nac3artiq: remove cached pyid_to_type if error
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59ac5aae8a
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@ -531,26 +531,30 @@ impl InnerResolver {
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}
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(TypeEnum::TObj { params, fields, .. }, false) => {
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self.pyid_to_type.write().insert(ty_id, extracted_ty);
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let var_map = params
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.iter()
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.map(|(id_var, ty)| {
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if let TypeEnum::TVar { id, range, name, loc, .. } = &*unifier.get_ty(*ty) {
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assert_eq!(*id, *id_var);
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(*id, unifier.get_fresh_var_with_range(range, *name, *loc).0)
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let mut instantiate_obj = || {
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let var_map = params
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.iter()
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.map(|(id_var, ty)| {
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if let TypeEnum::TVar { id, range, name, loc, .. } =
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&*unifier.get_ty(*ty)
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{
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assert_eq!(*id, *id_var);
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(*id, unifier.get_fresh_var_with_range(range, *name, *loc).0)
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} else {
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unreachable!()
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}
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})
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.collect::<HashMap<_, _>>();
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// loop through non-function fields of the class to get the instantiated value
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for field in fields.iter() {
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let name: String = (*field.0).into();
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if let TypeEnum::TFunc(..) = &*unifier.get_ty(field.1 .0) {
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continue;
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} else {
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unreachable!()
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}
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})
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.collect::<HashMap<_, _>>();
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// loop through non-function fields of the class to get the instantiated value
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for field in fields.iter() {
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let name: String = (*field.0).into();
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if let TypeEnum::TFunc(..) = &*unifier.get_ty(field.1 .0) {
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continue;
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} else {
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let field_data = obj.getattr(&name)?;
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let ty =
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match self.get_obj_type(py, field_data, unifier, defs, primitives)? {
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let field_data = obj.getattr(&name)?;
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let ty = match self
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.get_obj_type(py, field_data, unifier, defs, primitives)?
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{
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Ok(t) => t,
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Err(e) => {
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return Ok(Err(format!(
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@ -559,24 +563,32 @@ impl InnerResolver {
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)))
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}
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};
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let field_ty = unifier.subst(field.1 .0, &var_map).unwrap_or(field.1 .0);
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if let Err(e) = unifier.unify(ty, field_ty) {
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// field type mismatch
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return Ok(Err(format!(
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"error when getting type of field `{}` ({})",
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name,
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e.to_display(unifier).to_string()
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)));
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let field_ty =
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unifier.subst(field.1 .0, &var_map).unwrap_or(field.1 .0);
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if let Err(e) = unifier.unify(ty, field_ty) {
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// field type mismatch
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return Ok(Err(format!(
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"error when getting type of field `{}` ({})",
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name,
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e.to_display(unifier).to_string()
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)));
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}
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}
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}
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}
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for (_, ty) in var_map.iter() {
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// must be concrete type
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if !unifier.is_concrete(*ty, &[]) {
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return Ok(Err("object is not of concrete type".into()));
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for (_, ty) in var_map.iter() {
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// must be concrete type
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if !unifier.is_concrete(*ty, &[]) {
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return Ok(Err("object is not of concrete type".into()));
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}
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}
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Ok(Ok(unifier.subst(extracted_ty, &var_map).unwrap_or(extracted_ty)))
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};
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let result = instantiate_obj();
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// do not cache the type if there are errors
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if matches!(result, Err(_) | Ok(Err(_))) {
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self.pyid_to_type.write().remove(&ty_id);
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}
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return Ok(Ok(unifier.subst(extracted_ty, &var_map).unwrap_or(extracted_ty)));
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result
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}
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_ => Ok(Ok(extracted_ty)),
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};
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