forked from M-Labs/nac3
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5 Commits
master
...
enhance/gl
Author | SHA1 | Date |
---|---|---|
David Mak | 3afe69fcda | |
David Mak | b538611cb0 | |
David Mak | fa573390b1 | |
David Mak | 3ca70e679a | |
David Mak | 1a197c67f6 |
|
@ -2886,7 +2886,31 @@ pub fn gen_expr<'ctx, G: CodeGenerator>(
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Some((_, Some(static_value), _)) => ValueEnum::Static(static_value.clone()),
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None => {
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let resolver = ctx.resolver.clone();
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resolver.get_symbol_value(*id, ctx, generator).unwrap()
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let value = resolver.get_symbol_value(*id, ctx, generator).unwrap();
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let globals = ctx
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.top_level
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.definitions
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.read()
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.iter()
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.filter_map(|def| {
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if let TopLevelDef::Variable { simple_name, ty, .. } = &*def.read() {
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Some((*simple_name, *ty))
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} else {
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None
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}
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})
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.collect_vec();
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if let Some((_, ty)) = globals.iter().find(|(name, _)| name == id) {
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let ptr = value
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.to_basic_value_enum(ctx, generator, *ty)
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.map(BasicValueEnum::into_pointer_value)?;
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ctx.builder.build_load(ptr, id.to_string().as_str()).map(Into::into).unwrap()
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} else {
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value
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}
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}
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},
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ExprKind::List { elts, .. } => {
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@ -485,7 +485,7 @@ impl TopLevelComposer {
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// things like `class A(Generic[T, V, ImportedModule.T])` is not supported
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// i.e. only simple names are allowed in the subscript
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// should update the TopLevelDef::Class.typevars and the TypeEnum::TObj.params
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ast::ExprKind::Subscript { value, slice, .. }
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ExprKind::Subscript { value, slice, .. }
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if {
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matches!(
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&value.node,
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@ -501,9 +501,9 @@ impl TopLevelComposer {
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}
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is_generic = true;
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let type_var_list: Vec<&ast::Expr<()>>;
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let type_var_list: Vec<&Expr<()>>;
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// if `class A(Generic[T, V, G])`
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if let ast::ExprKind::Tuple { elts, .. } = &slice.node {
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if let ExprKind::Tuple { elts, .. } = &slice.node {
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type_var_list = elts.iter().collect_vec();
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// `class A(Generic[T])`
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} else {
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@ -1014,15 +1014,15 @@ impl TopLevelComposer {
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}
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}
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let arg_with_default: Vec<(&ast::Located<ast::ArgData<()>>, Option<&ast::Expr>)> =
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args.args
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let arg_with_default: Vec<(&ast::Located<ast::ArgData<()>>, Option<&Expr>)> = args
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.args
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.iter()
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.rev()
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.zip(
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args.defaults
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.iter()
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.rev()
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.map(|x| -> Option<&ast::Expr> { Some(x) })
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.map(|x| -> Option<&Expr> { Some(x) })
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.chain(std::iter::repeat(None)),
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)
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.collect_vec();
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@ -1283,7 +1283,7 @@ impl TopLevelComposer {
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let arg_with_default: Vec<(
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&ast::Located<ast::ArgData<()>>,
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Option<&ast::Expr>,
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Option<&Expr>,
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)> = args
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.args
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.iter()
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@ -1292,7 +1292,7 @@ impl TopLevelComposer {
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args.defaults
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.iter()
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.rev()
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.map(|x| -> Option<&ast::Expr> { Some(x) })
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.map(|x| -> Option<&Expr> { Some(x) })
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.chain(std::iter::repeat(None)),
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)
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.collect_vec();
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@ -1449,7 +1449,7 @@ impl TopLevelComposer {
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.map_err(|e| HashSet::from([e.to_display(unifier).to_string()]))?;
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}
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ast::StmtKind::AnnAssign { target, annotation, value, .. } => {
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if let ast::ExprKind::Name { id: attr, .. } = &target.node {
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if let ExprKind::Name { id: attr, .. } = &target.node {
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if defined_fields.insert(attr.to_string()) {
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let dummy_field_type = unifier.get_dummy_var().ty;
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@ -1457,7 +1457,7 @@ impl TopLevelComposer {
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None => {
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// handle Kernel[T], KernelInvariant[T]
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let (annotation, mutable) = match &annotation.node {
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ast::ExprKind::Subscript { value, slice, .. }
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ExprKind::Subscript { value, slice, .. }
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if matches!(
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&value.node,
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ast::ExprKind::Name { id, .. } if id == &core_config.kernel_invariant_ann.into()
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@ -1465,7 +1465,7 @@ impl TopLevelComposer {
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{
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(slice, false)
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}
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ast::ExprKind::Subscript { value, slice, .. }
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ExprKind::Subscript { value, slice, .. }
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if matches!(
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&value.node,
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ast::ExprKind::Name { id, .. } if core_config.kernel_ann.map_or(false, |c| id == &c.into())
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@ -1483,13 +1483,13 @@ impl TopLevelComposer {
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Some(boxed_expr) => {
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// Class attributes are set as immutable regardless
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let (annotation, _) = match &annotation.node {
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ast::ExprKind::Subscript { slice, .. } => (slice, false),
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ExprKind::Subscript { slice, .. } => (slice, false),
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_ if core_config.kernel_ann.is_none() => (annotation, false),
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_ => continue,
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};
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match &**boxed_expr {
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ast::Located {location: _, custom: (), node: ast::ExprKind::Constant { value: v, kind: _ }} => {
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ast::Located {location: _, custom: (), node: ExprKind::Constant { value: v, kind: _ }} => {
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// Restricting the types allowed to be defined as class attributes
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match v {
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ast::Constant::Bool(_) | ast::Constant::Str(_) | ast::Constant::Int(_) | ast::Constant::Float(_) => {}
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@ -1937,20 +1937,20 @@ impl TopLevelComposer {
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if ast.is_none() {
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return Ok(());
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}
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let mut function_def = def.write();
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if let TopLevelDef::Function {
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instance_to_stmt,
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instance_to_symbol,
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name,
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simple_name,
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signature,
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resolver,
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..
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} = &mut *function_def
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{
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let signature_ty_enum = unifier.get_ty(*signature);
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let TypeEnum::TFunc(FunSignature { args, ret, vars, .. }) =
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signature_ty_enum.as_ref()
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let (name, simple_name, signature, resolver) = {
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let function_def = def.read();
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let TopLevelDef::Function { name, simple_name, signature, resolver, .. } =
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&*function_def
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else {
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return Ok(());
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};
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(name.clone(), *simple_name, *signature, resolver.clone())
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};
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let signature_ty_enum = unifier.get_ty(signature);
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let TypeEnum::TFunc(FunSignature { args, ret, vars, .. }) = signature_ty_enum.as_ref()
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else {
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unreachable!("must be typeenum::tfunc")
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};
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@ -2062,8 +2062,7 @@ impl TopLevelComposer {
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if self_type.is_some() {
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result.insert("self".into(), IdentifierInfo::default());
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}
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result
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.extend(inst_args.iter().map(|x| (x.name, IdentifierInfo::default())));
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result.extend(inst_args.iter().map(|x| (x.name, IdentifierInfo::default())));
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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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@ -2100,33 +2099,43 @@ impl TopLevelComposer {
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else {
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unreachable!("must be function def ast")
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};
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if !decorator_list.is_empty()
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&& matches!(&decorator_list[0].node,
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ast::ExprKind::Name{ id, .. } if id == &"extern".into())
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{
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instance_to_symbol.insert(String::new(), simple_name.to_string());
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continue;
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}
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if !decorator_list.is_empty()
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&& matches!(&decorator_list[0].node,
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ast::ExprKind::Name{ id, .. } if id == &"rpc".into())
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{
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instance_to_symbol.insert(String::new(), simple_name.to_string());
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continue;
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}
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if !decorator_list.is_empty() {
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if let ast::ExprKind::Call { func, .. } = &decorator_list[0].node {
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if matches!(&func.node,
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ast::ExprKind::Name{ id, .. } if id == &"rpc".into())
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if matches!(&decorator_list[0].node, ExprKind::Name { id, .. } if id == &"extern".into())
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{
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let TopLevelDef::Function { instance_to_symbol, .. } = &mut *def.write()
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else {
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unreachable!()
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};
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instance_to_symbol.insert(String::new(), simple_name.to_string());
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continue;
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}
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if matches!(&decorator_list[0].node, ExprKind::Name { id, .. } if id == &"rpc".into())
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{
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let TopLevelDef::Function { instance_to_symbol, .. } = &mut *def.write()
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else {
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unreachable!()
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};
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instance_to_symbol.insert(String::new(), simple_name.to_string());
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continue;
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}
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if let ExprKind::Call { func, .. } = &decorator_list[0].node {
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if matches!(&func.node, ExprKind::Name { id, .. } if id == &"rpc".into()) {
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let TopLevelDef::Function { instance_to_symbol, .. } =
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&mut *def.write()
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else {
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unreachable!()
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};
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instance_to_symbol.insert(String::new(), simple_name.to_string());
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continue;
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}
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}
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}
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let fun_body = body
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.into_iter()
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let fun_body =
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body.into_iter()
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.map(|b| inferencer.fold_stmt(b))
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.collect::<Result<Vec<_>, _>>()?;
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@ -2196,6 +2205,9 @@ impl TopLevelComposer {
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)]));
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}
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let TopLevelDef::Function { instance_to_stmt, .. } = &mut *def.write() else {
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unreachable!()
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};
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instance_to_stmt.insert(
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get_subst_key(
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unifier,
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@ -2211,10 +2223,10 @@ impl TopLevelComposer {
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},
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);
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}
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}
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Ok(())
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};
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for (id, (def, ast)) in self.definition_ast_list.iter().enumerate().skip(self.builtin_num) {
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if ast.is_none() {
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continue;
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|
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@ -10,7 +10,7 @@ use nac3parser::ast::{
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};
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use super::{
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type_inferencer::{IdentifierInfo, Inferencer},
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type_inferencer::{DeclarationSource, IdentifierInfo, Inferencer},
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typedef::{Type, TypeEnum},
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};
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use crate::toplevel::helper::PrimDef;
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@ -34,6 +34,20 @@ impl<'a> Inferencer<'a> {
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Err(HashSet::from([format!("cannot assign to a `none` (at {})", pattern.location)]))
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}
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ExprKind::Name { id, .. } => {
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// If `id` refers to a declared symbol, reject this assignment if it is used in the
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// context of an (implicit) global variable
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if let Some(id_info) = self.defined_identifiers.get(id) {
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if matches!(
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id_info.source,
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DeclarationSource::Global { is_explicit: Some(false) }
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) {
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return Err(HashSet::from([format!(
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"cannot access local variable '{id}' before it is declared (at {})",
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pattern.location
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)]));
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}
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}
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if !defined_identifiers.contains_key(id) {
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defined_identifiers.insert(*id, IdentifierInfo::default());
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}
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@ -104,7 +118,7 @@ impl<'a> Inferencer<'a> {
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*id,
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) {
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Ok(_) => {
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self.defined_identifiers.insert(*id, IdentifierInfo::default());
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defined_identifiers.insert(*id, IdentifierInfo::default());
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}
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Err(e) => {
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return Err(HashSet::from([format!(
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|
@ -368,9 +382,9 @@ impl<'a> Inferencer<'a> {
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StmtKind::Global { names, .. } => {
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for id in names {
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if let Some(id_info) = defined_identifiers.get(id) {
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if !id_info.is_global {
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if id_info.source == DeclarationSource::Local {
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return Err(HashSet::from([format!(
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"name '{id}' is assigned to before global declaration at {}",
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"name '{id}' is used prior to global declaration at {}",
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stmt.location,
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)]));
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}
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|
@ -385,8 +399,12 @@ impl<'a> Inferencer<'a> {
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*id,
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) {
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Ok(_) => {
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self.defined_identifiers
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.insert(*id, IdentifierInfo { is_global: true });
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self.defined_identifiers.insert(
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*id,
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IdentifierInfo {
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source: DeclarationSource::Global { is_explicit: Some(true) },
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},
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);
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}
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Err(e) => {
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return Err(HashSet::from([format!(
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|
|
|
@ -88,11 +88,31 @@ impl PrimitiveStore {
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}
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}
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/// The location where an identifier declaration refers to.
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#[derive(Clone, Copy, Debug, Eq, PartialEq)]
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pub enum DeclarationSource {
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/// Local scope.
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Local,
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/// Global scope.
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Global {
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/// Whether the identifier is declared by the use of `global` statement. This field is
|
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/// [`None`] if the identifier does not refer to a variable.
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is_explicit: Option<bool>,
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},
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}
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/// Information regarding a defined identifier.
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#[derive(Clone, Copy, Debug, Default)]
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#[derive(Clone, Copy, Debug)]
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pub struct IdentifierInfo {
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/// Whether this identifier refers to a global variable.
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pub is_global: bool,
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pub source: DeclarationSource,
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}
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|
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impl Default for IdentifierInfo {
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fn default() -> Self {
|
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IdentifierInfo { source: DeclarationSource::Local }
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}
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}
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|
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impl IdentifierInfo {
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|
@ -566,15 +586,45 @@ impl<'a> Fold<()> for Inferencer<'a> {
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unreachable!("must be tobj")
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}
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} else {
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let top_level_defs = &self.top_level.definitions.read();
|
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|
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if !self.defined_identifiers.contains_key(id) {
|
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match self.function_data.resolver.get_symbol_type(
|
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self.unifier,
|
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&self.top_level.definitions.read(),
|
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top_level_defs,
|
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self.primitives,
|
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*id,
|
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) {
|
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Ok(_) => {
|
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self.defined_identifiers.insert(*id, IdentifierInfo::default());
|
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// Determine if the referenced id refers to a global symbol
|
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let is_explicit = top_level_defs
|
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.iter()
|
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.map(|def| match *def.read() {
|
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TopLevelDef::Class { name, .. } => (name, false),
|
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TopLevelDef::Function { simple_name, .. } => {
|
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(simple_name, false)
|
||||
}
|
||||
TopLevelDef::Variable { simple_name, .. } => {
|
||||
(simple_name, true)
|
||||
}
|
||||
})
|
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.find(|(global, _)| global == id)
|
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.map(|(_, has_explicit_prop)| has_explicit_prop);
|
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|
||||
self.defined_identifiers.insert(
|
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*id,
|
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IdentifierInfo {
|
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source: match is_explicit {
|
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Some(true) => DeclarationSource::Global {
|
||||
is_explicit: Some(false),
|
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},
|
||||
Some(false) => {
|
||||
DeclarationSource::Global { is_explicit: None }
|
||||
}
|
||||
None => DeclarationSource::Local,
|
||||
},
|
||||
},
|
||||
);
|
||||
}
|
||||
Err(e) => {
|
||||
return report_error(
|
||||
|
|
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