forked from M-Labs/nac3
tuple constant indexing now supported
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be512985a7
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de82fbabd8
@ -266,33 +266,43 @@ impl<'a> InferenceContext<'a> {
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}
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fn infer_subscript(&self, value: &Box<ast::Expr<Option<Type>>>, slice: &Box<ast::Expr<Option<Type>>>) -> Result<Option<Type>, String> {
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let t = if let TypeEnum::ParametricType(primitives::LIST_TYPE, ls) = value.custom.as_ref().ok_or_else(|| "no value".to_string())?.as_ref() {
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ls[0].clone()
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} else {
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return Err("subscript is not supported for types other than list".into());
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};
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if let ast::ExprKind::Slice {lower, upper, step} = &slice.node {
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let int32_type = self.get_primitive(primitives::INT32_TYPE);
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let l = lower.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("lower bound cannot be typped".to_string()))?;
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let u = upper.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("upper bound cannot be typped".to_string()))?;
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let s = step.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("step cannot be typped".to_string()))?;
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if l == &int32_type && u == &int32_type && s == &int32_type {
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Ok(value.custom.clone())
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let val_type = value.custom.as_ref().ok_or_else(|| "no value".to_string())?.as_ref();
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if let TypeEnum::ParametricType(primitives::LIST_TYPE, ls) = val_type {
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if let ast::ExprKind::Slice {lower, upper, step} = &slice.node {
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let int32_type = self.get_primitive(primitives::INT32_TYPE);
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let l = lower.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("lower bound cannot be typped".to_string()))?;
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let u = upper.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("upper bound cannot be typped".to_string()))?;
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let s = step.as_ref().map_or(
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Ok(&int32_type),
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|x| x.custom.as_ref().ok_or("step cannot be typped".to_string()))?;
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if l == &int32_type && u == &int32_type && s == &int32_type {
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Ok(value.custom.clone())
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} else {
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Err("slice must be int32 type".into())
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}
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} else if slice.custom == Some(self.get_primitive(primitives::INT32_TYPE)) {
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Ok(Some(ls[0].clone()))
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} else {
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Err("slice must be int32 type".into())
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Err("slice or index must be int32 type".into())
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}
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} else if let TypeEnum::ParametricType(primitives::TUPLE_TYPE, ls) = val_type {
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if let ast::ExprKind::Constant {kind: _, value: ast::Constant::Int(val)} = &slice.node {
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let ind: Result<usize, _> = val.try_into();
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if ind.is_ok() && ind.unwrap() < ls.len() {
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Ok(Some(ls[ind.unwrap()].clone()))
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} else {
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Err("tuple constant index out of range".into())
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}
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} else {
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Err("tuple index can only be constant".into())
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}
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} else if slice.custom == Some(self.get_primitive(primitives::INT32_TYPE)) {
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Ok(Some(t))
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} else {
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Err("slice or index must be int32 type".into())
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Err("subscript is not supported for types other than list or tuple".into())
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}
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}
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@ -631,6 +641,7 @@ pub mod test {
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let ast8 = rustpython_parser::parser::parse_expression("[[(1, 2), (2, 3), (3, 4)], [(2, 4), (4, 6)]][0]").unwrap();
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let ast9 = rustpython_parser::parser::parse_expression("[1, 2, 3, 4, 5][1: 2]").unwrap();
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let ast10 = rustpython_parser::parser::parse_expression("4 if False and True else 8").unwrap();
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let ast11 = rustpython_parser::parser::parse_expression("(1, 2, 3, 4)[1]").unwrap();
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let folded = inf.fold_expr(ast1).unwrap();
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let folded_2 = Premapper.fold_expr(ast2).unwrap();
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@ -642,6 +653,7 @@ pub mod test {
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let folded_8 = inf.fold_expr(ast8).unwrap();
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let folded_9 = inf.fold_expr(ast9).unwrap();
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let folded_10 = inf.fold_expr(ast10).unwrap();
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let folded_11 = inf.fold_expr(ast11).unwrap();
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println!("{:?}", folded.custom);
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println!("{:?}", folded_2.custom);
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@ -653,6 +665,7 @@ pub mod test {
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println!("{:?}", folded_8.custom);
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println!("{:?}", folded_9.custom);
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println!("{:?}", folded_10.custom);
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println!("{:?}", folded_11.custom);
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}
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}
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