forked from M-Labs/nac3
nac3core: top level simple type var handled
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247b364191
commit
55335fc05d
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@ -609,7 +609,8 @@ impl<'ctx, 'a> CodeGenContext<'ctx, 'a> {
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ExprKind::Call { func, args, keywords } => {
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if let ExprKind::Name { id, .. } = &func.as_ref().node {
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// TODO: handle primitive casts and function pointers
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let fun = self.resolver.lock().get_identifier_def(&id).expect("Unknown identifier");
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let fun =
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self.resolver.lock().get_identifier_def(&id).expect("Unknown identifier");
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let mut params =
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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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@ -1,31 +1,32 @@
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use super::*;
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impl TopLevelDef {
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pub fn to_string<F, G>(&self, unifier: &mut Unifier, obj_to_name: &mut F, var_to_name: &mut G) -> String
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pub fn to_string<F, G>(
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&self,
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unifier: &mut Unifier,
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obj_to_name: &mut F,
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var_to_name: &mut G,
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) -> String
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where
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F: FnMut(usize) -> String,
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G: FnMut(u32) -> String,
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{
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match self {
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TopLevelDef::Class {
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name,
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ancestors,
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fields,
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methods,
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object_id,
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type_vars,
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..
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} =>{
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name, ancestors, fields, methods, object_id, type_vars, ..
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} => {
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let fields_str = fields
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.iter()
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.map(|(n, ty)| (n.to_string(), unifier.stringify(*ty, obj_to_name, var_to_name)))
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.map(|(n, ty)| {
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(n.to_string(), unifier.stringify(*ty, obj_to_name, var_to_name))
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})
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.collect_vec();
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let methods_str = methods
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.iter()
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.map(|(n, ty, id)|
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.map(|(n, ty, id)| {
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(n.to_string(), unifier.stringify(*ty, obj_to_name, var_to_name), *id)
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)
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})
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.collect_vec();
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format!(
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@ -38,14 +39,13 @@ impl TopLevelDef {
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type_vars,
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)
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}
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TopLevelDef::Function { name, signature, var_id, .. } =>
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format!(
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TopLevelDef::Function { name, signature, var_id, .. } => format!(
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"Function {{\nname: {:?},\nsig: {:?},\nvar_id: {:?}\n}}",
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name,
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unifier.stringify(*signature, obj_to_name, var_to_name),
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var_id
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),
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TopLevelDef::Initializer { class_id } => format!("Initializer {{ {:?} }}", class_id)
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TopLevelDef::Initializer { class_id } => format!("Initializer {{ {:?} }}", class_id),
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}
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}
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}
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@ -1,4 +1,11 @@
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use std::{borrow::BorrowMut, collections::{HashMap, HashSet}, fmt::Debug, iter::FromIterator, ops::{Deref, DerefMut}, sync::Arc};
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use std::{
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borrow::BorrowMut,
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collections::{HashMap, HashSet},
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fmt::Debug,
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iter::FromIterator,
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ops::{Deref, DerefMut},
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sync::Arc,
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};
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use super::typecheck::type_inferencer::PrimitiveStore;
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use super::typecheck::typedef::{FunSignature, FuncArg, SharedUnifier, Type, TypeEnum, Unifier};
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@ -6,7 +13,7 @@ use crate::{
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symbol_resolver::SymbolResolver,
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typecheck::{type_inferencer::CodeLocation, typedef::CallId},
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};
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use itertools::{Itertools, izip};
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use itertools::{izip, Itertools};
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use parking_lot::{Mutex, RwLock};
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use rustpython_parser::ast::{self, Stmt};
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@ -499,7 +506,9 @@ impl TopLevelComposer {
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for (class_def, _) in self.definition_ast_list.iter_mut().skip(5) {
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let mut class_def = class_def.write();
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let (class_ancestors, class_id, class_type_vars) = {
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if let TopLevelDef::Class { ancestors, object_id, type_vars, .. } = class_def.deref_mut() {
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if let TopLevelDef::Class { ancestors, object_id, type_vars, .. } =
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class_def.deref_mut()
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{
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(ancestors, *object_id, type_vars)
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} else {
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continue;
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@ -595,8 +604,8 @@ impl TopLevelComposer {
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// skip 5 to skip analyzing the primitives
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for (function_def, function_ast) in def_list.iter().skip(5) {
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let function_def = function_def.read();
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let function_def = function_def.deref();
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let mut function_def = function_def.write();
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let function_def = function_def.deref_mut();
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let function_ast = if let Some(function_ast) = function_ast {
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function_ast
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} else {
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@ -604,7 +613,9 @@ impl TopLevelComposer {
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continue;
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};
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if let TopLevelDef::Function { signature: dummy_ty, resolver, .. } = function_def {
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if let TopLevelDef::Function { signature: dummy_ty, resolver, var_id, .. } =
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function_def
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{
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if let ast::StmtKind::FunctionDef { args, returns, .. } = &function_ast.node {
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let resolver = resolver.as_ref();
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let resolver = resolver.unwrap();
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@ -720,6 +731,9 @@ impl TopLevelComposer {
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primitives_store.none
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}
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};
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var_id.extend_from_slice(
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function_var_map.keys().into_iter().copied().collect_vec().as_slice(),
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);
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let function_ty = unifier.add_ty(TypeEnum::TFunc(
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FunSignature { args: arg_types, ret: return_ty, vars: function_var_map }
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.into(),
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@ -789,7 +803,7 @@ impl TopLevelComposer {
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for b in class_body_ast {
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if let ast::StmtKind::FunctionDef { args, returns, name, body, .. } = &b.node {
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let (method_dummy_ty, ..) =
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let (method_dummy_ty, method_id) =
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Self::get_class_method_def_info(class_methods_def, name)?;
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// the method var map can surely include the class's generic parameters
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@ -817,7 +831,9 @@ impl TopLevelComposer {
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.into());
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}
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if name == "__init__" && !defined_paramter_name.contains("self") {
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return Err("class __init__ function must contain the `self` parameter".into());
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return Err(
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"class __init__ function must contain the `self` parameter".into()
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);
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}
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let mut result = Vec::new();
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@ -939,9 +955,17 @@ impl TopLevelComposer {
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}
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};
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if let TopLevelDef::Function { var_id, .. } =
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temp_def_list.get(method_id.0).unwrap().write().deref_mut()
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{
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var_id.extend_from_slice(
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method_var_map.keys().into_iter().copied().collect_vec().as_slice(),
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);
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}
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let method_type = unifier.add_ty(TypeEnum::TFunc(
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FunSignature { args: arg_types, ret: ret_type, vars: method_var_map }.into(),
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));
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// NOTE: unify now since function type is not in type annotation define
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// which is fine since type within method_type will be subst later
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unifier.unify(method_dummy_ty, method_type)?;
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@ -43,8 +43,6 @@ impl SymbolResolver for Resolver {
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}
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}
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#[test_case(
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vec![
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indoc! {"
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@ -132,10 +130,13 @@ fn test_simple_function_analyze(source: Vec<&str>, tys: Vec<&str>, names: Vec<&s
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composer.start_analysis().unwrap();
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for (i, (def, _)) in composer.definition_ast_list.into_iter().enumerate() {
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for (i, (def, _)) in composer.definition_ast_list.iter().skip(5).enumerate() {
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let def = &*def.read();
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if let TopLevelDef::Function { signature, name, .. } = def {
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let ty_str = composer.unifier.stringify(*signature, &mut |id| id.to_string(), &mut |id| id.to_string());
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let ty_str =
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composer
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.unifier
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.stringify(*signature, &mut |id| id.to_string(), &mut |id| id.to_string());
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assert_eq!(ty_str, tys[i]);
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assert_eq!(name, names[i]);
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}
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@ -150,6 +151,8 @@ fn test_simple_function_analyze(source: Vec<&str>, tys: Vec<&str>, names: Vec<&s
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self.a: int32 = 3
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def fun(self, b: B):
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pass
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def foo(self, a: T, b: V):
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pass
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"},
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indoc! {"
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class B(C):
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@ -168,6 +171,10 @@ fn test_simple_function_analyze(source: Vec<&str>, tys: Vec<&str>, names: Vec<&s
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def foo(a: A):
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pass
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"},
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indoc! {"
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def ff(a: T) -> V:
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pass
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"}
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],
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vec![
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indoc! {"5: Class {
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@ -243,9 +250,18 @@ fn test_simple_function_analyze(source: Vec<&str>, tys: Vec<&str>, names: Vec<&s
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fn test_simple_class_analyze(source: Vec<&str>, res: Vec<&str>) {
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let mut composer = TopLevelComposer::new();
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let tvar_t = composer.unifier.get_fresh_var();
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let tvar_v = composer
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.unifier
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.get_fresh_var_with_range(&[composer.primitives_ty.bool, composer.primitives_ty.int32]);
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println!("t: {}", tvar_t.1);
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println!("v: {}\n", tvar_v.1);
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let resolver = Arc::new(Mutex::new(Box::new(Resolver {
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id_to_def: Default::default(),
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id_to_type: Default::default(),
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id_to_type: vec![("T".to_string(), tvar_t.0), ("V".to_string(), tvar_v.0)]
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.into_iter()
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.collect(),
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class_names: Default::default(),
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}) as Box<dyn SymbolResolver + Send + Sync>));
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@ -262,26 +278,26 @@ fn test_simple_class_analyze(source: Vec<&str>, res: Vec<&str>) {
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// skip 5 to skip primitives
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for (i, (def, _)) in composer.definition_ast_list.iter().skip(5).enumerate() {
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let def = &*def.read();
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// println!(
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// "{}: {}\n",
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println!(
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"{}: {}\n",
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i + 5,
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def.to_string(
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composer.unifier.borrow_mut(),
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&mut |id| format!("class{}", id),
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&mut |id| format!("tvar{}", id)
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)
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);
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// assert_eq!(
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// format!(
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// "{}: {}",
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// i + 5,
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// def.to_string(
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// composer.unifier.borrow_mut(),
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// &mut |id| id.to_string(),
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// &mut |id| id.to_string()
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// )
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// );
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assert_eq!(
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format!(
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"{}: {}",
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i + 5,
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def.to_string(
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composer.unifier.borrow_mut(),
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&mut |id| id.to_string(),
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&mut |id| id.to_string()
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)
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),
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res[i]
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)
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// ),
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// res[i]
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// )
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}
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}
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@ -83,7 +83,10 @@ impl<'a> fold::Fold<()> for Inferencer<'a> {
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self.unify(target.custom.unwrap(), ty.custom.unwrap(), &node.location)?;
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Some(ty)
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} else {
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return Err(format!("declaration without definition is not yet supported, at {}", node.location))
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return Err(format!(
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"declaration without definition is not yet supported, at {}",
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node.location
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));
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};
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let top_level_defs = self.top_level.definitions.read();
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let annotation_type = self.function_data.resolver.lock().parse_type_annotation(
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@ -161,7 +164,8 @@ impl<'a> fold::Fold<()> for Inferencer<'a> {
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ast::ExprKind::Constant { value, .. } => Some(self.infer_constant(value)?),
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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.lock().get_identifier_def(id.as_str()).is_some() {
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if self.function_data.resolver.lock().get_identifier_def(id.as_str()).is_some()
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{
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self.defined_identifiers.insert(id.clone());
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} else {
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return Err(format!(
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@ -482,9 +486,7 @@ impl<'a> Inferencer<'a> {
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let resolver = self.function_data.resolver.lock();
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let variable_mapping = &mut self.variable_mapping;
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let unifier = &mut self.unifier;
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Ok(resolver
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.get_symbol_type(unifier, self.primitives, id)
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.unwrap_or_else(|| {
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Ok(resolver.get_symbol_type(unifier, self.primitives, id).unwrap_or_else(|| {
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let ty = unifier.get_fresh_var().0;
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variable_mapping.insert(id.to_string(), ty);
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ty
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@ -317,7 +317,7 @@ impl TestEnvironment {
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primitives: &mut self.primitives,
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virtual_checks: &mut self.virtual_checks,
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calls: &mut self.calls,
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defined_identifiers: Default::default()
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defined_identifiers: Default::default(),
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}
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}
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}
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