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https://github.com/nushell/nushell.git
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fix error when exporting consts with type signatures in modules (#14118)
Fixes #14023 # Description - Prevents "failed to find added variable" when modules export constants with type signatures: ```nushell > module foo { export const bar: int = 2 } Error: nu::parser::unknown_state × Internal error. ╭─[entry #1:1:21] 1 │ module foo { export const bar: int = 2 } · ─────────┬──────── · ╰── failed to find added variable ``` - Returns `name_is_builtin_var` errors for names with type signatures: ```nushell > let env: string = ""; Error: nu::parser::name_is_builtin_var × `env` used as variable name. ╭─[entry #1:1:5] 1 │ let env: string = ""; · ─┬─ · ╰── already a builtin variable ```
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parent
ee97c00818
commit
4968b6b9d0
@ -1,10 +1,11 @@
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use nu_test_support::nu;
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use rstest::rstest;
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#[test]
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fn let_name_builtin_var() {
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let actual = nu!("let in = 3");
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assert!(actual
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#[rstest]
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#[case("let in = 3")]
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#[case("let in: int = 3")]
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fn let_name_builtin_var(#[case] assignment: &str) {
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assert!(nu!(assignment)
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.err
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.contains("'in' is the name of a builtin Nushell variable"));
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}
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@ -1,4 +1,5 @@
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use nu_test_support::nu;
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use rstest::rstest;
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#[test]
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fn mut_variable() {
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@ -7,11 +8,11 @@ fn mut_variable() {
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assert_eq!(actual.out, "4");
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}
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#[test]
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fn mut_name_builtin_var() {
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let actual = nu!("mut in = 3");
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assert!(actual
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#[rstest]
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#[case("mut in = 3")]
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#[case("mut in: int = 3")]
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fn mut_name_builtin_var(#[case] assignment: &str) {
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assert!(nu!(assignment)
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.err
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.contains("'in' is the name of a builtin Nushell variable"));
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}
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@ -1204,7 +1204,7 @@ pub fn parse_export_in_block(
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match full_name {
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"export alias" => parse_alias(working_set, lite_command, None),
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"export def" => parse_def(working_set, lite_command, None).0,
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"export const" => parse_const(working_set, &lite_command.parts[1..]),
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"export const" => parse_const(working_set, &lite_command.parts[1..]).0,
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"export use" => parse_use(working_set, lite_command, None).0,
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"export module" => parse_module(working_set, lite_command, None).0,
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"export extern" => parse_extern(working_set, lite_command, None),
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@ -1514,7 +1514,7 @@ pub fn parse_export_in_module(
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result
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}
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b"const" => {
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let pipeline = parse_const(working_set, &spans[1..]);
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let (pipeline, var_name_span) = parse_const(working_set, &spans[1..]);
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let export_const_decl_id = if let Some(id) = working_set.find_decl(b"export const")
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{
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id
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@ -1542,8 +1542,8 @@ pub fn parse_export_in_module(
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let mut result = vec![];
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if let Some(var_name_span) = spans.get(2) {
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let var_name = working_set.get_span_contents(*var_name_span);
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if let Some(var_name_span) = var_name_span {
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let var_name = working_set.get_span_contents(var_name_span);
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let var_name = trim_quotes(var_name);
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if let Some(var_id) = working_set.find_variable(var_name) {
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@ -1762,7 +1762,7 @@ pub fn parse_module_block(
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}
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b"const" => block
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.pipelines
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.push(parse_const(working_set, &command.parts)),
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.push(parse_const(working_set, &command.parts).0),
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b"extern" => block
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.pipelines
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.push(parse_extern(working_set, command, None)),
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@ -3154,7 +3154,8 @@ pub fn parse_let(working_set: &mut StateWorkingSet, spans: &[Span]) -> Pipeline
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garbage_pipeline(working_set, spans)
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}
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pub fn parse_const(working_set: &mut StateWorkingSet, spans: &[Span]) -> Pipeline {
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/// Additionally returns a span encompassing the variable name, if successful.
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pub fn parse_const(working_set: &mut StateWorkingSet, spans: &[Span]) -> (Pipeline, Option<Span>) {
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trace!("parsing: const");
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// JT: Disabling check_name because it doesn't work with optional types in the declaration
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@ -3271,28 +3272,37 @@ pub fn parse_const(working_set: &mut StateWorkingSet, spans: &[Span]) -> Pipelin
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let call = Box::new(Call {
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decl_id,
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head: spans[0],
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arguments: vec![Argument::Positional(lvalue), Argument::Positional(rvalue)],
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arguments: vec![
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Argument::Positional(lvalue.clone()),
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Argument::Positional(rvalue),
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],
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parser_info: HashMap::new(),
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});
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return Pipeline::from_vec(vec![Expression::new(
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working_set,
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Expr::Call(call),
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Span::concat(spans),
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Type::Any,
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)]);
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return (
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Pipeline::from_vec(vec![Expression::new(
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working_set,
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Expr::Call(call),
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Span::concat(spans),
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Type::Any,
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)]),
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Some(lvalue.span),
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);
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}
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}
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}
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let ParsedInternalCall { call, output } =
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parse_internal_call(working_set, spans[0], &spans[1..], decl_id);
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return Pipeline::from_vec(vec![Expression::new(
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working_set,
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Expr::Call(call),
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Span::concat(spans),
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output,
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)]);
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return (
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Pipeline::from_vec(vec![Expression::new(
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working_set,
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Expr::Call(call),
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Span::concat(spans),
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output,
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)]),
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None,
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);
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} else {
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working_set.error(ParseError::UnknownState(
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"internal error: let or const statements not found in core language".into(),
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@ -3305,7 +3315,7 @@ pub fn parse_const(working_set: &mut StateWorkingSet, spans: &[Span]) -> Pipelin
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Span::concat(spans),
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));
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garbage_pipeline(working_set, spans)
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(garbage_pipeline(working_set, spans), None)
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}
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pub fn parse_mut(working_set: &mut StateWorkingSet, spans: &[Span]) -> Pipeline {
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@ -3113,7 +3113,8 @@ pub fn parse_var_with_opt_type(
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spans_idx: &mut usize,
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mutable: bool,
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) -> (Expression, Option<Type>) {
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let bytes = working_set.get_span_contents(spans[*spans_idx]).to_vec();
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let name_span = spans[*spans_idx];
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let bytes = working_set.get_span_contents(name_span).to_vec();
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if bytes.contains(&b' ')
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|| bytes.contains(&b'"')
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@ -3125,9 +3126,11 @@ pub fn parse_var_with_opt_type(
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}
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if bytes.ends_with(b":") {
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let name_span = Span::new(name_span.start, name_span.end - 1);
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let var_name = bytes[0..(bytes.len() - 1)].to_vec();
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// We end with colon, so the next span should be the type
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if *spans_idx + 1 < spans.len() {
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let span_beginning = *spans_idx;
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*spans_idx += 1;
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// signature like record<a: int b: int> is broken into multiple spans due to
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// whitespaces. Collect the rest into one span and work on it
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@ -3144,8 +3147,6 @@ pub fn parse_var_with_opt_type(
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let ty = parse_type(working_set, &type_bytes, tokens[0].span);
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*spans_idx = spans.len() - 1;
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let var_name = bytes[0..(bytes.len() - 1)].to_vec();
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if !is_variable(&var_name) {
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working_set.error(ParseError::Expected(
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"valid variable name",
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@ -3157,17 +3158,10 @@ pub fn parse_var_with_opt_type(
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let id = working_set.add_variable(var_name, spans[*spans_idx - 1], ty.clone(), mutable);
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(
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Expression::new(
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working_set,
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Expr::VarDecl(id),
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Span::concat(&spans[span_beginning..*spans_idx + 1]),
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ty.clone(),
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),
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Expression::new(working_set, Expr::VarDecl(id), name_span, ty.clone()),
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Some(ty),
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)
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} else {
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let var_name = bytes[0..(bytes.len() - 1)].to_vec();
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if !is_variable(&var_name) {
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working_set.error(ParseError::Expected(
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"valid variable name",
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@ -5615,7 +5609,7 @@ pub fn parse_builtin_commands(
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.parts_including_redirection()
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.collect::<Vec<Span>>(),
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),
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b"const" => parse_const(working_set, &lite_command.parts),
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b"const" => parse_const(working_set, &lite_command.parts).0,
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b"mut" => parse_mut(
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working_set,
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&lite_command
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@ -117,6 +117,10 @@ fn export_consts() -> TestResult {
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run_test(
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r#"module spam { export const b = 3; }; use spam b; $b"#,
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"3",
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)?;
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run_test(
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r#"module spam { export const b: int = 3; }; use spam b; $b"#,
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"3",
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)
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}
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