Three enable/disable statement scopes, each a reversible flag flip:
- `disable P on e` / `enable P on e` — one property on one entity. Clears
the has-flag so queries stop matching; field data persists in storage, so
enable restores it untouched. @OnDisable(P)/@OnEnable(P) handler hooks run
at the toggle point with the property bound by name.
- `disable Model` / `enable Model` — @ME_<Model> global flag; the model's
entities drop out of every query while disabled.
- `disable Handler` / `enable Handler` — @HE_<Handler> global flag; the
handler stops being called each phase while disabled.
Nothing is copied or freed — each toggle is one global store or one has-flag
store. Reduces entirely to existing ECS machinery (has-flags, kind filter,
per-phase call guards), so the data-oriented model is untouched.
New AST node S_TOGGLE; emit_toggle lowers it. Query {Model} filter now ANDs
@ME_; phase calls now guard on @HE_. Parser gains enable/disable statements
and @OnEnable/@OnDisable annotations.
Vocabulary: `on` promoted from RESERVED to CLAUSE (parser now dispatches on
it); enable/disable added as STMT keywords — synced across ludic_syntax.h,
the TextMate grammar, and LudicTokens.kt (check-vocabulary.py clean).
examples/toggle.ludic demonstrates all three scopes (prints 6 0 7 1 0);
test.sh smoke asserts it. Reseeded; C-free fixpoint holds; goldens identical.
Also: stop tracking tools/.idea/ (gitignored).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
144 lines
6.3 KiB
Text
144 lines
6.3 KiB
Text
# emit_spawn.ludic — spawn / despawn / self(), and seeding a component's fields
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# from its declared defaults plus any per-spawn overrides.
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fn emit_init_component(e: ptr, comp: ptr, rec: Node) -> void {
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let me = itoa(MAX_ENT)
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let c = find_comp(comp)
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if ptr_is_null(c) { perr(sconcat("spawn: unknown property ", comp)) }
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let hp = nreg(); emit(" "); emit(hp); emit(" = getelementptr inbounds ["); emit(me); emit(" x i8], ptr @H_"); emit(comp); emit(", i32 0, i32 "); emit(e); emit("\n")
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emit(" store i8 1, ptr "); emit(hp); emit("\n")
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let slot = nreg()
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emit(" "); emit(slot); emit(" = getelementptr inbounds ["); emit(me); emit(" x %Cmp_"); emit(comp); emit("], ptr @S_"); emit(comp); emit(", i32 0, i32 "); emit(e); emit("\n")
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# defaults
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let f = 0
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while f < len(c.kids) {
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let fd = c.kids[f]
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let addr = nreg()
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emit(" "); emit(addr); emit(" = getelementptr inbounds %Cmp_"); emit(comp); emit(", ptr "); emit(slot); emit(", i32 0, i32 "); emit(itoa(f)); emit("\n")
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let lt = llty(fd.ty)
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let v = "0"
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if streq(lt, "ptr") { v = "null" }
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if not ptr_is_null(fd.a) { let dv = emit_expr(fd.a); v = dv.code }
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emit(" store "); emit(lt); emit(" "); emit(v); emit(", ptr "); emit(addr); emit("\n")
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f = f + 1
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}
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# per-spawn overrides
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if not ptr_is_null(rec) {
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let j = 0
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while j < len(rec.kids) {
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let fi = rec.kids[j]
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let fidx = field_index(c, fi.s)
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if fidx >= 0 {
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let addr = nreg()
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emit(" "); emit(addr); emit(" = getelementptr inbounds %Cmp_"); emit(comp); emit(", ptr "); emit(slot); emit(", i32 0, i32 "); emit(itoa(fidx)); emit("\n")
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let dv = emit_expr(fi.a)
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emit(" store "); emit(llty(field_type(c, fi.s))); emit(" "); emit(dv.code); emit(", ptr "); emit(addr); emit("\n")
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}
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j = j + 1
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}
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}
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# @OnAttach(Property) runs once the property is attached and seeded
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let ab = onattach_body(comp)
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if not ptr_is_null(ab) {
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let save = nloc
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let vslot = emit_alloca("ptr")
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emit(" store ptr "); emit(slot); emit(", ptr "); emit(vslot); emit("\n")
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loc_push(comp, vslot, comp)
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emit_block(ab)
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nloc = save
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}
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}
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# bind each of a model's properties to entity `e`'s component storage, so an
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# @OnSpawn hook body can address them by name (like a query binding for one entity).
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fn emit_bind_props(model: Node, e: ptr) -> void {
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let me = itoa(MAX_ENT)
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let c = 0
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while c < len(model.kids) {
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let pname = model.kids[c].s
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let slot = nreg()
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emit(" "); emit(slot); emit(" = getelementptr inbounds ["); emit(me); emit(" x %Cmp_"); emit(pname); emit("], ptr @S_"); emit(pname); emit(", i32 0, i32 "); emit(e); emit("\n")
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let vslot = emit_alloca("ptr")
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emit(" store ptr "); emit(slot); emit(", ptr "); emit(vslot); emit("\n")
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loc_push(pname, vslot, pname)
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c = c + 1
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}
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}
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fn emit_spawn(st: Node) -> void {
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let e = emit_bind("call i32 @L_alloc()")
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let ak = find_arch_id(st.s)
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if ak > 0 {
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let me = itoa(MAX_ENT)
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let kp = nreg(); emit(" "); emit(kp); emit(" = getelementptr inbounds ["); emit(me); emit(" x i32], ptr @L_kind, i32 0, i32 "); emit(e); emit("\n")
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emit(" store i32 "); emit(itoa(ak)); emit(", ptr "); emit(kp); emit("\n")
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let arch = find_arch(st.s)
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let c = 0
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while c < len(arch.kids) {
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let cn = arch.kids[c].s
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let rec = ptr_null()
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let i = 0
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while i < len(st.kids) { if streq(st.kids[i].s, cn) { rec = st.kids[i].a }; i = i + 1 }
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emit_init_component(e, cn, rec)
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c = c + 1
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}
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let ob = onspawn_body(st.s) # @OnSpawn(Model) hook runs after init
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if not ptr_is_null(ob) {
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let save = nloc
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emit_bind_props(arch, e)
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emit_block(ob)
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nloc = save
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}
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} else {
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let i = 0
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while i < len(st.kids) { emit_init_component(e, st.kids[i].s, st.kids[i].a); i = i + 1 }
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}
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}
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fn emit_despawn(st: Node) -> void {
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let v = emit_expr(st.a)
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# @OnDespawn: dispatch on the entity's kind and run the matching model's hook
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if len(g_ondespawn) > 0 {
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let me = itoa(MAX_ENT)
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let kp = nreg(); emit(" "); emit(kp); emit(" = getelementptr inbounds ["); emit(me); emit(" x i32], ptr @L_kind, i32 0, i32 "); emit(v.code); emit("\n")
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let kind = emit_bind(sconcat("load i32, ptr ", kp))
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let i = 0
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while i < len(g_ondespawn) {
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let mname = g_ondespawn[i].s
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let c = emit_bind(sconcat("icmp eq i32 ", sconcat(kind, sconcat(", ", itoa(find_arch_id(mname))))))
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let yes = lbl("dh"); let no = lbl("dhn")
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emit(" br i1 "); emit(c); emit(", label %"); emit(yes); emit(", label %"); emit(no); emit("\n")
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emit(yes); emit(":\n call void @on_despawn_"); emit(mname); emit("(i32 "); emit(v.code); emit(")\n")
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emit(" br label %"); emit(no); emit("\n"); emit(no); emit(":\n")
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i = i + 1
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}
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}
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emit(" call void @L_free_entity(i32 "); emit(v.code); emit(")\n")
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}
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# enable/disable. `<P> on <e>` toggles a property's has-flag on an entity (its
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# data persists, so re-enabling restores it, and queries already skip a cleared
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# flag). A bare `<Model>` / `<Handler>` flips a global enabled flag.
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fn emit_toggle(st: Node) -> void {
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let val = "0"; if st.ival == 1 { val = "1" }
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if not ptr_is_null(st.a) {
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let ev = emit_expr(st.a)
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let me = itoa(MAX_ENT)
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let hp = nreg(); emit(" "); emit(hp); emit(" = getelementptr inbounds ["); emit(me); emit(" x i8], ptr @H_"); emit(st.s); emit(", i32 0, i32 "); emit(ev.code); emit("\n")
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emit(" store i8 "); emit(val); emit(", ptr "); emit(hp); emit("\n")
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let hb: Node = ptr_null()
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if st.ival == 1 { hb = onenable_body(st.s) } else { hb = ondisable_body(st.s) }
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if not ptr_is_null(hb) {
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let save = nloc
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let slot = nreg(); emit(" "); emit(slot); emit(" = getelementptr inbounds ["); emit(me); emit(" x %Cmp_"); emit(st.s); emit("], ptr @S_"); emit(st.s); emit(", i32 0, i32 "); emit(ev.code); emit("\n")
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let vslot = emit_alloca("ptr")
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emit(" store ptr "); emit(slot); emit(", ptr "); emit(vslot); emit("\n")
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loc_push(st.s, vslot, st.s)
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emit_block(hb)
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nloc = save
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}
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} else {
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let g = "@HE_"; if is_model(st.s) { g = "@ME_" } # model vs handler
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emit(" store i32 "); emit(val); emit(", ptr "); emit(g); emit(st.s); emit("\n")
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}
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}
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