Decision 9 ships. Through Iter 14e every ADT box, lambda env, and
closure pair was leaked. This iter substitutes GC_malloc for malloc
in all four IR allocation sites and links -lgc. No language change,
no AST change, no schema change.
Diff: 5 files modified, ~30 LOC net.
- codegen/lib.rs: 4 substitutions @malloc -> @GC_malloc.
- ail/main.rs: .arg("-lgc") in the clang invocation.
- 5 IR snapshot files: mechanical s/@malloc/@GC_malloc/, 9
occurrences. IR is bit-identical to pre-14f modulo this
substitution — exactly Decision 9's promise.
- e2e.rs: new test gc_handles_recursive_list_construction.
- examples/gc_stress.{ailx,ail.json}: new fixture, builds a 50-
element list via recursive Cons, sums it (1275).
Hash invariance verified: every existing fixture def hash
unchanged (codegen and link line are downstream of canonical
bytes; AST didn't move).
Tests 79 -> 80, all green. Existing 79 byte-identical stdout.
gc_stress -> 1275. list_map_poly -> 2/3/4 unchanged. sort
sorted-list unchanged. cargo doc 0 warnings.
GC notes (pertinent to future work):
- GC_INIT() not needed on Arch libgc 1.5.6 (auto-init via
__attribute__((constructor))).
- No conservative-scan over-retention observed.
- -lgc alone sufficient for link (pthread/dl transitive).
Pattern-shape note from gc_stress fixture writing: the post-14d
"if-then-else" replacement is `(match (app == n 0) (case
(pat-lit true) ...) (case (pat-wild) ...))`. Three lines for
what `if` used to do in one, but uniform with the language.
Worth flagging for the stdlib brief.
Language is feature-complete enough for stdlib. The three
blockers identified at the 14b boundary (redundancy 14d, tail
calls 14e, GC 14f) are all done. Plan 15a: first stdlib module
std_list.ailx with length/append/reverse/map/filter/fold_left/
fold_right/head/tail/is_empty.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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>
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>
Strictly additive new crate per Decision 6 architectural pin.
JSON-AST stays the source of truth; ailang-surface is one
producer/consumer of ailang_core::ast::Module values. ailang-check
and ailang-codegen unchanged.
Crate contents:
- src/lex.rs (~264 LOC): 3-rule lexical core. Whitespace and parens
delimit tokens; semicolon to EOL is comment; first-character
classifier (digit -> int, " -> string, else -> ident).
- src/parse.rs (~1041 LOC): hand-written recursive descent. One Rust
fn per EBNF production. No parser-combinator dep.
- src/print.rs (~371 LOC): deterministic pretty-printer. Round-trip
contract with parse() is the surface's correctness gate.
- tests/round_trip.rs (~128 LOC): integration test runs every
examples/*.ail.json fixture through print -> parse -> canonical
JSON, asserts canonical-byte equality with the original.
Two AST-driven form widenings beyond the 14b sketch (both folded
into DESIGN.md Decision 6):
- lam-term carries (typed name type) params, ret type, and
optional effects (Term::Lam has parallel param_tys/ret_ty/
effects fields).
- import-clause admits (import name (as alias)?) (Import.alias
is Option<String>).
Production count ~28, under 30-rule budget. Constraint 1
(formalisable for foreign LLM) intact.
Verification:
- cargo build --workspace green.
- cargo test --workspace: 76 tests green (was 64; +9 surface unit,
+2 round-trip integration). All 17 fixtures round-trip
byte-identical at canonical level. 3 hand-written .ailx
exhibits parse to canonical JSON identical to their .ail.json
siblings.
- cargo doc --no-deps zero warnings (DESIGN.md item 6 invariant).
Manual smoke test (ail parse → ail run): hello, box,
list_map_poly all produce expected output through the form-(A)
authoring lane end-to-end.
CLI: ail parse <file.ailx> [-o <file.ail.json>]. .ail.json
remains a first-class input to every existing subcommand.
Plan 14d: stdlib (std_list.ailx with length/filter/fold/concat/
reverse/head/tail), authored in form (A) from day one.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
User redirected at iter boundary: writing a stdlib in JSON was
the wrong move. The language is supposed to be the one I program
*best* in, and JSON-AST authoring is rationalisation, not
strength.
DESIGN.md Decision 6 captures the constraints that fall out of
the "formalisable for a foreign LLM" hard requirement (no
precedence, no semantic indentation, ASCII only, every AST node
a uniquely-tagged form), sketches three candidate notations with
the same `map` encoded in each, and picks form (A) — fully-tagged
S-expressions — as the first attempt with explicit rollback path
to form (C) if (A) hurts authoring.
Form (A) shape:
- 3-rule lexical core: sexpr / atom / token-classified-by-
first-character.
- Every AST node has a unique head keyword. No case-rule (no
"capitalised head means ctor"); ctors are explicit via
`(term-ctor TypeName CtorName args)` and `(pat-ctor CtorName
fields)`.
- Bare atoms get their sort from the parent slot (type-var
inside `(con NAME args)`, term-var inside `(app HEAD args)`,
pat-var inside `(pat-ctor CTOR fields)`, integer literal in
term position, etc.).
Empirical exhibits, hand-encoded:
- examples/hello.ailx 5 LOC (JSON was 36 pretty / 21 canonical)
- examples/box.ailx 25 LOC (JSON was 160 / 88)
- examples/list_map_poly.ailx 50 LOC (JSON was 394 / 230)
4-8x line reduction, ~4x character reduction. Bigger gains on
bigger programs since overhead is proportional to AST depth.
None are parseable yet — header comments say "Iter 14b design
exhibit, parser lands in 14c".
Two small spec issues caught while writing the exhibits and
folded back into DESIGN.md before committing:
- Operator idents (`+`, `==`) need the token-by-first-char
classification rule, not a word-shaped regex.
- Bool literals (`true`/`false`) reserved in term context;
unit is explicit `(lit-unit)`.
Tests unchanged (this iter is paper). 25/25 e2e green.
cargo doc --no-deps zero warnings.
Plan 14c: new crate `ailang-surface` with PEG parser, round-trip
hash-equivalence gate against every existing `examples/*.ail.json`,
CLI subcommand `ail parse`. If round-trip holds, stdlib starts
in `.ailx` form (Iter 14d).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Dogfood payoff for parameterised ADTs (13a/b/c). Adds the first
program to nest a nullary ctor of a parameterised ADT inside a
parent ctor (Cons(Int, Nil)) and to call a polymorphic recursive
higher-order fn over a recursive parameterised ADT.
Fixture (examples/list_map_poly.ail.json):
- data List a = Nil | Cons a (List a)
- inc : (Int) -> Int = \x. x + 1
- map : forall a b. ((a) -> b, List<a>) -> List<b>
recursive, instantiated at (Int, Int)
- print_list : (List<Int>) -> Unit !{IO}, recursive
- main builds [1,2,3], maps inc, prints each: "2", "3", "4"
E2E test list_map_poly_inc_then_prints in crates/ail/tests/e2e.rs.
Bug fixed (crates/ailang-codegen/src/lib.rs, +30/-9):
synth_arg_type used Type::unit() as placeholder for ADT type
vars that the ctor's args couldn't pin (Nil for List<a>).
Inside Cons(Int, Nil), unify_for_subst then bound a=Int from
the head and collided with a=Unit from the tail. Replaced the
placeholder with a synth-only wildcard Type::Var{name:"$u"}
mirroring the checker's $m metavar convention; unify_for_subst
short-circuits on $u-prefixed arg-side vars (accept without
binding, let a sibling pin the var).
No schema or API change. No new variant. Tester's recursion
hypothesis was refuted by debugger via a non-recursive
Cons(7, Nil) repro before the fix landed.
Tests: 25/25 e2e (was 24). All Iter 12/13 regressions green.
cargo doc --no-deps zero warnings (workspace invariant from
13d/e/f preserved).
Three-agent flow (tester -> debugger, no implementer needed
since the fix was inside debugger's <50 LOC scope). Process
note in JOURNAL.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Closes the gap between Iter 13a (parameterised ADTs in the
checker) and end-to-end execution. ADT ctor code stays inlined at
every use site — no mono-queue for types, no new symbols — but
LLVM field types are now derived per use site via substitution.
`CtorRef` gains `type_vars: Vec<String>` so use sites can identify
which fields reference rigid vars. `cref.fields` (precomputed
LLVM strings) is documented as monomorphic-only and read past for
parameterised ADTs.
`lower_ctor`: derives a `BTreeMap<String, Type>` substitution from
`synth_arg_type` of each arg via `unify_for_subst`, then maps every
`ail_field` through `apply_subst_to_type` + `llvm_type` for the
per-store types. Monomorphic ADTs hit the original fast path.
`lower_match`: builds `arm_subst` from `s_ail.args` ↔ `cref.type_vars`,
substitutes through each `cref.ail_fields[idx]`, and uses the
substituted type both for the LLVM `load` AND as the AILang slot
of the local — so a downstream `unbox(b)` sees `b: Int`, not
`b: a`.
`synth_arg_type` for `Term::Ctor`: returns concrete type-args
derived from the ctor's term-args. Vars left unpinned (e.g. `None`
for `Maybe a`) fall back to `Type::unit()`.
`llvm_type(Type::Var)` now hard-errors. Earlier this silently
fell through to `ptr` (the ADT-via-ptr fallback), producing
garbage IR. Failing loudly here surfaces missed substitutions in
the test suite.
Two e2e tests (`box.ail.json`, `maybe_int.ail.json`) cover ctor
lower with substituted field types and match-arm field
substitution. 64 tests green; clippy clean (two pre-existing
warnings untouched). Hash invariant holds.
Out of scope per agent assignment: poly-fn-as-value, higher-rank
polymorphism, DESIGN/JOURNAL updates (deferred to 13c).
Polymorphic defs are now actually emitted: each unique instantiation
gets its own specialised LLVM fn, mangled @ail_<m>_<def>__<descriptor>.
The typechecker's Forall instantiations from Iter 12a now have a real
backend.
Strategy:
- Pass 1 of lower_workspace splits fn-typed defs into mono and poly:
module_user_fns keeps LLVM-typed FnSig only for monomorphic fns;
module_polymorphic_fns holds the full FnDef for poly defs;
module_def_ail_types is a unified AILang-type lookup for both.
- Direct calls to poly defs (current-module or qualified cross-module)
flow through lower_polymorphic_call: it derives the type
substitution from the actual arg AILang types, mangles the symbol,
and queues (def, subst) for specialisation.
- emit_module drains the queue after the regular defs. Each entry
produces a specialised FnDef with rigid vars substituted in both
the type and the body (incl. Lam param/ret annotations), then
emits via the existing emit_fn pipeline. The synthetic name embeds
the descriptor; standard mangling produces the right symbol.
Codegen-side type tracking:
- locals tuple grew from (name, ssa, llvm_type) to 4-tuple with
ail_type. Updated all 6 push sites: fn entry, Let, match-ctor field,
match-open-arm, lambda capture (cap_meta also extended), lambda
param.
- CtorRef gained ail_fields parallel to fields, used by match-arm
bindings to inherit AILang types.
- New synth_arg_type / synth_with_extras: a small recursive walker
that derives the AILang type of an expression in the current scope.
Used at poly call sites for arg-type inference. The `extras`
parameter shadows locals during Let recursion without &mut self.
Helpers added:
- derive_substitution(vars, params, arg_tys): unifies the param
shapes against the actual args, binding rigid vars; reports
unbound vars as an internal error.
- apply_subst_to_type / apply_subst_to_term: substitute rigid vars
throughout a Type or Term (the Term variant only matters for Lam,
the only Term arm carrying types).
- descriptor_for_subst / type_descriptor: stable identifier-safe
name suffix. `Int → I`, `Bool → B`, `Unit → U`, `Str → S`, ADT
`Foo → FFoo`, `Fn → Fn_<...>__r_<ret>`. So `id__I` for id at Int,
`apply__I_I` for apply at (Int, Int).
- builtin_ail_type / builtin_effect_op_ret: AILang types for the
builtin operators and effect ops, used by the codegen-side type
tracker.
Examples + tests:
- examples/poly_id.ail.json: id used at Int (42) and Bool (true).
Output: 42 / true. Two specialised fns + adapters + static
closures get emitted (visible in the IR).
- examples/poly_apply.ail.json: apply(succ, 41) == 42. Exercises
the harder case where one of the polymorphic params is itself
a function value — the closure-pair ABI survives substitution.
- crates/ail/tests/e2e.rs: polymorphic_id_at_int_and_bool and
polymorphic_apply_with_fn_param.
Tests: 58/58 (was 56/56). Hash invariant holds: sum.ail.json keeps
db33f57cb329935e / d9a916a0ed10a3d3.
Limitations (known, deferred):
- Polymorphic fns can only be DIRECTLY called. Passing a poly fn as
a value (let f = id in f(42)) fails — resolve_top_level_fn looks
in module_user_fns which doesn't include poly defs. Adding this
needs per-instantiation closure-pair globals.
- No higher-rank polymorphism: a polymorphic arg passed to another
polymorphic call (apply(id, 42)) trips the simple unify_for_subst
which doesn't recurse into Forall. Acceptable for the MVP.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
examples/sort.ail.json: insertion sort over IntList. Defines `insert
:: Int -> IntList -> IntList` and `sort :: IntList -> IntList`
recursively, plus print_list using Iter 10's seq. Sorts an 11-element
input and prints `1 1 2 3 3 4 5 5 5 6 9` one-per-line.
Validates that the language handles deeper ADT recursion + branching
(if + <=) + ctor construction + IO sequencing without surprises.
Wrote, typechecked, ran first try.
The Iter 11 plan called for polymorphism, but on reflection the right
move was one more validation cycle before disturbing the pipeline.
Polymorphism is now queued explicitly as Iter 12 (12a typechecker
substitution, 12b codegen monomorphisation, 12c docs + generic
example).
Tests: 52 green (was 51). New e2e `insertion_sort_orders_list`.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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>
Iter 9a — dogfood. examples/list_map.ail.json exercises everything
Iter 1-8 shipped in one program: ADTs (IntList = Nil | Cons Int IntList),
recursive fns over the ADT (map_int, print_list), pattern matching with
nested Var fields, a closure (`\\x. x * 2`, no captures), fn-typed
parameters, IO effects propagating through recursion, and `let`-
sequencing of an effectful sub-expression inside a match arm.
Result: nothing broke. The full pipeline (typecheck → IR emit →
clang → run) produces "2\\n4\\n6\\n". The language is now sufficient
for "small but real" programs.
Iter 9b — `ail run`. Convenience subcommand that builds into a
tempdir and executes, propagating the binary's exit code. Equivalent
to `ail build && ./bin` in one step. Build logic factored out of
`Cmd::Build` into a shared `build_to` helper used by both Build and
Run.
Tests: 50 green (was 49). New e2e `list_map_doubles_then_prints`.
No test for `ail run` itself — the existing build_and_run helper in
e2e.rs already exercises the same build+exec sequence path.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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>
Top-level fn names are now usable as values, fn-typed parameters can
be called as `f(args)`. KISS slice of "closures + HOFs + TIR": no
TIR, no heap, no ABI shift — that bundle stays in Iter 8 where
closure-with-capture and lambdas land together.
Codegen:
- Type::Fn lowers to LLVM `ptr`; sig travels via a per-fn-body
`ssa_fn_sigs` sidetable on `Emitter`.
- Term::Var falls through to `resolve_top_level_fn` when the name is
not a local; emits `@ail_<m>_<def>` and registers the sig.
- Term::App splits: static callee (builtin / current-module / qualified)
keeps the existing direct path; otherwise lower the callee, look up
the sig, emit indirect `call <ret> (<param-tys>) %fn(args...)`.
- emit_fn registers fn-typed params in the sidetable on entry.
- If branches propagate a fn-pointer sig to their phi when both arms
match.
Typechecker: unchanged. It already accepted `synth(callee)` against
Type::Fn; the only blocker was codegen rejecting non-Var callees.
Tests: 48 green (was 47). New `examples/hof.ail.json` and e2e
`higher_order_apply_inc` exercise `apply(inc, 41) == 42` end-to-end.
DESIGN.md: "What is not (yet) supported" rewritten — closures-with-
capture and lambdas remain pending, first-class fn-refs added as
positive bullet. Smoke-test list extended with `hof.ail.json`.
JOURNAL.md: Iter 7 entry with rationale, scope choice, architecture
self-check, Iter 8 plan.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Finishes the project-wide English convention:
- CLAUDE.md (the user opted in to translate it too).
- examples/hello.ail.json: "Hallo, AILang." -> "Hello, AILang.".
- E2E test assertion and IR snapshot for hello regenerated to match.
- DESIGN.md "Project language: English" section: the previous
CLAUDE.md exception is dropped.
After this commit, no German remains in any committed file
(grep -P '[äöüÄÖÜß]' is empty across .rs / .md / .json / .ll).
Verified: cargo test --workspace passes (44/44).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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.
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.
- 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>
- 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>
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>