1use crate::builtins::{module_for_import, module_scope};
5use crate::env::{TypeDefKind, TypeEnv, ty_from_canon};
6use crate::error::{PositionedError, TypeError};
7use crate::position::Position;
8use crate::types::*;
9use crate::unifier::{UnifyError, Unifier};
10use indexmap::IndexMap;
11use lex_ast as a;
12use std::collections::{BTreeMap, HashMap};
13
14type FieldSchema = (Vec<String>, Vec<(String, String)>);
17
18pub struct ProgramTypes {
20 pub fn_signatures: IndexMap<String, Scheme>,
21 pub type_env: TypeEnv,
22 pub parse_required_fields: HashMap<usize, Vec<String>>,
31 pub parse_type_schemas: HashMap<usize, Vec<(String, String)>>,
36}
37
38pub fn check_program_with_positions(
52 stages: &[a::Stage],
53 positions: &BTreeMap<String, Position>,
54) -> Result<ProgramTypes, Vec<PositionedError>> {
55 check_program_inner(stages, Some(positions))
56 .map_err(|errs| errs.into_iter().map(|(e, fn_name)| {
57 let pos = fn_name.as_deref().and_then(|n| positions.get(n)).cloned();
58 PositionedError::new(e, pos)
59 }).collect())
60}
61
62pub fn check_program(stages: &[a::Stage]) -> Result<ProgramTypes, Vec<TypeError>> {
63 check_program_inner(stages, None)
64 .map_err(|errs| errs.into_iter().map(|(e, _)| e).collect())
65}
66
67fn check_program_inner(
68 stages: &[a::Stage],
69 _positions: Option<&BTreeMap<String, Position>>,
70) -> Result<ProgramTypes, Vec<(TypeError, Option<String>)>> {
71 let mut tcx = Checker::new();
72 let mut errors: Vec<(TypeError, Option<String>)> = Vec::new();
75
76 for stage in stages {
78 if let a::Stage::Import(i) = stage {
79 if let Some(mod_name) = module_for_import(&i.reference) {
80 if let Some(ty) = module_scope(mod_name, &tcx.type_env) {
81 tcx.globals.insert(i.alias.clone(), Scheme {
82 vars: collect_vars(&ty),
86 eff_vars: collect_eff_vars(&ty),
87 ty,
88 });
89 tcx.module_aliases.insert(i.alias.clone(), mod_name.to_string());
90 }
91 }
92 }
93 }
94
95 for stage in stages {
97 if let a::Stage::TypeDecl(td) = stage {
98 if let Err(e) = tcx.type_env.add_user_type(&td.name, td.clone()) {
99 errors.push((TypeError::RecursiveTypeWithoutConstructor {
100 at_node: "n_0".into(),
101 name: e,
102 }, None));
103 }
104 }
105 }
106
107 for stage in stages {
109 if let a::Stage::FnDecl(fd) = stage {
110 let scheme = function_scheme(fd);
111 tcx.globals.insert(fd.name.clone(), scheme);
112 tcx.fn_params.insert(fd.name.clone(), fd.params.clone());
116 }
117 }
118
119 let mut signatures = IndexMap::new();
124 for stage in stages {
125 if let a::Stage::FnDecl(fd) = stage {
126 match tcx.check_fn(fd) {
127 Ok(scheme) => { signatures.insert(fd.name.clone(), scheme); }
128 Err(es) => {
129 errors.extend(es.into_iter().map(|e| (e, Some(fd.name.clone()))));
130 }
131 }
132 }
133 }
134
135 if errors.is_empty() {
136 let mut parse_required_fields = HashMap::new();
142 let mut parse_type_schemas = HashMap::new();
143 for (call_ptr, ret_ty) in &tcx.pending_parse_calls {
144 if let Some((fields, schema)) = extract_record_fields_and_schema(&tcx.u, &tcx.type_env, ret_ty) {
145 parse_required_fields.insert(*call_ptr, fields);
146 parse_type_schemas.insert(*call_ptr, schema);
147 }
148 }
149 Ok(ProgramTypes {
150 fn_signatures: signatures,
151 type_env: tcx.type_env,
152 parse_required_fields,
153 parse_type_schemas,
154 })
155 } else {
156 Err(errors)
157 }
158}
159
160pub fn check_and_rewrite_program(
166 stages: &mut [a::Stage],
167) -> Result<ProgramTypes, Vec<TypeError>> {
168 let pt = check_program(&*stages)?;
173 if !pt.parse_required_fields.is_empty() {
174 rewrite_parse_calls(stages, &pt.parse_required_fields, &pt.parse_type_schemas);
175 }
176 Ok(pt)
177}
178
179fn rewrite_parse_calls(
193 stages: &mut [a::Stage],
194 required: &HashMap<usize, Vec<String>>,
195 schemas: &HashMap<usize, Vec<(String, String)>>,
196) {
197 for stage in stages.iter_mut() {
198 if let a::Stage::FnDecl(fd) = stage {
199 rewrite_in_expr(&mut fd.body, required, schemas);
200 }
201 }
202}
203
204fn rewrite_in_expr(
205 expr: &mut a::CExpr,
206 required: &HashMap<usize, Vec<String>>,
207 schemas: &HashMap<usize, Vec<(String, String)>>,
208) {
209 let ptr = expr as *const a::CExpr as usize;
210 let do_rewrite = required.get(&ptr).cloned();
211 let do_schema = schemas.get(&ptr).cloned();
212 match expr {
218 a::CExpr::Call { callee, args } => {
219 rewrite_in_expr(callee, required, schemas);
220 for a in args.iter_mut() { rewrite_in_expr(a, required, schemas); }
221 }
222 a::CExpr::Let { value, body, .. } => {
223 rewrite_in_expr(value, required, schemas);
224 rewrite_in_expr(body, required, schemas);
225 }
226 a::CExpr::Match { scrutinee, arms } => {
227 rewrite_in_expr(scrutinee, required, schemas);
228 for arm in arms.iter_mut() { rewrite_in_expr(&mut arm.body, required, schemas); }
229 }
230 a::CExpr::Block { statements, result } => {
231 for s in statements.iter_mut() { rewrite_in_expr(s, required, schemas); }
232 rewrite_in_expr(result, required, schemas);
233 }
234 a::CExpr::Constructor { args, .. } => {
235 for a in args.iter_mut() { rewrite_in_expr(a, required, schemas); }
236 }
237 a::CExpr::RecordLit { fields } => {
238 for f in fields.iter_mut() { rewrite_in_expr(&mut f.value, required, schemas); }
239 }
240 a::CExpr::TupleLit { items } | a::CExpr::ListLit { items } => {
241 for it in items.iter_mut() { rewrite_in_expr(it, required, schemas); }
242 }
243 a::CExpr::FieldAccess { value, .. } => rewrite_in_expr(value, required, schemas),
244 a::CExpr::Lambda { body, .. } => rewrite_in_expr(body, required, schemas),
245 a::CExpr::BinOp { lhs, rhs, .. } => {
246 rewrite_in_expr(lhs, required, schemas);
247 rewrite_in_expr(rhs, required, schemas);
248 }
249 a::CExpr::UnaryOp { expr, .. } => rewrite_in_expr(expr, required, schemas),
250 a::CExpr::Return { value } => rewrite_in_expr(value, required, schemas),
251 a::CExpr::Literal { .. } | a::CExpr::Var { .. } => {}
252 }
253 if let Some(fields) = do_rewrite {
254 match expr {
255 a::CExpr::Call { callee, args } => {
256 if let a::CExpr::FieldAccess { field, .. } = callee.as_mut() {
257 debug_assert_eq!(field, "parse",
258 "rewrite_in_expr: only `.parse` calls should be in the table");
259 *field = "parse_strict_typed".to_string();
262 }
263 args.push(a::CExpr::ListLit {
265 items: fields.into_iter()
266 .map(|f| a::CExpr::Literal {
267 value: a::CLit::Str { value: f },
268 })
269 .collect(),
270 });
271 let schema = do_schema.unwrap_or_default();
273 args.push(a::CExpr::ListLit {
274 items: schema.into_iter()
275 .map(|(name, tag)| a::CExpr::TupleLit {
276 items: vec![
277 a::CExpr::Literal { value: a::CLit::Str { value: name } },
278 a::CExpr::Literal { value: a::CLit::Str { value: tag } },
279 ],
280 })
281 .collect(),
282 });
283 }
284 _ => unreachable!("rewrite table key must point to a Call expression"),
285 }
286 }
287}
288
289fn extract_record_fields_and_schema(
295 u: &Unifier,
296 env: &TypeEnv,
297 ty: &Ty,
298) -> Option<FieldSchema> {
299 let resolved = u.resolve(ty);
300 let Ty::Con(ref name, ref args) = resolved else { return None; };
301 if name != "Result" || args.len() != 2 { return None; }
302 let ok_ty = u.resolve(&args[0]);
303 let unfolded = unfold_record_alias_static(env, ok_ty);
304 if let Ty::Record(fields) = unfolded {
305 let names: Vec<String> = fields.keys().cloned().collect();
306 let schema: Vec<(String, String)> = fields.iter()
307 .map(|(k, v)| (k.clone(), ty_to_tag(u, v)))
308 .collect();
309 Some((names, schema))
310 } else {
311 None
312 }
313}
314
315fn ty_to_tag(u: &Unifier, ty: &Ty) -> String {
319 let resolved = u.resolve(ty);
320 match &resolved {
321 Ty::Prim(Prim::Int) => "Int".to_string(),
322 Ty::Prim(Prim::Float) => "Float".to_string(),
323 Ty::Prim(Prim::Bool) => "Bool".to_string(),
324 Ty::Prim(Prim::Str) => "Str".to_string(),
325 Ty::Con(name, args) if name == "Option" && args.len() == 1 => {
326 format!("Option[{}]", ty_to_tag(u, &args[0]))
327 }
328 Ty::List(inner) => {
329 format!("List[{}]", ty_to_tag(u, inner))
330 }
331 Ty::Record(_) => "Record".to_string(),
332 _ => "Any".to_string(),
333 }
334}
335
336fn unfold_record_alias_static(env: &TypeEnv, ty: Ty) -> Ty {
342 if let Ty::Con(ref n, ref args) = ty {
343 if args.is_empty() {
344 if let Some(td) = env.types.get(n) {
345 if let TypeDefKind::Alias(inner) = &td.kind {
346 return inner.clone();
347 }
348 }
349 }
350 }
351 ty
352}
353
354fn collect_vars(t: &Ty) -> Vec<TyVarId> {
355 let mut out = Vec::new();
356 fn walk(t: &Ty, out: &mut Vec<TyVarId>) {
357 match t {
358 Ty::Var(v) => { if !out.contains(v) { out.push(*v); } }
359 Ty::Prim(_) | Ty::Unit | Ty::Never => {}
360 Ty::List(inner) => walk(inner, out),
361 Ty::Tuple(items) => for it in items { walk(it, out); },
362 Ty::Record(fs) => for v in fs.values() { walk(v, out); },
363 Ty::Con(_, args) => for a in args { walk(a, out); },
364 Ty::Function { params, ret, .. } => {
365 for p in params { walk(p, out); }
366 walk(ret, out);
367 }
368 }
369 }
370 walk(t, &mut out);
371 out
372}
373
374fn collect_eff_vars(t: &Ty) -> Vec<u32> {
378 let mut out = Vec::new();
379 fn walk(t: &Ty, out: &mut Vec<u32>) {
380 match t {
381 Ty::Var(_) | Ty::Prim(_) | Ty::Unit | Ty::Never => {}
382 Ty::List(inner) => walk(inner, out),
383 Ty::Tuple(items) => for it in items { walk(it, out); },
384 Ty::Record(fs) => for v in fs.values() { walk(v, out); },
385 Ty::Con(_, args) => for a in args { walk(a, out); },
386 Ty::Function { params, effects, ret } => {
387 if let Some(v) = effects.var {
388 if !out.contains(&v) { out.push(v); }
389 }
390 for p in params { walk(p, out); }
391 walk(ret, out);
392 }
393 }
394 }
395 walk(t, &mut out);
396 out
397}
398
399fn function_scheme(fd: &a::FnDecl) -> Scheme {
400 let params: Vec<Ty> = fd.params.iter().map(|p| ty_from_canon(&p.ty, &fd.type_params)).collect();
402 let ret = ty_from_canon(&fd.return_type, &fd.type_params);
403 let effects = EffectSet {
407 concrete: {
408 let mut s = std::collections::BTreeSet::new();
409 for e in &fd.effects {
410 let arg = e.arg.as_ref().map(|a| match a {
411 a::EffectArg::Str { value } => crate::types::EffectArg::Str(value.clone()),
412 a::EffectArg::Int { value } => crate::types::EffectArg::Int(*value),
413 a::EffectArg::Ident { value } => crate::types::EffectArg::Ident(value.clone()),
414 });
415 s.insert(crate::types::EffectKind { name: e.name.clone(), arg });
416 }
417 s
418 },
419 var: None,
420 };
421 let ty = Ty::Function { params, effects, ret: Box::new(ret) };
422 let vars: Vec<TyVarId> = (0..fd.type_params.len() as u32).collect();
423 Scheme { vars, eff_vars: Vec::new(), ty }
427}
428
429struct Checker {
430 u: Unifier,
431 type_env: TypeEnv,
432 globals: IndexMap<String, Scheme>,
433 module_aliases: IndexMap<String, String>,
437 pending_parse_calls: Vec<(usize, Ty)>,
445 fn_params: IndexMap<String, Vec<a::Param>>,
451}
452
453impl Checker {
454 fn new() -> Self {
455 Self {
456 u: Unifier::new(),
457 type_env: TypeEnv::new_with_builtins(),
458 globals: IndexMap::new(),
459 module_aliases: IndexMap::new(),
460 pending_parse_calls: Vec::new(),
461 fn_params: IndexMap::new(),
462 }
463 }
464
465 fn unfold_record_alias(&self, ty: Ty) -> Ty {
469 if let Ty::Con(ref n, ref args) = ty {
470 if args.is_empty() {
471 if let Some(td) = self.type_env.types.get(n) {
472 if let TypeDefKind::Alias(inner) = &td.kind {
473 return inner.clone();
474 }
475 }
476 }
477 }
478 ty
479 }
480
481 fn is_alias_con(&self, ty: &Ty) -> bool {
486 if let Ty::Con(name, args) = ty {
487 if args.is_empty() {
488 if let Some(td) = self.type_env.types.get(name) {
489 return matches!(td.kind, TypeDefKind::Alias(_));
490 }
491 }
492 }
493 false
494 }
495
496 fn is_module_parse_call(&self, callee: &a::CExpr) -> bool {
501 if let a::CExpr::FieldAccess { value, field } = callee {
502 if field != "parse" { return false; }
503 if let a::CExpr::Var { name } = value.as_ref() {
504 if let Some(module) = self.module_aliases.get(name) {
505 return matches!(module.as_str(), "json" | "toml" | "yaml");
506 }
507 }
508 }
509 false
510 }
511
512 fn unify_with_record_coercion(&mut self, a: &Ty, b: &Ty) -> Result<(), UnifyError> {
524 let a = self.u.resolve(a);
525 let b = self.u.resolve(b);
526 self.unify_coerce_inner(a, b)
527 }
528
529 fn unify_coerce_inner(&mut self, a: Ty, b: Ty) -> Result<(), UnifyError> {
530 let (a, b) = match (&a, &b) {
556 (Ty::Con(n1, _), Ty::Con(n2, _)) if n1 == n2 => (a, b),
557 (Ty::Var(_), _) | (_, Ty::Var(_)) => (a, b),
558 (Ty::Con(_, _), Ty::Con(_, _))
559 if self.is_alias_con(&a) && self.is_alias_con(&b) =>
560 {
561 (a, b)
562 }
563 _ => {
564 let a_u = if let Ty::Con(_, _) = &a {
565 self.unfold_record_alias(a.clone())
566 } else {
567 a
568 };
569 let b_u = if let Ty::Con(_, _) = &b {
570 self.unfold_record_alias(b.clone())
571 } else {
572 b
573 };
574 (a_u, b_u)
575 }
576 };
577
578 match (&a, &b) {
579 (Ty::Record(fa), Ty::Record(fb)) => {
580 if fa.len() != fb.len() {
581 return Err(UnifyError::Mismatch { a: a.clone(), b: b.clone() });
582 }
583 for (k, va) in fa.clone() {
584 match fb.get(&k) {
585 Some(vb) => self.unify_coerce_inner(va, vb.clone())?,
586 None => return Err(UnifyError::Mismatch { a: a.clone(), b: b.clone() }),
587 }
588 }
589 Ok(())
590 }
591 (Ty::List(ta), Ty::List(tb)) => {
592 self.unify_coerce_inner((**ta).clone(), (**tb).clone())
593 }
594 (Ty::Tuple(xs), Ty::Tuple(ys)) if xs.len() == ys.len() => {
595 for (x, y) in xs.clone().into_iter().zip(ys.clone()) {
596 self.unify_coerce_inner(x, y)?;
597 }
598 Ok(())
599 }
600 (Ty::Con(n1, a1), Ty::Con(n2, a2)) if n1 == n2 && a1.len() == a2.len() => {
603 for (x, y) in a1.clone().into_iter().zip(a2.clone()) {
604 self.unify_coerce_inner(x, y)?;
605 }
606 Ok(())
607 }
608 (Ty::Function { params: pa, effects: ea, ret: ra },
613 Ty::Function { params: pb, effects: eb, ret: rb })
614 if pa.len() == pb.len() => {
615 for (x, y) in pa.clone().into_iter().zip(pb.clone()) {
616 self.unify_coerce_inner(x, y)?;
617 }
618 self.u.unify_effects(ea, eb).map_err(|_| UnifyError::Mismatch { a: a.clone(), b: b.clone() })?;
619 self.unify_coerce_inner((**ra).clone(), (**rb).clone())
620 }
621 _ => self.u.unify(&a, &b),
622 }
623 }
624
625 fn check_fn(&mut self, fd: &a::FnDecl) -> Result<Scheme, Vec<TypeError>> {
626 let scheme = function_scheme(fd);
628 let (param_tys, declared_effects, ret_ty) = match instantiate(&scheme, &mut self.u) {
629 Ty::Function { params, effects, ret } => (params, effects, *ret),
630 _ => unreachable!(),
631 };
632
633 let mut locals: IndexMap<String, Ty> = IndexMap::new();
634 for (p, t) in fd.params.iter().zip(param_tys.iter()) {
635 locals.insert(p.name.clone(), t.clone());
636 }
637
638 let mut inferred_effects = EffectSet::empty();
639 let body_ty = self.check_expr(&fd.body, "n_0", &mut locals, &mut inferred_effects)
640 .map_err(|e| vec![e])?;
641
642 if let Err(e) = self.unify_with_record_coercion(&body_ty, &ret_ty) {
648 return Err(vec![mismatch_err("n_0", e, &self.u, vec![format!("in function `{}`", fd.name)])]);
649 }
650
651 if !inferred_effects.is_subset(&declared_effects) {
652 for e in inferred_effects.concrete.iter() {
654 if !declared_effects.concrete.iter().any(|d| d.subsumes(e)) {
655 return Err(vec![TypeError::EffectNotDeclared {
656 at_node: "n_0".into(),
657 effect: e.pretty(),
658 }]);
659 }
660 }
661 }
662
663 Ok(scheme)
664 }
665
666 fn check_expr(
667 &mut self,
668 e: &a::CExpr,
669 node_id: &str,
670 locals: &mut IndexMap<String, Ty>,
671 effs: &mut EffectSet,
672 ) -> Result<Ty, TypeError> {
673 match e {
674 a::CExpr::Literal { value } => Ok(lit_type(value)),
675 a::CExpr::Var { name } => {
676 if let Some(t) = locals.get(name) {
677 return Ok(t.clone());
678 }
679 if let Some(scheme) = self.globals.get(name).cloned() {
680 return Ok(instantiate(&scheme, &mut self.u));
681 }
682 Err(TypeError::UnknownIdentifier { at_node: node_id.into(), name: name.clone() })
683 }
684 a::CExpr::Constructor { name, args } => self.check_constructor(name, args, node_id, locals, effs),
685 a::CExpr::Call { callee, args } => self.check_call(e, callee, args, node_id, locals, effs),
686 a::CExpr::Let { name, ty, value, body } => {
687 let v_ty = self.check_expr(value, node_id, locals, effs)?;
688 if let Some(declared) = ty {
689 let d = ty_from_canon(declared, &[]);
690 if let Err(err) = self.unify_with_record_coercion(&v_ty, &d) {
691 return Err(mismatch_err(node_id, err, &self.u, vec![format!("in let `{}`", name)]));
692 }
693 }
694 let prev = locals.insert(name.clone(), v_ty);
695 let body_ty = self.check_expr(body, node_id, locals, effs)?;
696 match prev {
697 Some(p) => { locals.insert(name.clone(), p); }
698 None => { locals.shift_remove(name); }
699 }
700 Ok(body_ty)
701 }
702 a::CExpr::Match { scrutinee, arms } => {
703 let scrut_ty = self.check_expr(scrutinee, node_id, locals, effs)?;
704 if arms.is_empty() {
705 return Err(TypeError::NonExhaustiveMatch {
706 at_node: node_id.into(), missing: vec!["_".into()]
707 });
708 }
709 let result_ty = self.u.fresh();
710 for arm in arms {
711 let mut arm_locals = locals.clone();
712 self.bind_pattern(&arm.pattern, &scrut_ty, &mut arm_locals, node_id)?;
713 let arm_ty = self.check_expr(&arm.body, node_id, &mut arm_locals, effs)?;
714 if let Err(err) = self.unify_with_record_coercion(&arm_ty, &result_ty) {
715 return Err(mismatch_err(node_id, err, &self.u, vec!["in match arm".into()]));
716 }
717 }
718 Ok(result_ty)
719 }
720 a::CExpr::Block { statements, result } => {
721 for s in statements {
722 self.check_expr(s, node_id, locals, effs)?;
723 }
724 self.check_expr(result, node_id, locals, effs)
725 }
726 a::CExpr::RecordLit { fields } => {
727 let mut tys = IndexMap::new();
728 for f in fields {
729 if tys.contains_key(&f.name) {
730 return Err(TypeError::DuplicateField {
731 at_node: node_id.into(), field: f.name.clone()
732 });
733 }
734 let ft = self.check_expr(&f.value, node_id, locals, effs)?;
735 tys.insert(f.name.clone(), ft);
736 }
737 Ok(Ty::Record(tys))
738 }
739 a::CExpr::TupleLit { items } => {
740 let mut ts = Vec::new();
741 for it in items { ts.push(self.check_expr(it, node_id, locals, effs)?); }
742 Ok(Ty::Tuple(ts))
743 }
744 a::CExpr::ListLit { items } => {
745 let elem = self.u.fresh();
746 for it in items {
747 let t = self.check_expr(it, node_id, locals, effs)?;
748 if let Err(err) = self.unify_with_record_coercion(&t, &elem) {
749 return Err(mismatch_err(node_id, err, &self.u, vec!["in list literal".into()]));
750 }
751 }
752 Ok(Ty::List(Box::new(elem)))
753 }
754 a::CExpr::FieldAccess { value, field } => {
755 let vt = self.check_expr(value, node_id, locals, effs)?;
756 let resolved = self.u.resolve(&vt);
757 let resolved = match resolved {
759 Ty::Con(ref n, _) => match self.type_env.types.get(n) {
760 Some(td) => match &td.kind {
761 TypeDefKind::Alias(inner @ Ty::Record(_)) => inner.clone(),
762 _ => resolved,
763 },
764 None => resolved,
765 },
766 other => other,
767 };
768 match resolved {
769 Ty::Record(fields) => fields.get(field).cloned()
770 .ok_or_else(|| TypeError::UnknownField {
771 at_node: node_id.into(),
772 record_type: Ty::Record(fields.clone()).pretty(),
773 field: field.clone(),
774 }),
775 other => Err(TypeError::TypeMismatch {
776 at_node: node_id.into(),
777 expected: "record".into(),
778 got: other.pretty(),
779 context: vec![format!("field access `.{}`", field)],
780 }),
781 }
782 }
783 a::CExpr::Lambda { params, return_type, effects: l_effects, body } => {
784 let param_tys: Vec<Ty> = params.iter().map(|p| ty_from_canon(&p.ty, &[])).collect();
785 let ret_ty = ty_from_canon(return_type, &[]);
786 let declared = EffectSet {
787 concrete: {
788 let mut s = std::collections::BTreeSet::new();
789 for e in l_effects {
790 let arg = e.arg.as_ref().map(|a| match a {
791 a::EffectArg::Str { value } => crate::types::EffectArg::Str(value.clone()),
792 a::EffectArg::Int { value } => crate::types::EffectArg::Int(*value),
793 a::EffectArg::Ident { value } => crate::types::EffectArg::Ident(value.clone()),
794 });
795 s.insert(crate::types::EffectKind { name: e.name.clone(), arg });
796 }
797 s
798 },
799 var: None,
800 };
801 let mut inner_locals = locals.clone();
802 for (p, t) in params.iter().zip(param_tys.iter()) {
803 inner_locals.insert(p.name.clone(), t.clone());
804 }
805 let mut inner_effs = EffectSet::empty();
806 let body_ty = self.check_expr(body, node_id, &mut inner_locals, &mut inner_effs)?;
807 if let Err(err) = self.unify_with_record_coercion(&body_ty, &ret_ty) {
808 return Err(mismatch_err(node_id, err, &self.u, vec!["in lambda body".into()]));
809 }
810 if !inner_effs.is_subset(&declared) {
811 for e in inner_effs.concrete.iter() {
812 if !declared.concrete.iter().any(|d| d.subsumes(e)) {
813 return Err(TypeError::EffectNotDeclared {
814 at_node: node_id.into(),
815 effect: e.pretty(),
816 });
817 }
818 }
819 }
820 Ok(Ty::function(param_tys, declared, ret_ty))
821 }
822 a::CExpr::BinOp { op, lhs, rhs } => self.check_binop(op, lhs, rhs, node_id, locals, effs),
823 a::CExpr::UnaryOp { op, expr } => {
824 let t = self.check_expr(expr, node_id, locals, effs)?;
825 match op.as_str() {
826 "-" => {
827 let r = self.u.resolve(&t);
829 match r {
830 Ty::Prim(Prim::Int) | Ty::Prim(Prim::Float) => Ok(t),
831 Ty::Var(_) => {
832 self.u.unify(&t, &Ty::int()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![]))?;
834 Ok(Ty::int())
835 }
836 other => Err(TypeError::TypeMismatch {
837 at_node: node_id.into(),
838 expected: "Int or Float".into(),
839 got: other.pretty(),
840 context: vec!["unary `-`".into()],
841 }),
842 }
843 }
844 "not" => {
845 self.u.unify(&t, &Ty::bool()).map_err(|e| mismatch_err(node_id, e, &self.u, vec!["unary `not`".into()]))?;
846 Ok(Ty::bool())
847 }
848 other => panic!("unknown unary op: {other}"),
849 }
850 }
851 a::CExpr::Return { value } => {
852 self.check_expr(value, node_id, locals, effs)?;
855 Ok(Ty::Never)
856 }
857 }
858 }
859
860 fn check_binop(
861 &mut self,
862 op: &str,
863 lhs: &a::CExpr,
864 rhs: &a::CExpr,
865 node_id: &str,
866 locals: &mut IndexMap<String, Ty>,
867 effs: &mut EffectSet,
868 ) -> Result<Ty, TypeError> {
869 let lt = self.check_expr(lhs, node_id, locals, effs)?;
870 let rt = self.check_expr(rhs, node_id, locals, effs)?;
871 match op {
872 "+" => {
873 self.u.unify(<, &rt).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
881 let r = self.unfold_record_alias(self.u.resolve(<));
882 match r {
883 Ty::Prim(Prim::Int) | Ty::Prim(Prim::Float) | Ty::Prim(Prim::Str) => Ok(lt),
884 Ty::Var(_) => {
885 self.u.unify(<, &Ty::int()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
886 Ok(Ty::int())
887 }
888 other => Err(TypeError::TypeMismatch {
889 at_node: node_id.into(),
890 expected: "Int, Float, or Str".into(),
891 got: other.pretty(),
892 context: vec![format!("operator `{op}`")],
893 }),
894 }
895 }
896 "-" | "*" | "/" | "%" => {
897 self.u.unify(<, &rt).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
898 let r = self.unfold_record_alias(self.u.resolve(<));
899 match r {
900 Ty::Prim(Prim::Int) | Ty::Prim(Prim::Float) => Ok(lt),
901 Ty::Var(_) => {
902 self.u.unify(<, &Ty::int()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
903 Ok(Ty::int())
904 }
905 other => Err(TypeError::TypeMismatch {
906 at_node: node_id.into(),
907 expected: "Int or Float".into(),
908 got: other.pretty(),
909 context: vec![format!("operator `{op}`")],
910 }),
911 }
912 }
913 "==" | "!=" => {
914 self.u.unify(<, &rt).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
915 Ok(Ty::bool())
916 }
917 "<" | "<=" | ">" | ">=" => {
918 self.u.unify(<, &rt).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
919 let r = self.unfold_record_alias(self.u.resolve(<));
920 match r {
921 Ty::Prim(Prim::Int) | Ty::Prim(Prim::Float) | Ty::Prim(Prim::Str) => Ok(Ty::bool()),
922 Ty::Var(_) => {
923 self.u.unify(<, &Ty::int()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
924 Ok(Ty::bool())
925 }
926 other => Err(TypeError::TypeMismatch {
927 at_node: node_id.into(),
928 expected: "Int, Float, or Str".into(),
929 got: other.pretty(),
930 context: vec![format!("operator `{op}`")],
931 }),
932 }
933 }
934 "and" | "or" => {
935 self.u.unify(<, &Ty::bool()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
936 self.u.unify(&rt, &Ty::bool()).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("operator `{op}`")]))?;
937 Ok(Ty::bool())
938 }
939 other => panic!("unknown binop: {other}"),
940 }
941 }
942
943 fn check_call(
944 &mut self,
945 call_expr: &a::CExpr,
946 callee: &a::CExpr,
947 args: &[a::CExpr],
948 node_id: &str,
949 locals: &mut IndexMap<String, Ty>,
950 effs: &mut EffectSet,
951 ) -> Result<Ty, TypeError> {
952 let parse_call_ptr = if self.is_module_parse_call(callee) {
960 Some(call_expr as *const a::CExpr as usize)
961 } else {
962 None
963 };
964 let callee_ty = self.check_expr(callee, node_id, locals, effs)?;
965 let resolved = self.u.resolve(&callee_ty);
966 match resolved {
967 Ty::Function { params, effects, ret } => {
968 if params.len() != args.len() {
969 return Err(TypeError::ArityMismatch {
970 at_node: node_id.into(),
971 expected: params.len(),
972 got: args.len(),
973 });
974 }
975 for (i, (a, p)) in args.iter().zip(params.iter()).enumerate() {
976 let at = self.check_expr(a, node_id, locals, effs)?;
977 if let Err(err) = self.unify_with_record_coercion(&at, p) {
978 return Err(mismatch_err(node_id, err, &self.u, vec![format!("argument {} of call", i + 1)]));
979 }
980 }
981 if let a::CExpr::Var { name: callee_name } = callee {
988 if let Some(callee_params) = self.fn_params.get(callee_name).cloned() {
989 for (i, (param, arg)) in callee_params.iter().zip(args.iter()).enumerate() {
990 if let a::TypeExpr::Refined { binding, predicate, .. } = ¶m.ty {
991 let outcome = crate::discharge::try_discharge(
992 predicate, binding, arg);
993 if let crate::discharge::DischargeOutcome::Refuted { reason } = outcome {
994 return Err(TypeError::RefinementViolation {
995 at_node: node_id.into(),
996 fn_name: callee_name.clone(),
997 param_index: i,
998 binding: binding.clone(),
999 reason,
1000 });
1001 }
1002 }
1003 }
1004 }
1005 }
1006 let resolved_effects = self.u.resolve_effects(&effects);
1011 effs.extend(&resolved_effects);
1012 if let Some(ptr) = parse_call_ptr {
1020 self.pending_parse_calls.push((ptr, (*ret).clone()));
1021 }
1022 Ok(*ret)
1023 }
1024 Ty::Var(_) => {
1025 let mut p_tys = Vec::new();
1027 for a in args { p_tys.push(self.check_expr(a, node_id, locals, effs)?); }
1028 let r = self.u.fresh();
1029 let f = Ty::function(p_tys, EffectSet::empty(), r.clone());
1030 self.u.unify(&callee_ty, &f).map_err(|e| mismatch_err(node_id, e, &self.u, vec!["in call".into()]))?;
1031 Ok(r)
1032 }
1033 other => Err(TypeError::TypeMismatch {
1034 at_node: node_id.into(),
1035 expected: "function".into(),
1036 got: other.pretty(),
1037 context: vec!["in call".into()],
1038 }),
1039 }
1040 }
1041
1042 fn check_constructor(
1043 &mut self,
1044 name: &str,
1045 args: &[a::CExpr],
1046 node_id: &str,
1047 locals: &mut IndexMap<String, Ty>,
1048 effs: &mut EffectSet,
1049 ) -> Result<Ty, TypeError> {
1050 let owning = self.type_env.ctor_to_type.get(name).cloned()
1051 .ok_or_else(|| TypeError::UnknownVariant {
1052 at_node: node_id.into(),
1053 constructor: name.to_string(),
1054 })?;
1055 let def = self.type_env.types.get(&owning).cloned()
1056 .expect("ctor_to_type points to a real type");
1057 let variants = match &def.kind {
1058 TypeDefKind::Union(v) => v.clone(),
1059 _ => return Err(TypeError::UnknownVariant {
1060 at_node: node_id.into(),
1061 constructor: name.to_string(),
1062 }),
1063 };
1064 let mut subst = IndexMap::new();
1067 let mut con_args = Vec::with_capacity(def.params.len());
1068 for (i, _p) in def.params.iter().enumerate() {
1069 let fresh = self.u.fresh();
1070 subst.insert(i as u32, fresh.clone());
1071 con_args.push(fresh);
1072 }
1073 let payload = variants.get(name).cloned().flatten();
1074 match (payload, args) {
1075 (None, []) => Ok(Ty::Con(owning, con_args)),
1076 (Some(payload), args) => {
1077 let inst_payload = subst_vars(&payload, &subst, &IndexMap::new());
1078 let arg_count = match &inst_payload {
1079 Ty::Tuple(items) => items.len(),
1080 _ => 1,
1081 };
1082 if arg_count != args.len() {
1083 return Err(TypeError::ArityMismatch {
1084 at_node: node_id.into(),
1085 expected: arg_count,
1086 got: args.len(),
1087 });
1088 }
1089 if args.len() == 1 {
1090 let at = self.check_expr(&args[0], node_id, locals, effs)?;
1091 self.unify_with_record_coercion(&at, &inst_payload).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("constructor `{}`", name)]))?;
1092 } else if let Ty::Tuple(items) = inst_payload {
1093 for (i, (a, t)) in args.iter().zip(items.iter()).enumerate() {
1094 let at = self.check_expr(a, node_id, locals, effs)?;
1095 self.unify_with_record_coercion(&at, t).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("constructor `{}` arg {}", name, i + 1)]))?;
1096 }
1097 }
1098 Ok(Ty::Con(owning, con_args))
1099 }
1100 (None, _) => Err(TypeError::ArityMismatch {
1101 at_node: node_id.into(), expected: 0, got: args.len(),
1102 }),
1103 }
1104 }
1105
1106 fn bind_pattern(
1107 &mut self,
1108 pat: &a::Pattern,
1109 ty: &Ty,
1110 locals: &mut IndexMap<String, Ty>,
1111 node_id: &str,
1112 ) -> Result<(), TypeError> {
1113 match pat {
1114 a::Pattern::PWild => Ok(()),
1115 a::Pattern::PVar { name } => {
1116 locals.insert(name.clone(), ty.clone());
1117 Ok(())
1118 }
1119 a::Pattern::PLiteral { value } => {
1120 let lt = lit_type(value);
1121 self.unify_with_record_coercion(<, ty).map_err(|e| mismatch_err(node_id, e, &self.u, vec!["in pattern".into()]))?;
1122 Ok(())
1123 }
1124 a::Pattern::PConstructor { name, args } => {
1125 let owning = self.type_env.ctor_to_type.get(name).cloned()
1127 .ok_or_else(|| TypeError::UnknownVariant {
1128 at_node: node_id.into(), constructor: name.clone(),
1129 })?;
1130 let def = self.type_env.types.get(&owning).cloned().unwrap();
1131 let mut subst = IndexMap::new();
1132 let mut con_args = Vec::new();
1133 for (i, _) in def.params.iter().enumerate() {
1134 let fresh = self.u.fresh();
1135 subst.insert(i as u32, fresh.clone());
1136 con_args.push(fresh);
1137 }
1138 let con_ty = Ty::Con(owning.clone(), con_args);
1139 self.unify_with_record_coercion(&con_ty, ty).map_err(|e| mismatch_err(node_id, e, &self.u, vec![format!("constructor pattern `{}`", name)]))?;
1140 let payload = match &def.kind {
1141 TypeDefKind::Union(v) => v.get(name).cloned().flatten(),
1142 _ => None,
1143 };
1144 match (payload, args.as_slice()) {
1145 (None, []) => Ok(()),
1146 (Some(payload), args) => {
1147 let inst = subst_vars(&payload, &subst, &IndexMap::new());
1148 if args.len() == 1 {
1149 self.bind_pattern(&args[0], &inst, locals, node_id)?;
1150 } else if let Ty::Tuple(items) = inst {
1151 for (a, t) in args.iter().zip(items.iter()) {
1152 self.bind_pattern(a, t, locals, node_id)?;
1153 }
1154 }
1155 Ok(())
1156 }
1157 (None, _) => Err(TypeError::ArityMismatch {
1158 at_node: node_id.into(), expected: 0, got: args.len(),
1159 }),
1160 }
1161 }
1162 a::Pattern::PRecord { fields } => {
1163 let resolved = self.unfold_record_alias(self.u.resolve(ty));
1168 let rec = match resolved {
1169 Ty::Record(r) => r,
1170 _ => return Err(TypeError::TypeMismatch {
1171 at_node: node_id.into(),
1172 expected: "record".into(),
1173 got: ty.pretty(),
1174 context: vec!["in record pattern".into()],
1175 }),
1176 };
1177 for f in fields {
1178 let ft = rec.get(&f.name).cloned()
1179 .ok_or_else(|| TypeError::UnknownField {
1180 at_node: node_id.into(),
1181 record_type: Ty::Record(rec.clone()).pretty(),
1182 field: f.name.clone(),
1183 })?;
1184 self.bind_pattern(&f.pattern, &ft, locals, node_id)?;
1185 }
1186 Ok(())
1187 }
1188 a::Pattern::PTuple { items } => {
1189 let resolved = self.u.resolve(ty);
1190 let tup = match resolved {
1191 Ty::Tuple(t) => t,
1192 Ty::Var(_) => {
1193 let fresh: Vec<Ty> = items.iter().map(|_| self.u.fresh()).collect();
1194 let tup_ty = Ty::Tuple(fresh.clone());
1195 self.unify_with_record_coercion(&tup_ty, ty).map_err(|e| mismatch_err(node_id, e, &self.u, vec!["in tuple pattern".into()]))?;
1196 fresh
1197 }
1198 other => return Err(TypeError::TypeMismatch {
1199 at_node: node_id.into(),
1200 expected: "tuple".into(),
1201 got: other.pretty(),
1202 context: vec!["in tuple pattern".into()],
1203 }),
1204 };
1205 if tup.len() != items.len() {
1206 return Err(TypeError::ArityMismatch {
1207 at_node: node_id.into(), expected: tup.len(), got: items.len(),
1208 });
1209 }
1210 for (p, t) in items.iter().zip(tup.iter()) {
1211 self.bind_pattern(p, t, locals, node_id)?;
1212 }
1213 Ok(())
1214 }
1215 }
1216 }
1217}
1218
1219fn lit_type(l: &a::CLit) -> Ty {
1220 match l {
1221 a::CLit::Int { .. } => Ty::int(),
1222 a::CLit::Float { .. } => Ty::float(),
1223 a::CLit::Str { .. } => Ty::str(),
1224 a::CLit::Bytes { .. } => Ty::bytes(),
1225 a::CLit::Bool { .. } => Ty::bool(),
1226 a::CLit::Unit => Ty::Unit,
1227 }
1228}
1229
1230fn instantiate(s: &Scheme, u: &mut Unifier) -> Ty {
1231 let mut ty_subst = IndexMap::new();
1232 for v in &s.vars { ty_subst.insert(*v, u.fresh()); }
1233 let mut eff_subst = IndexMap::new();
1234 for v in &s.eff_vars { eff_subst.insert(*v, u.fresh_eff_id()); }
1235 subst_vars(&s.ty, &ty_subst, &eff_subst)
1236}
1237
1238fn subst_vars(
1239 t: &Ty,
1240 subst: &IndexMap<TyVarId, Ty>,
1241 eff_subst: &IndexMap<u32, u32>,
1242) -> Ty {
1243 match t {
1244 Ty::Var(v) => subst.get(v).cloned().unwrap_or_else(|| Ty::Var(*v)),
1245 Ty::Prim(_) | Ty::Unit | Ty::Never => t.clone(),
1246 Ty::List(inner) => Ty::List(Box::new(subst_vars(inner, subst, eff_subst))),
1247 Ty::Tuple(items) => Ty::Tuple(items.iter().map(|t| subst_vars(t, subst, eff_subst)).collect()),
1248 Ty::Record(fs) => {
1249 let mut out = IndexMap::new();
1250 for (k, v) in fs { out.insert(k.clone(), subst_vars(v, subst, eff_subst)); }
1251 Ty::Record(out)
1252 }
1253 Ty::Con(n, args) => Ty::Con(n.clone(),
1254 args.iter().map(|t| subst_vars(t, subst, eff_subst)).collect()),
1255 Ty::Function { params, effects, ret } => {
1256 let new_effects = EffectSet {
1259 concrete: effects.concrete.clone(),
1260 var: effects.var.and_then(|v| eff_subst.get(&v).copied()).or(effects.var),
1261 };
1262 Ty::Function {
1263 params: params.iter().map(|t| subst_vars(t, subst, eff_subst)).collect(),
1264 effects: new_effects,
1265 ret: Box::new(subst_vars(ret, subst, eff_subst)),
1266 }
1267 }
1268 }
1269}
1270
1271fn mismatch_err(node_id: &str, e: UnifyError, u: &Unifier, context: Vec<String>) -> TypeError {
1272 match e {
1273 UnifyError::Mismatch { a, b } => TypeError::TypeMismatch {
1274 at_node: node_id.into(),
1275 expected: u.resolve(&b).pretty(),
1276 got: u.resolve(&a).pretty(),
1277 context,
1278 },
1279 UnifyError::Infinite { .. } => TypeError::InfiniteType { at_node: node_id.into() },
1280 UnifyError::EffectMismatch { a, b } => {
1281 let render = |e: &EffectSet| -> String {
1285 let mut parts: Vec<String> = e.concrete.iter()
1286 .map(crate::types::EffectKind::pretty).collect();
1287 if let Some(v) = e.var { parts.push(format!("?e{}", v)); }
1288 if parts.is_empty() { "[]".into() } else { format!("[{}]", parts.join(", ")) }
1289 };
1290 TypeError::TypeMismatch {
1291 at_node: node_id.into(),
1292 expected: render(&b),
1293 got: render(&a),
1294 context,
1295 }
1296 }
1297 }
1298}