iter ct.3.1: codegen lookup_ctor_by_type direct lookup; delete imports-fallback
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@@ -376,15 +376,15 @@ fn lower_workspace_inner(ws: &Workspace, alloc: AllocStrategy) -> Result<String>
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let key = imp.alias.clone().unwrap_or_else(|| imp.module.clone());
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import_map.insert(key, imp.module.clone());
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}
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// Iter 23.2 (fourth lockstep site, after Pattern::Ctor 15a /
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// Term::Ctor typecheck / lookup_ctor_by_type codegen): mirror
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// the typechecker's implicit-prelude import injection
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// (crates/ailang-check/src/lib.rs:1198 and :1300). User
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// modules that call prelude-resident fns synthesised by Iter
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// 22b.3 monomorphisation (e.g. `prelude.eq__Int` from a user
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// calling `eq x y` on Ints) need the codegen-side import_map
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// to resolve the `prelude.` prefix at the call site
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// (`lower_call`'s prefix lookup).
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// Iter 23.2: mirror the typechecker's implicit-prelude import
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// injection (crates/ailang-check/src/lib.rs:1198 and :1300).
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// User modules that call prelude-resident fns synthesised by
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// Iter 22b.3 monomorphisation (e.g. `prelude.eq__Int` from a
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// user calling `eq x y` on Ints) need the codegen-side
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// import_map to resolve the `prelude.` prefix at the call
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// site (`lower_call`'s prefix lookup). Post-ct.3 ctor lookup
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// is canonical (bare = local, qualified routes via import_map);
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// this entry serves fn-name resolution only.
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if m.name != "prelude" {
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import_map
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.entry("prelude".to_string())
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@@ -1676,25 +1676,13 @@ impl<'a> Emitter<'a> {
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}
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}
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/// Iter 15a: resolves a ctor reference by `type_name` (which may be
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/// qualified `module.T` or bare `T`) plus a bare ctor name. Returns
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/// the same `CtorRef` shape used by the local `ctor_index`. The
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/// returned `CtorRef.type_name` is always the bare type name as
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/// declared in the owning module. The current `module_name` is the
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/// authority for "bare" — that lets a specialised fn body emitted
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/// under a swapped `module_name` (see `emit_specialised_fn`)
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/// resolve its bare ctor references against the *owner* module's
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/// ctor table, not the consumer's.
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///
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/// Iter 23.1: bare-type lookup now falls back to imported modules
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/// when the ctor is not local — mirroring `lookup_ctor_in_pattern`.
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/// The typechecker (Iter 23.1 Task 3) already accepts a bare
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/// `Term::Ctor { type_name, ctor }` whose `type_name` is owned by
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/// an imported module (the implicit `prelude` import is the
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/// motivating case: an `Ordering` ctor `LT` written without an
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/// explicit `imports: ["prelude"]`). Codegen must honour the same
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/// resolution path so the lockstep `Pattern::Ctor ↔ Term::Ctor ↔
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/// codegen` is preserved.
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/// Resolves a `Term::Ctor.type_name` (canonical post-ct.1: bare
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/// = local TypeDef, qualified `<owner>.<type>` = explicit
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/// cross-module) to the codegen-side `CtorRef`. Qualified names
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/// route through `import_map`; bare names hit the current
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/// module's `module_ctor_index` directly. No imports-walk
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/// fallback — the typechecker (post-ct.2) and the workspace
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/// validator (post-ct.1) have already pinned canonical form.
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pub(crate) fn lookup_ctor_by_type(
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&self,
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type_name: &str,
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@@ -1725,43 +1713,30 @@ impl<'a> Emitter<'a> {
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}
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Ok(cref)
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} else {
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// Local-first: current module's ctor table wins on a
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// type-matching hit. A local ctor with the same name but
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// a DIFFERENT `type_name` is not a conflict — typecheck
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// has already pinned which type is meant, so the lookup
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// falls through to the imports-fallback. Only an
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// exhausted scan yields `Err`.
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if let Some(cref) = self
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// ct.3 Task 1: bare type_name is canonical (post-ct.1
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// validator) ⇒ local. Hit the current module's ctor
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// table directly; non-match is a hard error. No
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// imports-walk — the typechecker has already pinned
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// type_name to the owning module.
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let cref = self
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.module_ctor_index
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.get(self.module_name)
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.and_then(|m| m.get(ctor_name))
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.cloned()
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{
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if cref.type_name == type_name {
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return Ok(cref);
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}
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// type_name mismatch — keep looking in imports.
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.ok_or_else(|| {
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CodegenError::Internal(format!(
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"unknown ctor `{ctor_name}` for type `{type_name}` in module `{}`",
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self.module_name
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))
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})?;
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if cref.type_name != type_name {
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return Err(CodegenError::Internal(format!(
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"ctor `{ctor_name}` belongs to local type `{}`, not `{type_name}`; \
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cross-module ctor refs require qualified type_name",
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cref.type_name
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)));
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}
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// Iter 23.1: fallback — scan other modules for a bare ctor
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// whose declared `type_name` matches. The typechecker has
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// already pinned uniqueness (an ambiguous bare type name
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// is rejected with `CheckError::AmbiguousType`), so the
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// first hit whose owning type matches the requested
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// `type_name` is unique. Mirrors `lookup_ctor_in_pattern`.
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for (mname, ctors) in self.module_ctor_index.iter() {
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if mname == self.module_name {
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continue;
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}
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if let Some(cref) = ctors.get(ctor_name).cloned() {
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if cref.type_name == type_name {
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return Ok(cref);
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}
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}
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}
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Err(CodegenError::Internal(format!(
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"unknown ctor `{ctor_name}` for type `{type_name}` in module `{}`",
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self.module_name
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)))
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Ok(cref)
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}
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}
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