`struct` and `property` had identical syntax and differed only in semantics, so
they are now one keyword: `property`. How a property is stored follows from how
it is used —
- listed in a `model` or attached by `spawn` -> an ECS component, kept in the
engine's per-entity @S_/@H_ arrays and bound in queries (as before);
- constructed with `new` -> a heap record with reference
semantics (what `struct` used to be).
A program that declares only `property` records and functions — no `model`, no
`handler` — is not an ECS program: it gets record layouts and `new`, but no
entity storage, allocator, snapshot, or runtime splice. This is exactly the
shape of the Ludic compiler itself, whose Node/Tok/Buf/Val are now `property`.
Mechanics:
- record layout (%Cmp_) now always emitted in the header (emit_head), so `new`
works with or without the ECS; the per-entity arrays stay in
emit_ecs_storage. %Str_ is gone — one layout prefix.
- has_ecs() is now `has_systems() or has_models()`, not "any component"; a
property alone no longer drags in the ECS runtime. Added has_models().
- emit_new / member access / layout_ty / layout_node collapse onto find_comp.
Dropped struct keyword, parse_struct, find_struct, is_struct_ty, N_STRUCT
emission (the const stays at kind 0, the default node kind).
Migration done as two reseeds (the old compiler treats any component as ECS, so
it cannot see `property` records in the compiler source until has_ecs is fixed):
A) teach the compiler property-as-record + fix has_ecs, keeping `struct`;
B) migrate the compiler's own records to `property` and remove `struct`.
selfhost/tests/structs.ludic migrated (still prints 7 9 109 2 42). Vocabulary
drops `struct` from DECL (ludic_syntax.h, grammar, LudicTokens.kt). LANGUAGE.md
"Records" section rewritten. Reseeded (21613 lines); C-free fixpoint holds;
goldens identical; 17/17; vocab + doc-fences clean.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
20 lines
451 B
Text
20 lines
451 B
Text
program T {
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property P { x: int = 0, y: int = 7, next: P }
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fn bump(p: P) -> void { p.x = p.x + 100 }
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entry {
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let a = new P
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print_int(a.y) # 7 default
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a.x = 5
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let b = a
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b.x = 9
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print_int(a.x) # 9 (reference)
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bump(a)
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print_int(a.x) # 109
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let c = new P
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c.x = 2
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a.next = c
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print_int(a.next.x) # 2 chained
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a.next.x = 42
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print_int(c.x) # 42
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}
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}
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