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nac3/nac3standalone/src/basic_symbol_resolver.rs

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use nac3core::{
codegen::CodeGenContext,
location::Location,
symbol_resolver::{SymbolResolver, SymbolValue, ValueEnum},
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toplevel::{DefinitionId, TopLevelDef},
typecheck::{
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type_inferencer::PrimitiveStore,
typedef::{Type, Unifier},
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},
};
use nac3parser::ast::{self, StrRef};
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use parking_lot::{Mutex, RwLock};
use std::{collections::HashMap, sync::Arc};
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pub struct ResolverInternal {
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pub id_to_type: Mutex<HashMap<StrRef, Type>>,
pub id_to_def: Mutex<HashMap<StrRef, DefinitionId>>,
pub class_names: Mutex<HashMap<StrRef, Type>>,
pub module_globals: Mutex<HashMap<StrRef, SymbolValue>>,
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}
impl ResolverInternal {
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pub fn add_id_def(&self, id: StrRef, def: DefinitionId) {
self.id_to_def.lock().insert(id, def);
}
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pub fn add_id_type(&self, id: StrRef, ty: Type) {
self.id_to_type.lock().insert(id, ty);
}
pub fn add_module_global(&self, id: StrRef, val: SymbolValue) {
self.module_globals.lock().insert(id, val);
}
}
pub struct Resolver(pub Arc<ResolverInternal>);
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impl SymbolResolver for Resolver {
fn get_default_param_value(&self, expr: &ast::Expr) -> Option<SymbolValue> {
match &expr.node {
ast::ExprKind::Name { id, .. } => {
self.0.module_globals.lock().get(id).cloned()
}
_ => unimplemented!("other type of expr not supported at {}", expr.location)
}
}
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fn get_symbol_type(
&self,
_: &mut Unifier,
_: &[Arc<RwLock<TopLevelDef>>],
_: &PrimitiveStore,
str: StrRef,
) -> Option<Type> {
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let ret = self.0.id_to_type.lock().get(&str).cloned();
if ret.is_none() {
// println!("unknown here resolver {}", str);
}
ret
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}
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fn get_symbol_value<'ctx, 'a>(
&self,
_: StrRef,
_: &mut CodeGenContext<'ctx, 'a>,
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) -> Option<ValueEnum<'ctx>> {
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unimplemented!()
}
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fn get_symbol_location(&self, _: StrRef) -> Option<Location> {
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unimplemented!()
}
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fn get_identifier_def(&self, id: StrRef) -> Option<DefinitionId> {
self.0.id_to_def.lock().get(&id).cloned()
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}
}