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tatara_process/
lib.rs

1//! Process CRD — the K8s-as-Unix-processes wire format.
2//!
3//! A `Process` is one element of the tatara convergence lattice.
4//! Clusters, HelmReleases, migrations, tests — all are Processes.
5//! The reconciliation loop *is* Unix: fork → exec → wait → exit → reap.
6
7pub mod allocation;
8pub mod anyhow_flatten;
9pub mod api;
10pub mod attestation;
11pub mod boundary;
12pub mod classification;
13pub mod compliance;
14pub mod condition_type;
15pub mod configmap;
16pub mod crd;
17pub mod create;
18pub mod delete;
19pub mod encapsulates;
20pub mod env;
21pub mod ephemeral;
22pub mod err_ctx;
23pub mod export;
24pub mod finalizers;
25pub mod flux_resource;
26pub mod hash;
27pub mod hostname;
28pub mod identity;
29pub mod intent;
30pub mod json_object;
31pub mod k8s_builtin_resource;
32pub mod k8s_condition;
33pub mod k8s_object_ref;
34pub mod k8s_wire_identity;
35pub mod kube_error;
36pub mod lifetime;
37pub mod lifetime_clock;
38pub mod list;
39pub mod matrix;
40pub mod patch;
41pub mod phase;
42pub mod pool;
43pub mod process_api;
44pub mod receipt;
45pub mod requeue;
46pub mod routing;
47pub mod routing_edge_resource;
48pub mod secret_env;
49pub mod serde_defaults;
50pub mod signal;
51pub mod spec;
52pub mod status;
53pub mod table;
54pub mod tagged_union;
55pub mod three_pillar;
56pub mod time;
57
58pub mod prelude {
59    pub use crate::allocation::{
60        AllocationCondition, AllocationPhase, AllocationSpec, AllocationStatus,
61        EphemeralAllocation, Requestor,
62    };
63    pub use crate::anyhow_flatten::FlattenCtxExt;
64    pub use crate::attestation::ProcessAttestation;
65    pub use crate::boundary::{Boundary, Condition, ConditionKind, UnknownConditionKind};
66    pub use crate::classification::{
67        Arity, CalmClassification, Classification, ConvergencePointType, DataClassification,
68        Horizon, HorizonKind, OptimizationDirection, SubstrateType, UnknownCalmClassification,
69        UnknownConvergencePointType, UnknownDataClassification, UnknownHorizonKind,
70        UnknownOptimizationDirection, UnknownSubstrateType,
71    };
72    pub use crate::compliance::{
73        ComplianceBinding, ComplianceSpec, UnknownVerificationPhase, VerificationPhase,
74    };
75    pub use crate::crd::{Process, ProcessSpec, ProcessStatus};
76    pub use crate::encapsulates::{
77        BareWorkload, EncapsulatesSpec, EncapsulationKind, EncapsulationKindError,
78        EncapsulationKindVariant, EncapsulationMode, EncapsulationTarget, ExistingHelmRelease,
79        ExistingKustomization, UnknownEncapsulationMode, UnknownEncapsulationTarget,
80    };
81    pub use crate::ephemeral::{compile_ephemeral_source, EphemeralSpec};
82    pub use crate::err_ctx::ErrCtxExt;
83    pub use crate::export::{
84        ArtifactError, ArtifactKind, ArtifactSource, ArtifactVariant, ChannelError, ChannelKind,
85        ChannelVariant, ExportSpec, ExportTrigger, HttpEventChannel, NatsSubjectChannel,
86        ProcessSnapshotSource, ReceiptsSource, ReportFormat, ReportPayloadShape, RunMarkerSource,
87        StdoutChannel, TestReportSource, UnknownArtifactKind, UnknownChannelKind,
88        UnknownExportTrigger, UnknownReportFormat, VectorChannel, DEFAULT_NATS_URL,
89        DEFAULT_VECTOR_INGEST,
90    };
91    pub use crate::flux_resource::FluxResource;
92    pub use crate::hash::hex_blake3;
93    pub use crate::hostname::{
94        ephemeral_id_from_spec, fmt_fqdn, fmt_fqdn_stable, resolve_ephemeral_id, HostnameError,
95        HostnameResultExt, EPHEMERAL_ID_HASH_LEN,
96    };
97    pub use crate::identity::{
98        content_hash, derive_identity, format_process_address, join_pid_segment, Identity,
99        PID_PATH_SEPARATOR,
100    };
101    pub use crate::intent::{
102        AplicacaoIntent, ContainerIntent, FluxIntent, GuestIntent, HelmLifecyclePolicy,
103        HelmRemediationPolicy, Intent, IntentError, IntentKind, IntentVariant, LispIntent,
104        NixIntent, UnknownWorkloadKind, WorkloadKind, FLUX_HELM_DEFAULT_INTERVAL,
105        HELM_LIFECYCLE_DEFAULT_RETRIES, HELM_LIFECYCLE_DEFAULT_TIMEOUT,
106    };
107    pub use crate::k8s_builtin_resource::K8sBuiltinResource;
108    pub use crate::k8s_condition::K8sConditionStatus;
109    pub use crate::k8s_object_ref::K8sObjectRef;
110    pub use crate::k8s_wire_identity::K8sWireIdentity;
111    pub use crate::lifetime::{
112        EphemeralLifetime, Lifetime, LifetimeError, LifetimeKind, LifetimeVariant,
113        PermanentLifetime, TeardownPolicy, UnknownTeardownPolicy,
114    };
115    pub use crate::lifetime_clock::{
116        evaluate as lifetime_clock_evaluate, AutoTerminate, AutoTerminateKind, TerminateReason,
117        TerminateReasonKind, UnknownAutoTerminateKind, UnknownTerminateReasonKind,
118    };
119    pub use crate::matrix::{
120        compile_env_matrix_source, EnvMatrixSpec, MatrixAxis, MatrixBudget, NamedEphemeral,
121        SelectStrategy, SelectStrategyKind, UnknownSelectStrategyKind,
122    };
123    pub use crate::phase::{ProcessPhase, UnknownPhase};
124    pub use crate::pool::{
125        AllocationRef, EphemeralPool, MatchKey, MemberState, PoolCondition, PoolMember, PoolPhase,
126        PoolSelector, PoolSpec, PoolStatus, ReplacementPolicy, ReturnPolicy, UnknownMemberState,
127        UnknownPoolPhase, UnknownReplacementPolicy,
128    };
129    pub use crate::qualified_process_ref;
130    pub use crate::receipt::{
131        default_receipt_config_map_name, extract_receipt_payload_json,
132        resolve_receipt_config_map_name, ReceiptEnvelope, ReceiptError, ReceiptKind,
133        ReceiptWireForm, RECEIPT_CM_KEYS, RECEIPT_CM_MISSING_KEY_MSG, RECEIPT_CM_SUFFIX,
134        RECEIPT_JSON_KEY, RECEIPT_VERSION, RECEIPT_YAML_KEY,
135    };
136    pub use crate::requeue::after_secs as requeue_after_secs;
137    pub use crate::routing::{RoutingBackend, RoutingForm, RoutingHostname, RoutingSpec};
138    pub use crate::routing_edge_resource::RoutingEdgeResource;
139    pub use crate::signal::{ProcessSignal, SighupStrategy, UnknownSighupStrategy};
140    pub use crate::spec::{
141        DependsOn, IdentitySpec, MustReachPhase, SignalPolicy, UnknownMustReachPhase,
142    };
143    pub use crate::status::{
144        BoundaryStatus, CheckedCondition, ComplianceStatus, FluxResourceRef, ProcessCondition,
145        RenderedResourceCoords,
146    };
147    pub use crate::table::{
148        ClaimRecord, ProcessEntry, ProcessTable, ProcessTableSpec, ProcessTableStatus,
149    };
150    pub use crate::time::{elapsed_since, seconds_ago, tombstone_at, tombstone_now};
151    pub use crate::{Annotated, DeletionTombstoned, NamespacedApiCoordinates, PlacedInNamespace};
152}
153
154/// CRD API group for every tatara CRD.
155pub const GROUP: &str = "tatara.pleme.io";
156/// CRD version for this module.
157pub const VERSION: &str = "v1alpha1";
158/// Kind spelling of the tatara Process CRD as it appears in a K8s
159/// [`OwnerReference.kind`][ownref] field. Peer to [`GROUP`] +
160/// [`VERSION`] — centralizes the ONE literal every SSA-time
161/// re-injection helper pre-lift restated by hand across
162/// `tatara-reconciler` (`render.rs`, `edges.rs`, `ssapply.rs`).
163///
164/// [ownref]: https://kubernetes.io/docs/concepts/overview/working-with-objects/owners-dependents/
165pub const PROCESS_KIND: &str = "Process";
166
167/// Canonical `<GROUP>/<VERSION>` `apiVersion` string as a compile-time
168/// `&'static str` — the ONE typed wire-form binding every tatara CRD
169/// stamps on its own `apiVersion` slot.
170///
171/// Peer to [`GROUP`] + [`VERSION`] on the CRD-group×version axis:
172/// where those two consts own the group segment + the version segment
173/// separately (each addressable in its own right — the [`api_url_prefix`]
174/// composer weaves them into the REST-URL envelope, `#[kube(group = ...,
175/// version = ...)]` derive slots on every tatara CRD struct address
176/// them individually), this const owns the two-segment compose product
177/// every wire-form emit — every K8s `apiVersion:` slot the reconciler
178/// stamps + every [`PROCESS_WIRE_IDENTITY`] projection — routes
179/// through.
180///
181/// Byte-shape pinned against `format!("{GROUP}/{VERSION}")` by
182/// [`owner_reference_tests::api_version_const_composes_group_and_version_bytewise`]
183/// so a rename of [`GROUP`] or a version bump on [`VERSION`] that
184/// missed the const surfaces HERE rather than as silent SSA-apply
185/// skew at every downstream OwnerReference / apiVersion-slot emit
186/// site.
187///
188/// Sibling to the runtime [`api_version`] fn — [`API_VERSION`] is the
189/// `&'static str` typed form (const-callable, feeds
190/// [`PROCESS_WIRE_IDENTITY`]); [`api_version`] returns
191/// [`API_VERSION`]`.to_string()` for owned-String call sites (SSA
192/// re-injection helpers that thread the `apiVersion` slot through a
193/// per-site cloned map).
194pub const API_VERSION: &str = "tatara.pleme.io/v1alpha1";
195
196/// Typed K8s wire-form identity of the tatara `Process` CRD — the
197/// [`k8s_wire_identity::K8sWireIdentity`] projection carrying
198/// `(apiVersion, kind) = (API_VERSION, PROCESS_KIND)` at ONE
199/// compile-time `const`.
200///
201/// Peer on the K8s-wire-form-identity axis-family to the three
202/// pre-existing closed-set `.wire_identity()` projections:
203///
204/// * [`k8s_builtin_resource::K8sBuiltinResource::wire_identity`] owns
205///   the K8s built-in axis (`Job` / `ConfigMap`) — the resources the
206///   reconciler fetches from Kubernetes itself.
207/// * [`flux_resource::FluxResource::wire_identity`] owns the
208///   FluxCD-controller axis (`Kustomization` / `HelmRelease` /
209///   `OCIRepository`).
210/// * [`routing_edge_resource::RoutingEdgeResource::wire_identity`]
211///   owns the routing-edge axis (`Ingress` / `DNSEndpoint`).
212/// * [`PROCESS_WIRE_IDENTITY`] (this const) owns the tatara `Process`
213///   CRD's own wire-form identity — pre-lift the fourth arm was the
214///   open corner every peer closed-set called out in its own docs as
215///   "the tatara `Process` CRD's `(apiVersion, kind)` pair" but which
216///   itself lived only as two disjoint consts + a runtime
217///   [`api_version`] fn threaded through the [`owner_reference_json`]
218///   composer's hand-inlined `json!` slots.
219///
220/// Together the four owners partition every K8s wire-form identity
221/// the workspace's reconcilers reach at run time; the pin
222/// [`owner_reference_tests::process_wire_identity_is_disjoint_from_every_peer_wire_form_axis`]
223/// binds the four axes pairwise-distinct at fail-before-pass-after
224/// granularity so a future variant addition on any peer that
225/// accidentally overlapped this pair (a hypothetical
226/// `K8sBuiltinResource::Process` copy-paste, a Flux-side `Process`
227/// naming collision) surfaces at that pin rather than as silent
228/// cross-axis ambiguity at every reconciler dispatch.
229///
230/// Consumed by [`owner_reference_json`] via
231/// [`k8s_wire_identity::K8sWireIdentity::resource_json`] — pre-lift
232/// the OwnerReference composer hand-inlined the (apiVersion, kind)
233/// pair as two adjacent `json!` slots referencing [`api_version`] +
234/// [`PROCESS_KIND`] separately, leaving a silent-drift path where a
235/// copy-paste that dropped ONE reference (an `apiVersion` bump that
236/// missed the sibling `kind`, a rename of one const that didn't
237/// touch the other) would emit an OwnerReference no K8s controller
238/// recognizes (a 404 at wire time diagnosed as a broken CRD). Post-
239/// lift the emit routes through the ONE typed pair, and the drift
240/// trap is unrepresentable — a caller cannot skew the two slots
241/// because the composer takes the identity as a single struct.
242///
243/// A future consumer of the tatara `Process` wire-form identity — a
244/// second OwnerReference emit site (P3 kenshi-runner's
245/// `TestSuiteBinding` owner-ref, a P1 caixa-tatara-emitted
246/// `HelmRelease`'s parent-Process reference), a future admission-
247/// webhook that filters on the CRD's `(apiVersion, kind)` pair, a
248/// fleet-wide audit walker enumerating every tatara-owned resource —
249/// reads through this ONE const rather than re-composing the pair
250/// from [`API_VERSION`] + [`PROCESS_KIND`] separately.
251///
252/// Theory grounding: THEORY.md §II.1 invariant 5 — composition
253/// preserves proofs. The two-slot (apiVersion, kind) composition
254/// lives at ONE typed algebra projection here; a regression that
255/// drifted either slot surfaces at this module's pins rather than as
256/// silent operator-visible OwnerReference skew. THEORY.md §III —
257/// typescape. The typed [`k8s_wire_identity::K8sWireIdentity`] pair
258/// bounds the axis of variation at the type level — a callsite that
259/// receives a `K8sWireIdentity` cannot skew the two slots at compose
260/// time.
261pub const PROCESS_WIRE_IDENTITY: k8s_wire_identity::K8sWireIdentity =
262    k8s_wire_identity::K8sWireIdentity::new(API_VERSION, PROCESS_KIND);
263
264/// Canonical `<GROUP>/<VERSION>` as an owned `String` — the ONE
265/// K8s `apiVersion` shape every tatara CRD stamps. Delegates to the
266/// compile-time [`API_VERSION`] const so a bump of [`GROUP`] or
267/// [`VERSION`] that missed the const surfaces at
268/// [`owner_reference_tests::api_version_const_composes_group_and_version_bytewise`]
269/// rather than as silent skew between the runtime fn and the typed
270/// [`PROCESS_WIRE_IDENTITY`] const that shares the same wire form.
271///
272/// Pre-lift, two `tatara-reconciler` sites hand-wrote
273/// `format!("{}/{}", tatara_process::GROUP, tatara_process::VERSION)`
274/// while a third inlined the literal `"tatara.pleme.io/v1alpha1"`,
275/// opening a silent drift path if [`VERSION`] ever advances past
276/// `v1alpha1`; both are covered by the ONE substrate owner here.
277pub fn api_version() -> String {
278    API_VERSION.to_string()
279}
280
281/// Canonical `/apis/<GROUP>/<VERSION>/` prefix as an owned `String` —
282/// the ONE K8s REST-path shape every typed `Api::namespaced` /
283/// `Api::all` primitive built off a tatara CRD kind (`Process`,
284/// `ProcessTable`, `EphemeralPool`, `EphemeralAllocation`) emits at
285/// [`kube::Api::resource_url`]. Peer to [`api_version`] — composed
286/// from the SAME [`GROUP`] + [`VERSION`] pair, wrapped in the fixed
287/// `/apis/{…}/` HTTP-path envelope that the K8s API server exposes
288/// every custom-resource group under.
289///
290/// Pre-lift the wire-form literal `"/apis/tatara.pleme.io/v1alpha1/"`
291/// recurred at ELEVEN hand-authored sites across three separate test
292/// modules — six across `tatara-reconciler::context` (`process_api`,
293/// `process_table_api`, `processes_all_api` scope pins), four across
294/// `tatara-pool-reconciler::context` (`pool_api`, `allocation_api`,
295/// `pools_all_api`, `allocations_all_api` scope pins), and one at
296/// `tatara-github-watcher::handler` (`allocation_api` scope pin) —
297/// each restating the same URL prefix a bump of `GROUP` or `VERSION`
298/// would silently miss at every one. Post-lift each of the eleven
299/// sites composes the prefix through this substrate function, so a
300/// future group rename or `v1alpha1` → `v1beta1` bump lands at ONE
301/// composer and the eleven downstream scope guards inherit the shape
302/// mechanically.
303///
304/// Theory anchor: THEORY.md §II.1 invariant 5 — composition preserves
305/// proofs. A regression that drifted the URL prefix at ONE site (a
306/// group typo, a `/apis/` → `/api/` mis-spelling, a stale `v1alpha1`
307/// left behind after a workspace-wide `VERSION` bump) surfaces at the
308/// [`api_url_prefix_tests`] pins below rather than as silent
309/// scope-guard drift between the three reconciler + watcher test
310/// suites (which pre-lift already disagreed with each other on
311/// nothing but were free to drift independently).
312#[must_use]
313pub fn api_url_prefix() -> String {
314    format!("/apis/{GROUP}/{VERSION}/")
315}
316
317/// Substrate-primitive composer for the canonical
318/// **namespace-qualified process reference** — the `<ns>/<name>`
319/// string every consumer that grepped, keyed, or annotated a
320/// Process by "which cluster location owns it" hand-authored as
321/// `format!("{ns}/{name}")` at scattered sites across the workspace.
322/// Lifted onto `tatara-process` (from its prior home at
323/// `tatara_reconciler::ssapply::qualified_process_ref`) so callers
324/// BELOW the reconciler layer — `tatara-export-worker` (which does
325/// NOT depend on `tatara-reconciler`) and `tatara-pool-reconciler` —
326/// reach the SAME composer the reconciler-side sites do, closing
327/// the previously-open substrate corner where a downstream consumer
328/// re-authored the shape by hand rather than routing through the
329/// ONE primitive.
330///
331/// The `<ns>/<name>` shape is the workspace-wide convention for
332/// "how to name a namespaced K8s resource in a single string" — the
333/// same shape the K8s API server itself uses in
334/// [`OwnerReference`][ownref] pretty-printing, in the `holder` slot of
335/// [`crate::table::ClaimRecord`], and in the `tatara.pleme.io/process`
336/// annotation every reconciler-emitted resource carries. Callers
337/// with a live [`crate::prelude::Process`] compose through
338/// [`crate::prelude::Process::coordinates_or_defaults`] +
339/// [`Self`] (this function); callers with bare
340/// `(ns: &str, name: &str)` params (CLI-arg driven binaries,
341/// `metadata`-agnostic composers) call this directly.
342///
343/// The 2-arg signature encodes the invariant "the qualified
344/// reference is EXACTLY `<ns>/<name>`, in that order, joined by a
345/// single `/` separator" at the type level — a caller cannot
346/// accidentally swap the two axes (which would produce `<name>/<ns>`
347/// and silently break every downstream grep) nor omit either half,
348/// the way a pre-lift hand-authored `format!("{name}/{ns}")` or
349/// `format!("{ns}-{name}")` typo would.
350///
351/// A future change to the reference shape — a `<ns>/<name>@<gen>`
352/// multi-generation variant for attestation grepping, a
353/// `<cluster>/<ns>/<name>` cross-cluster form, a normalization
354/// (case-fold, unicode-safe collation) that must apply everywhere —
355/// lands at ONE substrate function here and every downstream
356/// composer (annotation seed, ProcessTable claim key, label
357/// selector, owner metadata, export-worker run-id fallback,
358/// receipt-owner filter) inherits the upgrade mechanically.
359///
360/// Theory anchor: THEORY.md §VI.1 (generation over composition —
361/// the `<ns>/<name>` shape recurred at hand-authored sites past the
362/// ★★ PRIME-DIRECTIVE ≥ 2 duplication trigger, and is lifted onto
363/// the ONE workspace-wide owner here). THEORY.md §II.1 invariant 5
364/// (composition preserves proofs — a regression that swapped the
365/// two axes or the separator at ONE site surfaces at
366/// [`qualified_process_ref_tests::qualified_process_ref_joins_ns_and_name_with_slash`]
367/// rather than as silent drift at every downstream annotation seed
368/// / claim key / label selector / run-id / receipt-owner filter).
369///
370/// [ownref]: https://kubernetes.io/docs/concepts/overview/working-with-objects/owners-dependents/
371#[must_use]
372pub fn qualified_process_ref(ns: &str, name: &str) -> String {
373    format!("{ns}/{name}")
374}
375
376/// Build a Kubernetes [`OwnerReference`][ownref] JSON blob pointing
377/// at a Process (`kind = `[`PROCESS_KIND`], `apiVersion = `
378/// [`api_version`]) with `controller: true` +
379/// `blockOwnerDeletion: true` — the exact 6-slot shape every SSA
380/// re-injection site pre-lift restated three times across
381/// `tatara-reconciler` (`render.rs::owner_refs` for export-Job
382/// owners, `edges.rs::build_owner_refs` for Ingress + DNSEndpoint
383/// owners, `ssapply.rs::build_owner_reference` for the injected
384/// owner-ref stamped on every applied `DynamicObject`). Callers
385/// with a live `Process` value read `metadata.{name,uid}` and pass
386/// them through as `&str`.
387///
388/// The 6-slot shape is fixed (`controller` + `blockOwnerDeletion`
389/// both `true`); a Process-owned resource that wants a non-
390/// controller reference doesn't belong on this owner and can build
391/// its own `json!` inline — this primitive is the composer for the
392/// canonical "Process controls this resource, cascade-delete on
393/// GC" shape, not a general OwnerReference builder.
394///
395/// [ownref]: https://kubernetes.io/docs/concepts/overview/working-with-objects/owners-dependents/
396pub fn owner_reference_json(name: &str, uid: &str) -> serde_json::Value {
397    // Route the (apiVersion, kind) pair through the ONE typed
398    // wire-identity const [`PROCESS_WIRE_IDENTITY`] via
399    // [`k8s_wire_identity::K8sWireIdentity::resource_json`] — the
400    // composer stamps the identity slots on top of the caller's
401    // 4-slot extras map (name / uid / controller / blockOwnerDeletion)
402    // and the identity slots win over any accidental extras collision
403    // by construction. Pre-lift the two identity slots were hand-
404    // inlined as adjacent `json!` slots referencing `api_version()` +
405    // `PROCESS_KIND` separately, so a copy-paste that dropped one
406    // reference (or drifted one const under a group rename) would
407    // silently emit an OwnerReference no K8s controller recognizes.
408    // Post-lift the wire-form pair binds structurally at ONE typed
409    // [`PROCESS_WIRE_IDENTITY`] const and the drift trap is
410    // unrepresentable.
411    PROCESS_WIRE_IDENTITY.resource_json(serde_json::json!({
412        "name": name,
413        "uid": uid,
414        "controller": true,
415        "blockOwnerDeletion": true,
416    }))
417}
418
419/// Substrate-primitive builder for a Process-owned resource's
420/// **`metadata.ownerReferences` array** — the empty-uid-gated,
421/// single-entry `Vec<Value>` every emit site that lacks a fully
422/// materialized [`crate::prelude::Process`] (i.e. every site that
423/// works from a bare `(name, uid)` pair rather than routing through
424/// [`ssapply::build_owner_reference`](../tatara_reconciler/ssapply/fn.build_owner_reference.html)'s
425/// anyhow-guarded unwrap) hand-composed by wrapping
426/// [`owner_reference_json`] in a `Vec::new()` + `is_empty` gate on
427/// the `uid` slot.
428///
429/// The `uid.is_empty()` gate encodes the invariant every caller
430/// already enforced: a Process pre-metadata (fixtured in tests, or
431/// caught mid-Forking before the API server has stamped a `uid`) has
432/// no admissible owner reference to point at, so the emit site
433/// stamps `metadata.ownerReferences: []` rather than an
434/// owner-referenceless resource pointing at a placeholder uid the K8s
435/// GC would silently ignore. Post-lift the gate lives at ONE
436/// primitive so a regression that inlined an owner reference for
437/// an empty uid — which the API server accepts and quietly detaches
438/// from cascade-delete — surfaces at THIS primitive's pin rather
439/// than as an operator-visible ownerless resource after apply.
440///
441/// Pre-lift the 3-line `let mut owner_refs = vec![]; if
442/// !uid.is_empty() { owner_refs.push(owner_reference_json(name,
443/// uid)); }` incantation was hand-authored at TWO sites past the
444/// ★★ PRIME-DIRECTIVE ≥ 2 duplication threshold in
445/// `tatara-reconciler`, each restating the same gated composition:
446/// * `edges::build_owner_refs` — the shared owner-refs builder both
447///   `IngressEdge` + `DnsEndpointEdge` route through, sourcing
448///   `(process_name, process_uid)` from the [`crate::edges::EdgeContext`].
449/// * `render::one_export_job` — the export Job's owner-refs seed,
450///   sourcing `(name, uid)` from the [`crate::prelude::Process`]
451///   `render_export_jobs` threaded in.
452///
453/// Post-lift both callsites read `owner_references_json(name, uid)`.
454/// A future addition — e.g. a second owner-reference slot naming a
455/// controlling ProcessTable entry, a policy that stamps a stale-uid
456/// warning annotation before returning empty, or a normalization
457/// that strips a cluster-prefix off the uid — lands at ONE
458/// substrate function here and every emit site inherits the upgrade
459/// mechanically. The [`ssapply::build_owner_reference`] path (which
460/// works from a materialized [`crate::prelude::Process`] and errors
461/// on absent `metadata.uid`) is a peer, not a lift candidate: its
462/// contract is "the K8s API server assigned a uid, so refuse to
463/// SSA-apply resources whose owner cannot be materialized", while
464/// this primitive's contract is "the caller has an optional-uid
465/// posture; emit `[]` when the uid is absent". The two shapes
466/// partition the input space at the "is the enclosing scope
467/// obligated to produce a materialized Process reference" axis.
468///
469/// The 2-arg `(&str, &str)` signature accepts both the
470/// `EdgeContext`-sourced `(&str, &str)` slice shape and the
471/// `render_export_jobs`-owned `(name: &str, uid: &str)` local shape
472/// without widening — matches every current callsite.
473pub fn owner_references_json(name: &str, uid: &str) -> Vec<serde_json::Value> {
474    if uid.is_empty() {
475        vec![]
476    } else {
477        vec![owner_reference_json(name, uid)]
478    }
479}
480
481/// Substrate-primitive trait for the **`Api::namespaced`-shaped
482/// coordinate extraction** every tatara-CRD reconciler restated by
483/// hand at its top-level `reconcile` dispatcher: pull owned `String`
484/// forms of `metadata.namespace` and `metadata.name` and refuse to
485/// substitute a workspace-wide default for either slot, because the
486/// caller is about to feed the pair positionally into
487/// `Api::namespaced(client, &ns)` + `Api::patch(&name, …)` and the
488/// K8s API server refuses an empty-string name / namespace path
489/// segment.
490///
491/// Pre-lift the 5-line `.metadata.<slot>.clone().ok_or_else(||
492/// anyhow!("<Kind> has no metadata.<slot>"))?` chain (paired at both
493/// slots inside every controller's `reconcile_inner`) was hand-
494/// authored at TWO sites past the ★★ PRIME-DIRECTIVE ≥ 2 duplication
495/// threshold in `tatara-pool-reconciler`, each restating the SAME
496/// (`namespace` errors, then `name` errors, both owned `String`)
497/// contract on a different CRD:
498/// * `controller_pool::reconcile_inner` — the pool reconciler's
499///   top-level `Pool has no metadata.{namespace,name}` gate,
500///   funneling every subsequent `Api::namespaced` + `Api::patch` call
501///   through the extracted `(ns, name)` pair.
502/// * `controller_allocation::reconcile_inner` — the allocation
503///   reconciler's peer gate on `EphemeralAllocation`, funneling the
504///   `Api::namespaced` + `Api::patch_status` calls that follow.
505///
506/// Both sites walked the SAME 5-line paired chain and both wanted the
507/// `(String, String)` form the primitive returns — because the
508/// produced `ns` outlives the source-object borrow (it feeds
509/// `Api::namespaced(client, &ns)` and later log-line interpolations
510/// across a stretch of `.await` points) and the `name` similarly
511/// threads through `Api::patch(&name, …)` calls downstream. Post-lift
512/// each callsite reads `pool.owned_coordinates_required()?` /
513/// `alloc.owned_coordinates_required()?` and the produced tuple
514/// destructures into the same downstream slots unchanged.
515///
516/// The blanket impl over `kube::Resource<DynamicType = ()>` (which
517/// every `#[derive(CustomResource)]`-generated tatara CRD satisfies)
518/// closes the substrate corner ONCE for the entire workspace: adding
519/// a third or fourth CRD in a peer crate — a routing-edge object, a
520/// receipt registry — inherits the extractor for free at its own
521/// `reconcile_inner` dispatcher with zero per-CRD lift work. This is
522/// the direction the CSE Compounding Directive names by
523/// "solve once, load-bearing fixes only": the primitive lands once
524/// and every downstream controller pattern-matches into it without
525/// re-authoring the chain.
526///
527/// Peer to [`crate::prelude::Process::owned_coordinates_or_err`] on
528/// the (`Process`-specific × namespace-required) axis pair — the two
529/// primitives partition the workspace's owned-form coordinate
530/// extraction on the `namespace-required` axis and cover the
531/// per-CRD needs they were opened for:
532///
533/// * ns-defaulted, name-required, `Process`-inherent →
534///   [`crate::prelude::Process::owned_coordinates_or_err`]
535///   (`tatara-reconciler`'s `phase_machine` / `signals` callers —
536///   consumers whose downstream tolerates the workspace's
537///   [`crate::prelude::Process::DEFAULT_NAMESPACE`] substitute for a
538///   `Process` fixtured pre-namespace-defaulting).
539/// * ns-required + name-required, blanket over every CRD → **this
540///   method** (`tatara-pool-reconciler`'s pool + allocation reconciler
541///   callers — consumers whose downstream refuses BOTH substitutions
542///   because the `Api::namespaced` dispatcher expects a real path
543///   segment on each axis and the enclosing controller is not
544///   authored to run against a namespace-less pool / allocation).
545///
546/// The error strings are shaped as `"{Kind} has no metadata.{slot}"`
547/// with `{Kind}` pulled positionally from `Self::kind(&())` (the
548/// kube-rs canonical CRD kind — `"EphemeralPool"` / `"EphemeralAllocation"`
549/// — which matches `kubectl get ephemeralpools|ephemeralallocations`
550/// output verbatim rather than the pre-lift `"Pool"` / `"Allocation"`
551/// short-forms every callsite hard-coded by hand). Routing the type
552/// name through `Self::kind` closes the drift path where a future
553/// CRD rename or a copy-paste consumer inherited the wrong short-
554/// form; the K8s-kind spelling is the ONE canonical name every
555/// operator-facing surface (kubectl output, RBAC subject strings,
556/// audit-log entries) already uses, so a log-line consumer greppping
557/// for either kind hits the primitive's canonical spelling directly.
558///
559/// A future normalization step (a per-CRD namespace canonicalization
560/// pass — case-fold, unicode-safe path-segment validation, a shared
561/// [`crate::prelude::Process::DEFAULT_NAMESPACE`]-aware fallback
562/// mode gated by an argument) lands at ONE substrate trait method
563/// here and every downstream reconciler picks up the upgrade
564/// mechanically — no per-callsite hand-edit at `controller_pool` /
565/// `controller_allocation` / any future CRD's `reconcile_inner`.
566///
567/// Theory anchor: THEORY.md §VI.1 (generation over composition —
568/// the paired 5-line `.metadata.<slot>.clone().ok_or_else` chain
569/// recurred at two hand-authored sites past the ★★ PRIME-DIRECTIVE
570/// ≥ 2 duplication trigger, and is lifted onto ONE trait method
571/// here). THEORY.md §II.1 invariant 5 (composition preserves
572/// proofs — the pins bind the missing-namespace corner, the
573/// missing-name corner, the missing-both corner (namespace error
574/// wins), the both-slots-present happy path, AND the
575/// `Self::kind`-driven error-string spelling per CRD, so a
576/// regression that reordered the two `ok_or_else` gates or drifted
577/// the error prefix surfaces at `tests::owned_coordinates_required_*`
578/// rather than as silent operator-facing skew between the two
579/// reconcilers' top-level error-message shapes).
580pub trait NamespacedApiCoordinates: kube::Resource<DynamicType = ()> {
581    /// Extract the K8s API path coordinates as owned `String`s,
582    /// erroring with a `Self::kind`-prefixed message when either
583    /// slot is absent. See the trait-level docs for the axis-family
584    /// context, peer primitives, and future-normalization anchor.
585    fn owned_coordinates_required(&self) -> anyhow::Result<(String, String)> {
586        let meta = self.meta();
587        let ns = meta
588            .namespace
589            .clone()
590            .ok_or_else(|| anyhow::anyhow!("{} has no metadata.namespace", Self::kind(&())))?;
591        let name = meta
592            .name
593            .clone()
594            .ok_or_else(|| anyhow::anyhow!("{} has no metadata.name", Self::kind(&())))?;
595        Ok((ns, name))
596    }
597}
598
599impl<T> NamespacedApiCoordinates for T where T: kube::Resource<DynamicType = ()> {}
600
601/// Substrate-primitive trait for the **deletion-tombstone presence
602/// probe** every tatara CRD reconciler restated as
603/// `.metadata.deletion_timestamp.is_some()` on the K8s-API-server-
604/// stamped `metadata.deletionTimestamp` slot: a `true` reading means
605/// the API server has accepted a DELETE and finalizers are draining
606/// (the object is still live but the controller must move into its
607/// SIGTERM cascade / DELETE-skip branch), while a `false` reading
608/// means no delete is in flight.
609///
610/// Pre-lift the ONE-line `.metadata.deletion_timestamp.is_some()`
611/// chain was hand-authored across every tatara-process CRD in
612/// consumer crates and independently re-authored as byte-identical
613/// inherent methods on [`crate::prelude::Process`] +
614/// [`crate::prelude::EphemeralPool`], with the sister CRD
615/// [`crate::prelude::EphemeralAllocation`] still on the raw chain in
616/// `tatara-pool-reconciler::allocation_decide::AllocationConvergenceCtx::observe`.
617/// That's TWO byte-identical inherent implementations past the ★★
618/// PRIME-DIRECTIVE ≥ 2 duplication threshold on the substrate side
619/// PLUS the hand-authored chain on the third CRD — three surfaces
620/// spelling the SAME projection, each with the same drift risk (a
621/// stale-tombstone grace-period gate, a paused-controller
622/// canonicalization, a cross-cluster clock-skew guard would have to
623/// land at every surface plus stay coherent).
624///
625/// Post-lift the substrate owns the probe at ONE trait method with a
626/// blanket impl over every `kube::Resource<DynamicType = ()>`, so:
627/// * [`crate::prelude::EphemeralAllocation`] inherits the probe for
628///   free — its `allocation_decide.rs` hand-authored chain routes
629///   through `alloc.is_being_deleted()` post-lift, closing the
630///   third-CRD gap noted in the [`crate::prelude::EphemeralPool::is_being_deleted`]
631///   commit body (`7f8f104`).
632/// * Any future tatara CRD (a routing-edge object, a receipt
633///   registry, a fleet-wide claim registry) inherits the probe at
634///   its own `reconcile_inner` dispatcher with zero per-CRD lift
635///   work — the same solve-once discipline
636///   [`NamespacedApiCoordinates`] established for the paired
637///   coordinate extractor.
638///
639/// The two existing inherent methods
640/// ([`crate::prelude::Process::is_being_deleted`] +
641/// [`crate::prelude::EphemeralPool::is_being_deleted`]) are peers
642/// rather than lift casualties: Rust method resolution prefers the
643/// inherent over the trait's blanket, so every existing callsite
644/// keeps hitting the same code path. The trait's blanket impl
645/// closes the substrate corner for CRDs WITHOUT the inherent — the
646/// coherence tests pin that the trait and the two inherents produce
647/// byte-identical results across every corner of the (missing,
648/// present) input matrix, so a future rewrite that consolidates
649/// onto the trait doesn't skew any consumer.
650///
651/// Return-form axis: `bool` matches the copy-form discipline of the
652/// two inherent peers and of [`crate::prelude::Process::observed_phase`]
653/// — the underlying wire-format slot is an `Option<Time>` carrying
654/// only presence information at this axis (the RFC-3339 timestamp
655/// payload itself is not what the callers read; all just probe
656/// presence to detect the tombstone-stamped state).
657///
658/// A future normalization step (a per-tombstone staleness gate
659/// returning `false` for a tombstone older than the reconciler's
660/// grace-period budget, a paused-controller tombstone
661/// canonicalization, a cross-cluster tombstone-observation clock
662/// skew guard) lands at ONE substrate trait method here — the two
663/// inherent forwarders inherit the upgrade mechanically if they are
664/// rewired to `<Self as DeletionTombstoned>::is_being_deleted(self)`
665/// as a follow-up sweep, and every downstream consumer that already
666/// routes through this trait picks it up without a per-callsite
667/// hand-edit.
668///
669/// Theory anchor: THEORY.md §VI.1 (generation over composition —
670/// the `.metadata.deletion_timestamp.is_some()` projection recurred
671/// as TWO byte-identical inherent implementations on
672/// [`crate::prelude::Process`] + [`crate::prelude::EphemeralPool`]
673/// past the ★★ PRIME-DIRECTIVE ≥ 2 duplication trigger and is
674/// lifted onto ONE trait method here). THEORY.md §II.1 invariant 5
675/// (composition preserves proofs — the pins bind the missing-
676/// tombstone corner + the present-tombstone corner + the copy-form
677/// `bool` return + the byte-identical parity with the pre-lift
678/// `.is_some()` chain + cross-CRD coherence with both inherent
679/// forwarders on the SAME `Process` / `EphemeralPool` value, so a
680/// regression that skewed either surface surfaces at
681/// `deletion_tombstoned_tests::*` rather than as silent operator-
682/// facing skew between the top-level dispatcher's SIGTERM preempt,
683/// the SIGTERM cascade's child-fan-out DELETE-skip, the pool
684/// reconciler's Drain gate, and the allocation reconciler's release
685/// short-circuit on three sibling CRDs.
686pub trait DeletionTombstoned: kube::Resource<DynamicType = ()> {
687    /// True iff the K8s API server has stamped `metadata.deletionTimestamp`
688    /// on this resource — a DELETE is in flight and finalizers are
689    /// draining. See the trait-level docs for the axis-family context,
690    /// peer inherent methods, and future-normalization anchor.
691    fn is_being_deleted(&self) -> bool {
692        self.meta().deletion_timestamp.is_some()
693    }
694}
695
696impl<T> DeletionTombstoned for T where T: kube::Resource<DynamicType = ()> {}
697
698/// Substrate-primitive trait for the ONE **borrow-form annotation
699/// lookup** every tatara CRD reconciler restated as the 3-line
700/// `.metadata.annotations.as_ref().and_then(|m| m.get(key)).map(String::as_str)`
701/// chain (or a `.cloned()` / `.cloned().unwrap_or_default()` variant
702/// of the same shape) on the K8s `metadata.annotations` map: returns
703/// `Some(&str)` iff the annotations block is present AND the key is
704/// present inside it; both missing corners collapse to `None`.
705///
706/// Peer to [`DeletionTombstoned`] + [`NamespacedApiCoordinates`] on
707/// the substrate-primitive-trait axis (kube-Resource blanket impls
708/// over `DynamicType = ()`), and peer to the pre-existing
709/// [`crate::prelude::Process::annotation`] inherent forwarder on the
710/// axis of "one annotation-lookup shape shared across every kube
711/// resource, tatara CRD or K8s built-in". The inherent stays as a
712/// peer — Rust method resolution prefers an inherent over a trait's
713/// blanket impl, so the three consumers already routed through
714/// `Process::annotation`
715/// (`tatara-reconciler::signals::ingest`,
716/// `tatara-reconciler::phase_machine::released_from_annotation`,
717/// `tatara-pool-reconciler::controller_pool::process_belongs_to_pool`)
718/// keep hitting the byte-identical code path — and the trait's
719/// blanket impl closes the substrate corner for kube resources
720/// WITHOUT the inherent: post-lift the hand-authored
721/// `.metadata.annotations.as_ref().and_then(|m| m.get(KEY))...` chain
722/// in `tatara-export-worker::main` (on `k8s_openapi`'s `ConfigMap`,
723/// which has no tatara-owned inherent) routes through the trait at
724/// `cm.annotation(KEY)`, and any future `EphemeralPool` /
725/// `EphemeralAllocation` (or new tatara CRD) consumer that needs an
726/// annotation lookup inherits the primitive for free — the same
727/// solve-once discipline the two peer traits already established.
728///
729/// Return-form axis: `Option<&str>` matches the borrow-first
730/// discipline of the peer metadata primitives
731/// ([`crate::prelude::Process::namespace_or_default`],
732/// [`crate::prelude::Process::name_or_placeholder`],
733/// [`crate::prelude::Process::coordinates_or_none`], and the inherent
734/// [`crate::prelude::Process::annotation`] this trait mirrors). The
735/// two corners the pre-lift chain swallowed (missing `annotations`
736/// map, missing key inside the map) BOTH collapse to `None` so
737/// `.is_some()` / `if let Some(_)` / `Option::map` behave identically
738/// on a resource whose annotations block is `None` and on one whose
739/// annotations block is populated but omits the key — matching what
740/// the pre-lift `.and_then(...)` chain produced.
741///
742/// A future normalization step (a key-canonicalization pass, a
743/// case-fold lookup, a per-key alias table for renamed annotations
744/// across API versions, a per-namespace override substrate) lands at
745/// ONE trait method here and every downstream consumer — the four
746/// current sites plus every future CRD reconciler that inherits the
747/// blanket impl — picks up the upgrade mechanically. If the inherent
748/// is ever rewired to `<Self as Annotated>::annotation(self, key)`
749/// as a follow-up sweep, the three inherent-preferred callsites
750/// automatically inherit any trait-level upgrade too.
751///
752/// Theory anchor: THEORY.md §VI.1 (generation over composition —
753/// the annotation-lookup shape recurred as ONE inherent forwarder on
754/// `Process` PLUS a hand-authored chain on `ConfigMap` past the
755/// ★★ PRIME-DIRECTIVE ≥ 2 duplication trigger, and is lifted onto
756/// ONE trait method here). THEORY.md §II.1 invariant 5 (composition
757/// preserves proofs — the pins bind the missing-annotations corner +
758/// the missing-key corner + the borrow-form `&str` lifetime + the
759/// byte-identical parity with the pre-lift 3-line chain + the
760/// cross-primitive coherence with `Process::annotation` on the SAME
761/// `Process` value, so a regression that skewed either surface
762/// surfaces at `annotated_tests::*` rather than as silent operator-
763/// facing skew between the SIGNAL / RELEASED_FROM / POOL annotation
764/// readers on Process and the receipts-owner filter on ConfigMap).
765pub trait Annotated: kube::Resource<DynamicType = ()> {
766    /// Borrow one key from `metadata.annotations`. See the trait-level
767    /// docs for the axis-family context, peer inherent method, and
768    /// future-normalization anchor.
769    fn annotation(&self, key: &str) -> Option<&str> {
770        self.meta()
771            .annotations
772            .as_ref()
773            .and_then(|m| m.get(key))
774            .map(String::as_str)
775    }
776}
777
778impl<T> Annotated for T where T: kube::Resource<DynamicType = ()> {}
779
780/// Substrate-primitive trait for the **place-in-namespace** fluent
781/// builder every consumer of a `kube::Resource` restated as
782/// `let mut cr = <CRD>::new(name, spec); cr.meta_mut().namespace = Some(ns.into()); cr`
783/// on the freshly-minted resource whose derive-supplied
784/// `::new(name, spec)` constructor stamps `metadata.name` alone and
785/// leaves `metadata.namespace` at `None`.
786///
787/// Pre-lift the pattern was hand-authored across THREE tatara-owned
788/// axes past the ★★ PRIME-DIRECTIVE ≥ 2 duplication threshold:
789///
790/// * `tatara-reconciler::render::tests::render_through_top_level_intent_dispatch`
791///   — the ONE remaining hand-authored site on the `Process` CRD
792///   (the sibling `Process::new_in` was not opened in the prior
793///   pool/allocation sweep because no `Process`-side pool fixture
794///   restated the pattern at ≥ 2 sites in isolation).
795/// * [`crate::pool::EphemeralPool::new_in`] — a per-CRD inherent
796///   composer opened in commit `a5dbb26` that inlined the identical
797///   `Self::new(name, spec); metadata.namespace = Some(namespace.into())`
798///   body on the `EphemeralPool` axis.
799/// * [`crate::allocation::EphemeralAllocation::new_in`] — the sister
800///   inherent composer opened in the same commit on the
801///   `EphemeralAllocation` axis with the byte-identical body.
802///
803/// Post-lift the substrate owns the `metadata.namespace` stamp at
804/// ONE trait method with a blanket impl over every
805/// `kube::Resource<DynamicType = ()>`, so:
806///
807/// * The two per-CRD `new_in` composers forward through
808///   `Self::new(name, spec).in_namespace(namespace)` — three
809///   substrate copies of the mutation collapse to one. The
810///   composers keep their ergonomic per-CRD signatures so existing
811///   callers stay unchanged; only the body threads through here.
812/// * The `tatara-reconciler::render` fixture routes through
813///   `Process::new(...).in_namespace(...)` on the SAME trait method,
814///   closing the last hand-authored site on the tatara CRD trio.
815/// * Any future tatara CRD (a routing-edge object, a receipt
816///   registry, a fleet-wide claim registry) inherits the builder at
817///   its own operator-facing factory + its own test-fixture site
818///   with zero per-CRD lift work — the same solve-once discipline
819///   [`NamespacedApiCoordinates`] established for the paired
820///   coordinate extractor and [`DeletionTombstoned`] established
821///   for the deletion-tombstone probe.
822/// * Any K8s built-in CRD (`ConfigMap`, `Job`, `Ingress`) inherits
823///   the builder too — the sibling [`Annotated`] blanket already
824///   covers the same category on the annotation-read axis, so an
825///   emitter that composes a `ConfigMap` in a specific namespace can
826///   now write `<owner-composer>().in_namespace(ns)` on the SAME
827///   finished value.
828///
829/// Return-form axis: `Self` (owned, by-value) — the builder
830/// consumes `self` and returns the mutated value so chained
831/// composers read left-to-right as `<CRD>::new(name, spec)
832/// .in_namespace(ns)` in the ONE natural composition order operators
833/// reach for. Peer to the borrow-form observer
834/// [`Annotated::annotation`] on the (mutation direction ×
835/// ObjectMeta-slot family) axis pair; both traits close their
836/// respective ObjectMeta-slot corners at ONE trait method with a
837/// blanket impl over the SAME `kube::Resource<DynamicType = ()>`
838/// bound so a future consumer that alternates between reading an
839/// annotation and stamping a namespace never sees two different
840/// trait-import spellings.
841///
842/// A future normalization step (a per-fleet virtual-cluster prefix
843/// rewrite on the `namespace` slot, a per-cluster canonical
844/// case-fold pass, an operator-scoped default namespace for
845/// cluster-local test rigs, a promotion to a typed `Namespace`
846/// newtype that carries K8s DNS-1123 validation as a phantom-type
847/// guard) lands at ONE substrate trait method here — every
848/// downstream consumer routed through `.in_namespace(...)` picks up
849/// the upgrade mechanically, and the two per-CRD `new_in` composers
850/// inherit it for free through their one-line forwarders.
851///
852/// Theory anchor: THEORY.md §II.1 invariant 5 (composition preserves
853/// proofs — the pins bind `<CRD>::new(name, spec).in_namespace(ns)
854/// .metadata.namespace == Some(ns.to_string())` on every corner of
855/// the (CRD ∈ {`Process`, `EphemeralPool`, `EphemeralAllocation`,
856/// `ConfigMap`} × input form ∈ {`&str`, `String`}) input matrix
857/// PLUS the overwrite corner where `.in_namespace(a).in_namespace(b)`
858/// binds `b`, so a regression that skewed either surface surfaces
859/// at `placed_in_namespace_tests::*` rather than as silent
860/// operator-facing skew between the tatara-reconciler render
861/// fixture, the two per-CRD `new_in` composers, and any future
862/// CRD-adjacent namespace-stamping consumer). THEORY.md §VI.1
863/// (generation over composition — the mutation recurred as three
864/// substrate copies past the ★★ PRIME-DIRECTIVE ≥ 2 duplication
865/// trigger).
866pub trait PlacedInNamespace: kube::Resource<DynamicType = ()> + Sized {
867    /// Stamp `namespace` onto `self.metadata.namespace` and return
868    /// the mutated value by-value. See the trait-level docs for the
869    /// axis-family context, peer trait, and future-normalization
870    /// anchor.
871    #[must_use]
872    fn in_namespace(mut self, namespace: impl Into<String>) -> Self {
873        self.meta_mut().namespace = Some(namespace.into());
874        self
875    }
876}
877
878impl<T> PlacedInNamespace for T where T: kube::Resource<DynamicType = ()> {}
879
880/// Annotation keys the reconciler reads/writes on owned FluxCD resources.
881pub mod annotations {
882    pub const MANAGED_BY: &str = "tatara.pleme.io/managed-by";
883    pub const PROCESS: &str = "tatara.pleme.io/process";
884    pub const PID: &str = "tatara.pleme.io/pid";
885    pub const CONTENT_HASH: &str = "tatara.pleme.io/content-hash";
886    pub const ATTESTATION_ROOT: &str = "tatara.pleme.io/attestation-root";
887    pub const GENERATION: &str = "tatara.pleme.io/generation";
888    pub const SIGNAL: &str = "tatara.pleme.io/signal";
889    /// Stamped by the reconciler when transitioning into `Releasing`
890    /// — records which terminal-reached gate the Process came from
891    /// (`Attested` or `Failed`) so `handle_releasing` can pick the
892    /// matching `ExportTrigger` set + the correct post-Releasing
893    /// destination (`Exiting` from Attested, `Zombie` from Failed).
894    pub const RELEASED_FROM: &str = "tatara.pleme.io/released-from";
895    /// Labels the export-worker Jobs the reconciler emits during
896    /// `Releasing`. Selector: `tatara.pleme.io/role=export`.
897    pub const ROLE: &str = "tatara.pleme.io/role";
898    /// Index of an export inside `lifetime.ephemeral.exports`.
899    /// Stamped on the corresponding tatara-export-worker Job + its
900    /// receipt ConfigMap so the reconciler can correlate them
901    /// without re-parsing the spec JSON.
902    pub const EXPORT_INDEX: &str = "tatara.pleme.io/export-index";
903    /// Label / annotation key stamping which
904    /// `RoutingSpec.hostnames` entry a routing edge (Ingress /
905    /// DNSEndpoint) belongs to. Value is the entry's `app` slot;
906    /// a `label`-selector on this key slices every emitted edge
907    /// for a given `app` regardless of hostname form. Peer to
908    /// [`ROUTING_FORM`] on the routing-axis pair.
909    pub const APP: &str = "tatara.pleme.io/app";
910    /// Label / annotation key stamping the routing form
911    /// (`"stable"` | `"instance"`) on every emitted routing edge.
912    /// Value is a [`crate::routing::RoutingForm`] wire-form string;
913    /// consumers filtering the two forms compare to
914    /// [`RoutingForm::as_str`][crate::routing::RoutingForm::as_str],
915    /// never to a bare literal.
916    pub const ROUTING_FORM: &str = "tatara.pleme.io/routing-form";
917    /// Stamped by `tatara-pool-reconciler::controller_allocation::
918    /// reconcile` on the member `Process` at the moment an
919    /// `EphemeralAllocation` transitions Queued → Bound. Value is
920    /// the requestor Allocation's `<ns>/<name>` qualified reference
921    /// (composed through the same `<ns>/<name>` shape every peer
922    /// substrate composer routes through — see
923    /// [`crate::qualified_process_ref`]). Downstream consumers
924    /// (operator dashboards, admission webhooks, audit-trail
925    /// scrapers) grep for this key to answer "which allocator drove
926    /// this member Process into its ephemeral overlay".
927    pub const REQUESTOR: &str = "tatara.pleme.io/requestor";
928    /// Peer to [`REQUESTOR`] on the same allocator-bind axis: the
929    /// bare Allocation name (no namespace prefix), stamped alongside
930    /// so downstream consumers that key on the Allocation identity
931    /// alone (a single-namespace UI, an in-cluster label selector
932    /// that already carries the namespace) don't need to re-split
933    /// [`REQUESTOR`]'s composed reference.
934    pub const ALLOCATION: &str = "tatara.pleme.io/allocation";
935    /// Peer to [`REQUESTOR`] + [`ALLOCATION`] on the same
936    /// allocator-bind axis: mirrors
937    /// [`crate::allocation::RequestorRef.kind`] verbatim onto the
938    /// bound member Process so consumers that dispatch on the
939    /// requestor-kind axis (a GitHub-PR-scoped webhook, a
940    /// scheduler-window scoped fairness gate, a per-kind quota
941    /// enforcer) never have to fetch the Allocation object again.
942    pub const REQUESTOR_KIND: &str = "tatara.pleme.io/requestor-kind";
943    /// Stamped by `tatara-pool-reconciler::controller_pool::
944    /// build_member_process` on every Process the pool controller
945    /// materializes into a pool slot. Value is the owning
946    /// [`crate::pool::EphemeralPool`]'s `metadata.name`; the pool
947    /// controller's `process_belongs_to_pool` membership gate reads
948    /// this key back through the substrate primitive
949    /// [`crate::prelude::Process::annotation`] to filter its owned
950    /// members out of the cluster-wide Process listing. Peer to
951    /// [`POOL_SLOT`] on the same pool-membership axis; the two keys
952    /// travel together at every write site so any future rename (a
953    /// `tatara.pleme.io/v2/pool` migration, an alias table for
954    /// cross-cluster pool identity, a per-cluster ownership prefix)
955    /// lands at ONE `pub const` in the substrate and every
956    /// downstream consumer (the pool reconciler's membership gate,
957    /// any future observability label emitter, a cross-namespace
958    /// pool-topology walker) inherits the upgrade mechanically.
959    pub const POOL: &str = "tatara.pleme.io/pool";
960    /// Peer to [`POOL`] on the same pool-membership axis: the
961    /// zero-based slot index the pool controller assigned to the
962    /// member Process, stamped alongside so downstream consumers
963    /// that need per-slot identity (a UI grid layout, a per-slot
964    /// affinity gate, a slot-scoped audit-trail scraper) can
965    /// dispatch on it without re-scanning the pool controller's
966    /// naming scheme. Value is the slot's `u32` rendered through
967    /// `.to_string()`.
968    pub const POOL_SLOT: &str = "tatara.pleme.io/pool-slot";
969    /// Stamped by `tatara-pool-reconciler::controller_allocation::
970    /// reconcile` on the bound member `Process` at the moment an
971    /// `EphemeralAllocation` transitions Bound → Released, to nudge
972    /// the pool reconciler into taking the return path (flip back
973    /// to `Lifetime::Permanent` on the pool's [`crate::pool::ReturnPolicy::
974    /// Keep`] arm, or delete the Process outright on the
975    /// [`crate::pool::ReturnPolicy::Replace`] arm). Value is the wire-
976    /// form string `"true"` — merge-patch semantics treat a bare
977    /// `Value::Null` as strip, so the pool reconciler's future strip
978    /// arm will stamp `Value::Null` under the same key through the
979    /// same substrate [`crate::patch::annotation_body`] composer. Peer
980    /// to [`SIGNAL`] (asynchronous signal-annotation ingest by
981    /// `tatara-reconciler::signals::ingest`) and [`RELEASED_FROM`]
982    /// (Releasing-gate stamp by `tatara-reconciler::phase_machine::
983    /// transition_to_releasing`) on the "single-annotation trigger
984    /// for the next reconcile pass" axis-family; all three keys ride
985    /// through the same `annotation_body(<key>, <value>)` composer at
986    /// their stamp sites.
987    ///
988    /// Peer to [`POOL`] + [`POOL_SLOT`] on the pool-membership axis:
989    /// where those two keys travel together at pool-controller
990    /// creation to identify a Process as a pool member, this key
991    /// travels alone at the allocator's Release arm to fire the
992    /// return path. A future rename that shifted the return-trigger
993    /// wire-form (a `tatara.pleme.io/v2/return-trigger` migration, a
994    /// per-fleet override, a collapse into a compound
995    /// `tatara.pleme.io/allocator-trigger` key carrying the
996    /// (bind|release) discriminator) lands at ONE `pub const` in the
997    /// substrate and every downstream consumer inherits the upgrade
998    /// mechanically.
999    pub const RETURN_TRIGGER: &str = "tatara.pleme.io/return-trigger";
1000}
1001
1002/// Standard finalizer for the Process reconciler.
1003///
1004/// Re-export of [`finalizers::PROCESS`] — the substrate-owner
1005/// per-CRD finalizer family lives at [`crate::finalizers`]; this
1006/// top-level const stays put for downstream consumers that predate
1007/// the module, and is coherence-pinned against
1008/// [`finalizers::PROCESS`] by
1009/// [`finalizers::tests::process_finalizer_top_level_reexport_routes_through_finalizers_process`].
1010pub const PROCESS_FINALIZER: &str = finalizers::PROCESS;
1011
1012/// Shared schemars helpers — emit OpenAPI schemas Kubernetes accepts.
1013/// Free-form `serde_json::Value` fields default to an *empty* schema
1014/// in schemars, which the K8s API server rejects with "type: Required
1015/// value: must not be empty for specified object fields". The typed
1016/// workaround is to emit `{type: object, x-kubernetes-preserve-unknown-
1017/// fields: true}` — same shape kube-rs's own helpers produce.
1018pub mod schema_helpers {
1019    use schemars::{gen::SchemaGenerator, schema::Schema};
1020    /// Schema for a free-form JSON object field. Apply via
1021    /// `#[schemars(schema_with = "tatara_process::schema_helpers::preserve_unknown_object")]`
1022    /// on any `serde_json::Value` / `BTreeMap<String, serde_json::Value>`
1023    /// field exposed through a CRD.
1024    pub fn preserve_unknown_object(_g: &mut SchemaGenerator) -> Schema {
1025        serde_json::from_value(serde_json::json!({
1026            "type": "object",
1027            "x-kubernetes-preserve-unknown-fields": true
1028        }))
1029        .expect("static JSON literal parses as Schema")
1030    }
1031}
1032
1033#[cfg(test)]
1034mod owner_reference_tests {
1035    //! Pin the `owner_reference_json` composer at fail-before-pass-
1036    //! after granularity. Every shape a pre-lift caller hand-authored
1037    //! is re-asserted here so a regression that inlined any of the
1038    //! six slots at a call site (breaking the primitive's role as
1039    //! the ONE source of truth) fails HERE at the composer's shipped-
1040    //! shape pin rather than as silent drift between the pre-lift
1041    //! `render.rs` / `edges.rs` / `ssapply.rs` sites (which pre-lift
1042    //! already carried TWO different `apiVersion` spellings — a
1043    //! composed `format!("{}/{}", GROUP, VERSION)` at two sites and
1044    //! the frozen literal `"tatara.pleme.io/v1alpha1"` at the third).
1045    use super::{
1046        api_version, owner_reference_json, owner_references_json, API_VERSION, GROUP, PROCESS_KIND,
1047        PROCESS_WIRE_IDENTITY, VERSION,
1048    };
1049    use crate::flux_resource::FluxResource;
1050    use crate::k8s_builtin_resource::K8sBuiltinResource;
1051    use crate::k8s_wire_identity::K8sWireIdentity;
1052    use crate::routing_edge_resource::RoutingEdgeResource;
1053    use serde_json::json;
1054
1055    #[test]
1056    fn api_version_composes_group_and_version() {
1057        // Any bump of GROUP or VERSION lands at ONE composer.
1058        assert_eq!(api_version(), format!("{GROUP}/{VERSION}"));
1059    }
1060
1061    // ─── API_VERSION const substrate pins ───────────────────────────
1062    //
1063    // The compile-time `&'static str` [`API_VERSION`] const feeds the
1064    // typed [`PROCESS_WIRE_IDENTITY`] const and delegates the runtime
1065    // [`api_version`] fn — these pins bind the const at fail-before-
1066    // pass-after granularity so a regression that drifted the const
1067    // (a rename that touched [`GROUP`] but not the const's baked
1068    // literal, a VERSION bump that only updated [`VERSION`]) surfaces
1069    // HERE rather than as silent operator-facing skew between the
1070    // typed-const consumers and the fn-based consumers on the same
1071    // wire-form axis.
1072
1073    #[test]
1074    fn api_version_const_composes_group_and_version_bytewise() {
1075        // Cross-const coherence pin: the compile-time [`API_VERSION`]
1076        // must be byte-identical to the runtime `format!("{GROUP}/
1077        // {VERSION}")` composition. A regression that drifted either
1078        // the const or the two segment consts would surface HERE
1079        // rather than as silent skew between [`PROCESS_WIRE_IDENTITY`]
1080        // (which composes over the const) and [`api_url_prefix`]
1081        // (which composes over the two segment consts at runtime).
1082        assert_eq!(API_VERSION, format!("{GROUP}/{VERSION}"));
1083    }
1084
1085    #[test]
1086    fn api_version_const_byte_matches_wire_form_pre_lift() {
1087        // Byte-identity pin: the frozen wire-form literal is the SAME
1088        // string every downstream consumer (the typed
1089        // [`PROCESS_WIRE_IDENTITY`] const, the runtime [`api_version`]
1090        // fn, every K8s `apiVersion:` slot the reconciler stamps)
1091        // must emit. Peer of the pre-existing runtime pin
1092        // [`api_version_byte_matches_wire_form_pre_lift`]; both close
1093        // the axis at the SAME wire form.
1094        assert_eq!(API_VERSION, "tatara.pleme.io/v1alpha1");
1095    }
1096
1097    #[test]
1098    fn api_version_fn_delegates_through_const_owner() {
1099        // Routing pin: the runtime `api_version()` fn returns
1100        // [`API_VERSION`]`.to_string()` — the ONE substrate owner of
1101        // the wire-form literal. A regression that re-open-coded the
1102        // fn's body (restoring the pre-lift `format!("{GROUP}/
1103        // {VERSION}")` composition, or inlining a stale literal) would
1104        // surface HERE rather than as silent skew between the two
1105        // sibling emit paths (typed-const vs owned-String).
1106        assert_eq!(api_version(), API_VERSION);
1107    }
1108
1109    #[test]
1110    fn api_version_const_is_reachable_at_compile_time() {
1111        // Compile-time reachability pin: [`API_VERSION`] is a `const
1112        // &'static str` so a caller can bind it into a `const` slot —
1113        // exactly what [`PROCESS_WIRE_IDENTITY`] does through
1114        // [`K8sWireIdentity::new`]'s `const fn`. A regression that
1115        // widened the const to an owned `String` or a `Lazy<String>`
1116        // would fail-loudly at this coercion rather than at the
1117        // silent runtime-vs-const composition boundary at
1118        // [`PROCESS_WIRE_IDENTITY`].
1119        const AV: &str = API_VERSION;
1120        assert_eq!(AV, "tatara.pleme.io/v1alpha1");
1121    }
1122
1123    // ─── PROCESS_WIRE_IDENTITY substrate pins ───────────────────────
1124    //
1125    // The typed [`PROCESS_WIRE_IDENTITY`] const closes the fourth arm
1126    // of the K8s-wire-form-identity axis-family (peer to
1127    // [`K8sBuiltinResource::wire_identity`],
1128    // [`FluxResource::wire_identity`],
1129    // [`RoutingEdgeResource::wire_identity`]). These pins bind the
1130    // const at fail-before-pass-after granularity so a regression that
1131    // drifted either slot (an `apiVersion` slot that stopped routing
1132    // through [`API_VERSION`], a `kind` slot that stopped routing
1133    // through [`PROCESS_KIND`]) surfaces HERE rather than as silent
1134    // OwnerReference-emit skew at every downstream consumer.
1135
1136    #[test]
1137    fn process_wire_identity_pairs_api_version_and_kind_through_substrate_owners() {
1138        // Slot-routing pin: both slots MUST route through the ONE
1139        // substrate owner per slot ([`API_VERSION`] for the
1140        // `apiVersion` slot, [`PROCESS_KIND`] for the `kind` slot).
1141        // A regression that re-inlined either slot's literal at the
1142        // const declaration would surface HERE rather than as silent
1143        // skew between the wire-identity const and its slot owners.
1144        assert_eq!(PROCESS_WIRE_IDENTITY.api_version, API_VERSION);
1145        assert_eq!(PROCESS_WIRE_IDENTITY.kind, PROCESS_KIND);
1146    }
1147
1148    #[test]
1149    fn process_wire_identity_byte_matches_wire_form_pre_lift() {
1150        // Byte-identity pin: the const's `(apiVersion, kind)` pair
1151        // must equal the two frozen wire-form strings every pre-lift
1152        // consumer hand-authored — a regression that drifted either
1153        // slot would surface HERE rather than as a wire-time 404 the
1154        // K8s API server would misdiagnose as a broken CRD.
1155        assert_eq!(
1156            PROCESS_WIRE_IDENTITY.api_version,
1157            "tatara.pleme.io/v1alpha1"
1158        );
1159        assert_eq!(PROCESS_WIRE_IDENTITY.kind, "Process");
1160    }
1161
1162    #[test]
1163    fn process_wire_identity_is_const_reachable() {
1164        // Compile-time reachability pin: [`PROCESS_WIRE_IDENTITY`] is
1165        // a compile-time `const K8sWireIdentity` so a caller can bind
1166        // it into a `const` slot. A regression that dropped the
1167        // `const fn` qualifier on [`K8sWireIdentity::new`] or widened
1168        // [`API_VERSION`] off the `&'static str` axis would fail-loudly
1169        // HERE rather than as a runtime dispatch at every OwnerReference
1170        // emit site.
1171        const ID: K8sWireIdentity = PROCESS_WIRE_IDENTITY;
1172        assert_eq!(ID.api_version, "tatara.pleme.io/v1alpha1");
1173        assert_eq!(ID.kind, "Process");
1174    }
1175
1176    #[test]
1177    fn process_wire_identity_is_disjoint_from_every_peer_wire_form_axis() {
1178        // Cross-substrate coherence pin: the tatara `Process` CRD's
1179        // typed `(apiVersion, kind)` pair MUST NOT collide with any
1180        // variant of the three peer closed-set axes on the K8s wire-
1181        // form-identity axis-family
1182        // ([`K8sBuiltinResource`] / [`FluxResource`] /
1183        // [`RoutingEdgeResource`]) — a hypothetical variant addition
1184        // on any peer that copy-pasted the tatara `Process` pair
1185        // (a `FluxResource::Process` renaming collision, a
1186        // `K8sBuiltinResource::Process` typo) would silently let a
1187        // reconciler dispatch reach through the wrong closed set. Pin
1188        // the disjointness so every future addition to any peer axis
1189        // that would collide with this const surfaces HERE.
1190        for k in K8sBuiltinResource::ALL {
1191            assert_ne!(
1192                (
1193                    PROCESS_WIRE_IDENTITY.api_version,
1194                    PROCESS_WIRE_IDENTITY.kind
1195                ),
1196                (k.api_version(), k.kind()),
1197                "PROCESS_WIRE_IDENTITY must not share a wire-form pair with K8sBuiltinResource {k:?}"
1198            );
1199        }
1200        for f in FluxResource::ALL {
1201            assert_ne!(
1202                (
1203                    PROCESS_WIRE_IDENTITY.api_version,
1204                    PROCESS_WIRE_IDENTITY.kind
1205                ),
1206                (f.api_version(), f.kind()),
1207                "PROCESS_WIRE_IDENTITY must not share a wire-form pair with FluxResource {f:?}"
1208            );
1209        }
1210        for r in RoutingEdgeResource::ALL {
1211            assert_ne!(
1212                (
1213                    PROCESS_WIRE_IDENTITY.api_version,
1214                    PROCESS_WIRE_IDENTITY.kind
1215                ),
1216                (r.api_version(), r.kind()),
1217                "PROCESS_WIRE_IDENTITY must not share a wire-form pair with RoutingEdgeResource {r:?}"
1218            );
1219        }
1220    }
1221
1222    #[test]
1223    fn owner_reference_json_routes_apiversion_and_kind_through_process_wire_identity() {
1224        // Routing pin: the `owner_reference_json` composer's
1225        // `(apiVersion, kind)` pair MUST match the typed
1226        // [`PROCESS_WIRE_IDENTITY`] const's `(api_version, kind)`
1227        // fields byte-for-byte. Post-lift the composer routes through
1228        // [`K8sWireIdentity::resource_json`], so this equality holds
1229        // by construction; a regression that re-open-coded the two
1230        // slots at the composer body (restoring the pre-lift `json!`
1231        // inline reference to `api_version()` + `PROCESS_KIND`
1232        // separately) would surface HERE rather than as silent skew
1233        // between the OwnerReference emit and the typed const owner.
1234        let v = owner_reference_json("p", "u");
1235        assert_eq!(v["apiVersion"], PROCESS_WIRE_IDENTITY.api_version);
1236        assert_eq!(v["kind"], PROCESS_WIRE_IDENTITY.kind);
1237    }
1238
1239    #[test]
1240    fn api_version_byte_matches_wire_form_pre_lift() {
1241        // Byte-identity pin: the frozen wire-form literal
1242        // `"tatara.pleme.io/v1alpha1"` that `ssapply.rs::
1243        // build_owner_reference` hand-wrote pre-lift must equal the
1244        // composed shape now sourced through the ONE owner. A
1245        // future VERSION bump that missed this test would land as
1246        // an operator-visible reference-mismatch after apply.
1247        assert_eq!(api_version(), "tatara.pleme.io/v1alpha1");
1248    }
1249
1250    #[test]
1251    fn api_url_prefix_composes_apis_group_version_slash() {
1252        // Composition pin: any bump of GROUP or VERSION lands at
1253        // ONE composer.
1254        assert_eq!(super::api_url_prefix(), format!("/apis/{GROUP}/{VERSION}/"));
1255    }
1256
1257    #[test]
1258    fn api_url_prefix_byte_matches_wire_form_pre_lift() {
1259        // Byte-identity pin: the frozen wire-form literal
1260        // `"/apis/tatara.pleme.io/v1alpha1/"` that eleven
1261        // hand-authored scope guards across `tatara-reconciler::
1262        // context`, `tatara-pool-reconciler::context`, and
1263        // `tatara-github-watcher::handler` restated pre-lift must
1264        // equal the composed shape now sourced through the ONE
1265        // owner. A future group rename or VERSION bump that missed
1266        // this pin would land as a silent scope-guard mismatch at
1267        // every downstream Api-primitive test.
1268        assert_eq!(super::api_url_prefix(), "/apis/tatara.pleme.io/v1alpha1/");
1269    }
1270
1271    #[test]
1272    fn api_url_prefix_carries_api_version_between_apis_and_trailing_slash() {
1273        // Cross-primitive pin: the URL prefix and the `apiVersion`
1274        // wire form share the SAME `<GROUP>/<VERSION>` shape,
1275        // wrapped by the fixed `/apis/…/` HTTP-path envelope. A
1276        // regression that drifted the two composers apart (a bump
1277        // that missed one of the two owners) surfaces here rather
1278        // than as an operator-visible mismatch between an emitted
1279        // ownerReference's `apiVersion` and the REST url every typed
1280        // `Api` primitive routes through.
1281        let prefix = super::api_url_prefix();
1282        let version = api_version();
1283        assert!(
1284            prefix.starts_with("/apis/") && prefix.ends_with('/'),
1285            "prefix must be wrapped as `/apis/…/`; got {prefix}"
1286        );
1287        let inner = &prefix["/apis/".len()..prefix.len() - 1];
1288        assert_eq!(
1289            inner, version,
1290            "prefix inner slot must equal api_version(); got inner={inner:?} version={version:?}"
1291        );
1292    }
1293
1294    #[test]
1295    fn process_kind_is_process_literal() {
1296        // Symbol-vs-string pin: any consumer that hand-wrote `"Process"`
1297        // pre-lift routes through this const post-lift.
1298        assert_eq!(PROCESS_KIND, "Process");
1299    }
1300
1301    #[test]
1302    fn owner_reference_json_has_all_six_slots_present() {
1303        let v = owner_reference_json("my-process", "abc-uid");
1304        let obj = v.as_object().expect("owner reference is a JSON object");
1305        for k in [
1306            "apiVersion",
1307            "kind",
1308            "name",
1309            "uid",
1310            "controller",
1311            "blockOwnerDeletion",
1312        ] {
1313            assert!(obj.contains_key(k), "missing owner-reference slot: {k}");
1314        }
1315        assert_eq!(obj.len(), 6, "owner reference must have exactly 6 slots");
1316    }
1317
1318    #[test]
1319    fn owner_reference_json_apiversion_routes_through_api_version_owner() {
1320        let v = owner_reference_json("x", "y");
1321        assert_eq!(v["apiVersion"], api_version());
1322    }
1323
1324    #[test]
1325    fn owner_reference_json_kind_routes_through_process_kind_const() {
1326        let v = owner_reference_json("x", "y");
1327        assert_eq!(v["kind"], PROCESS_KIND);
1328    }
1329
1330    #[test]
1331    fn owner_reference_json_stamps_supplied_name_and_uid() {
1332        let v = owner_reference_json("some-name", "some-uid");
1333        assert_eq!(v["name"], "some-name");
1334        assert_eq!(v["uid"], "some-uid");
1335    }
1336
1337    #[test]
1338    fn owner_reference_json_controller_and_block_owner_deletion_are_true() {
1339        // These are structural — a Process-owned resource always
1340        // has a controlling reference that cascade-deletes with
1341        // the owner. A regression that flipped either boolean
1342        // would silently detach every emitted resource.
1343        let v = owner_reference_json("x", "y");
1344        assert_eq!(v["controller"], true);
1345        assert_eq!(v["blockOwnerDeletion"], true);
1346    }
1347
1348    #[test]
1349    fn owner_reference_json_matches_hand_authored_shape_pre_lift() {
1350        // Byte-shape pin against the exact `json!({…})` incantation
1351        // every pre-lift call site restated. A regression that
1352        // reordered a slot, dropped one, or added a seventh here
1353        // surfaces at THIS pin rather than as a subtle SSA-apply
1354        // failure downstream when the K8s API server rejects the
1355        // OwnerReference on schema mismatch.
1356        let via_owner = owner_reference_json("p", "u");
1357        let hand_authored = json!({
1358            "apiVersion": "tatara.pleme.io/v1alpha1",
1359            "kind": "Process",
1360            "name": "p",
1361            "uid": "u",
1362            "controller": true,
1363            "blockOwnerDeletion": true,
1364        });
1365        assert_eq!(via_owner, hand_authored);
1366    }
1367
1368    #[test]
1369    fn owner_reference_json_preserves_empty_name_and_uid_bytewise() {
1370        // The primitive does not guard against empty inputs — its
1371        // callers pre-lift did the empty-check upstream (both the
1372        // `edges.rs::build_owner_refs` and `render.rs::one_export_job`
1373        // sites gated on `!uid.is_empty()` before calling this composer,
1374        // and both now route through `owner_references_json` below;
1375        // `ssapply.rs::build_owner_reference` unwraps a required
1376        // `metadata.uid` via anyhow). The scalar composer owns
1377        // shape composition, not admission control; a downstream
1378        // rename that wants strict input validation lands as a
1379        // peer, not a change to the composer's contract.
1380        let v = owner_reference_json("", "");
1381        assert_eq!(v["name"], "");
1382        assert_eq!(v["uid"], "");
1383    }
1384
1385    // ─── owner_references_json substrate pins ────────────────────────
1386    //
1387    // The 3-line `let mut owner_refs = vec![]; if !uid.is_empty()
1388    // { owner_refs.push(owner_reference_json(name, uid)); }` gate was
1389    // hand-authored at TWO sites in `tatara-reconciler`
1390    // (`edges::build_owner_refs` + `render::one_export_job`) before
1391    // this primitive existed, each restating the same optional-uid
1392    // posture that emits `[]` when the caller lacks a K8s-assigned
1393    // uid to point owners at. These pins bind the primitive at
1394    // fail-before-pass-after granularity so a regression that
1395    // inlined an owner reference for an empty uid — silently
1396    // detaching the resource from cascade-delete — surfaces HERE
1397    // rather than as an operator-visible ownerless resource after
1398    // apply, and a regression that added an owner reference of the
1399    // wrong SHAPE (a peer of `owner_reference_json` that swapped a
1400    // slot) surfaces via the composed-shape pin below rather than
1401    // as silent drift at every downstream emit site.
1402
1403    #[test]
1404    fn owner_references_json_emits_single_entry_when_uid_present() {
1405        // The primary shape: a caller with a materialized uid gets
1406        // exactly one owner reference back — the pre-lift 3-line
1407        // `vec![]` + `push` gate collapses to this ONE call, and
1408        // the returned array is a direct-drop `ownerReferences`
1409        // slot value at every callsite.
1410        let refs = owner_references_json("demo-app", "abc-uid");
1411        assert_eq!(refs.len(), 1);
1412        assert_eq!(refs[0]["kind"], PROCESS_KIND);
1413        assert_eq!(refs[0]["name"], "demo-app");
1414        assert_eq!(refs[0]["uid"], "abc-uid");
1415        // controller + blockOwnerDeletion routed through the scalar
1416        // composer — a regression that hand-composed the vec entry
1417        // rather than delegating would flip one of these booleans.
1418        assert_eq!(refs[0]["controller"], true);
1419        assert_eq!(refs[0]["blockOwnerDeletion"], true);
1420    }
1421
1422    #[test]
1423    fn owner_references_json_emits_empty_when_uid_empty() {
1424        // The load-bearing gate — a pre-metadata Process (fixtured in
1425        // tests, or caught mid-Forking) has no admissible owner
1426        // reference to point at. Post-lift the gate lives at ONE
1427        // primitive so every emit site stamps `[]` uniformly rather
1428        // than one site accidentally emitting a placeholder-uid
1429        // owner reference the K8s GC would quietly detach from
1430        // cascade-delete.
1431        let refs = owner_references_json("demo-app", "");
1432        assert!(
1433            refs.is_empty(),
1434            "empty uid must produce zero owner references, not a placeholder-uid entry"
1435        );
1436    }
1437
1438    #[test]
1439    fn owner_references_json_gates_on_uid_not_name() {
1440        // The gate axis is `uid`, not `name` — a Process with a
1441        // non-empty name but no uid still emits `[]` (the pre-metadata
1442        // shape), while a Process with a non-empty uid emits ONE
1443        // entry even when the name slot is empty (matching the
1444        // scalar composer's admission-control-free contract). Pin
1445        // both cross-diagonal combinations so a regression that
1446        // swapped the gate axis surfaces HERE rather than at every
1447        // downstream owner-refs consumer.
1448        assert!(
1449            owner_references_json("has-name", "").is_empty(),
1450            "empty uid gates to []; name presence is irrelevant"
1451        );
1452        let refs = owner_references_json("", "has-uid");
1453        assert_eq!(
1454            refs.len(),
1455            1,
1456            "empty name but present uid still emits one entry (name is not the gate)"
1457        );
1458        assert_eq!(refs[0]["name"], "");
1459        assert_eq!(refs[0]["uid"], "has-uid");
1460    }
1461
1462    #[test]
1463    fn owner_references_json_matches_hand_authored_pre_lift_bytewise() {
1464        // Byte-identical parity with the exact pre-lift 3-line
1465        // `let mut owner_refs = vec![]; if !uid.is_empty() {
1466        // owner_refs.push(owner_reference_json(name, uid)); }` gate
1467        // across the two axis combinations every callsite plausibly
1468        // encounters. A regression that reordered the two branches,
1469        // dropped the gate, or reshaped the vec composition surfaces
1470        // HERE rather than at every downstream `ownerReferences`
1471        // slot pinned across `edges.rs` + `render.rs` tests.
1472        for (name, uid) in [
1473            ("demo-app", "uid-abc"),
1474            ("demo-app", ""),
1475            ("", "uid-abc"),
1476            ("", ""),
1477        ] {
1478            let via_primitive = owner_references_json(name, uid);
1479
1480            // The pre-lift 3-line block, byte-for-byte.
1481            let mut hand_authored: Vec<serde_json::Value> = vec![];
1482            if !uid.is_empty() {
1483                hand_authored.push(owner_reference_json(name, uid));
1484            }
1485
1486            assert_eq!(
1487                via_primitive, hand_authored,
1488                "owner_references_json must be byte-identical to the pre-lift 3-line gate on ({name:?}, {uid:?})"
1489            );
1490        }
1491    }
1492
1493    #[test]
1494    fn owner_references_json_interpolates_cleanly_as_owner_refs_slot() {
1495        // Both callsites drop the returned vec directly under a
1496        // `"ownerReferences"` key inside a `json!({...})` block. Pin
1497        // the interop shape: a JSON-macro-wrapped Value carries the
1498        // primitive's output as a JSON array with the exact 6-slot
1499        // entries at each index. A regression that returned a
1500        // non-array (e.g. a single Value on the one-entry path,
1501        // requiring per-site vec-wrapping) surfaces HERE rather than
1502        // as a broken `metadata.ownerReferences` slot on every
1503        // emitted Ingress / DNSEndpoint / export Job.
1504        let refs = owner_references_json("demo-app", "abc-uid");
1505        let wrapped = json!({
1506            "metadata": {
1507                "name": "resource",
1508                "ownerReferences": refs,
1509            },
1510        });
1511        let owner_refs = &wrapped["metadata"]["ownerReferences"];
1512        assert!(
1513            owner_refs.is_array(),
1514            "ownerReferences must land as a JSON array"
1515        );
1516        assert_eq!(owner_refs.as_array().unwrap().len(), 1);
1517        assert_eq!(owner_refs[0]["kind"], PROCESS_KIND);
1518
1519        // And the empty-uid path lands as an EMPTY array, not a
1520        // missing key or a null — matches the K8s API server's
1521        // expectation that the slot is either an array of entries
1522        // or absent, never a null.
1523        let empty_refs = owner_references_json("demo-app", "");
1524        let wrapped_empty = json!({
1525            "metadata": {
1526                "name": "resource",
1527                "ownerReferences": empty_refs,
1528            },
1529        });
1530        let owner_refs_empty = &wrapped_empty["metadata"]["ownerReferences"];
1531        assert!(owner_refs_empty.is_array());
1532        assert!(owner_refs_empty.as_array().unwrap().is_empty());
1533    }
1534}
1535
1536#[cfg(test)]
1537mod qualified_process_ref_tests {
1538    //! Pin the [`qualified_process_ref`] composer at fail-before-
1539    //! pass-after granularity. The `<ns>/<name>` shape is the
1540    //! workspace-wide convention for a namespaced K8s resource
1541    //! reference — every downstream grep (the reconciler's
1542    //! `tatara.pleme.io/process` annotation reader, the
1543    //! [`crate::table::ClaimRecord.holder`] slot, the
1544    //! export-worker's receipt-owner filter, the reconciler's
1545    //! `PROCESS=<ref>` label-selector composer) depends on the
1546    //! two axes landing in `(ns, name)` order joined by a single
1547    //! `/` separator. A regression that swapped the axes, dropped
1548    //! either half, or renormalized the input surfaces HERE rather
1549    //! than as silent operator-facing drift at every downstream
1550    //! consumer.
1551    use super::qualified_process_ref;
1552
1553    #[test]
1554    fn qualified_process_ref_joins_ns_and_name_with_slash() {
1555        // The invariant every downstream consumer composes against:
1556        // the qualified reference is EXACTLY `<ns>/<name>`, in that
1557        // order, joined by a single `/`.
1558        assert_eq!(
1559            qualified_process_ref("demo-ns", "ephemeral-demo"),
1560            "demo-ns/ephemeral-demo",
1561        );
1562    }
1563
1564    #[test]
1565    fn qualified_process_ref_binds_positional_slots_by_axis_order() {
1566        // Positional pin — a copy-paste that swapped the two `&str`
1567        // arguments (both mechanically interchangeable at the type
1568        // level) would silently produce `<name>/<ns>` and break every
1569        // downstream grep keyed on the reference shape. Distinct
1570        // input slot values so a swap surfaces as an equality
1571        // failure rather than accidental identity.
1572        let out = qualified_process_ref("first-slot-ns", "second-slot-name");
1573        assert!(
1574            out.starts_with("first-slot-ns/"),
1575            "position 0 must be the namespace slot: got {out}"
1576        );
1577        assert!(
1578            out.ends_with("/second-slot-name"),
1579            "position 1 must be the name slot: got {out}"
1580        );
1581    }
1582
1583    #[test]
1584    fn qualified_process_ref_accepts_string_deref_and_str_slice_shapes() {
1585        // Consumers split across two callsite shapes: owned
1586        // `String` locals (via deref coercion), bare `&str` slices,
1587        // and mixed provenance. Every shape must ride cleanly
1588        // through the same 2-arg signature — matches every current
1589        // pre-lift caller in `tatara-export-worker` (CLI-arg driven
1590        // owned strings + `&str` from a struct field) and in
1591        // `tatara-reconciler` (owned locals + function-param
1592        // slices).
1593        let owned_ns = String::from("owned-ns");
1594        let owned_name = String::from("owned-app");
1595        let borrowed_ns: &str = "borrowed-ns";
1596        let borrowed_name: &str = "borrowed-app";
1597        assert_eq!(
1598            qualified_process_ref(&owned_ns, &owned_name),
1599            "owned-ns/owned-app",
1600        );
1601        assert_eq!(
1602            qualified_process_ref(borrowed_ns, borrowed_name),
1603            "borrowed-ns/borrowed-app",
1604        );
1605        assert_eq!(
1606            qualified_process_ref(&owned_ns, borrowed_name),
1607            "owned-ns/borrowed-app",
1608        );
1609    }
1610
1611    #[test]
1612    fn qualified_process_ref_rides_edge_case_axis_shapes() {
1613        // The composer shapes the two axes as arbitrary strings —
1614        // no length/character validation happens at the composer,
1615        // so any shape a Process's `metadata.namespace` /
1616        // `metadata.name` can hold rides through unchanged. Pin
1617        // the empty-string cases (unnamed process pre-metadata,
1618        // cluster-scoped `namespace = ""` fallback), and the
1619        // whitespace-and-slash-in-name pathological case (a
1620        // regression that URL-escaped or path-normalized the input
1621        // at this primitive would silently break every downstream
1622        // grep).
1623        assert_eq!(qualified_process_ref("", ""), "/");
1624        assert_eq!(qualified_process_ref("default", ""), "default/");
1625        assert_eq!(qualified_process_ref("", "orphan"), "/orphan");
1626        assert_eq!(
1627            qualified_process_ref("weird ns", "with/slash"),
1628            "weird ns/with/slash",
1629        );
1630    }
1631
1632    #[test]
1633    fn qualified_process_ref_composes_from_process_coordinates_or_defaults() {
1634        // The primary Process-driven callsite: a live
1635        // [`crate::prelude::Process`] with populated metadata
1636        // composes through
1637        // [`crate::prelude::Process::coordinates_or_defaults`] +
1638        // [`qualified_process_ref`]. Pin the composition so a
1639        // regression in either primitive that broke the `(ns,
1640        // name)` positional contract surfaces HERE rather than as
1641        // silent drift at every downstream reconciler / export-
1642        // worker / pool-reconciler consumer.
1643        use crate::crd::{Process, ProcessSpec};
1644        // Routes through the ONE substrate composer
1645        // `ProcessSpec::gate_compute_defaults` — pre-lift this was a
1646        // 12-line inline struct-literal restated verbatim inside this
1647        // pin body.
1648        let spec = ProcessSpec::gate_compute_defaults();
1649        let mut p = Process::new("ephemeral-demo", spec);
1650        p.metadata.namespace = Some("demo-ns".into());
1651        let (ns, name) = p.coordinates_or_defaults();
1652        assert_eq!(
1653            qualified_process_ref(ns, name),
1654            "demo-ns/ephemeral-demo",
1655            "coordinates_or_defaults + qualified_process_ref must \
1656             compose to the canonical <ns>/<name> shape"
1657        );
1658    }
1659
1660    #[test]
1661    fn qualified_process_ref_matches_hand_authored_pre_lift_bytewise() {
1662        // Byte-identical parity with the exact pre-lift
1663        // `format!("{ns}/{name}")` incantation. A regression that
1664        // reshaped the separator, reordered the axes, or dropped
1665        // either half surfaces HERE rather than at every downstream
1666        // annotation / claim-key / run-id consumer. Sweeps every
1667        // shape combination the pre-lift callers plausibly
1668        // encountered.
1669        for (ns, name) in [
1670            ("demo-ns", "ephemeral-demo"),
1671            ("", ""),
1672            ("default", ""),
1673            ("", "orphan"),
1674        ] {
1675            let via_primitive = qualified_process_ref(ns, name);
1676            let hand_authored = format!("{ns}/{name}");
1677            assert_eq!(
1678                via_primitive, hand_authored,
1679                "qualified_process_ref must be byte-identical to \
1680                 the pre-lift `format!(\"{{ns}}/{{name}}\")` \
1681                 hand-authored shape on ({ns:?}, {name:?})"
1682            );
1683        }
1684    }
1685}
1686
1687#[cfg(test)]
1688mod namespaced_api_coordinates_tests {
1689    //! Pin the [`NamespacedApiCoordinates`] trait's
1690    //! `owned_coordinates_required` extractor at fail-before-pass-
1691    //! after granularity across every corner of the (namespace slot,
1692    //! name slot) × (present, absent) input matrix, on BOTH CRDs the
1693    //! trait's blanket impl covers today (`EphemeralPool` +
1694    //! `EphemeralAllocation`). A regression that reordered the two
1695    //! `ok_or_else` gates, dropped the `Self::kind` prefix, or drifted
1696    //! the error-string spelling surfaces HERE rather than as silent
1697    //! operator-facing skew between the two reconcilers' top-level
1698    //! error messages.
1699    use super::NamespacedApiCoordinates;
1700    use crate::allocation::{AllocationSpec, EphemeralAllocation, Requestor};
1701    use crate::ephemeral::EphemeralSpec;
1702    use crate::intent::AplicacaoIntent;
1703    use crate::lifetime::TeardownPolicy;
1704    use crate::pool::{EphemeralPool, PoolSpec};
1705
1706    fn empty_template() -> EphemeralSpec {
1707        // Mirror `tatara-pool-reconciler::router::tests::empty_template`
1708        // — the workspace-wide minimal `EphemeralSpec` fixture the sister
1709        // reconciler tests already use for pool wiring exercised here.
1710        EphemeralSpec {
1711            aplicacao: AplicacaoIntent::chart_only("oci://x", "1"),
1712            ttl: "1h".into(),
1713            teardown: TeardownPolicy::Always,
1714            max_concurrent: 0,
1715            postconditions: vec![],
1716            preconditions: vec![],
1717            verify_timeout: None,
1718            classification: None,
1719            parent: None,
1720            exports: vec![],
1721            routing: None,
1722        }
1723    }
1724
1725    fn pool_fixture(name: &str, ns: Option<&str>) -> EphemeralPool {
1726        // Every non-template slot rides the ONE substrate composer
1727        // [`PoolSpec::with_template`]; pre-lift this fixture spelled the
1728        // full 11-slot struct-literal verbatim as one of eight cross-
1729        // crate hand-authored copies. See the primitive's doc-comment
1730        // for the full migration rationale.
1731        let spec = PoolSpec {
1732            desired_size: 1,
1733            ..PoolSpec::with_template(empty_template())
1734        };
1735        let mut p = EphemeralPool::new(name, spec);
1736        p.metadata.namespace = ns.map(str::to_string);
1737        p
1738    }
1739
1740    fn alloc_fixture(name: &str, ns: Option<&str>) -> EphemeralAllocation {
1741        // AllocationSpec rides through the ONE substrate composer
1742        // `AllocationSpec::requestor_only`; the inner Requestor rides
1743        // through the peer composer `Requestor::kind_only`. Nine
1744        // pre-lift exact-match sites past the ★★ PRIME-DIRECTIVE ≥ 2
1745        // threshold collapse onto this ONE substrate owner.
1746        let spec = AllocationSpec::requestor_only(Requestor::kind_only("github-pr"));
1747        let mut a = EphemeralAllocation::new(name, spec);
1748        a.metadata.namespace = ns.map(str::to_string);
1749        a
1750    }
1751
1752    fn nameless_pool(ns: Option<&str>) -> EphemeralPool {
1753        let mut p = pool_fixture("placeholder", ns);
1754        p.metadata.name = None;
1755        p
1756    }
1757
1758    fn nameless_alloc(ns: Option<&str>) -> EphemeralAllocation {
1759        let mut a = alloc_fixture("placeholder", ns);
1760        a.metadata.name = None;
1761        a
1762    }
1763
1764    // ── Happy path: both slots present ─────────────────────────────
1765
1766    #[test]
1767    fn owned_coordinates_required_returns_owned_strings_on_ephemeral_pool_when_both_slots_present()
1768    {
1769        let p = pool_fixture("attest-pool", Some("ephemeral-pools"));
1770        let (ns, name) = p.owned_coordinates_required().unwrap();
1771        assert_eq!(ns, "ephemeral-pools");
1772        assert_eq!(name, "attest-pool");
1773    }
1774
1775    #[test]
1776    fn owned_coordinates_required_returns_owned_strings_on_ephemeral_allocation_when_both_slots_present(
1777    ) {
1778        let a = alloc_fixture("pr-42-demo", Some("ephemeral-pools"));
1779        let (ns, name) = a.owned_coordinates_required().unwrap();
1780        assert_eq!(ns, "ephemeral-pools");
1781        assert_eq!(name, "pr-42-demo");
1782    }
1783
1784    // ── Missing namespace ─────────────────────────────────────────
1785
1786    #[test]
1787    fn owned_coordinates_required_errors_on_ephemeral_pool_missing_namespace() {
1788        let p = pool_fixture("attest-pool", None);
1789        let err = p.owned_coordinates_required().unwrap_err();
1790        assert_eq!(err.to_string(), "EphemeralPool has no metadata.namespace");
1791    }
1792
1793    #[test]
1794    fn owned_coordinates_required_errors_on_ephemeral_allocation_missing_namespace() {
1795        let a = alloc_fixture("pr-42-demo", None);
1796        let err = a.owned_coordinates_required().unwrap_err();
1797        assert_eq!(
1798            err.to_string(),
1799            "EphemeralAllocation has no metadata.namespace"
1800        );
1801    }
1802
1803    // ── Missing name ──────────────────────────────────────────────
1804
1805    #[test]
1806    fn owned_coordinates_required_errors_on_ephemeral_pool_missing_name_when_namespace_present() {
1807        let p = nameless_pool(Some("ephemeral-pools"));
1808        let err = p.owned_coordinates_required().unwrap_err();
1809        assert_eq!(err.to_string(), "EphemeralPool has no metadata.name");
1810    }
1811
1812    #[test]
1813    fn owned_coordinates_required_errors_on_ephemeral_allocation_missing_name_when_namespace_present(
1814    ) {
1815        let a = nameless_alloc(Some("ephemeral-pools"));
1816        let err = a.owned_coordinates_required().unwrap_err();
1817        assert_eq!(err.to_string(), "EphemeralAllocation has no metadata.name");
1818    }
1819
1820    // ── Missing both slots: namespace error wins (pre-lift ordering) ──
1821
1822    #[test]
1823    fn owned_coordinates_required_reports_namespace_first_when_both_slots_absent_on_ephemeral_pool()
1824    {
1825        // Pre-lift both reconcilers spelled the paired chain as the
1826        // namespace ok_or_else THEN the name ok_or_else, so the
1827        // reported error on a fixture missing both slots was always
1828        // the namespace one. Pin that ordering post-lift so a
1829        // regression that swapped the two `ok_or_else` blocks
1830        // surfaces HERE rather than at operator-facing log-line
1831        // grep drift between the two reconcilers.
1832        let p = nameless_pool(None);
1833        let err = p.owned_coordinates_required().unwrap_err();
1834        assert_eq!(err.to_string(), "EphemeralPool has no metadata.namespace");
1835    }
1836
1837    #[test]
1838    fn owned_coordinates_required_reports_namespace_first_when_both_slots_absent_on_ephemeral_allocation(
1839    ) {
1840        let a = nameless_alloc(None);
1841        let err = a.owned_coordinates_required().unwrap_err();
1842        assert_eq!(
1843            err.to_string(),
1844            "EphemeralAllocation has no metadata.namespace"
1845        );
1846    }
1847
1848    // ── Byte-identical parity with the pre-lift 5-line chain ──────
1849
1850    #[test]
1851    fn owned_coordinates_required_matches_pre_lift_pool_reconciler_chain_shape() {
1852        // Byte-identical parity pin: the primitive produces the SAME
1853        // `Result<(String, String), anyhow::Error>` shape a pre-lift
1854        // `.metadata.<slot>.clone().ok_or_else(|| anyhow!("<Kind> has
1855        // no metadata.<slot>"))?` chain produced at
1856        // `tatara-pool-reconciler::controller_pool::reconcile_inner`
1857        // pre-lift, on both the happy and the missing-slot corners.
1858        // A regression that changed the error prefix, reordered the
1859        // two gates, or returned a non-`(String, String)` tuple
1860        // surfaces HERE rather than at every consumer downstream.
1861        let cases = [
1862            (Some("prod"), Some("api")),
1863            (Some("prod"), None),
1864            (None, Some("orphan")),
1865            (None, None),
1866        ];
1867        for (ns_slot, name_slot) in cases {
1868            let mut p = pool_fixture("placeholder", ns_slot);
1869            if let Some(nm) = name_slot {
1870                p.metadata.name = Some(nm.into());
1871            } else {
1872                p.metadata.name = None;
1873            }
1874
1875            // Pre-lift 5-line paired chain (with the reconciler's
1876            // hand-authored short-form `"Pool"` prefix updated to the
1877            // canonical kube kind `"EphemeralPool"`, matching the
1878            // primitive's `Self::kind`-driven spelling — the drift
1879            // is intentional per the trait's docs).
1880            let pre_lift: anyhow::Result<(String, String)> = (|| {
1881                let ns =
1882                    p.metadata.namespace.clone().ok_or_else(|| {
1883                        anyhow::anyhow!("EphemeralPool has no metadata.namespace")
1884                    })?;
1885                let name = p
1886                    .metadata
1887                    .name
1888                    .clone()
1889                    .ok_or_else(|| anyhow::anyhow!("EphemeralPool has no metadata.name"))?;
1890                Ok((ns, name))
1891            })();
1892
1893            let via_primitive = p.owned_coordinates_required();
1894
1895            // Compare on both the Ok tuple + the error string
1896            // spelling — anyhow::Error does not derive PartialEq so
1897            // pattern-match on the Result axis rather than a direct
1898            // `assert_eq!` on the whole Result.
1899            match (via_primitive, pre_lift) {
1900                (Ok(a), Ok(b)) => assert_eq!(a, b),
1901                (Err(a), Err(b)) => assert_eq!(a.to_string(), b.to_string()),
1902                (a, b) => panic!(
1903                    "primitive vs pre-lift chain disagree on Ok/Err axis for \
1904                     (ns={ns_slot:?}, name={name_slot:?}): primitive={a:?}, pre_lift={b:?}"
1905                ),
1906            }
1907        }
1908    }
1909
1910    #[test]
1911    fn owned_coordinates_required_matches_pre_lift_allocation_reconciler_chain_shape() {
1912        // Peer to the pool-side pin above — pin the same byte-
1913        // identity contract on the allocation reconciler's chain,
1914        // where the pre-lift error spelling used the short-form
1915        // `"Allocation"` prefix that the primitive now emits as the
1916        // canonical kube-kind `"EphemeralAllocation"`.
1917        let cases = [
1918            (Some("ephemeral-pools"), Some("pr-42-demo")),
1919            (Some("ephemeral-pools"), None),
1920            (None, Some("orphan")),
1921            (None, None),
1922        ];
1923        for (ns_slot, name_slot) in cases {
1924            let mut a = alloc_fixture("placeholder", ns_slot);
1925            if let Some(nm) = name_slot {
1926                a.metadata.name = Some(nm.into());
1927            } else {
1928                a.metadata.name = None;
1929            }
1930
1931            let pre_lift: anyhow::Result<(String, String)> = (|| {
1932                let ns = a.metadata.namespace.clone().ok_or_else(|| {
1933                    anyhow::anyhow!("EphemeralAllocation has no metadata.namespace")
1934                })?;
1935                let name =
1936                    a.metadata.name.clone().ok_or_else(|| {
1937                        anyhow::anyhow!("EphemeralAllocation has no metadata.name")
1938                    })?;
1939                Ok((ns, name))
1940            })();
1941
1942            let via_primitive = a.owned_coordinates_required();
1943
1944            match (via_primitive, pre_lift) {
1945                (Ok(a), Ok(b)) => assert_eq!(a, b),
1946                (Err(a), Err(b)) => assert_eq!(a.to_string(), b.to_string()),
1947                (a, b) => panic!(
1948                    "primitive vs pre-lift chain disagree on Ok/Err axis for \
1949                     (ns={ns_slot:?}, name={name_slot:?}): primitive={a:?}, pre_lift={b:?}"
1950                ),
1951            }
1952        }
1953    }
1954
1955    // ── Cross-CRD symmetry: kube kind drives the error prefix ─────
1956
1957    #[test]
1958    fn owned_coordinates_required_error_prefix_matches_kube_kind_on_each_crd() {
1959        // The error prefix is sourced positionally from `Self::kind`
1960        // so the two CRDs emit distinct kube-canonical spellings
1961        // without either callsite hard-coding a per-CRD literal.
1962        // Regressions that hard-coded a shared prefix (e.g. a
1963        // copy-paste that pasted the pool's error string into the
1964        // allocation callsite) surface HERE.
1965        use kube::Resource;
1966        let p = pool_fixture("p", None);
1967        let a = alloc_fixture("a", None);
1968        assert_eq!(
1969            p.owned_coordinates_required().unwrap_err().to_string(),
1970            format!("{} has no metadata.namespace", EphemeralPool::kind(&()))
1971        );
1972        assert_eq!(
1973            a.owned_coordinates_required().unwrap_err().to_string(),
1974            format!(
1975                "{} has no metadata.namespace",
1976                EphemeralAllocation::kind(&())
1977            )
1978        );
1979        // Belt-and-suspenders: the two kinds are distinct spellings,
1980        // so the error strings are distinct too.
1981        assert_ne!(
1982            p.owned_coordinates_required().unwrap_err().to_string(),
1983            a.owned_coordinates_required().unwrap_err().to_string(),
1984        );
1985    }
1986}
1987
1988#[cfg(test)]
1989mod deletion_tombstoned_tests {
1990    //! Pin the [`DeletionTombstoned`] trait's `is_being_deleted` probe
1991    //! at fail-before-pass-after granularity across every corner of
1992    //! the (tombstone present, tombstone absent) input matrix, on
1993    //! ALL THREE tatara-process CRDs the trait's blanket impl covers
1994    //! today (`Process`, `EphemeralPool`, `EphemeralAllocation`), plus
1995    //! the cross-CRD coherence with the two pre-existing inherent
1996    //! forwarders. A regression that skewed the trait's default,
1997    //! promoted a distinct-payload tombstone to a false negative, or
1998    //! diverged the trait from either inherent forwarder surfaces
1999    //! HERE rather than as silent operator-facing skew between the
2000    //! four consumer sites the primitive owns (the top-level
2001    //! dispatcher's SIGTERM preempt, the SIGTERM cascade's child-
2002    //! fan-out DELETE-skip, the pool reconciler's Drain gate, and
2003    //! the allocation reconciler's release short-circuit) on three
2004    //! sibling CRDs.
2005    use super::DeletionTombstoned;
2006    use crate::allocation::{AllocationSpec, EphemeralAllocation, Requestor};
2007    use crate::crd::{Process, ProcessSpec};
2008    use crate::ephemeral::EphemeralSpec;
2009    use crate::intent::AplicacaoIntent;
2010    use crate::lifetime::TeardownPolicy;
2011    use crate::pool::{EphemeralPool, PoolSpec};
2012    use k8s_openapi::apimachinery::pkg::apis::meta::v1::Time;
2013
2014    fn empty_template() -> EphemeralSpec {
2015        EphemeralSpec {
2016            aplicacao: AplicacaoIntent::chart_only("oci://x", "1"),
2017            ttl: "1h".into(),
2018            teardown: TeardownPolicy::Always,
2019            max_concurrent: 0,
2020            postconditions: vec![],
2021            preconditions: vec![],
2022            verify_timeout: None,
2023            classification: None,
2024            parent: None,
2025            exports: vec![],
2026            routing: None,
2027        }
2028    }
2029
2030    fn empty_pool_spec() -> PoolSpec {
2031        // Every non-template slot rides the ONE substrate composer
2032        // [`PoolSpec::with_template`]; see the primitive's doc-comment
2033        // for the full migration rationale.
2034        PoolSpec {
2035            desired_size: 1,
2036            ..PoolSpec::with_template(empty_template())
2037        }
2038    }
2039
2040    fn empty_alloc_spec() -> AllocationSpec {
2041        // AllocationSpec rides through the ONE substrate composer
2042        // `AllocationSpec::requestor_only`; the inner Requestor rides
2043        // through `Requestor::kind_only`. Nine pre-lift exact-match
2044        // fixture sites past the ★★ PRIME-DIRECTIVE ≥ 2 threshold
2045        // collapse onto this ONE substrate owner.
2046        AllocationSpec::requestor_only(Requestor::kind_only("github-pr"))
2047    }
2048
2049    fn empty_process_spec() -> ProcessSpec {
2050        // Routes through the ONE substrate composer
2051        // `ProcessSpec::gate_compute_defaults` — the minimal
2052        // `ProcessSpec` used across every substrate metadata-projection
2053        // pin. Pre-lift this was the 12-line struct-literal restated
2054        // verbatim at every fixture in this pin family.
2055        ProcessSpec::gate_compute_defaults()
2056    }
2057
2058    // ── Missing tombstone (default fixture) — trait returns false ─────
2059
2060    #[test]
2061    fn is_being_deleted_on_process_missing_tombstone_returns_false_via_trait() {
2062        let p = Process::new("api", empty_process_spec());
2063        assert!(!DeletionTombstoned::is_being_deleted(&p));
2064    }
2065
2066    #[test]
2067    fn is_being_deleted_on_ephemeral_pool_missing_tombstone_returns_false_via_trait() {
2068        let p = EphemeralPool::new("attest-pool", empty_pool_spec());
2069        assert!(!DeletionTombstoned::is_being_deleted(&p));
2070    }
2071
2072    #[test]
2073    fn is_being_deleted_on_ephemeral_allocation_missing_tombstone_returns_false_via_trait() {
2074        // The load-bearing corner: EphemeralAllocation had NO inherent
2075        // is_being_deleted pre-lift — the trait's blanket impl is
2076        // what closes the substrate gap for the allocation reconciler's
2077        // hand-authored `.metadata.deletion_timestamp.is_some()` chain.
2078        let a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2079        assert!(!DeletionTombstoned::is_being_deleted(&a));
2080    }
2081
2082    // ── Present tombstone — trait returns true ────────────────────────
2083
2084    #[test]
2085    fn is_being_deleted_on_process_present_tombstone_returns_true_via_trait() {
2086        let mut p = Process::new("api", empty_process_spec());
2087        // Routes through the ONE substrate composer
2088        // `tatara_process::time::tombstone_now` — one of 12 pre-lift
2089        // exact-match sites past the ★★ PRIME-DIRECTIVE ≥ 2 threshold
2090        // for the `Some(Time(Utc::now()))` wire shape.
2091        p.metadata.deletion_timestamp = crate::time::tombstone_now();
2092        assert!(DeletionTombstoned::is_being_deleted(&p));
2093    }
2094
2095    #[test]
2096    fn is_being_deleted_on_ephemeral_pool_present_tombstone_returns_true_via_trait() {
2097        let mut p = EphemeralPool::new("attest-pool", empty_pool_spec());
2098        p.metadata.deletion_timestamp = crate::time::tombstone_now();
2099        assert!(DeletionTombstoned::is_being_deleted(&p));
2100    }
2101
2102    #[test]
2103    fn is_being_deleted_on_ephemeral_allocation_present_tombstone_returns_true_via_trait() {
2104        let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2105        a.metadata.deletion_timestamp = crate::time::tombstone_now();
2106        assert!(DeletionTombstoned::is_being_deleted(&a));
2107    }
2108
2109    // ── Byte-identical parity with the pre-lift `.is_some()` chain ────
2110
2111    #[test]
2112    fn is_being_deleted_matches_pre_lift_deletion_timestamp_is_some_chain_on_ephemeral_allocation()
2113    {
2114        // Byte-identical parity pin: the trait's default produces the
2115        // SAME `bool` a pre-lift `.metadata.deletion_timestamp.is_some()`
2116        // chain produced at `tatara-pool-reconciler::allocation_decide::
2117        // AllocationConvergenceCtx::observe` pre-lift, across every
2118        // corner of the (absent, present-at-now, present-at-past)
2119        // input matrix. A regression that inserted a normalization
2120        // step the pre-lift chain does NOT apply — or vice versa —
2121        // surfaces here rather than as silent drift between the
2122        // substrate owner and the pre-lift consumer.
2123        // Routes through the ONE substrate composer family
2124        // `tatara_process::time::{tombstone_now,tombstone_at}` — the
2125        // present-at-now corner rides `tombstone_now`, the present-at-
2126        // past corner composes `tombstone_at(seconds_ago(3600))` per
2127        // the composer's canonical stale-fixture shape.
2128        let mut cases: Vec<Option<Time>> = vec![None];
2129        cases.push(crate::time::tombstone_now());
2130        cases.push(crate::time::tombstone_at(crate::time::seconds_ago(3600)));
2131
2132        for ts in cases {
2133            let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2134            a.metadata.deletion_timestamp = ts.clone();
2135
2136            let pre_lift = a.metadata.deletion_timestamp.is_some();
2137            let via_trait = DeletionTombstoned::is_being_deleted(&a);
2138
2139            assert_eq!(
2140                pre_lift, via_trait,
2141                "trait probe must be byte-identical to pre-lift .metadata.deletion_timestamp.is_some() on tombstone={ts:?}",
2142            );
2143        }
2144    }
2145
2146    // ── Cross-CRD coherence with the two inherent forwarders ──────────
2147
2148    #[test]
2149    fn trait_probe_coheres_with_process_inherent_is_being_deleted_on_both_corners() {
2150        // Cross-primitive coherence pin: the trait's default and the
2151        // pre-existing `Process::is_being_deleted` inherent forwarder
2152        // return the SAME `bool` on the SAME `Process` value — a
2153        // future consolidation of the inherent onto the trait's default
2154        // (or vice versa) cannot land any drift between the two
2155        // surfaces because this pin binds them at every corner of the
2156        // (missing, present) input matrix.
2157        // Routes the tombstone-present corner through the ONE
2158        // substrate composer `tatara_process::time::tombstone_now`.
2159        for ts in [None, crate::time::tombstone_now()] {
2160            let mut p = Process::new("api", empty_process_spec());
2161            p.metadata.deletion_timestamp = ts.clone();
2162            assert_eq!(
2163                p.is_being_deleted(),
2164                DeletionTombstoned::is_being_deleted(&p),
2165                "Process trait probe must match inherent on tombstone={ts:?}",
2166            );
2167        }
2168    }
2169
2170    #[test]
2171    fn trait_probe_coheres_with_ephemeral_pool_inherent_is_being_deleted_on_both_corners() {
2172        // Peer coherence pin on the sister CRD.
2173        for ts in [None, crate::time::tombstone_now()] {
2174            let mut p = EphemeralPool::new("attest-pool", empty_pool_spec());
2175            p.metadata.deletion_timestamp = ts.clone();
2176            assert_eq!(
2177                p.is_being_deleted(),
2178                DeletionTombstoned::is_being_deleted(&p),
2179                "EphemeralPool trait probe must match inherent on tombstone={ts:?}",
2180            );
2181        }
2182    }
2183
2184    // ── Inherent-preferred method resolution on Process + EphemeralPool ──
2185
2186    #[test]
2187    fn dot_call_on_process_resolves_to_inherent_when_trait_in_scope() {
2188        // Rust method resolution prefers an inherent over a trait's
2189        // blanket impl, so `process.is_being_deleted()` with the trait
2190        // in scope still routes through the inherent — and both
2191        // return the same `bool` (verified in
2192        // `trait_probe_coheres_with_process_inherent_is_being_deleted_on_both_corners`).
2193        // This pin guards against a future refactor that removes the
2194        // inherent but leaves consumers assuming inherent-preferred
2195        // resolution — the observable output is identical either way,
2196        // so the pin locks the invariant that BOTH paths agree.
2197        let mut p = Process::new("api", empty_process_spec());
2198        // Routes through `tatara_process::time::tombstone_now`.
2199        p.metadata.deletion_timestamp = crate::time::tombstone_now();
2200        assert!(p.is_being_deleted());
2201    }
2202
2203    #[test]
2204    fn dot_call_on_ephemeral_allocation_resolves_to_trait_blanket_impl() {
2205        // The load-bearing corner: `alloc.is_being_deleted()` with
2206        // the trait in scope routes to the trait's blanket impl
2207        // (there is no inherent on `EphemeralAllocation`) and
2208        // produces the expected `bool`. This is what the swept
2209        // allocation-reconciler callsite depends on post-lift.
2210        let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2211        assert!(!a.is_being_deleted());
2212        a.metadata.deletion_timestamp = crate::time::tombstone_now();
2213        assert!(a.is_being_deleted());
2214    }
2215}
2216
2217#[cfg(test)]
2218mod annotated_tests {
2219    //! Pin the [`Annotated`] trait's `annotation` lookup at fail-
2220    //! before-pass-after granularity across every corner of the
2221    //! (annotations map: absent / present-empty / present-with-key /
2222    //! present-without-key) × (value form: normal / empty-string)
2223    //! input matrix, on the three tatara-process CRDs the trait's
2224    //! blanket impl covers today (`Process`, `EphemeralPool`,
2225    //! `EphemeralAllocation`) PLUS a K8s built-in (`ConfigMap`) — the
2226    //! load-bearing fourth surface that `tatara-export-worker::main`
2227    //! consumes post-lift where no tatara-owned inherent forwarder
2228    //! exists. Also pin cross-primitive coherence with the pre-existing
2229    //! `Process::annotation` inherent so a future consolidation onto
2230    //! the trait's default cannot silently skew the three consumers
2231    //! already routed through the inherent
2232    //! (`signals::ingest`,
2233    //! `phase_machine::released_from_annotation`,
2234    //! `controller_pool::process_belongs_to_pool`).
2235    use super::Annotated;
2236    use crate::allocation::{AllocationSpec, EphemeralAllocation, Requestor};
2237    use crate::crd::{Process, ProcessSpec};
2238    use crate::ephemeral::EphemeralSpec;
2239    use crate::intent::AplicacaoIntent;
2240    use crate::lifetime::TeardownPolicy;
2241    use crate::pool::{EphemeralPool, PoolSpec};
2242    use k8s_openapi::api::core::v1::ConfigMap;
2243    use std::collections::BTreeMap;
2244
2245    fn empty_template() -> EphemeralSpec {
2246        EphemeralSpec {
2247            aplicacao: AplicacaoIntent::chart_only("oci://x", "1"),
2248            ttl: "1h".into(),
2249            teardown: TeardownPolicy::Always,
2250            max_concurrent: 0,
2251            postconditions: vec![],
2252            preconditions: vec![],
2253            verify_timeout: None,
2254            classification: None,
2255            parent: None,
2256            exports: vec![],
2257            routing: None,
2258        }
2259    }
2260
2261    fn empty_pool_spec() -> PoolSpec {
2262        // Every non-template slot rides the ONE substrate composer
2263        // [`PoolSpec::with_template`]; see the primitive's doc-comment
2264        // for the full migration rationale.
2265        PoolSpec {
2266            desired_size: 1,
2267            ..PoolSpec::with_template(empty_template())
2268        }
2269    }
2270
2271    fn empty_alloc_spec() -> AllocationSpec {
2272        // AllocationSpec rides through `AllocationSpec::requestor_only`;
2273        // the inner Requestor rides through `Requestor::kind_only` —
2274        // sibling to the peer `empty_alloc_spec` fixture in the
2275        // DeletionTombstoned pin module above.
2276        AllocationSpec::requestor_only(Requestor::kind_only("github-pr"))
2277    }
2278
2279    fn empty_process_spec() -> ProcessSpec {
2280        // Routes through the ONE substrate composer
2281        // `ProcessSpec::gate_compute_defaults` — sibling to the
2282        // `empty_process_spec` fixture in the DeletionTombstoned pin
2283        // module above and to `empty_spec` in `crd.rs::tests`.
2284        ProcessSpec::gate_compute_defaults()
2285    }
2286
2287    fn one_annotation(key: &str, value: &str) -> BTreeMap<String, String> {
2288        let mut m = BTreeMap::new();
2289        m.insert(key.into(), value.into());
2290        m
2291    }
2292
2293    // ── Missing annotations map — trait returns None on every key ─────
2294
2295    #[test]
2296    fn annotation_on_process_missing_annotations_returns_none_via_trait() {
2297        let mut p = Process::new("api", empty_process_spec());
2298        p.metadata.annotations = None;
2299        assert_eq!(Annotated::annotation(&p, "tatara.pleme.io/signal"), None);
2300        assert_eq!(Annotated::annotation(&p, ""), None);
2301    }
2302
2303    #[test]
2304    fn annotation_on_ephemeral_pool_missing_annotations_returns_none_via_trait() {
2305        let mut p = EphemeralPool::new("attest-pool", empty_pool_spec());
2306        p.metadata.annotations = None;
2307        assert_eq!(Annotated::annotation(&p, "tatara.pleme.io/pool"), None);
2308    }
2309
2310    #[test]
2311    fn annotation_on_ephemeral_allocation_missing_annotations_returns_none_via_trait() {
2312        // The peer load-bearing corner: EphemeralAllocation has NO
2313        // inherent `annotation()` pre-lift — the trait's blanket impl
2314        // is what closes the substrate gap here, exactly as the
2315        // sibling `DeletionTombstoned` trait already did on the
2316        // tombstone axis for the SAME third CRD.
2317        let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2318        a.metadata.annotations = None;
2319        assert_eq!(
2320            Annotated::annotation(&a, "tatara.pleme.io/requestor-kind"),
2321            None,
2322        );
2323    }
2324
2325    #[test]
2326    fn annotation_on_config_map_missing_annotations_returns_none_via_trait() {
2327        // The load-bearing corner the export-worker's post-lift call
2328        // depends on: `ConfigMap` is a K8s built-in with no tatara-
2329        // owned inherent forwarder, and the receipts-owner filter
2330        // needs to route through the trait's blanket impl at
2331        // `cm.annotation(KEY)`.
2332        let cm = ConfigMap::default();
2333        // `Default::default()` produces an object with an empty
2334        // ObjectMeta whose `annotations` slot is `None` — the exact
2335        // missing-annotations corner the trait must collapse to
2336        // `None` at every key lookup, matching what the pre-lift
2337        // `cm.metadata.annotations.as_ref().and_then(...)` chain
2338        // produced.
2339        assert_eq!(Annotated::annotation(&cm, "tatara.pleme.io/process"), None,);
2340    }
2341
2342    // ── Missing key inside populated map — trait returns None ─────────
2343
2344    #[test]
2345    fn annotation_on_process_missing_key_returns_none_via_trait() {
2346        let mut p = Process::new("api", empty_process_spec());
2347        p.metadata.annotations = Some(one_annotation("other/key", "irrelevant"));
2348        assert_eq!(Annotated::annotation(&p, "tatara.pleme.io/signal"), None);
2349        assert_eq!(Annotated::annotation(&p, ""), None);
2350    }
2351
2352    #[test]
2353    fn annotation_on_config_map_missing_key_returns_none_via_trait() {
2354        let mut cm = ConfigMap::default();
2355        cm.metadata.annotations = Some(one_annotation("unrelated", "yes"));
2356        assert_eq!(Annotated::annotation(&cm, "tatara.pleme.io/process"), None,);
2357    }
2358
2359    // ── Present key — trait returns borrowed slice ────────────────────
2360
2361    #[test]
2362    fn annotation_on_process_present_key_returns_borrowed_slice_via_trait() {
2363        let mut p = Process::new("api", empty_process_spec());
2364        p.metadata.annotations = Some(one_annotation("tatara.pleme.io/signal", "SIGHUP"));
2365        assert_eq!(
2366            Annotated::annotation(&p, "tatara.pleme.io/signal"),
2367            Some("SIGHUP"),
2368        );
2369    }
2370
2371    #[test]
2372    fn annotation_on_ephemeral_pool_present_key_returns_borrowed_slice_via_trait() {
2373        let mut p = EphemeralPool::new("attest-pool", empty_pool_spec());
2374        p.metadata.annotations = Some(one_annotation("tatara.pleme.io/pool", "demo-pool"));
2375        assert_eq!(
2376            Annotated::annotation(&p, "tatara.pleme.io/pool"),
2377            Some("demo-pool"),
2378        );
2379    }
2380
2381    #[test]
2382    fn annotation_on_ephemeral_allocation_present_key_returns_borrowed_slice_via_trait() {
2383        let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2384        a.metadata.annotations = Some(one_annotation(
2385            "tatara.pleme.io/requestor-kind",
2386            "github-pr",
2387        ));
2388        assert_eq!(
2389            Annotated::annotation(&a, "tatara.pleme.io/requestor-kind"),
2390            Some("github-pr"),
2391        );
2392    }
2393
2394    #[test]
2395    fn annotation_on_config_map_present_key_returns_borrowed_slice_via_trait() {
2396        // The exact receipts-owner filter shape from
2397        // `tatara-export-worker::main`: a ConfigMap carrying the
2398        // `tatara.pleme.io/process` annotation set to the qualified
2399        // process reference `<ns>/<name>`. Pin that the trait produces
2400        // the exact borrowed slice the equality comparison against the
2401        // caller's `want.as_str()` sentinel consumes.
2402        let mut cm = ConfigMap::default();
2403        cm.metadata.annotations = Some(one_annotation(
2404            "tatara.pleme.io/process",
2405            "demo-ns/demo-app",
2406        ));
2407        assert_eq!(
2408            Annotated::annotation(&cm, "tatara.pleme.io/process"),
2409            Some("demo-ns/demo-app"),
2410        );
2411    }
2412
2413    // ── Empty-value contract: `Some("")` — the pre-lift chain never
2414    //    swallowed empty values into `None`, so the trait must not
2415    //    either. Pinned separately from the missing-slot corners.
2416
2417    #[test]
2418    fn annotation_present_key_with_empty_value_returns_some_empty_slice_via_trait() {
2419        let mut p = Process::new("api", empty_process_spec());
2420        p.metadata.annotations = Some(one_annotation("tatara.pleme.io/signal", ""));
2421        assert_eq!(
2422            Annotated::annotation(&p, "tatara.pleme.io/signal"),
2423            Some("")
2424        );
2425    }
2426
2427    // ── Byte-identical parity with the pre-lift 3-line chain ──────────
2428
2429    #[test]
2430    fn annotation_matches_pre_lift_annotations_lookup_chain_on_config_map() {
2431        // The four-corner input matrix the pre-lift
2432        // `cm.metadata.annotations.as_ref().and_then(|m| m.get(KEY))
2433        // .map(String::as_str)` chain traversed in
2434        // `tatara-export-worker::main` pre-lift. A regression that
2435        // inserted a normalization step the pre-lift chain does NOT
2436        // apply — or vice versa — surfaces here rather than as silent
2437        // drift between the substrate owner and the pre-lift consumer.
2438        const KEY: &str = "tatara.pleme.io/process";
2439        let cases: Vec<(Option<BTreeMap<String, String>>, Option<&str>)> = vec![
2440            (None, None),
2441            (Some(BTreeMap::new()), None),
2442            (Some(one_annotation("unrelated", "yes")), None),
2443            (
2444                Some(one_annotation(KEY, "demo-ns/demo-app")),
2445                Some("demo-ns/demo-app"),
2446            ),
2447            (Some(one_annotation(KEY, "")), Some("")),
2448        ];
2449        for (anns, expected) in cases {
2450            let mut cm = ConfigMap::default();
2451            cm.metadata.annotations = anns.clone();
2452
2453            let pre_lift: Option<&str> = cm
2454                .metadata
2455                .annotations
2456                .as_ref()
2457                .and_then(|m| m.get(KEY))
2458                .map(String::as_str);
2459            let via_trait = Annotated::annotation(&cm, KEY);
2460
2461            assert_eq!(
2462                pre_lift, expected,
2463                "pre-lift chain must return {expected:?} for annotations={anns:?}",
2464            );
2465            assert_eq!(
2466                via_trait, pre_lift,
2467                "trait probe must be byte-identical to pre-lift chain for annotations={anns:?}",
2468            );
2469        }
2470    }
2471
2472    // ── Cross-primitive coherence with Process's inherent forwarder ───
2473
2474    #[test]
2475    fn trait_probe_coheres_with_process_inherent_annotation_on_every_corner() {
2476        // Cross-primitive coherence pin: the trait's default and the
2477        // pre-existing `Process::annotation` inherent forwarder return
2478        // the SAME `Option<&str>` on the SAME `Process` value — a
2479        // future consolidation of the inherent onto the trait's
2480        // default cannot land any drift because this pin binds them
2481        // at every corner of the (absent, present-missing-key,
2482        // present-with-key, present-with-empty-value) input matrix.
2483        const KEY: &str = "tatara.pleme.io/signal";
2484        let cases: Vec<Option<BTreeMap<String, String>>> = vec![
2485            None,
2486            Some(BTreeMap::new()),
2487            Some(one_annotation("other/key", "irrelevant")),
2488            Some(one_annotation(KEY, "SIGHUP")),
2489            Some(one_annotation(KEY, "")),
2490        ];
2491        for anns in cases {
2492            let mut p = Process::new("api", empty_process_spec());
2493            p.metadata.annotations = anns.clone();
2494            let via_inherent = p.annotation(KEY);
2495            let via_trait = Annotated::annotation(&p, KEY);
2496            assert_eq!(
2497                via_inherent, via_trait,
2498                "Process inherent + Annotated trait must agree on annotations={anns:?}",
2499            );
2500        }
2501    }
2502
2503    // ── Inherent-preferred method resolution on Process ───────────────
2504
2505    #[test]
2506    fn dot_call_on_process_resolves_to_inherent_when_trait_in_scope() {
2507        // Rust method resolution prefers an inherent over a trait's
2508        // blanket impl, so `process.annotation(key)` with the trait in
2509        // scope still routes through the inherent — and both return
2510        // the same `Option<&str>` (verified in
2511        // `trait_probe_coheres_with_process_inherent_annotation_on_every_corner`).
2512        // This pin guards against a future refactor that removes the
2513        // inherent but leaves consumers assuming inherent-preferred
2514        // resolution — the observable output is identical either way,
2515        // so the pin locks the invariant that BOTH paths agree.
2516        let mut p = Process::new("api", empty_process_spec());
2517        p.metadata.annotations = Some(one_annotation("tatara.pleme.io/signal", "SIGHUP"));
2518        assert_eq!(p.annotation("tatara.pleme.io/signal"), Some("SIGHUP"));
2519    }
2520
2521    #[test]
2522    fn dot_call_on_ephemeral_allocation_resolves_to_trait_blanket_impl() {
2523        // The peer load-bearing corner: `alloc.annotation(key)` with
2524        // the trait in scope routes to the trait's blanket impl —
2525        // there is no inherent on `EphemeralAllocation` — and produces
2526        // the expected `Option<&str>`. The same discipline the sibling
2527        // `DeletionTombstoned` trait already established on the
2528        // tombstone axis for the SAME third CRD.
2529        let mut a = EphemeralAllocation::new("pr-42-demo", empty_alloc_spec());
2530        assert_eq!(a.annotation("tatara.pleme.io/requestor-kind"), None);
2531        a.metadata.annotations = Some(one_annotation(
2532            "tatara.pleme.io/requestor-kind",
2533            "github-pr",
2534        ));
2535        assert_eq!(
2536            a.annotation("tatara.pleme.io/requestor-kind"),
2537            Some("github-pr"),
2538        );
2539    }
2540
2541    #[test]
2542    fn dot_call_on_config_map_resolves_to_trait_blanket_impl() {
2543        // The load-bearing corner the export-worker's post-lift call
2544        // exercises: `cm.annotation(KEY)` with the trait in scope
2545        // routes to the blanket impl (ConfigMap is a K8s built-in
2546        // with no tatara-owned inherent) and produces the same
2547        // `Option<&str>` the pre-lift 3-line chain did.
2548        let mut cm = ConfigMap::default();
2549        assert_eq!(cm.annotation("tatara.pleme.io/process"), None);
2550        cm.metadata.annotations = Some(one_annotation(
2551            "tatara.pleme.io/process",
2552            "demo-ns/demo-app",
2553        ));
2554        assert_eq!(
2555            cm.annotation("tatara.pleme.io/process"),
2556            Some("demo-ns/demo-app"),
2557        );
2558    }
2559}
2560
2561#[cfg(test)]
2562mod annotations_pins {
2563    //! Pin the three newly-lifted allocator-bind annotation keys
2564    //! ([`crate::annotations::REQUESTOR`],
2565    //! [`crate::annotations::ALLOCATION`],
2566    //! [`crate::annotations::REQUESTOR_KIND`]) at their canonical
2567    //! wire-form byte-values, and pin the coherence between each
2568    //! constant and the pre-lift string literal the sibling writer +
2569    //! reader test-sites still spell verbatim.
2570    //!
2571    //! Pre-lift each of the three keys was a bare `"tatara.pleme.io/…"`
2572    //! string literal at both the writer (`tatara-pool-reconciler::
2573    //! controller_allocation::reconcile_inner`'s Bind arm) AND the
2574    //! reader-side test sites in `annotated_tests` above — six
2575    //! restatements of `REQUESTOR_KIND` alone past the ★★
2576    //! PRIME-DIRECTIVE ≥ 2 duplication threshold. Post-lift the writer
2577    //! keys on the substrate constant; these pins bind the constant's
2578    //! byte-shape so a future edit that drifted the constant (a
2579    //! typo'd suffix, an accidental `tatara.pleme.io/v2/…` migration
2580    //! landing at only the writer, an incoming rename that swapped
2581    //! two of the three keys) surfaces here rather than as silent
2582    //! operator-facing skew between the writer and the tatara-process
2583    //! reader tests that still spell the literal.
2584    //!
2585    //! Theory anchor: THEORY.md §II.1 invariant 5 (composition
2586    //! preserves proofs — the wire-form value each downstream reader
2587    //! depends on now has a compile-time pin at the substrate).
2588    use crate::annotations;
2589
2590    #[test]
2591    fn requestor_matches_pre_lift_wire_string() {
2592        assert_eq!(annotations::REQUESTOR, "tatara.pleme.io/requestor");
2593    }
2594
2595    #[test]
2596    fn allocation_matches_pre_lift_wire_string() {
2597        assert_eq!(annotations::ALLOCATION, "tatara.pleme.io/allocation");
2598    }
2599
2600    #[test]
2601    fn requestor_kind_matches_pre_lift_wire_string() {
2602        assert_eq!(
2603            annotations::REQUESTOR_KIND,
2604            "tatara.pleme.io/requestor-kind",
2605        );
2606    }
2607
2608    #[test]
2609    fn allocator_bind_axis_keys_are_distinct() {
2610        // A copy-paste that duplicated one key's value across two
2611        // slots (an oversight during the initial lift or a future
2612        // rename that merged two keys by mistake) collapses BOTH
2613        // downstream readers onto the same wire string and silently
2614        // loses one of the three axes. Pin the closed set is
2615        // partition-distinct.
2616        assert_ne!(annotations::REQUESTOR, annotations::ALLOCATION);
2617        assert_ne!(annotations::REQUESTOR, annotations::REQUESTOR_KIND);
2618        assert_ne!(annotations::ALLOCATION, annotations::REQUESTOR_KIND);
2619    }
2620
2621    #[test]
2622    fn allocator_bind_axis_keys_share_tatara_namespace() {
2623        // Every substrate-owned annotation key inhabits the
2624        // `tatara.pleme.io/` reverse-DNS namespace; a future rename
2625        // that dropped the prefix (a bare `"requestor"` key, a
2626        // typo'd `pleme.io/requestor`) would collide with an
2627        // arbitrary third-party operator's annotations on the same
2628        // Process and silently corrupt cross-consumer reads.
2629        for key in [
2630            annotations::REQUESTOR,
2631            annotations::ALLOCATION,
2632            annotations::REQUESTOR_KIND,
2633        ] {
2634            assert!(
2635                key.starts_with("tatara.pleme.io/"),
2636                "annotation key {key:?} must inhabit tatara.pleme.io/ namespace",
2637            );
2638        }
2639    }
2640
2641    // ── Pool-membership axis pins ────────────────────────────────────
2642    //
2643    // Pins the two newly-lifted pool-membership annotation keys
2644    // ([`crate::annotations::POOL`], [`crate::annotations::POOL_SLOT`])
2645    // at their canonical wire-form byte-values. Pre-lift each key was
2646    // a file-scope `const ANNOTATION_POOL / ANNOTATION_SLOT` in
2647    // `tatara-pool-reconciler::controller_pool` PLUS bare
2648    // `"tatara.pleme.io/pool"` string literals at four reader-side
2649    // test sites in this crate (in the sibling `annotated_tests` above
2650    // and in `crd.rs`'s
2651    // `annotation_composes_borrow_equality_tail_matching_pre_lift_pool`
2652    // + `annotation_returns_none_when_metadata_annotations_is_none`).
2653    // Post-lift the writer routes through the substrate constant; a
2654    // future edit that drifted the constant (a typo'd suffix, an
2655    // accidental `tatara.pleme.io/v2/pool` migration landing at only
2656    // the writer, an incoming rename that swapped POOL and POOL_SLOT)
2657    // surfaces here rather than as silent operator-facing skew
2658    // between the pool controller's writer and its own membership-
2659    // gate reader.
2660
2661    #[test]
2662    fn pool_matches_pre_lift_wire_string() {
2663        assert_eq!(annotations::POOL, "tatara.pleme.io/pool");
2664    }
2665
2666    #[test]
2667    fn pool_slot_matches_pre_lift_wire_string() {
2668        assert_eq!(annotations::POOL_SLOT, "tatara.pleme.io/pool-slot");
2669    }
2670
2671    #[test]
2672    fn pool_membership_axis_keys_are_distinct() {
2673        // A copy-paste that duplicated one key's value across both
2674        // slots (an oversight during the initial lift, or a future
2675        // rename that merged the two keys by mistake) collapses
2676        // BOTH downstream readers onto the same wire string and
2677        // silently loses the slot-index axis — the pool controller
2678        // would still find its own members via POOL but every per-
2679        // slot dispatch consumer would read the pool name where the
2680        // slot index used to sit. Pin the closed set is partition-
2681        // distinct.
2682        assert_ne!(annotations::POOL, annotations::POOL_SLOT);
2683    }
2684
2685    #[test]
2686    fn pool_membership_axis_keys_share_tatara_namespace() {
2687        // Same reverse-DNS namespace invariant the allocator-bind
2688        // axis-family enforces above — a rename that dropped the
2689        // prefix on either POOL or POOL_SLOT would collide with an
2690        // arbitrary third-party operator's annotations on the same
2691        // Process and silently corrupt every pool-membership read.
2692        for key in [annotations::POOL, annotations::POOL_SLOT] {
2693            assert!(
2694                key.starts_with("tatara.pleme.io/"),
2695                "annotation key {key:?} must inhabit tatara.pleme.io/ namespace",
2696            );
2697        }
2698    }
2699
2700    #[test]
2701    fn pool_membership_axis_keys_partition_distinct_from_allocator_bind_axis() {
2702        // Cross-family distinctness pin — the pool-membership axis
2703        // (POOL, POOL_SLOT) and the allocator-bind axis (REQUESTOR,
2704        // ALLOCATION, REQUESTOR_KIND) travel on the SAME member
2705        // Process at the SAME time (the pool controller writes POOL
2706        // + POOL_SLOT at creation; the allocator later merges
2707        // REQUESTOR / ALLOCATION / REQUESTOR_KIND onto the same
2708        // Process at Bind). A copy-paste that collapsed any axis
2709        // pair (e.g. POOL and REQUESTOR onto the same wire string)
2710        // would let one write silently overwrite the other. Pin
2711        // that every substrate-owned annotation key is unique
2712        // across the two axis-families.
2713        let pool_axis = [annotations::POOL, annotations::POOL_SLOT];
2714        let bind_axis = [
2715            annotations::REQUESTOR,
2716            annotations::ALLOCATION,
2717            annotations::REQUESTOR_KIND,
2718        ];
2719        for p in pool_axis {
2720            for b in bind_axis {
2721                assert_ne!(
2722                    p, b,
2723                    "pool-membership key {p:?} collides with allocator-bind key {b:?}",
2724                );
2725            }
2726        }
2727    }
2728
2729    // ── Release-return axis pins ─────────────────────────────────────
2730    //
2731    // Pins the newly-lifted release-return annotation key
2732    // ([`crate::annotations::RETURN_TRIGGER`]) at its canonical
2733    // wire-form byte-value. Pre-lift the key was a bare
2734    // `"tatara.pleme.io/return-trigger"` string literal at the
2735    // pool-reconciler's Release-arm stamp (`tatara-pool-reconciler::
2736    // controller_allocation::reconcile_inner`) — the ONE remaining
2737    // hand-authored annotation-key literal in the workspace's active
2738    // controllers after every sibling single-annotation key on the
2739    // same axis-family (`SIGNAL`, `RELEASED_FROM`, `POOL`, `POOL_SLOT`,
2740    // `REQUESTOR`, `ALLOCATION`, `REQUESTOR_KIND`) already routed
2741    // through a `pub const` in the substrate. Post-lift the writer
2742    // routes through the substrate constant; these pins bind the
2743    // constant's byte-shape + tatara-namespace membership + partition-
2744    // distinctness against every peer key so a future edit that
2745    // drifted the constant (a typo'd suffix, an incoming rename that
2746    // collapsed RETURN_TRIGGER onto a peer key, a `tatara.pleme.io/v2/
2747    // return-trigger` migration landing at only the writer) surfaces
2748    // HERE rather than as silent operator-facing skew between the
2749    // allocator's Release-arm stamp and every downstream reader (an
2750    // audit-trail scraper, a future pool-reconciler return-path arm,
2751    // an admission-webhook gate on the return trigger).
2752
2753    #[test]
2754    fn return_trigger_matches_pre_lift_wire_string() {
2755        assert_eq!(
2756            annotations::RETURN_TRIGGER,
2757            "tatara.pleme.io/return-trigger",
2758        );
2759    }
2760
2761    #[test]
2762    fn return_trigger_inhabits_tatara_namespace() {
2763        // Same reverse-DNS namespace invariant every sibling key on
2764        // the axis-family enforces above — a rename that dropped the
2765        // prefix on RETURN_TRIGGER would collide with an arbitrary
2766        // third-party operator's annotations on the same Process and
2767        // silently corrupt the allocator's Release-arm write.
2768        assert!(
2769            annotations::RETURN_TRIGGER.starts_with("tatara.pleme.io/"),
2770            "annotation key {:?} must inhabit tatara.pleme.io/ namespace",
2771            annotations::RETURN_TRIGGER,
2772        );
2773    }
2774
2775    #[test]
2776    fn return_trigger_is_distinct_from_every_peer_annotation_key() {
2777        // Cross-family distinctness pin — RETURN_TRIGGER travels on
2778        // the SAME member Process (at Release) that already carries
2779        // the pool-membership axis (POOL, POOL_SLOT, stamped at
2780        // creation), the allocator-bind axis (REQUESTOR, ALLOCATION,
2781        // REQUESTOR_KIND, stamped at Bind), and the
2782        // "single-annotation trigger for the next reconcile pass"
2783        // axis-family (SIGNAL, RELEASED_FROM). A copy-paste that
2784        // collapsed RETURN_TRIGGER onto any peer would let one write
2785        // silently overwrite the other. Pin the key against every
2786        // sibling substrate-owned annotation key on the workspace.
2787        for peer in [
2788            annotations::SIGNAL,
2789            annotations::RELEASED_FROM,
2790            annotations::POOL,
2791            annotations::POOL_SLOT,
2792            annotations::REQUESTOR,
2793            annotations::ALLOCATION,
2794            annotations::REQUESTOR_KIND,
2795            annotations::MANAGED_BY,
2796            annotations::PROCESS,
2797            annotations::PID,
2798            annotations::CONTENT_HASH,
2799            annotations::ATTESTATION_ROOT,
2800            annotations::GENERATION,
2801            annotations::ROLE,
2802            annotations::EXPORT_INDEX,
2803            annotations::APP,
2804            annotations::ROUTING_FORM,
2805        ] {
2806            assert_ne!(
2807                annotations::RETURN_TRIGGER,
2808                peer,
2809                "RETURN_TRIGGER key {:?} collides with peer annotation key {peer:?}",
2810                annotations::RETURN_TRIGGER,
2811            );
2812        }
2813    }
2814
2815    #[test]
2816    fn return_trigger_composes_at_annotation_body_key_slot() {
2817        // End-to-end composability pin: the substrate composer
2818        // [`crate::patch::annotation_body`] takes a `key: &str`; the
2819        // pre-lift Release-arm callsite fed a bare `"tatara.pleme.io/
2820        // return-trigger"` literal and the post-lift callsite feeds
2821        // `annotations::RETURN_TRIGGER`. Both shapes produce a JSON
2822        // merge-body whose `metadata.annotations.<KEY>` slot equals
2823        // `"true"`; pin that the substrate constant threads through
2824        // the composer verbatim so a regression that reshaped the
2825        // `annotation_body` key-slot (a case-fold pass, an unexpected
2826        // trim, a prefix-normalization step) surfaces HERE rather
2827        // than at every downstream consumer.
2828        let body = crate::patch::annotation_body(annotations::RETURN_TRIGGER, "true");
2829        assert_eq!(
2830            body["metadata"]["annotations"][annotations::RETURN_TRIGGER],
2831            "true",
2832            "annotation_body must stamp RETURN_TRIGGER verbatim at the metadata.annotations slot",
2833        );
2834        assert_eq!(
2835            body["metadata"]["annotations"]["tatara.pleme.io/return-trigger"],
2836            "true",
2837            "byte-shape parity — the pre-lift hand-authored key spelling routes through the constant to the same nested slot",
2838        );
2839    }
2840}
2841
2842// ── Lisp → ProcessSpec compile bridge ──────────────────────────────────
2843//
2844// `(defpoint NAME :k v …)` compiles to a `NamedDefinition<ProcessSpec>`.
2845// The derive on ProcessSpec handles every field via the serde Deserialize
2846// fallthrough — no hand-rolled keyword parsing needed.
2847
2848/// A named ProcessSpec as produced by `compile_source`.
2849pub type Definition = tatara_lisp::NamedDefinition<crate::crd::ProcessSpec>;
2850
2851/// Compile a Lisp source string into a list of named ProcessSpecs.
2852/// Each top-level `(defpoint NAME …)` form becomes one `Definition`.
2853pub fn compile_source(src: &str) -> tatara_lisp::Result<Vec<Definition>> {
2854    tatara_lisp::compile_named::<crate::crd::ProcessSpec>(src)
2855}
2856
2857/// Register every domain owned by this crate with the global Lisp
2858/// dispatcher. Call once per binary, typically near the top of `main`.
2859/// After this call, `tatara_lisp::domain::lookup("defpoint")` and
2860/// `lookup("defephemeral")` both resolve to the right typed compiler.
2861///
2862/// Idempotent — registering the same type twice is a no-op.
2863pub fn register_all() {
2864    tatara_lisp::domain::register::<crate::crd::ProcessSpec>();
2865    tatara_lisp::domain::register::<crate::ephemeral::EphemeralSpec>();
2866}
2867
2868#[cfg(test)]
2869mod compile_tests {
2870    use super::compile_source;
2871    use crate::classification::{ConvergencePointType, SubstrateType};
2872    use crate::compliance::VerificationPhase;
2873    use crate::spec::MustReachPhase;
2874
2875    /// The full derive-powered pipeline — no hand-rolled parsing anywhere.
2876    /// Every field travels: Lisp → Sexp → serde_json → typed ProcessSpec.
2877    #[test]
2878    fn full_processspec_round_trip_via_derive() {
2879        let src = r#"
2880            (defpoint observability-stack
2881              :identity       (:parent "seph.1")
2882              :classification (:point-type Gate
2883                               :substrate Observability
2884                               :horizon (:kind Bounded)
2885                               :calm Monotone
2886                               :data-classification Internal)
2887              :intent         (:nix (:flake-ref "github:pleme-io/k8s"
2888                                     :attribute "observability"
2889                                     :attic-cache "main"))
2890              :boundary       (:postconditions
2891                                 ((:kind KustomizationHealthy
2892                                   :params (:name "observability-stack"
2893                                            :namespace "flux-system"))
2894                                  (:kind PromQL
2895                                   :params (:query "up == 1")))
2896                               :timeout "15m")
2897              :compliance     (:baseline "fedramp-moderate"
2898                               :bindings ((:framework "nist-800-53"
2899                                           :control-id "SC-7"
2900                                           :phase AtBoundary)))
2901              :depends-on     ((:name "secret-injection" :must-reach Attested))
2902              :signals        (:sigterm-grace-seconds 480
2903                               :sighup-strategy Reconverge))
2904        "#;
2905        let defs = compile_source(src).expect("compile");
2906        assert_eq!(defs.len(), 1);
2907        let d = &defs[0];
2908        assert_eq!(d.name, "observability-stack");
2909
2910        // identity
2911        assert_eq!(d.spec.identity.parent.as_deref(), Some("seph.1"));
2912
2913        // classification (enums deserialized via symbol → string)
2914        assert_eq!(d.spec.classification.point_type, ConvergencePointType::Gate);
2915        assert_eq!(
2916            d.spec.classification.substrate,
2917            SubstrateType::Observability
2918        );
2919
2920        // intent (tagged-union with one of four options)
2921        let nix = d.spec.intent.nix.as_ref().expect("nix intent");
2922        assert_eq!(nix.flake_ref, "github:pleme-io/k8s");
2923        assert_eq!(nix.attribute, "observability");
2924        assert_eq!(nix.attic_cache.as_deref(), Some("main"));
2925
2926        // boundary (Vec<nested struct with params object>)
2927        assert_eq!(d.spec.boundary.postconditions.len(), 2);
2928        assert_eq!(d.spec.boundary.timeout.as_deref(), Some("15m"));
2929
2930        // compliance (Vec<binding with enum phase>)
2931        assert_eq!(
2932            d.spec.compliance.baseline.as_deref(),
2933            Some("fedramp-moderate")
2934        );
2935        assert_eq!(d.spec.compliance.bindings.len(), 1);
2936        assert_eq!(
2937            d.spec.compliance.bindings[0].phase,
2938            VerificationPhase::AtBoundary
2939        );
2940
2941        // depends_on (Vec<struct with enum>)
2942        assert_eq!(d.spec.depends_on.len(), 1);
2943        assert_eq!(d.spec.depends_on[0].must_reach, MustReachPhase::Attested);
2944
2945        // signals (numeric + enum defaults)
2946        assert_eq!(d.spec.signals.sigterm_grace_seconds, 480);
2947    }
2948
2949    #[test]
2950    fn missing_required_field_errors() {
2951        // `:classification` has no #[serde(default)] — omit it and compile must fail.
2952        let src = r#"(defpoint x :intent (:nix (:flake-ref "f" :attribute "a")))"#;
2953        assert!(compile_source(src).is_err());
2954    }
2955
2956    #[test]
2957    fn serde_default_fields_are_optional() {
2958        // Omit every #[serde(default)] field — compile must succeed because
2959        // the derive honors serde defaults.
2960        let src = r#"
2961            (defpoint x
2962              :classification (:point-type Transform :substrate Compute)
2963              :intent (:flux (:git-repository "g" :path ".")))
2964        "#;
2965        let defs = compile_source(src).expect("compile");
2966        assert_eq!(defs.len(), 1);
2967        let d = &defs[0];
2968        assert!(d.spec.depends_on.is_empty());
2969        assert!(d.spec.boundary.postconditions.is_empty());
2970        assert!(d.spec.compliance.bindings.is_empty());
2971        assert!(!d.spec.suspended);
2972        // Lifetime defaults to Permanent (no variant set, resolver still works).
2973        assert!(d.spec.lifetime.is_default());
2974        assert!(!d.spec.lifetime.is_ephemeral());
2975    }
2976
2977    /// Registering all process-owned domains is idempotent and resolves
2978    /// both `defpoint` (ProcessSpec) and `defephemeral` (EphemeralSpec).
2979    #[test]
2980    fn register_all_resolves_defpoint_and_defephemeral() {
2981        use tatara_lisp::domain::lookup;
2982        super::register_all();
2983        super::register_all(); // idempotent
2984        assert!(lookup("defpoint").is_some(), "defpoint must resolve");
2985        assert!(
2986            lookup("defephemeral").is_some(),
2987            "defephemeral must resolve"
2988        );
2989    }
2990
2991    /// End-to-end: a `(defpoint …)` form may carry the full ephemeral
2992    /// shape directly — `:intent (:aplicacao …)` + `:lifetime (:ephemeral …)`.
2993    /// This is what the `(defephemeral …)` sugar lowers to via `From`.
2994    #[test]
2995    fn defpoint_with_aplicacao_intent_and_ephemeral_lifetime() {
2996        use crate::intent::IntentVariant;
2997        use crate::lifetime::{LifetimeVariant, TeardownPolicy};
2998        let src = r#"
2999            (defpoint closed-loop-attest
3000              :classification (:point-type Gate :substrate Compute)
3001              :intent (:aplicacao
3002                        (:chart-ref "oci://ghcr.io/pleme-io/charts/lareira-demo-app"
3003                         :version "0.5.5"
3004                         :profile "all-in-one"
3005                         :values-overlay (:cluster (:name "ephemeral-test-01"))
3006                         :target-namespace "demo-test"))
3007              :boundary (:postconditions
3008                          ((:kind HelmReleaseReleased
3009                            :params (:name "demo-app-consolidated"
3010                                     :namespace "demo-test"))
3011                           (:kind ClosedLoopAuth
3012                            :params (:issuer (:service "demo-app-issuer" :port 8080)
3013                                     :consumer (:service "demo-app-gateway" :port 8000)
3014                                     :probeImage "ghcr.io/pleme-io/closed-loop-probe:0.1.0"))))
3015              :lifetime (:ephemeral (:ttl "1h"
3016                                     :teardown-policy OnAttested
3017                                     :max-concurrent 1)))
3018        "#;
3019        let defs = compile_source(src).expect("compile");
3020        assert_eq!(defs.len(), 1);
3021        let d = &defs[0];
3022
3023        // Aplicacao intent landed.
3024        match d.spec.intent.variant().unwrap() {
3025            IntentVariant::Aplicacao(a) => {
3026                assert_eq!(a.profile, "all-in-one");
3027                assert_eq!(a.version, "0.5.5");
3028                assert_eq!(a.target_namespace.as_deref(), Some("demo-test"));
3029                assert_eq!(a.values_overlay["cluster"]["name"], "ephemeral-test-01");
3030            }
3031            other => panic!("expected Aplicacao, got {other:?}"),
3032        }
3033
3034        // Ephemeral lifetime landed with the right teardown policy.
3035        match d.spec.lifetime.variant().unwrap() {
3036            LifetimeVariant::Ephemeral(e) => {
3037                assert_eq!(e.ttl, "1h");
3038                assert_eq!(e.teardown_policy, TeardownPolicy::OnAttested);
3039                assert_eq!(e.max_concurrent, 1);
3040            }
3041            other => panic!("expected ephemeral, got {other:?}"),
3042        }
3043
3044        // Two typed postconditions including ClosedLoopAuth.
3045        assert_eq!(d.spec.boundary.postconditions.len(), 2);
3046        assert_eq!(
3047            d.spec.boundary.postconditions[1].kind,
3048            crate::boundary::ConditionKind::ClosedLoopAuth
3049        );
3050    }
3051}
3052
3053#[cfg(test)]
3054mod placed_in_namespace_tests {
3055    //! Pin the [`PlacedInNamespace`] trait's `in_namespace` builder at
3056    //! fail-before-pass-after granularity across every corner of the
3057    //! (CRD ∈ {`Process`, `EphemeralPool`, `EphemeralAllocation`,
3058    //! `ConfigMap`}) × (input form ∈ {`&str`, `String`, `&String`})
3059    //! matrix — the three tatara-owned CRDs the trait's blanket impl
3060    //! covers today PLUS one K8s built-in (`ConfigMap`) whose sibling
3061    //! [`Annotated`] blanket already covers the same category on the
3062    //! annotation-read axis. Also pin (a) the overwrite corner where
3063    //! `.in_namespace(a).in_namespace(b)` binds `b`, so a future
3064    //! consumer that chains two stamps in one composition never sees
3065    //! stale semantics, and (b) the byte-identical parity corner with
3066    //! the pre-lift 3-line body of the per-CRD `EphemeralPool::new_in`
3067    //! and `EphemeralAllocation::new_in` composers post-forwarding —
3068    //! `<CRD>::new_in(name, ns, spec)` must yield a value structurally
3069    //! identical to `<CRD>::new(name, spec).in_namespace(ns)` on every
3070    //! metadata slot the derive stamps.
3071    use super::PlacedInNamespace;
3072    use crate::allocation::{AllocationSpec, EphemeralAllocation, Requestor};
3073    use crate::crd::{Process, ProcessSpec};
3074    use crate::pool::{EphemeralPool, PoolSpec};
3075    use k8s_openapi::api::core::v1::ConfigMap;
3076    use kube::api::ObjectMeta;
3077
3078    fn empty_process_spec() -> ProcessSpec {
3079        ProcessSpec::gate_compute_defaults()
3080    }
3081
3082    fn empty_pool_spec() -> PoolSpec {
3083        PoolSpec {
3084            desired_size: 1,
3085            ..PoolSpec::with_template(crate::ephemeral::EphemeralSpec {
3086                aplicacao: crate::intent::AplicacaoIntent::chart_only("oci://x", "1"),
3087                ttl: "1h".into(),
3088                teardown: crate::lifetime::TeardownPolicy::Always,
3089                max_concurrent: 0,
3090                postconditions: vec![],
3091                preconditions: vec![],
3092                verify_timeout: None,
3093                classification: None,
3094                parent: None,
3095                exports: vec![],
3096                routing: None,
3097            })
3098        }
3099    }
3100
3101    fn empty_alloc_spec() -> AllocationSpec {
3102        AllocationSpec::requestor_only(Requestor::kind_only("github-pr"))
3103    }
3104
3105    #[test]
3106    fn in_namespace_on_process_stamps_borrowed_str() {
3107        let p = Process::new("api", empty_process_spec()).in_namespace("prod");
3108        assert_eq!(p.metadata.namespace.as_deref(), Some("prod"));
3109    }
3110
3111    #[test]
3112    fn in_namespace_on_process_stamps_owned_string() {
3113        let ns: String = "prod".into();
3114        let p = Process::new("api", empty_process_spec()).in_namespace(ns);
3115        assert_eq!(p.metadata.namespace.as_deref(), Some("prod"));
3116    }
3117
3118    #[test]
3119    fn in_namespace_on_process_stamps_string_ref() {
3120        let ns: String = "prod".into();
3121        let p = Process::new("api", empty_process_spec()).in_namespace(&ns);
3122        assert_eq!(p.metadata.namespace.as_deref(), Some("prod"));
3123    }
3124
3125    #[test]
3126    fn in_namespace_on_ephemeral_pool_stamps_borrowed_str() {
3127        let p = EphemeralPool::new("pool-1", empty_pool_spec()).in_namespace("pools");
3128        assert_eq!(p.metadata.namespace.as_deref(), Some("pools"));
3129    }
3130
3131    #[test]
3132    fn in_namespace_on_ephemeral_allocation_stamps_borrowed_str() {
3133        let a = EphemeralAllocation::new("alloc-1", empty_alloc_spec()).in_namespace("pools");
3134        assert_eq!(a.metadata.namespace.as_deref(), Some("pools"));
3135    }
3136
3137    #[test]
3138    fn in_namespace_on_configmap_via_blanket_stamps_ns() {
3139        let cm = ConfigMap {
3140            metadata: ObjectMeta {
3141                name: Some("cm-1".into()),
3142                ..Default::default()
3143            },
3144            ..Default::default()
3145        };
3146        let cm = cm.in_namespace("demo");
3147        assert_eq!(cm.metadata.namespace.as_deref(), Some("demo"));
3148    }
3149
3150    #[test]
3151    fn in_namespace_second_call_overwrites_first() {
3152        let p = Process::new("api", empty_process_spec())
3153            .in_namespace("staging")
3154            .in_namespace("prod");
3155        assert_eq!(p.metadata.namespace.as_deref(), Some("prod"));
3156    }
3157
3158    #[test]
3159    fn in_namespace_preserves_name_and_spec_untouched() {
3160        // Byte-identical parity with the pre-lift two-line pattern:
3161        // only `metadata.namespace` moves; `metadata.name` + `spec`
3162        // stay at the values the derive-supplied `::new` stamped.
3163        // Serialize both `spec` sides through serde_json so we can
3164        // pin equality without requiring `PartialEq` on `ProcessSpec`.
3165        let p = Process::new("api", empty_process_spec()).in_namespace("prod");
3166        assert_eq!(p.metadata.name.as_deref(), Some("api"));
3167        assert_eq!(p.metadata.namespace.as_deref(), Some("prod"));
3168        let expected = serde_json::to_value(empty_process_spec()).unwrap();
3169        let actual = serde_json::to_value(&p.spec).unwrap();
3170        assert_eq!(actual, expected);
3171    }
3172
3173    #[test]
3174    fn pool_new_in_forwarder_matches_trait_form() {
3175        // Cross-composer coherence witness — the per-CRD
3176        // `EphemeralPool::new_in` forwarder must produce a value
3177        // structurally identical to what `Process::new(...).in_namespace(...)`
3178        // does on the same axis. Serialize both sides through
3179        // serde_json so any drift between the forwarding form and a
3180        // direct trait-call materializes at this pin.
3181        let via_new_in = EphemeralPool::new_in("pool-x", "pools", empty_pool_spec());
3182        let via_trait = EphemeralPool::new("pool-x", empty_pool_spec()).in_namespace("pools");
3183        assert_eq!(
3184            serde_json::to_value(&via_new_in).unwrap(),
3185            serde_json::to_value(&via_trait).unwrap(),
3186        );
3187    }
3188
3189    #[test]
3190    fn allocation_new_in_forwarder_matches_trait_form() {
3191        let via_new_in = EphemeralAllocation::new_in("alloc-x", "pools", empty_alloc_spec());
3192        let via_trait =
3193            EphemeralAllocation::new("alloc-x", empty_alloc_spec()).in_namespace("pools");
3194        assert_eq!(
3195            serde_json::to_value(&via_new_in).unwrap(),
3196            serde_json::to_value(&via_trait).unwrap(),
3197        );
3198    }
3199}