forked from M-Labs/nac3
nac3core: fix clippy warnings
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97f5b7c324
commit
105d605e6d
@ -14,7 +14,7 @@ use inkwell::{
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use itertools::{chain, izip, zip, Itertools};
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use rustpython_parser::ast::{self, Boolop, Constant, Expr, ExprKind, Operator, StrRef};
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pub fn assert_int_val<'ctx>(val: BasicValueEnum<'ctx>) -> IntValue<'ctx> {
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pub fn assert_int_val(val: BasicValueEnum<'_>) -> IntValue<'_> {
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if let BasicValueEnum::IntValue(v) = val {
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v
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} else {
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@ -22,7 +22,7 @@ pub fn assert_int_val<'ctx>(val: BasicValueEnum<'ctx>) -> IntValue<'ctx> {
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}
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}
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pub fn assert_pointer_val<'ctx>(val: BasicValueEnum<'ctx>) -> PointerValue<'ctx> {
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pub fn assert_pointer_val(val: BasicValueEnum<'_>) -> PointerValue<'_> {
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if let BasicValueEnum::PointerValue(v) = val {
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v
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} else {
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@ -189,7 +189,7 @@ impl<'ctx, 'a> CodeGenContext<'ctx, 'a> {
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.args
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.iter()
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.map(|arg| FuncArg {
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name: arg.name.clone(),
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name: arg.name,
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ty: unifier.copy_from(&mut self.unifier, arg.ty, &mut type_cache),
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default_value: arg.default_value.clone(),
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})
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@ -645,7 +645,7 @@ impl<'ctx, 'a> CodeGenContext<'ctx, 'a> {
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args.iter().map(|arg| (None, self.gen_expr(arg).unwrap())).collect_vec();
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let kw_iter = keywords.iter().map(|kw| {
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(
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Some(kw.node.arg.as_ref().unwrap().clone()),
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Some(*kw.node.arg.as_ref().unwrap()),
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self.gen_expr(&kw.node.value).unwrap(),
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)
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});
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@ -320,7 +320,7 @@ pub fn gen_func<'ctx>(
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&arg.name.to_string(),
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);
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builder.build_store(alloca, param);
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var_assignment.insert(arg.name.clone(), alloca);
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var_assignment.insert(arg.name, alloca);
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}
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builder.build_unconditional_branch(body_bb);
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builder.position_at_end(body_bb);
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@ -25,7 +25,7 @@ impl<'ctx, 'a> CodeGenContext<'ctx, 'a> {
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ExprKind::Name { id, .. } => {
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self.var_assignment.get(id).cloned().unwrap_or_else(|| {
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let ptr = self.gen_var(pattern.custom.unwrap());
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self.var_assignment.insert(id.clone(), ptr);
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self.var_assignment.insert(*id, ptr);
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ptr
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})
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}
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@ -10,15 +10,12 @@ pub enum Location {
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Builtin,
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}
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#[derive(Default)]
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pub struct FileRegistry {
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files: Vec<String>,
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}
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impl FileRegistry {
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pub fn new() -> FileRegistry {
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FileRegistry { files: Vec::new() }
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}
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pub fn add_file(&mut self, path: &str) -> FileID {
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let index = self.files.len() as u32;
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self.files.push(path.to_owned());
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@ -89,8 +89,8 @@ impl TopLevelComposer {
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for (name, sig) in builtins {
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let fun_sig = unifier.add_ty(TypeEnum::TFunc(RefCell::new(sig)));
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built_in_ty.insert(name.clone(), fun_sig);
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built_in_id.insert(name.clone(), DefinitionId(definition_ast_list.len()));
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built_in_ty.insert(name, fun_sig);
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built_in_id.insert(name, DefinitionId(definition_ast_list.len()));
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definition_ast_list.push((
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Arc::new(RwLock::new(TopLevelDef::Function {
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name: name.into(),
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@ -161,7 +161,7 @@ impl TopLevelComposer {
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return Err("duplicate definition of class".into());
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}
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let class_name = class_name.clone();
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let class_name = *class_name;
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let class_def_id = self.definition_ast_list.len();
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// since later when registering class method, ast will still be used,
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@ -221,10 +221,10 @@ impl TopLevelComposer {
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// dummy method define here
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let dummy_method_type = self.unifier.get_fresh_var();
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class_method_name_def_ids.push((
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method_name.clone(),
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*method_name,
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RwLock::new(Self::make_top_level_function_def(
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global_class_method_name,
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method_name.clone(),
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*method_name,
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// later unify with parsed type
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dummy_method_type.0,
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resolver.clone(),
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@ -246,7 +246,7 @@ impl TopLevelComposer {
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for (name, _, id, ty, ..) in &class_method_name_def_ids {
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let mut class_def = class_def_ast.0.write();
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if let TopLevelDef::Class { methods, .. } = class_def.deref_mut() {
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methods.push((name.clone(), *ty, *id));
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methods.push((*name, *ty, *id));
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self.method_class.insert(*id, DefinitionId(class_def_id));
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} else {
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unreachable!()
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@ -705,7 +705,7 @@ impl TopLevelComposer {
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)?;
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Ok(FuncArg {
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name: x.node.arg.clone(),
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name: x.node.arg,
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ty,
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default_value: Default::default(),
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})
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@ -809,7 +809,7 @@ impl TopLevelComposer {
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if let ast::StmtKind::ClassDef { name, bases, body, .. } = &class_ast {
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(
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*object_id,
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name.clone(),
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*name,
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bases,
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body,
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ancestors,
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@ -851,7 +851,7 @@ impl TopLevelComposer {
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let mut defined_paramter_name: HashSet<_> = HashSet::new();
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let zelf: StrRef = "self".into();
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let have_unique_fuction_parameter_name = args.args.iter().all(|x| {
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defined_paramter_name.insert(x.node.arg.clone())
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defined_paramter_name.insert(x.node.arg)
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&& (!keyword_list.contains(&x.node.arg) || x.node.arg == zelf)
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});
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if !have_unique_fuction_parameter_name {
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@ -1310,7 +1310,7 @@ impl TopLevelComposer {
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let unifier = &mut self.unifier;
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args.iter()
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.map(|a| FuncArg {
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name: a.name.clone(),
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name: a.name,
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ty: unifier.subst(a.ty, &subst).unwrap_or(a.ty),
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default_value: a.default_value.clone(),
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})
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@ -1328,7 +1328,7 @@ impl TopLevelComposer {
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if self_type.is_some() {
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result.insert("self".into());
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}
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result.extend(inst_args.iter().map(|x| x.name.clone()));
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result.extend(inst_args.iter().map(|x| x.name));
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result
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};
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let mut calls: HashMap<CodeLocation, CallId> = HashMap::new();
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@ -1356,7 +1356,7 @@ impl TopLevelComposer {
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if let Some(self_ty) = self_type {
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result.insert("self".into(), self_ty);
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}
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result.extend(inst_args.iter().map(|x| (x.name.clone(), x.ty)));
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result.extend(inst_args.iter().map(|x| (x.name, x.ty)));
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result
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},
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primitives: &self.primitives_ty,
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@ -296,7 +296,7 @@ impl TopLevelComposer {
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if let ast::ExprKind::Attribute { value, attr, .. } = &t.node {
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if let ast::ExprKind::Name { id, .. } = &value.node {
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if id == &"self".into() {
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result.insert(attr.clone());
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result.insert(*attr);
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}
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}
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}
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@ -14,7 +14,7 @@ impl<'a> Inferencer<'a> {
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match &pattern.node {
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ExprKind::Name { id, .. } => {
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if !defined_identifiers.contains(id) {
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defined_identifiers.insert(id.clone());
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defined_identifiers.insert(*id);
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}
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Ok(())
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}
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@ -58,7 +58,7 @@ impl<'a> Inferencer<'a> {
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ExprKind::Name { id, .. } => {
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if !defined_identifiers.contains(id) {
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if self.function_data.resolver.get_identifier_def(*id).is_some() {
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defined_identifiers.insert(id.clone());
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defined_identifiers.insert(*id);
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} else {
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return Err(format!(
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"unknown identifier {} (use before def?) at {}",
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@ -107,7 +107,7 @@ impl<'a> Inferencer<'a> {
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let mut defined_identifiers = defined_identifiers.clone();
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for arg in args.args.iter() {
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if !defined_identifiers.contains(&arg.node.arg) {
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defined_identifiers.insert(arg.node.arg.clone());
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defined_identifiers.insert(arg.node.arg);
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}
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}
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self.check_expr(body, &mut defined_identifiers)?;
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@ -167,7 +167,7 @@ impl<'a> Inferencer<'a> {
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for ident in body_identifiers.iter() {
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if !defined_identifiers.contains(ident) && orelse_identifiers.contains(ident) {
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defined_identifiers.insert(ident.clone());
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defined_identifiers.insert(*ident);
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}
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}
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Ok(body_returned && orelse_returned)
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@ -164,7 +164,7 @@ impl<'a> fold::Fold<()> for Inferencer<'a> {
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ast::ExprKind::Name { id, .. } => {
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if !self.defined_identifiers.contains(id) {
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if self.function_data.resolver.get_identifier_def(*id).is_some() {
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self.defined_identifiers.insert(id.clone());
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self.defined_identifiers.insert(*id);
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} else {
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return Err(format!(
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"unknown identifier {} (use before def?) at {}",
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@ -220,7 +220,7 @@ impl<'a> Inferencer<'a> {
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match &pattern.node {
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ExprKind::Name { id, .. } => {
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if !self.defined_identifiers.contains(id) {
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self.defined_identifiers.insert(id.clone());
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self.defined_identifiers.insert(*id);
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}
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Ok(())
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}
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@ -312,13 +312,13 @@ impl<'a> Inferencer<'a> {
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for arg in args.args.iter() {
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let name = &arg.node.arg;
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if !defined_identifiers.contains(name) {
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defined_identifiers.insert(name.clone());
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defined_identifiers.insert(*name);
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}
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}
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let fn_args: Vec<_> = args
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.args
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.iter()
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.map(|v| (v.node.arg.clone(), self.unifier.get_fresh_var().0))
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.map(|v| (v.node.arg, self.unifier.get_fresh_var().0))
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.collect();
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let mut variable_mapping = self.variable_mapping.clone();
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variable_mapping.extend(fn_args.iter().cloned());
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@ -337,7 +337,7 @@ impl<'a> Inferencer<'a> {
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let fun = FunSignature {
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args: fn_args
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.iter()
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.map(|(k, ty)| FuncArg { name: k.clone(), ty: *ty, default_value: None })
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.map(|(k, ty)| FuncArg { name: *k, ty: *ty, default_value: None })
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.collect(),
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ret,
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vars: Default::default(),
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@ -503,7 +503,7 @@ impl<'a> Inferencer<'a> {
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posargs: args.iter().map(|v| v.custom.unwrap()).collect(),
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kwargs: keywords
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.iter()
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.map(|v| (v.node.arg.as_ref().unwrap().clone(), v.custom.unwrap()))
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.map(|v| (*v.node.arg.as_ref().unwrap(), v.custom.unwrap()))
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.collect(),
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fun: RefCell::new(None),
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ret: sign.ret,
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@ -531,7 +531,7 @@ impl<'a> Inferencer<'a> {
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posargs: args.iter().map(|v| v.custom.unwrap()).collect(),
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kwargs: keywords
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.iter()
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.map(|v| (v.node.arg.as_ref().unwrap().clone(), v.custom.unwrap()))
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.map(|v| (*v.node.arg.as_ref().unwrap(), v.custom.unwrap()))
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.collect(),
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fun: RefCell::new(None),
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ret,
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@ -107,6 +107,12 @@ pub struct Unifier {
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var_id: u32,
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}
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impl Default for Unifier {
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fn default() -> Self {
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Unifier::new()
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}
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}
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impl Unifier {
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/// Get an empty unifier
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pub fn new() -> Unifier {
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@ -454,7 +460,7 @@ impl Unifier {
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if let Some(ty) = fields2.get(key) {
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self.unify(*ty, *value)?;
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} else {
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fields2.insert(key.clone(), *value);
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fields2.insert(*key, *value);
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}
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}
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}
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@ -12,6 +12,12 @@ pub struct UnificationTable<V> {
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values: Vec<Option<V>>,
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}
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impl<V> Default for UnificationTable<V> {
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fn default() -> Self {
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Self::new()
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}
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}
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impl<V> UnificationTable<V> {
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pub fn new() -> UnificationTable<V> {
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UnificationTable { parents: Vec::new(), ranks: Vec::new(), values: Vec::new() }
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@ -78,7 +78,7 @@ fn main() {
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"__main__".into(),
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).unwrap();
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internal_resolver.add_id_def(name.clone(), def_id);
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internal_resolver.add_id_def(name, def_id);
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if let Some(ty) = ty {
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internal_resolver.add_id_type(name, ty);
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}
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