slice.len(),
18678 "Placement::shard_key and .shard_key.as_deref() must byte-\
18679 equal in length as well as in address",
18680 );
18681 }
18682
18683 #[test]
18684 fn placement_affinity_returns_affinity_option_byte_equal_across_permutations() {
18685 // The canonical per-`:placement` M3-Adaptive-compression-hint
18686 // scalar pin: [`Placement::affinity`] must return the
18687 // `:placement :affinity` field byte-for-byte, borrowed from the
18688 // typed slot's own `Option<String>` storage. Peer of the sibling
18689 // per-`:placement` [`Placement::shard_key`] (7cd2a28) accessor
18690 // pin on the sibling `Option<&str>` optional-scalar axis — same
18691 // "the substrate-primitive accessor must byte-equal the raw
18692 // field access verbatim across every author-declared value"
18693 // discipline extended to the peer per-`:placement` M3-Adaptive-
18694 // compression-hint arm. Pins against a future silent detour
18695 // that re-normalized the hint (an accidental `.to_lowercase()`
18696 // — every `:affinity` is already validated as a DNS-1123 label
18697 // upstream via [`validate_placement_affinity`], so any re-
18698 // normalization is redundant + a drift surface between the
18699 // validator and the accessor), a per-cluster alias rewrite the
18700 // operator authors on one consumer without the other, or an
18701 // accidental hint-family collapse (`low-latency` → `latency`
18702 // that dropped the qualifier prefix). Four values sweep the
18703 // MESH-COMPOSITION §II.4 vocabulary the accept-set names — the
18704 // canonical adaptive-compression-weight biases the future M4
18705 // placement engine reads.
18706 for hint in [
18707 "data-locality",
18708 "low-latency",
18709 "high-throughput",
18710 "cost-optimized",
18711 ] {
18712 let p = Placement {
18713 estrategia: PlacementStrategy::Replicated,
18714 clusters: vec!["rio".into()],
18715 affinity: Some(hint.into()),
18716 shard_key: None,
18717 };
18718 assert_eq!(
18719 p.affinity(),
18720 Some(hint),
18721 "Placement::affinity must return :placement :affinity \
18722 verbatim (got {:?}, expected Some({hint:?}))",
18723 p.affinity(),
18724 );
18725 assert_eq!(
18726 p.affinity(),
18727 p.affinity.as_deref(),
18728 "Placement::affinity must byte-equal the .affinity \
18729 field's `.as_deref()` projection",
18730 );
18731 }
18732 }
18733
18734 #[test]
18735 fn placement_affinity_none_when_field_is_none() {
18736 // The absent-`:affinity` arm of the per-`:placement`
18737 // M3-Adaptive-compression-hint accessor pin: when the typed
18738 // slot is absent — the canonical shape of an Aplicacao that
18739 // leaves the compression weighting up to the placement engine's
18740 // cluster-default arm — [`Placement::affinity`] must return
18741 // `None`. Pins against a future silent detour that projected
18742 // the absent slot to a `Some("")` empty-string default (the
18743 // canonical `Option<String>` → `String` collapse footgun the
18744 // sibling M2 [`crate::LimitsSpec::is_empty`] /
18745 // [`crate::BehaviorSpec::is_empty`] emptiness predicates
18746 // already guard on the peer M2 typed-slot surfaces), a
18747 // `Some("None")` stringified-None round-trip, a `Some` arm
18748 // whose contents were derived from a sibling slot (an
18749 // accidental fallback to `estrategia.as_str()` that read the
18750 // strategy discriminator into the hint axis), or a
18751 // `Some("default")` implicit-default that would silently biases
18752 // the routing without the author having written one. Three
18753 // placements sweep the accept-set every `validate`-passing
18754 // `:affinity None` shape lands on — one per PlacementStrategy
18755 // discriminator arm (`SingleNode`, `Replicated`, `Sharded`
18756 // with a shard-key), since `:affinity` is orthogonal to
18757 // `:estrategia` in the typed grammar.
18758 for (estrategia, shard_key) in [
18759 (PlacementStrategy::SingleNode, None),
18760 (PlacementStrategy::Replicated, None),
18761 (PlacementStrategy::Sharded, Some("tenantId".to_string())),
18762 ] {
18763 let p = Placement {
18764 estrategia,
18765 clusters: vec!["rio".into()],
18766 affinity: None,
18767 shard_key,
18768 };
18769 assert!(
18770 p.affinity().is_none(),
18771 "Placement::affinity must return None when the typed \
18772 slot is absent under :estrategia {estrategia:?} (got {:?})",
18773 p.affinity(),
18774 );
18775 assert_eq!(
18776 p.affinity(),
18777 p.affinity.as_deref(),
18778 "Placement::affinity must byte-equal the .affinity \
18779 field's `.as_deref()` projection in the absent arm",
18780 );
18781 }
18782 }
18783
18784 #[test]
18785 fn placement_affinity_borrows_from_affinity_storage() {
18786 // The borrow-not-copy pin: [`Placement::affinity`] must return
18787 // an `Option<&str>` whose `Some` arm borrows from the typed
18788 // slot's own [`String`] storage — same-address invariant with
18789 // `p.affinity.as_deref().unwrap()`. Pins against a future
18790 // silent detour that allocated a fresh `String`
18791 // (`self.affinity.clone().map(...)` in the body would type-
18792 // check but silently drop the borrow, and every downstream
18793 // consumer that assumed the returned slice outlives `&self`
18794 // would break on a stale-reference use-after-free — the
18795 // [`AplicacaoSpec::validate_placement`] per-hint value-shape
18796 // gate reads the accessor's `&str` return through the
18797 // [`validate_placement_affinity`] `&str` parameter and would
18798 // silently misbehave if this accessor produced a detached
18799 // copy). Peer of the sibling per-`:placement`
18800 // [`Placement::shard_key`] (7cd2a28) borrow-invariant pin on
18801 // the M3 mesh-slot-atom `Option<String>` optional-scalar axis —
18802 // extends the discipline onto the sibling per-`:placement`
18803 // M3-Adaptive-compression-hint arm.
18804 let p = Placement {
18805 estrategia: PlacementStrategy::Replicated,
18806 clusters: vec!["rio".into()],
18807 affinity: Some("data-locality".into()),
18808 shard_key: None,
18809 };
18810 let hint = p.affinity().expect("Some arm");
18811 let storage_slice = p.affinity.as_deref().expect("Some arm — storage side");
18812 assert_eq!(
18813 hint.as_ptr(),
18814 storage_slice.as_ptr(),
18815 "Placement::affinity must borrow from the .affinity \
18816 String's backing storage — a fresh allocation here means \
18817 the accessor no longer names the substrate-primitive typed \
18818 dispatch and every downstream consumer would silently \
18819 carry a detached copy",
18820 );
18821 assert_eq!(
18822 hint.len(),
18823 storage_slice.len(),
18824 "Placement::affinity and .affinity.as_deref() must byte-\
18825 equal in length as well as in address",
18826 );
18827 }
18828
18829 #[test]
18830 fn placement_estrategia_returns_estrategia_verbatim_across_permutations() {
18831 // The canonical per-`:placement` distribution-strategy-scalar
18832 // pin: [`Placement::estrategia`] must return the `:placement
18833 // :estrategia` field verbatim as a [`PlacementStrategy`],
18834 // `Copy`-projected from the typed slot's own `PlacementStrategy`
18835 // storage across every variant in the closed accept-set
18836 // (`SingleNode` — Erlang/OTP distributed-app takeover;
18837 // `Replicated` — active-active across every named cluster;
18838 // `Sharded` — Akka-style hash-keyed entity distribution). Pins
18839 // against a future silent detour that re-derived the strategy
18840 // from a peer axis (an accidental fallback to
18841 // `if shard_key.is_some() { Sharded } else { Replicated }`
18842 // collapse that read the shard-key axis into the strategy
18843 // discriminator), a variant remap the operator authors on one
18844 // consumer without the other, or a stale-derive detour that
18845 // substituted [`PlacementStrategy::default`] when the field
18846 // held any explicit variant (which would silently collapse the
18847 // distinction between "author explicitly declared `:estrategia
18848 // Replicated`" and "author omitted the slot and inherited the
18849 // default" the future per-cluster override slot depends on).
18850 // Peer of the sibling per-`:entrada` `port_returns_entrada_port_verbatim_across_permutations`
18851 // pin on the `Copy`-return `u16` scalar axis — same "the
18852 // substrate-primitive accessor must byte-equal the raw field
18853 // access verbatim across every author-declared value" discipline
18854 // extended onto the per-`:placement` distribution-strategy
18855 // `Copy`-composite-enum scalar axis.
18856 for estrategia in [
18857 PlacementStrategy::SingleNode,
18858 PlacementStrategy::Replicated,
18859 PlacementStrategy::Sharded,
18860 ] {
18861 let shard_key = estrategia.is_sharded().then(|| "tenantId".to_string());
18862 let p = Placement {
18863 estrategia,
18864 clusters: vec!["rio".into()],
18865 affinity: None,
18866 shard_key,
18867 };
18868 assert_eq!(
18869 p.estrategia(),
18870 estrategia,
18871 "Placement::estrategia must return :placement :estrategia \
18872 verbatim (got {:?}, expected {estrategia:?})",
18873 p.estrategia(),
18874 );
18875 assert_eq!(
18876 p.estrategia(),
18877 p.estrategia,
18878 "Placement::estrategia accessor and .estrategia field \
18879 access must byte-equal — the accessor is the substrate-\
18880 primitive typed dispatch every downstream distribution-\
18881 strategy consumer must route through",
18882 );
18883 }
18884 }
18885
18886 #[test]
18887 fn validate_placement_reads_through_lifted_estrategia_accessor() {
18888 // Three-consumer coherence pin: the
18889 // [`AplicacaoSpec::validate_placement`]
18890 // [`AplicacaoError::PlacementWithoutClusters`] error carrier's
18891 // `estrategia:` field (which reads through
18892 // [`Placement::estrategia`] to name the strategy the empty
18893 // `:clusters` list was declared against), the same method's
18894 // `Sharded ↔ non-Sharded` `match` partition dispatch (which
18895 // reads through [`Placement::estrategia`] to fan across the
18896 // shape-gate cascades), and the non-`Sharded`-arm
18897 // [`AplicacaoError::ShardKeyOnNonSharded`] error carrier's
18898 // `estrategia:` field (which reads through
18899 // [`Placement::estrategia`] to name the strategy the declared-
18900 // but-inert `:shard-key` was authored under) must all key off
18901 // the lifted accessor, so any future rebrand on the typed
18902 // slot's reader shape lands at exactly one place. Pins the
18903 // three-site coherence by exercising each error surface end-
18904 // to-end and asserting the surfaced `estrategia:` field byte-
18905 // equals the accessor's return. Peer of the sibling per-
18906 // `:entrada` `validate_entrada_port_floor_gate_reads_through_lifted_port_accessor`
18907 // pin on the M3 mesh-slot `Copy`-return scalar axis.
18908
18909 // Arm 1: empty `:clusters` list surfaces `PlacementWithoutClusters`,
18910 // whose `estrategia:` field must byte-equal the accessor's return
18911 // for every variant in the closed accept-set.
18912 for estrategia in [
18913 PlacementStrategy::SingleNode,
18914 PlacementStrategy::Replicated,
18915 PlacementStrategy::Sharded,
18916 ] {
18917 let mut spec = three_member_spec();
18918 spec.placement.estrategia = estrategia;
18919 spec.placement.clusters = Vec::new();
18920 spec.placement.shard_key = estrategia.is_sharded().then(|| "tenantId".to_string());
18921 let err = spec.validate().unwrap_err();
18922 match err {
18923 AplicacaoError::PlacementWithoutClusters { estrategia: e } => {
18924 assert_eq!(
18925 e,
18926 spec.placement.estrategia(),
18927 "PlacementWithoutClusters.estrategia must byte-equal \
18928 Placement::estrategia() — the error carrier reads \
18929 through the lifted accessor",
18930 );
18931 }
18932 other => panic!(
18933 "expected PlacementWithoutClusters, got {other:?} for \
18934 estrategia={estrategia:?}"
18935 ),
18936 }
18937 }
18938
18939 // Arm 2: `:shard-key` authored on a non-`Sharded` strategy
18940 // surfaces `ShardKeyOnNonSharded`, whose `estrategia:` field
18941 // must byte-equal the accessor's return for both non-`Sharded`
18942 // strategies.
18943 for estrategia in [PlacementStrategy::SingleNode, PlacementStrategy::Replicated] {
18944 let mut spec = three_member_spec();
18945 spec.placement.estrategia = estrategia;
18946 spec.placement.shard_key = Some("tenantId".into());
18947 let err = spec.validate().unwrap_err();
18948 match err {
18949 AplicacaoError::ShardKeyOnNonSharded { estrategia: e, .. } => {
18950 assert_eq!(
18951 e,
18952 spec.placement.estrategia(),
18953 "ShardKeyOnNonSharded.estrategia must byte-equal \
18954 Placement::estrategia() — the non-Sharded-arm \
18955 refusal reads through the lifted accessor",
18956 );
18957 }
18958 other => panic!(
18959 "expected ShardKeyOnNonSharded, got {other:?} for \
18960 estrategia={estrategia:?}"
18961 ),
18962 }
18963 }
18964 }
18965
18966 // ── per-`:placement` `:clusters` typed-accessor coherence pins ──────────
18967 //
18968 // The [`Placement::clusters`] accessor lift is the second slice-return
18969 // (`&[T]`) accessor on any typed slot — sibling to the seed M2
18970 // [`crate::SupervisorSpec::children`] (bc92bce) accessor on the peer
18971 // per-`:supervisor` static-child-list `Vec`-carry axis. The two pins
18972 // below cover (1) the accessor's byte-equal projection against the raw
18973 // field access across the empty / singleton / cohort fixtures the
18974 // [`AplicacaoSpec::validate_placement`] pre-flight `.is_empty()` probe
18975 // and the per-cluster validate loop fan between, and (2) the two-
18976 // consumer coherence of the paired pre-flight refusal probe and the
18977 // per-cluster validate loop routing through the accessor on both arms.
18978
18979 #[test]
18980 fn placement_clusters_returns_clusters_slice_byte_equal_across_permutations() {
18981 // The canonical per-`:placement` cluster-pool-scalar-shape pin:
18982 // [`Placement::clusters`] must return the `:placement :clusters`
18983 // typed `Vec<String>` verbatim as a `&[String]` slice-view over
18984 // the same backing buffer the raw `self.clusters.as_slice()`
18985 // field access borrows from, byte-equal across every
18986 // representative fixture in the accept-set — the empty slice
18987 // (the pre-validation sentinel every
18988 // [`AplicacaoError::PlacementWithoutClusters`] refusal keys off),
18989 // the singleton slice (the minimal `SingleNode`-shape cohort),
18990 // and multi-entry cohorts (the peer `Replicated` / `Sharded`
18991 // multi-cluster shapes MESH-COMPOSITION §II.1 / §II.4 declare).
18992 //
18993 // Pins against a future silent detour that returned
18994 // `&Vec<String>` (which would type-check but leak the storage-
18995 // side `Vec`'s grow/push/reserve surface no consumer of the
18996 // typed view reaches for), a fresh-allocated `Vec<String>` copy
18997 // (which would type-check via a coercion but silently break
18998 // every downstream caller that relied on the slice sharing the
18999 // backing buffer's identity), or an out-of-order or length-
19000 // drifted projection (which would silently split the paired
19001 // pre-flight `.is_empty()` refusal probe's input from the per-
19002 // cluster validate loop's traversal input).
19003 //
19004 // Peer of the sibling M2
19005 // `supervisor_spec_children_returns_children_slice_byte_equal_across_permutations`
19006 // (bc92bce) `&[ChildSpec]` byte-equal pin on the per-
19007 // `:supervisor` static-child-list axis, extended onto the M3
19008 // per-`:placement` distribution-target-list `Vec`-carry axis.
19009 let fixtures: Vec<Vec<String>> = vec![
19010 Vec::new(),
19011 vec!["rio".into()],
19012 vec!["rio".into(), "mar".into()],
19013 vec!["rio".into(), "mar".into(), "plo".into()],
19014 ];
19015 for clusters in fixtures {
19016 let p = Placement {
19017 clusters: clusters.clone(),
19018 ..Placement::default()
19019 };
19020 assert_eq!(
19021 p.clusters(),
19022 clusters.as_slice(),
19023 "Placement::clusters must return :placement :clusters \
19024 verbatim (got {:?}, expected {:?})",
19025 p.clusters(),
19026 clusters.as_slice(),
19027 );
19028 assert_eq!(
19029 p.clusters(),
19030 p.clusters.as_slice(),
19031 "Placement::clusters accessor and .clusters.as_slice() \
19032 field access must byte-equal — the accessor is the \
19033 substrate-primitive typed dispatch every downstream \
19034 cluster-pool consumer must route through",
19035 );
19036 assert_eq!(
19037 p.clusters().len(),
19038 p.clusters.len(),
19039 "Placement::clusters().len() must byte-equal \
19040 self.clusters.len() — a length-drift would silently \
19041 split the paired pre-flight `.is_empty()` refusal \
19042 probe input from the per-cluster validate loop's \
19043 traversal input",
19044 );
19045 }
19046 }
19047
19048 #[test]
19049 fn validate_placement_reads_through_lifted_clusters_accessor() {
19050 // Two-consumer coherence pin: the
19051 // [`AplicacaoSpec::validate_placement`] pre-flight
19052 // `self.placement.clusters().is_empty()` refusal probe (which
19053 // must trip [`AplicacaoError::PlacementWithoutClusters`] when
19054 // the accessor projects the empty slice) and the per-cluster
19055 // validate loop's `for c in self.placement.clusters()`
19056 // traversal (which must reach every entry in the same order
19057 // the accessor projects, so both the per-entry value-shape
19058 // gate that trips [`AplicacaoError::PlacementClusterInvalid`]
19059 // and the duplicate-detection HashSet insert that trips
19060 // [`AplicacaoError::PlacementClusterDuplicate`] key off the
19061 // accessor's projection) must both key off the lifted
19062 // accessor, so any future rebrand on the typed slot's reader
19063 // shape lands at exactly one place. Pins the two-site
19064 // coherence by exercising each production consumer end-to-end:
19065 // (1) the `PlacementWithoutClusters` refusal under the empty
19066 // slice, (2) the `PlacementClusterInvalid` refusal fires on
19067 // the second entry of a two-cluster cohort whose head is
19068 // valid but tail is not (which requires the loop to reach the
19069 // second entry through the accessor), and (3) the
19070 // `PlacementClusterDuplicate` refusal fires on the second
19071 // entry of a two-cluster cohort that shares a name (which
19072 // requires the loop to reach both entries — a first-entry-only
19073 // projection would silently pass since the dedup HashSet has
19074 // room for the first insert).
19075 //
19076 // Peer of the sibling M2
19077 // [`crate::supervisor::tests::validate_reads_through_lifted_children_accessor`]
19078 // (bc92bce) coherence pin on the per-`:supervisor` static-
19079 // child-list axis, extended onto the M3 per-`:placement`
19080 // distribution-target-list `Vec`-carry axis.
19081
19082 // (1) Pre-flight `.is_empty()` probe: the empty slice must
19083 // trip `PlacementWithoutClusters`.
19084 let mut spec = three_member_spec();
19085 spec.placement.clusters = Vec::new();
19086 match spec.validate().unwrap_err() {
19087 AplicacaoError::PlacementWithoutClusters { .. } => {}
19088 other => panic!("expected PlacementWithoutClusters, got {other:?}"),
19089 }
19090 assert!(
19091 spec.placement.clusters().is_empty(),
19092 "the pre-flight refusal input must be the empty slice per \
19093 the accessor's projection",
19094 );
19095
19096 // (2) Per-cluster validate loop: a two-cluster cohort with an
19097 // invalid tail entry must trip `PlacementClusterInvalid` on
19098 // the tail — the loop must reach the second entry through
19099 // the accessor.
19100 let mut spec = three_member_spec();
19101 spec.placement.clusters = vec!["rio".into(), "BAD_CLUSTER".into()];
19102 match spec.validate().unwrap_err() {
19103 AplicacaoError::PlacementClusterInvalid { cluster, .. } => {
19104 assert_eq!(
19105 cluster, "BAD_CLUSTER",
19106 "PlacementClusterInvalid.cluster must carry the \
19107 tail entry the loop reached through the accessor",
19108 );
19109 }
19110 other => panic!("expected PlacementClusterInvalid, got {other:?}"),
19111 }
19112 assert_eq!(
19113 spec.placement.clusters().len(),
19114 2,
19115 "the per-cluster validate loop's traversal input must be \
19116 a two-element slice per the accessor's projection",
19117 );
19118
19119 // (3) Per-cluster validate loop: a two-cluster cohort that
19120 // shares a name must trip `PlacementClusterDuplicate` on the
19121 // second entry — the loop must reach both entries through the
19122 // accessor for the dedup HashSet's second insert to collide.
19123 let mut spec = three_member_spec();
19124 spec.placement.clusters = vec!["rio".into(), "rio".into()];
19125 match spec.validate().unwrap_err() {
19126 AplicacaoError::PlacementClusterDuplicate { cluster } => {
19127 assert_eq!(
19128 cluster, "rio",
19129 "PlacementClusterDuplicate.cluster must carry the \
19130 shared cluster name verbatim",
19131 );
19132 }
19133 other => panic!("expected PlacementClusterDuplicate, got {other:?}"),
19134 }
19135 assert_eq!(
19136 spec.placement.clusters().len(),
19137 2,
19138 "the per-cluster validate loop's traversal input must be \
19139 a two-element slice per the accessor's projection",
19140 );
19141 }
19142
19143 #[test]
19144 fn aplicacao_spec_membros_returns_membros_slice_byte_equal_across_permutations() {
19145 // The canonical per-`:membros` member-list-slice-shape pin:
19146 // [`AplicacaoSpec::membros`] must return the `:membros` typed
19147 // `Vec<Membro>` verbatim as a `&[Membro]` slice-view over the
19148 // same backing buffer the raw `self.membros.as_slice()` field
19149 // access borrows from, byte-equal across every representative
19150 // fixture in the accept-set — the empty slice (the pre-
19151 // validation sentinel every [`AplicacaoError::NoMembros`]
19152 // refusal keys off), the singleton slice (the minimal one-
19153 // Servico Aplicacao shape), and multi-entry cohorts (the peer
19154 // multi-Servico shapes MESH-COMPOSITION §III.1 declares as the
19155 // load-bearing identity of the application graph).
19156 //
19157 // Pins against a future silent detour that returned
19158 // `&Vec<Membro>` (which would type-check but leak the storage-
19159 // side `Vec`'s grow/push/reserve surface no consumer of the
19160 // typed view reaches for), a fresh-allocated `Vec<Membro>` copy
19161 // (which would type-check via a coercion but silently break
19162 // every downstream caller that relied on the slice sharing the
19163 // backing buffer's identity), or an out-of-order or length-
19164 // drifted projection (which would silently split the paired
19165 // `HashSet<&str>` name-set seed's collect input from the
19166 // pre-flight `.is_empty()` refusal probe's input from the per-
19167 // member validate loop's traversal input from the
19168 // programs.yaml emitter's per-entry fan-out loop's input from
19169 // the `feira app graph` per-member print traversal's input).
19170 //
19171 // Peer of the sibling M2
19172 // `supervisor_spec_children_returns_children_slice_byte_equal_across_permutations`
19173 // (bc92bce) `&[ChildSpec]` byte-equal pin on the per-
19174 // `:supervisor` static-child-list axis and the sibling M3
19175 // `placement_clusters_returns_clusters_slice_byte_equal_across_permutations`
19176 // (a6e18d7) `&[String]` byte-equal pin on the per-
19177 // `:placement` distribution-target-list axis — extends the
19178 // slice-return-accessor byte-equal-projection discipline onto
19179 // the outermost M3 mesh-slot type's per-Aplicacao member-list
19180 // `Vec`-carry axis.
19181 let fixtures: Vec<Vec<Membro>> = vec![
19182 Vec::new(),
19183 vec![membro("catalog", "^0.1")],
19184 vec![membro("catalog", "^0.1"), membro("cart", "^0.1")],
19185 vec![
19186 membro("catalog", "^0.1"),
19187 membro("cart", "^0.1"),
19188 membro("payment", "^0.2"),
19189 ],
19190 ];
19191 for membros in fixtures {
19192 let s = AplicacaoSpec {
19193 membros: membros.clone(),
19194 contratos: Vec::new(),
19195 politicas: MeshPolicy::default(),
19196 placement: Placement::default(),
19197 entrada: None,
19198 };
19199 assert_eq!(
19200 s.membros(),
19201 membros.as_slice(),
19202 "AplicacaoSpec::membros must return :membros verbatim \
19203 (got {:?}, expected {:?})",
19204 s.membros(),
19205 membros.as_slice(),
19206 );
19207 assert_eq!(
19208 s.membros(),
19209 s.membros.as_slice(),
19210 "AplicacaoSpec::membros accessor and .membros.as_slice() \
19211 field access must byte-equal — the accessor is the \
19212 substrate-primitive typed dispatch every downstream \
19213 member-list consumer must route through",
19214 );
19215 assert_eq!(
19216 s.membros().len(),
19217 s.membros.len(),
19218 "AplicacaoSpec::membros().len() must byte-equal \
19219 self.membros.len() — a length-drift would silently \
19220 split the paired `HashSet<&str>` name-set seed's \
19221 collect input from the pre-flight `.is_empty()` \
19222 refusal probe input from the per-member validate \
19223 loop's traversal input",
19224 );
19225 }
19226 }
19227
19228 #[test]
19229 fn validate_reads_through_lifted_membros_accessor() {
19230 // Three-consumer coherence pin: the
19231 // [`AplicacaoSpec::validate_membros`] pre-flight
19232 // `self.membros().is_empty()` refusal probe (which must trip
19233 // [`AplicacaoError::NoMembros`] when the accessor projects the
19234 // empty slice), the same method's per-member validate loop's
19235 // `for m in self.membros()` traversal (which must reach every
19236 // entry in the same order the accessor projects, so both the
19237 // per-entry empty-`:caixa` gate that trips
19238 // [`AplicacaoError::MembroCaixaEmpty`] and the duplicate-
19239 // detection `insert_first_seen` that trips
19240 // [`AplicacaoError::MembroDuplicate`] key off the accessor's
19241 // projection), and the peer [`AplicacaoSpec::validate`]'s
19242 // `HashSet<&str>` name-set seed's
19243 // `self.membros().iter().map(Membro::nome).collect()` collect
19244 // input (which every `:contratos` `:de` / `:para` membership
19245 // lookup rejects an unknown name against) must all three key
19246 // off the lifted accessor, so any future rebrand on the typed
19247 // slot's reader shape lands at exactly one place. Pins the
19248 // three-site coherence by exercising each production consumer
19249 // end-to-end: (1) the `NoMembros` refusal under the empty
19250 // slice, (2) the `MembroCaixaEmpty` refusal fires on the
19251 // second entry of a two-member cohort whose head is valid but
19252 // tail has an empty `:caixa` (which requires the loop to
19253 // reach the second entry through the accessor), and (3) the
19254 // `MembroDuplicate` refusal fires on the second entry of a
19255 // two-member cohort that shares a `:caixa` name (which
19256 // requires the loop to reach both entries through the
19257 // accessor for the dedup HashSet's second insert to collide).
19258 //
19259 // Peer of the sibling M2
19260 // [`crate::supervisor::tests::validate_reads_through_lifted_children_accessor`]
19261 // (bc92bce) coherence pin on the per-`:supervisor` static-
19262 // child-list axis and the sibling M3
19263 // `validate_placement_reads_through_lifted_clusters_accessor`
19264 // (a6e18d7) coherence pin on the per-`:placement` distribution-
19265 // target-list axis — extends the slice-return-accessor
19266 // multi-consumer coherence discipline onto the outermost M3
19267 // mesh-slot type's per-Aplicacao member-list `Vec`-carry axis.
19268
19269 // (1) Pre-flight `.is_empty()` probe: the empty slice must
19270 // trip `NoMembros`.
19271 let mut spec = three_member_spec();
19272 spec.membros = Vec::new();
19273 assert_eq!(spec.validate().unwrap_err(), AplicacaoError::NoMembros);
19274 assert!(
19275 spec.membros().is_empty(),
19276 "the pre-flight refusal input must be the empty slice per \
19277 the accessor's projection",
19278 );
19279
19280 // (2) Per-member validate loop: a two-member cohort with an
19281 // empty-`:caixa` tail entry must trip `MembroCaixaEmpty` on
19282 // the tail — the loop must reach the second entry through
19283 // the accessor.
19284 let mut spec = three_member_spec();
19285 spec.membros = vec![membro("catalog", "^0.1"), membro("", "^0.1")];
19286 assert_eq!(
19287 spec.validate().unwrap_err(),
19288 AplicacaoError::MembroCaixaEmpty,
19289 );
19290 assert_eq!(
19291 spec.membros().len(),
19292 2,
19293 "the per-member validate loop's traversal input must be \
19294 a two-element slice per the accessor's projection",
19295 );
19296
19297 // (3) Per-member validate loop: a two-member cohort that
19298 // shares a `:caixa` name must trip `MembroDuplicate` on the
19299 // second entry — the loop must reach both entries through the
19300 // accessor for the dedup HashSet's second insert to collide.
19301 let mut spec = three_member_spec();
19302 spec.membros = vec![membro("catalog", "^0.1"), membro("catalog", "^0.2")];
19303 match spec.validate().unwrap_err() {
19304 AplicacaoError::MembroDuplicate { caixa } => {
19305 assert_eq!(
19306 caixa, "catalog",
19307 "MembroDuplicate.caixa must carry the shared \
19308 member name verbatim",
19309 );
19310 }
19311 other => panic!("expected MembroDuplicate, got {other:?}"),
19312 }
19313 assert_eq!(
19314 spec.membros().len(),
19315 2,
19316 "the per-member validate loop's traversal input must be \
19317 a two-element slice per the accessor's projection",
19318 );
19319 }
19320
19321 #[test]
19322 fn aplicacao_spec_contratos_returns_contratos_slice_byte_equal_across_permutations() {
19323 // The canonical per-`:contratos` contract-list-slice-shape pin:
19324 // [`AplicacaoSpec::contratos`] must return the `:contratos`
19325 // typed `Vec<WitContract>` verbatim as a `&[WitContract]`
19326 // slice-view over the same backing buffer the raw
19327 // `self.contratos.as_slice()` field access borrows from, byte-
19328 // equal across every representative fixture in the accept-set —
19329 // the empty slice (the pre-validation "internal-only mesh" shape
19330 // an Aplicacao whose members exchange no typed edges renders
19331 // through), the singleton slice (the minimal one-edge Aplicacao
19332 // shape), and multi-entry cohorts (the peer multi-edge shapes
19333 // MESH-COMPOSITION §III.1 declares as the load-bearing edge-set
19334 // of the application graph).
19335 //
19336 // Pins against a future silent detour that returned
19337 // `&Vec<WitContract>` (which would type-check but leak the
19338 // storage-side `Vec`'s grow/push/reserve surface no consumer of
19339 // the typed view reaches for), a fresh-allocated
19340 // `Vec<WitContract>` copy (which would type-check via a coercion
19341 // but silently break every downstream caller that relied on the
19342 // slice sharing the backing buffer's identity), or an out-of-
19343 // order or length-drifted projection (which would silently split
19344 // the paired `AplicacaoSpec::validate` per-edge dedup HashSet
19345 // seed's traversal input from the `detect_sync_cycles` per-edge
19346 // adjacency-list seed's traversal input from the
19347 // `caixa_mesh::cilium_network_policies` per-`(:de, :para)`
19348 // BTreeMap grouping loop's traversal input from the
19349 // `feira app graph` per-contract print traversal's input).
19350 //
19351 // Peer of the immediately-adjacent sibling M3
19352 // `aplicacao_spec_membros_returns_membros_slice_byte_equal_across_permutations`
19353 // (6c77e36) `&[Membro]` byte-equal pin on the per-`:membros`
19354 // node-list axis, the sibling M3
19355 // `placement_clusters_returns_clusters_slice_byte_equal_across_permutations`
19356 // (a6e18d7) `&[String]` byte-equal pin on the per-`:placement`
19357 // distribution-target-list axis, and the sibling M2
19358 // `supervisor_spec_children_returns_children_slice_byte_equal_across_permutations`
19359 // (bc92bce) `&[ChildSpec]` byte-equal pin on the per-
19360 // `:supervisor` static-child-list axis — extends the slice-
19361 // return-accessor byte-equal-projection discipline onto the
19362 // outermost M3 mesh-slot type's per-Aplicacao contract-list
19363 // `Vec`-carry axis, closing the last unlifted per-
19364 // `AplicacaoSpec` `Vec`-carry axis.
19365 let fixtures: Vec<Vec<WitContract>> = vec![
19366 Vec::new(),
19367 vec![contract_http("cart", "catalog", "/products/:id")],
19368 vec![
19369 contract_http("cart", "catalog", "/products/:id"),
19370 contract_http("cart", "payment", "/charge"),
19371 ],
19372 vec![
19373 contract_http("cart", "catalog", "/products/:id"),
19374 contract_http("cart", "payment", "/charge"),
19375 contract_http("payment", "catalog", "/audit"),
19376 ],
19377 ];
19378 for contratos in fixtures {
19379 let s = AplicacaoSpec {
19380 membros: vec![
19381 membro("catalog", "^0.1"),
19382 membro("cart", "^0.1"),
19383 membro("payment", "^0.2"),
19384 ],
19385 contratos: contratos.clone(),
19386 politicas: MeshPolicy::default(),
19387 placement: Placement::default(),
19388 entrada: None,
19389 };
19390 assert_eq!(
19391 s.contratos(),
19392 contratos.as_slice(),
19393 "AplicacaoSpec::contratos must return :contratos verbatim \
19394 (got {:?}, expected {:?})",
19395 s.contratos(),
19396 contratos.as_slice(),
19397 );
19398 assert_eq!(
19399 s.contratos(),
19400 s.contratos.as_slice(),
19401 "AplicacaoSpec::contratos accessor and \
19402 .contratos.as_slice() field access must byte-equal — \
19403 the accessor is the substrate-primitive typed dispatch \
19404 every downstream contract-list consumer must route \
19405 through",
19406 );
19407 assert_eq!(
19408 s.contratos().len(),
19409 s.contratos.len(),
19410 "AplicacaoSpec::contratos().len() must byte-equal \
19411 self.contratos.len() — a length-drift would silently \
19412 split the paired per-edge validate-loop's traversal \
19413 input from the sync-cycle adjacency-list seed's \
19414 traversal input from the cilium_network_policies \
19415 per-`(:de, :para)` BTreeMap grouping loop's traversal \
19416 input from the `feira app graph` per-contract print \
19417 traversal's input",
19418 );
19419 }
19420 }
19421
19422 #[test]
19423 fn validate_reads_through_lifted_contratos_accessor() {
19424 // Three-consumer coherence pin: the [`AplicacaoSpec::validate`]
19425 // per-`:contratos` validate-loop's `for c in self.contratos()`
19426 // traversal (which must reach every entry in the same order the
19427 // accessor projects, so both the per-entry
19428 // [`AplicacaoError::ContratoMemberMissing`] membership-lookup
19429 // gate and the per-entry [`AplicacaoError::ContratoDuplicate`]
19430 // dedup `HashSet` insert key off the accessor's projection),
19431 // the peer [`AplicacaoSpec::detect_sync_cycles`]'s
19432 // `for c in self.contratos()` adjacency-list seed (which drives
19433 // the sync-subgraph deadlock-detection gate via
19434 // [`AplicacaoError::SyncCycle`]), and the peer
19435 // [`caixa_mesh::cilium_network_policies`]'s
19436 // `for c in spec.contratos()` per-`(:de, :para)` BTreeMap
19437 // grouping loop (which drives the per-CNP fan-out) must all
19438 // three key off the lifted accessor, so any future rebrand on
19439 // the typed slot's reader shape lands at exactly one place. Pins
19440 // the three-site coherence by exercising the two caixa-core
19441 // production consumers end-to-end: (1) the empty-`:contratos`
19442 // slice must validate without a per-edge diagnostic (the
19443 // per-edge loop is a no-op under the empty projection), (2) the
19444 // `ContratoMemberMissing` refusal fires on the second entry of a
19445 // two-edge cohort whose head references a valid member but tail
19446 // references a phantom name (which requires the loop to reach
19447 // the second entry through the accessor), and (3) the
19448 // `SyncCycle` refusal fires on a self-referential two-edge
19449 // cohort through the sync-cycle detector's peer projection
19450 // (which requires the detector to iterate the accessor's
19451 // projection to add the back-edge to its adjacency list).
19452 //
19453 // Peer of the sibling M3
19454 // [`validate_reads_through_lifted_membros_accessor`] (6c77e36)
19455 // three-consumer coherence pin on the per-`:membros` node-list
19456 // axis and the sibling M3
19457 // `validate_placement_reads_through_lifted_clusters_accessor`
19458 // (a6e18d7) coherence pin on the per-`:placement` distribution-
19459 // target-list axis — extends the slice-return-accessor multi-
19460 // consumer coherence discipline onto the outermost M3 mesh-slot
19461 // type's per-Aplicacao contract-list `Vec`-carry axis.
19462
19463 // (1) Empty-`:contratos` slice: the per-edge loop is a no-op
19464 // and no per-edge diagnostic surfaces. Validate succeeds on
19465 // the well-formed `:membros` head.
19466 let mut spec = three_member_spec();
19467 spec.contratos = Vec::new();
19468 assert!(
19469 spec.validate().is_ok(),
19470 "empty :contratos must validate — the per-edge loop is a \
19471 no-op under the accessor's empty projection",
19472 );
19473 assert!(
19474 spec.contratos().is_empty(),
19475 "the per-edge validate loop's traversal input must be the \
19476 empty slice per the accessor's projection",
19477 );
19478
19479 // (2) Per-edge validate loop: a two-edge cohort whose tail
19480 // references a phantom `:para` member must trip
19481 // `ContratoMemberMissing` on the tail — the loop must reach
19482 // the second entry through the accessor for the membership
19483 // lookup to fail on the phantom name.
19484 let mut spec = three_member_spec();
19485 spec.contratos = vec![
19486 contract_http("cart", "catalog", "/products/:id"),
19487 contract_http("cart", "phantom", "/x"),
19488 ];
19489 let err = spec.validate().unwrap_err();
19490 assert!(
19491 matches!(
19492 err,
19493 AplicacaoError::ContratoMemberMissing { ref caixa }
19494 if caixa == "phantom"
19495 ),
19496 "expected ContratoMemberMissing{{caixa:\"phantom\"}}, got {err:?}",
19497 );
19498 assert_eq!(
19499 spec.contratos().len(),
19500 2,
19501 "the per-edge validate loop's traversal input must be \
19502 a two-element slice per the accessor's projection",
19503 );
19504
19505 // (3) Sync-cycle detector: a two-edge synchronous cohort
19506 // whose second edge closes the sync-subgraph back onto the
19507 // first must trip [`AplicacaoError::ContratoCycle`] — the
19508 // detector must iterate the accessor's projection to add
19509 // both edges to its adjacency list, so a length-drift on
19510 // the accessor's projection would silently disagree with
19511 // the sync-cycle detector on which edge closes the loop.
19512 // Peer projection to the `validate` per-edge loop above:
19513 // the sync-cycle detector routes through the same lifted
19514 // accessor, so a rebrand of the reader shape lands at one
19515 // place. Uses a two-edge cohort (cart → catalog → cart)
19516 // because the per-edge `ContratoSelfLoop` gate fires before
19517 // the sync-cycle detector on a single self-referential edge
19518 // (`cart → cart`) — the cycle-detector's input must be a
19519 // multi-edge cohort for its per-edge traversal input to be
19520 // observably wider than the per-edge validate loop's input.
19521 let mut spec = three_member_spec();
19522 spec.contratos = vec![
19523 contract_http("cart", "catalog", "/products/:id"),
19524 contract_http("catalog", "cart", "/callback"),
19525 ];
19526 let err = spec.validate().unwrap_err();
19527 assert!(
19528 matches!(err, AplicacaoError::ContratoCycle { .. }),
19529 "expected ContratoCycle from the sync-cycle detector on a \
19530 two-edge back-edge cohort, got {err:?}",
19531 );
19532 assert_eq!(
19533 spec.contratos().len(),
19534 2,
19535 "the sync-cycle detector's traversal input must be a \
19536 two-element slice per the accessor's projection",
19537 );
19538 }
19539
19540 #[test]
19541 fn aplicacao_spec_politicas_returns_politicas_ref_byte_equal_across_permutations() {
19542 // The canonical per-`:politicas` outer-composite-reference-shape
19543 // pin: [`AplicacaoSpec::politicas`] must return the `:politicas`
19544 // typed `MeshPolicy` verbatim as a `&MeshPolicy` reference over
19545 // the same backing storage the raw `&self.politicas` field
19546 // access borrows from, byte-equal across every representative
19547 // fixture in the accept-set — the default `MeshPolicy` (the
19548 // author-empty "no policy on any axis" shape whose
19549 // [`MeshPolicy::is_empty`] evaluates `true`), the singleton
19550 // shapes carrying one axis at a time
19551 // (`{mtls_required, timeout, retries, circuit_breaker,
19552 // rate_limit}` — the minimal five-axis fan-out over the
19553 // per-axis lifted accessor family every downstream mesh-artifact
19554 // emitter dispatches on), and the multi-axis composite (the
19555 // canonical `three_member_spec` fixture's `{timeout, retries,
19556 // mtls_required}` triple — the load-bearing shape every
19557 // Aplicacao-scoped fixture in this suite constructs).
19558 //
19559 // Pins against a future silent detour that returned a fresh-
19560 // cloned `MeshPolicy` copy (which would type-check via a `Clone`
19561 // impl but silently break every downstream caller that relied
19562 // on the reference sharing the composite's backing identity), a
19563 // reference to an operator-resolved overlay (the future
19564 // per-cluster `:politicas-overrides` slot MESH-COMPOSITION §V
19565 // acknowledges — its resolution must land at exactly this
19566 // accessor body, not silently divert the raw slot away from a
19567 // second consumer), or an axis-shuffled projection (a future
19568 // detour that swapped `timeout` and `retries` through the
19569 // accessor would silently split the paired `validate_politicas`
19570 // per-axis bracket-dispatch's traversal input from the peer
19571 // `caixa_mesh::gateway_routes` HTTPRoute timeout+retry overlay
19572 // emitter's fan-out input from the peer
19573 // `caixa_mesh::cilium_network_policies` per-CNP mTLS-mode
19574 // overlay emitter's fan-out input).
19575 //
19576 // Peer of the sibling M3
19577 // `aplicacao_spec_membros_returns_membros_slice_byte_equal_across_permutations`
19578 // (6c77e36) `&[Membro]` byte-equal pin on the per-`:membros`
19579 // node-list `Vec`-carry axis and the sibling M3
19580 // `aplicacao_spec_contratos_returns_contratos_slice_byte_equal_across_permutations`
19581 // (0dcc926) `&[WitContract]` byte-equal pin on the per-
19582 // `:contratos` edge-list `Vec`-carry axis — extends the outer-
19583 // accessor byte-equal-projection discipline onto the outermost
19584 // M3 mesh-slot type's per-Aplicacao mesh-policy composite-
19585 // reference axis, the first `&Composite`-return accessor on the
19586 // outer [`AplicacaoSpec`] type.
19587 let fixtures: Vec<MeshPolicy> = vec![
19588 MeshPolicy::default(),
19589 MeshPolicy {
19590 mtls_required: Some(true),
19591 ..MeshPolicy::default()
19592 },
19593 MeshPolicy {
19594 mtls_required: Some(false),
19595 ..MeshPolicy::default()
19596 },
19597 MeshPolicy {
19598 timeout: Some(Duration::from_secs(30)),
19599 ..MeshPolicy::default()
19600 },
19601 MeshPolicy {
19602 retries: Some(3),
19603 ..MeshPolicy::default()
19604 },
19605 MeshPolicy {
19606 circuit_breaker: Some(CircuitBreaker {
19607 max_failures: 5,
19608 window: Duration::from_secs(30),
19609 }),
19610 ..MeshPolicy::default()
19611 },
19612 MeshPolicy {
19613 rate_limit: Some(RateLimit {
19614 rate: 100,
19615 window: Duration::from_secs(1),
19616 }),
19617 ..MeshPolicy::default()
19618 },
19619 MeshPolicy {
19620 timeout: Some(Duration::from_secs(30)),
19621 retries: Some(3),
19622 mtls_required: Some(true),
19623 ..MeshPolicy::default()
19624 },
19625 ];
19626 for politicas in fixtures {
19627 let s = AplicacaoSpec {
19628 membros: vec![membro("catalog", "^0.1"), membro("cart", "^0.1")],
19629 contratos: Vec::new(),
19630 politicas: politicas.clone(),
19631 placement: Placement::default(),
19632 entrada: None,
19633 };
19634 assert_eq!(
19635 *s.politicas(),
19636 politicas,
19637 "AplicacaoSpec::politicas must return :politicas verbatim \
19638 (got {:?}, expected {:?})",
19639 s.politicas(),
19640 politicas,
19641 );
19642 assert!(
19643 std::ptr::eq(s.politicas(), &s.politicas),
19644 "AplicacaoSpec::politicas accessor and &self.politicas \
19645 field access must borrow the same backing storage — \
19646 the accessor is the substrate-primitive typed dispatch \
19647 every downstream mesh-policy composite consumer must \
19648 route through, and a reference-identity split would \
19649 silently break every consumer that relied on the \
19650 borrow sharing the composite's storage",
19651 );
19652 assert_eq!(
19653 s.politicas().is_empty(),
19654 s.politicas.is_empty(),
19655 "AplicacaoSpec::politicas().is_empty() must byte-equal \
19656 self.politicas.is_empty() — an emptiness-drift would \
19657 silently split the paired `validate_politicas` \
19658 per-axis bracket-dispatch's seed from the peer \
19659 caixa-mesh CNP mTLS-overlay emitter's key from the \
19660 peer caixa-mesh HTTPRoute timeout+retry overlay \
19661 emitter's key",
19662 );
19663 }
19664 }
19665
19666 #[test]
19667 fn validate_politicas_reads_through_lifted_politicas_accessor() {
19668 // Multi-axis coherence pin: the [`AplicacaoSpec::validate_politicas`]
19669 // per-axis bracket-dispatch seed (`let p = self.politicas();`,
19670 // followed by the per-axis fan-out `p.timeout()` /
19671 // `p.retries()` / `p.circuit_breaker()` / `p.rate_limit()` on
19672 // the lifted axis-level accessor family) must key off the
19673 // lifted outer accessor, so any future rebrand on the typed
19674 // slot's outer-composite reader shape lands at exactly one
19675 // place. Pins the multi-axis coherence by exercising each
19676 // per-axis refusal end-to-end: (1) `PolicyTimeoutZero` fires on
19677 // a `Some(Duration::ZERO)` timeout under the outer accessor's
19678 // reference projection, (2) `PolicyRetriesZero` fires on a
19679 // `Some(0)` retries under the same projection, and (3) an
19680 // empty [`MeshPolicy::default`] passes `validate_politicas` —
19681 // the outer accessor's reference-projection reaches every
19682 // per-axis branch without silently short-circuiting any.
19683 //
19684 // Peer of the sibling M3
19685 // [`validate_reads_through_lifted_membros_accessor`] (6c77e36)
19686 // three-consumer coherence pin on the per-`:membros` node-list
19687 // axis and the sibling M3
19688 // [`validate_reads_through_lifted_contratos_accessor`] (0dcc926)
19689 // three-consumer coherence pin on the per-`:contratos`
19690 // edge-list axis — extends the multi-consumer coherence
19691 // discipline onto the outermost M3 mesh-slot type's per-
19692 // Aplicacao mesh-policy composite-reference axis, the first
19693 // `&Composite`-return accessor on the outer [`AplicacaoSpec`]
19694 // type.
19695
19696 // (1) `PolicyTimeoutZero` refusal under the outer accessor's
19697 // reference projection: a `Some(Duration::ZERO)` timeout must
19698 // trip the zero-floor gate. The bracket-dispatch's first arm
19699 // reads `p.timeout()` on the reference returned by the outer
19700 // accessor.
19701 let mut spec = three_member_spec();
19702 spec.politicas.timeout = Some(Duration::ZERO);
19703 spec.politicas.retries = None;
19704 spec.politicas.circuit_breaker = None;
19705 spec.politicas.rate_limit = None;
19706 assert_eq!(
19707 spec.validate().unwrap_err(),
19708 AplicacaoError::PolicyTimeoutZero,
19709 );
19710 assert!(
19711 std::ptr::eq(spec.politicas(), &spec.politicas),
19712 "the `validate_politicas` per-axis bracket-dispatch's \
19713 traversal input must be the same backing composite the \
19714 accessor's reference projection borrows from",
19715 );
19716
19717 // (2) `PolicyRetriesZero` refusal under the outer accessor's
19718 // reference projection: a `Some(0)` retries must trip the
19719 // zero-floor gate. The bracket-dispatch's second arm reads
19720 // `p.retries()` on the reference returned by the outer accessor.
19721 let mut spec = three_member_spec();
19722 spec.politicas.timeout = None;
19723 spec.politicas.retries = Some(0);
19724 spec.politicas.circuit_breaker = None;
19725 spec.politicas.rate_limit = None;
19726 assert_eq!(
19727 spec.validate().unwrap_err(),
19728 AplicacaoError::PolicyRetriesZero,
19729 );
19730
19731 // (3) Empty `MeshPolicy::default()` passes `validate_politicas`
19732 // — every per-axis arm short-circuits on `None`, so the outer
19733 // accessor's reference projection reaches the fall-through
19734 // `Ok(())` without any per-axis refusal firing.
19735 let mut spec = three_member_spec();
19736 spec.politicas = MeshPolicy::default();
19737 assert!(
19738 spec.validate().is_ok(),
19739 "an empty `MeshPolicy` must pass `validate_politicas` — \
19740 every per-axis arm short-circuits on `None` under the \
19741 outer accessor's reference projection",
19742 );
19743 assert!(
19744 spec.politicas().is_empty(),
19745 "the outer accessor's reference projection must be the \
19746 empty composite per the `MeshPolicy::default()` fixture",
19747 );
19748 }
19749
19750 #[test]
19751 #[allow(clippy::too_many_lines)]
19752 fn validate_politicas_timeout_and_retries_arms_route_through_lifted_axis_accessors() {
19753 // Per-axis coherence pin: the [`AplicacaoSpec::validate_politicas`]
19754 // per-axis bracket-dispatch's `:timeout` and `:retries` arms
19755 // must both key off the lifted axis-level accessors
19756 // ([`MeshPolicy::timeout`] / [`MeshPolicy::retries`]), matching
19757 // the peer `:circuit-breaker` / `:rate-limit` arms already
19758 // routing through [`MeshPolicy::circuit_breaker`] /
19759 // [`MeshPolicy::rate_limit`] — a uniform "one typed dispatch
19760 // per axis on the substrate primitive" shape at the fan-out
19761 // (four axes, four accessors, no raw-field-access site
19762 // anywhere on the bracket-dispatch). Pins the per-axis
19763 // coherence at the accept-set boundaries the bracket carves:
19764 // 1. accessor byte-equal to raw field on every representative
19765 // accept-set value (`None`, sub-cap, at-cap, past-cap
19766 // sentinel) — a future accessor drift that no longer
19767 // shipped the raw slot verbatim would surface here,
19768 // 2. `PolicyTimeoutZero` refusal fires on `Some(Duration::ZERO)`
19769 // routed through the accessor's projection, proving the
19770 // first arm reads through the accessor rather than a
19771 // silent-detour peer-axis field access,
19772 // 3. `PolicyRetriesZero` refusal fires on `Some(0)` routed
19773 // through the accessor's projection, proving the second
19774 // arm reads through the accessor,
19775 // 4. an at-cap `Some(POLICY_RETRIES_MAX)` retries value
19776 // passes validate under the accessor projection (paired
19777 // with a `Some(POLICY_TIMEOUT_MAX)` at-cap timeout on the
19778 // sibling axis), pinning the upper-boundary accept-arm
19779 // also routes through the accessor.
19780 //
19781 // Peer of the sibling M3
19782 // [`validate_politicas_reads_through_lifted_politicas_accessor`]
19783 // outer-composite-reference coherence pin (which asserts the
19784 // `let p = self.politicas()` seed); extends the discipline onto
19785 // the per-axis fan-out layer that consumes the seed's
19786 // reference. Same shape as
19787 // [`validate_reads_through_lifted_contratos_accessor`] (0dcc926)
19788 // and [`validate_reads_through_lifted_membros_accessor`] (6c77e36)
19789 // apply on the per-`AplicacaoSpec` `Vec`-carry axes, extended
19790 // onto the per-`MeshPolicy` `Option<Copy-T>`-carry axes.
19791
19792 // (1) Accessor byte-equal to raw field on the `:timeout` axis
19793 // across the accept-set boundaries the bracket dispatch's
19794 // three-arm gate carves out
19795 // ([`crate::render::require_positive_canonical_bounded_duration`]
19796 // — zero-floor + canonical-form + upper-cap).
19797 for timeout in [
19798 None,
19799 Some(Duration::ZERO),
19800 Some(Duration::from_millis(1)),
19801 Some(POLICY_TIMEOUT_MAX),
19802 ] {
19803 let p = MeshPolicy {
19804 timeout,
19805 ..MeshPolicy::default()
19806 };
19807 assert_eq!(
19808 p.timeout(),
19809 p.timeout,
19810 "MeshPolicy::timeout accessor must byte-equal the raw \
19811 .timeout field across every accept-set boundary the \
19812 validate_politicas :timeout arm carves out — a drift \
19813 here would silently split the validate bracket's arm \
19814 from the peer caixa-mesh HTTPRoute timeout-overlay \
19815 emitter's read",
19816 );
19817 }
19818
19819 // (2) Accessor byte-equal to raw field on the `:retries` axis
19820 // across the accept-set boundaries the bracket dispatch's
19821 // two-arm gate carves out
19822 // ([`crate::render::require_positive_bounded_u32`] — zero-floor
19823 // + upper-cap).
19824 for retries in [
19825 None,
19826 Some(0u32),
19827 Some(1u32),
19828 Some(POLICY_RETRIES_MAX),
19829 Some(POLICY_RETRIES_MAX + 1),
19830 Some(u32::MAX),
19831 ] {
19832 let p = MeshPolicy {
19833 retries,
19834 ..MeshPolicy::default()
19835 };
19836 assert_eq!(
19837 p.retries(),
19838 p.retries,
19839 "MeshPolicy::retries accessor must byte-equal the raw \
19840 .retries field across every accept-set boundary the \
19841 validate_politicas :retries arm carves out — a drift \
19842 here would silently split the validate bracket's arm \
19843 from the peer caixa-mesh HTTPRoute retry-overlay \
19844 emitter's read",
19845 );
19846 }
19847
19848 // (3) `PolicyTimeoutZero` fires on the accessor-projected
19849 // zero-floor boundary. A silent detour that no longer read
19850 // through `p.timeout()` (a peer-axis field read, an accidental
19851 // Option::and-then chain that collapsed the None arm to Some,
19852 // an accessor rebrand that clamped the return through the
19853 // upper cap) would fail to refuse here.
19854 let mut spec = three_member_spec();
19855 spec.politicas.timeout = Some(Duration::ZERO);
19856 spec.politicas.retries = None;
19857 spec.politicas.circuit_breaker = None;
19858 spec.politicas.rate_limit = None;
19859 assert_eq!(
19860 spec.politicas().timeout(),
19861 Some(Duration::ZERO),
19862 "the accessor projection must reflect the fixture's \
19863 `Some(Duration::ZERO)` :timeout verbatim",
19864 );
19865 assert_eq!(
19866 spec.validate().unwrap_err(),
19867 AplicacaoError::PolicyTimeoutZero,
19868 "the validate_politicas :timeout zero-floor arm must fire \
19869 through the lifted accessor's projection — a silent \
19870 detour to a peer-axis field would fail to refuse",
19871 );
19872
19873 // (4) `PolicyRetriesZero` fires on the accessor-projected
19874 // zero-floor boundary on the sibling `:retries` axis.
19875 let mut spec = three_member_spec();
19876 spec.politicas.timeout = None;
19877 spec.politicas.retries = Some(0);
19878 spec.politicas.circuit_breaker = None;
19879 spec.politicas.rate_limit = None;
19880 assert_eq!(
19881 spec.politicas().retries(),
19882 Some(0),
19883 "the accessor projection must reflect the fixture's \
19884 `Some(0)` :retries verbatim",
19885 );
19886 assert_eq!(
19887 spec.validate().unwrap_err(),
19888 AplicacaoError::PolicyRetriesZero,
19889 "the validate_politicas :retries zero-floor arm must fire \
19890 through the lifted accessor's projection — a silent \
19891 detour to a peer-axis field would fail to refuse",
19892 );
19893
19894 // (5) At-cap accept-arm on both axes: a `Some(POLICY_TIMEOUT_MAX)`
19895 // timeout paired with a `Some(POLICY_RETRIES_MAX)` retries
19896 // must pass validate under the accessor projection — pins the
19897 // upper-boundary accept-arm also routes through the lifted
19898 // accessor (a drift that clamped or short-circuited at the
19899 // upper boundary would fail the whole-spec validate here).
19900 let mut spec = three_member_spec();
19901 spec.politicas.timeout = Some(POLICY_TIMEOUT_MAX);
19902 spec.politicas.retries = Some(POLICY_RETRIES_MAX);
19903 spec.politicas.circuit_breaker = None;
19904 spec.politicas.rate_limit = None;
19905 assert_eq!(
19906 spec.politicas().timeout(),
19907 Some(POLICY_TIMEOUT_MAX),
19908 "the accessor projection must reflect the fixture's \
19909 at-cap :timeout verbatim",
19910 );
19911 assert_eq!(
19912 spec.politicas().retries(),
19913 Some(POLICY_RETRIES_MAX),
19914 "the accessor projection must reflect the fixture's \
19915 at-cap :retries verbatim",
19916 );
19917 assert!(
19918 spec.validate().is_ok(),
19919 "at-cap :timeout + :retries must pass validate under the \
19920 accessor projection — the upper-boundary accept-arm on \
19921 both axes routes through the lifted accessor",
19922 );
19923 }
19924
19925 #[test]
19926 fn aplicacao_spec_placement_returns_placement_ref_byte_equal_across_permutations() {
19927 // The canonical per-`:placement` outer-composite-reference-shape
19928 // pin: [`AplicacaoSpec::placement`] must return the `:placement`
19929 // typed `Placement` verbatim as a `&Placement` reference over the
19930 // same backing storage the raw `&self.placement` field access
19931 // borrows from, byte-equal across every representative fixture in
19932 // the accept-set — the default `Placement` (the substrate seed
19933 // shape whose [`PlacementStrategy::default`] evaluates to
19934 // `SingleNode` with an empty `:clusters` pool and both
19935 // optional-scalar axes `None`), and every canonical strategy /
19936 // cluster-pool / optional-scalar combination the
19937 // [`AplicacaoSpec::validate_placement`] gate accepts (each of the
19938 // three [`PlacementStrategy`] variants — `SingleNode`,
19939 // `Replicated`, `Sharded` — cross-projected with a non-empty
19940 // `:clusters` pool and, on the `Sharded` arm, a non-empty
19941 // `:shard-key`; a `:affinity`-carrying `Replicated` fixture; the
19942 // canonical `three_member_spec` `Replicated` fixture's
19943 // `{Replicated, ["rio", "mar"], "data-locality", None}` composite).
19944 //
19945 // Pins against a future silent detour that returned a fresh-
19946 // cloned `Placement` copy (which would type-check via a `Clone`
19947 // impl but silently break every downstream caller that relied on
19948 // the reference sharing the composite's backing identity), a
19949 // reference to an operator-resolved overlay (the future per-
19950 // cluster `:placement-overrides` slot MESH-COMPOSITION §V
19951 // acknowledges — its resolution must land at exactly this
19952 // accessor body, not silently divert the raw slot away from a
19953 // second consumer), or an axis-shuffled projection (a future
19954 // detour that swapped `clusters` and `affinity` through the
19955 // accessor would silently split the paired `validate_placement`
19956 // per-axis bracket-dispatch's traversal input from the peer
19957 // `caixa_mesh::programs_for_aplicacao` per-Aplicacao
19958 // programs.yaml distribution-annotation emitter's fan-out input
19959 // from the peer `feira app graph` per-Aplicacao print line's
19960 // input).
19961 //
19962 // Peer of the sibling M3
19963 // `aplicacao_spec_politicas_returns_politicas_ref_byte_equal_across_permutations`
19964 // (534dc21) `&MeshPolicy` byte-equal pin on the per-`:politicas`
19965 // outer mesh-policy composite-reference axis, and of the sibling
19966 // slice-return `aplicacao_spec_membros_returns_membros_slice_
19967 // byte_equal_across_permutations` (6c77e36) `&[Membro]` +
19968 // `aplicacao_spec_contratos_returns_contratos_slice_byte_equal_
19969 // across_permutations` (0dcc926) `&[WitContract]` pins — extends
19970 // the outer-accessor byte-equal-projection discipline onto the
19971 // outermost M3 mesh-slot type's per-Aplicacao distribution
19972 // composite-reference axis, the second `&Composite`-return
19973 // accessor on the outer [`AplicacaoSpec`] type.
19974 let fixtures: Vec<Placement> = vec![
19975 Placement::default(),
19976 Placement {
19977 estrategia: PlacementStrategy::SingleNode,
19978 clusters: vec!["rio".into()],
19979 affinity: None,
19980 shard_key: None,
19981 },
19982 Placement {
19983 estrategia: PlacementStrategy::Replicated,
19984 clusters: vec!["rio".into(), "mar".into()],
19985 affinity: None,
19986 shard_key: None,
19987 },
19988 Placement {
19989 estrategia: PlacementStrategy::Replicated,
19990 clusters: vec!["rio".into(), "mar".into()],
19991 affinity: Some("data-locality".into()),
19992 shard_key: None,
19993 },
19994 Placement {
19995 estrategia: PlacementStrategy::Sharded,
19996 clusters: vec!["rio".into(), "mar".into()],
19997 affinity: None,
19998 shard_key: Some("tenantId".into()),
19999 },
20000 Placement {
20001 estrategia: PlacementStrategy::Sharded,
20002 clusters: vec!["rio".into(), "mar".into(), "sol".into()],
20003 affinity: Some("low-latency".into()),
20004 shard_key: Some("metadata.tenantId".into()),
20005 },
20006 ];
20007 for placement in fixtures {
20008 let s = AplicacaoSpec {
20009 membros: vec![membro("catalog", "^0.1"), membro("cart", "^0.1")],
20010 contratos: Vec::new(),
20011 politicas: MeshPolicy::default(),
20012 placement: placement.clone(),
20013 entrada: None,
20014 };
20015 assert_eq!(
20016 *s.placement(),
20017 placement,
20018 "AplicacaoSpec::placement must return :placement verbatim \
20019 (got {:?}, expected {:?})",
20020 s.placement(),
20021 placement,
20022 );
20023 assert!(
20024 std::ptr::eq(s.placement(), &s.placement),
20025 "AplicacaoSpec::placement accessor and &self.placement \
20026 field access must borrow the same backing storage — the \
20027 accessor is the substrate-primitive typed dispatch every \
20028 downstream distribution-composite consumer must route \
20029 through, and a reference-identity split would silently \
20030 break every consumer that relied on the borrow sharing \
20031 the composite's storage",
20032 );
20033 assert_eq!(
20034 s.placement().estrategia(),
20035 s.placement.estrategia,
20036 "AplicacaoSpec::placement().estrategia() must byte-equal \
20037 self.placement.estrategia — a strategy-drift would \
20038 silently split the paired `validate_placement` \
20039 `Sharded` ↔ non-`Sharded` partition scrutinee from the \
20040 peer caixa-mesh programs.yaml `placement.estrategia` \
20041 emitter's key from the peer `feira app graph` printer's \
20042 strategy label",
20043 );
20044 assert_eq!(
20045 s.placement().clusters(),
20046 s.placement.clusters.as_slice(),
20047 "AplicacaoSpec::placement().clusters() must byte-equal \
20048 self.placement.clusters — a cluster-pool drift would \
20049 silently split the paired `validate_placement` \
20050 pre-flight `.is_empty()` refusal probe's traversal from \
20051 the peer caixa-mesh programs.yaml `placement.clusters` \
20052 emitter's fan-out from the peer `feira app graph` \
20053 printer's cluster list",
20054 );
20055 }
20056 }
20057
20058 #[test]
20059 fn validate_placement_reads_through_lifted_placement_accessor() {
20060 // Multi-axis coherence pin: the [`AplicacaoSpec::validate_placement`]
20061 // per-axis bracket-dispatch seed (`let p = self.placement();`,
20062 // followed by the per-axis fan-out `p.clusters()` /
20063 // `p.estrategia()` / `p.affinity()` / `p.shard_key()` on the
20064 // lifted axis-level accessor family) must key off the lifted
20065 // outer accessor, so any future rebrand on the typed slot's
20066 // outer-composite reader shape lands at exactly one place. Pins
20067 // the multi-axis coherence by exercising each per-axis refusal
20068 // end-to-end: (1) `PlacementWithoutClusters` fires on an empty
20069 // `:clusters` pool under the outer accessor's reference
20070 // projection, (2) `ShardedWithoutKey` fires on a `Sharded`
20071 // strategy with a `None` `:shard-key` under the same projection,
20072 // (3) `ShardKeyOnNonSharded` fires on a non-`Sharded` strategy
20073 // with a `Some` `:shard-key` under the same projection, and
20074 // (4) the canonical `three_member_spec` `Replicated` fixture
20075 // passes `validate_placement` under the outer accessor's
20076 // reference projection — the accessor's reference-projection
20077 // reaches every per-axis branch (cluster-pool refusal, `Sharded`
20078 // ↔ non-`Sharded` partition scrutinee, `:shard-key` shape gate)
20079 // without silently short-circuiting any.
20080 //
20081 // Peer of the sibling M3
20082 // [`validate_politicas_reads_through_lifted_politicas_accessor`]
20083 // (534dc21) multi-axis coherence pin on the per-`:politicas`
20084 // outer mesh-policy composite-reference axis — extends the
20085 // multi-consumer coherence discipline onto the outermost M3
20086 // mesh-slot type's per-Aplicacao distribution composite-
20087 // reference axis, the second `&Composite`-return accessor on
20088 // the outer [`AplicacaoSpec`] type.
20089
20090 // (1) `PlacementWithoutClusters` refusal under the outer
20091 // accessor's reference projection: an empty `:clusters` pool
20092 // must trip the pre-flight refusal probe. The bracket-dispatch's
20093 // first arm reads `p.clusters()` on the reference returned by
20094 // the outer accessor.
20095 let mut spec = three_member_spec();
20096 spec.placement.clusters = Vec::new();
20097 assert_eq!(
20098 spec.validate().unwrap_err(),
20099 AplicacaoError::PlacementWithoutClusters {
20100 estrategia: PlacementStrategy::Replicated,
20101 },
20102 );
20103 assert!(
20104 std::ptr::eq(spec.placement(), &spec.placement),
20105 "the `validate_placement` per-axis bracket-dispatch's \
20106 traversal input must be the same backing composite the \
20107 accessor's reference projection borrows from",
20108 );
20109
20110 // (2) `ShardedWithoutKey` refusal under the outer accessor's
20111 // reference projection: a `Sharded` strategy with a `None`
20112 // `:shard-key` must trip the `Sharded`-arm shape-gate cascade.
20113 // The bracket-dispatch's third arm reads `p.estrategia()` for
20114 // the match scrutinee then `p.shard_key()` for the cascade
20115 // scrutinee, both on the reference returned by the outer
20116 // accessor.
20117 let mut spec = three_member_spec();
20118 spec.placement.estrategia = PlacementStrategy::Sharded;
20119 spec.placement.shard_key = None;
20120 assert_eq!(
20121 spec.validate().unwrap_err(),
20122 AplicacaoError::ShardedWithoutKey,
20123 );
20124
20125 // (3) `ShardKeyOnNonSharded` refusal under the outer accessor's
20126 // reference projection: a non-`Sharded` strategy with a `Some`
20127 // `:shard-key` must trip the declared-but-inert refusal. The
20128 // bracket-dispatch's non-`Sharded` arm reads `p.shard_key()`
20129 // + `p.estrategia()` for the diagnostic on the reference
20130 // returned by the outer accessor.
20131 let mut spec = three_member_spec();
20132 spec.placement.estrategia = PlacementStrategy::Replicated;
20133 spec.placement.shard_key = Some("tenantId".into());
20134 assert_eq!(
20135 spec.validate().unwrap_err(),
20136 AplicacaoError::ShardKeyOnNonSharded {
20137 estrategia: PlacementStrategy::Replicated,
20138 shard_key: "tenantId".into(),
20139 },
20140 );
20141
20142 // (4) Canonical `three_member_spec` `Replicated` fixture passes
20143 // `validate_placement` — every per-axis arm reaches the fall-
20144 // through `Ok(())` without any per-axis refusal firing under the
20145 // outer accessor's reference projection.
20146 let spec = three_member_spec();
20147 assert!(
20148 spec.validate().is_ok(),
20149 "the canonical Replicated placement fixture must pass \
20150 `validate_placement` — every per-axis arm short-circuits on \
20151 valid input under the outer accessor's reference projection",
20152 );
20153 assert_eq!(
20154 spec.placement().estrategia(),
20155 PlacementStrategy::Replicated,
20156 "the outer accessor's reference projection must be the \
20157 canonical Replicated fixture's strategy",
20158 );
20159 assert_eq!(
20160 spec.placement().clusters(),
20161 &["rio", "mar"],
20162 "the outer accessor's reference projection must be the \
20163 canonical Replicated fixture's cluster pool",
20164 );
20165 }
20166
20167 #[test]
20168 fn aplicacao_spec_entrada_returns_entrada_option_ref_byte_equal_across_permutations() {
20169 // The canonical per-`:entrada` outer-composite-optional-
20170 // reference-shape pin: [`AplicacaoSpec::entrada`] must return
20171 // the `:entrada` typed `Option<Entrada>` verbatim as an
20172 // `Option<&Entrada>` reference over the same backing storage
20173 // the raw `self.entrada.as_ref()` field access borrows from,
20174 // byte-equal across every representative fixture in the
20175 // accept-set — the author-omitted `None` shape (the
20176 // "internal-only mesh" partition every downstream external-
20177 // gateway emitter treats as "emit nothing"), the minimal
20178 // singleton `:entrada` composite (host + destination + empty
20179 // paths + default port), the paths-carrying composite (the
20180 // canonical `three_member_spec` fixture's ["/api" "/health"]
20181 // path-list shape every HTTPRoute per-rule fan-out emitter
20182 // reads), and the non-default port composite (the canonical
20183 // custom-port shape the port-fallback resolver reads).
20184 //
20185 // Pins against a future silent detour that returned a fresh-
20186 // cloned `Entrada` copy (which would type-check via a `Clone`
20187 // impl but silently break every downstream caller that
20188 // relied on the reference sharing the composite's backing
20189 // identity), a reference to an operator-resolved overlay
20190 // (the future per-cluster `:entrada-overrides` slot the
20191 // MESH-COMPOSITION §V federation roadmap acknowledges — its
20192 // resolution must land at exactly this accessor body, not
20193 // silently divert the raw slot away from a second consumer),
20194 // a `None` → `Some(Entrada::default)` cluster-default
20195 // projection (which would collapse the load-bearing
20196 // "author-omitted `:entrada` ⇒ internal-only mesh" partition
20197 // the peer `gateway_routes` early-return + `feira app graph`
20198 // internal-only-mesh partition both read), or an axis-
20199 // shuffled projection (a future detour that swapped
20200 // `host` and `para` through the accessor would silently
20201 // split the paired `validate` per-`:entrada` shape-and-
20202 // membership gate's traversal input from the peer
20203 // `caixa_mesh::gateway_routes` Gateway + HTTPRoute emitter's
20204 // fan-out input from the peer `feira app graph` external-
20205 // gateway summary line).
20206 //
20207 // Peer of the sibling M3
20208 // `aplicacao_spec_politicas_returns_politicas_ref_byte_equal_across_permutations`
20209 // (534dc21) `&MeshPolicy` byte-equal pin on the per-
20210 // `:politicas` outer mesh-policy composite-reference axis
20211 // and of the sibling M3
20212 // `aplicacao_spec_placement_returns_placement_ref_byte_equal_across_permutations`
20213 // (9abb8f0) `&Placement` byte-equal pin on the per-
20214 // `:placement` outer distribution-composite composite-
20215 // reference axis — extends the outer-accessor byte-equal-
20216 // projection discipline onto the last unlifted outermost M3
20217 // mesh-slot type's per-Aplicacao external-gateway composite-
20218 // reference axis, the third and final `&Composite`-return
20219 // accessor on the outer [`AplicacaoSpec`] type.
20220 let fixtures: Vec<Option<Entrada>> = vec![
20221 None,
20222 Some(Entrada {
20223 host: "checkout.quero.cloud".into(),
20224 para: "cart".into(),
20225 paths: Vec::new(),
20226 port: DEFAULT_SERVICO_PORT,
20227 }),
20228 Some(Entrada {
20229 host: "checkout.quero.cloud".into(),
20230 para: "cart".into(),
20231 paths: vec!["/api".into(), "/health".into()],
20232 port: DEFAULT_SERVICO_PORT,
20233 }),
20234 Some(Entrada {
20235 host: "checkout.quero.cloud".into(),
20236 para: "cart".into(),
20237 paths: vec!["/api".into()],
20238 port: 9443,
20239 }),
20240 ];
20241 for entrada in fixtures {
20242 let s = AplicacaoSpec {
20243 membros: vec![membro("catalog", "^0.1"), membro("cart", "^0.1")],
20244 contratos: Vec::new(),
20245 politicas: MeshPolicy::default(),
20246 placement: Placement::default(),
20247 entrada: entrada.clone(),
20248 };
20249 assert_eq!(
20250 s.entrada(),
20251 entrada.as_ref(),
20252 "AplicacaoSpec::entrada must return :entrada verbatim \
20253 (got {:?}, expected {:?})",
20254 s.entrada(),
20255 entrada.as_ref(),
20256 );
20257 match (s.entrada(), s.entrada.as_ref()) {
20258 (Some(a), Some(b)) => assert!(
20259 std::ptr::eq(a, b),
20260 "AplicacaoSpec::entrada accessor and \
20261 self.entrada.as_ref() field access must borrow \
20262 the same backing storage — the accessor is the \
20263 substrate-primitive typed dispatch every \
20264 downstream external-gateway composite consumer \
20265 must route through, and a reference-identity \
20266 split would silently break every consumer that \
20267 relied on the borrow sharing the composite's \
20268 storage",
20269 ),
20270 (None, None) => {}
20271 _ => panic!(
20272 "AplicacaoSpec::entrada presence bit must byte-\
20273 equal self.entrada.is_some() — a presence-bit \
20274 drift would silently split the paired `validate` \
20275 per-`:entrada` shape-and-membership gate's \
20276 traversal head from the peer \
20277 caixa-mesh gateway_routes early-return partition \
20278 from the peer `feira app graph` internal-only-\
20279 mesh partition",
20280 ),
20281 }
20282 assert_eq!(
20283 s.entrada().is_some(),
20284 s.entrada.is_some(),
20285 "AplicacaoSpec::entrada().is_some() must byte-equal \
20286 self.entrada.is_some() — a presence-bit drift would \
20287 silently split every downstream `Option<&Entrada>` \
20288 consumer's partition on the internal-only-mesh arm",
20289 );
20290 }
20291 }
20292
20293 #[test]
20294 fn validate_reads_through_lifted_entrada_accessor() {
20295 // Multi-consumer coherence pin: the [`AplicacaoSpec::validate`]
20296 // per-`:entrada` shape-and-membership gate (`if let Some(e) =
20297 // self.entrada() { … }`, followed by the per-axis fan-out
20298 // `validate_entrada_para(&e.para)` /
20299 // `EntradaMemberMissing` membership lookup /
20300 // `EmptyEntradaHost` / `validate_entrada_host(&e.host)` /
20301 // per-`e.paths` `validate_entrada_path` traversal) must key
20302 // off the lifted outer accessor, so any future rebrand on
20303 // the typed slot's outer-composite reader shape lands at
20304 // exactly one place. Pins the multi-axis coherence by
20305 // exercising each per-axis refusal end-to-end: (1) the
20306 // author-omitted `None` shape short-circuits past every
20307 // per-`:entrada` refusal (the internal-only mesh partition
20308 // the accessor's `None` arm names), (2) `EntradaMemberMissing`
20309 // fires on a well-shaped but phantom `:para` under the outer
20310 // accessor's reference projection, and (3) the canonical
20311 // `three_member_spec` `:entrada` fixture passes `validate`
20312 // under the outer accessor's reference projection.
20313 //
20314 // Peer of the sibling M3
20315 // [`validate_politicas_reads_through_lifted_politicas_accessor`]
20316 // (534dc21) multi-axis coherence pin on the per-`:politicas`
20317 // outer mesh-policy composite-reference axis and the sibling
20318 // M3
20319 // [`validate_placement_reads_through_lifted_placement_accessor`]
20320 // (9abb8f0) multi-axis coherence pin on the per-`:placement`
20321 // outer distribution-composite composite-reference axis —
20322 // extends the multi-consumer coherence discipline onto the
20323 // last unlifted outermost M3 mesh-slot type's per-Aplicacao
20324 // external-gateway composite-reference axis, the third and
20325 // final `&Composite`-return accessor on the outer
20326 // [`AplicacaoSpec`] type.
20327
20328 // (1) `None` :entrada — the internal-only-mesh partition
20329 // short-circuits past every per-`:entrada` refusal. The outer
20330 // accessor's reference projection reaches the fall-through
20331 // `Ok(())` on the `None` arm without any per-axis refusal
20332 // firing.
20333 let mut spec = three_member_spec();
20334 spec.entrada = None;
20335 assert!(
20336 spec.validate().is_ok(),
20337 "an author-omitted `:entrada` must pass `validate` — the \
20338 internal-only-mesh partition short-circuits past every \
20339 per-`:entrada` refusal under the outer accessor's \
20340 reference projection",
20341 );
20342 assert!(
20343 spec.entrada().is_none(),
20344 "the outer accessor's reference projection must name the \
20345 internal-only-mesh partition per the `None` fixture",
20346 );
20347
20348 // (2) `EntradaMemberMissing` refusal under the outer accessor's
20349 // reference projection: a well-shaped but phantom `:para` must
20350 // trip the membership-lookup refusal. The gate's second arm
20351 // reads `e.para` on the reference returned by the outer
20352 // accessor.
20353 let mut spec = three_member_spec();
20354 if let Some(e) = spec.entrada.as_mut() {
20355 e.para = "phantom".into();
20356 }
20357 assert_eq!(
20358 spec.validate().unwrap_err(),
20359 AplicacaoError::EntradaMemberMissing {
20360 para: "phantom".into(),
20361 },
20362 );
20363 match (spec.entrada(), spec.entrada.as_ref()) {
20364 (Some(a), Some(b)) => assert!(
20365 std::ptr::eq(a, b),
20366 "the `validate` per-`:entrada` gate's traversal head \
20367 must be the same backing composite the accessor's \
20368 reference projection borrows from",
20369 ),
20370 _ => panic!("fixture must carry Some(:entrada)"),
20371 }
20372
20373 // (3) Canonical `three_member_spec` `:entrada` fixture passes
20374 // `validate` — every per-axis arm reaches the fall-through
20375 // `Ok(())` without any per-axis refusal firing under the
20376 // outer accessor's reference projection.
20377 let spec = three_member_spec();
20378 assert!(
20379 spec.validate().is_ok(),
20380 "the canonical `:entrada` fixture must pass `validate` — \
20381 every per-axis arm short-circuits on valid input under \
20382 the outer accessor's reference projection",
20383 );
20384 assert!(
20385 spec.entrada().is_some(),
20386 "the outer accessor's reference projection must be the \
20387 canonical `:entrada` fixture's composite",
20388 );
20389 }
20390
20391 #[test]
20392 fn port_for_destination_reads_through_lifted_entrada_accessor() {
20393 // Peer coherence pin: the
20394 // [`AplicacaoSpec::port_for_destination`] per-destination
20395 // L4-port fallback resolver's composite-projection seed
20396 // (`self.entrada().filter(…).map_or(…)`) must key off the
20397 // lifted outer accessor. Pins the coherence by exercising
20398 // the resolver end-to-end: (1) the `None` `:entrada` shape
20399 // falls through to `DEFAULT_SERVICO_PORT` under the outer
20400 // accessor's reference projection, (2) a non-matching
20401 // destination falls through to `DEFAULT_SERVICO_PORT` under
20402 // the outer accessor's reference projection, and (3) the
20403 // matching destination resolves to the `:entrada :port`
20404 // value under the outer accessor's reference projection.
20405 //
20406 // Peer of the sibling
20407 // [`validate_reads_through_lifted_entrada_accessor`] multi-
20408 // consumer coherence pin on the same per-`:entrada` outer-
20409 // composite axis — extends the multi-consumer coherence
20410 // discipline onto the second per-`:entrada` production
20411 // consumer, the L4-port fallback resolver.
20412
20413 // (1) `None` :entrada — the resolver's `filter(…).map_or(…)`
20414 // seed falls through to `DEFAULT_SERVICO_PORT` on the `None`
20415 // arm under the outer accessor's reference projection.
20416 let mut spec = three_member_spec();
20417 spec.entrada = None;
20418 assert_eq!(
20419 spec.port_for_destination("cart"),
20420 DEFAULT_SERVICO_PORT,
20421 "the port-fallback resolver must fall through to \
20422 DEFAULT_SERVICO_PORT on an author-omitted `:entrada` \
20423 under the outer accessor's reference projection",
20424 );
20425
20426 // (2) Non-matching destination — the resolver's `filter(…)`
20427 // arm rejects a mismatched destination and falls through
20428 // to `DEFAULT_SERVICO_PORT` under the outer accessor's
20429 // reference projection.
20430 let mut spec = three_member_spec();
20431 if let Some(e) = spec.entrada.as_mut() {
20432 e.para = "cart".into();
20433 e.port = 9443;
20434 }
20435 assert_eq!(
20436 spec.port_for_destination("catalog"),
20437 DEFAULT_SERVICO_PORT,
20438 "the port-fallback resolver must fall through to \
20439 DEFAULT_SERVICO_PORT on a non-matching destination \
20440 under the outer accessor's reference projection",
20441 );
20442
20443 // (3) Matching destination — the resolver's `map_or(…)` arm
20444 // returns the `:entrada :port` value under the outer
20445 // accessor's reference projection.
20446 let mut spec = three_member_spec();
20447 if let Some(e) = spec.entrada.as_mut() {
20448 e.para = "cart".into();
20449 e.port = 9443;
20450 }
20451 assert_eq!(
20452 spec.port_for_destination("cart"),
20453 9443,
20454 "the port-fallback resolver must return the \
20455 `:entrada :port` value on a matching destination \
20456 under the outer accessor's reference projection",
20457 );
20458 }
20459
20460 #[test]
20461 fn mesh_policy_mtls_required_returns_mtls_required_option_byte_equal_across_permutations() {
20462 // The canonical per-`:politicas` `:mtls-required` mTLS-
20463 // enforcement-toggle scalar pin: [`MeshPolicy::mtls_required`]
20464 // must return the `:politicas :mtls-required` typed bool
20465 // verbatim as an `Option<bool>`, byte-equal to the raw field
20466 // access across every value in the three-way accept-set —
20467 // `None` (cluster default applies), `Some(true)` (mTLS
20468 // handshake enforced — the sandboxing-by-default arm the
20469 // MeshPolicy's docstring names), `Some(false)` (handshake
20470 // skipped — the explicit debug-edge opt-out).
20471 //
20472 // Peer of the sibling per-`:placement` [`Placement::shard_key`]
20473 // (7cd2a28) accessor pin on the `Option<&str>` optional-scalar
20474 // axis, extended to the peer per-`:politicas` `Option<Copy-T>`
20475 // shape — first `Option<Copy-T>`-return accessor on the M3
20476 // mesh-slot family. Pins against a future silent detour that
20477 // re-derived the toggle from a peer axis (an accidental
20478 // `.circuit_breaker.is_some()` collapse that assumed mTLS on
20479 // whenever a breaker is set), a `None` → `Some(false)` cluster-
20480 // default projection (the canonical `Option<bool>` → `bool`
20481 // collapse footgun the surrounding `is_empty()` predicate
20482 // guards on the peer emptiness axis), or a `Some(true)` /
20483 // `Some(false)` variant swap that landed on one consumer
20484 // without the other.
20485 for required in [None, Some(true), Some(false)] {
20486 let p = MeshPolicy {
20487 mtls_required: required,
20488 ..MeshPolicy::default()
20489 };
20490 assert_eq!(
20491 p.mtls_required(),
20492 required,
20493 "MeshPolicy::mtls_required must return :politicas \
20494 :mtls-required verbatim (got {:?}, expected {required:?})",
20495 p.mtls_required(),
20496 );
20497 assert_eq!(
20498 p.mtls_required(),
20499 p.mtls_required,
20500 "MeshPolicy::mtls_required must byte-equal the raw \
20501 .mtls_required field access across every value in the \
20502 three-way accept-set",
20503 );
20504 }
20505 }
20506
20507 #[test]
20508 fn mesh_policy_is_empty_mtls_required_arm_routes_through_accessor() {
20509 // Composition pin: [`MeshPolicy::is_empty`]'s `mtls_required`
20510 // arm must key off [`MeshPolicy::mtls_required`], not the raw
20511 // `.mtls_required` field access. Structurally: toggling ONLY
20512 // the `mtls_required` slot on an otherwise-default MeshPolicy
20513 // must flip `is_empty()` from `true` (all-`None`) to `false`
20514 // (one axis carries a value); the flip must be observed for
20515 // both `Some(true)` and `Some(false)` since the emptiness
20516 // semantic reads "any axis carries a value" — not "any axis
20517 // carries a truthy value" — the same non-collapsing shape the
20518 // sibling M2 [`crate::LimitsSpec::is_empty`] /
20519 // [`crate::BehaviorSpec::is_empty`] predicates carry on their
20520 // peer `Option<T>`-typed slot surfaces.
20521 //
20522 // Pins against a future silent detour that re-derived the
20523 // emptiness predicate off a peer axis (an accidental
20524 // `.rate_limit.is_none()`-only chain that dropped the
20525 // `mtls_required` arm entirely), a `mtls_required == Some(_)`
20526 // collapse to a truthy-only check (which would silently
20527 // classify `Some(false)` as empty), or an accessor-side
20528 // detour that no longer names the substrate-primitive typed
20529 // dispatch (an accidental `self.mtls_required.unwrap_or(false)
20530 // == false` fallback in the accessor that would silently
20531 // classify both `None` and `Some(false)` as the same value).
20532 //
20533 // Peer of the sibling per-`:placement` [`Placement::shard_key`]
20534 // (7cd2a28) accessor-composition pin on the sibling optional-
20535 // scalar axis — same "the emptiness / shape-gate predicate
20536 // must route through the substrate-primitive typed dispatch"
20537 // discipline extended onto the peer per-`:politicas` emptiness
20538 // predicate.
20539 let empty = MeshPolicy::default();
20540 assert!(
20541 empty.is_empty(),
20542 "MeshPolicy::default() must be is_empty() — every axis \
20543 defaults to None",
20544 );
20545 for required in [Some(true), Some(false)] {
20546 let p = MeshPolicy {
20547 mtls_required: required,
20548 ..MeshPolicy::default()
20549 };
20550 assert!(
20551 !p.is_empty(),
20552 "MeshPolicy::is_empty must return false when \
20553 :mtls-required is {required:?} — the emptiness \
20554 predicate reads \"any axis carries a value\", not \
20555 \"any axis carries a truthy value\"",
20556 );
20557 assert_eq!(
20558 p.mtls_required().is_none(),
20559 p.is_empty(),
20560 "when :mtls-required is the only set axis, \
20561 is_empty() must equal mtls_required().is_none() — \
20562 the accessor and the emptiness predicate must \
20563 route through the same substrate-primitive typed \
20564 dispatch on the :mtls-required arm",
20565 );
20566 }
20567 }
20568
20569 #[test]
20570 fn mesh_policy_mtls_required_projects_option_bool_by_copy() {
20571 // The by-copy pin: [`MeshPolicy::mtls_required`] returns
20572 // `Option<bool>` by copy — `Option<bool>` is `Copy` and the
20573 // accessor must return by value, not by reference. Peer of the
20574 // sibling per-`:placement` [`Placement::shard_key`] (7cd2a28)
20575 // borrow-invariant pin on the sibling `Option<String>` slot,
20576 // but extended onto the peer `Option<bool>` copy-invariant
20577 // shape — the accessor's returned `Option<bool>` must outlive
20578 // `&self` (multiple calls must return equal values from a
20579 // dropped-`&self` copy, since the returned Option carries no
20580 // borrow), and calling the accessor twice on the same
20581 // MeshPolicy must yield the same `Option<bool>` verbatim
20582 // (idempotent, no side effects on `&self`).
20583 //
20584 // Pins against a future silent detour that returned
20585 // `Option<&bool>` (which would type-check but silently break
20586 // every downstream caller — [`single_field_overlay`]'s first
20587 // parameter is `Option<T: Clone>`, and `&bool` would fold to a
20588 // detached copy at the call site), an accidental
20589 // `Option::as_ref()` projection (`self.mtls_required.as_ref()`
20590 // would also type-check but return `Option<&bool>`), or a
20591 // one-arm-only accessor that reads `Some(*b)` in the Some arm
20592 // but reads a fresh Default::default() in the None arm.
20593 for required in [None, Some(true), Some(false)] {
20594 let p = MeshPolicy {
20595 mtls_required: required,
20596 ..MeshPolicy::default()
20597 };
20598 let first = p.mtls_required();
20599 let second = p.mtls_required();
20600 assert_eq!(
20601 first, second,
20602 "MeshPolicy::mtls_required must be idempotent — two \
20603 successive calls on the same &self must return the \
20604 same Option<bool>",
20605 );
20606 assert_eq!(
20607 first, required,
20608 "MeshPolicy::mtls_required must return :politicas \
20609 :mtls-required verbatim by copy — got {first:?}, \
20610 expected {required:?}",
20611 );
20612 }
20613 }
20614
20615 #[test]
20616 fn mesh_policy_retries_returns_retries_option_byte_equal_across_permutations() {
20617 // The canonical per-`:politicas` `:retries` transient-failure-
20618 // retry-budget scalar pin: [`MeshPolicy::retries`] must return
20619 // the `:politicas :retries` typed `u32` verbatim as an
20620 // `Option<u32>`, byte-equal to the raw field access across every
20621 // representative value in the accept-set — `None` (cluster
20622 // default applies — typically "no retries beyond a single
20623 // dispatch attempt" the caixa-mesh `retry_overlay` builder
20624 // documents), `Some(1)` (the lower boundary of the
20625 // `1..=POLICY_RETRIES_MAX` accept-set the surrounding
20626 // `AplicacaoSpec::validate_politicas` gate carves out on the
20627 // sibling `PolicyRetriesZero` refusal), `Some(POLICY_RETRIES_MAX)`
20628 // (the upper boundary the same gate carves out on the sibling
20629 // `PolicyRetriesOverMax` refusal), and `Some(u32::MAX)` (a
20630 // past-the-guard sentinel that pins the accessor doesn't perform
20631 // a silent bounds-collapse at the return path).
20632 //
20633 // Sibling of the peer per-`:politicas`
20634 // [`MeshPolicy::mtls_required`] (c0110f1) accessor pin on the
20635 // sibling `Option<Copy-T>` optional-scalar axis, extended to the
20636 // peer per-`:politicas` `Option<u32>` shape — second
20637 // `Option<Copy-T>`-return accessor on the M3 mesh-slot family.
20638 // Pins against a future silent detour that re-derived the retry
20639 // cap from a peer axis (an accidental `.circuit_breaker
20640 // .as_ref().map(|b| b.max_failures)` collapse that read the
20641 // breaker's max-failure count as a retry budget), a
20642 // `None → Some(0)` cluster-default projection (which would
20643 // silently re-introduce the `PolicyRetriesZero` refusal case at
20644 // the emit boundary), or a bounds-collapsing accessor that
20645 // clamped the return through `POLICY_RETRIES_MAX` (the
20646 // `AplicacaoSpec::validate` gate owns the bounds; the accessor
20647 // must ship the raw slot verbatim so a validate-time gate
20648 // regression surfaces at the emit boundary rather than being
20649 // silently absorbed).
20650 for retries in [None, Some(1u32), Some(POLICY_RETRIES_MAX), Some(u32::MAX)] {
20651 let p = MeshPolicy {
20652 retries,
20653 ..MeshPolicy::default()
20654 };
20655 assert_eq!(
20656 p.retries(),
20657 retries,
20658 "MeshPolicy::retries must return :politicas :retries \
20659 verbatim (got {:?}, expected {retries:?})",
20660 p.retries(),
20661 );
20662 assert_eq!(
20663 p.retries(),
20664 p.retries,
20665 "MeshPolicy::retries must byte-equal the raw .retries \
20666 field access across every value in the accept-set",
20667 );
20668 }
20669 }
20670
20671 #[test]
20672 fn mesh_policy_is_empty_retries_arm_routes_through_accessor() {
20673 // Composition pin: [`MeshPolicy::is_empty`]'s `retries` arm
20674 // must key off [`MeshPolicy::retries`], not the raw `.retries`
20675 // field access. Structurally: toggling ONLY the `retries` slot
20676 // on an otherwise-default MeshPolicy must flip `is_empty()`
20677 // from `true` (all-`None`) to `false` (one axis carries a
20678 // value); the flip must be observed for every value in the
20679 // accept-set the surrounding `AplicacaoSpec::validate_politicas`
20680 // gate accepts (`Some(1)`, `Some(POLICY_RETRIES_MAX)`), since
20681 // the emptiness semantic reads "any axis carries a value" —
20682 // not "any axis carries a value the validate gate accepts" —
20683 // the same non-collapsing shape the peer M2
20684 // [`crate::LimitsSpec::is_empty`] /
20685 // [`crate::BehaviorSpec::is_empty`] predicates carry.
20686 //
20687 // Pins against a future silent detour that re-derived the
20688 // emptiness predicate off a peer axis (an accidental
20689 // `.rate_limit.is_none()`-only chain that dropped the
20690 // `retries` arm entirely), a `retries == Some(_)` collapse
20691 // that key-off a validate-gate-clamped bounds check (which
20692 // would silently classify a past-the-guard `Some(u32::MAX)`
20693 // as empty because it fails the `1..=POLICY_RETRIES_MAX`
20694 // check), or an accessor-side detour that no longer names the
20695 // substrate-primitive typed dispatch.
20696 //
20697 // Sibling of the peer per-`:politicas`
20698 // [`MeshPolicy::mtls_required`] (c0110f1) accessor-composition
20699 // pin on the sibling `Option<Copy-T>` optional-scalar axis —
20700 // same "the emptiness predicate must route through the
20701 // substrate-primitive typed dispatch" discipline extended onto
20702 // the peer per-`:politicas` `Option<u32>` axis.
20703 let empty = MeshPolicy::default();
20704 assert!(
20705 empty.is_empty(),
20706 "MeshPolicy::default() must be is_empty() — every axis \
20707 defaults to None",
20708 );
20709 for retries in [Some(1u32), Some(POLICY_RETRIES_MAX)] {
20710 let p = MeshPolicy {
20711 retries,
20712 ..MeshPolicy::default()
20713 };
20714 assert!(
20715 !p.is_empty(),
20716 "MeshPolicy::is_empty must return false when \
20717 :retries is {retries:?} — the emptiness \
20718 predicate reads \"any axis carries a value\", not \
20719 \"any axis carries a value the validate gate \
20720 accepts\"",
20721 );
20722 assert_eq!(
20723 p.retries().is_none(),
20724 p.is_empty(),
20725 "when :retries is the only set axis, is_empty() \
20726 must equal retries().is_none() — the accessor and \
20727 the emptiness predicate must route through the same \
20728 substrate-primitive typed dispatch on the :retries \
20729 arm",
20730 );
20731 }
20732 }
20733
20734 #[test]
20735 fn mesh_policy_retries_projects_option_u32_by_copy() {
20736 // The by-copy pin: [`MeshPolicy::retries`] returns
20737 // `Option<u32>` by copy — `Option<u32>` is `Copy` and the
20738 // accessor must return by value, not by reference. Sibling of
20739 // the peer per-`:politicas` [`MeshPolicy::mtls_required`]
20740 // (c0110f1) by-copy pin on the peer `Option<bool>` slot,
20741 // extended onto the sibling `Option<u32>` copy-invariant
20742 // shape — the accessor's returned `Option<u32>` must outlive
20743 // `&self` (multiple calls must return equal values from a
20744 // dropped-`&self` copy, since the returned Option carries no
20745 // borrow), and calling the accessor twice on the same
20746 // MeshPolicy must yield the same `Option<u32>` verbatim
20747 // (idempotent, no side effects on `&self`).
20748 //
20749 // Pins against a future silent detour that returned
20750 // `Option<&u32>` (which would type-check but silently break
20751 // every downstream caller — [`crate::render::single_field_overlay`]'s
20752 // first parameter is `Option<T: Clone>`, and `&u32` would
20753 // fold to a detached copy at the call site), an accidental
20754 // `Option::as_ref()` projection (`self.retries.as_ref()` would
20755 // also type-check but return `Option<&u32>`), or a one-arm-
20756 // only accessor that reads `Some(*n)` in the Some arm but
20757 // reads a fresh `Default::default()` (`0_u32`) in the None
20758 // arm.
20759 for retries in [None, Some(1u32), Some(POLICY_RETRIES_MAX), Some(u32::MAX)] {
20760 let p = MeshPolicy {
20761 retries,
20762 ..MeshPolicy::default()
20763 };
20764 let first = p.retries();
20765 let second = p.retries();
20766 assert_eq!(
20767 first, second,
20768 "MeshPolicy::retries must be idempotent — two \
20769 successive calls on the same &self must return the \
20770 same Option<u32>",
20771 );
20772 assert_eq!(
20773 first, retries,
20774 "MeshPolicy::retries must return :politicas :retries \
20775 verbatim by copy — got {first:?}, expected {retries:?}",
20776 );
20777 }
20778 }
20779
20780 #[test]
20781 fn mesh_policy_timeout_returns_timeout_option_byte_equal_across_permutations() {
20782 // The canonical per-`:politicas` `:timeout` Gateway-API-mesh
20783 // per-call-deadline scalar pin: [`MeshPolicy::timeout`] must
20784 // return the `:politicas :timeout` typed [`Duration`] verbatim
20785 // as an `Option<Duration>`, byte-equal to the raw field access
20786 // across every representative value in the accept-set — `None`
20787 // (cluster default applies — typically the gateway class's
20788 // implementation-side per-request wall-clock cap the caixa-mesh
20789 // `timeout_overlay` builder documents), `Some(Duration::from_millis(1))`
20790 // (the lower boundary of the `1ms..=POLICY_TIMEOUT_MAX` accept-
20791 // set the surrounding `AplicacaoSpec::validate_politicas` gate
20792 // carves out on the sibling `PolicyTimeoutZero` /
20793 // `PolicyTimeoutNotCanonical` refusals), `Some(POLICY_TIMEOUT_MAX)`
20794 // (the upper boundary the same gate carves out on the sibling
20795 // `PolicyTimeoutExceedsCap` refusal), `Some(Duration::ZERO)`
20796 // (a past-the-guard sentinel that pins the accessor doesn't
20797 // perform a silent bounds-collapse into `None` on the zero-
20798 // Duration arm — validate rejects zero but the accessor must
20799 // ship the raw slot verbatim), and `Some(Duration::MAX)` (a
20800 // past-the-guard sentinel that pins the accessor doesn't
20801 // perform a silent bounds-collapse at the return path).
20802 //
20803 // Sibling of the peer per-`:politicas`
20804 // [`MeshPolicy::retries`] (bdfb399) accessor pin on the sibling
20805 // `Option<u32>` optional-scalar axis and the peer per-
20806 // `:politicas` [`MeshPolicy::mtls_required`] (c0110f1) accessor
20807 // pin on the sibling `Option<bool>` optional-scalar axis,
20808 // extended onto the peer per-`:politicas` `Option<Duration>`
20809 // shape — third `Option<Copy-T>`-return accessor on the M3
20810 // mesh-slot family. Pins against a future silent detour that
20811 // re-derived the per-call cap from a peer axis (an accidental
20812 // `.circuit_breaker.as_ref().map(|b| b.window)` collapse that
20813 // read the breaker's rolling-window duration as a per-call
20814 // deadline), a `None → Some(Duration::MAX)` cluster-default
20815 // projection (which would silently re-introduce the
20816 // MESH-COMPOSITION §V CSE-invariant-violating "no infinite
20817 // blocking" arm at the emit boundary), or a bounds-collapsing
20818 // accessor that clamped the return through `POLICY_TIMEOUT_MAX`
20819 // (the `AplicacaoSpec::validate` gate owns the bounds; the
20820 // accessor must ship the raw slot verbatim so a validate-time
20821 // gate regression surfaces at the emit boundary rather than
20822 // being silently absorbed).
20823 for timeout in [
20824 None,
20825 Some(Duration::from_millis(1)),
20826 Some(POLICY_TIMEOUT_MAX),
20827 Some(Duration::ZERO),
20828 Some(Duration::MAX),
20829 ] {
20830 let p = MeshPolicy {
20831 timeout,
20832 ..MeshPolicy::default()
20833 };
20834 assert_eq!(
20835 p.timeout(),
20836 timeout,
20837 "MeshPolicy::timeout must return :politicas :timeout \
20838 verbatim (got {:?}, expected {timeout:?})",
20839 p.timeout(),
20840 );
20841 assert_eq!(
20842 p.timeout(),
20843 p.timeout,
20844 "MeshPolicy::timeout must byte-equal the raw .timeout \
20845 field access across every value in the accept-set",
20846 );
20847 }
20848 }
20849
20850 #[test]
20851 fn mesh_policy_is_empty_timeout_arm_routes_through_accessor() {
20852 // Composition pin: [`MeshPolicy::is_empty`]'s `timeout` arm
20853 // must key off [`MeshPolicy::timeout`], not the raw `.timeout`
20854 // field access. Structurally: toggling ONLY the `timeout` slot
20855 // on an otherwise-default MeshPolicy must flip `is_empty()`
20856 // from `true` (all-`None`) to `false` (one axis carries a
20857 // value); the flip must be observed for every value in the
20858 // accept-set the surrounding `AplicacaoSpec::validate_politicas`
20859 // gate accepts (`Some(Duration::from_millis(1))`,
20860 // `Some(POLICY_TIMEOUT_MAX)`), since the emptiness semantic
20861 // reads "any axis carries a value" — not "any axis carries a
20862 // value the validate gate accepts" — the same non-collapsing
20863 // shape the peer M2 [`crate::LimitsSpec::is_empty`] /
20864 // [`crate::BehaviorSpec::is_empty`] predicates carry.
20865 //
20866 // Pins against a future silent detour that re-derived the
20867 // emptiness predicate off a peer axis (an accidental
20868 // `.rate_limit.is_none()`-only chain that dropped the
20869 // `timeout` arm entirely), a `timeout == Some(_)` collapse
20870 // that key-off a validate-gate-clamped bounds check (which
20871 // would silently classify a past-the-guard `Some(Duration::MAX)`
20872 // as empty because it fails the `1ms..=POLICY_TIMEOUT_MAX`
20873 // check), or an accessor-side detour that no longer names the
20874 // substrate-primitive typed dispatch.
20875 //
20876 // Sibling of the peer per-`:politicas`
20877 // [`MeshPolicy::retries`] (bdfb399) accessor-composition pin on
20878 // the sibling `Option<u32>` optional-scalar axis and the peer
20879 // per-`:politicas` [`MeshPolicy::mtls_required`] (c0110f1)
20880 // accessor-composition pin on the sibling `Option<bool>`
20881 // optional-scalar axis — same "the emptiness predicate must
20882 // route through the substrate-primitive typed dispatch"
20883 // discipline extended onto the peer per-`:politicas`
20884 // `Option<Duration>` axis.
20885 let empty = MeshPolicy::default();
20886 assert!(
20887 empty.is_empty(),
20888 "MeshPolicy::default() must be is_empty() — every axis \
20889 defaults to None",
20890 );
20891 for timeout in [Some(Duration::from_millis(1)), Some(POLICY_TIMEOUT_MAX)] {
20892 let p = MeshPolicy {
20893 timeout,
20894 ..MeshPolicy::default()
20895 };
20896 assert!(
20897 !p.is_empty(),
20898 "MeshPolicy::is_empty must return false when \
20899 :timeout is {timeout:?} — the emptiness \
20900 predicate reads \"any axis carries a value\", not \
20901 \"any axis carries a value the validate gate \
20902 accepts\"",
20903 );
20904 assert_eq!(
20905 p.timeout().is_none(),
20906 p.is_empty(),
20907 "when :timeout is the only set axis, is_empty() \
20908 must equal timeout().is_none() — the accessor and \
20909 the emptiness predicate must route through the same \
20910 substrate-primitive typed dispatch on the :timeout \
20911 arm",
20912 );
20913 }
20914 }
20915
20916 #[test]
20917 fn mesh_policy_timeout_projects_option_duration_by_copy() {
20918 // The by-copy pin: [`MeshPolicy::timeout`] returns
20919 // `Option<Duration>` by copy — `Option<Duration>` is `Copy`
20920 // and the accessor must return by value, not by reference.
20921 // Sibling of the peer per-`:politicas`
20922 // [`MeshPolicy::retries`] (bdfb399) by-copy pin on the
20923 // sibling `Option<u32>` optional-scalar axis and the peer
20924 // per-`:politicas` [`MeshPolicy::mtls_required`] (c0110f1)
20925 // by-copy pin on the sibling `Option<bool>` optional-scalar
20926 // axis, extended onto the peer per-`:politicas`
20927 // `Option<Duration>` copy-invariant shape — the accessor's
20928 // returned `Option<Duration>` must outlive `&self` (multiple
20929 // calls must return equal values from a dropped-`&self`
20930 // copy, since the returned Option carries no borrow), and
20931 // calling the accessor twice on the same MeshPolicy must
20932 // yield the same `Option<Duration>` verbatim (idempotent, no
20933 // side effects on `&self`).
20934 //
20935 // Pins against a future silent detour that returned
20936 // `Option<&Duration>` (which would type-check but silently
20937 // break every downstream caller — [`crate::render::single_field_overlay`]'s
20938 // first parameter is `Option<T: Clone>`, and `&Duration`
20939 // would fold to a detached copy at the call site), an
20940 // accidental `Option::as_ref()` projection
20941 // (`self.timeout.as_ref()` would also type-check but return
20942 // `Option<&Duration>`), or a one-arm-only accessor that
20943 // reads `Some(*d)` in the Some arm but reads a fresh
20944 // `Default::default()` (`Duration::ZERO`) in the None arm
20945 // (which would silently re-classify every unset `:timeout`
20946 // as the `PolicyTimeoutZero`-refused zero-Duration value at
20947 // the accessor boundary).
20948 for timeout in [
20949 None,
20950 Some(Duration::from_millis(1)),
20951 Some(POLICY_TIMEOUT_MAX),
20952 Some(Duration::ZERO),
20953 Some(Duration::MAX),
20954 ] {
20955 let p = MeshPolicy {
20956 timeout,
20957 ..MeshPolicy::default()
20958 };
20959 let first = p.timeout();
20960 let second = p.timeout();
20961 assert_eq!(
20962 first, second,
20963 "MeshPolicy::timeout must be idempotent — two \
20964 successive calls on the same &self must return the \
20965 same Option<Duration>",
20966 );
20967 assert_eq!(
20968 first, timeout,
20969 "MeshPolicy::timeout must return :politicas :timeout \
20970 verbatim by copy — got {first:?}, expected {timeout:?}",
20971 );
20972 }
20973 }
20974
20975 #[test]
20976 fn mesh_policy_rate_limit_returns_rate_limit_option_byte_equal_across_permutations() {
20977 // The canonical per-`:politicas` `:rate-limit` Envoy-
20978 // `local_rate_limit`-mesh token-bucket-declaration scalar pin:
20979 // [`MeshPolicy::rate_limit`] must return the `:politicas
20980 // :rate-limit` typed [`RateLimit`] verbatim as an
20981 // `Option<RateLimit>`, byte-equal to the raw field access
20982 // across every representative value in the accept-set — `None`
20983 // (cluster default applies — no per-Aplicacao rate declaration,
20984 // the gateway-class per-listener default arm the future caixa-
20985 // mesh `local_rate_limit_overlay` emitter documents),
20986 // `Some(RateLimit { rate: 1, window: Duration::from_secs(1) })`
20987 // (the lower boundary of the `1..=POLICY_RATE_LIMIT_MAX` rate
20988 // accept-set the surrounding
20989 // [`AplicacaoSpec::validate_politicas`] gate carves out on the
20990 // sibling `PolicyRateLimitZero` refusal, paired with the
20991 // canonical-window "1 second" arm of the three-unit
20992 // `{"s", "m", "h"}` [`is_canonical_rate_limit_window`] bijection),
20993 // `Some(RateLimit { rate: POLICY_RATE_LIMIT_MAX, window: Duration::from_secs(3600) })`
20994 // (the upper boundary the same gate carves out on the sibling
20995 // `PolicyRateLimitExceedsCap` refusal, paired with the
20996 // canonical-window "1 hour" arm), `Some(RateLimit { rate: 0, window: Duration::ZERO })`
20997 // (a past-the-guard sentinel that pins the accessor doesn't
20998 // perform a silent bounds-collapse into `None` on the
20999 // zero-rate/zero-window arm — validate rejects zero but the
21000 // accessor must ship the raw slot verbatim so a validate-time
21001 // gate regression surfaces at the emit boundary rather than
21002 // being silently absorbed), and
21003 // `Some(RateLimit { rate: u32::MAX, window: Duration::MAX })`
21004 // (a past-the-guard sentinel that pins the accessor doesn't
21005 // perform a silent bounds-collapse at the return path).
21006 //
21007 // First `Option<Copy-composite-T>`-return accessor pin on the
21008 // M3 mesh-slot family (peer of the sibling per-`:politicas`
21009 // [`MeshPolicy::mtls_required`] c0110f1 `Option<bool>` /
21010 // [`MeshPolicy::retries`] bdfb399 `Option<u32>` /
21011 // [`MeshPolicy::timeout`] 7073d0f `Option<Duration>` primitive-
21012 // Copy accessor pins, extended onto the peer per-`:politicas`
21013 // composite-`Copy` shape — [`RateLimit`] is `#[derive(Copy)]`
21014 // and the accessor returns by value). Pins against a future
21015 // silent detour that re-derived the rate declaration from a
21016 // peer axis (an accidental
21017 // `.circuit_breaker.as_ref().map(|b| RateLimit { rate: b.max_failures, window: b.window })`
21018 // collapse that read the breaker's trip threshold + rolling
21019 // window as a rate declaration), a `None → Some(default())`
21020 // cluster-default projection (which would silently re-
21021 // introduce a "cluster default is 0/s" arm the emit boundary
21022 // would take as "declared but inert" — the canonical
21023 // declared-but-inert footgun the sibling
21024 // [`POLICY_RATE_LIMIT_MAX`] cap arm closes on the peer
21025 // amplification-shape axis), a bounds-collapsing accessor
21026 // that clamped `rl.rate` through [`POLICY_RATE_LIMIT_MAX`] or
21027 // clamped `rl.window` through [`is_canonical_rate_limit_window`]
21028 // (the [`AplicacaoSpec::validate`] gate owns the bounds; the
21029 // accessor must ship the raw slot verbatim), or a
21030 // by-reference detour (`Option<&RateLimit>`) that broke every
21031 // downstream consumer keying off `Option<RateLimit>` by-copy.
21032 for rl in [
21033 None,
21034 Some(RateLimit {
21035 rate: 1,
21036 window: Duration::from_secs(1),
21037 }),
21038 Some(RateLimit {
21039 rate: POLICY_RATE_LIMIT_MAX,
21040 window: Duration::from_secs(3600),
21041 }),
21042 Some(RateLimit {
21043 rate: 0,
21044 window: Duration::ZERO,
21045 }),
21046 Some(RateLimit {
21047 rate: u32::MAX,
21048 window: Duration::MAX,
21049 }),
21050 ] {
21051 let p = MeshPolicy {
21052 rate_limit: rl,
21053 ..MeshPolicy::default()
21054 };
21055 assert_eq!(
21056 p.rate_limit(),
21057 rl,
21058 "MeshPolicy::rate_limit must return :politicas :rate-limit \
21059 verbatim (got {:?}, expected {rl:?})",
21060 p.rate_limit(),
21061 );
21062 assert_eq!(
21063 p.rate_limit(),
21064 p.rate_limit,
21065 "MeshPolicy::rate_limit must byte-equal the raw \
21066 .rate_limit field access across every value in the \
21067 accept-set",
21068 );
21069 }
21070 }
21071
21072 #[test]
21073 fn mesh_policy_is_empty_rate_limit_arm_routes_through_accessor() {
21074 // Composition pin: [`MeshPolicy::is_empty`]'s `rate_limit` arm
21075 // must key off [`MeshPolicy::rate_limit`], not the raw
21076 // `.rate_limit` field access. Structurally: toggling ONLY the
21077 // `rate_limit` slot on an otherwise-default MeshPolicy must
21078 // flip `is_empty()` from `true` (all-`None`) to `false` (one
21079 // axis carries a value); the flip must be observed for every
21080 // representative value in the accept-set the surrounding
21081 // [`AplicacaoSpec::validate_politicas`] gate accepts
21082 // (`Some(RateLimit { rate: 1, window: 1s })`,
21083 // `Some(RateLimit { rate: POLICY_RATE_LIMIT_MAX, window: 1h })`),
21084 // since the emptiness semantic reads "any axis carries a
21085 // value" — not "any axis carries a value the validate gate
21086 // accepts" — the same non-collapsing shape the peer M2
21087 // [`crate::LimitsSpec::is_empty`] /
21088 // [`crate::BehaviorSpec::is_empty`] predicates carry.
21089 //
21090 // Pins against a future silent detour that re-derived the
21091 // emptiness predicate off a peer axis (an accidental
21092 // `.timeout.is_none()`-only chain that dropped the
21093 // `rate_limit` arm entirely — the last unlifted inline field
21094 // access on `is_empty` before this lift), a `rate_limit ==
21095 // Some(_)` collapse that key-off a validate-gate-clamped
21096 // bounds check (which would silently classify a past-the-
21097 // guard `Some(RateLimit { rate: 0, window: 0s })` as empty
21098 // because it fails the value-shape gate), or an accessor-
21099 // side detour that no longer names the substrate-primitive
21100 // typed dispatch.
21101 //
21102 // Fourth "the emptiness predicate must route through the
21103 // substrate-primitive typed dispatch" composition pin on the
21104 // M3 mesh-slot family — closes the last unlifted composition
21105 // arm on [`MeshPolicy::is_empty`] (peer of the sibling
21106 // per-`:politicas` [`MeshPolicy::mtls_required`] c0110f1 /
21107 // [`MeshPolicy::retries`] bdfb399 / [`MeshPolicy::timeout`]
21108 // 7073d0f is_empty-composition pins on the sibling primitive-
21109 // Copy axes, extended onto the peer per-`:politicas`
21110 // composite-Copy `Option<RateLimit>` axis).
21111 let empty = MeshPolicy::default();
21112 assert!(
21113 empty.is_empty(),
21114 "MeshPolicy::default() must be is_empty() — every axis \
21115 defaults to None",
21116 );
21117 for rl in [
21118 RateLimit {
21119 rate: 1,
21120 window: Duration::from_secs(1),
21121 },
21122 RateLimit {
21123 rate: POLICY_RATE_LIMIT_MAX,
21124 window: Duration::from_secs(3600),
21125 },
21126 ] {
21127 let p = MeshPolicy {
21128 rate_limit: Some(rl),
21129 ..MeshPolicy::default()
21130 };
21131 assert!(
21132 !p.is_empty(),
21133 "MeshPolicy::is_empty must return false when \
21134 :rate-limit is {rl:?} — the emptiness predicate \
21135 reads \"any axis carries a value\", not \"any axis \
21136 carries a value the validate gate accepts\"",
21137 );
21138 assert_eq!(
21139 p.rate_limit().is_none(),
21140 p.is_empty(),
21141 "when :rate-limit is the only set axis, is_empty() \
21142 must equal rate_limit().is_none() — the accessor \
21143 and the emptiness predicate must route through the \
21144 same substrate-primitive typed dispatch on the \
21145 :rate-limit arm",
21146 );
21147 }
21148 }
21149
21150 #[test]
21151 fn validate_politicas_rate_limit_zero_rate_arm_routes_through_accessor() {
21152 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
21153 // `:rate-limit` value-shape gate must key off
21154 // [`MeshPolicy::rate_limit`], not the raw `&p.rate_limit`
21155 // field bind. Structurally: a `MeshPolicy` whose only set
21156 // axis is a `Some(RateLimit { rate: 0, .. })` must surface
21157 // the `PolicyRateLimitZero` refusal exactly, and the same
21158 // MeshPolicy with the rate at the canonical lower boundary
21159 // `Some(RateLimit { rate: 1, window: 1s })` must pass validate.
21160 // The pair jointly pins the accessor + validate-gate
21161 // composition: any future silent detour that had the accessor
21162 // omit the `Some(RateLimit { rate: 0, .. })` arm (a
21163 // `.rate_limit().filter(|rl| rl.rate > 0)` collapse) would
21164 // silently absorb the `PolicyRateLimitZero` refusal at the
21165 // accessor boundary — the composition pin catches that at
21166 // caixa-core build time.
21167 //
21168 // Sibling of the peer [`validate_politicas`]
21169 // `:mtls-required` / `:retries` / `:timeout` composition pins
21170 // on the sibling primitive-Copy optional-scalar axes — same
21171 // "the validate / shape-gate predicate must route through the
21172 // substrate-primitive typed dispatch" discipline extended
21173 // onto the peer per-`:politicas` composite-Copy
21174 // `Option<RateLimit>` axis. Second composition-with-accessor
21175 // pin on the M3 mesh-slot `Option<RateLimit>` arm alongside
21176 // the [`MeshPolicy::is_empty`] rate-limit-arm pin above.
21177 let mut spec = three_member_spec();
21178 spec.politicas = MeshPolicy {
21179 rate_limit: Some(RateLimit {
21180 rate: 0,
21181 window: Duration::from_secs(1),
21182 }),
21183 ..MeshPolicy::default()
21184 };
21185 assert!(
21186 matches!(spec.validate(), Err(AplicacaoError::PolicyRateLimitZero)),
21187 "validate_politicas must reject rate == 0 with \
21188 PolicyRateLimitZero — the accessor and the validate gate \
21189 must route through the same substrate-primitive typed \
21190 dispatch on the :rate-limit zero-floor arm",
21191 );
21192 spec.politicas = MeshPolicy {
21193 rate_limit: Some(RateLimit {
21194 rate: 1,
21195 window: Duration::from_secs(1),
21196 }),
21197 ..MeshPolicy::default()
21198 };
21199 assert!(
21200 spec.validate().is_ok(),
21201 "validate_politicas must accept rate == 1 (the canonical \
21202 lower boundary of the 1..=POLICY_RATE_LIMIT_MAX accept-\
21203 set) with a canonical 1s window",
21204 );
21205 }
21206
21207 #[test]
21208 fn mesh_policy_circuit_breaker_returns_circuit_breaker_option_byte_equal_across_permutations() {
21209 // The canonical per-`:politicas` `:circuit-breaker` Envoy-
21210 // `outlier_detection`-mesh consecutive-failure-ejection scalar
21211 // pin: [`MeshPolicy::circuit_breaker`] must return the
21212 // `:politicas :circuit-breaker` typed [`CircuitBreaker`]
21213 // verbatim as an `Option<CircuitBreaker>`, byte-equal to the
21214 // raw field access across every representative value in the
21215 // accept-set — `None` (cluster default applies — no
21216 // per-Aplicacao breaker declaration, the gateway-class per-
21217 // listener default arm the future caixa-mesh
21218 // `outlier_detection_overlay` emitter documents),
21219 // `Some(CircuitBreaker { max_failures: 1, window: Duration::from_millis(1) })`
21220 // (the lower boundary of the accept-set the surrounding
21221 // [`AplicacaoSpec::validate_politicas`] gate carves out on the
21222 // sibling `PolicyBreakerZeroFailures` / `PolicyBreakerZeroWindow`
21223 // refusals),
21224 // `Some(CircuitBreaker { max_failures: POLICY_BREAKER_MAX_FAILURES_MAX, window: POLICY_BREAKER_WINDOW_MAX })`
21225 // (the upper boundary the same gate carves out on the sibling
21226 // `PolicyBreakerMaxFailuresExceedsCap` /
21227 // `PolicyBreakerWindowExceedsCap` refusals),
21228 // `Some(CircuitBreaker { max_failures: 0, window: Duration::ZERO })`
21229 // (a past-the-guard sentinel that pins the accessor doesn't
21230 // perform a silent bounds-collapse into `None` on the
21231 // zero-failures/zero-window arm — validate rejects zero but
21232 // the accessor must ship the raw slot verbatim so a validate-
21233 // time gate regression surfaces at the emit boundary rather
21234 // than being silently absorbed), and
21235 // `Some(CircuitBreaker { max_failures: u32::MAX, window: Duration::MAX })`
21236 // (a past-the-guard sentinel that pins the accessor doesn't
21237 // perform a silent bounds-collapse at the return path).
21238 //
21239 // Second `Option<Copy-composite-T>`-return accessor pin on the
21240 // M3 mesh-slot family (peer of the sibling per-`:politicas`
21241 // [`MeshPolicy::rate_limit`] 21a6c3b `Option<RateLimit>`
21242 // composite-Copy accessor pin, and of the sibling per-
21243 // `:politicas` [`MeshPolicy::timeout`] 7073d0f /
21244 // [`MeshPolicy::retries`] bdfb399 /
21245 // [`MeshPolicy::mtls_required`] c0110f1 primitive-Copy
21246 // accessor pins). Pins against a future silent detour that
21247 // re-derived the breaker declaration from a peer axis (an
21248 // accidental `.rate_limit.map(|rl| CircuitBreaker { max_failures: rl.rate, window: rl.window })`
21249 // collapse that read the rate-limit's bucket capacity + refill
21250 // period as a breaker declaration), a `None → Some(default())`
21251 // cluster-default projection (which would silently re-
21252 // introduce the `PolicyBreakerZeroFailures` /
21253 // `PolicyBreakerZeroWindow` refusal cases at the emit
21254 // boundary), a bounds-collapsing accessor that clamped
21255 // `cb.max_failures` through
21256 // [`POLICY_BREAKER_MAX_FAILURES_MAX`] or clamped `cb.window`
21257 // through [`POLICY_BREAKER_WINDOW_MAX`] (the
21258 // [`AplicacaoSpec::validate`] gate owns the bounds; the
21259 // accessor must ship the raw slot verbatim), or a
21260 // by-reference detour (`Option<&CircuitBreaker>`) that broke
21261 // every downstream consumer keying off `Option<CircuitBreaker>`
21262 // by-copy.
21263 for cb in [
21264 None,
21265 Some(CircuitBreaker {
21266 max_failures: 1,
21267 window: Duration::from_millis(1),
21268 }),
21269 Some(CircuitBreaker {
21270 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX,
21271 window: POLICY_BREAKER_WINDOW_MAX,
21272 }),
21273 Some(CircuitBreaker {
21274 max_failures: 0,
21275 window: Duration::ZERO,
21276 }),
21277 Some(CircuitBreaker {
21278 max_failures: u32::MAX,
21279 window: Duration::MAX,
21280 }),
21281 ] {
21282 let p = MeshPolicy {
21283 circuit_breaker: cb,
21284 ..MeshPolicy::default()
21285 };
21286 assert_eq!(
21287 p.circuit_breaker(),
21288 cb,
21289 "MeshPolicy::circuit_breaker must return :politicas \
21290 :circuit-breaker verbatim (got {:?}, expected {cb:?})",
21291 p.circuit_breaker(),
21292 );
21293 assert_eq!(
21294 p.circuit_breaker(),
21295 p.circuit_breaker,
21296 "MeshPolicy::circuit_breaker must byte-equal the raw \
21297 .circuit_breaker field access across every value in \
21298 the accept-set",
21299 );
21300 }
21301 }
21302
21303 #[test]
21304 fn mesh_policy_is_empty_circuit_breaker_arm_routes_through_accessor() {
21305 // Composition pin: [`MeshPolicy::is_empty`]'s `circuit_breaker`
21306 // arm must key off [`MeshPolicy::circuit_breaker`], not the raw
21307 // `.circuit_breaker` field access. Structurally: toggling ONLY
21308 // the `circuit_breaker` slot on an otherwise-default MeshPolicy
21309 // must flip `is_empty()` from `true` (all-`None`) to `false`
21310 // (one axis carries a value); the flip must be observed for
21311 // every representative value in the accept-set the surrounding
21312 // [`AplicacaoSpec::validate_politicas`] gate accepts
21313 // (`Some(CircuitBreaker { max_failures: 1, window: 1ms })`,
21314 // `Some(CircuitBreaker { max_failures: POLICY_BREAKER_MAX_FAILURES_MAX, window: POLICY_BREAKER_WINDOW_MAX })`),
21315 // since the emptiness semantic reads "any axis carries a
21316 // value" — not "any axis carries a value the validate gate
21317 // accepts" — the same non-collapsing shape the peer M2
21318 // [`crate::LimitsSpec::is_empty`] /
21319 // [`crate::BehaviorSpec::is_empty`] predicates carry.
21320 //
21321 // Pins against a future silent detour that re-derived the
21322 // emptiness predicate off a peer axis (an accidental
21323 // `.rate_limit.is_none()`-only chain that dropped the
21324 // `circuit_breaker` arm entirely — the last unlifted inline
21325 // field access on `is_empty` before this lift), a
21326 // `circuit_breaker == Some(_)` collapse that key-off a
21327 // validate-gate-clamped bounds check (which would silently
21328 // classify a past-the-guard `Some(CircuitBreaker { max_failures:
21329 // 0, window: 0s })` as empty because it fails the value-shape
21330 // gate), or an accessor-side detour that no longer names the
21331 // substrate-primitive typed dispatch.
21332 //
21333 // Fifth "the emptiness predicate must route through the
21334 // substrate-primitive typed dispatch" composition pin on the
21335 // M3 mesh-slot family — closes the last unlifted composition
21336 // arm on [`MeshPolicy::is_empty`] (peer of the sibling
21337 // per-`:politicas` [`MeshPolicy::mtls_required`] c0110f1 /
21338 // [`MeshPolicy::retries`] bdfb399 / [`MeshPolicy::timeout`]
21339 // 7073d0f / [`MeshPolicy::rate_limit`] 21a6c3b is_empty-
21340 // composition pins on the sibling primitive-Copy + composite-
21341 // Copy axes, extended onto the peer per-`:politicas`
21342 // composite-Copy `Option<CircuitBreaker>` axis).
21343 let empty = MeshPolicy::default();
21344 assert!(
21345 empty.is_empty(),
21346 "MeshPolicy::default() must be is_empty() — every axis \
21347 defaults to None",
21348 );
21349 for cb in [
21350 CircuitBreaker {
21351 max_failures: 1,
21352 window: Duration::from_millis(1),
21353 },
21354 CircuitBreaker {
21355 max_failures: POLICY_BREAKER_MAX_FAILURES_MAX,
21356 window: POLICY_BREAKER_WINDOW_MAX,
21357 },
21358 ] {
21359 let p = MeshPolicy {
21360 circuit_breaker: Some(cb),
21361 ..MeshPolicy::default()
21362 };
21363 assert!(
21364 !p.is_empty(),
21365 "MeshPolicy::is_empty must return false when \
21366 :circuit-breaker is {cb:?} — the emptiness predicate \
21367 reads \"any axis carries a value\", not \"any axis \
21368 carries a value the validate gate accepts\"",
21369 );
21370 assert_eq!(
21371 p.circuit_breaker().is_none(),
21372 p.is_empty(),
21373 "when :circuit-breaker is the only set axis, \
21374 is_empty() must equal circuit_breaker().is_none() — \
21375 the accessor and the emptiness predicate must route \
21376 through the same substrate-primitive typed dispatch \
21377 on the :circuit-breaker arm",
21378 );
21379 }
21380 }
21381
21382 #[test]
21383 fn validate_politicas_circuit_breaker_arm_routes_through_accessor() {
21384 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
21385 // `:circuit-breaker` value-shape gate must key off
21386 // [`MeshPolicy::circuit_breaker`], not the raw
21387 // `&p.circuit_breaker` field bind. Structurally: a `MeshPolicy`
21388 // whose only set axis is a `Some(CircuitBreaker { max_failures:
21389 // 0, .. })` must surface the `PolicyBreakerZeroFailures`
21390 // refusal exactly, and the same MeshPolicy with the breaker at
21391 // the canonical lower boundary
21392 // `Some(CircuitBreaker { max_failures: 1, window: 1ms })` must
21393 // pass validate. The pair jointly pins the accessor +
21394 // validate-gate composition: any future silent detour that had
21395 // the accessor omit the `Some(CircuitBreaker { max_failures:
21396 // 0, .. })` arm (a
21397 // `.circuit_breaker().filter(|cb| cb.max_failures > 0)`
21398 // collapse) would silently absorb the
21399 // `PolicyBreakerZeroFailures` refusal at the accessor
21400 // boundary — the composition pin catches that at caixa-core
21401 // build time.
21402 //
21403 // Sibling of the peer [`validate_politicas`]
21404 // `:mtls-required` / `:retries` / `:timeout` / `:rate-limit`
21405 // composition pins on the sibling primitive-Copy + composite-
21406 // Copy optional-scalar axes — same "the validate / shape-gate
21407 // predicate must route through the substrate-primitive typed
21408 // dispatch" discipline extended onto the peer per-`:politicas`
21409 // composite-Copy `Option<CircuitBreaker>` axis. Second
21410 // composition-with-accessor pin on the M3 mesh-slot
21411 // `Option<CircuitBreaker>` arm alongside the
21412 // [`MeshPolicy::is_empty`] circuit-breaker-arm pin above.
21413 let mut spec = three_member_spec();
21414 spec.politicas = MeshPolicy {
21415 circuit_breaker: Some(CircuitBreaker {
21416 max_failures: 0,
21417 window: Duration::from_millis(1),
21418 }),
21419 ..MeshPolicy::default()
21420 };
21421 assert!(
21422 matches!(
21423 spec.validate(),
21424 Err(AplicacaoError::PolicyBreakerZeroFailures)
21425 ),
21426 "validate_politicas must reject max_failures == 0 with \
21427 PolicyBreakerZeroFailures — the accessor and the validate \
21428 gate must route through the same substrate-primitive \
21429 typed dispatch on the :circuit-breaker zero-floor arm",
21430 );
21431 spec.politicas = MeshPolicy {
21432 circuit_breaker: Some(CircuitBreaker {
21433 max_failures: 1,
21434 window: Duration::from_millis(1),
21435 }),
21436 ..MeshPolicy::default()
21437 };
21438 assert!(
21439 spec.validate().is_ok(),
21440 "validate_politicas must accept a CircuitBreaker at the \
21441 canonical lower boundary (max_failures = 1, window = \
21442 1ms) — the accessor and the validate gate must route \
21443 through the same substrate-primitive typed dispatch on \
21444 the :circuit-breaker arm",
21445 );
21446 }
21447
21448 #[test]
21449 fn circuit_breaker_max_failures_returns_max_failures_u32_byte_equal_across_permutations() {
21450 // The canonical per-`:politicas :circuit-breaker` `:max-failures`
21451 // Envoy-outlier-detection trip-threshold scalar pin:
21452 // [`CircuitBreaker::max_failures`] must return the
21453 // `:politicas :circuit-breaker :max-failures` typed `u32`
21454 // verbatim, byte-equal to the raw field access across every
21455 // representative value in the accept-set — `1` (the lower
21456 // boundary of the `1..=POLICY_BREAKER_MAX_FAILURES_MAX` accept-
21457 // set the surrounding [`AplicacaoSpec::validate_politicas`] gate
21458 // carves out on the sibling `PolicyBreakerZeroFailures` refusal),
21459 // `POLICY_BREAKER_MAX_FAILURES_MAX` (the upper boundary the same
21460 // gate carves out on the sibling `PolicyBreakerMaxFailuresExceedsCap`
21461 // refusal), `0` (a past-the-guard sentinel that pins the accessor
21462 // doesn't perform a silent bounds-collapse into `1` on the zero
21463 // arm — validate rejects zero but the accessor must ship the
21464 // raw slot verbatim so a validate-time gate regression surfaces
21465 // at the emit boundary rather than being silently absorbed),
21466 // `u32::MAX` (a past-the-guard sentinel that pins the accessor
21467 // doesn't perform a silent bounds-collapse through
21468 // `POLICY_BREAKER_MAX_FAILURES_MAX` at the return path).
21469 //
21470 // First sub-struct required-scalar accessor pin on the M3
21471 // mesh-slot family — sibling in shape to the peer per-`:membros`
21472 // [`Membro::nome`] (4a32abf) / [`Membro::versao_requirement`]
21473 // (a40b0e3) required-`String`-carry accessor pins and the peer
21474 // per-`:contratos` [`WitContract::source`] /
21475 // [`WitContract::destination`] (7f0fd43) required-`String`-carry
21476 // accessor pins, extended onto the peer per-`CircuitBreaker`
21477 // required-`u32` scalar-value axis. Pins against a future silent
21478 // detour that re-derived the trip threshold from a peer axis (an
21479 // accidental `self.window.as_secs() as u32` collapse that read
21480 // the breaker's rolling-window duration as a failure count), a
21481 // `0 → 1` cluster-default projection (which would silently absorb
21482 // the `PolicyBreakerZeroFailures` refusal case at the accessor
21483 // boundary), or a bounds-collapsing accessor that clamped the
21484 // return through `POLICY_BREAKER_MAX_FAILURES_MAX` (the
21485 // `AplicacaoSpec::validate` gate owns the bounds; the accessor
21486 // must ship the raw slot verbatim).
21487 for max_failures in [1u32, POLICY_BREAKER_MAX_FAILURES_MAX, 0, u32::MAX] {
21488 let cb = CircuitBreaker {
21489 max_failures,
21490 window: Duration::from_secs(60),
21491 };
21492 assert_eq!(
21493 cb.max_failures(),
21494 max_failures,
21495 "CircuitBreaker::max_failures must return :politicas \
21496 :circuit-breaker :max-failures verbatim (got {}, \
21497 expected {max_failures})",
21498 cb.max_failures(),
21499 );
21500 assert_eq!(
21501 cb.max_failures(),
21502 cb.max_failures,
21503 "CircuitBreaker::max_failures must byte-equal the raw \
21504 .max_failures field access across every value in the \
21505 u32 accept-set",
21506 );
21507 }
21508 }
21509
21510 #[test]
21511 fn validate_politicas_max_failures_zero_floor_arm_routes_through_accessor() {
21512 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
21513 // `:circuit-breaker :max-failures` zero-floor arm must key off
21514 // [`CircuitBreaker::max_failures`], not the raw `.max_failures`
21515 // field access. Structurally: a `CircuitBreaker { max_failures:
21516 // 0, .. }` embedded in a `:politicas :circuit-breaker` slot must
21517 // surface the `PolicyBreakerZeroFailures` refusal exactly, and a
21518 // `CircuitBreaker { max_failures: 1, .. }` (the lower boundary
21519 // of the `1..=POLICY_BREAKER_MAX_FAILURES_MAX` accept-set) must
21520 // pass validate. The pair jointly pins the accessor +
21521 // validate-gate composition: any future silent detour that had
21522 // the accessor return a fresh `1` on the zero arm (a
21523 // `.max_failures().max(1)` collapse) would silently absorb the
21524 // `PolicyBreakerZeroFailures` refusal at the accessor boundary
21525 // and the validate gate would accept a struct-literal
21526 // `CircuitBreaker { max_failures: 0, .. }` — the composition pin
21527 // catches that at caixa-core build time.
21528 //
21529 // Peer of the sibling per-`:politicas`
21530 // [`MeshPolicy::mtls_required`] (c0110f1) /
21531 // [`MeshPolicy::retries`] (bdfb399) / [`MeshPolicy::timeout`]
21532 // (7073d0f) accessor-composition pins on the sibling optional-
21533 // scalar axes — same "the validate / shape-gate predicate must
21534 // route through the substrate-primitive typed dispatch"
21535 // discipline extended onto the peer per-`CircuitBreaker`
21536 // required-scalar composition axis.
21537 let mut spec = three_member_spec();
21538 spec.politicas = MeshPolicy {
21539 circuit_breaker: Some(CircuitBreaker {
21540 max_failures: 0,
21541 window: Duration::from_secs(60),
21542 }),
21543 ..MeshPolicy::default()
21544 };
21545 assert!(
21546 matches!(
21547 spec.validate(),
21548 Err(AplicacaoError::PolicyBreakerZeroFailures)
21549 ),
21550 "validate_politicas must reject max_failures == 0 with \
21551 PolicyBreakerZeroFailures — the accessor and the validate \
21552 gate must route through the same substrate-primitive typed \
21553 dispatch on the :max-failures zero-floor arm",
21554 );
21555 spec.politicas = MeshPolicy {
21556 circuit_breaker: Some(CircuitBreaker {
21557 max_failures: 1,
21558 window: Duration::from_secs(60),
21559 }),
21560 ..MeshPolicy::default()
21561 };
21562 assert!(
21563 spec.validate().is_ok(),
21564 "validate_politicas must accept max_failures == 1 (the \
21565 lower boundary of the 1..=POLICY_BREAKER_MAX_FAILURES_MAX \
21566 accept-set)",
21567 );
21568 }
21569
21570 #[test]
21571 fn circuit_breaker_max_failures_projects_u32_by_copy() {
21572 // The by-copy pin: [`CircuitBreaker::max_failures`] returns
21573 // `u32` by copy — `u32` is `Copy` and the accessor must return
21574 // by value, not by reference. Peer of the sibling
21575 // per-`:politicas` [`MeshPolicy::mtls_required`] (c0110f1) /
21576 // [`MeshPolicy::retries`] (bdfb399) / [`MeshPolicy::timeout`]
21577 // (7073d0f) by-copy pins on the sibling `Option<Copy-T>`
21578 // optional-scalar axes, extended onto the peer
21579 // per-`CircuitBreaker` required-`u32` copy-invariant shape —
21580 // the accessor's returned `u32` must outlive `&self` (multiple
21581 // calls must return equal values from a dropped-`&self` copy,
21582 // since the returned scalar carries no borrow), and calling
21583 // the accessor twice on the same CircuitBreaker must yield the
21584 // same `u32` verbatim (idempotent, no side effects on `&self`).
21585 //
21586 // Pins against a future silent detour that returned `&u32`
21587 // (which would type-check but silently break every downstream
21588 // arithmetic consumer — [`crate::render::require_positive_bounded_u32`]'s
21589 // first parameter is `u32`, and `&u32` would fold to a detached
21590 // copy at the call site with a `*` deref the sibling accessors
21591 // don't need), an accidental `.max_failures.wrapping_add(0)`
21592 // detour that returned a fresh copy through an arithmetic
21593 // no-op (breaking a future `const fn` regression), or a
21594 // one-arm-only accessor that returned a saturating value on
21595 // some sentinel input (breaking the pass-through invariant the
21596 // sibling required-scalar accessors carry).
21597 for max_failures in [1u32, POLICY_BREAKER_MAX_FAILURES_MAX, 0, u32::MAX] {
21598 let cb = CircuitBreaker {
21599 max_failures,
21600 window: Duration::from_secs(60),
21601 };
21602 let first = cb.max_failures();
21603 let second = cb.max_failures();
21604 assert_eq!(
21605 first, second,
21606 "CircuitBreaker::max_failures must be idempotent — two \
21607 successive calls on the same &self must return the \
21608 same u32",
21609 );
21610 assert_eq!(
21611 first, max_failures,
21612 "CircuitBreaker::max_failures must return :politicas \
21613 :circuit-breaker :max-failures verbatim by copy — \
21614 got {first}, expected {max_failures}",
21615 );
21616 }
21617 }
21618
21619 #[test]
21620 fn circuit_breaker_window_returns_window_duration_byte_equal_across_permutations() {
21621 // The canonical per-`:politicas :circuit-breaker` `:window`
21622 // Envoy-outlier-detection rolling-observation-interval scalar
21623 // pin: [`CircuitBreaker::window`] must return the
21624 // `:politicas :circuit-breaker :window` typed `Duration`
21625 // verbatim, byte-equal to the raw field access across every
21626 // representative value in the accept-set — `Duration::from_millis(1)`
21627 // (the lower boundary of the `1ms..=POLICY_BREAKER_WINDOW_MAX`
21628 // accept-set the surrounding [`AplicacaoSpec::validate_politicas`]
21629 // gate carves out on the sibling `PolicyBreakerZeroWindow`
21630 // refusal), `POLICY_BREAKER_WINDOW_MAX` (the upper boundary the
21631 // same gate carves out on the sibling
21632 // `PolicyBreakerWindowExceedsCap` refusal),
21633 // `Duration::ZERO` (a past-the-guard sentinel that pins the
21634 // accessor doesn't perform a silent bounds-collapse into
21635 // `Duration::from_millis(1)` on the zero arm — validate rejects
21636 // zero but the accessor must ship the raw slot verbatim so a
21637 // validate-time gate regression surfaces at the emit boundary
21638 // rather than being silently absorbed),
21639 // `Duration::from_secs(86_400)` (a past-the-guard sentinel — 24h,
21640 // far above the 1h cap — that pins the accessor doesn't perform
21641 // a silent bounds-collapse through `POLICY_BREAKER_WINDOW_MAX`
21642 // at the return path).
21643 //
21644 // Second sub-struct required-scalar accessor pin on the M3
21645 // mesh-slot family — sibling in shape to the just-landed
21646 // per-`CircuitBreaker` [`CircuitBreaker::max_failures`]
21647 // (3a74062) required-`u32` accessor pin on the peer
21648 // per-`CircuitBreaker` required-axis, extended onto the
21649 // per-sub-struct required-`Duration` axis. Pins against a
21650 // future silent detour that re-derived the observation window
21651 // from a peer axis (an accidental
21652 // `Duration::from_secs(self.max_failures as u64)` collapse that
21653 // read the breaker's trip count as an observation-interval
21654 // duration), a `Duration::ZERO → Duration::from_millis(1)`
21655 // cluster-default projection (which would silently absorb the
21656 // `PolicyBreakerZeroWindow` refusal case at the accessor
21657 // boundary), or a bounds-collapsing accessor that clamped the
21658 // return through `POLICY_BREAKER_WINDOW_MAX` (the
21659 // `AplicacaoSpec::validate` gate owns the bounds; the accessor
21660 // must ship the raw slot verbatim).
21661 for window in [
21662 Duration::from_millis(1),
21663 POLICY_BREAKER_WINDOW_MAX,
21664 Duration::ZERO,
21665 Duration::from_secs(86_400),
21666 ] {
21667 let cb = CircuitBreaker {
21668 max_failures: 5,
21669 window,
21670 };
21671 assert_eq!(
21672 cb.window(),
21673 window,
21674 "CircuitBreaker::window must return :politicas \
21675 :circuit-breaker :window verbatim (got {:?}, \
21676 expected {window:?})",
21677 cb.window(),
21678 );
21679 assert_eq!(
21680 cb.window(),
21681 cb.window,
21682 "CircuitBreaker::window must byte-equal the raw \
21683 .window field access across every value in the \
21684 Duration accept-set",
21685 );
21686 }
21687 }
21688
21689 #[test]
21690 fn validate_politicas_window_zero_floor_arm_routes_through_accessor() {
21691 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
21692 // `:circuit-breaker :window` zero-floor arm must key off
21693 // [`CircuitBreaker::window`], not the raw `.window` field
21694 // access. Structurally: a `CircuitBreaker { window:
21695 // Duration::ZERO, .. }` embedded in a
21696 // `:politicas :circuit-breaker` slot must surface the
21697 // `PolicyBreakerZeroWindow` refusal exactly, and a
21698 // `CircuitBreaker { window: Duration::from_millis(1), .. }`
21699 // (the lower boundary of the `1ms..=POLICY_BREAKER_WINDOW_MAX`
21700 // accept-set) must pass validate. The pair jointly pins the
21701 // accessor + validate-gate composition: any future silent
21702 // detour that had the accessor return a fresh
21703 // `Duration::from_millis(1)` on the zero arm (a
21704 // `.window().max(Duration::from_millis(1))` collapse) would
21705 // silently absorb the `PolicyBreakerZeroWindow` refusal at the
21706 // accessor boundary and the validate gate would accept a
21707 // struct-literal `CircuitBreaker { window: Duration::ZERO, .. }`
21708 // — the composition pin catches that at caixa-core build time.
21709 //
21710 // Peer of the sibling per-`CircuitBreaker`
21711 // [`CircuitBreaker::max_failures`] (3a74062) accessor-composition
21712 // pin on the peer required-scalar `:max-failures` axis — same
21713 // "the validate / shape-gate predicate must route through the
21714 // substrate-primitive typed dispatch" discipline extended onto
21715 // the peer per-`CircuitBreaker` required-`Duration` composition
21716 // axis.
21717 let mut spec = three_member_spec();
21718 spec.politicas = MeshPolicy {
21719 circuit_breaker: Some(CircuitBreaker {
21720 max_failures: 5,
21721 window: Duration::ZERO,
21722 }),
21723 ..MeshPolicy::default()
21724 };
21725 assert!(
21726 matches!(
21727 spec.validate(),
21728 Err(AplicacaoError::PolicyBreakerZeroWindow)
21729 ),
21730 "validate_politicas must reject window == Duration::ZERO \
21731 with PolicyBreakerZeroWindow — the accessor and the \
21732 validate gate must route through the same substrate-\
21733 primitive typed dispatch on the :window zero-floor arm",
21734 );
21735 spec.politicas = MeshPolicy {
21736 circuit_breaker: Some(CircuitBreaker {
21737 max_failures: 5,
21738 window: Duration::from_millis(1),
21739 }),
21740 ..MeshPolicy::default()
21741 };
21742 assert!(
21743 spec.validate().is_ok(),
21744 "validate_politicas must accept window == \
21745 Duration::from_millis(1) (the lower boundary of the \
21746 1ms..=POLICY_BREAKER_WINDOW_MAX accept-set)",
21747 );
21748 }
21749
21750 #[test]
21751 fn circuit_breaker_window_projects_duration_by_copy() {
21752 // The by-copy pin: [`CircuitBreaker::window`] returns
21753 // `Duration` by copy — `Duration` is `Copy` and the accessor
21754 // must return by value, not by reference. Peer of the sibling
21755 // per-`CircuitBreaker` [`CircuitBreaker::max_failures`]
21756 // (3a74062) by-copy pin on the peer required-scalar
21757 // `:max-failures` axis, extended onto the peer
21758 // per-`CircuitBreaker` required-`Duration` copy-invariant shape
21759 // — the accessor's returned `Duration` must outlive `&self`
21760 // (multiple calls must return equal values from a
21761 // dropped-`&self` copy, since the returned scalar carries no
21762 // borrow), and calling the accessor twice on the same
21763 // CircuitBreaker must yield the same `Duration` verbatim
21764 // (idempotent, no side effects on `&self`).
21765 //
21766 // Pins against a future silent detour that returned
21767 // `&Duration` (which would type-check but silently break every
21768 // downstream `Duration`-by-value consumer —
21769 // [`crate::render::require_positive_canonical_bounded_duration`]'s
21770 // first parameter is `Duration`, and `&Duration` would fold to
21771 // a detached copy at the call site with a `*` deref the sibling
21772 // accessors don't need), an accidental `.window + Duration::ZERO`
21773 // detour that returned a fresh copy through an arithmetic
21774 // no-op (breaking a future `const fn` regression), or a
21775 // one-arm-only accessor that returned a saturating value on
21776 // some sentinel input (breaking the pass-through invariant the
21777 // sibling required-scalar accessors carry).
21778 for window in [
21779 Duration::from_millis(1),
21780 POLICY_BREAKER_WINDOW_MAX,
21781 Duration::ZERO,
21782 Duration::from_secs(86_400),
21783 ] {
21784 let cb = CircuitBreaker {
21785 max_failures: 5,
21786 window,
21787 };
21788 let first = cb.window();
21789 let second = cb.window();
21790 assert_eq!(
21791 first, second,
21792 "CircuitBreaker::window must be idempotent — two \
21793 successive calls on the same &self must return the \
21794 same Duration",
21795 );
21796 assert_eq!(
21797 first, window,
21798 "CircuitBreaker::window must return :politicas \
21799 :circuit-breaker :window verbatim by copy — \
21800 got {first:?}, expected {window:?}",
21801 );
21802 }
21803 }
21804
21805 #[test]
21806 fn port_for_destination_at_contract_destination_returns_entrada_port_when_para_matches() {
21807 // Apex-identity pair-invariant pin composing both substrate-
21808 // primitive typed dispatches — [`AplicacaoSpec::port_for_destination`]
21809 // and [`WitContract::destination`] — at the emit-side call shape
21810 // every per-`(:de, :para)` CNP L4 port reader now takes. The
21811 // invariant, evaluated per-edge:
21812 //
21813 // spec.port_for_destination(c.destination()) == expected_port
21814 //
21815 // where `expected_port` is `entrada.port` when
21816 // `c.destination() == entrada.destination()` and
21817 // `DEFAULT_SERVICO_PORT` otherwise. Peer of the sibling
21818 // `port_for_destination_at_entrada_destination_returns_entrada_port_across_permutations`
21819 // pin on the per-`:entrada` axis — that pin encodes the apex
21820 // ingress L4 identity via `entrada.destination()`; this pin
21821 // encodes the per-edge L4 identity via `c.destination()`, and
21822 // both compose on the same substrate-primitive resolver so a
21823 // future refactor that silently split either accessor's apex
21824 // behavior surfaces at caixa-core build time.
21825 let mut spec = three_member_spec();
21826 if let Some(e) = spec.entrada.as_mut() {
21827 e.para = "cart".into();
21828 e.port = 8443;
21829 }
21830 let apex_contract = WitContract {
21831 de: "checkout".into(),
21832 para: "cart".into(),
21833 wit: "wasi:http/proxy".into(),
21834 endpoint: Some("/hello".into()),
21835 subject: None,
21836 slot: None,
21837 };
21838 assert_eq!(
21839 spec.port_for_destination(apex_contract.destination()),
21840 8443,
21841 "`spec.port_for_destination(c.destination())` must equal \
21842 `entrada.port` when the contract callee names the ingress \
21843 apex — the CNP per-edge L4 port and the HTTPRoute apex \
21844 backendRef port share this substrate-primitive resolver.",
21845 );
21846 let non_apex_contract = WitContract {
21847 de: "cart".into(),
21848 para: "payment".into(),
21849 wit: "wasi:http/proxy".into(),
21850 endpoint: Some("/charge".into()),
21851 subject: None,
21852 slot: None,
21853 };
21854 assert_eq!(
21855 spec.port_for_destination(non_apex_contract.destination()),
21856 DEFAULT_SERVICO_PORT,
21857 "`spec.port_for_destination(c.destination())` must fall back \
21858 to the substrate-canonical port floor when the contract \
21859 callee is not the ingress apex — the resolver's non-apex \
21860 arm reaches for [`DEFAULT_SERVICO_PORT`] by construction.",
21861 );
21862 }
21863
21864 #[test]
21865 fn membro_key_consts_are_lower_camel_case_shape() {
21866 // Shape-pin: every `MEMBRO_KEY_*` const must be a
21867 // lowerCamelCase byte-sequence (no `snake_case` underscores, no
21868 // `kebab-case` hyphens, no leading colon, no `PascalCase`
21869 // leading capital, no whitespace / dots) — the canonical shape
21870 // the `#[serde(rename_all = "camelCase")]` derive produces on
21871 // [`Membro`]. A future flip to a non-camelCase attribute at
21872 // the derive surfaces both here (this test fails on the
21873 // stale-constant shape) and at
21874 // `membro_serde_keys_match_lifted_membro_key_consts` (that test
21875 // fails on the mismatch between const and derive). Peer with
21876 // `supervisor_key_consts_are_lower_camel_case_shape` (40cc4e5)
21877 // on the sibling `SupervisorSpec` top-level axis.
21878 for key in [crate::MEMBRO_KEY_CAIXA, crate::MEMBRO_KEY_VERSAO] {
21879 assert!(
21880 !key.is_empty(),
21881 "MEMBRO_KEY_* must be non-empty (got {key:?})"
21882 );
21883 let first = key.chars().next().unwrap();
21884 assert!(
21885 first.is_ascii_lowercase(),
21886 "MEMBRO_KEY_* must lead with an ASCII-lowercase byte \
21887 (got {key:?}, leads with {first:?})",
21888 );
21889 assert!(
21890 key.chars().all(|c| c.is_ascii_alphanumeric()),
21891 "MEMBRO_KEY_* must be ASCII-alphanumeric only \
21892 — no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
21893 );
21894 }
21895 }
21896
21897 // ── drift-detection: serde-derive-to-CONTRATO_KEY_* identity ─────────
21898
21899 #[test]
21900 fn wit_contract_serde_keys_match_lifted_contrato_key_consts() {
21901 // Load-bearing invariant: the three `CONTRATO_KEY_*` consts
21902 // ([`crate::CONTRATO_KEY_DE`] / [`crate::CONTRATO_KEY_PARA`] /
21903 // [`crate::CONTRATO_KEY_WIT`]) name the exact camelCase JSON
21904 // keys the `#[serde(rename_all = "camelCase")]` attribute on
21905 // [`WitContract`] emits for the required-triad. The three
21906 // sibling payload-arm keys already pin under
21907 // [`WitTarget::HTTP_FIELD_NAME`] / `PUBSUB_FIELD_NAME` /
21908 // `STORE_FIELD_NAME` — pin all six alongside so a future
21909 // accidental `rename_all = "snake_case"` / `"kebab-case"` /
21910 // verbatim-field-name flip at the derive attribute (any of which
21911 // would silently break every downstream JSON consumer that
21912 // reaches for one of the six via `Value::get(...)`) surfaces
21913 // here as a build-time test failure at `aplicacao.rs`, not as an
21914 // apply-time `.get(<stale-canonical-const>)` returning `None`
21915 // far from the derive-attr drift's commit. Peer with the sibling
21916 // `membro_serde_keys_match_lifted_membro_key_consts` (ce80ca0)
21917 // pin on the M3 `:membros` per-entry axis — same discipline the
21918 // `Membro` per-entry lift established, extended here to the
21919 // sibling M3 `WitContract` per-`:contratos` entry axis, the last
21920 // M3 mesh-slot atom top-level `#[serde(rename_all = "camelCase")]`
21921 // axis on the Aplicacao surface without a lifted serde-key peer.
21922 let c = WitContract {
21923 de: "cart".into(),
21924 para: "catalog".into(),
21925 wit: "wasi:http/proxy".into(),
21926 endpoint: Some("/lookup".into()),
21927 subject: None,
21928 slot: None,
21929 };
21930 let json = serde_json::to_string(&c).unwrap();
21931 for key in [
21932 crate::CONTRATO_KEY_DE,
21933 crate::CONTRATO_KEY_PARA,
21934 crate::CONTRATO_KEY_WIT,
21935 WitTarget::HTTP_FIELD_NAME,
21936 ] {
21937 let quoted = format!("\"{key}\"");
21938 assert!(
21939 json.contains("ed),
21940 "serialized WitContract must carry the lifted \
21941 CONTRATO_KEY_* / WitTarget::*_FIELD_NAME byte-sequence \
21942 {quoted} verbatim in the JSON emission (got: {json})",
21943 );
21944 }
21945
21946 // Pin the two remaining payload-arm keys by round-tripping a
21947 // `WitContract` under each payload-shape (pub-sub, store) — the
21948 // required-triad appears on every emission but the payload arms
21949 // only surface when their `Option<String>` field is `Some`.
21950 let pubsub = WitContract {
21951 de: "cart".into(),
21952 para: "events".into(),
21953 wit: "nats:pub-sub".into(),
21954 endpoint: None,
21955 subject: Some("orders.placed".into()),
21956 slot: None,
21957 };
21958 let pubsub_json = serde_json::to_string(&pubsub).unwrap();
21959 let pubsub_quoted = format!("\"{}\"", WitTarget::PUBSUB_FIELD_NAME);
21960 assert!(
21961 pubsub_json.contains(&pubsub_quoted),
21962 "serialized pub-sub WitContract must carry the lifted \
21963 WitTarget::PUBSUB_FIELD_NAME byte-sequence {pubsub_quoted} \
21964 verbatim in the JSON emission (got: {pubsub_json})",
21965 );
21966 let store = WitContract {
21967 de: "cart".into(),
21968 para: "sessions".into(),
21969 wit: "wasi:keyvalue/store".into(),
21970 endpoint: None,
21971 subject: None,
21972 slot: Some("cart/$id".into()),
21973 };
21974 let store_json = serde_json::to_string(&store).unwrap();
21975 let store_quoted = format!("\"{}\"", WitTarget::STORE_FIELD_NAME);
21976 assert!(
21977 store_json.contains(&store_quoted),
21978 "serialized store WitContract must carry the lifted \
21979 WitTarget::STORE_FIELD_NAME byte-sequence {store_quoted} \
21980 verbatim in the JSON emission (got: {store_json})",
21981 );
21982 }
21983
21984 #[test]
21985 fn contrato_key_consts_are_pairwise_distinct() {
21986 // Cross-axis drift-detection pin: a future collapse of the six
21987 // canonical [`WitContract`] per-entry byte-strings onto the same
21988 // value (e.g. an accidental copy-paste flip of
21989 // [`crate::CONTRATO_KEY_WIT`] to also read `"de"`, or a
21990 // rebrand of [`WitTarget::STORE_FIELD_NAME`] to match the
21991 // sibling [`WitTarget::HTTP_FIELD_NAME`]) would silently reroute
21992 // every downstream probe on one axis onto the sibling axis's
21993 // overlay entry and pass every propagation-probe test that
21994 // expected only the stale axis's value. Peer of the sibling
21995 // two-way distinct pin on the `MEMBRO_KEY_*` pair (ce80ca0) —
21996 // widened here to the six-way axis the `WitContract`
21997 // required-triad + `WitTarget` payload-triad jointly cover.
21998 let all = [
21999 crate::CONTRATO_KEY_DE,
22000 crate::CONTRATO_KEY_PARA,
22001 crate::CONTRATO_KEY_WIT,
22002 WitTarget::HTTP_FIELD_NAME,
22003 WitTarget::PUBSUB_FIELD_NAME,
22004 WitTarget::STORE_FIELD_NAME,
22005 ];
22006 for (i, a) in all.iter().enumerate() {
22007 for b in all.iter().skip(i + 1) {
22008 assert_ne!(
22009 a, b,
22010 "CONTRATO_KEY_* / WitTarget::*_FIELD_NAME consts \
22011 must be pairwise-distinct canonical byte-sequences \
22012 — got `{a}` == `{b}`",
22013 );
22014 }
22015 }
22016 }
22017
22018 #[test]
22019 fn contrato_key_consts_are_lower_camel_case_shape() {
22020 // Shape-pin: every `CONTRATO_KEY_*` (and every peer
22021 // `WitTarget::*_FIELD_NAME`) const must be a lowerCamelCase
22022 // byte-sequence (no `snake_case` underscores, no `kebab-case`
22023 // hyphens, no leading colon, no `PascalCase` leading capital, no
22024 // whitespace / dots) — the canonical shape the
22025 // `#[serde(rename_all = "camelCase")]` derive produces on
22026 // [`WitContract`]. A future flip to a non-camelCase attribute at
22027 // the derive surfaces both here (this test fails on the
22028 // stale-constant shape) and at
22029 // `wit_contract_serde_keys_match_lifted_contrato_key_consts`
22030 // (that test fails on the mismatch between const and derive).
22031 // Peer with `membro_key_consts_are_lower_camel_case_shape`
22032 // (ce80ca0) on the sibling `Membro` per-entry axis.
22033 for key in [
22034 crate::CONTRATO_KEY_DE,
22035 crate::CONTRATO_KEY_PARA,
22036 crate::CONTRATO_KEY_WIT,
22037 WitTarget::HTTP_FIELD_NAME,
22038 WitTarget::PUBSUB_FIELD_NAME,
22039 WitTarget::STORE_FIELD_NAME,
22040 ] {
22041 assert!(
22042 !key.is_empty(),
22043 "CONTRATO_KEY_* / WitTarget::*_FIELD_NAME must be \
22044 non-empty (got {key:?})"
22045 );
22046 let first = key.chars().next().unwrap();
22047 assert!(
22048 first.is_ascii_lowercase(),
22049 "CONTRATO_KEY_* / WitTarget::*_FIELD_NAME must lead \
22050 with an ASCII-lowercase byte (got {key:?}, leads with \
22051 {first:?})",
22052 );
22053 assert!(
22054 key.chars().all(|c| c.is_ascii_alphanumeric()),
22055 "CONTRATO_KEY_* / WitTarget::*_FIELD_NAME must be \
22056 ASCII-alphanumeric only — no `_` / `-` / `:` / `.` / \
22057 whitespace (got {key:?})",
22058 );
22059 }
22060 }
22061
22062 // ── drift-detection: serde-derive-to-ENTRADA_KEY_* identity ──────────
22063
22064 #[test]
22065 fn entrada_serde_keys_match_lifted_entrada_key_consts() {
22066 // Load-bearing invariant: the four `ENTRADA_KEY_*` consts
22067 // ([`crate::ENTRADA_KEY_HOST`] / [`crate::ENTRADA_KEY_PARA`] /
22068 // [`crate::ENTRADA_KEY_PATHS`] / [`crate::ENTRADA_KEY_PORT`])
22069 // name the exact camelCase JSON keys the
22070 // `#[serde(rename_all = "camelCase")]` attribute on
22071 // [`Entrada`] emits. Serialize a fully-populated `Entrada` and
22072 // pin that each canonical byte-sequence appears verbatim in the
22073 // JSON — a future accidental `rename_all = "snake_case"` /
22074 // `"kebab-case"` / verbatim-field-name flip at the derive
22075 // attribute (any of which would silently break every downstream
22076 // JSON consumer that reaches for one of the four consts via
22077 // `Value::get(...)` — the [`caixa_mesh`] Gateway/HTTPRoute
22078 // emitter's per-Aplicacao hostname/paths/port projection, the
22079 // future `app-operator` reconciler's per-Aplicacao ingress
22080 // bind, the future `mesh.pleme.io/v1alpha1/Aplicacao` CR
22081 // materializer's admission-time cross-check) surfaces here as
22082 // a build-time test failure at `aplicacao.rs`, not as an
22083 // apply-time `.get(<stale-canonical-const>)` returning `None`
22084 // far from the derive-attr drift's commit. Peer with the
22085 // sibling
22086 // `wit_contract_serde_keys_match_lifted_contrato_key_consts`
22087 // (ca463a4) and
22088 // `membro_serde_keys_match_lifted_membro_key_consts` (ce80ca0)
22089 // pins on the M3 collection-slot atom axes — same discipline
22090 // both collection-slot lifts established, extended here to the
22091 // singleton `:entrada` mesh-slot atom axis, the last M3
22092 // typed-struct top-level `#[serde(rename_all = "camelCase")]`
22093 // axis on the Aplicacao surface without a lifted serde-key
22094 // peer.
22095 let e = Entrada {
22096 host: "checkout.quero.cloud".into(),
22097 para: "cart".into(),
22098 paths: vec!["/cart".into()],
22099 port: 8080,
22100 };
22101 let json = serde_json::to_string(&e).unwrap();
22102 for key in [
22103 crate::ENTRADA_KEY_HOST,
22104 crate::ENTRADA_KEY_PARA,
22105 crate::ENTRADA_KEY_PATHS,
22106 crate::ENTRADA_KEY_PORT,
22107 ] {
22108 let quoted = format!("\"{key}\"");
22109 assert!(
22110 json.contains("ed),
22111 "serialized Entrada must carry the lifted ENTRADA_KEY_* \
22112 byte-sequence {quoted} verbatim in the JSON emission \
22113 (got: {json})",
22114 );
22115 }
22116 }
22117
22118 #[test]
22119 fn entrada_key_consts_are_pairwise_distinct() {
22120 // Cross-axis drift-detection pin: a future collapse of the four
22121 // canonical [`Entrada`] singleton byte-strings onto the same
22122 // value (e.g. an accidental copy-paste flip of
22123 // [`crate::ENTRADA_KEY_PARA`] to also read `"host"`) would
22124 // silently reroute every downstream probe on one axis onto the
22125 // sibling axis's overlay entry and pass every propagation-probe
22126 // test that expected only the stale axis's value — the
22127 // Gateway/HTTPRoute emitter would read the hostname string
22128 // where the destination-Servico name was expected (or vice
22129 // versa), the admission-webhook cross-check would compare the
22130 // wrong pair of values, and the resulting Gateway resource
22131 // would either be admitted with garbage or rejected at the
22132 // controller far from the rebrand commit's source. Peer of the
22133 // sibling four-way distinct pin on the `SUPERVISOR_KEY_*`
22134 // tetrad (40cc4e5), the two-way distinct pin on the
22135 // `MEMBRO_KEY_*` pair (ce80ca0), and the six-way distinct pin
22136 // on the `CONTRATO_KEY_*` triad + `WitTarget::*_FIELD_NAME`
22137 // triad (ca463a4).
22138 let all = [
22139 crate::ENTRADA_KEY_HOST,
22140 crate::ENTRADA_KEY_PARA,
22141 crate::ENTRADA_KEY_PATHS,
22142 crate::ENTRADA_KEY_PORT,
22143 ];
22144 for (i, a) in all.iter().enumerate() {
22145 for b in all.iter().skip(i + 1) {
22146 assert_ne!(
22147 a, b,
22148 "ENTRADA_KEY_* consts must be pairwise-distinct \
22149 canonical byte-sequences — got `{a}` == `{b}`",
22150 );
22151 }
22152 }
22153 }
22154
22155 #[test]
22156 fn entrada_key_consts_are_lower_camel_case_shape() {
22157 // Shape-pin: every `ENTRADA_KEY_*` const must be a
22158 // lowerCamelCase byte-sequence (no `snake_case` underscores, no
22159 // `kebab-case` hyphens, no leading colon, no `PascalCase`
22160 // leading capital, no whitespace / dots) — the canonical shape
22161 // the `#[serde(rename_all = "camelCase")]` derive produces on
22162 // [`Entrada`]. A future flip to a non-camelCase attribute at
22163 // the derive surfaces both here (this test fails on the
22164 // stale-constant shape) and at
22165 // `entrada_serde_keys_match_lifted_entrada_key_consts` (that
22166 // test fails on the mismatch between const and derive). Peer
22167 // with `membro_key_consts_are_lower_camel_case_shape` (ce80ca0)
22168 // and `contrato_key_consts_are_lower_camel_case_shape`
22169 // (ca463a4) on the sibling M3 per-`:membros` and per-`:contratos`
22170 // entry axes.
22171 for key in [
22172 crate::ENTRADA_KEY_HOST,
22173 crate::ENTRADA_KEY_PARA,
22174 crate::ENTRADA_KEY_PATHS,
22175 crate::ENTRADA_KEY_PORT,
22176 ] {
22177 assert!(
22178 !key.is_empty(),
22179 "ENTRADA_KEY_* must be non-empty (got {key:?})"
22180 );
22181 let first = key.chars().next().unwrap();
22182 assert!(
22183 first.is_ascii_lowercase(),
22184 "ENTRADA_KEY_* must lead with an ASCII-lowercase byte \
22185 (got {key:?}, leads with {first:?})",
22186 );
22187 assert!(
22188 key.chars().all(|c| c.is_ascii_alphanumeric()),
22189 "ENTRADA_KEY_* must be ASCII-alphanumeric only \
22190 — no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
22191 );
22192 }
22193 }
22194
22195 // ── drift-detection: serde-derive-to-POLITICAS_KEY_* identity ────────
22196
22197 #[test]
22198 fn mesh_policy_serde_keys_match_lifted_politicas_key_consts() {
22199 // Load-bearing invariant: the five `POLITICAS_KEY_*` consts
22200 // ([`crate::POLITICAS_KEY_TIMEOUT`] /
22201 // [`crate::POLITICAS_KEY_RETRIES`] /
22202 // [`crate::POLITICAS_KEY_CIRCUIT_BREAKER`] /
22203 // [`crate::POLITICAS_KEY_MTLS_REQUIRED`] /
22204 // [`crate::POLITICAS_KEY_RATE_LIMIT`]) name the exact camelCase
22205 // JSON keys the `#[serde(rename_all = "camelCase")]` attribute
22206 // on [`MeshPolicy`] emits. Three of the five axes
22207 // (`circuit_breaker` → `circuitBreaker`, `mtls_required` →
22208 // `mtlsRequired`, `rate_limit` → `rateLimit`) are non-trivial
22209 // camelCase transforms — the derive-attribute is load-bearing
22210 // on those, unlike the sibling `Entrada` / `Membro` /
22211 // `WitContract` structs whose fields are all lowercase-single-
22212 // word and where the derive is a no-op on every axis.
22213 // Serialize a fully-populated [`MeshPolicy`] (every axis
22214 // `Some(…)` so `skip_serializing_if = "Option::is_none"` fires
22215 // on none of the five slots) and pin that each canonical
22216 // byte-sequence appears verbatim in the JSON — a future
22217 // accidental `rename_all = "snake_case"` / `"kebab-case"` /
22218 // verbatim-field-name flip at the derive attribute (any of
22219 // which would silently break every downstream JSON consumer
22220 // that reaches for one of the five consts via
22221 // `Value::get(...)` — the future M4 per-edge `:politicas`
22222 // overlay projection onto Cilium `L7Rules` and Gateway API
22223 // `HTTPRoute` backend timeouts, the future
22224 // `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
22225 // admission-time mesh-policy cross-check, the future
22226 // `feira lint` per-`:politicas` bound-check gate) surfaces here
22227 // as a build-time test failure at `aplicacao.rs`, not as an
22228 // apply-time `.get(<stale-canonical-const>)` returning `None`
22229 // far from the derive-attr drift's commit. Peer with the
22230 // sibling `entrada_serde_keys_match_lifted_entrada_key_consts`
22231 // (a3d6162), `wit_contract_serde_keys_match_lifted_contrato_key_consts`
22232 // (ca463a4), and `membro_serde_keys_match_lifted_membro_key_consts`
22233 // (ce80ca0) pins on the M3 collection-slot / singleton-slot
22234 // atom axes — same discipline every M3 sibling lift
22235 // established, extended here to the singleton `:politicas`
22236 // mesh-slot atom axis, closing the last M3 typed-struct
22237 // top-level `#[serde(rename_all = "camelCase")]` axis on the
22238 // Aplicacao surface without a lifted serde-key peer.
22239 let p = MeshPolicy {
22240 timeout: Some(Duration::from_secs(30)),
22241 retries: Some(3),
22242 circuit_breaker: Some(CircuitBreaker {
22243 max_failures: 5,
22244 window: Duration::from_secs(60),
22245 }),
22246 mtls_required: Some(true),
22247 rate_limit: Some(RateLimit {
22248 rate: 100,
22249 window: Duration::from_secs(1),
22250 }),
22251 };
22252 let json = serde_json::to_string(&p).unwrap();
22253 for key in [
22254 crate::POLITICAS_KEY_TIMEOUT,
22255 crate::POLITICAS_KEY_RETRIES,
22256 crate::POLITICAS_KEY_CIRCUIT_BREAKER,
22257 crate::POLITICAS_KEY_MTLS_REQUIRED,
22258 crate::POLITICAS_KEY_RATE_LIMIT,
22259 ] {
22260 let quoted = format!("\"{key}\"");
22261 assert!(
22262 json.contains("ed),
22263 "serialized MeshPolicy must carry the lifted \
22264 POLITICAS_KEY_* byte-sequence {quoted} verbatim in the \
22265 JSON emission (got: {json})",
22266 );
22267 }
22268 }
22269
22270 #[test]
22271 fn politicas_key_consts_are_pairwise_distinct() {
22272 // Cross-axis drift-detection pin: a future collapse of the five
22273 // canonical [`MeshPolicy`] singleton byte-strings onto the same
22274 // value (e.g. an accidental copy-paste flip of
22275 // [`crate::POLITICAS_KEY_RETRIES`] to also read `"timeout"`)
22276 // would silently reroute every downstream probe on one axis
22277 // onto the sibling axis's overlay entry and pass every
22278 // propagation-probe test that expected only the stale axis's
22279 // value — the M4 per-edge `:politicas` overlay projection would
22280 // read the retry-count string where the timeout duration was
22281 // expected (or vice versa), the CR materializer's admission
22282 // cross-check would compare the wrong pair of values, and the
22283 // resulting mesh reconciler would either bind the wrong axis
22284 // or reject the resource at reconcile far from the rebrand
22285 // commit's source. Peer of the sibling four-way distinct pin
22286 // on the `SUPERVISOR_KEY_*` tetrad (40cc4e5), the four-way
22287 // distinct pin on the `ENTRADA_KEY_*` tetrad (a3d6162), the
22288 // two-way distinct pin on the `MEMBRO_KEY_*` pair (ce80ca0),
22289 // and the six-way distinct pin on the `CONTRATO_KEY_*` triad +
22290 // `WitTarget::*_FIELD_NAME` triad (ca463a4).
22291 let all = [
22292 crate::POLITICAS_KEY_TIMEOUT,
22293 crate::POLITICAS_KEY_RETRIES,
22294 crate::POLITICAS_KEY_CIRCUIT_BREAKER,
22295 crate::POLITICAS_KEY_MTLS_REQUIRED,
22296 crate::POLITICAS_KEY_RATE_LIMIT,
22297 ];
22298 for (i, a) in all.iter().enumerate() {
22299 for b in all.iter().skip(i + 1) {
22300 assert_ne!(
22301 a, b,
22302 "POLITICAS_KEY_* consts must be pairwise-distinct \
22303 canonical byte-sequences — got `{a}` == `{b}`",
22304 );
22305 }
22306 }
22307 }
22308
22309 #[test]
22310 fn politicas_key_consts_are_lower_camel_case_shape() {
22311 // Shape-pin: every `POLITICAS_KEY_*` const must be a
22312 // lowerCamelCase byte-sequence (no `snake_case` underscores, no
22313 // `kebab-case` hyphens, no leading colon, no `PascalCase`
22314 // leading capital, no whitespace / dots) — the canonical shape
22315 // the `#[serde(rename_all = "camelCase")]` derive produces on
22316 // [`MeshPolicy`]. A future flip to a non-camelCase attribute
22317 // at the derive surfaces both here (this test fails on the
22318 // stale-constant shape) and at
22319 // `mesh_policy_serde_keys_match_lifted_politicas_key_consts`
22320 // (that test fails on the mismatch between const and derive).
22321 // Peer with `entrada_key_consts_are_lower_camel_case_shape`
22322 // (a3d6162), `membro_key_consts_are_lower_camel_case_shape`
22323 // (ce80ca0), and `contrato_key_consts_are_lower_camel_case_shape`
22324 // (ca463a4) on the sibling M3 typed-struct axes.
22325 for key in [
22326 crate::POLITICAS_KEY_TIMEOUT,
22327 crate::POLITICAS_KEY_RETRIES,
22328 crate::POLITICAS_KEY_CIRCUIT_BREAKER,
22329 crate::POLITICAS_KEY_MTLS_REQUIRED,
22330 crate::POLITICAS_KEY_RATE_LIMIT,
22331 ] {
22332 assert!(
22333 !key.is_empty(),
22334 "POLITICAS_KEY_* must be non-empty (got {key:?})"
22335 );
22336 let first = key.chars().next().unwrap();
22337 assert!(
22338 first.is_ascii_lowercase(),
22339 "POLITICAS_KEY_* must lead with an ASCII-lowercase \
22340 byte (got {key:?}, leads with {first:?})",
22341 );
22342 assert!(
22343 key.chars().all(|c| c.is_ascii_alphanumeric()),
22344 "POLITICAS_KEY_* must be ASCII-alphanumeric only — \
22345 no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
22346 );
22347 }
22348 }
22349
22350 // ── drift-detection: serde-derive-to-CIRCUIT_BREAKER_KEY_* identity ──
22351
22352 #[test]
22353 fn circuit_breaker_serde_keys_match_lifted_circuit_breaker_key_consts() {
22354 // Load-bearing invariant: the two `CIRCUIT_BREAKER_KEY_*` consts
22355 // ([`crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES`] /
22356 // [`crate::CIRCUIT_BREAKER_KEY_WINDOW`]) name the exact camelCase
22357 // JSON keys the `#[serde(rename_all = "camelCase")]` attribute on
22358 // [`CircuitBreaker`] emits inside the
22359 // [`crate::POLITICAS_KEY_CIRCUIT_BREAKER`] sub-block. One of the
22360 // two axes (`max_failures` → `maxFailures`) is a non-trivial
22361 // camelCase transform — the derive-attribute is load-bearing on
22362 // that axis, unlike the sibling `window` field where the derive
22363 // is a no-op. Serialize a fully-populated [`CircuitBreaker`] and
22364 // pin that each canonical byte-sequence appears verbatim in the
22365 // JSON — a future accidental `rename_all = "snake_case"` /
22366 // `"kebab-case"` / verbatim-field-name flip at the derive
22367 // attribute (any of which would silently break every downstream
22368 // JSON consumer that reaches for one of the two consts via
22369 // `Value::get(POLITICAS_KEY_CIRCUIT_BREAKER).and_then(|v|
22370 // v.get(CIRCUIT_BREAKER_KEY_MAX_FAILURES))` — the future M4
22371 // per-edge `:politicas` overlay projection onto the mesh's
22372 // per-backend consecutive-failure-counter tripping threshold, the
22373 // future `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
22374 // admission-time breaker cross-check, the future `feira lint`
22375 // per-`:politicas :circuit-breaker` bound-check gate) surfaces
22376 // here as a build-time test failure at `aplicacao.rs`, not as an
22377 // apply-time `.get(<stale-canonical-const>)` returning `None`
22378 // far from the derive-attr drift's commit. Peer with the sibling
22379 // `mesh_policy_serde_keys_match_lifted_politicas_key_consts`
22380 // (b55cca7) parent-axis pin — that test pins the outer
22381 // sub-block key the derive on [`MeshPolicy`] emits, this test
22382 // pins the inner keys the derive on the payload type emits, so
22383 // the two together lock the whole [`MeshPolicy`] breaker-tuning
22384 // shape end-to-end at build time.
22385 let cb = CircuitBreaker {
22386 max_failures: 5,
22387 window: Duration::from_secs(60),
22388 };
22389 let json = serde_json::to_string(&cb).unwrap();
22390 for key in [
22391 crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES,
22392 crate::CIRCUIT_BREAKER_KEY_WINDOW,
22393 ] {
22394 let quoted = format!("\"{key}\"");
22395 assert!(
22396 json.contains("ed),
22397 "serialized CircuitBreaker must carry the lifted \
22398 CIRCUIT_BREAKER_KEY_* byte-sequence {quoted} verbatim \
22399 in the JSON emission (got: {json})",
22400 );
22401 }
22402 }
22403
22404 #[test]
22405 fn circuit_breaker_key_consts_are_pairwise_distinct() {
22406 // Cross-axis drift-detection pin: a future collapse of the two
22407 // canonical [`CircuitBreaker`] sub-block byte-strings onto the
22408 // same value (e.g. an accidental copy-paste flip of
22409 // [`crate::CIRCUIT_BREAKER_KEY_WINDOW`] to also read
22410 // `"maxFailures"`) would silently reroute every downstream
22411 // probe on one axis onto the sibling axis's overlay entry and
22412 // pass every propagation-probe test that expected only the
22413 // stale axis's value — the M4 per-edge `:politicas` overlay
22414 // projection would read the failure-count where the window
22415 // duration was expected (or vice versa), the CR materializer's
22416 // admission cross-check would compare the wrong pair of values,
22417 // and the resulting mesh reconciler would either bind the wrong
22418 // axis or reject the resource at reconcile far from the rebrand
22419 // commit's source. Peer of the sibling five-way distinct pin on
22420 // the `POLITICAS_KEY_*` pentad (b55cca7), the four-way distinct
22421 // pin on the `ENTRADA_KEY_*` tetrad (a3d6162), the two-way
22422 // distinct pin on the `MEMBRO_KEY_*` pair (ce80ca0), and the
22423 // six-way distinct pin on the `CONTRATO_KEY_*` triad +
22424 // `WitTarget::*_FIELD_NAME` triad (ca463a4).
22425 let all = [
22426 crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES,
22427 crate::CIRCUIT_BREAKER_KEY_WINDOW,
22428 ];
22429 for (i, a) in all.iter().enumerate() {
22430 for b in all.iter().skip(i + 1) {
22431 assert_ne!(
22432 a, b,
22433 "CIRCUIT_BREAKER_KEY_* consts must be pairwise-distinct \
22434 canonical byte-sequences — got `{a}` == `{b}`",
22435 );
22436 }
22437 }
22438 }
22439
22440 #[test]
22441 fn circuit_breaker_key_consts_are_lower_camel_case_shape() {
22442 // Shape-pin: every `CIRCUIT_BREAKER_KEY_*` const must be a
22443 // lowerCamelCase byte-sequence (no `snake_case` underscores, no
22444 // `kebab-case` hyphens, no leading colon, no `PascalCase`
22445 // leading capital, no whitespace / dots) — the canonical shape
22446 // the `#[serde(rename_all = "camelCase")]` derive produces on
22447 // [`CircuitBreaker`]. A future flip to a non-camelCase attribute
22448 // at the derive surfaces both here (this test fails on the
22449 // stale-constant shape) and at
22450 // `circuit_breaker_serde_keys_match_lifted_circuit_breaker_key_consts`
22451 // (that test fails on the mismatch between const and derive).
22452 // Peer with `politicas_key_consts_are_lower_camel_case_shape`
22453 // (b55cca7), `entrada_key_consts_are_lower_camel_case_shape`
22454 // (a3d6162), `membro_key_consts_are_lower_camel_case_shape`
22455 // (ce80ca0), and `contrato_key_consts_are_lower_camel_case_shape`
22456 // (ca463a4) on the sibling M3 typed-struct axes.
22457 for key in [
22458 crate::CIRCUIT_BREAKER_KEY_MAX_FAILURES,
22459 crate::CIRCUIT_BREAKER_KEY_WINDOW,
22460 ] {
22461 assert!(
22462 !key.is_empty(),
22463 "CIRCUIT_BREAKER_KEY_* must be non-empty (got {key:?})"
22464 );
22465 let first = key.chars().next().unwrap();
22466 assert!(
22467 first.is_ascii_lowercase(),
22468 "CIRCUIT_BREAKER_KEY_* must lead with an ASCII-lowercase \
22469 byte (got {key:?}, leads with {first:?})",
22470 );
22471 assert!(
22472 key.chars().all(|c| c.is_ascii_alphanumeric()),
22473 "CIRCUIT_BREAKER_KEY_* must be ASCII-alphanumeric only — \
22474 no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
22475 );
22476 }
22477 }
22478
22479 // ── drift-detection: serde-derive-to-M3_PLACEMENT_KEY_* identity ─────
22480
22481 #[test]
22482 fn placement_serde_keys_match_lifted_m3_placement_key_consts() {
22483 // Load-bearing invariant: the four `M3_PLACEMENT_KEY_*` consts
22484 // ([`crate::M3_PLACEMENT_KEY_ESTRATEGIA`] /
22485 // [`crate::M3_PLACEMENT_KEY_CLUSTERS`] /
22486 // [`crate::M3_PLACEMENT_KEY_AFFINITY`] /
22487 // [`crate::M3_PLACEMENT_KEY_SHARD_KEY`]) name the exact camelCase
22488 // JSON keys the `#[serde(rename_all = "camelCase")]` attribute on
22489 // [`Placement`] emits. One of the four axes (`shard_key` →
22490 // `shardKey`) is a non-trivial camelCase transform — the
22491 // derive-attribute is load-bearing on that axis, unlike the
22492 // sibling `estrategia` / `clusters` / `affinity` axes whose
22493 // source-side field names carry no `_` and where the derive is a
22494 // no-op. Serialize a fully-populated [`Placement`] (both
22495 // `Option`-carrying axes `Some(_)` so
22496 // `skip_serializing_if = "Option::is_none"` fires on neither of
22497 // the two optional slots) and pin that each canonical
22498 // byte-sequence appears verbatim in the JSON — a future
22499 // accidental `rename_all = "snake_case"` / `"kebab-case"` /
22500 // verbatim-field-name flip at the derive attribute (any of which
22501 // would silently break every downstream consumer that reaches
22502 // for one of the four consts via
22503 // `Value::get(M3_KEY_PLACEMENT).and_then(|v|
22504 // v.get(M3_PLACEMENT_KEY_*))` — the `lareira-fleet-programs`
22505 // aggregator's per-cluster fanout filter keying off
22506 // `placement.clusters`, the M3 shard-pool dispatch materializer
22507 // keying off `placement.shardKey`, the M3 Adaptive compression
22508 // pass weighting off `placement.affinity`, every downstream
22509 // dispatcher branching on `placement.estrategia`, the future
22510 // `mesh.pleme.io/v1alpha1/Aplicacao` CR materializer's
22511 // admission-time placement cross-check, the future `feira lint`
22512 // per-`:placement` bound-check gate) surfaces here as a
22513 // build-time test failure at `aplicacao.rs`, not as an
22514 // apply-time `.get(<stale-canonical-const>)` returning `None`
22515 // far from the derive-attr drift's commit. Peer with the sibling
22516 // `mesh_policy_serde_keys_match_lifted_politicas_key_consts`
22517 // (b55cca7),
22518 // `circuit_breaker_serde_keys_match_lifted_circuit_breaker_key_consts`
22519 // (468e959),
22520 // `entrada_serde_keys_match_lifted_entrada_key_consts` (a3d6162),
22521 // `wit_contract_serde_keys_match_lifted_contrato_key_consts`
22522 // (ca463a4), and
22523 // `membro_serde_keys_match_lifted_membro_key_consts` (ce80ca0)
22524 // pins on the M3 collection-slot / singleton-slot atom axes —
22525 // closes the last M3 typed-struct top-level
22526 // `#[serde(rename_all = "camelCase")]` axis on the Aplicacao
22527 // surface without a drift-detection pin.
22528 let p = Placement {
22529 estrategia: PlacementStrategy::Sharded,
22530 clusters: vec!["rio".into(), "mar".into()],
22531 affinity: Some("data-locality".into()),
22532 shard_key: Some("$tenantId".into()),
22533 };
22534 let json = serde_json::to_string(&p).unwrap();
22535 for key in [
22536 crate::M3_PLACEMENT_KEY_ESTRATEGIA,
22537 crate::M3_PLACEMENT_KEY_CLUSTERS,
22538 crate::M3_PLACEMENT_KEY_AFFINITY,
22539 crate::M3_PLACEMENT_KEY_SHARD_KEY,
22540 ] {
22541 let quoted = format!("\"{key}\"");
22542 assert!(
22543 json.contains("ed),
22544 "serialized Placement must carry the lifted \
22545 M3_PLACEMENT_KEY_* byte-sequence {quoted} verbatim in \
22546 the JSON emission (got: {json})",
22547 );
22548 }
22549 }
22550
22551 #[test]
22552 fn m3_placement_key_consts_are_pairwise_distinct() {
22553 // Cross-axis drift-detection pin: a future collapse of the four
22554 // canonical [`Placement`] sub-block byte-strings onto the same
22555 // value (e.g. an accidental copy-paste flip of
22556 // [`crate::M3_PLACEMENT_KEY_SHARD_KEY`] to also read
22557 // `"affinity"`) would silently reroute every downstream probe on
22558 // one axis onto the sibling axis's overlay entry and pass every
22559 // propagation-probe test that expected only the stale axis's
22560 // value — the M3 shard-pool dispatch materializer would read the
22561 // affinity placement-hint where the shard-selection template was
22562 // expected (or vice versa), the M3 Adaptive compression pass's
22563 // cross-check would compare the wrong pair of values, and the
22564 // resulting placement engine would either bind the wrong axis or
22565 // reject the resource at reconcile far from the rebrand commit's
22566 // source. Peer of the sibling two-way distinct pin on the
22567 // `CIRCUIT_BREAKER_KEY_*` pair (468e959), the five-way distinct
22568 // pin on the `POLITICAS_KEY_*` pentad (b55cca7), the four-way
22569 // distinct pin on the `ENTRADA_KEY_*` tetrad (a3d6162), the
22570 // two-way distinct pin on the `MEMBRO_KEY_*` pair (ce80ca0), and
22571 // the six-way distinct pin on the `CONTRATO_KEY_*` triad +
22572 // `WitTarget::*_FIELD_NAME` triad (ca463a4).
22573 let all = [
22574 crate::M3_PLACEMENT_KEY_ESTRATEGIA,
22575 crate::M3_PLACEMENT_KEY_CLUSTERS,
22576 crate::M3_PLACEMENT_KEY_AFFINITY,
22577 crate::M3_PLACEMENT_KEY_SHARD_KEY,
22578 ];
22579 for (i, a) in all.iter().enumerate() {
22580 for b in all.iter().skip(i + 1) {
22581 assert_ne!(
22582 a, b,
22583 "M3_PLACEMENT_KEY_* consts must be pairwise-distinct \
22584 canonical byte-sequences — got `{a}` == `{b}`",
22585 );
22586 }
22587 }
22588 }
22589
22590 #[test]
22591 fn m3_placement_key_consts_are_lower_camel_case_shape() {
22592 // Shape-pin: every `M3_PLACEMENT_KEY_*` const must be a
22593 // lowerCamelCase byte-sequence (no `snake_case` underscores, no
22594 // `kebab-case` hyphens, no leading colon, no `PascalCase`
22595 // leading capital, no whitespace / dots) — the canonical shape
22596 // the `#[serde(rename_all = "camelCase")]` derive produces on
22597 // [`Placement`]. A future flip to a non-camelCase attribute at
22598 // the derive surfaces both here (this test fails on the stale-
22599 // constant shape) and at
22600 // `placement_serde_keys_match_lifted_m3_placement_key_consts`
22601 // (that test fails on the mismatch between const and derive).
22602 // Peer with `circuit_breaker_key_consts_are_lower_camel_case_shape`
22603 // (468e959), `politicas_key_consts_are_lower_camel_case_shape`
22604 // (b55cca7), `entrada_key_consts_are_lower_camel_case_shape`
22605 // (a3d6162), `membro_key_consts_are_lower_camel_case_shape`
22606 // (ce80ca0), and `contrato_key_consts_are_lower_camel_case_shape`
22607 // (ca463a4) on the sibling M3 typed-struct axes.
22608 for key in [
22609 crate::M3_PLACEMENT_KEY_ESTRATEGIA,
22610 crate::M3_PLACEMENT_KEY_CLUSTERS,
22611 crate::M3_PLACEMENT_KEY_AFFINITY,
22612 crate::M3_PLACEMENT_KEY_SHARD_KEY,
22613 ] {
22614 assert!(
22615 !key.is_empty(),
22616 "M3_PLACEMENT_KEY_* must be non-empty (got {key:?})"
22617 );
22618 let first = key.chars().next().unwrap();
22619 assert!(
22620 first.is_ascii_lowercase(),
22621 "M3_PLACEMENT_KEY_* must lead with an ASCII-lowercase \
22622 byte (got {key:?}, leads with {first:?})",
22623 );
22624 assert!(
22625 key.chars().all(|c| c.is_ascii_alphanumeric()),
22626 "M3_PLACEMENT_KEY_* must be ASCII-alphanumeric only — \
22627 no `_` / `-` / `:` / `.` / whitespace (got {key:?})",
22628 );
22629 }
22630 }
22631
22632 // ── AplicacaoSpec::port_for_destination — the substrate-canonical
22633 // destination-facing L4 port resolver every per-Aplicacao renderer
22634 // reaching for a per-destination Servico TCP port axis routes
22635 // through. The four pin tests below fix the four-way accept-set
22636 // the resolver must always honor: (:entrada-para-matches,
22637 // :entrada-para-mismatches, :entrada-none-so-fallback,
22638 // :entrada-port-non-default-honored) — drift on any arm surfaces
22639 // at caixa-core build time rather than at cluster-apply time.
22640
22641 #[test]
22642 fn port_for_destination_returns_entrada_port_when_para_matches_destination() {
22643 // The typed `:entrada` block's `:para "cart"` matches the
22644 // queried destination, so the resolver returns the author-
22645 // declared `:port` scalar verbatim — the canonical "the
22646 // destination Servico IS the ingress apex, honor the typed
22647 // listener port" arm of the port-resolution dispatch.
22648 let mut spec = three_member_spec();
22649 if let Some(e) = spec.entrada.as_mut() {
22650 e.para = "cart".into();
22651 e.port = 9090;
22652 }
22653 assert_eq!(
22654 spec.port_for_destination("cart"),
22655 9090,
22656 "port_for_destination(entrada.para) must return entrada.port \
22657 verbatim, not the DEFAULT_SERVICO_PORT fallback"
22658 );
22659 }
22660
22661 #[test]
22662 fn port_for_destination_falls_back_to_default_servico_port_when_para_mismatches() {
22663 // The typed `:entrada` block names `:para "cart"`, but the
22664 // queried destination is `"payment"` — a Servico that
22665 // participates in the mesh graph but is not the ingress apex.
22666 // The resolver falls back to the lifted DEFAULT_SERVICO_PORT
22667 // canonical port floor, closing the "non-apex destination reads
22668 // the substrate default" arm. Same fixture the peer
22669 // `cnp_l4_fallback_port_routes_through_lifted_default_servico_port`
22670 // pin at caixa-mesh exercises through the CNP emit-side path;
22671 // this pin exercises the shared underlying resolver directly.
22672 let spec = three_member_spec();
22673 assert_eq!(
22674 spec.port_for_destination("payment"),
22675 DEFAULT_SERVICO_PORT,
22676 "port_for_destination(non-apex-destination) must route \
22677 through the lifted DEFAULT_SERVICO_PORT canonical port floor"
22678 );
22679 }
22680
22681 #[test]
22682 fn port_for_destination_falls_back_to_default_servico_port_when_entrada_none() {
22683 // Internal-only Aplicacao — no `:entrada` block declared. Every
22684 // per-destination port query falls back to the lifted
22685 // DEFAULT_SERVICO_PORT canonical floor. The arm exists because
22686 // the Aplicacao surface admits `:entrada None` (internal mesh
22687 // with no external gateway); every downstream renderer's per-
22688 // destination port axis must still resolve to a well-defined
22689 // scalar even without an ingress apex.
22690 let mut spec = three_member_spec();
22691 spec.entrada = None;
22692 assert_eq!(
22693 spec.port_for_destination("cart"),
22694 DEFAULT_SERVICO_PORT,
22695 "port_for_destination on an internal-only Aplicacao must \
22696 fall back to the lifted DEFAULT_SERVICO_PORT floor for \
22697 every destination"
22698 );
22699 assert_eq!(
22700 spec.port_for_destination("payment"),
22701 DEFAULT_SERVICO_PORT,
22702 "port_for_destination on an internal-only Aplicacao must \
22703 fall back uniformly across every destination — the fallback \
22704 is not entrada-shape-conditional"
22705 );
22706 }
22707
22708 #[test]
22709 fn port_for_destination_honors_non_default_entrada_port_verbatim() {
22710 // Structural pin against a hypothetical future refactor that
22711 // reconciled `entrada.port` against `DEFAULT_SERVICO_PORT` at
22712 // the resolver (a "normalize to the default when the author's
22713 // port matches the substrate default" collapse) — that would
22714 // break renderer sites that carry meaning on the emitted port
22715 // value beyond bare equality (a future per-cluster listener-
22716 // audit that keys off the author-declared port, not the
22717 // resolved-with-fallback port). Pin that a non-default
22718 // entrada.port is returned verbatim so drift here surfaces at
22719 // caixa-core build time.
22720 let mut spec = three_member_spec();
22721 if let Some(e) = spec.entrada.as_mut() {
22722 e.para = "cart".into();
22723 e.port = 8443;
22724 }
22725 assert_ne!(
22726 8443, DEFAULT_SERVICO_PORT,
22727 "test fixture must probe a port distinct from \
22728 DEFAULT_SERVICO_PORT to exercise the honor-verbatim arm"
22729 );
22730 assert_eq!(
22731 spec.port_for_destination("cart"),
22732 8443,
22733 "port_for_destination(entrada.para) must return entrada.port \
22734 verbatim, even when the port differs from DEFAULT_SERVICO_PORT"
22735 );
22736 }
22737
22738 #[test]
22739 fn port_for_destination_at_entrada_destination_returns_entrada_port_across_permutations() {
22740 // Apex-identity pair-invariant pin composing both substrate-
22741 // primitive typed dispatches — [`AplicacaoSpec::port_for_destination`]
22742 // and [`Entrada::destination`] — at the emit-side call shape
22743 // every per-Aplicacao renderer's ingress-apex L4 port reader
22744 // now takes. The invariant:
22745 //
22746 // spec.port_for_destination(entrada.destination()) == entrada.port
22747 //
22748 // holds by construction under today's single-destination
22749 // `:entrada` slot (`destination()` returns `entrada.para`, and
22750 // the resolver's apex arm matches `para == destination` and
22751 // returns `entrada.port`), and every downstream consumer that
22752 // composes the two accessors at the ingress apex — the
22753 // `caixa_mesh::gateway_routes` HTTPRoute per-rule
22754 // `backendRefs[0].port` emit-site path, the peer future M4 CR
22755 // materializer's admission-webhook that promotes the scalar to
22756 // a per-CR override overlay, every future per-Aplicacao snapshot
22757 // renderer's apex-facing L4 port reader — reaches through the
22758 // same composition. Pin the identity across four permutations
22759 // (`:para` × `:port` including a non-default port to exercise
22760 // the honor-verbatim arm and a non-cart `:para` to exercise
22761 // destination-agnostic identity) so a future refactor that
22762 // silently split either accessor's apex behavior surfaces at
22763 // caixa-core build time — a subtle `destination()` renaming
22764 // that returned `entrada.host.as_str()` instead of
22765 // `entrada.para.as_str()` would blow this pin loudly, closing
22766 // the last quiet failure mode the two lifts admit in composition.
22767 //
22768 // Peer discipline with the sibling caixa-mesh cross-crate pin
22769 // [`caixa_mesh::tests::httproute_backend_ref_port_and_cnp_l4_port_share_port_for_destination_resolver_at_emit_site`]
22770 // on the two-renderer pair-invariant axis; this pin encodes the
22771 // same two-consumer coherence rule at the substrate-primitive
22772 // level so the invariant survives even if every renderer is
22773 // deleted.
22774 for (para, port) in [
22775 ("cart", DEFAULT_SERVICO_PORT),
22776 ("cart", 8443u16),
22777 ("payment", 9090u16),
22778 ("catalog", 443u16),
22779 ] {
22780 let mut spec = three_member_spec();
22781 if let Some(e) = spec.entrada.as_mut() {
22782 e.para = para.into();
22783 e.port = port;
22784 }
22785 let expected_port = spec
22786 .entrada
22787 .as_ref()
22788 .expect("three_member_spec carries a typed `:entrada` block")
22789 .port;
22790 let composed_port = {
22791 let entrada = spec.entrada.as_ref().expect("entrada present");
22792 spec.port_for_destination(entrada.destination())
22793 };
22794 assert_eq!(
22795 composed_port, expected_port,
22796 "`spec.port_for_destination(entrada.destination())` must \
22797 equal `entrada.port` under today's single-destination \
22798 `:entrada` slot — this is the apex-identity contract \
22799 every downstream ingress-apex L4 port reader relies on. \
22800 Input :entrada :para: {para:?}, :entrada :port: {port}"
22801 );
22802 }
22803 }
22804
22805 #[test]
22806 fn port_for_destination_apex_arm_routes_through_destination_accessor() {
22807 // Composition pin: [`AplicacaoSpec::port_for_destination`]'s
22808 // per-`:entrada` apex-arm membership probe must key off
22809 // [`Entrada::destination`], not the raw `.para` field access.
22810 // Structurally: setting ONLY the `:entrada :para` field to a
22811 // fresh non-cart destination on an otherwise-well-formed
22812 // Aplicacao must (1) leave `e.destination()` byte-equal to
22813 // `e.para.as_str()` (the accessor is byte-projective by
22814 // definition), and (2) cause the resolver's apex arm to fire
22815 // and return `entrada.port` at exactly that new destination
22816 // while every other destination string falls through to
22817 // [`DEFAULT_SERVICO_PORT`] under the accessor-projected
22818 // membership check. Pins against a future silent detour that
22819 // (a) re-derived the apex-arm membership probe off
22820 // `e.para == destination` in `port_for_destination` instead of
22821 // `e.destination() == destination`, silently disagreeing with
22822 // the two peer `caixa-mesh` per-`(HTTPRoute, CNP)` emit-site
22823 // consumers (`entrada.destination()` at
22824 // caixa-mesh/src/lib.rs:3173, `c.destination()` at
22825 // caixa-mesh/src/lib.rs:2739) that already reach through the
22826 // accessor, (b) accessor-side introduced a per-tenant alias
22827 // arm the caller was unaware of, silently rewriting an
22828 // author-declared `:para "cart"` value to a canary-aliased
22829 // form — the raw-field-access resolver would fall through to
22830 // `DEFAULT_SERVICO_PORT` matching the un-aliased destination
22831 // while the peer emit-site consumers landed on the aliased
22832 // destination, splitting the ingress-apex L4 port at
22833 // cluster-apply time.
22834 //
22835 // Peer of the sibling
22836 // [`validate_membros_empty_gate_routes_through_nome_accessor`]
22837 // (d0de220) composition pin on the per-`:membros` refusal-arm
22838 // axis — same "the shape-gate predicate must route through the
22839 // substrate-primitive typed dispatch" discipline extended onto
22840 // the per-`:entrada` apex-arm membership-probe axis. Closes
22841 // the last unlifted `.para` production-code read site on
22842 // `Entrada` in `caixa-core` — after this converge every
22843 // `caixa-core` `.para` field access outside the accessor's own
22844 // body and outside the `WitContract` per-`:contratos` sibling
22845 // axis is either a test-side field-setter or a doc-comment
22846 // reference.
22847 for (para, port) in [("cart", 8080u16), ("payment", 9090u16), ("catalog", 443u16)] {
22848 let mut spec = three_member_spec();
22849 if let Some(e) = spec.entrada.as_mut() {
22850 e.para = para.into();
22851 e.port = port;
22852 }
22853 let e = spec
22854 .entrada
22855 .as_ref()
22856 .expect("three_member_spec carries a typed `:entrada` block");
22857 assert_eq!(
22858 e.destination(),
22859 e.para.as_str(),
22860 "Entrada::destination must byte-equal the .para field \
22861 access — an accessor-side detour that no longer \
22862 projects the raw field would silently split this \
22863 drift-detection test from the port_for_destination \
22864 apex-arm membership probe",
22865 );
22866 assert_eq!(
22867 spec.port_for_destination(para),
22868 port,
22869 "port_for_destination must key off the accessor-projected \
22870 destination and return `entrada.port` on the apex arm — \
22871 input :entrada :para: {para:?}, :entrada :port: {port}",
22872 );
22873 assert_eq!(
22874 spec.port_for_destination("ghost-destination-never-a-member"),
22875 DEFAULT_SERVICO_PORT,
22876 "port_for_destination must fall through to \
22877 DEFAULT_SERVICO_PORT on a non-matching destination \
22878 under the accessor-projected membership check — input \
22879 :entrada :para: {para:?}, :entrada :port: {port}",
22880 );
22881 }
22882 }
22883
22884 #[test]
22885 fn rate_limit_rate_returns_rate_u32_byte_equal_across_permutations() {
22886 // The canonical per-`:politicas :rate-limit` `:rate`
22887 // Envoy-local-rate-limit-mesh token-bucket-capacity scalar pin:
22888 // [`RateLimit::rate`] must return the `:politicas :rate-limit`
22889 // typed `u32` verbatim, byte-equal to the raw field access
22890 // across every representative value in the accept-set — `1` (the
22891 // lower boundary of the `1..=POLICY_RATE_LIMIT_MAX` accept-set
22892 // the surrounding [`AplicacaoSpec::validate_politicas`] gate
22893 // carves out on the sibling `PolicyRateLimitZero` refusal),
22894 // `POLICY_RATE_LIMIT_MAX` (the upper boundary the same gate
22895 // carves out on the sibling `PolicyRateLimitExceedsCap` refusal),
22896 // `0` (a past-the-guard sentinel that pins the accessor doesn't
22897 // perform a silent bounds-collapse into `1` on the zero arm —
22898 // validate rejects zero but the accessor must ship the raw slot
22899 // verbatim so a validate-time gate regression surfaces at the
22900 // emit boundary rather than being silently absorbed), `u32::MAX`
22901 // (a past-the-guard sentinel that pins the accessor doesn't
22902 // perform a silent bounds-collapse through
22903 // `POLICY_RATE_LIMIT_MAX` at the return path).
22904 //
22905 // First sub-struct required-scalar accessor pin on the
22906 // `RateLimit` axis — sibling in shape to the peer
22907 // per-`CircuitBreaker` [`CircuitBreaker::max_failures`] (3a74062)
22908 // required-`u32` accessor pin on the peer per-sub-struct
22909 // required-axis. Pins against a future silent detour that
22910 // re-derived the token capacity from a peer axis (an accidental
22911 // `self.window.as_secs() as u32` collapse that read the
22912 // rate-limit window duration as a token count), a `0 → 1`
22913 // cluster-default projection (which would silently absorb the
22914 // `PolicyRateLimitZero` refusal case at the accessor boundary),
22915 // or a bounds-collapsing accessor that clamped the return
22916 // through `POLICY_RATE_LIMIT_MAX` (the `AplicacaoSpec::validate`
22917 // gate owns the bounds; the accessor must ship the raw slot
22918 // verbatim).
22919 for rate in [1u32, POLICY_RATE_LIMIT_MAX, 0, u32::MAX] {
22920 let rl = RateLimit {
22921 rate,
22922 window: Duration::from_secs(1),
22923 };
22924 assert_eq!(
22925 rl.rate(),
22926 rate,
22927 "RateLimit::rate must return :politicas :rate-limit :rate \
22928 verbatim (got {}, expected {rate})",
22929 rl.rate(),
22930 );
22931 assert_eq!(
22932 rl.rate(),
22933 rl.rate,
22934 "RateLimit::rate must byte-equal the raw .rate field \
22935 access across every value in the u32 accept-set",
22936 );
22937 }
22938 }
22939
22940 #[test]
22941 fn validate_politicas_rate_zero_floor_arm_routes_through_accessor() {
22942 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
22943 // `:rate-limit :rate` zero-floor arm must key off
22944 // [`RateLimit::rate`], not the raw `.rate` field access.
22945 // Structurally: a `RateLimit { rate: 0, window:
22946 // Duration::from_secs(1) }` embedded in a `:politicas
22947 // :rate-limit` slot must surface the `PolicyRateLimitZero`
22948 // refusal exactly, and a `RateLimit { rate: 1, window:
22949 // Duration::from_secs(1) }` (the lower boundary of the
22950 // `1..=POLICY_RATE_LIMIT_MAX` accept-set) must pass validate.
22951 // The pair jointly pins the accessor + validate-gate composition:
22952 // any future silent detour that had the accessor return a fresh
22953 // `1` on the zero arm (a `.rate().max(1)` collapse) would
22954 // silently absorb the `PolicyRateLimitZero` refusal at the
22955 // accessor boundary and the validate gate would accept a
22956 // struct-literal `RateLimit { rate: 0, .. }` — the composition
22957 // pin catches that at caixa-core build time.
22958 //
22959 // Peer of the sibling per-`CircuitBreaker`
22960 // [`CircuitBreaker::max_failures`] (3a74062) /
22961 // [`CircuitBreaker::window`] (373957f) accessor-composition
22962 // pins on the peer required-scalar axes — same "the validate /
22963 // shape-gate predicate must route through the substrate-primitive
22964 // typed dispatch" discipline extended onto the peer
22965 // per-`RateLimit` required-`u32` composition axis.
22966 let mut spec = three_member_spec();
22967 spec.politicas = MeshPolicy {
22968 rate_limit: Some(RateLimit {
22969 rate: 0,
22970 window: Duration::from_secs(1),
22971 }),
22972 ..MeshPolicy::default()
22973 };
22974 assert!(
22975 matches!(spec.validate(), Err(AplicacaoError::PolicyRateLimitZero)),
22976 "validate_politicas must reject rate == 0 with \
22977 PolicyRateLimitZero — the accessor and the validate gate \
22978 must route through the same substrate-primitive typed \
22979 dispatch on the :rate zero-floor arm",
22980 );
22981 spec.politicas = MeshPolicy {
22982 rate_limit: Some(RateLimit {
22983 rate: 1,
22984 window: Duration::from_secs(1),
22985 }),
22986 ..MeshPolicy::default()
22987 };
22988 assert!(
22989 spec.validate().is_ok(),
22990 "validate_politicas must accept rate == 1 (the lower \
22991 boundary of the 1..=POLICY_RATE_LIMIT_MAX accept-set)",
22992 );
22993 }
22994
22995 #[test]
22996 fn rate_limit_rate_projects_u32_by_copy() {
22997 // The by-copy pin: [`RateLimit::rate`] returns `u32` by copy —
22998 // `u32` is `Copy` and the accessor must return by value, not by
22999 // reference. Peer of the sibling per-`CircuitBreaker`
23000 // [`CircuitBreaker::max_failures`] (3a74062) by-copy pin on the
23001 // peer required-scalar `:max-failures` axis, extended onto the
23002 // peer per-`RateLimit` required-`u32` copy-invariant shape —
23003 // the accessor's returned `u32` must outlive `&self` (multiple
23004 // calls must return equal values from a dropped-`&self` copy,
23005 // since the returned scalar carries no borrow), and calling the
23006 // accessor twice on the same RateLimit must yield the same
23007 // `u32` verbatim (idempotent, no side effects on `&self`).
23008 //
23009 // Pins against a future silent detour that returned `&u32`
23010 // (which would type-check but silently break every downstream
23011 // arithmetic consumer — [`crate::render::require_positive_bounded_u32`]'s
23012 // first parameter is `u32`, and `&u32` would fold to a detached
23013 // copy at the call site with a `*` deref the sibling accessors
23014 // don't need), an accidental `.rate.wrapping_add(0)` detour that
23015 // returned a fresh copy through an arithmetic no-op (breaking a
23016 // future `const fn` regression), or a one-arm-only accessor
23017 // that returned a saturating value on some sentinel input
23018 // (breaking the pass-through invariant the sibling required-
23019 // scalar accessors carry).
23020 for rate in [1u32, POLICY_RATE_LIMIT_MAX, 0, u32::MAX] {
23021 let rl = RateLimit {
23022 rate,
23023 window: Duration::from_secs(1),
23024 };
23025 let first = rl.rate();
23026 let second = rl.rate();
23027 assert_eq!(
23028 first, second,
23029 "RateLimit::rate must be idempotent — two successive \
23030 calls on the same &self must return the same u32",
23031 );
23032 assert_eq!(
23033 first, rate,
23034 "RateLimit::rate must return :politicas :rate-limit :rate \
23035 verbatim by copy — got {first}, expected {rate}",
23036 );
23037 }
23038 }
23039
23040 #[test]
23041 fn rate_limit_window_returns_window_duration_byte_equal_across_permutations() {
23042 // The canonical per-`:politicas :rate-limit` `:window`
23043 // Envoy-local-rate-limit-mesh token-bucket-refill-period scalar
23044 // pin: [`RateLimit::window`] must return the
23045 // `:politicas :rate-limit :window` typed `Duration` verbatim,
23046 // byte-equal to the raw field access across every
23047 // representative value in the accept-set — `Duration::from_secs(1)`
23048 // (the `"s"` canonical window, the lower row of
23049 // [`RATE_LIMIT_UNIT_TABLE`] the surrounding
23050 // [`AplicacaoSpec::validate_politicas`] gate accepts via
23051 // [`is_canonical_rate_limit_window`]),
23052 // `Duration::from_secs(60)` (the `"m"` canonical window, the
23053 // middle row), `Duration::from_secs(3600)` (the `"h"` canonical
23054 // window, the upper row), `Duration::ZERO` (a past-the-guard
23055 // sentinel that pins the accessor doesn't perform a silent
23056 // bounds-collapse into `Duration::from_secs(1)` on the zero
23057 // arm — validate rejects an off-set window through
23058 // `PolicyRateLimitWindowNotCanonical` but the accessor must
23059 // ship the raw slot verbatim so a validate-time gate
23060 // regression surfaces at the emit boundary rather than being
23061 // silently absorbed), `Duration::from_millis(500)` (a
23062 // sub-canonical past-the-guard sentinel that pins the accessor
23063 // doesn't silently normalize a non-canonical fractional
23064 // magnitude onto the nearest canonical row).
23065 //
23066 // Second sub-struct required-scalar accessor pin on the
23067 // `RateLimit` axis — sibling in shape to the just-landed
23068 // per-`RateLimit` [`RateLimit::rate`] (7f81a60) required-`u32`
23069 // accessor pin on the peer per-sub-struct required-axis,
23070 // extended onto the per-`RateLimit` required-`Duration` axis.
23071 // Pins against a future silent detour that re-derived the
23072 // refill period from a peer axis (an accidental
23073 // `Duration::from_secs(self.rate as u64)` collapse that read
23074 // the rate-limit token capacity as a refill-interval
23075 // duration), a `Duration::ZERO → Duration::from_secs(1)`
23076 // canonical-default projection (which would silently absorb
23077 // the `PolicyRateLimitWindowNotCanonical` refusal case at the
23078 // accessor boundary), or a canonical-set-collapsing accessor
23079 // that clamped the return through [`rate_limit_window_unit`]
23080 // (the `AplicacaoSpec::validate` gate owns the canonical-set
23081 // membership; the accessor must ship the raw slot verbatim).
23082 for window in [
23083 Duration::from_secs(1),
23084 Duration::from_secs(60),
23085 Duration::from_secs(3600),
23086 Duration::ZERO,
23087 Duration::from_millis(500),
23088 ] {
23089 let rl = RateLimit { rate: 100, window };
23090 assert_eq!(
23091 rl.window(),
23092 window,
23093 "RateLimit::window must return :politicas :rate-limit :window \
23094 verbatim (got {:?}, expected {window:?})",
23095 rl.window(),
23096 );
23097 assert_eq!(
23098 rl.window(),
23099 rl.window,
23100 "RateLimit::window must byte-equal the raw .window field \
23101 access across every value in the Duration accept-set",
23102 );
23103 }
23104 }
23105
23106 #[test]
23107 fn validate_politicas_rate_limit_window_canonical_arm_routes_through_accessor() {
23108 // Composition pin: [`AplicacaoSpec::validate_politicas`]'s
23109 // `:rate-limit :window` canonical-set arm must key off
23110 // [`RateLimit::window`], not the raw `.window` field access.
23111 // Structurally: a `RateLimit { window: Duration::from_millis(500),
23112 // .. }` embedded in a `:politicas :rate-limit` slot must
23113 // surface the `PolicyRateLimitWindowNotCanonical` refusal
23114 // exactly (with the sub-canonical `Duration::from_millis(500)`
23115 // magnitude carried through verbatim), and a `RateLimit
23116 // { window: Duration::from_secs(1), .. }` (the lower row of
23117 // the `RATE_LIMIT_UNIT_TABLE` accept-set) must pass validate.
23118 // The pair jointly pins the accessor + validate-gate
23119 // composition: any future silent detour that had the accessor
23120 // normalize the off-set window to the nearest canonical row
23121 // (a `.window().max(Duration::from_secs(1))` collapse, or a
23122 // `rate_limit_window_unit(.window()).map_or(Duration::from_secs(1), …)`
23123 // collapse) would silently absorb the
23124 // `PolicyRateLimitWindowNotCanonical` refusal at the accessor
23125 // boundary — including a drift in the error's `window` payload
23126 // (the emit-side diagnostic reader keys off the offending
23127 // magnitude verbatim, so a normalization at the accessor
23128 // boundary would silently pin the wrong magnitude in the
23129 // refusal). The composition pin catches that at caixa-core
23130 // build time.
23131 //
23132 // Peer of the sibling per-`RateLimit` [`RateLimit::rate`]
23133 // (7f81a60) accessor-composition pin on the peer required-
23134 // scalar `:rate` axis — same "the validate / shape-gate
23135 // predicate must route through the substrate-primitive typed
23136 // dispatch, and the error payload must project through the
23137 // same accessor" discipline extended onto the peer
23138 // per-`RateLimit` required-`Duration` composition axis.
23139 let mut spec = three_member_spec();
23140 spec.politicas = MeshPolicy {
23141 rate_limit: Some(RateLimit {
23142 rate: 100,
23143 window: Duration::from_millis(500),
23144 }),
23145 ..MeshPolicy::default()
23146 };
23147 match spec.validate() {
23148 Err(AplicacaoError::PolicyRateLimitWindowNotCanonical { window }) => {
23149 assert_eq!(
23150 window,
23151 Duration::from_millis(500),
23152 "PolicyRateLimitWindowNotCanonical must carry the \
23153 offending :window magnitude verbatim through the \
23154 accessor — got {window:?}, expected 500ms",
23155 );
23156 }
23157 other => panic!(
23158 "validate_politicas must reject non-canonical :window \
23159 with PolicyRateLimitWindowNotCanonical — the accessor \
23160 and the validate gate must route through the same \
23161 substrate-primitive typed dispatch on the :window \
23162 canonical-set arm; got {other:?}",
23163 ),
23164 }
23165 spec.politicas = MeshPolicy {
23166 rate_limit: Some(RateLimit {
23167 rate: 100,
23168 window: Duration::from_secs(1),
23169 }),
23170 ..MeshPolicy::default()
23171 };
23172 assert!(
23173 spec.validate().is_ok(),
23174 "validate_politicas must accept window == Duration::from_secs(1) \
23175 (the lower row of the RATE_LIMIT_UNIT_TABLE accept-set)",
23176 );
23177 }
23178
23179 #[test]
23180 fn rate_limit_window_projects_duration_by_copy() {
23181 // The by-copy pin: [`RateLimit::window`] returns `Duration`
23182 // by copy — `Duration` is `Copy` and the accessor must return
23183 // by value, not by reference. Peer of the sibling per-`RateLimit`
23184 // [`RateLimit::rate`] (7f81a60) by-copy pin on the peer
23185 // required-scalar `:rate` axis, extended onto the peer
23186 // per-`RateLimit` required-`Duration` copy-invariant shape —
23187 // the accessor's returned `Duration` must outlive `&self`
23188 // (multiple calls must return equal values from a
23189 // dropped-`&self` copy, since the returned scalar carries no
23190 // borrow), and calling the accessor twice on the same
23191 // RateLimit must yield the same `Duration` verbatim
23192 // (idempotent, no side effects on `&self`).
23193 //
23194 // Pins against a future silent detour that returned
23195 // `&Duration` (which would type-check but silently break every
23196 // downstream `Duration`-by-value consumer —
23197 // [`is_canonical_rate_limit_window`]'s first parameter is
23198 // `Duration`, and `&Duration` would fold to a detached copy at
23199 // the call site with a `*` deref the sibling accessors don't
23200 // need), an accidental `.window + Duration::ZERO` detour that
23201 // returned a fresh copy through an arithmetic no-op (breaking
23202 // a future `const fn` regression), or a one-arm-only accessor
23203 // that returned a canonical fallback on some sentinel input
23204 // (breaking the pass-through invariant the sibling required-
23205 // scalar accessors carry).
23206 for window in [
23207 Duration::from_secs(1),
23208 Duration::from_secs(60),
23209 Duration::from_secs(3600),
23210 Duration::ZERO,
23211 Duration::from_millis(500),
23212 ] {
23213 let rl = RateLimit { rate: 100, window };
23214 let first = rl.window();
23215 let second = rl.window();
23216 assert_eq!(
23217 first, second,
23218 "RateLimit::window must be idempotent — two successive \
23219 calls on the same &self must return the same Duration",
23220 );
23221 assert_eq!(
23222 first, window,
23223 "RateLimit::window must return :politicas :rate-limit :window \
23224 verbatim by copy — got {first:?}, expected {window:?}",
23225 );
23226 }
23227 }
23228}