dfdc65f21f
Cycle-close audit for spec 0064 (the #57 hardening of the linearity analysis, the #55-cutover precondition; four iterations47964ab,cc5991e,be259f9,2769e50). Architect drift review (39b674c..HEAD): both CLAUDE.md lockstep pairs confirmed untouched (INTERCEPTS↔intrinsic markers; Pattern::Lit typecheck↔pre_desugar_validation) — the cycle is genuinely diagnostic-only. It found two drift items, both in the iter-3 contract edit, both fixed here (fix path, folded into the audit close since they are doc-only): 1. [medium] design/contracts/0008-memory-model.md — the iter-3 rewrite placed a "Covers let-aliases…" statement under the "What this widening does NOT do" heading (incoherent) and named only the linearity-check mechanism, silently dropping the codegen dimension the original carve-out actually referred to ("Iter A / pre-tail-call shallow-dec arm" = the drop gates). Verified the real current state: let-aliases are propagated on BOTH axes — the linearity diagnostic (Checker.aliases + resolve_alias, this cycle) AND the codegen drop gates (MTerm::Let's current_param_modes mode inheritance, ailang-codegen/src/lib.rs:1811, pre-existing). The bullet is moved out of the "does NOT do" list into a positive paragraph naming both mechanisms. 2. [low] design/INDEX.md memory-model row — the ratifying-test cell listed only uniqueness.rs while the contract trailer now also names linearity.rs. Cell updated to "uniqueness.rs + linearity.rs". Regression gate (both green, exit 0): - bench/check.py: 34 metrics; 0 regressed, 1 improved beyond tolerance (latency.implicit_at_rc.median_us -5.27%), 33 stable. The "improved" is measurement noise, NOT a real metric move — this cycle is diagnostic-only and touches no codegen/runtime, so it cannot have improved runtime latency. Baseline deliberately NOT updated (no ratify: nothing in the code moved the metric). - bench/compile_check.py: 24 metrics; 0 regressed, 24 stable. Outcome: cycle 0064 tidy (drift-clean). All four #57 hardening classes (value-typed let-binders, local fn-param modes, let-alias propagation, partition_eithers double-consume) shipped and ratified. The #55-cutover precondition is met. Drift-clean is not a milestone close: #55 (the irreversible ParamMode::Implicit deletion) is the next, separate step. refs #57
359 lines
17 KiB
Markdown
359 lines
17 KiB
Markdown
# Memory model — schema, diagnostics, codegen contract
|
|
|
|
The four language-design constraints that make RC sound without a
|
|
cycle-collector backstop (strict evaluation, no recursive value
|
|
bindings, no shared mutable refs, acyclic ADTs) live in
|
|
[language constraints](0015-language-constraints.md); this file covers
|
|
the schema additions, advisory diagnostics, and codegen contract
|
|
that build on them.
|
|
|
|
## Schema additions
|
|
|
|
**Parameter modes on `Type::Fn`** (see [Data model](0002-data-model.md)
|
|
for the schema-level definition of `Type::Fn`).
|
|
|
|
The form-A surface (see [authoring surface](0001-authoring-surface.md))
|
|
for fn signatures gains mode wrappers:
|
|
|
|
```
|
|
(fn-type (params (borrow (List Int))) (ret (con Int)))
|
|
(fn-type (params (own (List Int))) (ret (own (List Int))))
|
|
```
|
|
|
|
Internally, this is *not* a new `Type` variant. Modes are
|
|
metadata on `Type::Fn` — `paramModes` and `retMode` fields run
|
|
parallel to `params` and `ret` (see [Data model](0002-data-model.md) for the JSON
|
|
schema). The substantive reasons for per-position metadata over a
|
|
`Type::Borrow` / `Type::Own` variant approach:
|
|
|
|
- **Semantic locality.** Modes are properties of fn-signature
|
|
parameter positions, not of types in general. `Int` does not
|
|
have a mode; a fn-parameter slot does. Embedding modes in
|
|
`Type` would let the schema express forms like
|
|
`(con List (borrow Int))` — syntactically possible, semantically
|
|
meaningless (you cannot separately own/borrow a list element
|
|
from the list it lives in). The
|
|
[canonical-schema principle](0002-data-model.md) is "schema = data,
|
|
schema permits exactly what is meaningful"; per-position
|
|
metadata is the option that holds that line.
|
|
- **Compositional clarity.** A `Type` value's identity should
|
|
depend only on the type. Two functions with the same param /
|
|
ret types but different calling conventions share `Type::Fn.params`
|
|
and differ only in `param_modes`. That is the right factoring:
|
|
"what data does this carry" is one axis, "how is it transferred"
|
|
is another. Mixing them under a single hierarchy conflates the
|
|
two and makes both harder to reason about.
|
|
- **Future-proof against more position metadata.** If later iters
|
|
add other per-position properties (streaming receiver, captured-
|
|
by-closure, lifetime witness), they generalise as additional
|
|
metadata fields on `Type::Fn` — one consistent hierarchy. The
|
|
variant approach would force every new dimension into its own
|
|
`Type::*` variant (`Type::Streamed`, `Type::Captured`, ...) and
|
|
combinatorics blow up: `Type::Borrow(Type::Streamed(T))` versus
|
|
`Type::Streamed(Type::Borrow(T))` raise questions of canonical
|
|
ordering that don't exist when modes live in a flat metadata
|
|
vector.
|
|
|
|
`Implicit` is the legacy / back-compat state — semantically
|
|
equivalent to `Own` but printed bare (`(con T)`, no wrapper).
|
|
`Own` and `Borrow` are explicitly annotated.
|
|
|
|
JSON canonical hash for every existing fixture stays bit-
|
|
identical: `param_modes` is skipped when every entry is
|
|
`Implicit`, `ret_mode` is skipped when `Implicit`. Existing
|
|
modules emit the same bytes as before.
|
|
|
|
**Type::Con name scoping (canonical form).** Within a
|
|
`.ail.json`, a `Type::Con.name` is interpreted relative to the
|
|
file's top-level `"name"` field (the owning module). Bare names
|
|
(no `.`) refer to a TypeDef in the owning module's own `defs`.
|
|
Cross-module references MUST be qualified `<owning_module>.<TypeName>`
|
|
where `<owning_module>` is a known module in the workspace.
|
|
Primitives (`Int`, `Bool`, `Str`, `Unit`, `Float`) are bare and
|
|
have no module qualifier. Bare cross-module references are a
|
|
schema violation (`WorkspaceLoadError::BareCrossModuleTypeRef`);
|
|
qualified references whose owner is unknown are also a violation
|
|
(`WorkspaceLoadError::BadCrossModuleTypeRef`). The same rule
|
|
applies to `Term::Ctor.type_name`.
|
|
|
|
Class names follow the same canonical-form rule: bare for
|
|
same-module references, `<module>.<Class>` for cross-module
|
|
references — symmetric to `Type::Con.name`'s rule above.
|
|
Three schema fields carry class references in this form:
|
|
`InstanceDef.class`, `Constraint.class`, and `SuperclassRef.class`.
|
|
`ClassDef.name` itself stays bare (defining-site context, like
|
|
`TypeDef.name`).
|
|
|
|
Method dispatch is type-driven (see
|
|
[Method dispatch](0016-method-dispatch.md)):
|
|
synth resolves a `Term::Var { name: "show" }` by consulting
|
|
the workspace's method-to-candidate-class index, filtering by
|
|
argument type (concrete) or by declared constraint (rigid-var), and
|
|
routing the residual through the registry at fn-body-end discharge.
|
|
Method-name collisions across classes are now structurally legal —
|
|
they resolve at the call site via type-driven dispatch with explicit
|
|
qualifier (`<module>.<Class>.<method>`) as the LLM-author's
|
|
disambiguation tool.
|
|
|
|
The legacy `(con T)` form is treated as `(own T)` semantically.
|
|
|
|
(An incidental observation, not a design reason: keeping `Type`
|
|
itself unchanged also avoids touching ~250 sites across the
|
|
typechecker / desugar / codegen that match on `Type` variants.
|
|
This is a tiebreaker, not a rationale — the substantive reasons
|
|
above are what justify the choice.)
|
|
|
|
**New `Term` variants.**
|
|
|
|
```
|
|
Term::Clone { value: Box<Term> } ; `(clone X)` — explicit RC inc
|
|
Term::ReuseAs { source: Box<Term>, body: Box<Term> } ; `(reuse-as SRC NEW-CTOR)`
|
|
```
|
|
|
|
`Term::ReuseAs` is structured as a *wrapper* around a `body`
|
|
term rather than as a `reuse_from: Option<String>` modifier on
|
|
`Term::Ctor`. Two substantive reasons:
|
|
|
|
1. **Compositional flexibility.** Reuse-as is conceptually a
|
|
wrapper that says "this expression's allocation comes from
|
|
`<source>`'s slot". The wrapper form generalises naturally
|
|
if future iters introduce other allocating constructs
|
|
(record literals, opaque box wrappers, capability cells) —
|
|
they all become valid `body` positions. A modifier on
|
|
`Term::Ctor` would have to be replicated on every
|
|
constructible Term variant the language grows.
|
|
2. **Source-locality at the head.** `(reuse-as SRC NEW-CTOR)`
|
|
reads as a single sentence with the source-binder named at
|
|
the head. The modifier form would scatter the reuse intent
|
|
across a child position of the constructor's argument
|
|
syntax, separating the `source` from the rest of the
|
|
reuse-as semantics.
|
|
|
|
The trade-off this accepts: the schema permits `Term::ReuseAs
|
|
{ body }` where `body` is not an allocating form (e.g. a
|
|
literal, a var). Such terms are caught at typecheck via a
|
|
`reuse-as-non-allocating-body` diagnostic — structural rejection
|
|
in the typechecker, not the schema. The principle: prefer
|
|
composability over schema-level rejection where the typecheck
|
|
rule is unambiguous.
|
|
|
|
**`TypeDef` attribute.**
|
|
|
|
```
|
|
TypeDef.drop_iterative: bool ; `(drop-iterative)`
|
|
```
|
|
|
|
All four are skipped during serialisation when absent / false /
|
|
None so canonical-JSON hashes of every fixture remain stable
|
|
until the fixture intentionally adopts the feature.
|
|
|
|
**`FnDef.suppress`.** The `suppress` field on `FnDef` carries a
|
|
list of advisory-diagnostic suppress entries; each entry has a
|
|
`code` (the diagnostic being suppressed) and a `because` (a
|
|
mandatory non-empty reason). See [Data model](0002-data-model.md) for
|
|
the canonical schema.
|
|
|
|
Form-A surface: `(suppress (code "...") (because "..."))` clause
|
|
between fn name and `(type ...)`. Multiple clauses allowed; one
|
|
per entry. Form-B (prose) renders one
|
|
`// @suppress <code>: <because>` line per entry above the doc
|
|
string — lossless, contract metadata.
|
|
|
|
Skipped from serialisation when empty so existing fixtures keep
|
|
bit-identical canonical-JSON hashes (regression-pinned by
|
|
`iter19b_empty_suppress_preserves_pre_19b_hashes` and
|
|
`iter19b_schema_extension_preserves_pre_19b_hashes`).
|
|
The canonical-form tightening for `Type::Con.name` shifted the
|
|
hashes of two cross-module fixtures (`ordering_match.ail.json` and
|
|
`test_22b1_dup_a.ail.json`); all intra-module fixtures, including
|
|
the regression-pinned `sum.ail.json` and `list.ail.json`, remain
|
|
bit-identical. The new pins are
|
|
`ct4_migrated_fixtures_have_canonical_form_hashes` (locks the
|
|
post-migration hashes) and
|
|
`ct4_unmigrated_fixtures_remain_bit_identical` (re-asserts the
|
|
pre-tightening hashes still hold).
|
|
|
|
## Advisory diagnostics
|
|
|
|
The advisory-diagnostics arc introduces the language's first
|
|
**advisory** typechecker diagnostic and the suppression mechanism
|
|
that goes with it. The mandatory-annotation rule of this memory
|
|
model is unchanged: `param_modes` and `ret_mode` remain
|
|
author-required; the typechecker does not infer them. What's new
|
|
is feedback when an authored annotation is *stricter than necessary*.
|
|
|
|
**The lint: `over-strict-mode`.** Fires on a
|
|
fn-param `p` annotated `(own T)` when:
|
|
|
|
1. `p`'s `consume_count == 0` (uniqueness pass: the body
|
|
never consumes `p` as a whole).
|
|
2. For every match arm whose scrutinee is `p`, no
|
|
**heap-typed** pattern-binder has `consume_count > 0`.
|
|
|
|
The heap-type filter is load-bearing for soundness:
|
|
`match xs { Cons(h, t) => h }` records `consume_count(h) == 1`,
|
|
but `h: Int` is read by-value — no RC traffic, no heap data
|
|
moved out of `xs`'s allocation. Filtering primitive-typed
|
|
binders is what lets the lint correctly identify `head_or_zero`
|
|
as over-strict (could be `borrow`) while staying silent on
|
|
`sum_list` where `t: List` *is* moved out.
|
|
|
|
Severity: `Warning`. `ail check`, `ail build`, `ail emit-ir` exit 1
|
|
only on at least one `Error`; warnings print but do not abort.
|
|
|
|
**The suppression: `mode-strict-because`.** Authors
|
|
who want to keep an over-strict annotation deliberately (e.g.
|
|
RC codegen-test fixtures, fns reserved for planned in-place
|
|
mutation) attach a `Suppress` entry naming the diagnostic code
|
|
and a non-empty reason. The typechecker drops matching
|
|
diagnostics from the output. Empty `because` is a hard error
|
|
(`empty-suppress-reason`); wrong-code suppresses are silent
|
|
no-ops (open-set diagnostic registry — a suppress for a code
|
|
that doesn't fire today may exist defensively for a code that
|
|
might fire after a future edit).
|
|
|
|
## Codegen contract
|
|
|
|
Memory layout:
|
|
|
|
- Every heap allocation has an 8-byte refcount header, followed
|
|
by the payload. `ailang_rc_alloc(size)` returns a pointer to
|
|
the *payload*; the header is at `ptr - 8`.
|
|
- `ailang_rc_inc(ptr)`: load `ptr - 8`, +1, store. Non-atomic
|
|
(single-threaded).
|
|
- `ailang_rc_dec(ptr)`: load, -1, store; if zero, recurse-dec
|
|
child references and `free(ptr - 8)`. For `(drop-iterative)`
|
|
types, the recursion is replaced by a worklist loop (via `drop-iterative`).
|
|
|
|
Codegen for `Term::Ctor` / `Term::Lam` env / closure pair under
|
|
`--alloc=rc` calls `ailang_rc_alloc(SIZE)`; inc/dec instrumentation
|
|
is emitted per the uniqueness inference. `--alloc=bump` selects the
|
|
bench-floor allocator, which leaks by design (no inc/dec, no free);
|
|
it is bench-only and never a production target.
|
|
|
|
## Mode metadata is load-bearing for codegen
|
|
|
|
`param_modes` and `ret_mode` on `Type::Fn` are not merely
|
|
typechecker metadata — codegen consults both to decide where to
|
|
emit drop calls. They were promoted from
|
|
"annotation that the typechecker enforces" to "annotation that
|
|
codegen reads to keep RC correct". Recorded here so the schema
|
|
metadata's role is explicit:
|
|
|
|
**`param_modes` — drop-emission gates.**
|
|
|
|
- **Iter B: Own-param dec at fn return.** When a fn body
|
|
fall-throughs to a `ret` (no tail-call), every parameter with
|
|
`param_modes[i] == Own` is dec'd before the `ret` iff its
|
|
uniqueness `consume_count == 0` and the ret value is not the
|
|
param itself. `Borrow` and `Implicit` parameters are skipped:
|
|
`Borrow` retains the caller's ownership by contract;
|
|
`Implicit` carries no static caller-handed-off-ownership
|
|
signal (it's the back-compat lane).
|
|
|
|
- **Iter A: arm-close pattern-binder dec.** When a match-arm's
|
|
body terminates without a tail-call, every ptr-typed
|
|
pattern-bound binder pushed by the arm is dec'd at arm close
|
|
iff its `consume_count == 0` and it is not the arm's tail
|
|
value, **gated on the scrutinee's static ownership**. If the
|
|
scrutinee is a fn-param, only `Own`-mode scrutinees enable
|
|
the dec — `Borrow` and `Implicit` scrutinees would let the
|
|
arm dec memory the caller still references.
|
|
|
|
- **Pre-tail-call shallow-dec.** When a match-arm's
|
|
body IS a tail call, both Iter A and Iter B are skipped (the
|
|
block is terminated). A separate seam in `lower_match` emits
|
|
a shallow `ailang_rc_dec` on the scrutinee outer cell BEFORE
|
|
the tail call, gated identically on the scrutinee mode plus
|
|
the requirement that every ptr-typed slot in the active
|
|
ctor's pattern is in `moved_slots[scrutinee]`.
|
|
|
|
**Per-fn binder-name injectivity (a precondition of every gate
|
|
above).** All three drop gates read `consume_count` from the
|
|
uniqueness side-table keyed by `(def_name, binder_name)`. Codegen
|
|
looks up by the binder's source name and must resolve the binding it
|
|
means — so within one `def_name`, every `binder_name` must denote
|
|
exactly one binding. The desugar pass guarantees this: it
|
|
alpha-renames any binder whose name shadows an enclosing binding to a
|
|
fresh `<name>$<n>` (`ailang-core::desugar`), so a shadow-rebind idiom
|
|
like `(let buf (new…) (let buf (set buf…) … (get buf)))` becomes
|
|
`buf, buf$1, buf$2, buf$3`. Without this, shadowed binders collapse
|
|
onto one key and a gate reads a sibling binding's `consume_count`,
|
|
suppressing or doubling a drop. Ratified by
|
|
`raw_buf_{int,float,bool}_shadow_rebind_drop_balances_rc_stats` and
|
|
`flat_pat_shadow_binder_does_not_leak_more_than_alpha_renamed` in
|
|
`crates/ail/tests/e2e.rs`, and the desugar unit test
|
|
`shadowing_let_is_alpha_renamed`.
|
|
|
|
**`ret_mode` — let-binder trackability.**
|
|
|
|
- **`Term::App` drop at let-scope close.** A
|
|
let-binder whose value is `Term::App { callee, .. }` is
|
|
trackable for scope-close drop iff the callee's
|
|
`ret_mode == Own`. The signal is the callee's static
|
|
contract that ownership of the freshly heap-allocated cell
|
|
flows to the caller. `Borrow`-returning calls remain
|
|
non-trackable (the callee retains ownership; the caller
|
|
holds a view, not an own ref). `Implicit`-returning calls
|
|
remain non-trackable (back-compat lane).
|
|
|
|
The drop fn's symbol resolution for an Own-returning App:
|
|
synthesise the call's return type, resolve `Type::Con { name }`
|
|
to `drop_<owner>_<T>` (with cross-module qualification through
|
|
the import map). Falls back to shallow `ailang_rc_dec` for
|
|
returns that are not `Type::Con` (e.g. unresolved type vars on
|
|
a polymorphic call's pre-monomorphisation site; the
|
|
monomorphised copies resolve to concrete drop fns).
|
|
|
|
#### Arg-position policy for compound AST nodes
|
|
|
|
The uniqueness and linearity passes walk arguments of compound
|
|
nodes with a fixed `Position` policy. For ownership-bearing nodes:
|
|
|
|
| Node | Arg position | Reason |
|
|
|----------------------|--------------|---------------------------------------------------------------------------------------|
|
|
| `Term::Ctor.args[*]` | Consume | constructor packs values into the cell; the cell owns them afterwards |
|
|
| `Term::Do.args[*]` | Borrow | effect-op observes its arguments; the caller still owns whatever pointer it passed in |
|
|
|
|
The two policies are language rules, not per-op annotations. They
|
|
do not appear as fields on `EffectOpSig` or `Ctor`; the AST node
|
|
kind itself carries the default. The walkers that read this policy
|
|
live at `crates/ailang-check/src/uniqueness.rs` and
|
|
`crates/ailang-check/src/linearity.rs` (matched arms in both).
|
|
|
|
The Do = Borrow rule pairs with the `ret_mode == Own` letbinder-
|
|
trackability rule above: when a built-in such as `int_to_str` is
|
|
declared `ret_mode: Own` and its result is fed into an effect-op
|
|
(`io/print_str s`), the let-binder is RC-tracked for scope-close
|
|
drop *and* the effect-op does not consume it — the slab is freed
|
|
exactly once at scope close, never zero-times (RC leak under the
|
|
old Consume rule, which silenced the scope-close drop) and never
|
|
twice (double-free under a hypothetical Consume + scope-close).
|
|
|
|
**What this widening does NOT do.**
|
|
|
|
- Does not change the canonical hash. `param_modes` /
|
|
`ret_mode` were already hash-load-bearing when introduced;
|
|
subsequent work added codegen consumers, not new schema fields.
|
|
- Does not introduce a new `Type` variant. Mode metadata stays
|
|
flat on `Type::Fn` (see "Schema additions" above on why).
|
|
**Let-aliases of borrowed values are propagated** (no longer a
|
|
carve-out). A let-binder whose value is a bare `Term::Var`
|
|
resolving to a tracked binder is treated as an alias of that
|
|
source on both axes of the ownership analysis:
|
|
|
|
- the linearity diagnostic (spec 0064, class 2) records `a →
|
|
root` in the walk (`crates/ailang-check/src/linearity.rs`,
|
|
`Checker.aliases` + `resolve_alias`) and resolves every
|
|
binder-state lookup to the root, so a borrow-position use of
|
|
the alias does not consume the source while a real
|
|
double-consume through the alias is still caught;
|
|
- the codegen drop gates (`crates/ailang-codegen/src/lib.rs`,
|
|
the `MTerm::Let` lowering's `current_param_modes` mode
|
|
inheritance) give the let-binder its source's mode, so the
|
|
scope-close drop gate treats an alias of a borrow as borrowed
|
|
and emits no spurious `dec`.
|
|
|
|
Ratified by: `crates/ailang-check/src/uniqueness.rs`,
|
|
`crates/ailang-check/src/linearity.rs`.
|