Installs the dispatch infrastructure for type-driven method
resolution without retiring MethodNameCollision yet. The new
multi-candidate path is exercised exclusively by 15 unit tests;
real workspaces continue producing single-class residuals
(candidates: None) and every pre-mq.2 fixture typechecks unchanged.
Three new CheckError variants:
- AmbiguousMethodResolution (multi-candidate after type-driven filter)
- UnknownClass (explicit qualifier names a class not in registry)
- NoInstance gains additive candidate_classes field (Vec<String>)
Schema/Env additions:
- Env.method_to_candidate_classes: BTreeMap<String, BTreeSet<String>>
workspace-flat inverse of class_methods, built in build_check_env.
- ResidualConstraint.candidates: Option<BTreeSet<String>> — None
preserves pre-mq.2 single-class semantics; Some(set) carries the
multi-candidate residual that discharge refines.
- ResidualConstraint visibility bumped pub(crate) → pub for
unit-test crate access.
New helpers:
- MethodDispatchOutcome enum + pure resolve_method_dispatch
implementing the spec's 5-step rule (qualifier → singleton →
type-driven filter → constraint-driven filter → Multi for
discharge-time refinement).
- parse_method_qualifier splits Term::Var.name into
(method_name, optional_qualifier_prefix) at the last dot.
- RefineOutcome enum + refine_multi_candidate_residual for
discharge-time refinement.
- resolve_residual_class_for_mono wires the refinement into mono's
collect_residuals_ordered residual-to-target mapping.
Synth Var-arm class-method branch rewritten via parse_method_qualifier
with inner-dot gate (qualifier must be <module>.<Class>; single-dot
names fall through to the existing qualified-fn path).
Constraint-discharge in check_fn uses expanded (post-superclass-
expansion) constraints for the rigid-var path — sounder than raw
declared_constraints.
Plan-invented format_type_for_display replaced with the existing
ailang_core::pretty::type_to_string (one less duplicate).
Synth-time declared_constraints: &[] is a deliberate gap documented
as known debt — load-bearing only post-mq.3 for the rigid-var
fallback (env-plumbing the active fn's constraints into the Var
arm is a ~10-line edit slated for mq.3).
9/9 tasks, 539 tests green (was 520 pre-mq.2; +15 mq.2 unit tests +
4 pre-existing). bench/compile_check.py + cross_lang.py clean;
bench/check.py 1 regression (latency noise — runtime cannot be
touched by a typecheck-side iter).
Three schema fields move bare → canonical (bare for same-module,
<module>.<Class> for cross-module): InstanceDef.class,
Constraint.class, SuperclassRef.class. Symmetric to ct.1's
Type::Con.name rule. ClassDef.name stays bare.
validate_canonical_type_names gains three field-walks via new
check_class_ref helper + two sibling diagnostics
BareCrossModuleClassRef / BadCrossModuleClassRef.
check_class_name_fields narrowed to ClassDef.name-only.
Workspace-internal class-name keys all qualified:
class_def_module, class_by_name, registry entries.0,
ClassMethodEntry.class_name, class_superclasses, mono's
class_index, Origin::Class.class_name. New qualify_class_ref
helper at workspace.rs scope plus sibling
qualify_class_ref_in_check in ailang-check.
Two new positive on-disk fixtures (mq1_xmod_constraint_class{,_dep})
exercise the qualified Constraint.class shape.
Recon claim that all existing fixtures' class-refs are intra-module
was empirically wrong — 10 fixtures required minimal canonical-form
migration. Duplicate-instance test architecturally restructured:
post-mq.1 orphan-freedom makes two-modules-on-same-(class,type)
structurally impossible; new test_22b1_dup_same_module fixture
lands both instances in the class's module.
Plan defects fixed inline: Origin::Class.class_name single
construction site (plan recon off-by-one); build_class_index in
mono.rs needed qualifying; build_module_globals needed Def::Instance
carve-out; check_fn declared-constraint matching needed inline
canonical-form lifting; NoInstance Float-aware message arm needed
prelude.Eq/prelude.Ord match; coherence type-leg needed qualified-
head split-and-lookup. Tasks 3-6 ran as one coherent fix.
7/7 tasks, 520 tests green. bench/compile_check.py + cross_lang.py
exit 0; bench/check.py exit 1 (4 improvements-beyond-tolerance,
audit-ratifiable, not a regression).
MethodNameCollision + dispatch path unchanged; iters mq.2 + mq.3
land them.
Five polymorphic prelude free fns (ne/lt/le/gt/ge) plus three E2E
fixtures: positive composition over Int/Bool/Str, user-ADT with
user-written Eq/Ord on IntBox, and Float-NoInstance with a
Float-aware diagnostic addendum cross-referencing DESIGN.md §"Float
semantics".
Two checker-side fixes were needed alongside the prelude additions,
both symmetric to the iter 23.4-prep visibility fix:
- linearity::check_module_with_visible — workspace-aware callee-mode
resolution so a Borrow-mode user fn forwarding into a prelude poly
fn (e.g. `at_most x y = not (gt x y)`) doesn't false-fire
consume-while-borrowed.
- mono::collect_mono_targets — distinguish rigid forall vars from
unbound metavars; rigid-bearing free-fn targets skip (they get
re-collected with concrete subst when the enclosing fn itself
monomorphises). Without this, a polymorphic body calling another
polymorphic free fn produced a spurious __Unit specialisation
whose body referenced compare at Unit.
Roadmap split: shipped Eq/Ord half checked, Show + print-rewire half
remains pending behind the heap-Str ABI prerequisite. DESIGN.md
§"Prelude classes" amended.
One pre-existing fixture (test_22b1_missing_method) renamed its
class method ne → tne to avoid collision with the new prelude `ne`.
Bench: check.py + cross_lang.py exit 0; compile_check.py exits 1
with one sub-ms check_ms.local_rec_capture at +26% (tolerance 25%) —
prelude-growth-related noise-band fluctuation, ratifiable per spec
§248-249 and journal Concerns.
Restructure ailang-check/src/mono.rs::monomorphise_workspace into a
single specialiser over every Type::Forall-quantified Def::Fn, covering
both class-method residuals AND polymorphic free-fn call sites in one
fixpoint pass. Remove the codegen-time specialiser (lower_polymorphic_call,
module_polymorphic_fns, mono_queue, mono_emitted, emit_specialised_fn,
plus the now-dead helpers apply_subst_to_term, descriptor_for_subst,
type_descriptor) entirely. Codegen sees only monomorphic Def::Fns after
this iter — no polymorphic call sites, no codegen-time queue.
Architecture changes:
- MonoTarget: struct → enum with ClassMethod / FreeFn variants; dedup
keys are guaranteed-disjoint via 'class'/'free' first component.
- collect_mono_targets: new FreeFnCall channel through synth (cleaner
than the plan's separate-walker proposal — one less data flow,
substitution tracking comes 'for free' via fresh metavars +
post-synth subst.apply). Plan Step 4.4 (polymorphic_free_fns env
field) consequently obsolete.
- synthesise_mono_fn_for_free_fn: new free-fn entry point; substitutes
rigid vars in BOTH the type AND the body (body substitution required
because free-fn bodies carry inner Lams whose param_tys reference
outer Forall vars — adapted from plan's 'body unchanged' sketch).
- mono_symbol_n: N-ary extension of mono_symbol; bit-stable for the
single-type-var case (hash-stability pin Task 1 fires zero times
through all eight refactor tasks).
- rewrite_class_method_calls → rewrite_mono_calls; interleaved-slot
collector preserves the positional-cursor invariant across both
channels.
- workspace_has_typeclasses → workspace_has_specialisable_targets
(principled correctness; old predicate happened to already be true
for every user workspace because the prelude is auto-injected).
Codegen cleanup:
- Two call sites of lower_polymorphic_call deleted (codegen/src/lib.rs
lines ~1939-1945, ~1965-1973).
- lower_polymorphic_call body, module_polymorphic_fns field +
population + Emitter wiring, mono_queue / mono_emitted, drain loop,
emit_specialised_fn — all removed.
- is_static_callee collapsed to module_user_fns-only.
- subst.rs apply_subst_to_term + descriptor_for_subst removed; synth.rs
type_descriptor removed (all dead post-removal).
- ail emit-ir command pipeline gains lift_letrecs + monomorphise_workspace
pre-passes (pre-iter-23.4 the codegen-time poly path was masking
this dependency — emit-ir is now consistent with build).
- Net codegen reduction: -285 lines lib.rs, -93 lines subst.rs.
Tests:
- mono_hash_stability.rs (new): regression pin for six primitive Eq/Ord
mono-symbol body hashes; stayed bit-stable through all eight refactor
tasks.
- mono_unification.rs (new): six tests covering variant-key disjointness,
free-fn target emission, free-fn synthesis with rigid substitution,
rewrite walker on free fns, identity for poly-free-fn-only workspaces,
end-to-end cmp_max_smoke runtime correctness.
- typeclass_22b3.rs: three test sites updated to MonoTarget::ClassMethod
enum form.
- 73 e2e + 18 typeclass + 81 codegen tests all green workspace-wide.
DESIGN.md §'Monomorphisation (post-typecheck, pre-codegen)' amended:
two-arm fixpoint described, disjoint-keyed dedup, cursor-aligned
walker, removed codegen-time path.
Bench check (all exit 0, 112 metrics stable): bench/check.py +
compile_check.py + cross_lang.py.
Plan parent: docs/plans/2026-05-11-iter-23.4.md (fab1685).
Spec parent: docs/specs/2026-05-11-23-eq-ord-prelude.md (841d65d).
Per-iter journal documents two adapted deviations from the plan
(synth-channel vs separate walker; body substitution; emit-ir fix);
no spec defects.
Quality-review follow-up on ct.2.2 (b3c3b60).
- Delete CheckError::AmbiguousCtor: its sole producer (the Pattern::Ctor
imports-fallback) was removed in ct.2.2, leaving the variant, the
code()/ctx() arms, and the diagnostic.rs doc-comment as dead surface.
Workspace grep confirms no remaining Rust consumers. AmbiguousType
stays (it still has a Term::Ctor producer, scheduled for symmetric
removal in ct.2.3).
- Refresh the per-module-overlay rationale comment in check_in_workspace:
it still cited the now-defunct Pattern::Ctor local-first / imports-
fallback path. The overlay's current job is duplicate detection plus
bare-name lookups for local Term::Ctor synth.
- Fold the awkward re-match in type_check_pattern: the first match on
expected now binds scrutinee_args alongside resolved_type_name /
resolved_td / resolved_owning_module, deleting the second match +
unreachable!(). Collapse the any-then-expect ctor lookup into a single
find().ok_or(UnknownCtorInPattern).
Build green, 449+ tests green across the workspace.
Three Minor items from the ct.1.5a quality review:
1. normalize_type_for_registry now recurses into
Type::Forall.constraints[].type_, symmetric to walk_type. Closes a
latent gap: a Forall with bare cross-module constraint types reaching
the registry would have produced a key disagreeing with the qualified
form. RED test: ct1_5a_normalize_recurses_into_forall_constraints.
2. Documented the bare-name limitation on Registry::type_def_module:
two modules each defining 'type Foo' collide at insert; the proper
fix (re-key as (owning_module, bare_name)) is out of ct.1's scope.
3. Removed the four iter-tag explanatory paragraphs at the
normalize_type_for_lookup call sites (check/lib.rs check_fn,
mono.rs three sites). Replaced each with a one-line pointer to the
helper's docstring per project comment policy.
Pins fieldtest finding B1 (docs/specs/2026-05-10-fieldtest-floats.md).
DESIGN.md and JOURNAL Floats.3 promise that pattern-matching on a
Float literal is hard-rejected at typecheck via
CheckError::FloatPatternNotAllowed, but the rejection only fires when
typecheck is reached directly. The full check pipeline runs
ailang_core::desugar::desugar_module first, and build_eq rewrites
Pattern::Lit { Literal::Float } arms into (== scrutinee 1.5_FLOAT)
before typecheck — so the existing iter-3.4 reject arm at lib.rs:2316
is unreachable on input flowing through check / check_module /
check_workspace.
The existing reject_float_pattern_in_match test in builtins.rs calls
synth(...) directly on a hand-built Term::Match, bypassing desugar; it
passes today but does not protect the spec'd property. This new test
exercises check(&m) end-to-end and asserts the FloatPatternNotAllowed
error — currently fails because check returns Ok(CheckedModule).
GREEN side handed off to skills/implement mini-mode.
Quality-review follow-up to 89311ee:
- Revert `substitute_rigids` to private. Task 3 does not call it; the
visibility bump was forward-looking for Task 4 (synthesise_mono_fn).
Task 4 will re-bump it in the same diff that uses it.
- Promote `build_module_types` to pub(crate); drop the inline
reimplementation in `mono::build_workspace_env`. Removes drift risk
between the two paths.
- Replace defensive `unwrap_or_default()` on `build_module_globals`
with `expect(...)` naming the pre-condition. Silent default violated
CLAUDE.md "no defensive validation in internal code paths".
- Add a one-line drift-risk reminder at the top of `build_workspace_env`
flagging that it and `check_in_workspace` both populate `Env`.
Build clean; all 5 typeclass_22b3 tests green; no workspace regressions.
Adds the missing positive counterpart to the no-instance test:
`show 42` with `instance Show Int` PRESENT must typecheck green.
This guards against registry-keying or threading bugs that would
otherwise sneak past the negative-only test (an empty registry at
typecheck time, or a key shape mismatch, would silently fire
no-instance even when the instance exists).
Also drops the dead `let _ = ws;` and its stale comment in
`check_in_workspace` — the line above already consumes
`ws.registry`, so the explicit drop is redundant. The remaining
comment is folded into the registry-threading comment so the
"registry is the only thing threaded" rationale is preserved.
Adds the workspace-global typeclass instance registry per Decision 11
"Resolution and monomorphisation". Built at the end of load_workspace
after the DFS over imports completes; keyed by (class-name, type-hash)
where type-hash uses the new canonical::type_hash (16-hex prefix,
parallel to def_hash and module_hash).
Three coherence checks fire from build_registry, each surfacing as a
distinct WorkspaceLoadError variant:
- OrphanInstance: `instance C T` not in C's or T's defining module.
- DuplicateInstance: two entries share the same (class, type-hash) key.
- MissingMethod: instance omits a required (non-default) method.
The CLI's workspace_error_to_diagnostic is extended with the three new
codes (orphan-instance / duplicate-instance / missing-method).
All existing Workspace { ... } construction sites get the new
`registry` field, defaulting to Registry::default() at synthetic /
test-only paths and threading through ws.registry.clone() at codepath
sites that already hold a real workspace.
Includes hash-stability regression tests (iter22b1_schema_extension_*
and iter22b1_classdef_empty_optionals_hash_stable) and the empty-
registry positive test against examples/sum.ail.json. Test count:
288 → 291 (3 new tests, all pass).
Adds Def::Class(ClassDef) and Def::Instance(InstanceDef) variants per
Decision 11 §"Form-A schema". All optional fields (superclass, doc,
default body) carry skip_serializing_if so canonical-JSON bytes of
pre-22b fixtures stay bit-identical.
Downstream match-on-Def sites are extended with explicit Class/Instance
arms. Behaviour for 22b.1 is placeholder (skip in typecheck/codegen,
one-line summary in pretty/manifest, placeholder marker in prose/print)
with TODO comments naming the deferred sub-iters (22b.2 typecheck,
22b.3 codegen, 22b.4 prose-projection arms).
Closes the 18-arc's stack-recursion limit. Recursive drop
cascades from 18c.4 overflow on long ADT chains (Linux's 8 MB
default stack maxes out around 1M cells of List). The new
opt-in (drop-iterative) annotation on a Def::Type switches the
synthesised drop_<m>_<T> body from recursive to iterative-with-
explicit-worklist for that type.
Schema:
- TypeDef.drop_iterative: bool. Default false; serde-skip
when false so existing fixtures' canonical JSON hashes stay
stable.
- Form-A: (drop-iterative) clause inside (data T ...).
Worklist runtime (4 new ABI symbols in runtime/rc.c):
- ailang_drop_worklist_new(initial_capacity)
- ailang_drop_worklist_push(wl, ptr)
- ailang_drop_worklist_pop(wl) -> ptr
- ailang_drop_worklist_free(wl)
Heap stretchy buffer, doubling on overflow, null-filtering on
push. Lean 4 / Roc precedent documented in the runtime; the
slot-repurposing strategy was considered and rejected because
not every box has a free pointer-typed slot to thread the
worklist through (Cons head is i64, slot 1 is ptr but it's
the field we're following — no free slot).
Codegen (emit_iterative_drop_fn_for_type): for a
drop_iterative type, drop_<m>_<T>(ptr %p) emits a worklist
loop. Fields of the SAME annotated type push onto the
worklist (mono-typed); fields of DIFFERENT types call their
own drop fn directly (recursive on those, but only if THEY
are themselves recursive — i.e. one level of cascade jump
maximum). Mono-typed-worklist is sound for the deep-self-
recursion case the iter targets (List of List of T just
needs the spine flattened).
Tests:
- examples/rc_drop_iterative_long_list — 1M-cell List of Int
with (drop-iterative) annotation.
- alloc_rc_drop_iterative_handles_million_cell_list E2E —
builds + runs under --alloc=rc, asserts clean exit. With
annotation: exits 0. Without annotation (control): SIGSEGV
at exit code 139 (verified by hand). Worklist is load-
bearing.
- iter18e_drop_iterative_emits_worklist_body_no_self_recursion
IR-shape: worklist body has br to loop_head AND no direct
recursive call into drop_<m>_<T>.
- iter18e_no_annotation_keeps_recursive_drop_body — control:
unannotated variant still emits the 18c.4 recursive shape.
- 3 surface parse-tests for the annotation round-trip.
Test deltas: e2e 58 -> 61 (+3), surface 18 -> 21 (+3). All
other buckets unchanged. cargo test --workspace green.
Known debt (deliberate):
- Mono-typed worklist: cross-type drop-iterative fields call
the other type's drop fn directly. A heterogeneous
worklist would be more general but adds tag tracking
complexity for a case (drop-iterative T containing
drop-iterative T') that's narrower than the deep-self-
recursion target. Documented in
emit_iterative_drop_fn_for_type's doc.
- Closure / Type::Var / Type::Forall fields fall back to
shallow ailang_rc_dec via field_drop_call — same as the
recursive variant.
- Dynamic-tag partial-drop fallback (head_or_zero epilogue
shallow dec when moved_slots non-empty) — out of scope per
brief.
Lowers Term::ReuseAs { source, body=Term::Ctor } under
--alloc=rc to a runtime refcount-1 dispatch. At the reuse-as
site:
%hdr_ptr = getelementptr i8, ptr %src, i64 -8
%refcnt = load i64, ptr %hdr_ptr
%is_one = icmp eq i64 %refcnt, 1
br i1 %is_one, label %reuse, label %fresh
The reuse arm overwrites the source's box in place: stores the
new tag at offset 0 and the new field values at offsets 8, 16,
... — no malloc, no outer drop. The fresh arm allocates a brand-
new box via ailang_rc_alloc, stores tag and fields, then shallow-
dec's the source. Both arms phi-join to the same `ptr` result.
Other allocators (gc, bump) keep 18d.1's identity behaviour
unchanged.
Static shape compatibility is enforced by a new pre-codegen
pass crates/ailang-check/src/reuse_shape.rs. It tracks the
path-resolved ctor of every let-bound and pattern-matched
binder, then checks each Term::ReuseAs site against the body's
ctor. Mismatches emit reuse-as-shape-mismatch with stable
ctx.reason sub-codes (field-count-mismatch, field-type-mismatch,
indeterminate-source-ctor, cross-module-body-ctor, ctor-not-in-
module) and a drop-the-wrapper SuggestedRewrite. Build fails on
mismatch — the structured diagnostic tells the author whether
to fix the shapes or remove the hint.
Field-cleanup design — deliberate scope cut:
The reuse arm does NOT dec the old pointer-typed field values
before overwriting them. Doing so on the canonical fixture
`(reuse-as xs (Cons (+h 1) (map_inc t)))` causes use-after-free:
the recursive map_inc(t) returns t's in-place-rewritten box, so
the "new tail" being stored is the same pointer as the "old
tail". A dec-old-then-store-new schedule would dec the box (to
zero, free), then store the freed pointer.
The root cause is upstream: 18c.4 doesn't yet null-out pattern-
moved field slots, so codegen can't statically distinguish
"old field still owned" from "already moved out". The chosen
trade-off: skip the field dec entirely; pattern-wildcarded
fields (rare in shipping fixtures) leak; pattern-moved fields
are the body's responsibility (consistent with the 18c.4 leak
baseline — Own params still leak today). 18d.2 ships zero
regression vs 18c.4, plus the perf win on the alloc + outer
cascade. Closing the leak is the move-aware-pattern story
queued for 18d.3 / 18e.
Tests:
- e2e reuse_as_demo_under_rc_uses_inplace_rewrite — runs
examples/reuse_as_demo.ail.json under --alloc=rc, asserts
stdout 9 and locks in the IR shape (icmp eq i64 ..., 1; the
reuse arm has no @ailang_rc_alloc call).
- workspace reuse_as_shape_mismatch_is_reported_on_cons_to_nil
— happy negative for the new diagnostic.
- 3 unit tests in reuse_shape::tests covering same-ctor-clean,
cons-to-nil-reject, and indeterminate-source-ctor-reject.
Test deltas: e2e 56, ailang-check unit 46 -> 49 (+3), workspace
9 -> 10 (+1). cargo test --workspace green. Hand-verified
--alloc=rc binary on reuse_as_demo: stdout 9, exit 0.
Schema floor for explicit reuse hints. Adds Term::ReuseAs
{ source: Box<Term>, body: Box<Term> } with serde tag "reuse-as",
form-A (reuse-as <source> <body>). Schema choice (wrapper, not
modifier-on-Ctor) and rationale recorded in DESIGN.md.
Codegen is identity under all --alloc strategies — lower body,
drop source on the floor. Iter 18d.2 will lower this as the
in-place rewrite under --alloc=rc.
User-facing diagnostics:
- typecheck reuse-as-non-allocating-body: body must be a
Term::Ctor or Term::Lam, the two AST shapes that allocate.
Other shapes (literal, var, app, ...) emit this with a
suggested_rewrite that drops the wrapper.
- linearity reuse-as-source-not-bare-var: source must be a
Term::Var referring to an in-scope binder. Anything else
(literal, nested expression) is rejected here. Suggested
rewrite drops the wrapper.
- linearity use-after-consume at a reuse-as site: source must
not have been consumed earlier in the body. Suggested rewrite
drops the wrapper.
- Visiting reuse-as marks source consumed for the rest of the
body, so a subsequent use of the same binder flags
use-after-consume against it.
Uniqueness inference treats source as Consume — the consume
shows up in the side table for the codegen consumer.
Tests:
- 4 surface parse-tests (round-trip, no-args, one-arg, full
parse_term/term_to_form_a round-trip).
- 1 typecheck unit test (non-allocating body).
- 2 linearity unit tests (non-var source, after-consume).
- 1 integration test (happy-path map_inc in all-explicit mode
is linearity-clean).
- 1 E2E test running the canonical map_inc-via-reuse-as fixture
under --alloc=gc, asserting stdout 9.
- New fixture examples/reuse_as_demo.{ailx,ail.json}.
Test deltas: E2E 55 -> 56, ailang-check unit 43 -> 46,
ailang-check workspace 8 -> 9, surface 14 -> 18. cargo test
--workspace green. No existing fixture's canonical JSON changed.
Ends the leak-everything era under --alloc=rc. Codegen now emits
ailang_rc_inc at every Term::Clone site and ailang_rc_dec at
end-of-scope of trackable RC-allocated let-binders. Default
--alloc=boehm path is byte-identical to before this iter.
Two parts:
(A) New module ailang-check::uniqueness — post-typecheck
dataflow producing UniquenessTable: BTreeMap<(def, binder),
UniquenessInfo>. consume_count is max-over-paths: at if/match
the walker saves state, walks each arm against the snapshot,
and merges by taking the per-binder max. Term::Clone is a
Borrow on its inner term — the explicit clone is the user's
signal that a fresh ref is being produced via inc.
(B) Codegen emission in ailang-codegen. Term::Clone emits inc
under --alloc=rc, gated on val_ty == "ptr" and
!val_ssa.starts_with('@') (top-level fn closure-pair globals
live in the LLVM data segment, not in runtime/rc.c's heap).
Term::Let emits dec at scope close iff the value is
rc_alloc'd (Term::Ctor / Term::Lam in escape set under
--alloc=rc), val_ty == "ptr", consume_count == 0 (no callee
or outer site already took ownership), body's tail SSA is
not the binder itself (caller-takes-ownership case), and the
block isn't already terminated.
Header declares of @ailang_rc_inc / @ailang_rc_dec are gated on
--alloc=rc so Boehm/Bump IR shape is unchanged.
Fixture examples/rc_box_drop.ail.json: single-cell Box(Int) ADT
where shallow free is sufficient (no boxed children). E2E test
alloc_rc_emits_dec_for_unique_let_bound_box runs it under both
gc and rc, asserts byte-identical stdout, clean exit, expected
output (42).
Scope cuts deferred to 18c.4: per-type drop fn / recursive dec
cascades for ADTs with boxed children (List, Tree still leak
their tails). Fn params have no dec emission yet (no static
"caller handed off ownership" signal under Implicit mode);
under explicit (own T) the signal exists but wiring is 18d.
Tests: E2E 52 -> 53, ailang-check unit 38 -> 43 (+5 uniqueness),
all other buckets unchanged. cargo test --workspace green.
Adds a per-fn linearity check that runs on every fn whose
param_modes are all explicit (Borrow or Own, no Implicit), tracks
each binder's consume/borrow state through the AST, and emits
two diagnostics with form-A `suggested_rewrites`:
- `use-after-consume` — a binder is referenced after it has
already been consumed.
- `consume-while-borrowed` — a binder is consumed while a borrow
of it is still live (sibling arg slot, or an enclosing-fn
Borrow param).
Fns with any Implicit param skip the check entirely; that's the
back-compat lane that keeps every existing fixture green. Pure
diagnostic addition: no IR change, no codegen change, no runtime
change.
Each diagnostic carries a non-empty `suggested_rewrites` whose
`replacement` is form-A AILang text (typically `(clone <name>)`).
Adds two new public entrypoints to ailang-surface — `parse_term`
and `term_to_form_a` — so the round-trip
`parse_term(term_to_form_a(t)) ≡ t` is the contract every
emitted replacement must satisfy. Tests assert the contract.
Linearity pass runs only on modules that typechecked clean (any
upstream typecheck error suppresses it for that module — running
on partly-defined IR would produce noise).
Tests: 3 unit tests in `linearity::tests`, 3 integration tests
in `ailang-check/tests/workspace.rs`, 1 serialisation test in
`diagnostic.rs`. `cargo test --workspace` green.
Adds (clone X) as a new Term variant. Form-A:
(let p (expensive_fn x)
(do consume_a (clone p)) ; explicit RC inc — needs 18c.3
(do consume_b p))
Schema floor for the LLM-aware RC design (Decision 10): explicit
clone is the author-visible alternative to implicit sharing. In
18c.1 the variant is purely additive — typechecker treats it as
identity (same type as inner), codegen lowers it to the inner
term's IR with no extra calls. Iter 18c.3 will replace the
codegen identity-arm with a single call:
Term::Clone { value } =>
let v = self.lower_term(value, ...)?;
self.emit("call void @ailang_rc_inc(ptr {v})");
Ok(v)
Match-arm count: ~10 sites across 6 files, all mechanical
structural recursion through `value`. The codegen `lower_term`
arm carries an explicit comment marking the 18c.3 emission seam.
Hash invariant: `(clone X)` uses a new serde tag "clone" that no
pre-18c.1 fixture contains. Every existing fixture's canonical
JSON is bit-identical (git diff examples/ empty).
New fixture examples/clone_demo.{ailx,ail.json}:
(let x 42 (do io/print_int (clone x)))
Stdout 42 under both --alloc=gc and --alloc=rc.
Tail-position propagates through clone (verify_tail_positions
treats `(clone tail-call)` as itself a tail call), per the
identity-of-clone semantics in 18c.1.
Verified:
- cargo build --workspace clean
- cargo test --workspace green: 52 e2e (+1), 14 surface parse
(+2 for clone tests), all other buckets unchanged
- ail render round-trip exact
- clone_demo --alloc=gc → 42; --alloc=rc → 42