diff options
| author | tslil <tslil@posteo.de> | 2026-04-24 09:54:37 +0100 |
|---|---|---|
| committer | tslil <tslil@posteo.de> | 2026-04-24 10:14:07 +0100 |
| commit | 7152f09f199f440e38263fdafb39b9eda71d7c53 (patch) | |
| tree | 4e4540ab802b80472115207535a0ccb4a92605a4 /src/set_checker.rs | |
| parent | 85f0f5bd9ba573ad288ed582399b37e126f598c9 (diff) | |
refactor: separate checker into _state, _set, and principle export
Diffstat (limited to 'src/set_checker.rs')
| -rw-r--r-- | src/set_checker.rs | 205 |
1 files changed, 205 insertions, 0 deletions
diff --git a/src/set_checker.rs b/src/set_checker.rs new file mode 100644 index 0000000..5762d9c --- /dev/null +++ b/src/set_checker.rs @@ -0,0 +1,205 @@ +use crate::ast::*; +use crate::check_state::*; + +use std::iter::zip; +use tracing::instrument; + +impl CheckState { + #[instrument(skip(self), level = "debug", fields(%set))] + pub fn check_set(&self, set: &Set) -> Result<Set, CheckError> { + match set { + Set::BuiltIn(_) => Ok(set.clone()), + Set::Record(fields) => { + let fields = fields + .iter() + .map(|RecordField { name, set }| { + let set = self.check_set(set)?; + Ok(RecordField { + name: name.clone(), + set, + }) + }) + .collect::<Result<Vec<_>, _>>()?; + Ok(Set::Record(fields)) + } + Set::Variant(fields) => { + let fields = fields + .iter() + .map(|VariantField { name, set }| { + let set = self.check_set(set)?; + Ok(VariantField { + name: name.clone(), + set, + }) + }) + .collect::<Result<Vec<_>, _>>()?; + Ok(Set::Variant(fields)) + } + Set::ClaimedSet(_) => Err(CheckError::Unimplemented("instances as sets".to_string())), + Set::Var(v) => { + let deref = self.lookup_set(v)?; + Ok(deref.clone()) + } + } + } + + fn _check_literal_set_helper(&self, claimed: &Set, should_be: Set) -> Result<(), CheckError> { + if !self.set_equal(claimed, &should_be) { + Err(CheckError::WrongSetForElement(claimed.clone(), should_be)) + } else { + Ok(()) + } + } + + #[instrument(skip(self), level = "debug", fields(%element, %set))] + pub fn check_element(&self, element: &Element, set: &Set) -> Result<Element, CheckError> { + match element { + Element::Literal(lit) => { + // we may infer the type from the element + match lit { + Literal::Int(_) => { + self._check_literal_set_helper(set, Set::BuiltIn(BuiltIn::Int))?; + } + Literal::Nat(_) => { + self._check_literal_set_helper(set, Set::BuiltIn(BuiltIn::Nat))?; + } + Literal::Str(_) => { + self._check_literal_set_helper(set, Set::BuiltIn(BuiltIn::Str))?; + } + Literal::Bool(_) => { + self._check_literal_set_helper(set, Set::BuiltIn(BuiltIn::Bool))?; + } + Literal::Float(_) => { + self._check_literal_set_helper(set, Set::BuiltIn(BuiltIn::Float))?; + } + } + Ok(element.clone()) + } + Element::Var(v) => { + let lookup = self.lookup_element(v)?; + // we have previously done the work to discover the type of + // this element, so what we're claiming now must match! + if !self.set_equal(set, &lookup.set) { + return Err(CheckError::WrongSetForElement( + set.clone(), + lookup.set.clone(), + )); + } + Ok(lookup.element.clone()) + } + Element::Record(assignations) => { + let rej = |reason| CheckError::ElementDoesNotBelong { + element: element.clone(), + claimed: set.clone(), + reason, + }; + + // make sure we are filling a record + let fields = if let Set::Record(fields) = set { + Ok(fields) + } else { + Err(rej("element is a record instance".to_string())) + }?; + + let (set_fnames, set_fsets): (Vec<String>, Vec<Set>) = fields + .iter() + .map(|RecordField { name, set }| (name.clone(), set.clone())) + .unzip(); + let mut set_fnames_sorted = set_fnames.clone(); + set_fnames_sorted.sort(); + + let (element_fnames, element_felements): (Vec<String>, Vec<&Element>) = + assignations + .iter() + .map(|ElemAssign { name, element }| (name.clone(), element)) + .unzip(); + + let mut element_fnames_sorted = element_fnames.clone(); + element_fnames_sorted.sort(); + + if set_fnames_sorted != element_fnames_sorted { + return Err(rej(format!( + "expected [{}] but found [{}]", + set_fnames.join(", "), + element_fnames.join(", "), + ))); + } + + // recurse, sets have already been completely expanded + let sub_els = zip(element_felements, set_fsets) + .map(|(e_f, e_s)| self.check_element(e_f, &e_s)) + .collect::<Result<Vec<_>, _>>()?; + // rebuild + let assignations = zip(element_fnames, sub_els) + .map(|(name, element)| ElemAssign { name, element }) + .collect(); + // resign? + Ok(Element::Record(assignations)) + } + Element::Project { + element: inner, + field, + } => { + // globally unique projections mean we know what the sets going + // in and out must be + let SetField { + field_set, + owner_set, + } = self.lookup_record_field(field)?; + + // enforce the correct typing of the claimed result + if !self.set_equal(set, field_set) { + return Err(CheckError::WrongSetForElement( + set.clone(), + field_set.clone(), + )); + } + + // enforce the correct typing of the element + let inner = self.check_element(inner, owner_set)?; + + // Unfortunately we still have to do something nasty here to obtain the data + let Element::Record(assignations) = inner else { + panic!("invariant violation: check_element returned non-record for record set"); + }; + let sub_element = assignations + .into_iter() + .find(|a| a.name == *field) + .expect("invariant violation: record missing field that was type-checked") + .element + .clone(); + + Ok(sub_element) + } + Element::Inject { + element: inner, + field, + } => { + // globally unique injections mean that we know what the sets + // going in and out must be, but compared to projections their + // roles are here interchanged + let SetField { + field_set, + owner_set, + } = self.lookup_variant_field(field)?; + + // enforce the correct typing of the claimed result + if !self.set_equal(set, owner_set) { + return Err(CheckError::WrongSetForElement( + set.clone(), + owner_set.clone(), + )); + } + + // enforce the correct typing of the element + let element = self.check_element(inner, field_set)?; + + Ok(Element::Inject { + element: Box::new(element), + field: field.clone(), + }) + } + Element::Case { .. } => Err(CheckError::Unimplemented("element case".to_string())), + } + } +} |
