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//! Proof intermediate representation.
//!
//! Single decision substrate the Lean and Dafny proof exporters
//! consume. Backends render text from a fully-resolved `ProofIR` —
//! they do not classify shapes, do not derive contracts, do not
//! decide between native and fuel emit. Every decision happens once
//! in the `proof_lower` pipeline stage; both backends see the same
//! decision and either render it consistently or fail consistently.
//!
//! Replaces the ad-hoc "guess and emit" pattern that grew across
//! `src/codegen/{common,recursion,lean,dafny}` during 0.22.0 with a
//! single typed model. Each variant that says "emit native" or
//! "lift to subtype" carries inside its payload everything the
//! backend needs and everything the classifier proved — the type
//! system makes it impossible to produce a "native" decision
//! without also producing the side-conditions that justify it.
//!
//! Coverage today: `refined_types` (refinement-via-opaque records),
//! `fn_contracts` (per-pure-fn recursion shape), `law_theorems`
//! (per-verify-law strategy + quantifier + claim decomposition).
//!
//! ## Invariant after #147 phase E PR 12 Scope A
//!
//! - **Backend-facing IR fields are resolved.** Every
//! `Spanned<...>` on this module's public structs carries
//! [`crate::ir::hir::ResolvedExpr`], not raw `ast::Expr`.
//! `proof_lower::populate_*` resolves at the producer site through
//! the symbol table under the correct scope (entry / dep-module
//! prefix); backends walk the resolved form directly via
//! `emit_expr`, no `emit_expr_legacy` adapter for IR-sourced
//! expressions.
//! - **Identity-sensitive decisions use typed IDs.**
//! `fn_contracts` is keyed by [`FnId`] (not bare name);
//! `refined_types` is keyed by [`TypeId`]; `law_theorems` carry
//! the target fn's `FnId`. The Lean/Dafny native-guarded rewriter
//! pins target by `FnId` (via `fn_id_for_decl`), not bare name —
//! regression-pinned by
//! `proof_export_module_owned_native_guarded_resolves_correct_fn_id`.
//! - **`proof_lower` internal AST discovery is intentional.**
//! The classifier's pattern matchers still walk raw `ast::Expr`
//! inside this stage. Source-pattern matching is the natural
//! shape for the discovery work (refinement carrier search,
//! `Map.set` axiom detection, spec-equivalence comparison); a
//! resolved walker would be the same logic spelled in a different
//! enum. Identity-sensitive sites that COULD leak across scope
//! were audited and are bounded today by:
//! 1. `vb.fn_name` parses as a single `Ident` (verify blocks
//! target entry-only fns by current grammar)
//! 2. Builtin matchers (`"Bool.and"`, `"Map.set"`, …) compare
//! global namespace methods that have no per-scope identity.
//! - **Full `ResolvedProofLowerView` + semantic matcher API is
//! deferred** until a real trigger lands: module-scoped verify
//! blocks, dotted verify targets / laws over dep-module fns, LSP
//! rename, inliner / monomorphizer / cross-scope transforms. Each
//! of those unbounds the "entry-only" assumption above. When it
//! ships, the right architecture is a typed
//! `ProofLowerInputs::resolved_fn_view(fd)` + matcher helpers
//! (`callee_is_builtin`, `callee_is_fn(fn_id)`, `ctor_is`,
//! `ident_name`, `int_lit`) — not a mechanical
//! `Expr -> ResolvedExpr` rewrite of the discovery walkers.
use HashMap;
use crateSpanned;
// Identity keys for named declarations crossing module boundaries
// (`FnKey`, `TypeKey`, `LawKey`) live in `crate::ir::identity` —
// they're general identity primitives, not proof-specific. Today's
// proof flow is where the bare-string bug class first surfaced
// (reviewer rounds 5/6), but other backends with multi-module emit
// (VM, Rust codegen, WASM) will reach for the same types when they
// hit the same bug class. Re-exported here for ergonomics.
pub use crate;
/// Output of the `proof_lower` pipeline stage. Every decision the
/// proof backends will make is materialised here; backends become
/// pure renderers.
///
/// `ProofIR` is intentionally NOT a closed superset of the AST — it
/// only carries facts that proof export needs. Source-faithful
/// emission of plain fns / verify cases still flows through the
/// untyped AST path, same as runtime backends (VM, Rust, WASM).
/// A recursive pure fn the contract classifier couldn't match against
/// any supported shape. Carries the source line + a human-readable
/// reason string so backends can render a diagnostic without
/// inventing prose.
/// Refinement smart-constructor guard a `SimpOmegaUnfold` strategy
/// found in the law's fn unfold chain. `param` is the smart
/// constructor's input parameter name; `predicate` is the Bool
/// subject of its `match true/false → Ok/Err` body. Backends emit
/// `by_cases h_<v> : <substituted predicate>` for each law-given by
/// rewriting `param` to `<v>` inside the predicate.
/// A refinement-lifted user type — opaque record with a single
/// carrier field, paired with a validating smart constructor. The
/// presence of this decl in `ProofIR.refined_types` is the
/// decision: "emit this as a subtype on Lean and a subset type on
/// Dafny". Backends never re-decide.
/// Per-pure-fn proof contract — what recursion shape (if any) the
/// lowerer pinned for emit.
/// Recursion-shape decision. Each variant carries everything its
/// emit needs AND the side-conditions the lowerer proved to choose
/// it. The variants intentionally cannot be constructed without
/// their side-conditions — backends cannot render `Native` without
/// the lowerer having proved preservation + decrease.
/// Payload of [`RecursionContract::WellFoundedToNat`] for the
/// floor-division shrink shape.
/// Body decomposition for the `IntCountdown-literal-zero` native
/// shape. Each field is a slice of the source AST the lowerer
/// extracted while classifying; backends render them directly
/// without re-walking the source.
/// Fuel metric for the fallback fuel-encoded emit path.
/// Symbolic termination measure. Backend-agnostic.
/// Marker that the lowerer constructed a proof of preservation
/// (recursive args stay in the precondition's domain). The variants
/// describe HOW the proof was constructed so future maintainers can
/// trace why a given shape was accepted as native.
/// Symmetric marker for the decreasing measure.
/// Lowered verify-law theorem. All projection decisions (`.val`
/// vs bare ident, wrapper strip, when-keep vs when-drop) are
/// already baked into the fields below; backends render directly.
/// A universally-quantified variable in a law theorem. Carries
/// enough type info for backends to render the binder correctly
/// (`(a : Natural)` for refined Int, `(a : Int)` for plain int,
/// `(rng : RandomIntInBounds)` for oracle).
/// Algebraic / proof-theoretic shape of a verify-law theorem.
///
/// **Naming rule**: variants describe **what the law says**, not
/// **how a backend proves it**. The IR is target-agnostic — Lean
/// maps `Commutative { op: Add }` to `simp [fn, Int.add_comm]`,
/// Dafny maps the same variant to its own lemma vocabulary, a Z3
/// backend could ship a different tactic again. Tactic names
/// (`SimpOverLemmas`, `simp+omega`) do not appear in variant names;
/// `LinearArithmetic` is named for the semantic, not the tactic.
/// The recognized figures of [`ProofStrategy::FloorDivWindow`]. All
/// fn names are source names; backends translate. Every figure's
/// quantifier names come from the law's givens (captured implicitly —
/// backends render them through the law's own given list).
/// Parameter pack for [`ProofStrategy::StringEscapeRoundtrip`] —
/// every fn name and literal the Lean renderer's suffix-invariant
/// proof skeleton quotes. All fn names are source names (backends
/// translate); all chars/codes are the SOURCE literals the detector
/// read off the validated arm patterns, so the renderer can rebuild
/// them as Lean literals without re-walking the AST.
/// One two-char escape: the producer emits `[escape_char, letter]`
/// for `decoded`; the consumer's escape dispatcher maps `letter`
/// back to `decoded`.
/// Discriminator for [`ProofStrategy::MapUpdatePostcondition`].
/// A bool predicate with explicit free-variable context. Stays in
/// `Spanned<Expr>` form so backends can route through their
/// existing `emit_expr` paths; the context is what gives backends
/// the information they need to project (e.g. `.val`) without
/// re-walking the AST.