forked from M-Labs/nac3
top level class roughly handled, push for review
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4db871c244
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@ -1,7 +1,8 @@
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use std::default;
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use std::{collections::HashMap, sync::Arc};
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use std::{collections::HashMap, sync::Arc};
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use super::typecheck::type_inferencer::PrimitiveStore;
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use super::typecheck::type_inferencer::PrimitiveStore;
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use super::typecheck::typedef::{SharedUnifier, Type, Unifier};
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use super::typecheck::typedef::{SharedUnifier, Type, Unifier, TypeEnum};
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use crate::symbol_resolver::SymbolResolver;
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use crate::symbol_resolver::SymbolResolver;
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use inkwell::{
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use inkwell::{
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basic_block::BasicBlock, builder::Builder, context::Context, module::Module,
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basic_block::BasicBlock, builder::Builder, context::Context, module::Module,
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@ -74,3 +75,132 @@ pub struct CodeGenContext<'ctx> {
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// the first one is the test_bb, and the second one is bb after the loop
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// the first one is the test_bb, and the second one is bb after the loop
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pub loop_bb: Option<(BasicBlock<'ctx>, BasicBlock<'ctx>)>,
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pub loop_bb: Option<(BasicBlock<'ctx>, BasicBlock<'ctx>)>,
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}
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}
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pub struct TopLevelManager<'a> {
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pub def_index: usize,
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pub ctx: TopLevelContext,
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pub resolver: &'a mut Box<dyn SymbolResolver>,
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pub primitives: (PrimitiveStore, Unifier)
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}
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use rustpython_parser::ast;
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impl<'a> TopLevelManager<'a> {
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pub fn make_primitives() -> (PrimitiveStore, Unifier) {
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let mut unifier = Unifier::new();
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let int32 = unifier.add_ty(TypeEnum::TObj {
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obj_id: DefinitionId(0), // NOTE: what should it be?
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fields: HashMap::new().into(),
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params: HashMap::new(),
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});
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let int64 = unifier.add_ty(TypeEnum::TObj {
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obj_id: DefinitionId(1), // NOTE: what should it be?
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fields: HashMap::new().into(),
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params: HashMap::new(),
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});
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let float = unifier.add_ty(TypeEnum::TObj {
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obj_id: DefinitionId(2), // NOTE: what should it be?
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fields: HashMap::new().into(),
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params: HashMap::new(),
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});
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let bool = unifier.add_ty(TypeEnum::TObj {
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obj_id: DefinitionId(3), // NOTE: what should it be?
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fields: HashMap::new().into(),
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params: HashMap::new(),
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});
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let none = unifier.add_ty(TypeEnum::TObj {
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obj_id: DefinitionId(4), // NOTE: what should it be?
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fields: HashMap::new().into(),
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params: HashMap::new(),
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});
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let primitives = PrimitiveStore { int32, int64, float, bool, none };
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crate::typecheck::magic_methods::set_primitives_magic_methods(&primitives, &mut unifier);
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(primitives, unifier)
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}
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pub fn new(resolver: &'a mut Box<dyn SymbolResolver>) -> Self {
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TopLevelManager {
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def_index: 1,
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ctx: TopLevelContext {
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definitions: Default::default(),
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unifiers: Default::default()
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},
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resolver,
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primitives: Self::make_primitives()
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}
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}
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pub fn register_top_level(&mut self, ast: &ast::Stmt<()>) -> Result<DefinitionId, String>{
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match &ast.node {
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ast::StmtKind::ClassDef {
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name,
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bases,
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keywords,
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body,
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decorator_list
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} => {
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// ancestors and type_vars are found using the `bases` field
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let mut class_ancestors: Vec<DefinitionId> = Default::default();
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let mut class_type_vars: Vec<Type> = Default::default();
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for base in bases {
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match &base.node {
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ast::ExprKind::Subscript {value, slice, ..} => {
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match &value.node {
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ast::ExprKind::Name {id, ..} if id == "Generic" => {
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match &slice.node {
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ast::ExprKind::Tuple {elts, ..} => {
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for e in elts {
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class_type_vars.push(
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self.resolver.
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parse_type_name(e)
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.ok_or_else(|| "unkown base class type".to_string())?
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); // FIXME: is it correct to use this?
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}
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},
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_ => class_type_vars.push(
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self.resolver
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.parse_type_name(slice)
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.ok_or_else(|| "unkown base class type".to_string())?
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) // FIXME: is it correct to use this?
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}
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},
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_ => return Err("only subscription on keyword Generic is allowed".into())
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}
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},
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ast::ExprKind::Name {id, ..} => {
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class_ancestors.push(self.resolver.get_function_def(id)) // FIXME: is it correct to use this?
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}
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_ => return Err("unsupported expression in the bases list".into())
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}
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}
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// fields and methods are determined using the `body` field
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let class_fields: Vec<(String, Type)> = Default::default();
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let class_methods: Vec<(String, Type, DefinitionId)> = Default::default();
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for stmt in body {
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match &stmt.node {
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ast::StmtKind::FunctionDef {name, .. } if name != "__init__" => {
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let result = self.register_top_level(stmt)?;
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unimplemented!()
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},
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_ => unimplemented!()
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}
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}
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let defs = self.ctx.definitions.write();
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let index = defs.len();
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unimplemented!()
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},
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ast::StmtKind::FunctionDef {name, ..} => {
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unimplemented!()
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}
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_ => Err("only expect function definition and class definition".into())
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}
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}
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}
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@ -1,5 +1,5 @@
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mod function_check;
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mod function_check;
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mod magic_methods;
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pub mod magic_methods;
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pub mod type_inferencer;
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pub mod type_inferencer;
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pub mod typedef;
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pub mod typedef;
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mod unification_table;
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mod unification_table;
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