forked from M-Labs/nac3
core: Apply clippy suggestions
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.clippy.toml
Normal file
1
.clippy.toml
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@ -0,0 +1 @@
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doc-valid-idents = ["NumPy", ".."]
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@ -38,10 +38,15 @@ pub enum PrimitiveValue {
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Bool(bool),
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}
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/// An entry in the [`DeferredEvaluationStore`], containing the deferred types, a [`PyObject`]
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/// representing the `__constraints__` of the type variables, and the name of the type to be
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/// instantiated.
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type DeferredEvaluationEntry = (Vec<Type>, PyObject, String);
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#[derive(Clone)]
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pub struct DeferredEvaluationStore {
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needs_defer: Arc<AtomicBool>,
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store: Arc<RwLock<Vec<(Vec<Type>, PyObject, String)>>>,
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store: Arc<RwLock<Vec<DeferredEvaluationEntry>>>,
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}
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impl DeferredEvaluationStore {
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@ -53,12 +58,18 @@ impl DeferredEvaluationStore {
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}
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}
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/// A class field as stored in the [`InnerResolver`], represented by the ID and name of the
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/// associated [`PythonValue`].
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type ResolverField = (u64, StrRef);
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/// A class field as stored in Python, represented by the `id()` and [`PyObject`] of the field.
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type PyFieldHandle = (u64, PyObject);
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pub struct InnerResolver {
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pub id_to_type: RwLock<HashMap<StrRef, Type>>,
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pub id_to_def: RwLock<HashMap<StrRef, DefinitionId>>,
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pub id_to_pyval: RwLock<HashMap<StrRef, (u64, PyObject)>>,
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pub id_to_primitive: RwLock<HashMap<u64, PrimitiveValue>>,
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pub field_to_val: RwLock<HashMap<(u64, StrRef), Option<(u64, PyObject)>>>,
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pub field_to_val: RwLock<HashMap<ResolverField, Option<PyFieldHandle>>>,
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pub global_value_ids: Arc<RwLock<HashMap<u64, PyObject>>>,
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pub class_names: Mutex<HashMap<StrRef, Type>>,
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pub pyid_to_def: Arc<RwLock<HashMap<u64, DefinitionId>>>,
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@ -697,24 +697,24 @@ pub fn gen_ndarray_eye<'ctx>(
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.to_basic_value_enum(context, generator, nrows_ty)?;
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let ncols_ty = fun.0.args[1].ty;
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let ncols_arg = args.iter()
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.find(|arg| arg.0.is_some_and(|name| name == fun.0.args[1].name))
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.map(|arg| arg.1.clone().to_basic_value_enum(context, generator, ncols_ty))
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.unwrap_or_else(|| {
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let ncols_arg = if let Some(arg) =
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args.iter().find(|arg| arg.0.is_some_and(|name| name == fun.0.args[1].name)) {
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arg.1.clone().to_basic_value_enum(context, generator, ncols_ty)
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} else {
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args[0].1.clone().to_basic_value_enum(context, generator, nrows_ty)
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})?;
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}?;
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let offset_ty = fun.0.args[2].ty;
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let offset_arg = args.iter()
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.find(|arg| arg.0.is_some_and(|name| name == fun.0.args[2].name))
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.map(|arg| arg.1.clone().to_basic_value_enum(context, generator, offset_ty))
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.unwrap_or_else(|| {
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let offset_arg = if let Some(arg) =
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args.iter().find(|arg| arg.0.is_some_and(|name| name == fun.0.args[2].name)) {
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arg.1.clone().to_basic_value_enum(context, generator, offset_ty)
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} else {
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Ok(context.gen_symbol_val(
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generator,
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fun.0.args[2].default_value.as_ref().unwrap(),
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offset_ty
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))
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})?;
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}?;
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call_ndarray_eye_impl(
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generator,
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@ -248,6 +248,14 @@ impl Unifier {
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self.primitive_store.replace(*primitives);
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}
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/// Returns the [`UnificationTable`] associated with this `Unifier`.
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///
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/// # Safety
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///
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/// The use of this function is discouraged under most circumstances. Only use this function if
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/// in-place manipulation of type variables and/or type fields is necessary, otherwise prefer to
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/// [add a new type][`Unifier::add_ty`] and [unify the type][`Unifier::unify`] with an existing
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/// type.
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pub unsafe fn get_unification_table(&mut self) -> &mut UnificationTable<Rc<TypeEnum>> {
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&mut self.unification_table
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}
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