skeleton done
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@ -8,7 +8,7 @@ use super::magic_methods::*;
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use super::symbol_resolver::{SymbolResolver, SymbolType};
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use super::symbol_resolver::{SymbolResolver, SymbolType};
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use super::typedef::{Call, Type, TypeEnum, Unifier};
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use super::typedef::{Call, Type, TypeEnum, Unifier};
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use itertools::izip;
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use itertools::izip;
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use rustpython_parser::ast::{self, fold::Fold};
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use rustpython_parser::ast::{self, fold};
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pub struct PrimitiveStore {
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pub struct PrimitiveStore {
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int32: Type,
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int32: Type,
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@ -26,13 +26,65 @@ pub struct Inferencer<'a> {
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primitives: &'a PrimitiveStore,
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primitives: &'a PrimitiveStore,
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}
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}
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impl<'a> Fold<()> for Inferencer<'a> {
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impl<'a> fold::Fold<()> for Inferencer<'a> {
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type TargetU = Option<Type>;
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type TargetU = Option<Type>;
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type Error = String;
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type Error = String;
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fn map_user(&mut self, _: ()) -> Result<Self::TargetU, Self::Error> {
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fn map_user(&mut self, _: ()) -> Result<Self::TargetU, Self::Error> {
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Ok(None)
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Ok(None)
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}
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}
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fn fold_expr(&mut self, node: ast::Expr<()>) -> Result<ast::Expr<Self::TargetU>, Self::Error> {
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let expr = match &node.node {
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ast::ExprKind::Call { .. } => unimplemented!(),
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ast::ExprKind::Lambda { .. } => unimplemented!(),
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ast::ExprKind::ListComp { .. } => unimplemented!(),
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_ => fold::fold_expr(self, node)?,
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};
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let custom = match &expr.node {
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ast::ExprKind::Constant { value, .. } => Some(self.infer_constant(value)?),
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ast::ExprKind::Name { id, .. } => Some(self.infer_identifier(id)?),
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ast::ExprKind::List { elts, .. } => Some(self.infer_list(elts)?),
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ast::ExprKind::Tuple { elts, .. } => Some(self.infer_tuple(elts)?),
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ast::ExprKind::Attribute {
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value,
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attr,
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ctx: _,
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} => Some(self.infer_attribute(value, attr)?),
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ast::ExprKind::BoolOp { op: _, values } => Some(self.infer_bool_ops(values)?),
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ast::ExprKind::BinOp { left, op, right } => Some(self.infer_bin_ops(left, op, right)?),
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ast::ExprKind::UnaryOp { op, operand } => Some(self.infer_unary_ops(op, operand)?),
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ast::ExprKind::Compare {
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left,
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ops,
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comparators,
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} => Some(self.infer_compare(left, ops, comparators)?),
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ast::ExprKind::Call {
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func,
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args,
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keywords,
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} => unimplemented!(),
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ast::ExprKind::Subscript {
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value,
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slice,
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ctx: _,
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} => Some(self.infer_subscript(value.as_ref(), slice.as_ref())?),
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ast::ExprKind::IfExp { test, body, orelse } => {
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Some(self.infer_if_expr(test, body.as_ref(), orelse.as_ref())?)
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}
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ast::ExprKind::ListComp {
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elt: _,
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generators: _,
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} => expr.custom, // already computed
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ast::ExprKind::Slice { .. } => None, // we don't need it for slice
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_ => return Err("not supported yet".into()),
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};
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Ok(ast::Expr {
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custom,
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location: expr.location,
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node: expr.node,
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})
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}
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}
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}
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type InferenceResult = Result<Type, String>;
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type InferenceResult = Result<Type, String>;
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@ -219,8 +271,8 @@ impl<'a> Inferencer<'a> {
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fn infer_if_expr(
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fn infer_if_expr(
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&mut self,
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&mut self,
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test: &ast::Expr<Option<Type>>,
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test: &ast::Expr<Option<Type>>,
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body: ast::Expr<Option<Type>>,
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body: &ast::Expr<Option<Type>>,
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orelse: ast::Expr<Option<Type>>,
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orelse: &ast::Expr<Option<Type>>,
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) -> InferenceResult {
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) -> InferenceResult {
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self.constrain(test.custom.unwrap(), self.primitives.bool)?;
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self.constrain(test.custom.unwrap(), self.primitives.bool)?;
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let ty = self.unifier.get_fresh_var().0;
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let ty = self.unifier.get_fresh_var().0;
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