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tatara_process/
compliance.rs

1//! Compliance bindings — CRD-facing with bridges to `tatara_core::compliance_binding`.
2
3use schemars::JsonSchema;
4use serde::{Deserialize, Serialize};
5
6use tatara_core::domain::compliance_binding as core;
7
8use crate::phase::ProcessPhase;
9
10/// Compliance section of `ProcessSpec`.
11#[derive(Clone, Debug, Default, Serialize, Deserialize, JsonSchema)]
12#[serde(rename_all = "camelCase")]
13pub struct ComplianceSpec {
14    /// Canonical baseline (e.g., `fedramp-moderate`, `cis-k8s-v1.8`, `soc2`, `pci-dss`).
15    /// Semantically the `meet` of all `bindings`.
16    #[serde(default, skip_serializing_if = "Option::is_none")]
17    pub baseline: Option<String>,
18    /// Individual control bindings.
19    #[serde(default)]
20    pub bindings: Vec<ComplianceBinding>,
21    /// Allow the reconciler to invoke remediation hooks on violations.
22    #[serde(default)]
23    pub auto_remediate: bool,
24}
25
26#[derive(Clone, Debug, Serialize, Deserialize, JsonSchema)]
27#[serde(rename_all = "camelCase")]
28pub struct ComplianceBinding {
29    /// Framework name: `nist-800-53`, `cis-k8s-v1.8`, `fedramp-moderate`, `soc2`, `pci-dss`.
30    pub framework: String,
31    /// Control id within the framework (e.g., `SC-7`, `5.1.1`).
32    pub control_id: String,
33    /// When the binding is verified.
34    #[serde(default)]
35    pub phase: VerificationPhase,
36    /// Optional human description.
37    #[serde(default, skip_serializing_if = "Option::is_none")]
38    pub description: Option<String>,
39}
40
41/// When a ComplianceBinding is evaluated.
42#[derive(
43    Clone,
44    Copy,
45    Debug,
46    PartialEq,
47    Eq,
48    Hash,
49    Serialize,
50    Deserialize,
51    JsonSchema,
52    Default,
53    tatara_closed_set::DeriveClosedSet,
54)]
55#[serde(rename_all = "PascalCase")]
56#[closed_set(via = "as_str", generate_unknown, display)]
57pub enum VerificationPhase {
58    /// Before Execing — fails reconciliation if violated.
59    PlanTime,
60    /// During VERIFY — gates Running → Attested.
61    #[default]
62    AtBoundary,
63    /// After Attested — continuous audit, emits events on violation.
64    PostConvergence,
65}
66
67impl VerificationPhase {
68    /// The closed set of verification phases — single source of truth that
69    /// drives the `as_str` / Display / `FromStr` triad and the typed
70    /// `gates_phase` projection over [`ProcessPhase`]. Adding a fourth
71    /// variant lands at one `ALL` entry + one `as_str` arm + one
72    /// `gates_phase` arm — exhaustively checked by the compiler (the
73    /// `[Self; 3]` array literal forces the arity).
74    ///
75    /// Sibling closed-set lifts on the same `ProcessSpec` axis:
76    /// [`crate::signal::SighupStrategy::ALL`],
77    /// [`crate::spec::MustReachPhase::ALL`],
78    /// [`crate::intent::WorkloadKind::ALL`],
79    /// [`crate::export::ReportFormat::ALL`],
80    /// [`crate::encapsulates::EncapsulationMode::ALL`],
81    /// [`crate::export::ExportTrigger::ALL`],
82    /// [`crate::lifetime::TeardownPolicy::ALL`],
83    /// [`crate::boundary::ConditionKind::ALL`],
84    /// [`crate::lifetime::LifetimeKind::ALL`],
85    /// [`crate::intent::IntentKind::ALL`],
86    /// [`crate::phase::ProcessPhase::ALL`],
87    /// [`crate::signal::ProcessSignal::ALL`].
88    pub const ALL: [Self; 3] = [Self::PlanTime, Self::AtBoundary, Self::PostConvergence];
89
90    /// Canonical PascalCase wire-format projection — matches the serde
91    /// `rename_all = "PascalCase"` output verbatim AND the CRD `enum:`
92    /// enumeration the reconciler stamps on the
93    /// `processes.tatara.pleme.io` schema. Pinned by
94    /// `verification_phase_as_str_matches_serde` so a variant rename
95    /// can't drift between the typed surface, the CRD enum, and the
96    /// YAML wire format at one site.
97    pub const fn as_str(self) -> &'static str {
98        match self {
99            Self::PlanTime => "PlanTime",
100            Self::AtBoundary => "AtBoundary",
101            Self::PostConvergence => "PostConvergence",
102        }
103    }
104
105    /// Typed `const fn` projection onto the [`ProcessPhase`] gate the
106    /// binding's verification blocks when it fails. Each variant maps
107    /// to the earliest phase whose entry the binding can prevent:
108    ///
109    /// - `PlanTime` → `Some(Execing)` — the RENDER phase is what
110    ///   PlanTime gates ("Before Execing — fails reconciliation if
111    ///   violated"); a violated PlanTime control prevents the
112    ///   `Forking → Execing` transition.
113    /// - `AtBoundary` → `Some(Attested)` — the VERIFY phase ("gates
114    ///   Running → Attested"); a violated AtBoundary control prevents
115    ///   the `Running → Attested` transition.
116    /// - `PostConvergence` → `None` — the binding is non-blocking
117    ///   ("After Attested — continuous audit, emits events on
118    ///   violation"); it never gates a transition.
119    ///
120    /// Single source of truth for the future reconciler control-plane
121    /// compliance evaluator's "which transition would a failing
122    /// binding block?" decision; pinned by
123    /// `verification_phase_gates_phase_truth_table`. Closed-set match
124    /// (not `matches!`) so adding a fourth variant triggers the
125    /// compiler's exhaustiveness check at this site rather than
126    /// silently defaulting to either group.
127    pub const fn gates_phase(self) -> Option<ProcessPhase> {
128        match self {
129            Self::PlanTime => Some(ProcessPhase::Execing),
130            Self::AtBoundary => Some(ProcessPhase::Attested),
131            Self::PostConvergence => None,
132        }
133    }
134}
135
136// `impl FromStr for VerificationPhase` +
137// `impl tatara_lisp::ClosedSet for VerificationPhase` +
138// `impl fmt::Display for VerificationPhase` +
139// `pub struct UnknownVerificationPhase(pub String)` are all
140// generated by `#[derive(tatara_closed_set::DeriveClosedSet)]` +
141// `#[closed_set(via = "as_str", generate_unknown, display)]` on the
142// enum declaration above. `label` delegates to the inherent
143// `VerificationPhase::as_str` (which matches the serde
144// `rename_all = "PascalCase"` projection AND the CRD `enum:`
145// enumeration verbatim — pinned by
146// `verification_phase_as_str_matches_serde`). The auto-derived
147// carrier label "verification phase" matches the prior hand-rolled
148// `#[error("unknown verification phase: {0}")]` annotation
149// byte-for-byte. Symmetric to every other `#[derive(DeriveClosedSet)]`
150// implementor across the crate.
151
152impl From<VerificationPhase> for core::VerificationPhase {
153    fn from(v: VerificationPhase) -> Self {
154        match v {
155            VerificationPhase::PlanTime => Self::PlanTime,
156            VerificationPhase::AtBoundary => Self::AtBoundary,
157            VerificationPhase::PostConvergence => Self::PostConvergence,
158        }
159    }
160}
161
162impl From<core::VerificationPhase> for VerificationPhase {
163    fn from(v: core::VerificationPhase) -> Self {
164        use core::VerificationPhase as C;
165        match v {
166            C::PlanTime => Self::PlanTime,
167            C::AtBoundary => Self::AtBoundary,
168            C::PostConvergence => Self::PostConvergence,
169        }
170    }
171}
172
173impl ComplianceBinding {
174    pub fn to_core(&self) -> core::ComplianceControl {
175        core::ComplianceControl {
176            framework: self.framework.clone(),
177            control_id: self.control_id.clone(),
178            description: self.description.clone().unwrap_or_default(),
179        }
180    }
181}
182
183#[cfg(test)]
184mod tests {
185    use super::*;
186
187    #[test]
188    fn default_phase_is_at_boundary() {
189        assert_eq!(VerificationPhase::default(), VerificationPhase::AtBoundary);
190    }
191
192    #[test]
193    fn binding_roundtrip_to_core() {
194        let b = ComplianceBinding {
195            framework: "nist-800-53".into(),
196            control_id: "SC-7".into(),
197            phase: VerificationPhase::AtBoundary,
198            description: Some("boundary protection".into()),
199        };
200        let c = b.to_core();
201        assert_eq!(c.framework, "nist-800-53");
202        assert_eq!(c.control_id, "SC-7");
203    }
204
205    // ── closed-set algebra contracts (ALL × as_str × FromStr × gates_phase) ──
206
207    /// Structural well-formedness of [`VerificationPhase`] as a
208    /// [`tatara_lisp::ClosedSet`] implementor — the workspace-wide
209    /// testkit lift that pins all three structural invariants
210    /// (`ALL` is non-empty, every variant round-trips through
211    /// `label ↔ parse_label`, labels are pairwise distinct, `""` is
212    /// outside the closed set) at ONE call site. Replaces the
213    /// hand-derived `verification_phase_all_is_unique_and_complete` +
214    /// `verification_phase_roundtrip_via_as_str` + the empty-input
215    /// arm of the per-implementor unknown-error test. `FromStr`
216    /// delegates to `<Self as tatara_closed_set::ClosedSet>::parse_label`,
217    /// so this helper exercises the same code path the reconciler
218    /// hits when parsing a CRD `enum:`-validated value back to the
219    /// typed phase.
220    #[test]
221    fn verification_phase_is_well_formed_closed_set() {
222        tatara_closed_set::assert_closed_set_well_formed::<VerificationPhase>();
223    }
224
225    /// CANONICAL-KEY CONTRACT: `as_str` matches serde's PascalCase
226    /// output verbatim for every variant. A future variant rename
227    /// (or an `as_str` arm typo) lands here at one site, instead of
228    /// drifting between the typed surface and the YAML wire format
229    /// the reconciler / operator both read. NOT lifted into the
230    /// `ClosedSet` testkit — `serde_json` is NOT a `tatara-lisp`
231    /// dependency, and per-implementor serde-shape choices (PascalCase
232    /// for CRD enums, snake_case for camelCase carriers, lowercase
233    /// for Lisp keyword projections) make a generic helper a
234    /// category error.
235    #[test]
236    fn verification_phase_as_str_matches_serde() {
237        for phase in VerificationPhase::ALL {
238            let serialized = serde_json::to_string(&phase).expect("serialize");
239            let unquoted = serialized
240                .trim_start_matches('"')
241                .trim_end_matches('"')
242                .to_string();
243            assert_eq!(
244                unquoted,
245                phase.as_str(),
246                "as_str drift for {phase:?}: as_str={} serde={unquoted}",
247                phase.as_str()
248            );
249        }
250    }
251
252    /// The Display impl IS `as_str` — pinning this lets future callers
253    /// reach for either projection without drift.
254    #[test]
255    fn verification_phase_display_matches_as_str() {
256        for phase in VerificationPhase::ALL {
257            assert_eq!(phase.to_string(), phase.as_str());
258        }
259    }
260
261    /// `FromStr` rejects domain-specific non-canonical inputs and
262    /// the error echoes the input VERBATIM so the operator-facing
263    /// diagnostic carries the offending value. Kept per-implementor
264    /// because the verbatim-payload contract is a property of the
265    /// per-enum `Unknown<X>(pub String)` newtype, not of the trait's
266    /// structural surface. (The empty-input arm is now lifted into
267    /// `verification_phase_is_well_formed_closed_set`; the
268    /// case-drifted / hyphenated / extinct-variant arms stay here as
269    /// they're representative non-canonical inputs the operator
270    /// might supply.)
271    #[test]
272    fn unknown_verification_phase_errors() {
273        use std::str::FromStr;
274        for bad in [
275            "plantime",
276            "ATBOUNDARY",
277            "Plan-Time",
278            "post_convergence",
279            "Continuous",
280        ] {
281            let err = VerificationPhase::from_str(bad).unwrap_err();
282            assert_eq!(err.0, bad, "error payload should echo input verbatim");
283        }
284    }
285
286    /// TRUTH-TABLE CONTRACT: `gates_phase` agrees with the documented
287    /// per-variant codomain (the phase whose entry a violated binding
288    /// blocks, or `None` for non-blocking continuous-audit phases).
289    #[test]
290    fn verification_phase_gates_phase_truth_table() {
291        assert_eq!(
292            VerificationPhase::PlanTime.gates_phase(),
293            Some(ProcessPhase::Execing)
294        );
295        assert_eq!(
296            VerificationPhase::AtBoundary.gates_phase(),
297            Some(ProcessPhase::Attested)
298        );
299        assert_eq!(VerificationPhase::PostConvergence.gates_phase(), None);
300    }
301
302    /// SUBSET CONTRACT: every `Some(target)` `gates_phase` projects to
303    /// is a phase reachable as the destination of some legal
304    /// `ProcessPhase::can_transition_to` edge. A future variant that
305    /// projected to a `ProcessPhase` no transition leads into would
306    /// FAIL here, forcing the author to either pick a real gate phase
307    /// or extend `can_transition_to` deliberately. The reachability
308    /// check is the cross-enum coherence proof — the typed-phase
309    /// state machine and the verification-phase gate algebra agree on
310    /// which phases are gateable.
311    #[test]
312    fn verification_phase_gates_phase_projects_to_reachable_phases() {
313        for vp in VerificationPhase::ALL {
314            if let Some(target) = vp.gates_phase() {
315                let reachable = ProcessPhase::ALL
316                    .into_iter()
317                    .any(|src| src != target && src.can_transition_to(target));
318                assert!(
319                    reachable,
320                    "{vp:?}.gates_phase() = Some({target:?}) but no legal transition lands on {target:?}",
321                );
322            }
323        }
324    }
325
326    /// INJECTIVITY CONTRACT: distinct `Some` variants of `gates_phase`
327    /// project to distinct `ProcessPhase`s. Pairing this with the
328    /// subset contract above forces a future variant to land on a
329    /// fresh gateable phase (or project to `None` and be a deliberate
330    /// non-blocking auditor).
331    #[test]
332    fn verification_phase_gates_phase_is_injective() {
333        let projections: Vec<ProcessPhase> = VerificationPhase::ALL
334            .into_iter()
335            .filter_map(VerificationPhase::gates_phase)
336            .collect();
337        let unique: std::collections::HashSet<_> = projections.iter().copied().collect();
338        assert_eq!(
339            projections.len(),
340            unique.len(),
341            "gates_phase projection is not injective: {projections:?}",
342        );
343    }
344}