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AILang/design/contracts/0002-data-model.md
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Brummel 078c39a76a iter prep.2-term-new-construct (DONE 4/4): Term::New AST + Form-A surface + checker + drift — closes #32
Second iteration of the kernel-extension-mechanics milestone. Ships
the `new` Form-A keyword + `Term::New { type_name, args: Vec<NewArg> }`
AST variant + `NewArg::Type|Value` enum end-to-end through schema /
surface / checker, with two new diagnostics
(`NewTypeNotConstructible`, `NewArgKindMismatch`), a new arm in
prep.1's workspace-wide normalisation pre-pass `qualify_workspace_term`
that rewrites bare `Term::New.type_name` to qualified form
(symmetric to the existing `Term::Ctor` arm), and the data-model.md
+ form_a.md anchor additions. Codegen out of scope per spec; codegen
sites get `CodegenError::Internal` arms naming the raw-buf milestone
as the carrier.

Verification:

- `cargo test --workspace`: 654 tests passing, 0 failed.
- 3 new in-source checker tests pin the elaboration paths:
  `new_resolves_via_type_scope` (the spec's worked Counter example
  checks cleanly), `new_type_not_constructible` (missing `new` def
  in home module fires the new diagnostic), `new_arg_kind_mismatch_value_where_type`
  (kind-mismatch detection).
- 2 new schema-drift pins (`term_new_round_trips`,
  `term_new_type_arg_round_trips`) ratify the JSON byte shape:
  `{"t": "new", "type": "<TypeName>", "args": [{"kind": "type"|"value",
  "value": ...}]}`.
- 1 new surface round-trip pin exercises mixed-kind args through
  Form-A → JSON → Form-A.
- 44+ exhaustive Term-match sites across 24 files extended with
  `Term::New` arms — workspace-wide cargo build clean.

Concerns documented inline:

- `crates/ailang-core/tests/schema_coverage.rs` deliberately does
  NOT register `VariantTag::TermNew` in the `EXPECTED_VARIANTS`
  set. The coverage test asserts every declared variant is
  observed in the .ail fixture corpus; no .ail fixture in the
  current tree emits `"t": "new"` (codegen-runnable Term::New
  programs require the raw-buf milestone's plugin registry).
  Registering would fail the coverage check. The `visit_term` arm
  IS extended (compile-forced); only the enum registration is
  deferred. Inline rationale in the source. Future milestone that
  ships a Term::New fixture extends both sides.
- `crates/ailang-surface/src/print.rs` `write_term` Term::New arm
  was added in Task 1 (not Task 2 as planned), because without it
  ailang-core's tests fail to compile (the surface crate is in
  the dependency graph of ailang-core's test binaries). Task 2's
  round-trip pin verified the arm's correctness.
- Task 3 (synth elaboration) needed one implementer re-loop: the
  first attempt over-qualified within-module type-references via
  `qualify_local_types` on `new`'s signature when the home module
  was the calling module itself. Fixed by skipping qualification
  when `home_module == env.current_module`.

Architectural composition with prep.1: `Term::New` joins
`Term::Ctor` as a `type_name`-bearing site that goes through
`qualify_workspace_term`'s bare→qualified rewrite before the
checker sees it. The checker's `synth` arm for `Term::New`
therefore receives an already-qualified `type_name` (or a local
bare name for same-module construction).

Milestone status: kernel-extension-mechanics (Gitea #6) advances
2/3 iters. Next: prep.3 (kernel-tier modules + param-in), issue #33.
2026-05-28 15:31:13 +02:00

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Markdown

# Data model
## Data model
The on-disk JSON-AST is what the toolchain hashes, typechecks, and
lowers. **This section is the canonical schema.** The Rust types in
`crates/ailang-core/src/ast.rs` are the in-memory projection of it;
when the two disagree, this section wins, and the drift test
`crates/ailang-core/tests/design_schema_drift.rs` fires. Every
additive field is declared with `skip_serializing_if` so pre-existing
fixtures keep bit-identical canonical-JSON hashes — that gating
contract is what makes growing the schema cheap.
### Module
```jsonc
{
"schema": "ailang/v0",
"name": "<id>",
"imports": [{ "module": "<id>", "as": "<id>" }],
"defs": [Def...]
}
```
### Def
`kind ∈ { "fn", "const", "type", "class", "instance" }`. All five
are real surface forms. Class and type cross-module references
(canonical-form rule, qualified `<module>.<Class>` /
`<module>.<TypeName>`) follow the scoping rule in
[memory model](0008-memory-model.md); the `class`/`instance` schema
narrative — defaults, superclasses, diagnostics — lives in
[typeclasses](0013-typeclasses.md). Exported `fn` defs interact with
[embedding ABI](0003-embedding-abi.md).
```jsonc
// fn (the unit that gets a content hash)
{ "kind": "fn",
"name": "<id>",
"type": Type, // typically Type::Fn, optionally wrapped in Forall
"params": ["<id>"...], // names bound in body, in type.params order
"body": Term,
"doc": "<optional string>",
"export": "<optional C symbol>", // omitted when absent (hash-stable when omitted); embedding-ABI surface — see prose below
"suppress": [Suppress...] // omitted when empty
}
// const (top-level value; codegen emits as a global; body must be pure)
{ "kind": "const",
"name": "<id>",
"type": Type,
"value": Term,
"doc": "<optional string>"
}
// type (algebraic data type; parameterised)
{ "kind": "type",
"name": "<id>",
"vars": ["<id>"...], // type parameters; omitted when empty (hash-stable when omitted)
"ctors": [
{ "name": "<id>", "fields": [Type...] } // nullary ctor: fields = []
...
],
"doc": "<optional string>",
"drop-iterative": true // opt-in; omitted when false (hash-stable when omitted)
}
// class (typeclass declaration; narrative in contracts/0013-typeclasses.md)
{ "kind": "class",
"name": "<id>", // class name (e.g. "Show")
"param": "<id>", // single class parameter, kind *
"superclass": null, // or { "class": "<id>", "type": "<param>" } — "class": canonical form (bare for same-module, "<module>.<Class>" for cross-module)
"methods": [
{ "name": "<id>",
"type": Type, // FnSig over the class param
"default": Term // optional fallback body; null = abstract-required
}
...
],
"doc": "<optional string>"
}
// instance (typeclass instance; narrative in contracts/0013-typeclasses.md)
{ "kind": "instance",
"class": "<id>", // class being instantiated; canonical form (bare for same-module, "<module>.<Class>" for cross-module)
"type": Type, // concrete type expression (never the class param)
"methods": [
{ "name": "<id>", "body": Term }
...
],
"doc": "<optional string>"
}
```
**`Suppress`** (entry in `FnDef.suppress`):
```jsonc
{ "code": "<diagnostic-code>", // e.g. "over-strict-mode"
"because": "<author reason>" // must be non-empty;
// empty/whitespace fires `empty-suppress-reason` (Error)
}
```
### Term (expression)
```jsonc
{ "t": "lit", "lit": Literal }
{ "t": "var", "name": "<id>" }
// fn application; tail flag triggers musttail under codegen.
// `tail` is omitted when false (hash-stable when omitted).
// `args` may be empty: a nullary call is the surface form
// `(app f)` (resolution of Gitea #12). Read-tolerant: a JSON
// document omitting the `args` key deserialises to `[]`.
{ "t": "app", "fn": Term, "args": [Term...], "tail": false }
{ "t": "let", "name": "<id>", "value": Term, "body": Term }
// Local recursive let. Always fn-shaped. The desugar pass
// lifts most `letrec` to a synthetic top-level fn; `lift_letrecs`
// finishes the job after typecheck for the residue that captures
// let-bound names. Post-codegen, no `letrec` survives.
{ "t": "letrec",
"name": "<id>", "type": Type, "params": ["<id>"...],
"body": Term, "in": Term }
{ "t": "if", "cond": Term, "then": Term, "else": Term }
// Effect-op invocation. `op` is "<eff>/<op>" (e.g. "io/print_str").
// `tail` triggers musttail (omitted when false).
{ "t": "do", "op": "<eff>/<op>", "args": [Term...], "tail": false }
// Ctor application. `args` is always emitted on write (including
// as `"args": []` for niladic ctors); reads tolerate the key being
// absent and treat it as `[]`. This mirrors the read/write
// asymmetry on `Term::App.args` (see above).
{ "t": "ctor", "type": "<id>", "ctor": "<id>", "args": [Term...] }
{ "t": "match", "scrutinee": Term, "arms": [Arm...] }
// Anonymous fn value; free vars captured from enclosing scope.
{ "t": "lam",
"params": ["<id>"...],
"param-types": [Type...],
"ret-type": Type,
"effects": ["<id>"...],
"body": Term }
// Sequencing. Semantically `let _ = lhs in rhs`; lhs must be Unit.
{ "t": "seq", "lhs": Term, "rhs": Term }
// Explicit RC clone. Codegen lowers as
// `call void @ailang_rc_inc(ptr %v)` before returning %v under `--alloc=rc`.
{ "t": "clone", "value": Term }
// Explicit reuse-as hint. `body` must be allocating
// (typically `ctor` or `lam`); `source` must be a bare `var`. Codegen
// lowers as in-place rewrite under `--alloc=rc`.
{ "t": "reuse-as", "source": Term, "body": Term }
// loop: strict iteration block. `binders` declares
// one or more loop parameters (name, type, init), evaluated in
// order on loop entry; `body` is in scope of all binders. The
// loop's value is `body`'s value on the iteration that exits via a
// non-`recur` branch. Strictly additive (no `skip_serializing_if`;
// pre-existing fixtures hash bit-identically — none carry the tag).
// No totality claim — an infinite loop is legal. See
// `docs/specs/0034-loop-recur.md`.
{ "t": "loop",
"binders": [ { "name": "<id>", "type": Type, "init": Term }, ... ],
"body": Term }
// recur: re-enter the lexically innermost enclosing
// `loop`, rebinding its binders positionally to `args`. Transfers
// control (no fall-through); valid only in tail position of its
// enclosing loop (enforced at typecheck, `recur-not-in-tail-position`).
{ "t": "recur",
"args": [ Term, ... ] }
// new: functional construction. Resolves `type` via type-scoped
// lookup to its home module, then calls the home module's `new`
// def with the supplied args. Each arg is a `NewArg` (see below).
// Type-args (kind = "type") instantiate the `new` def's outer
// `Forall` vars in declaration order; Value-args (kind = "value")
// are checked against the (substituted) param types. Strictly
// additive (no `skip_serializing_if`; pre-existing fixtures hash
// bit-identically — none carry the tag). See prep.2 of the
// kernel-extension-mechanics milestone.
{ "t": "new",
"type": "<TypeName>",
"args": [ NewArg, ... ] }
```
**`NewArg`** (one positional arg to a `(new T args...)` call):
```jsonc
// Type-positional arg: instantiates one of `new`'s outer Forall
// vars. The inner `value` carries a full `Type` JSON object.
{ "kind": "type", "value": Type }
// Value-positional arg: a `Term` checked against the corresponding
// substituted param type of `new`. The inner `value` carries a
// full `Term` JSON object.
{ "kind": "value", "value": Term }
```
In the MVP, `do` is only a direct call to a built-in effect op (no
handler); the effect system is described in [effects](../models/0002-effects.md).
A `lam` term constructs an anonymous function value; free
variables of its body are captured from the enclosing scope.
Loop binders are alloca-resident: typecheck binds them in the
ordinary local scope plus a positional `loop_stack`, and codegen
lowers them as entry-block allocas. Capturing a `loop` binder into a
lambda body is rejected at typecheck via
`CheckError::LoopBinderCapturedByLambda`. See
`docs/specs/0034-loop-recur.md`.
**`Literal`**:
```jsonc
{ "kind": "int", "value": <i64> }
{ "kind": "bool", "value": <bool> }
{ "kind": "str", "value": "<utf-8>" }
{ "kind": "unit" }
{ "kind": "float", "bits": "<16-lowercase-hex>" }
```
**`Pattern`** (the `pat` field of an `Arm`; discriminator `p`):
```jsonc
{ "p": "wild" } // _
{ "p": "var", "name": "<id>" } // x — binds the value
{ "p": "lit", "lit": Literal }
{ "p": "ctor", "ctor": "<id>", "fields": [Pattern...] } // fields omitted when empty
```
Patterns are linear: each pattern variable may appear at most once.
### Type
The `Type::Con.name` canonical-form rule (bare for same-module /
primitives, qualified `<module>.<TypeName>` for cross-module) lives
in [memory model](0008-memory-model.md); `Type::Fn`'s parameter-mode
metadata is defined and gated there as well.
```jsonc
// Type-constructor application. `args` omitted when empty
// (hash-stable when omitted, for non-parameterised cases like Int, Bool, ...).
{ "k": "con", "name": "<id>", "args": [Type...] } // "name": canonical form (bare for same-module / primitives, "<module>.<TypeName>" for cross-module)
// Function type. paramModes/retMode are metadata on Type::Fn —
// they are NOT separate Type variants, so every existing match-arm
// in the typechecker (unify, occurs, apply) keeps working.
// `paramModes` omitted when every entry is "implicit"; `retMode`
// omitted when "implicit" (hash-stable when omitted). Full mode
// contract lives in contracts/0008-memory-model.md.
{ "k": "fn",
"params": [Type...],
"paramModes": [ParamMode...],
"ret": Type,
"retMode": ParamMode,
"effects": ["<id>"...] }
{ "k": "var", "name": "<id>" }
// Top-level polymorphism only. `constraints` carries class
// constraints (narrative in contracts/0013-typeclasses.md); omitted when
// empty (hash-stable when omitted).
{ "k": "forall",
"vars": ["<id>"...],
"constraints": [{ "class": "<id>", "type": "<id>" }, ...], // "class": canonical form (bare for same-module, "<module>.<Class>" for cross-module)
"body": Type }
```
**`ParamMode`** (full contract in
[memory model](0008-memory-model.md)):
```
"implicit" — unannotated / back-compat. Treated as `own` by the typechecker.
"own" — (own T) — caller transfers ownership; callee consumes.
"borrow" — (borrow T) — caller retains ownership; callee may not consume.
```
`implicit ≡ own` semantically; the distinction exists so existing
unannotated fixtures continue to serialize without the mode wrapper and keep their
canonical-JSON hash. The full mode contract (codegen consequences,
the over-strict-mode lint, the `Suppress` mechanism) lives in
[memory model](0008-memory-model.md); the four language-design
preconditions that make RC sound live in
[language constraints](0015-language-constraints.md).
Ratified by: `crates/ailang-core/tests/design_schema_drift.rs`.