add some error message, try to write test using test case
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@ -387,6 +387,7 @@ dependencies = [
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"num-bigint 0.3.2",
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"num-bigint 0.3.2",
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"num-traits",
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"num-traits",
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"rustpython-parser",
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"rustpython-parser",
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"test-case",
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]
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]
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[[package]]
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[[package]]
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@ -825,6 +826,19 @@ dependencies = [
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"winapi",
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"winapi",
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]
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]
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[[package]]
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name = "test-case"
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version = "1.2.0"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "3b114ece25254e97bf48dd4bfc2a12bad0647adacfe4cae1247a9ca6ad302cec"
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dependencies = [
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"cfg-if",
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"proc-macro2",
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"quote",
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"syn",
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"version_check",
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]
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[[package]]
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[[package]]
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name = "tiny-keccak"
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name = "tiny-keccak"
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version = "2.0.2"
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version = "2.0.2"
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@ -11,3 +11,6 @@ inkwell = { git = "https://github.com/TheDan64/inkwell", branch = "master", feat
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rustpython-parser = { git = "https://github.com/RustPython/RustPython", branch = "master" }
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rustpython-parser = { git = "https://github.com/RustPython/RustPython", branch = "master" }
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indoc = "1.0"
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indoc = "1.0"
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[dev-dependencies]
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test-case = "1.2.0"
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indoc = "1.0"
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@ -1,6 +1,9 @@
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#![warn(clippy::all)]
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#![warn(clippy::all)]
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#![allow(clippy::clone_double_ref)]
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#![allow(clippy::clone_double_ref)]
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#[cfg(test)]
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extern crate test_case;
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extern crate num_bigint;
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extern crate num_bigint;
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extern crate inkwell;
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extern crate inkwell;
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extern crate rustpython_parser;
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extern crate rustpython_parser;
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@ -22,14 +22,14 @@ impl<'a> ast::fold::Fold<()> for TypeInferencer<'a> {
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fn fold_expr(&mut self, node: ast::Expr<()>) -> Result<ast::Expr<Self::TargetU>, Self::Error> {
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fn fold_expr(&mut self, node: ast::Expr<()>) -> Result<ast::Expr<Self::TargetU>, Self::Error> {
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self.error_stack.push((node.node.name().into(), node.location));
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self.error_stack.push(("Checking ".to_string() + node.node.name(), node.location));
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let expr = match &node.node {
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let expr = match &node.node {
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ast::ExprKind::ListComp { .. } => return self.fold_listcomp(node),
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ast::ExprKind::ListComp { .. } => return self.fold_listcomp(node),
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_ => rustpython_parser::ast::fold::fold_expr(self, node)?
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_ => rustpython_parser::ast::fold::fold_expr(self, node)?
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};
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};
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Ok(ast::Expr {
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let ret = Ok(ast::Expr {
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// compute type info and store in the custom field
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// compute type info and store in the custom field
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custom: match &expr.node {
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custom: match &expr.node {
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ast::ExprKind::Constant {value, kind: _} => self.infer_constant(value),
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ast::ExprKind::Constant {value, kind: _} => self.infer_constant(value),
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@ -50,7 +50,9 @@ impl<'a> ast::fold::Fold<()> for TypeInferencer<'a> {
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}?,
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}?,
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location: expr.location,
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location: expr.location,
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node: expr.node
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node: expr.node
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})
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});
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self.error_stack.pop();
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ret
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}
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}
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}
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}
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@ -320,7 +322,7 @@ impl<'a> TypeInferencer<'a> {
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// some pre-folds need special handling
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// some pre-folds need special handling
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fn fold_listcomp(&mut self, expr: ast::Expr<()>) -> Result<ast::Expr<Option<Type>>, String> {
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fn fold_listcomp(&mut self, expr: ast::Expr<()>) -> Result<ast::Expr<Option<Type>>, String> {
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self.error_stack.push(("folding list comprehension at ".into(), expr.location));
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self.error_stack.push(("list comprehension at ".into(), expr.location));
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if let ast::Expr {
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if let ast::Expr {
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location,
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location,
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@ -343,7 +345,7 @@ impl<'a> TypeInferencer<'a> {
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is_async} = gen;
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is_async} = gen;
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let iter_folded = Box::new(self.fold_expr(*iter)?);
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let iter_folded = Box::new(self.fold_expr(*iter)?);
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if let TypeEnum::ParametricType(
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let ret = if let TypeEnum::ParametricType(
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primitives::LIST_TYPE,
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primitives::LIST_TYPE,
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ls) = iter_folded
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ls) = iter_folded
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.custom
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.custom
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@ -390,14 +392,17 @@ impl<'a> TypeInferencer<'a> {
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result
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result
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} else {
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} else {
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Err("iteration is supported for list only".into())
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Err("iteration is supported for list only".into())
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}
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};
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self.error_stack.pop();
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ret
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} else {
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} else {
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panic!("this function is for list comprehensions only!");
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panic!("this function is for list comprehensions only!");
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}
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}
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}
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}
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fn infer_simple_binding<T>(&mut self, name: &ast::Expr<T>, ty: Type) -> Result<(), String> {
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fn infer_simple_binding<T>(&mut self, name: &ast::Expr<T>, ty: Type) -> Result<(), String> {
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match &name.node {
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self.error_stack.push(("resolving list comprehension variables".into(), name.location));
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let ret = match &name.node {
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ast::ExprKind::Name {id, ctx: _} => {
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ast::ExprKind::Name {id, ctx: _} => {
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if id == "_" {
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if id == "_" {
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Ok(())
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Ok(())
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@ -424,7 +429,9 @@ impl<'a> TypeInferencer<'a> {
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}
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}
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}
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}
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_ => Err("not supported".into())
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_ => Err("not supported".into())
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}
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};
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self.error_stack.pop();
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ret
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}
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}
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fn fold_expr(&mut self, node: ast::Expr<()>) -> Result<ast::Expr<Option<Type>>, String> {
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fn fold_expr(&mut self, node: ast::Expr<()>) -> Result<ast::Expr<Option<Type>>, String> {
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@ -437,10 +444,14 @@ impl<'a> TypeInferencer<'a> {
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}
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}
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}
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}
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pub mod test {
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pub mod test {
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use std::vec;
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use crate::typecheck::{symbol_resolver::SymbolResolver, symbol_resolver::*, location::*};
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use crate::typecheck::{symbol_resolver::SymbolResolver, symbol_resolver::*, location::*};
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use rustpython_parser::ast::Expr;
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use rustpython_parser::ast::Expr;
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use test_case::test_case; // FIXME
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use super::*;
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use super::*;
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pub fn new_ctx<'a>() -> TypeInferencer<'a> {
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pub fn new_ctx<'a>() -> TypeInferencer<'a> {
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@ -642,7 +653,7 @@ pub mod test {
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let ast11 = rustpython_parser::parser::parse_expression("(1, 2, 3, 4)[1]").unwrap();
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let ast11 = rustpython_parser::parser::parse_expression("(1, 2, 3, 4)[1]").unwrap();
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let ast12 = rustpython_parser::parser::parse_expression("(1, True, 3, False)[1]").unwrap();
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let ast12 = rustpython_parser::parser::parse_expression("(1, True, 3, False)[1]").unwrap();
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let ast13 = rustpython_parser::parser::parse_expression("[1, True, 2]").unwrap();
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// let ast13 = rustpython_parser::parser::parse_expression("[1, True, 2]").unwrap();
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let folded = inf.fold_expr(ast1).unwrap();
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let folded = inf.fold_expr(ast1).unwrap();
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let folded_2 = inf.fold_expr(ast2).unwrap();
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let folded_2 = inf.fold_expr(ast2).unwrap();
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@ -670,6 +681,22 @@ pub mod test {
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println!("{:?}", folded_10.custom);
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println!("{:?}", folded_10.custom);
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println!("{:?}", folded_11.custom);
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println!("{:?}", folded_11.custom);
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println!("{:?}", folded_12.custom);
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println!("{:?}", folded_12.custom);
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let folded_13 = inf.fold_expr(ast13);
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// let folded_13 = inf.fold_expr(ast13);
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}
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#[test]
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fn test_err_msg() {
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let mut inf = new_ctx();
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for prog in vec![
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"[1, True, 2]",
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"True if 1 else False",
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"1 if True else False",
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] {
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let ast = rustpython_parser::parser::parse_expression(prog).unwrap();
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let _folded = inf.fold_expr(ast);
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println!("");
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}
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// println!("{:?}", folded);
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}
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}
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}
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}
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