nac3artiq: error msg improvement for synthesized __modinit__
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@ -10,6 +10,7 @@ use inkwell::{
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targets::*,
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targets::*,
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OptimizationLevel,
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OptimizationLevel,
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};
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};
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use nac3core::typecheck::typedef::{Unifier, TypeEnum};
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use nac3parser::{
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use nac3parser::{
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ast::{self, Stmt, StrRef},
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ast::{self, Stmt, StrRef},
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parser::{self, parse_program},
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parser::{self, parse_program},
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@ -175,6 +176,73 @@ impl Nac3 {
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}
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}
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Ok(())
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Ok(())
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}
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}
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fn report_modinit(
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arg_names: &[String],
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method_name: &str,
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resolver: Arc<dyn SymbolResolver + Send + Sync>,
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top_level_defs: &[Arc<RwLock<TopLevelDef>>],
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unifier: &mut Unifier,
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primitives: &PrimitiveStore,
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) -> Option<String> {
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let base_ty =
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match resolver.get_symbol_type(unifier, top_level_defs, primitives, "base".into()) {
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Ok(ty) => ty,
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Err(e) => return Some(format!("type error of object launching kernel: {}", e))
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};
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let fun_ty = if method_name.is_empty() {
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base_ty
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} else if let TypeEnum::TObj { fields, .. } = &*unifier.get_ty(base_ty) {
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match fields.borrow().get(&(*method_name).into()) {
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Some(t) => t.0,
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None => return Some(
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format!("object launching kernel does not have method `{}`", method_name)
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)
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}
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} else {
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return Some("cannot launch kernel by calling a non-callable".into())
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};
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if let TypeEnum::TFunc(sig) = &*unifier.get_ty(fun_ty) {
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let FunSignature { args, .. } = &*sig.borrow();
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if arg_names.len() > args.len() {
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return Some(format!(
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"launching kernel function with too many arguments (expect {}, found {})",
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args.len(),
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arg_names.len(),
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))
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}
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for (i, FuncArg { ty, default_value, name }) in args.iter().enumerate() {
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let in_name = match arg_names.get(i) {
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Some(n) => n,
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None if default_value.is_none() => return Some(format!(
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"argument `{}` not provided when launching kernel function", name
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)),
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_ => break,
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};
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let in_ty = match resolver.get_symbol_type(
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unifier,
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top_level_defs,
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primitives,
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in_name.clone().into()
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) {
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Ok(t) => t,
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Err(e) => return Some(format!(
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"type error ({}) at parameter #{} when calling kernel function", e, i
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))
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};
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if let Err(e) = unifier.unify(in_ty, *ty) {
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return Some(format!(
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"type error ({}) at parameter #{} when calling kernel function", e, i
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));
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}
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}
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} else {
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return Some("cannot launch kernel by calling a non-callable".into())
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}
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None
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}
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}
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}
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#[pymethods]
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#[pymethods]
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@ -477,7 +545,10 @@ impl Nac3 {
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arg_names.join(", ")
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arg_names.join(", ")
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)
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)
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};
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};
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let mut synthesized = parse_program(&synthesized, Default::default()).unwrap();
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let mut synthesized = parse_program(
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&synthesized,
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"__nac3_synthesized_modinit__".to_string().into(),
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).unwrap();
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let resolver = Arc::new(Resolver(Arc::new(InnerResolver {
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let resolver = Arc::new(Resolver(Arc::new(InnerResolver {
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id_to_type: self.builtins_ty.clone().into(),
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id_to_type: self.builtins_ty.clone().into(),
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id_to_def: self.builtins_def.clone().into(),
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id_to_def: self.builtins_def.clone().into(),
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@ -516,9 +587,24 @@ impl Nac3 {
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);
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);
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let signature = store.add_cty(signature);
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let signature = store.add_cty(signature);
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composer.start_analysis(true).map_err(|e| exceptions::PyRuntimeError::new_err(format!(
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if let Err(e) = composer.start_analysis(true) {
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"nac3 compilation failure: {}", e
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// report error of __modinit__ separately
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)))?;
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if !e.contains("__nac3_synthesized_modinit__") {
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return Err(exceptions::PyRuntimeError::new_err(
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format!("nac3 compilation failure: {}", e)
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));
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} else {
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let msg = Self::report_modinit(
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&arg_names,
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method_name,
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resolver.clone(),
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&composer.extract_def_list(),
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&mut composer.unifier,
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&self.primitive
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);
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return Err(exceptions::PyRuntimeError::new_err(msg.unwrap()));
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}
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}
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let top_level = Arc::new(composer.make_top_level_context());
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let top_level = Arc::new(composer.make_top_level_context());
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let instance = {
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let instance = {
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let defs = top_level.definitions.read();
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let defs = top_level.definitions.read();
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