fc5f4590f81b5eecfea3c51e005bfec6bc8623ae
36 Commits
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6b3ff3bbed |
tidy: rewrite stale 18b/18c.x doc-headers to match shipped state
First half of the post-18-arc tidy-iter (per the new CLAUDE.md iter-cycle rule). Architect's drift review flagged module-doc headers describing 18b's leak-everything snapshot or 18c.x's "deferred" debt that has since shipped. Doc-only changes; cargo build clean, cargo test --workspace green at e2e=61, no behavioural change. - runtime/rc.c top-of-file header: rewrote from "Iter 18b deliberately stops at the layout and the alloc... programs leak every allocation" (false post-18c.3) to a stage summary spanning 18b–18e. Fixed `--memory=rc` reference (renamed to `--alloc=rc` in 18b's CLI work). Updated ailang_rc_inc / ailang_rc_dec block comments to point at `drop_<m>_<T>` and the worklist as the cascade owners, not at "18c will wire this up". - ailang-check uniqueness.rs module-doc: replaced the "deferred to later iters" block (which named 18c.4 + 18d as future work, both shipped) with a current "what this pass does NOT do" block. Cross-fn reasoning is still genuinely deferred; per-type drop fns and recursive cascades are NOT this pass's job by design (codegen does them, not the inference). - ailang-codegen emit_drop_fn_for_type doc + in-body comment: rewrote "Iter 18e replaces the recursive call with an iterative worklist free" to describe the actual shipped behaviour — the 18e (drop-iterative) annotation routes annotated types through emit_iterative_drop_fn_for_type; unannotated types stay recursive by orchestrator design (cheaper IR, no worklist alloc). Held back for the second half of the tidy-iter (pending the ailang-bencher determinism result): - DESIGN.md Decision 10 line 700 says modes are "mandatory" but lines 940–952 admit they're opt-in with deferred mandatoriness. The bench result either supports tightening the mandatoriness claim or backs down to "opt-in with performance benefit" — orchestrator-level decision blocked on the bench data. - Dynamic-tag partial-drop debt is captured in JOURNAL but should be surfaced in DESIGN as a known precision gap. |
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ce6ab8ee44 |
Iter 18e: (drop-iterative) annotation + worklist allocator
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. |
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73545ab086 |
Iter 18d.2: codegen reuse-as in-place rewrite under --alloc=rc
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.
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74379b29e5 |
Iter 18d.1: Term::ReuseAs schema + linearity check
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.
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307a3ea848 |
Iter 18c.3: uniqueness inference + non-recursive RC inc/dec
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.
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09fb5bb113 |
Iter 18c.2: linearity check + suggested_rewrites
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. |
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7dfc88a4f3 |
Iter 18c.1: Term::Clone schema (no inc emission yet)
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
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b9ca8894a5 |
Iter 18a: (borrow T) / (own T) mode annotations on fn signatures
Adds form-A surface (borrow T) / (own T) wrappers in fn-type
params and ret slots. Internally these are not new Type variants
but per-position metadata on Type::Fn:
Type::Fn { params, param_modes, ret, ret_mode, effects }
enum ParamMode { Implicit, Own, Borrow }
This keeps Type itself unchanged, so unification, occurs, apply,
and ~190 other Type match-arms in the typechecker need no new
branch. Fields use serde skip-if-default predicates so canonical
JSON hashes for every pre-18a fixture stay bit-identical (sum,
list, hof, closure, list_map, etc.: zero diff under git).
Iter 18a is purely additive: typechecker treats modes as
transparent (mode-compat check deferred to 18c), no codegen
change (--alloc=gc / Boehm path unchanged), no linearity
enforcement. The annotation info flows into the JSON side-table
that 18c will consume.
Equality of mode slices is length-tolerant: a vec![] (the form
written by mechanically-updated construction sites that elide
modes) compares equal to vec![Implicit; n]. This kept the patch
from being a 100-site mechanical migration through the
typechecker. 18c will choose: keep the slack, or normalise to
full-length on construction.
New fixture examples/borrow_own_demo.{ailx,ail.json} exercises
both modes. list_length declares (borrow (con List)); sum_list
declares (own (con List)). Stdout: 3 then 6.
Documentation: DESIGN.md schema-additions block clarified that
modes are Type::Fn metadata (not Type variants); migration plan
flag rename --memory=rc → --alloc=rc to match the existing CLI
flag.
Verification:
- cargo build --workspace green
- cargo test --workspace green (154 tests, +1 vs baseline 153)
- git diff examples/{sum,list,hof,closure,list_map,...}.ail.json: empty
- borrow_own_demo runtime stdout: "3\n6\n"
- canonical JSON contains "param_modes":["borrow"] and ["own"]
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937782e36d |
Iter 16e: == polymorphic over Int / Bool / Str / Unit
Lifts the Int-only restriction on `==`. Declared type becomes
forall a. Fn(a, a) -> Bool; codegen monomorphises and dispatches:
Int → icmp eq i64
Bool → icmp eq i1
Str → call @strcmp + icmp eq i32 0
Unit → constant true (operands still emitted for side effects)
ADT / Fn / other → CodegenError::Internal
This unblocks 16c's build_eq for non-Int lit patterns. == joins
__unreachable__ as the second polymorphic builtin (same Forall
machinery).
- check/builtins.rs: == registered as Forall(a, Fn(a, a) -> Bool).
- codegen: lower_eq dispatch table; @strcmp declared in IR header
alongside @printf/@GC_malloc/@puts.
- examples/eq_demo.{ailx,ail.json}: covers all four supported
scalars including a Str-lit-pattern match.
- IR snapshots refreshed: only +declare i32 @strcmp(ptr, ptr) in
the header; every define body bit-identical.
- e2e + check + codegen tests: 124 → 133 (+9, of which +1 is the
e2e fixture and the rest exercise the new dispatch / typecheck
surface).
Other comparison ops (<, <=, >, >=, !=) remain Int-only — out of
scope for this iter.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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af35612c1d |
Iter 16d: chain-terminator via __unreachable__ builtin
Eliminates the Unit-typed chain default that 16c left in place.
Adds __unreachable__ : forall a. a — codegen lowers to LLVM
unreachable. The 16a/16c chain machinery now uses it as the
deepest fall-through, so exhaustive matches with non-Unit arms
no longer need a (case _ ...) workaround.
- check/builtins.rs: register __unreachable__ as Forall(a, a).
- codegen: Term::Var "__unreachable__" emits LLVM unreachable
and sets block_terminated; If/Match/fn-body gate downstream
work on that flag.
- desugar: chain default switched from Lit{Unit} to Var.
- examples/lit_pat: categorize_first's trailing _ arm removed.
Hash changes from c4faec3abc2ed388 to 644de0c0ec15fc17.
- examples/unreachable_demo: positive fixture using safe_div
with __unreachable__ in the impossible branch.
- e2e + desugar tests: 122 → 124 (+2).
Path-a from 16b.2 planning: real primitive over a desugar-time
exhaustiveness pre-check (which would need cross-module type
registry access from desugar).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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e5f9828a04 |
Iter 16b.7: nested LetRec mutual capture (params, not name)
Inner LetRec capturing outer LetRec's params now lifts cleanly via
the existing post-order traversal — outer's params are KnownType
in inner's outer-scope, so 16b.2's fast-path handles them. Inner
LetRec capturing outer's NAME remains rejected (closure-of-self
in body, deferred separately).
Plus hardening: lift.rs's deferred path tracks the outer LetRec
name in a parallel `enclosing_letrec_names` set so the symmetric
inner-captures-outer-name rejection fires there too — without it
a silent lift produced a runtime arity mismatch.
- examples/nested_let_rec.{ailx,ail.json}: outer counts down via
inner that captures the outer's threshold param.
- desugar.rs: clarified panic message for outer-name capture.
- lift.rs: enclosing_letrec_names tracking.
- e2e + desugar tests: 120 → 122 (+2).
End-of-16b series: feature-complete except for closure-of-self
in body and closure-with-polymorphism, both queued separately.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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76d61aeced |
Iter 16b.6: LetRec inside polymorphic enclosing fn
Lifts the monomorphic-only restriction. Lifted top-level fn now
becomes Forall(α..., Fn(t..., T...) -> tr) when the enclosing fn
is polymorphic; capture types may mention outer type vars and
the existing mono pipeline (Iter 12b/14a) specializes them
correctly at call sites.
- desugar.rs / lift.rs: scope-building unified — Forall fn-params
are now KnownType, not LetBound. Lift wraps augmented_ty in
Forall mirroring the enclosing fn.
- Name-as-value-in-in-term in a polymorphic enclosing fn is
rejected (eta-Lam wrap from 16b.5 has no Forall). Queued
separately as closure-conversion-with-polymorphism.
- examples/poly_rec_capture.{ailx,ail.json}: apply_n_times :
Forall(a). drives at Int and Bool to exercise two mono
instantiations.
- e2e + check + desugar tests: 116 → 120 (+4).
Codegen pipeline untouched — apply_subst_to_type substitutes
through Fn.params uniformly (original params + appended captures).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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ca507c9f52 |
Iter 16b.5: LetRec name as value (in_term only) via eta-Lam wrapper
Drops the direct-call-only restriction on the LetRec name when it
appears in `in_term`. No new ABI: the lift wraps the in-term in
`(let f (lam P (app f$lr_N P CAPTURES)) in_term')` so codegen's
existing Iter-8b closure-pair machinery handles it. Body-position
name-as-value still rejected (deferred — eta-of-self is harder).
- desugar.rs / lift.rs: split find_non_callee_use into body
(panic) and in_term (wrap).
- examples/local_rec_as_value.{ailx,ail.json}: no-capture path
(factorial passed to apply5 → 120).
- examples/local_rec_as_value_capture.{ailx,ail.json}: capture
path; lifted fn has captures, eta-Lam picks them up via 8b.
- e2e + desugar tests: 113 → 116 (+3).
Codegen Lam machinery handled the wrapped form on the first try.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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c0668178bb |
Iter 16b.4: LetRec captures of match-arm pattern bindings
Flips the desugar's MatchArm-capture rejection from panic to defer.
The 16b.3 lift_letrecs pass already handled match-arm bindings via
type_check_pattern_for_lift (Pattern::Var, Pattern::Ctor with sub-
patterns, ctor-field substitution against scrutinee args), so this
iter is a single-line classification change in desugar plus the
fixture and tests that exercise it.
- desugar.rs: MatchArm classification now defers (same arm as
LetBound); EnclosingLetRec panic remains for 16b.7.
- examples/local_rec_match_capture.{ailx,ail.json}: enclosing fn
pattern-matches on Pair<Int,Int>, inner LetRec captures both
match-arm bindings simultaneously. Lifts to
loop$lr_0(i: Int, threshold: Int, n: Int) -> Int.
- e2e + check + desugar tests: 110 → 113 (+3).
First fixture lifting more than one capture; subst_call_with_extras
already handled it generically.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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ca30606aec |
Iter 16b.3: post-typecheck lift for LetRec with Let-bound captures
Adds path-2 from the 16b.2 planning entry. Desugar now defers
LetRecs whose captures include Term::Let-bound names; a new
ailang-check::lift_letrecs pass runs after typecheck and uses the
elaborated env to resolve capture types. ailang-check learns a real
Term::LetRec typing rule in synth and verify_tail_positions.
- desugar: Term::LetRec arm gains a defer-arm; helpers promoted to
pub for reuse by the lift pass; find_non_callee_use moved before
classification.
- ailang-check::synth/verify_tail_positions: real LetRec rules
(effect-subset, locals install, recursive name in body+in_term).
- ailang-check::lift.rs (new, 720 LOC): post-typecheck lift with
post-order traversal, env-walk for capture-type resolution,
fast-path skip when no LetRec is present.
- ail::main.rs: build path now does load → check → desugar →
lift_letrecs → codegen.
- examples/local_rec_let_capture.{ailx,ail.json}: new fixture
capturing a let-bound `threshold` in a recursive helper.
- e2e + check unit tests: 106 → 110 (+4).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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8860600e37 |
Iter 16b.1 — local recursive let (no-capture)
Add `(let-rec NAME (params ...) (type ...) (body ...) (in ...))` as a form-A surface and a `Term::LetRec` AST variant. The 16a desugar pass lifts each LetRec whose body has no captures from the enclosing scope to a synthetic top-level fn `<hint>$lr_N` and substitutes the original name; typecheck and codegen never see LetRec. Capture detection panics at desugar time, queued for 16b.2. Tests: 95 → 99 (+1 e2e local_rec_factorial_demo, +2 desugar unit, +1 parse unit). The new fixture `examples/local_rec_demo` runs `fact` at n=1, 3, 5 → prints 1, 6, 120. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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0e90709a94 |
Iter 16a: nested constructor patterns via AST desugaring
Lifts the gate that rejected `(pat-ctor Cons a (pat-ctor Cons b _))`.
Approach: a pure AST → AST pass `ailang_core::desugar::desugar_module`
that flattens nested-Ctor sub-patterns into chains of single-level
matches with let-bound fresh vars and duplicate fall-through. Both
ailang-check and ailang-codegen call the pass at pipeline entry.
Hash-relevant canonical bytes are untouched: the pass runs after
load_module, in memory only. `check`'s returned CheckedModule.symbols
still carries hashes of the original defs so `ail diff` / `ail manifest`
see on-disk identities.
Lit sub-patterns inside a Ctor still rejected — that's the narrower
scope of `nested-ctor-pattern-not-allowed` post-16a; the variant doc
reflects the new meaning.
Fresh-name safety: `$` is a valid ident character in form (A), so
the Desugarer pre-walks every Term::Var / Pattern::Var name into a
BTreeSet and bumps its counter past any user-spelled `$mp_N`.
Already-flat matches go through `is_flat()` and emit identical AST
shapes; every existing fixture produces the same output as before.
New: examples/nested_pat.{ailx,ail.json} prints 30 from
first_two_sum on [10, 20, 30]. e2e test
`nested_ctor_pattern_first_two_sum` guards the path.
Tests: 92/92 (e2e 32→33, ailang-core unit 10→12).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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92f4b4f8c7 |
Iter 15b: std_list ships, three more compiler gaps closed
Second stdlib module. Tester wrote std_list.ailx (10 combinators, 164 LOC) and a consumer demo. std_list typechecked standalone; demo did not, surfacing three compiler bugs: 1. Check-side: Iter 14h's qualify_local_types was applied to Term::Var cross-module lookup but not to ctor-field types in Term::Ctor synth or Pattern::Ctor resolution. First recursive cross-module ADT (List has Cons a (List a) — recursive Con self-ref) triggers the bug. std_maybe slipped through because Maybe's ctors have no recursive Con field. 2. Codegen-side: same gap mirrored across 4 sites in codegen (Term::Ctor synth, lower_ctor, lower_match) plus a tweak to unify_for_subst (recurse on re-bind instead of strict equality so sibling-derived List<Int> accepts nullary-ctor's List<$u> wildcard). 3. Const codegen: emit_const rejected non-literal const bodies. The demo's xs : List<Int> = Cons 1 (...) requires it. Fix: per-module const table, Term::Var resolution loads literal consts from global, inlines non-literal bodies. Bare and qualified refs both supported. All three fixes carry an "Iter 15b" code comment at their site. ~349/25 LOC across ailang-check, ailang-codegen, e2e.rs. Tests 85 -> 87. New e2e std_list_demo asserts 11-line stdout: length 5, is_empty false/true, head via from_maybe, tail length, append length, reverse head, map double head, filter is_even length, fold_left sum, fold_right sum. New ailang-check unit test cross_module_recursive_adt_term_and_pat_ctor covers both the original bug and the symmetric pat-ctor latent twin. Hash invariance: all pre-15b fixtures + std_maybe defs bit-identical. 14a / 14e / 14h regressions all green. Cumulative state: 2 stdlib modules (std_maybe, std_list), 14 combinators, cross-module recursive ADT working end-to-end. Three compiler bugs surfaced + fixed in dogfood since 14a (each dogfood iter has surfaced ≥1). Authoring observation: form (A) at 10 combinators is fine; main friction is paren-counting in nested seq chains, not the form itself. n-ary seq would help but is sugar. Plan 15c: 1000-element list stress test for fold_left (tail-call- marked) vs fold_right (constructor-blocked). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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12e9a9c0cc |
Iter 14h: cross-module parameterised-ADT import (15a unblocked)
The 15a tester surfaced a real compiler limitation: cross-module
type and ctor references were not implemented. Iter 5b only
carried fns + consts via module_globals; types/ctors stayed
module-local with an explicit DESIGN comment. This iter completes
the cross-module mechanism using the Iter-5b convention:
qualified-only access via module.Name.
Implementation:
- ailang-check: Env.module_types populated by build_module_types.
Qualified resolution in Type::Con, Term::Ctor, with cross-module
fallback for pat-ctor (local wins, multi-import collision -> new
ambiguous-ctor diagnostic). Four new unit tests.
- ailang-codegen: workspace-level module_ctor_index replaces
per-Emitter table. lookup_ctor_by_type / lookup_ctor_in_pattern
thread qualified type names through box-tag and field-type
resolution.
- examples/std_maybe_demo.{ailx,ail.json}: type-name slots now
qualified (std_maybe.Maybe).
- New e2e test cross_module_maybe_demo asserts the demo prints
["7","99","true","true","42"].
Net diff ~550 LOC. Tests 80 -> 85. All Iter 14a regressions
(parameterised_box_round_trip, parameterised_maybe_match,
list_map_poly_inc_then_prints, polymorphic_id_at_int_and_bool)
verified green — the 14h derive_substitution change (default
unpinned forall vars to Unit for monomorphiser) sits on a
different layer than 14a's $u-wildcard fix and they coexist.
Hash invariance: all five std_maybe def hashes unchanged. All
80-test-suite fixtures retain bit-identical hashes — cross-module
support is purely additive at the language level.
Process note: the std_maybe.ailx file landed in the 14g commit
via a sloppy git-add-A; should have spotted it before staging.
Not a correctness issue but a hygiene one.
Implementer flagged Unit-default monomorphisation as wasteful-
but-correct; rethink if stdlib grows toward overload-resolution-
style cases needing distinct unconstrained instantiations.
std_maybe stdlib effectively ships: module + four combinators +
e2e-tested consumer demo. Plan 15b: std_list importing std_maybe,
exercising Maybe-returning head/tail and tail-call-marked
fold_left.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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41d406bcbb |
Iter 14g: Term::If restored (revert of 14d)
Reconsidered 14d's removal of Term::If. The decision was wrong.
"No redundancies" requires judgment; reducibility (if -> match)
is not redundancy in the strong sense. Term::If is a primitive
control-flow shape; bool branching is the second most common
shape after sequencing, and removing it cost 3x tokens on every
branch site (`(if c a b)` 4 tokens vs the match-on-Bool form
12 tokens).
Meta-pattern fixed: I had been treating user observations as
directives. User said "if is a subset of match"; I jumped to
remove it citing CLAUDE.md, with no independent conviction.
The leak appeared in 14f's JOURNAL prose ("three lines for what
if used to do in one"), which read as regret. Two feedback
memories saved (memory/feedback_user_suggestions_not_directives,
memory/feedback_no_nostalgia_for_removed_features) to head this
off.
Implementation: mechanical reverse-application of 14d's diff at
every site (AST, check including the 14e tail-position arm,
codegen 4 sites, surface parser/printer, pretty, CLI walker,
e2e test mutation). Removed lower_bool_match helper — it existed
only because 14d's migration shape needed codegen for non-ptr
match scrutinees; with Term::If back, match-on-Bool returns to
its pre-14d unsupported state. Three fixtures (sum, sort, max3)
restored to pre-14d shape. gc_stress (added in 14f) also
migrated back to (if ...) since it was authored under the wrong
constraint.
14e (musttail) and 14f (GC_malloc) verified intact in IR.
Hashes restored to pre-14d values:
- sum.sum: db33f57cb329935e
- sort.insert: 697fcb9f30f8633a
- max3.max: 65c45d6a45dd0a72
- max3.max3: 624b14429bf302f5
All other defs across all 18 fixtures keep their post-14f
hashes. Tests 80/80 green; cargo doc 0 warnings. LOC delta
+265/-295 net -30.
DESIGN.md Decision 7 preserved with a "Status: REVERTED" header
for audit trail. Form-(A) `if-term` production restored.
Plan: back to 15a (std_maybe stdlib module).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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d64031c234 |
Iter 14e: explicit, verified tail calls
Decision 8 ships. Term::App and Term::Do gain tail: bool with serde-default false and skip-when-false serialisation. New typecheck pass verify_tail_positions enforces tail-position rules (Scheme-style propagation through match arms, seq.rhs, let body, lam body). Codegen emits musttail call for marked App calls. Hash invariance verified: only the two migrated print_list defs (list_map_poly.print_list, sort.print_list) changed hashes; all other defs across all 18 fixtures kept bit-identical hashes — confirms the skip-when-false serialisation rule works. Tests 76 -> 79: tail_call_in_non_tail_position_is_rejected, tail_call_in_tail_position_is_accepted, plus an IR-grep e2e test asserting that print_list's recursive call site emits musttail in the lowered IR. Existing 25 e2e tests unchanged in behaviour (map -> [2,3,4], sort -> sorted list). IR evidence at the recursive site: %v7 = musttail call i8 @ail_list_map_poly_print_list(ptr %v6) ret i8 %v7 Two deviations called out in the implementer report and JOURNAL: 1. tail-do uses tail call, not musttail. Cross-type return (runtime helpers return i32, AILang Unit is i8) would have LLVM reject musttail. Path is implemented but not exercised by any current fixture; proper fix is runtime-helper signature change, punted. 2. block_terminated flag in codegen so tail-call emit (musttail call + ret) doesn't get a duplicate trailing ret from surrounding code (match-arm phi, fn-body, lambda thunk). Internal plumbing; required for IR well-formedness. Form (A) productions now at ~30, exactly the constraint-1 budget. Future surface additions need to retire something or explicit-budget-rebalance in DESIGN.md. GC notes from implementer survey land in JOURNAL: - Allocations cluster in lower_ctor; every term-ctor does malloc(8+8n). - Tail recursion does not reduce alloc pressure, only stack. For map-style ctor-blocked recursions, allocation IS the bottleneck. - Per-fn arena is sound only when fn return type contains no boxed ADT. Most current fixtures violate this. Plan 14f: Boehm conservative GC (GC_malloc, -lgc) as a first cut. Single-iter integration, no AST/schema change. Stress test: build a 100k Cons list, observe RSS doesn't blow up. After 14f the language is feature-complete enough for stdlib work (15a). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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8d97a924de |
Iter 14d: remove Term::If as a redundancy
Term::If was semantically a subset of Term::Match on Bool. Per CLAUDE.md the language must contain no redundancies; two AST nodes for the same operation produces an authoring decision with no semantic content and a duplicate codegen path. Removed. Migration shape (applied to sum, sort, max3 fixtures): (if c a b) -> (match c (case (lit-bool true) a) (case _ b)) No schema version bump (per user direction): no third-party consumes ailang/v0, so version ceremony is pure overhead. Edited AST and fixtures in place; pinned hashes in hash.rs updated. Implementer deviation, called out and justified: a tightly-scoped lower_bool_match helper (~95 LOC) was needed in codegen because the existing match path rejects i1 scrutinees and Pattern::Lit. Helper accepts only the canonical two-arm migration shape, errors on anything else, emits the same br/phi IR Term::If used to. No generalisation of the ADT-match codegen. Diff: 13 files, +286/-221 (net +65 LOC). AST got smaller (one variant gone), form-(A) got smaller (one production gone), typecheck got smaller (one branch gone). Codegen got slightly larger by the bool-match helper. Hash deltas: sum.sum, sort.insert, max3.max, max3.max3 changed. All other defs (e.g. sum.main, sort.IntList, sort.sort, sort.print_list, max3.main) kept bit-identical hashes — confirms canonical-JSON byte format intact. Verification: 76/76 tests green; sum->55, max3->17, sort->[1,1,2, 3,3,4,5,5,5,6,9] (identical to pre-migration). cargo doc 0 warnings. Tail-call survey by implementer (informs 14e): print_list recursions are already in tail position (rhs of seq inside match arm); map/sort/insert recursions are NOT (constructor-blocked inside Cons applications). 14e annotation will benefit terminal recursions; ctor-blocked ones need accumulator-form rewrites in source, not a compiler-side transform. Decision 7 added to DESIGN.md. JOURNAL entry has the language- completion sequence (14d done, 14e tail-calls, 14f GC, 15a stdlib). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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d8727d5bdb |
Iter 13e: rustdoc polish for ailang-check
Second docwriter mission. Pure rustdoc additions (no API or behaviour change) across the typechecker crate: - builtins.rs: module root expanded; EffectOpSig (struct + 3 fields) and install() got /// strings. - diagnostic.rs: Severity (+ both variants), Diagnostic (+ severity/code/message fields) and the error/with_def/with_ctx helpers got /// strings; super:: link rewritten to crate::. - lib.rs: CheckError + every variant, to_diagnostic, CheckedModule (+ symbols), check, Env (+ globals/effect_ops/types/ module_globals/current_module), CtorRef (+ type_name) got /// strings; crate-root prose upgraded with intra-doc link to check_module. Verification: cargo doc --no-deps zero warnings; cargo build --workspace green; cargo test --workspace 64/64 + 3 ignored doctests green. Diff is 188 LOC, all in /// or //! lines (verified by filtering). Findings (not fixed; orchestrator-deferred): - Env is pub but only privately constructable. - CheckError::CtorArity and ::ArityMismatch share the public diagnostic code "arity-mismatch" by design. - Diagnostic / Severity reachable via two paths because the diagnostic module is pub. JOURNAL.md updated with the Iter 13e entry. 13f (ailang-codegen + ail) and 14a (List a rewrite) remain queued. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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c90926dbba |
Iter 13d: rustdoc polish for ailang-core + new docwriter agent
Adds ailang-docwriter to /agents/ — a recurring role for keeping crate-, module-, and pub-item-level rustdoc accurate. First mission: ailang-core. Crate root, every module root, every pub item documented; intra-doc links throughout; Iter-13a additions (TypeDef.vars, Type::Con.args) get an explicit backwards-compat note. Two stale broken-link warnings in ailang-check fixed in passing. cargo doc --no-deps now warning-free across the workspace; promoted to verification invariant 6 in DESIGN.md. |
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078262271a |
Iter 13a: parameterised ADT schema + checker
Adds type parameters to ADTs. `TypeDef` gets a `vars: Vec<String>` and
`Type::Con` gets an `args: Vec<Type>`, both `skip_serializing_if =
"Vec::is_empty"` so canonical-JSON hashes of every pre-13a definition
stay bit-identical (regression test in `hash::tests`).
Checker:
- `check_type_def` installs `td.vars` as rigid vars while validating
ctor field types — `Cons(a, List a)` now resolves both occurrences
of `a` and the recursive `List a` use.
- `check_type_well_formed` accepts `Type::Con { name, args }` only
when the type is in scope and `args.len()` matches its declared
arity; primitives stay zero-arg.
- `Term::Ctor` synth instantiates `td.vars` with fresh metavars, so
`MkBox(42)` synthesises to `Box<$m0>` and unifies field types
through the surrounding context.
- `type_check_pattern` substitutes the scrutinee's concrete type-args
through ctor field types, so a `MkBox(x)` arm against a `Box<Int>`
scrutinee binds `x : Int`.
- `check_fn` validates declared param/return types via
`check_type_well_formed` so arity mismatches on parameterised
ADTs surface before the body is checked.
`unify`, `occurs`, `Subst::apply`, `substitute_rigids`, and codegen's
`unify_for_subst` / `apply_subst_to_type` recurse into `args`.
Pretty-print:
- `type_to_string` renders `Box<Int>` for parameterised cons.
- `def_block`/`manifest` carry the `[a b ...]` vars list.
Three new check unit tests cover ctor instantiation at a concrete
arg, the polymorphic-`unbox` round trip at two distinct
instantiations, and arity mismatch on `Box<Int, Bool>`. All 62 tests
green; clippy clean (two pre-existing warnings untouched). Hashes
db33f57cb329935e (sum) and b082192bd0c99202 (IntList) verified
unchanged.
Codegen still synthesises `Type::Con` with `args: vec![]` from
`Term::Ctor` — full ADT monomorphisation lands in 13b.
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1c8c1a0441 |
Iter 12a: typechecker polymorphism via Forall instantiation
Polymorphism is now opt-in via Type::Forall at top-level def types.
Implementation is the textbook ML rule: peel the Forall when checking
the def body, instantiate fresh metavars at every use site, unify.
Mechanics:
- New Subst struct + unify(): standard occurs-check unification, with
effects compared as a set.
- Metavars encoded inside the existing Type::Var as Type::Var{name:
"$m<id>"}. The "$" prefix can't collide with source-level identifiers,
so the AST schema stays untouched and existing module hashes don't
shift (verified: sum.ail.json keeps db33f57cb329935e / d9a916a0ed10a3d3).
- check_fn peels an outer Forall and installs the rigid vars in
Env.rigid_vars, where check_type_well_formed accepts them. Inner
forall vars unify only with themselves.
- Term::Var lookup runs maybe_instantiate on the resolved type, so
polymorphic globals get fresh metavars at each occurrence. Two
use sites of the same `id` get independent ($m0)→$m0 and ($m1)→$m1
shapes — no bleed.
- All expect_eq calls inside synth replaced with unify; expect_eq is
still used for the App-arity / etc. structural checks where no
metavars can appear.
Constraints kept tight on purpose:
- Const types may not be Forall (rejected outright).
- Forall in ADT field positions still rejected.
- No higher-rank polymorphism: App's callee can be Forall (defensive
instantiate) but the body doesn't introduce new quantifiers.
- No let-generalisation of lambdas — all polymorphism is at top-level
defs only.
Codegen still rejects Forall types, so polymorphic programs typecheck
but don't yet compile. Iter 12b adds monomorphisation.
Tests: 14/14 (was 10/10) — added polymorphic_id_def_typechecks,
polymorphic_id_can_be_used_at_int_and_bool,
polymorphic_id_consistency_is_enforced, polymorphic_apply_with_two_vars.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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b357a1dc4a |
chore: clear remaining clippy warnings
Four small cleanups, no semantic change. Workspace is now clippy- clean (default lints): - ailang-check: collapse `if-same-then-else` for primitive vs ADT type lookup into one branch via a local boolean. - ailang-codegen: iterate `all_strings.values()` directly instead of `for (_mname, entries) in &all_strings`. - ailang-codegen: drop `import_map` parameter from `collect_captures` — was threaded speculatively through every recursive call but never read. - ailang-codegen: `s.len()` instead of `s.as_bytes().len()` in c_byte_len (the warning predates Iter 6). Tests: 52 still green. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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c75517ac79 |
Iter 10: Term::Seq sequencing operator
Adds `Term::Seq { lhs, rhs }` (serde tag "seq") as a first-class
AST node for sequencing effectful expressions. Equivalent in
behaviour to `let _ = lhs in rhs`, but the dedicated node gives the
pretty-printer and diagnostics a cleaner shape and surfaces the
intent ("run for effect, then yield rhs") to future tooling.
Typecheck: lhs must be Unit; rhs's type is the result; effects
accumulate.
Codegen: lower lhs (drop SSA), lower rhs (return).
Capture / deps walkers: recurse into both sides.
Refactored examples/list_map.ail.json's print_list to use seq
instead of `let _ = ...`. Output unchanged (2/4/6).
Hash stability: existing examples without Term::Seq serialise
bit-identical; only list_map.ail.json's hashes changed (deliberate
refactor).
Tests: 51 green (was 50). New unit test
`ailang_check::tests::seq_lhs_must_be_unit` covers the type-error
path; existing list_map e2e covers the happy path.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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ecde8fa7af |
Iter 8b: lambdas with capture (Term::Lam + closure conversion)
Adds anonymous functions to AILang. A lambda value is constructed by
malloc'ing an env struct that holds its captured locals, plus a
closure pair `{ thunk_ptr, env_ptr }` (Iter 8a's ABI). The lambda's
body lifts to a top-level thunk `@ail_<m>_<def>_lam<id>(ptr %env,
params...)` that unpacks captures back into named locals before
running.
AST: new Term::Lam { params, paramTypes, retType, effects, body }.
Serde tag is "lam"; existing modules (no Lam) serialize identically,
so all current hashes stay stable.
Pretty-printer: renders `(\\ (x: T ...) -> R . body)`.
Typecheck (ailang-check): a lambda's type is the declared Type::Fn.
Body's effect set must be a subset of declared effects (no row
polymorphism). Constructing a lambda is pure — only calling it picks
up the declared effects, via the existing App branch.
Codegen (ailang-codegen):
- collect_captures: free-var walk; excludes builtins, current-module
top-level fns, and qualified names.
- lower_lambda: per-fn lam counter, save/restore emitter state, emit
thunk into a deferred queue (flushed after the parent fn), pack env
+ closure pair on heap, register the resulting closure-pair SSA in
the sidetable so subsequent indirect calls find it.
- Capture sigs propagate: a fn-typed capture keeps its FnSig in the
thunk's sidetable so `f(args)` inside the body still indirect-calls.
- Env layout: 8 bytes per capture (typed load/store reads only the
needed bytes; padding wasted but uniform).
Tests: 49 green (was 48). New examples/closure.ail.json + e2e
`closure_captures_let_n` exercises `let n = 3 in apply(\\x. x + n, 39)`
end-to-end and asserts the binary prints 42.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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1a448309fa |
Iter 6: deps hardening, multi-diagnose, DESIGN audit
- ail deps now filters builtins, fn params, and let/match-pattern bindings. New value_names() in ailang-check::builtins is the single source of truth shared with the typechecker install path. walk_term threads a scope set; qualified `prefix.def` refs pass through. - check_in_workspace returns Vec<CheckError>; check_workspace accumulates body diagnostics across defs and modules. Pass-1 (top-level symbol table) and per-module type-def setup stay fail-fast — corrupt env would taint later diagnostics. - DESIGN.md "What the MVP is NOT" was lying (ADTs, strings landed in Iter 2/3). Renamed to "What is not (yet) supported" and split into "not yet" + supported/smoke-tested. JOURNAL Iter 6 entry records the architecture self-check. Tests: 47 green (was 44). +2 deps filter tests in e2e, +1 multi-diagnose test in ailang-check workspace integration. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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7577ab8a90 |
Translate project content to English
Make English the project-wide language: all comments, string literals, CLI help text, design docs, journal, agent prompts, and README. Only CLAUDE.md (the user's own instruction file) stays German, and the live conversation between user and Claude continues in German. Adds a new "Project language: English" section to docs/DESIGN.md as the durable convention. No logic changes — translation only. Four internal error strings in the typechecker were retranslated; no test asserts on their wording. Verified: cargo test --workspace passes (44/44). Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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b2878fe655 |
Iter 5b: Cross-Module-Typcheck mit qualifizierten Verweisen
Neue API check_workspace(&Workspace) -> Vec<Diagnostic>; check_module hebt das Modul intern in einen Trivial-Workspace. Term::Var mit genau einem Punkt im Namen ist ein qualifizierter Verweis <prefix>.<def>, aufgelöst über Import-Map (alias-oder-modulname → echter Modulname). Drei neue Diagnostic-Codes: unknown-module, unknown-import, invalid-def-name. ail check lädt jetzt immer via load_workspace; Loader-Fehler werden im JSON-Modus zu strukturierten Diagnostics (module-not-found, module-cycle, …). DESIGN.md und JOURNAL.md dokumentieren die Konvention. Hash-Stabilität: alle ir_snapshot_*- Tests bitidentisch grün, kein neuer AST-Knoten. |
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93fe7237e3 |
Iter 4a: ail check --json mit strukturierten Diagnostics
Neue Top-Level-API check_module(&Module) -> Vec<Diagnostic> in ailang-check, plus stabile Codes (unbound-var, type-mismatch, arity-mismatch, non-exhaustive-match, unknown-ctor-in-pattern, duplicate-def, …). CLI bekommt --json-Flag für maschinenlesbares Output, Exit 1 bei Errors. Text-Modus unverändert. E2E-Test check_json_unbound_var sichert das Format ab. |
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21606c9340 |
Iter 3: ADTs + Pattern Matching
- AST: Def::Type mit Ctors; Term::Ctor (Konstruktion) und Term::Match
mit Arm/Pattern. Patterns: Wild, Var, Lit, Ctor { ctor, fields } —
Sub-Patterns im MVP auf Var/Wild beschränkt.
- Typchecker: Type-Registry, ctor_index für O(1)-Resolution, Pattern-
Bindings, Exhaustiveness-Check gegen volle Konstruktormenge plus
Negativ-Tests.
- Codegen: Boxed-Heap-Layout via malloc; Tag in Offset 0, Felder ab
Offset 8 in 8-Byte-Slots. Match lowert zu load tag + switch + Phi
am Join. Default-Block ist unreachable, wenn vom Typchecker geprüft.
- examples/list.ail.json: rekursive Int-Liste mit sum_list via match.
E2E-Test + Exhaustiveness-Tests. 19/19 Tests grün.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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6e6b6a14fb |
Iter 2: verschachteltes if, Strings, JSON-Output, deps
- Codegen: current_block-Tracking ersetzt die Heuristik im phi-Lowering; verschachtelte if-Ausdrücke produzieren jetzt korrekte LLVM IR. examples/max3.ail.json + Test schützt gegen Regression. - Strings: Lit::Str / Type Str / io/print_str Effekt-Op; Strings sind im MVP immutable Konstanten. examples/hello.ail.json als zweiter E2E-Test. - CLI: --json für manifest und builtins; neuer deps-Subcommand listet statische Symbol-Referenzen pro Definition. Effekt-Ops mit Prefix effect: markiert. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |
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2fbcdba0b1 |
MVP: AILang-Sprache mit JSON-AST, Typchecker, LLVM-IR-Backend
Erste lauffähige Iteration. examples/sum.ail.json wird zu nativem Binary kompiliert und druckt 55 (Summe 1..10) als End-to-End-Test. Architektur: - ailang-core: hashbares JSON-AST + canonical-form + pretty-printer - ailang-check: monomorpher HM-Subset + Effekt-Set-Tracking - ailang-codegen: LLVM-IR-Text-Emitter (kein libllvm-link) - ail: CLI mit check/manifest/render/describe/emit-ir/build/builtins Designentscheidungen sind in docs/DESIGN.md dokumentiert; der Verlauf in docs/JOURNAL.md. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com> |