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areev_loop/
substrate.rs

1//! The `OmsSubstrate` trait — the engine's only contact with a store. It is
2//! defined in terms of the OMS Level-2 protocol (CAL text ↔ JSON rows, grain
3//! get/put/supersede) plus curated typed reads the built-in analyzers use.
4//! Areev is the first substrate; the in-repo `ReferenceSubstrate` lets engine
5//! CI run with zero Areev, and doubles as the third-party conformance kit.
6
7use crate::error::Result;
8use crate::model::GrainRecord;
9use serde_json::{Map, Value};
10
11/// Optional substrate capabilities, declared once and matched against each
12/// analyzer manifest's `requires` list. A missing capability degrades an
13/// analyzer to an activation-ladder entry, never a silent no-op (§8).
14#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
15pub struct Capabilities {
16    /// Multiple concurrent heads per entity are tracked and queryable
17    /// (fork surfacing needs this).
18    pub forks: bool,
19    /// A telemetry sidecar records recall/access history.
20    pub telemetry: bool,
21    /// An embedder is installed (upgrades T0 analyzers to T1).
22    pub embeddings: bool,
23    /// Workflow plan grains can be structurally validated
24    /// ([`SubstrateRead::validate_plan`]). Without it a `plan_revision`
25    /// proposal stays advisory: the engine will not stamp an executable edit
26    /// to a plan it cannot have checked for reachability and cycle bounds.
27    pub plans: bool,
28    /// Executable tool code is modelled — the §7.4 blob seam plus
29    /// [`SubstrateRead::tool_evalset`]. Without it a `code_revision` proposal
30    /// stays advisory, because Rule E1's pin cannot be resolved.
31    pub code: bool,
32}
33
34/// Read filters for curated grain reads.
35#[derive(Debug, Clone, Copy)]
36pub struct ReadOpts {
37    /// When true (default), only live (non-superseded) grains are returned.
38    pub live_only: bool,
39    /// When set, only grains created at or after this epoch-ms are returned
40    /// (the incremental watermark scan, §8).
41    pub since_ms: Option<i64>,
42}
43
44impl Default for ReadOpts {
45    fn default() -> Self {
46        ReadOpts {
47            live_only: true,
48            since_ms: None,
49        }
50    }
51}
52
53/// A grain to be written by an apply. `derived_from` and other provenance go
54/// in `fields`; the substrate computes the content address.
55#[derive(Debug, Clone, PartialEq)]
56pub struct GrainSpec {
57    pub grain_type: String,
58    pub namespace: String,
59    pub fields: Map<String, Value>,
60}
61
62impl GrainSpec {
63    pub fn new(grain_type: impl Into<String>, namespace: impl Into<String>) -> Self {
64        GrainSpec {
65            grain_type: grain_type.into(),
66            namespace: namespace.into(),
67            fields: Map::new(),
68        }
69    }
70
71    pub fn with_field(mut self, key: impl Into<String>, value: impl Into<Value>) -> Self {
72        self.fields.insert(key.into(), value.into());
73        self
74    }
75}
76
77/// One entity holding more than one live head (fork surfacing input).
78#[derive(Debug, Clone, PartialEq)]
79pub struct HeadGroup {
80    /// Entity identity, e.g. `"caller/john"` (namespace-qualified subject).
81    pub entity: String,
82    /// The competing head hashes.
83    pub heads: Vec<String>,
84}
85
86/// A snapshot of the recall-telemetry sidecar's rollups (§8). Telemetry-fed
87/// analyzers (`cold_grains`, `coverage_gap`, `budget_pressure`) read this via
88/// [`crate::analyzer::AnalyzeCtx::telemetry`]. It is an owned snapshot, not a
89/// live handle — analyzers stay read-only and can't reach the sidecar. A
90/// substrate without a sidecar returns `None`, so the analyzer degrades to an
91/// activation-ladder entry rather than firing on absent evidence.
92#[derive(Debug, Clone, Default, PartialEq)]
93pub struct TelemetryView {
94    /// Per-grain recall rollups. A grain **absent** here has never been
95    /// recalled (the `cold_grains` signal).
96    pub access: Vec<GrainAccess>,
97    /// Per-question rollups over free-text recalls (the `coverage_gap` signal).
98    pub queries: Vec<QueryUsage>,
99    /// Assembly-budget pressure rollup (the `budget_pressure` signal).
100    pub budget: BudgetUsage,
101}
102
103/// How often one grain has been surfaced by recall.
104#[derive(Debug, Clone, PartialEq)]
105pub struct GrainAccess {
106    pub hash: String,
107    pub recall_count: i64,
108    pub last_ms: i64,
109}
110
111/// How a recurring recall question has fared.
112#[derive(Debug, Clone, PartialEq)]
113pub struct QueryUsage {
114    /// A short human-readable sample of the query intent.
115    pub sample: String,
116    pub run_count: i64,
117    /// How many of those runs returned nothing — the coverage-gap signal.
118    pub empty_count: i64,
119    pub sum_results: i64,
120    pub last_ms: i64,
121}
122
123/// Assembly-budget pressure rollup.
124#[derive(Debug, Clone, Default, PartialEq)]
125pub struct BudgetUsage {
126    pub sample_count: i64,
127    pub overflow_count: i64,
128}
129
130/// The read-only slice of the substrate. Analyzers receive this (via
131/// `AnalyzeCtx`) and nothing else — the trust floor's "analyzers execute
132/// read-only" is enforced by the type system: a `&dyn SubstrateRead` cannot
133/// reach any mutating method. It is object-safe (no generics) so
134/// `builtin_analyzers()` can hand out `Box<dyn Analyzer>`.
135pub trait SubstrateRead {
136    /// Declared optional capabilities.
137    fn capabilities(&self) -> Capabilities;
138
139    /// Curated read: all grains of one OMS type, optionally namespace-scoped
140    /// and watermark/liveness filtered.
141    fn grains_of_type(
142        &self,
143        grain_type: &str,
144        namespace: Option<&str>,
145        opts: ReadOpts,
146    ) -> Result<Vec<GrainRecord>>;
147
148    /// Fetch one grain by content address.
149    fn grain(&self, hash: &str) -> Result<Option<GrainRecord>>;
150
151    /// Entities with more than one live head. Requires the `forks` capability;
152    /// the default impl reports it missing so non-fork substrates degrade
153    /// cleanly rather than pretend.
154    fn heads(&self, _namespace: Option<&str>) -> Result<Vec<HeadGroup>> {
155        Err(crate::error::Error::CapabilityMissing("forks".into()))
156    }
157
158    /// A snapshot of the recall-telemetry rollups (§8). Requires the
159    /// `telemetry` capability; the default returns `None` so substrates without
160    /// a sidecar degrade cleanly. `namespace` scopes the snapshot when set.
161    fn telemetry(&self, _namespace: Option<&str>) -> Result<Option<TelemetryView>> {
162        Ok(None)
163    }
164
165    /// Structurally validate a candidate Workflow grain body — the same
166    /// checks the runtime would run before executing it (unique and reachable
167    /// nodes, conditions parse, every cycle bounded). The engine calls this
168    /// before it will stamp a `plan_revision` as executable, so a proposal
169    /// that would produce an unrunnable plan never reaches a reviewer as
170    /// something they could apply.
171    ///
172    /// This is deliberately the substrate's job: the engine owns no plan
173    /// grammar, exactly as it owns no CAL grammar (see [`OmsSubstrate::validate_cal`]).
174    /// Requires the `plans` capability; the default reports it missing so a
175    /// substrate that does not model workflows degrades the proposal to
176    /// advisory rather than pretending to have checked it.
177    fn validate_plan(&self, _workflow: &Value) -> Result<()> {
178        Err(crate::error::Error::CapabilityMissing("plans".into()))
179    }
180
181    /// The evalset a code revision of `tool` must be gated against (Rule E1's
182    /// pin). Returns `Ok(None)` when the tool declares none, which makes a
183    /// `code_revision` for it advisory — an unpinnable revision is one no
184    /// gating run could ever satisfy.
185    ///
186    /// Resolved from the substrate and never from the model: a proposer that
187    /// could name its own grader is not gated.
188    fn tool_evalset(&self, _tool: &str) -> Result<Option<String>> {
189        Ok(None)
190    }
191}
192
193/// The full store protocol the engine binds to: reads (via the supertrait)
194/// plus governed writes, CAL, and state persistence. All methods are fallible;
195/// a substrate fault surfaces as [`crate::error::Error::Substrate`].
196pub trait OmsSubstrate: SubstrateRead {
197    /// Append a new grain; returns its content address.
198    fn put_grain(&mut self, spec: &GrainSpec) -> Result<String>;
199
200    /// Supersede `target_hash` with a new grain carrying `justification`;
201    /// returns the new grain's address. Atomic and distinct from put
202    /// (OMS §28.4).
203    fn supersede(
204        &mut self,
205        target_hash: &str,
206        spec: &GrainSpec,
207        justification: &str,
208    ) -> Result<String>;
209
210    /// Index-layer retraction (`verification_status = retracted`) — the
211    /// inverse of an applied ADD, used by rollback. Not destructive (the grain
212    /// stays content-addressed; only the index marks it retracted). The
213    /// default reports it unsupported so substrates opt in.
214    fn retract(&mut self, hash: &str, reason: &str) -> Result<()> {
215        Err(crate::error::Error::Substrate(format!(
216            "retract not supported by this substrate ({hash}: {reason})"
217        )))
218    }
219
220    /// Store an opaque blob (candidate tool CODE, evalset payloads) in the
221    /// substrate's CAS, returning its address. §7.4's blob seam —
222    /// CAPABILITY-GATED: the default refuses, so a loop can only carry code
223    /// on substrates that explicitly opt in. Code enters the substrate only
224    /// through this seam or an authored add — never from a git mirror.
225    fn put_blob(&mut self, bytes: &[u8]) -> Result<String> {
226        let _ = bytes;
227        Err(crate::error::Error::Substrate(
228            "put_blob not supported by this substrate (code-carrying loops \
229             need an opted-in blob seam)"
230            .into(),
231        ))
232    }
233
234    /// Fetch a blob by the address `put_blob` returned. Same capability gate.
235    fn get_blob(&mut self, address: &str) -> Result<Vec<u8>> {
236        Err(crate::error::Error::Substrate(format!(
237            "get_blob not supported by this substrate ({address})"
238        )))
239    }
240
241    /// Execute CAL text, returning result rows as JSON. Used to regenerate
242    /// evidence sets (`evidence_query`) and to apply `proposal_cal`. A
243    /// substrate MAY reject CAL it cannot run with [`Error::CalUnsupported`].
244    ///
245    /// [`Error::CalUnsupported`]: crate::error::Error::CalUnsupported
246    fn execute_cal(&mut self, cal: &str) -> Result<Vec<Value>>;
247
248    /// The CAL that would restore the CURRENT definition named by a
249    /// `DEFINE QUERY` / `DEFINE TEMPLATE` statement — the rollback inverse,
250    /// captured before the definition is replaced.
251    ///
252    /// Returns `Ok(None)` when the substrate cannot produce one, which the
253    /// engine treats as "this definition rewrite is not applicable": a
254    /// definition change with no recorded inverse is one that `ROLLBACK`
255    /// would silently fail to undo, and a rollback that reports success
256    /// without restoring anything is worse than a refusal.
257    ///
258    /// The default implementation returns `None`, so a substrate that does
259    /// not model saved definitions simply cannot execute definition
260    /// rewrites — fail closed, no opt-out needed.
261    fn definition_inverse(&self, _statement: &str) -> Result<Option<String>> {
262        Ok(None)
263    }
264
265    /// Validate a CAL batch without executing it (statement classification,
266    /// destructive-op detection). Delegated to the substrate — the engine
267    /// contains a CAL *writer*, never a parser.
268    fn validate_cal(&self, cal: &str) -> Result<()>;
269
270    /// Load the persisted loop state blob (config + watermarks/cooldowns).
271    /// Returns `Value::Null` when nothing has been stored yet.
272    fn load_state(&self) -> Result<Value>;
273
274    /// Persist the loop state blob (a file-truth, so it travels with the
275    /// file on sync).
276    fn store_state(&mut self, state: &Value) -> Result<()>;
277}