forked from M-Labs/nac3
[standalone] Add support for registering globals without type decl
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@ -382,6 +382,19 @@ impl TopLevelComposer {
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))
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}
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ast::StmtKind::Assign { .. } => {
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// Assignment statements can assign to (and therefore create) more than one
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// variable, but this function only allows returning one set of symbol information.
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// We want to avoid changing this to return a `Vec` of symbol info, as this would
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// require `iter().next().unwrap()` on every variable created from a non-Assign
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// statement.
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//
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// Make callers use `register_top_level_var` instead, as it provides more
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// fine-grained control over which symbols to register, while also simplifying the
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// usage of this function.
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panic!("Registration of top-level Assign statements must use TopLevelComposer::register_top_level_var (at {})", ast.location);
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}
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ast::StmtKind::AnnAssign { target, annotation, .. } => {
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let ExprKind::Name { id: name, .. } = target.node else {
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return Err(format!(
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@ -174,46 +174,49 @@ fn handle_typevar_definition(
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fn handle_assignment_pattern(
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targets: &[Expr],
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value: &Expr,
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resolver: &(dyn SymbolResolver + Send + Sync),
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resolver: Arc<dyn SymbolResolver + Send + Sync>,
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internal_resolver: &ResolverInternal,
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def_list: &[Arc<RwLock<TopLevelDef>>],
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unifier: &mut Unifier,
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primitives: &PrimitiveStore,
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composer: &mut TopLevelComposer,
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) -> Result<(), String> {
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if targets.len() == 1 {
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match &targets[0].node {
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let target = &targets[0];
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match &target.node {
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ExprKind::Name { id, .. } => {
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let def_list = composer.extract_def_list();
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let unifier = &mut composer.unifier;
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let primitives = &composer.primitives_ty;
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if let Ok(var) =
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handle_typevar_definition(value, resolver, def_list, unifier, primitives)
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handle_typevar_definition(value, &*resolver, &def_list, unifier, primitives)
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{
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internal_resolver.add_id_type(*id, var);
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Ok(())
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} else if let Ok(val) = parse_parameter_default_value(value, resolver) {
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} else if let Ok(val) = parse_parameter_default_value(value, &*resolver) {
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internal_resolver.add_module_global(*id, val);
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let (name, def_id, _) = composer
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.register_top_level_var(
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*id,
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None,
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Some(resolver.clone()),
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"__main__",
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target.location,
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)
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.unwrap();
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internal_resolver.add_id_def(name, def_id);
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Ok(())
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} else {
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Err(format!("fails to evaluate this expression `{:?}` as a constant or generic parameter at {}",
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targets[0].node,
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targets[0].location,
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target.node,
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target.location,
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))
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}
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}
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ExprKind::List { elts, .. } | ExprKind::Tuple { elts, .. } => {
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handle_assignment_pattern(
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elts,
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value,
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resolver,
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internal_resolver,
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def_list,
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unifier,
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primitives,
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)?;
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handle_assignment_pattern(elts, value, resolver, internal_resolver, composer)?;
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Ok(())
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}
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_ => Err(format!(
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"assignment to {:?} is not supported at {}",
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targets[0], targets[0].location
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)),
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_ => Err(format!("assignment to {target:?} is not supported at {}", target.location)),
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}
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} else {
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match &value.node {
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@ -223,11 +226,9 @@ fn handle_assignment_pattern(
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handle_assignment_pattern(
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std::slice::from_ref(tar),
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val,
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resolver,
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resolver.clone(),
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internal_resolver,
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def_list,
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unifier,
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primitives,
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composer,
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)?;
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}
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Ok(())
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@ -360,17 +361,12 @@ fn main() {
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for stmt in parser_result {
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match &stmt.node {
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StmtKind::Assign { targets, value, .. } => {
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let def_list = composer.extract_def_list();
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let unifier = &mut composer.unifier;
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let primitives = &composer.primitives_ty;
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if let Err(err) = handle_assignment_pattern(
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targets,
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value,
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resolver.as_ref(),
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resolver.clone(),
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internal_resolver.as_ref(),
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&def_list,
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unifier,
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primitives,
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&mut composer,
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) {
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panic!("{err}");
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}
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