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lex_vcs/
operation.rs

1//! The `Operation` enum + `OperationRecord` (operation plus its
2//! causal parents and resulting `OpId`).
3//!
4//! See `lib.rs` for the design context and #129 for the issue.
5
6use indexmap::IndexSet;
7use serde::{Deserialize, Serialize};
8use std::collections::{BTreeMap, BTreeSet};
9
10use crate::canonical;
11
12/// Signature identity of a function or type — the part that stays
13/// stable across body edits. Wraps the same string identity
14/// `lex-store` uses; we keep it as `String` here so this crate has
15/// no dependency on `lex-store`'s internals.
16pub type SigId = String;
17
18/// Content hash of a single stage (function body, type def, ...).
19/// Same string identity as the file under `<root>/stages/<SigId>/
20/// implementations/<StageId>.ast.json`.
21pub type StageId = String;
22
23/// Identity of an operation. `(kind, payload, parents)` SHA-256 in
24/// lowercase hex (64 chars). Two operations with identical payloads
25/// and parent sets produce identical `OpId`s; the store dedupes on
26/// this.
27pub type OpId = String;
28
29/// Sorted set of effect-kind strings (e.g. `["fs_write", "io"]`).
30/// `BTreeSet` so the canonical form is order-independent for
31/// hashing.
32pub type EffectSet = BTreeSet<String>;
33
34/// Reference to an imported module — either a stdlib name
35/// (`std.io`) or a local path (`./helpers`). Kept as a string so
36/// this crate doesn't pull in `lex-syntax`'s parser.
37pub type ModuleRef = String;
38
39/// The alias a module binds to when the import writes no explicit
40/// `as` — the module reference's last path segment, splitting on
41/// either `.` (stdlib, `std.sql` → `sql`) or `/` (local/package,
42/// `./error` → `error`, `lex-web/lib` → `lib`). Lex actually requires
43/// an explicit alias on every import, so this is not a language
44/// default; it is the convention `AddImport` uses to decide when an
45/// alias can be omitted from the op (keeping the `OpId` stable) and
46/// `export-git` uses to reconstruct it. The two MUST agree, so both
47/// call this one function.
48pub fn default_import_alias(module: &str) -> String {
49    module
50        .rsplit(['.', '/'])
51        .find(|seg| !seg.is_empty())
52        .unwrap_or(module)
53        .to_string()
54}
55
56/// Version tag for the operation canonical form (#244).
57///
58/// The pre-image bytes hashed to derive an `OpId` are not stable
59/// across schema evolutions: adding a field to `OperationKind` or
60/// changing its serde representation rotates every existing `OpId`.
61/// This enum tags the encoding used so a long-lived store can detect
62/// mismatches and migrate explicitly via [`crate::migrate`].
63///
64/// **Today only [`Self::V1`] is in production.** Adding a future
65/// variant requires:
66///
67/// 1. A new arm in [`Operation::canonical_bytes_in`].
68/// 2. An update to the canonical-form spec in [`crate::canonical`].
69/// 3. A `CHANGELOG.md` entry under `### Internal` calling out the
70///    `OpId` rotation.
71/// 4. A migration recipe via [`crate::migrate::plan_migration`] —
72///    the mechanism is encoder-agnostic, but each new variant needs
73///    its own `canonical_bytes_in` arm.
74#[derive(
75    Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash, Serialize, Deserialize, Default,
76)]
77#[serde(rename_all = "lowercase")]
78pub enum OperationFormat {
79    #[default]
80    V1,
81}
82
83impl OperationFormat {
84    /// The format every newly-emitted op uses today.
85    pub const CURRENT: OperationFormat = OperationFormat::V1;
86
87    /// `true` for the implicit format (V1). Used by the
88    /// `skip_serializing_if` hook on [`OperationRecord::format_version`]
89    /// so existing V1 stores keep byte-identical on-disk JSON —
90    /// adding the version field doesn't itself rotate any `OpId`.
91    pub fn is_implicit(&self) -> bool {
92        matches!(self, OperationFormat::V1)
93    }
94}
95
96/// Effect of applying an operation on a stage's content-addressed
97/// identity. Used as the `produces` field of an [`OperationRecord`]
98/// so consumers can answer "after this op, what's the head stage
99/// for this SigId?" without rerunning the apply step.
100#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
101#[serde(tag = "kind", rename_all = "snake_case")]
102pub enum StageTransition {
103    /// New SigId; produces a stage that didn't exist before.
104    Create { sig_id: SigId, stage_id: StageId },
105    /// Existing SigId; replaces its head stage.
106    Replace { sig_id: SigId, from: StageId, to: StageId },
107    /// SigId removed; no head stage afterwards.
108    Remove { sig_id: SigId, last: StageId },
109    /// SigId renamed; same body hash, different signature identity.
110    Rename { from: SigId, to: SigId, body_stage_id: StageId },
111    /// Import-only change; doesn't touch any stage.
112    ImportOnly,
113    /// Merge op result. `entries` lists only the sigs whose head
114    /// changed relative to the merge op's first parent (`dst_head`):
115    /// `Some(stage_id)` sets the head; `None` removes the sig.
116    /// Sigs unaffected by the merge are not listed.
117    ///
118    /// **Canonical-form contract:** `BTreeMap` is load-bearing —
119    /// iteration is sorted by `SigId`, so on-disk JSON for two
120    /// callers that resolved the same conflicts in different
121    /// orders produces byte-identical output. Switching to
122    /// `HashMap` here would break canonical stability of the
123    /// `OperationRecord` JSON file and is rejected by the
124    /// canonical-form spec in `crate::canonical`.
125    Merge {
126        entries: BTreeMap<SigId, Option<StageId>>,
127    },
128}
129
130impl StageTransition {
131    /// Every stage id this transition references — the content-addressed
132    /// blobs a peer needs alongside the op record to render or replay it.
133    /// Used by `op push`/`pull` to sync stage objects, not just op records.
134    pub fn stage_ids(&self) -> Vec<StageId> {
135        match self {
136            StageTransition::Create { stage_id, .. } => vec![stage_id.clone()],
137            StageTransition::Replace { from, to, .. } => vec![from.clone(), to.clone()],
138            StageTransition::Remove { last, .. } => vec![last.clone()],
139            StageTransition::Rename { body_stage_id, .. } => vec![body_stage_id.clone()],
140            StageTransition::ImportOnly => Vec::new(),
141            StageTransition::Merge { entries } => entries.values().flatten().cloned().collect(),
142        }
143    }
144}
145
146/// The kinds of operations that produce stage transitions. Mirrors
147/// the initial set in #129; new kinds (`MoveBetweenFiles`,
148/// `SplitFunction`, `ExtractType`) can be added later as long as
149/// they're appended at the end of this enum or use explicit
150/// `#[serde(rename = "...")]` tags so existing `OpId`s stay stable.
151#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
152#[serde(tag = "op", rename_all = "snake_case")]
153pub enum OperationKind {
154    /// New function published. `effects` is the effect set declared
155    /// in the signature; tracked here (not just inside the stage)
156    /// so #130's write-time gate has a cheap path to check effect
157    /// changes without rehydrating the AST.
158    ///
159    /// `budget_cost` (#247) records the function's declared
160    /// `[budget(N)]` cost. Optional with `skip_serializing_if`, so
161    /// pre-#247 ops without a declared budget continue to hash to
162    /// their original `OpId` (additive serialization, same trick
163    /// `intent_id` uses). `None` means the function declared no
164    /// budget effect; `Some(n)` is the literal `n` from
165    /// `[budget(n)]`.
166    AddFunction {
167        sig_id: SigId,
168        stage_id: StageId,
169        effects: EffectSet,
170        #[serde(default, skip_serializing_if = "Option::is_none")]
171        budget_cost: Option<u64>,
172        /// The package source file this declaration came from
173        /// (`src/schema.lex`), when published as part of a multi-module
174        /// package. `None` for a single-file publish — so those ops
175        /// serialize byte-identically and keep their `OpId` (same
176        /// additive trick as `budget_cost`). Lets `export-git` de-flatten
177        /// a mangled package back into its `src/*.lex` tree (#894) and
178        /// gives `lex blame` per-file provenance.
179        #[serde(default, skip_serializing_if = "Option::is_none")]
180        in_file: Option<String>,
181    },
182    /// Function removed; `last_stage_id` is the head before the
183    /// remove (so blame can walk the predecessor without scanning).
184    RemoveFunction {
185        sig_id: SigId,
186        last_stage_id: StageId,
187    },
188    /// Function body changed; signature unchanged.
189    ///
190    /// `from_budget` / `to_budget` (#247) record the declared
191    /// `[budget(N)]` on each side. Same `Option` + `skip` discipline
192    /// as `AddFunction.budget_cost` — pre-#247 ops keep their
193    /// `OpId`s. The pair is what `lex op log --budget-drift` reads
194    /// to surface "budget grew/shrank" diffs without rehydrating
195    /// stages.
196    ModifyBody {
197        sig_id: SigId,
198        from_stage_id: StageId,
199        to_stage_id: StageId,
200        #[serde(default, skip_serializing_if = "Option::is_none")]
201        from_budget: Option<u64>,
202        #[serde(default, skip_serializing_if = "Option::is_none")]
203        to_budget: Option<u64>,
204    },
205    /// Symbol renamed. The body hash is preserved (`body_stage_id`)
206    /// so two renames of the same body collapse to the same OpId
207    /// and `lex blame` walks the rename as a single causal event
208    /// rather than `delete + add`.
209    RenameSymbol {
210        from: SigId,
211        to: SigId,
212        body_stage_id: StageId,
213    },
214    /// Effect signature changed. Captures both old and new effect
215    /// sets so the write-time gate (#130) can verify importers
216    /// haven't silently broken.
217    ///
218    /// `from_budget` / `to_budget` (#247) capture the declared
219    /// `[budget(N)]` on each side. ChangeEffectSig usually fires
220    /// because the effect *list* changed; #247 makes budget drift
221    /// visible without forcing a full effect-set diff.
222    ChangeEffectSig {
223        sig_id: SigId,
224        from_stage_id: StageId,
225        to_stage_id: StageId,
226        from_effects: EffectSet,
227        to_effects: EffectSet,
228        #[serde(default, skip_serializing_if = "Option::is_none")]
229        from_budget: Option<u64>,
230        #[serde(default, skip_serializing_if = "Option::is_none")]
231        to_budget: Option<u64>,
232    },
233    /// Import added to a file. `in_file` is the canonical path
234    /// (relative to the repo root, forward-slashes) so two
235    /// machines hashing the same edit get the same OpId.
236    AddImport {
237        in_file: String,
238        module: ModuleRef,
239        /// The binding the module is imported under (`import "std.sql"
240        /// as sql` → `"sql"`). Lex requires an alias on every import,
241        /// but this is `None` whenever it equals the module's default
242        /// alias (the last path segment) — the common case — so those
243        /// `AddImport`s serialize exactly as before and keep their
244        /// original `OpId` (additive serialization, same trick as
245        /// `budget_cost`). Only a non-default alias (`import "./error"
246        /// as e`) is carried explicitly. Without it, `export-git`
247        /// cannot reconstruct a compilable module — the reference alone
248        /// doesn't say what name the body binds.
249        #[serde(default, skip_serializing_if = "Option::is_none")]
250        alias: Option<String>,
251    },
252    RemoveImport {
253        in_file: String,
254        module: ModuleRef,
255    },
256    AddType {
257        sig_id: SigId,
258        stage_id: StageId,
259        /// Source file this type came from, for multi-module packages;
260        /// `None` (and omitted) for a single-file publish. See
261        /// `AddFunction::in_file`.
262        #[serde(default, skip_serializing_if = "Option::is_none")]
263        in_file: Option<String>,
264    },
265    RemoveType {
266        sig_id: SigId,
267        last_stage_id: StageId,
268    },
269    ModifyType {
270        sig_id: SigId,
271        from_stage_id: StageId,
272        to_stage_id: StageId,
273    },
274    /// Merge of two branch heads. Carries only an informational count
275    /// of resolved sigs so two structurally identical merges of
276    /// different sizes don't collide on op_id; the per-sig deltas live
277    /// in `OperationRecord::produces` (`StageTransition::Merge`).
278    Merge {
279        resolved: usize,
280    },
281    /// Typed transform: inlined a `let x := v; body` by
282    /// substituting `v` for every unshadowed `x` in `body`, then
283    /// replacing the entire `Let` node with the substituted body
284    /// (#280). The op records the let-binding's position and the
285    /// inlined name; the actual substituted value lives in the
286    /// content-addressed `to_stage_id` so the op_id stays compact.
287    InlineLet {
288        sig_id: SigId,
289        from_stage_id: StageId,
290        to_stage_id: StageId,
291        let_node: String,
292        binding_name: String,
293        #[serde(default, skip_serializing_if = "Option::is_none")]
294        from_budget: Option<u64>,
295        #[serde(default, skip_serializing_if = "Option::is_none")]
296        to_budget: Option<u64>,
297    },
298    /// Typed transform: renamed a `let`-bound local within a fn
299    /// body (#280). Records the old/new identifiers and the position
300    /// of the let-binding in the AST. Body-shape-stable: the renamed
301    /// stage typically hashes near the original.
302    RenameLocal {
303        sig_id: SigId,
304        from_stage_id: StageId,
305        to_stage_id: StageId,
306        /// Path-style NodeId of the `Let` expression at the time of
307        /// the transform.
308        let_node: String,
309        old_name: String,
310        new_name: String,
311        #[serde(default, skip_serializing_if = "Option::is_none")]
312        from_budget: Option<u64>,
313        #[serde(default, skip_serializing_if = "Option::is_none")]
314        to_budget: Option<u64>,
315    },
316    /// Typed transform: replaced one arm's body in a `Match`
317    /// expression (#280). Semantically a `ModifyBody`, but the op
318    /// records *which* arm changed and *where* in the AST — so the
319    /// op log reads as a semantic edit history rather than as
320    /// opaque hash-to-hash bytes.
321    ///
322    /// `match_node` is the [`lex_ast::ids::NodeId`] of the Match
323    /// expression at the time of the transform. NodeIds aren't
324    /// stable across structural edits — they're audit-trail metadata,
325    /// not re-derivation keys. The authoritative record of the new
326    /// stage is `to_stage_id` (content-addressed).
327    ///
328    /// `from_budget`/`to_budget` follow the same `skip_if_none`
329    /// discipline as [`Self::ModifyBody`]: pre-#280 ops continue
330    /// hashing to their original `OpId`s.
331    ReplaceMatchArm {
332        sig_id: SigId,
333        from_stage_id: StageId,
334        to_stage_id: StageId,
335        /// Path-style NodeId of the Match expression that was
336        /// modified, captured at transform time. See
337        /// [`lex_ast::ids::NodeId`] for the format.
338        match_node: String,
339        arm_index: usize,
340        #[serde(default, skip_serializing_if = "Option::is_none")]
341        from_budget: Option<u64>,
342        #[serde(default, skip_serializing_if = "Option::is_none")]
343        to_budget: Option<u64>,
344    },
345    /// Multi-agent coordination: a stage proposed for a sig
346    /// without advancing the branch (#294). Multiple agents can
347    /// land `Candidate` ops on the same sig concurrently without
348    /// contention — they all chain off the current head and don't
349    /// move it. Used together with [`Self::Promote`] to model
350    /// bake-offs: several agents propose, one is promoted.
351    ///
352    /// The `Operation`'s `intent_id` is expected to be set so
353    /// downstream consumers can distinguish proposals by author.
354    /// (The schema doesn't enforce this; the gate does.)
355    Candidate {
356        sig_id: SigId,
357        stage_id: StageId,
358    },
359    /// Multi-agent coordination: promotes a previously-landed
360    /// [`Self::Candidate`] op as the new head for its sig (#294).
361    /// Carries the list of *other* candidates this Promote
362    /// supersedes so the op log explicitly records the bake-off
363    /// shape.
364    ///
365    /// Acts as a `ModifyBody` (or `AddFunction` when the sig has
366    /// no head) for branch-head purposes — `transition_for_kind`
367    /// returns the appropriate `StageTransition`.
368    Promote {
369        sig_id: SigId,
370        /// Op id of the [`Self::Candidate`] being promoted.
371        winner_candidate: OpId,
372        /// Stage id of the winner (duplicates the candidate's
373        /// `stage_id` for fast lookup; saves a log round-trip
374        /// for `lex op show`).
375        winner_stage_id: StageId,
376        /// Every other live `Candidate` for `sig_id` at the time
377        /// of promotion. Sorted by op_id for canonical-form
378        /// stability. After this `Promote` lands, none of these
379        /// op_ids appear in [`Store::list_candidates`].
380        supersedes: Vec<OpId>,
381        /// Current branch head stage for `sig_id`, or `None` if
382        /// the sig had no head (the Promote is creating it).
383        /// `None` is serialized as missing for canonical stability
384        /// across "first promote on a sig" vs "later promote".
385        #[serde(default, skip_serializing_if = "Option::is_none")]
386        from_stage_id: Option<StageId>,
387        #[serde(default, skip_serializing_if = "Option::is_none")]
388        from_budget: Option<u64>,
389        #[serde(default, skip_serializing_if = "Option::is_none")]
390        to_budget: Option<u64>,
391    },
392}
393
394impl OperationKind {
395    /// The `(SigId, Option<StageId>)` an op kind targets, as used by
396    /// `StageTransition::Merge::entries`. Used by the merge-commit
397    /// path (#134) to translate a `Resolution::Custom { op }` into
398    /// the head-map delta the merge op records:
399    ///
400    /// * Adds → `(sig, Some(stage_id))`
401    /// * Modifies → `(sig, Some(to_stage_id))`
402    /// * Removes → `(sig, None)`
403    /// * Renames → `(to_sig, Some(body_stage_id))`
404    /// * `AddImport` / `RemoveImport` / nested `Merge` → `None`
405    ///   (no single sig→stage delta)
406    pub fn merge_target(&self) -> Option<(SigId, Option<StageId>)> {
407        use OperationKind::*;
408        match self {
409            AddFunction { sig_id, stage_id, .. }
410            | AddType { sig_id, stage_id, .. }
411                => Some((sig_id.clone(), Some(stage_id.clone()))),
412            ModifyBody { sig_id, to_stage_id, .. }
413            | ChangeEffectSig { sig_id, to_stage_id, .. }
414            | ModifyType { sig_id, to_stage_id, .. }
415            | ReplaceMatchArm { sig_id, to_stage_id, .. }
416            | RenameLocal { sig_id, to_stage_id, .. }
417            | InlineLet { sig_id, to_stage_id, .. }
418                => Some((sig_id.clone(), Some(to_stage_id.clone()))),
419            Promote { sig_id, winner_stage_id, .. }
420                => Some((sig_id.clone(), Some(winner_stage_id.clone()))),
421            RemoveFunction { sig_id, .. }
422            | RemoveType { sig_id, .. }
423                => Some((sig_id.clone(), None)),
424            RenameSymbol { to, body_stage_id, .. }
425                => Some((to.clone(), Some(body_stage_id.clone()))),
426            AddImport { .. } | RemoveImport { .. } | Merge { .. } => None,
427            // Candidate ops don't advance the branch head; they
428            // don't fit the (sig, Option<stage_id>) head-delta
429            // shape that `merge_target` describes.
430            Candidate { .. } => None,
431        }
432    }
433
434    /// `(from_budget, to_budget)` for ops that carry a budget delta
435    /// (#247). `(None, None)` for ops where the budget isn't part
436    /// of the canonical payload — `RemoveFunction`, `RenameSymbol`,
437    /// imports, and merges. `AddFunction` reports `(None,
438    /// Some(cost))` for "this is the initial cost." Used by `lex op
439    /// show`, `lex op log --budget-drift`, and `lex audit --budget`.
440    pub fn budget_delta(&self) -> (Option<u64>, Option<u64>) {
441        use OperationKind::*;
442        match self {
443            AddFunction { budget_cost, .. } => (None, *budget_cost),
444            ModifyBody { from_budget, to_budget, .. }
445            | ChangeEffectSig { from_budget, to_budget, .. }
446            | ReplaceMatchArm { from_budget, to_budget, .. }
447            | RenameLocal { from_budget, to_budget, .. }
448            | InlineLet { from_budget, to_budget, .. }
449            | Promote { from_budget, to_budget, .. } => (*from_budget, *to_budget),
450            _ => (None, None),
451        }
452    }
453
454    /// The `SigId` an op touches if it carries a budget — used for
455    /// per-sig audit rollups in `lex audit --budget`. Returns `None`
456    /// for ops without a relevant budget (the same set as the
457    /// `_ => (None, None)` arm of [`Self::budget_delta`]).
458    pub fn budget_sig(&self) -> Option<&SigId> {
459        use OperationKind::*;
460        match self {
461            AddFunction { sig_id, .. }
462            | ModifyBody { sig_id, .. }
463            | ChangeEffectSig { sig_id, .. }
464            | ReplaceMatchArm { sig_id, .. }
465            | RenameLocal { sig_id, .. }
466            | InlineLet { sig_id, .. }
467            | Promote { sig_id, .. } => Some(sig_id),
468            _ => None,
469        }
470    }
471}
472
473/// Extract the declared `[budget(N)]` integer from an [`EffectSet`],
474/// if any (#247).
475///
476/// Effect labels in [`EffectSet`] are produced by
477/// [`crate::compute_diff::effect_label`]: a `[budget(50)]`
478/// declaration becomes the literal string `"budget(50)"`. This
479/// helper parses that literal back to the integer; bare `"budget"`
480/// (no arg) returns `None` because the magnitude is unknown. A
481/// stage with multiple budget declarations — which the type-
482/// checker should reject anyway — picks the smallest, conservative
483/// answer for `lex audit --budget`.
484pub fn budget_from_effects(effects: &EffectSet) -> Option<u64> {
485    let mut min_cost: Option<u64> = None;
486    for label in effects {
487        let Some(rest) = label.strip_prefix("budget(") else { continue };
488        let Some(inner) = rest.strip_suffix(')') else { continue };
489        let Ok(n) = inner.parse::<u64>() else { continue };
490        min_cost = Some(min_cost.map(|c| c.min(n)).unwrap_or(n));
491    }
492    min_cost
493}
494
495/// The operation as a whole — its kind and the causal predecessors
496/// it assumes. The `OpId` is computed from this plus a sorted view
497/// of `parents`.
498///
499/// Operations without parents are valid and represent "applies to
500/// the empty repository" or "applies to the synthetic genesis
501/// state." `lex store migrate v1→v2` will produce parentless ops
502/// for stages it can't trace back to a clear predecessor.
503#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
504pub struct Operation {
505    #[serde(flatten)]
506    pub kind: OperationKind,
507    /// Operations whose `produces` this op assumes. Sorted before
508    /// hashing for canonical form. Empty for ops against the empty
509    /// repo.
510    #[serde(default, skip_serializing_if = "Vec::is_empty")]
511    pub parents: Vec<OpId>,
512    /// The intent that caused this op, if known. Optional because
513    /// operations produced outside an agent harness (e.g. a human
514    /// running `lex publish` directly) don't have one.
515    ///
516    /// Including the intent in the canonical hash means the same
517    /// logical change made under different intents produces
518    /// different `OpId`s — causally distinct events should hash
519    /// distinctly. Ops with `intent_id: None` keep their existing
520    /// hashes (the field is omitted from the canonical JSON via
521    /// `skip_serializing_if`), so this is backwards-compatible
522    /// for stores written before #131.
523    #[serde(default, skip_serializing_if = "Option::is_none")]
524    pub intent_id: Option<crate::intent::IntentId>,
525}
526
527impl Operation {
528    /// Construct an operation against zero or more parents. Caller
529    /// supplies parents in any order; canonicalization sorts them
530    /// before hashing.
531    pub fn new(kind: OperationKind, parents: impl IntoIterator<Item = OpId>) -> Self {
532        let mut parents: Vec<OpId> = parents.into_iter().collect();
533        parents.sort();
534        parents.dedup();
535        Self { kind, parents, intent_id: None }
536    }
537
538    /// Tag this operation with the intent that produced it. The
539    /// builder shape keeps existing call sites untouched; agent
540    /// harnesses that record intent call this once before
541    /// applying the op.
542    pub fn with_intent(mut self, intent_id: impl Into<crate::intent::IntentId>) -> Self {
543        self.intent_id = Some(intent_id.into());
544        self
545    }
546
547    /// Compute this operation's content-addressed identity under the
548    /// current production canonical form ([`OperationFormat::CURRENT`]).
549    ///
550    /// Stable across runs and machines: same `(kind, payload,
551    /// sorted parents, intent_id)` produces the same `OpId`. The
552    /// invariant #129's automatic-dedup behavior relies on.
553    pub fn op_id(&self) -> OpId {
554        self.op_id_in(OperationFormat::CURRENT)
555    }
556
557    /// Compute the `OpId` under a specific canonical-form version.
558    ///
559    /// Used by [`crate::migrate`] to derive new `OpId`s when porting
560    /// a store across format versions. Production code should call
561    /// [`Self::op_id`].
562    pub fn op_id_in(&self, format: OperationFormat) -> OpId {
563        canonical::hash_bytes(&self.canonical_bytes_in(format))
564    }
565
566    /// The byte sequence that gets hashed to produce [`Self::op_id`]
567    /// under the current canonical form. Equivalent to
568    /// `self.canonical_bytes_in(OperationFormat::CURRENT)`.
569    ///
570    /// Exposed (not just consumed by `op_id`) so golden tests can pin
571    /// the exact pre-image. **Not** equal to `serde_json::to_vec(&op)`
572    /// in general — the on-disk JSON skips empty `parents` and
573    /// `None` `intent_id`, while the canonical form always emits a
574    /// (sorted, deduped) `parents` array. See `canonical.rs` for the
575    /// full V1 canonical-form spec.
576    pub fn canonical_bytes(&self) -> Vec<u8> {
577        self.canonical_bytes_in(OperationFormat::CURRENT)
578    }
579
580    /// The pre-image hashed under a specific canonical-form version.
581    ///
582    /// Today every `OperationFormat` variant routes to V1's encoder
583    /// (only V1 exists in production). When V2 lands, this match
584    /// gains an arm and the migration tool's encoder closure routes
585    /// here.
586    pub fn canonical_bytes_in(&self, format: OperationFormat) -> Vec<u8> {
587        match format {
588            OperationFormat::V1 => self.canonical_bytes_v1(),
589        }
590    }
591
592    fn canonical_bytes_v1(&self) -> Vec<u8> {
593        // Build a transient hashable view rather than hashing
594        // `self` directly so the parent ordering is canonical
595        // even if a caller hand-constructs an `Operation` with
596        // unsorted parents.
597        let canonical = CanonicalView {
598            kind: &self.kind,
599            parents: self.parents.iter().collect::<IndexSet<_>>().into_iter().collect::<BTreeSet<_>>(),
600            intent_id: self.intent_id.as_deref(),
601        };
602        serde_json::to_vec(&canonical).expect("canonical serialization")
603    }
604}
605
606/// Hashable shadow of [`Operation`] with parents in a `BTreeSet` so
607/// the serialization is order-independent regardless of how the
608/// caller constructed the live operation. Never persisted; lives
609/// only as a transient for hashing.
610#[derive(Serialize)]
611struct CanonicalView<'a> {
612    #[serde(flatten)]
613    kind: &'a OperationKind,
614    parents: BTreeSet<&'a OpId>,
615    /// `skip_serializing_if = "Option::is_none"` keeps existing
616    /// `OpId`s stable for ops without an intent — the field is
617    /// omitted from the canonical JSON entirely.
618    #[serde(skip_serializing_if = "Option::is_none")]
619    intent_id: Option<&'a str>,
620}
621
622/// An operation paired with its computed `OpId` and the resulting
623/// stage transition. This is what gets persisted under
624/// `<root>/ops/<OpId>.json`.
625///
626/// `format_version` records the canonical form the `op_id` was
627/// computed under. Pre-#244 stores didn't emit this field; reading
628/// such records deserializes to [`OperationFormat::V1`] (the
629/// implicit pre-versioning format), and writing V1 records continues
630/// to omit it (`skip_serializing_if = is_implicit`) so adding the
631/// field doesn't rotate any existing `OpId` or change any on-disk
632/// byte. Records written under a future format will explicitly
633/// carry their version tag.
634#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
635pub struct OperationRecord {
636    pub op_id: OpId,
637    #[serde(default, skip_serializing_if = "OperationFormat::is_implicit")]
638    pub format_version: OperationFormat,
639    #[serde(flatten)]
640    pub op: Operation,
641    pub produces: StageTransition,
642}
643
644impl OperationRecord {
645    pub fn new(op: Operation, produces: StageTransition) -> Self {
646        let op_id = op.op_id();
647        Self { op_id, format_version: OperationFormat::CURRENT, op, produces }
648    }
649}
650
651#[cfg(test)]
652mod tests {
653    use super::*;
654
655    fn add_factorial() -> OperationKind {
656        OperationKind::AddFunction {
657            sig_id: "fac::Int->Int".into(),
658            stage_id: "abc123".into(),
659            effects: BTreeSet::new(),
660            budget_cost: None,
661            in_file: None,
662        }
663    }
664
665    #[test]
666    fn identical_operations_have_identical_op_ids() {
667        let a = Operation::new(add_factorial(), []);
668        let b = Operation::new(add_factorial(), []);
669        assert_eq!(a.op_id(), b.op_id());
670    }
671
672    #[test]
673    fn different_operations_have_different_op_ids() {
674        let a = Operation::new(add_factorial(), []);
675        let b = Operation::new(
676            OperationKind::AddFunction {
677                sig_id: "double::Int->Int".into(),
678                stage_id: "abc123".into(),
679                effects: BTreeSet::new(),
680                budget_cost: None,
681                in_file: None,
682            },
683            [],
684        );
685        assert_ne!(a.op_id(), b.op_id());
686    }
687
688    #[test]
689    fn parent_set_changes_op_id() {
690        let no_parent = Operation::new(add_factorial(), []);
691        let with_parent = Operation::new(add_factorial(), ["op-parent-1".into()]);
692        assert_ne!(no_parent.op_id(), with_parent.op_id());
693    }
694
695    #[test]
696    fn parent_order_does_not_affect_op_id() {
697        let a = Operation::new(add_factorial(), ["b".into(), "a".into(), "c".into()]);
698        let b = Operation::new(add_factorial(), ["c".into(), "a".into(), "b".into()]);
699        assert_eq!(a.op_id(), b.op_id());
700        // and the stored form is sorted.
701        assert_eq!(a.parents, vec!["a".to_string(), "b".to_string(), "c".to_string()]);
702    }
703
704    #[test]
705    fn duplicate_parents_are_deduped() {
706        let with_dups = Operation::new(
707            add_factorial(),
708            ["a".into(), "a".into(), "b".into()],
709        );
710        let no_dups = Operation::new(
711            add_factorial(),
712            ["a".into(), "b".into()],
713        );
714        assert_eq!(with_dups.op_id(), no_dups.op_id());
715        assert_eq!(with_dups.parents, vec!["a".to_string(), "b".to_string()]);
716    }
717
718    #[test]
719    fn rename_with_same_body_hashes_equal_across_runs() {
720        // Two independent runs producing the same rename against the
721        // same parent should produce the same OpId — this is the
722        // automatic-dedup property #129 relies on for distributed
723        // agents.
724        let kind = OperationKind::RenameSymbol {
725            from: "parse::Str->Int".into(),
726            to: "parse_int::Str->Int".into(),
727            body_stage_id: "abc123".into(),
728        };
729        let a = Operation::new(kind.clone(), ["op-parent".into()]);
730        let b = Operation::new(kind, ["op-parent".into()]);
731        assert_eq!(a.op_id(), b.op_id());
732    }
733
734    #[test]
735    fn rename_does_not_collide_with_delete_plus_add() {
736        // The whole point of `RenameSymbol` is that it's a different
737        // OpId from the (semantically-equivalent) `RemoveFunction +
738        // AddFunction` pair. Causal history sees one event, not two.
739        let rename = Operation::new(
740            OperationKind::RenameSymbol {
741                from: "parse::Str->Int".into(),
742                to: "parse_int::Str->Int".into(),
743                body_stage_id: "abc123".into(),
744            },
745            ["op-parent".into()],
746        );
747        let remove = Operation::new(
748            OperationKind::RemoveFunction {
749                sig_id: "parse::Str->Int".into(),
750                last_stage_id: "abc123".into(),
751            },
752            ["op-parent".into()],
753        );
754        let add = Operation::new(
755            OperationKind::AddFunction {
756                sig_id: "parse_int::Str->Int".into(),
757                stage_id: "abc123".into(),
758                effects: BTreeSet::new(),
759                budget_cost: None,
760                in_file: None,
761            },
762            ["op-parent".into()],
763        );
764        assert_ne!(rename.op_id(), remove.op_id());
765        assert_ne!(rename.op_id(), add.op_id());
766    }
767
768    #[test]
769    fn effect_set_order_does_not_affect_op_id() {
770        // Effects are a BTreeSet so iteration is sorted. Build two
771        // ops via different insertion orders and confirm the
772        // canonical form is identical.
773        let a_effects: EffectSet = ["io".into(), "fs_write".into()].into_iter().collect();
774        let b_effects: EffectSet = ["fs_write".into(), "io".into()].into_iter().collect();
775        let a = Operation::new(
776            OperationKind::AddFunction {
777                sig_id: "x".into(), stage_id: "s".into(), effects: a_effects,
778                budget_cost: None,
779                in_file: None,
780            },
781            [],
782        );
783        let b = Operation::new(
784            OperationKind::AddFunction {
785                sig_id: "x".into(), stage_id: "s".into(), effects: b_effects,
786                budget_cost: None,
787                in_file: None,
788            },
789            [],
790        );
791        assert_eq!(a.op_id(), b.op_id());
792    }
793
794    #[test]
795    fn op_id_is_64_char_lowercase_hex() {
796        let id = Operation::new(add_factorial(), []).op_id();
797        assert_eq!(id.len(), 64);
798        assert!(id.chars().all(|c| c.is_ascii_digit() || ('a'..='f').contains(&c)));
799    }
800
801    #[test]
802    fn round_trip_through_serde_json() {
803        let op = Operation::new(
804            OperationKind::ChangeEffectSig {
805                sig_id: "f".into(),
806                from_stage_id: "old".into(),
807                to_stage_id: "new".into(),
808                from_effects: BTreeSet::new(),
809                to_effects: ["io".into()].into_iter().collect(),
810                from_budget: None,
811                to_budget: None,
812            },
813            ["op-parent".into()],
814        );
815        let json = serde_json::to_string(&op).expect("serialize");
816        let back: Operation = serde_json::from_str(&json).expect("deserialize");
817        assert_eq!(op, back);
818        assert_eq!(op.op_id(), back.op_id());
819    }
820
821    #[test]
822    fn operation_record_carries_op_id() {
823        let op = Operation::new(add_factorial(), []);
824        let expected = op.op_id();
825        let rec = OperationRecord::new(
826            op,
827            StageTransition::Create {
828                sig_id: "fac::Int->Int".into(),
829                stage_id: "abc123".into(),
830            },
831        );
832        assert_eq!(rec.op_id, expected);
833    }
834
835    #[test]
836    fn intent_id_is_part_of_op_id_canonical_hash() {
837        // The dedup property: same `(kind, parents, intent_id)`
838        // produces the same OpId. Different intent_ids on
839        // otherwise-identical ops produce different OpIds, so
840        // causally distinct events (different prompts) hash
841        // distinctly.
842        let no_intent = Operation::new(add_factorial(), []);
843        let with_intent_a = Operation::new(add_factorial(), [])
844            .with_intent("intent-a");
845        let with_intent_b = Operation::new(add_factorial(), [])
846            .with_intent("intent-b");
847        let with_intent_a_again = Operation::new(add_factorial(), [])
848            .with_intent("intent-a");
849
850        // No-intent op is distinct from any intent-tagged variant.
851        assert_ne!(no_intent.op_id(), with_intent_a.op_id());
852        // Different intents → different OpIds.
853        assert_ne!(with_intent_a.op_id(), with_intent_b.op_id());
854        // Same intent → same OpId (the load-bearing dedup invariant).
855        assert_eq!(with_intent_a.op_id(), with_intent_a_again.op_id());
856    }
857
858    #[test]
859    fn op_without_intent_keeps_pre_intent_op_id() {
860        // Backwards-compat invariant: an op constructed without an
861        // intent must hash to the same value as it would have
862        // before #131 added the field. The golden test below pins
863        // the exact hash; this one asserts that adding then
864        // resetting to None doesn't drift.
865        let mut op = Operation::new(add_factorial(), []);
866        let baseline = op.op_id();
867        op.intent_id = Some("transient".into());
868        let with_intent = op.op_id();
869        assert_ne!(baseline, with_intent);
870        op.intent_id = None;
871        let back = op.op_id();
872        assert_eq!(baseline, back);
873    }
874
875    /// Golden hash. If this changes, the canonical form has shifted
876    /// and *every* op_id in every existing store has changed too —
877    /// that's a major-version event for the data model and should
878    /// be a deliberate decision, not an accident from reordering
879    /// fields. Update with care.
880    #[test]
881    fn canonical_form_is_stable_for_a_known_input() {
882        let op = Operation::new(
883            OperationKind::AddFunction {
884                sig_id: "fac::Int->Int".into(),
885                stage_id: "abc123".into(),
886                effects: BTreeSet::new(),
887                budget_cost: None,
888                in_file: None,
889            },
890            [],
891        );
892        assert_eq!(
893            op.op_id(),
894            "f112990d31ef2a63f3e5ca5680637ed36a54bc7e8230510ae0c0e93fcb39d104"
895        );
896    }
897
898    #[test]
899    fn merge_kind_round_trips() {
900        let op = Operation::new(
901            OperationKind::Merge { resolved: 3 },
902            ["op-a".into(), "op-b".into()],
903        );
904        let json = serde_json::to_string(&op).expect("ser");
905        let back: Operation = serde_json::from_str(&json).expect("de");
906        assert_eq!(op, back);
907        assert_eq!(op.op_id(), back.op_id());
908    }
909
910    #[test]
911    fn merge_stage_transition_round_trips() {
912        let mut entries = BTreeMap::new();
913        entries.insert("sig-a".to_string(), Some("stage-a".to_string()));
914        entries.insert("sig-b".to_string(), None); // removed by merge
915        let t = StageTransition::Merge { entries };
916        let json = serde_json::to_string(&t).expect("ser");
917        let back: StageTransition = serde_json::from_str(&json).expect("de");
918        assert_eq!(t, back);
919    }
920
921    #[test]
922    fn merge_resolved_count_changes_op_id() {
923        // Two merges with the same parents but different resolved counts
924        // must hash differently — keeps structurally distinct merges from
925        // colliding on op_id.
926        let parents: Vec<OpId> = vec!["op-a".into(), "op-b".into()];
927        let one = Operation::new(OperationKind::Merge { resolved: 1 }, parents.clone());
928        let two = Operation::new(OperationKind::Merge { resolved: 2 }, parents);
929        assert_ne!(one.op_id(), two.op_id());
930    }
931
932    #[test]
933    fn existing_add_function_op_id_is_unchanged_after_merge_added() {
934        // Constructing the new Merge variant in the same enum must not
935        // perturb the canonical bytes of existing variants. The golden
936        // hash test below checks the literal value; this one verifies
937        // the property holds even after a Merge op has been built.
938        let _merge = Operation::new(
939            OperationKind::Merge { resolved: 0 },
940            ["op-x".into(), "op-y".into()],
941        );
942        let op = Operation::new(add_factorial(), []);
943        assert_eq!(
944            op.op_id(),
945            "f112990d31ef2a63f3e5ca5680637ed36a54bc7e8230510ae0c0e93fcb39d104"
946        );
947    }
948}