bpo-40334: Produce better error messages for non-parenthesized genexps (GH-20153)
The error message, generated for a non-parenthesized generator expression in function calls, was still the generic `invalid syntax`, when the generator expression wasn't appearing as the first argument in the call. With this patch, even on input like `f(a, b, c for c in d, e)`, the correct error message gets produced.
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@ -627,6 +627,9 @@ incorrect_arguments:
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| args ',' '*' { RAISE_SYNTAX_ERROR("iterable argument unpacking follows keyword argument unpacking") }
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| args ',' '*' { RAISE_SYNTAX_ERROR("iterable argument unpacking follows keyword argument unpacking") }
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| a=expression for_if_clauses ',' [args | expression for_if_clauses] {
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| a=expression for_if_clauses ',' [args | expression for_if_clauses] {
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RAISE_SYNTAX_ERROR_KNOWN_LOCATION(a, "Generator expression must be parenthesized") }
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RAISE_SYNTAX_ERROR_KNOWN_LOCATION(a, "Generator expression must be parenthesized") }
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| a=args for_if_clauses { _PyPegen_nonparen_genexp_in_call(p, a) }
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| args ',' a=expression for_if_clauses {
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RAISE_SYNTAX_ERROR_KNOWN_LOCATION(a, "Generator expression must be parenthesized") }
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| a=args ',' args { _PyPegen_arguments_parsing_error(p, a) }
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| a=args ',' args { _PyPegen_arguments_parsing_error(p, a) }
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invalid_kwarg:
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invalid_kwarg:
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| a=expression '=' {
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| a=expression '=' {
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@ -216,11 +216,9 @@ SyntaxError: Generator expression must be parenthesized
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>>> f(x for x in L, **{})
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>>> f(x for x in L, **{})
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Traceback (most recent call last):
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Traceback (most recent call last):
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SyntaxError: Generator expression must be parenthesized
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SyntaxError: Generator expression must be parenthesized
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>>> f(L, x for x in L)
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# >>> f(L, x for x in L)
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Traceback (most recent call last):
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# Traceback (most recent call last):
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SyntaxError: Generator expression must be parenthesized
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# SyntaxError: Generator expression must be parenthesized
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>>> f(x for x in L, y for y in L)
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>>> f(x for x in L, y for y in L)
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Traceback (most recent call last):
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Traceback (most recent call last):
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SyntaxError: Generator expression must be parenthesized
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SyntaxError: Generator expression must be parenthesized
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@ -11670,6 +11670,8 @@ t_atom_rule(Parser *p)
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// incorrect_arguments:
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// incorrect_arguments:
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// | args ',' '*'
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// | args ',' '*'
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// | expression for_if_clauses ',' [args | expression for_if_clauses]
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// | expression for_if_clauses ',' [args | expression for_if_clauses]
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// | args for_if_clauses
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// | args ',' expression for_if_clauses
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// | args ',' args
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// | args ',' args
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static void *
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static void *
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incorrect_arguments_rule(Parser *p)
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incorrect_arguments_rule(Parser *p)
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@ -11731,6 +11733,54 @@ incorrect_arguments_rule(Parser *p)
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}
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}
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p->mark = _mark;
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p->mark = _mark;
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}
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}
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{ // args for_if_clauses
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if (p->error_indicator) {
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return NULL;
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}
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expr_ty a;
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asdl_seq* for_if_clauses_var;
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if (
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(a = args_rule(p)) // args
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&&
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(for_if_clauses_var = for_if_clauses_rule(p)) // for_if_clauses
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)
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{
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_res = _PyPegen_nonparen_genexp_in_call ( p , a );
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if (_res == NULL && PyErr_Occurred()) {
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p->error_indicator = 1;
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return NULL;
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}
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goto done;
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}
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p->mark = _mark;
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}
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{ // args ',' expression for_if_clauses
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if (p->error_indicator) {
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return NULL;
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}
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Token * _literal;
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expr_ty a;
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expr_ty args_var;
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asdl_seq* for_if_clauses_var;
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if (
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(args_var = args_rule(p)) // args
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&&
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(_literal = _PyPegen_expect_token(p, 12)) // token=','
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&&
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(a = expression_rule(p)) // expression
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&&
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(for_if_clauses_var = for_if_clauses_rule(p)) // for_if_clauses
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)
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{
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_res = RAISE_SYNTAX_ERROR_KNOWN_LOCATION ( a , "Generator expression must be parenthesized" );
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if (_res == NULL && PyErr_Occurred()) {
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p->error_indicator = 1;
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return NULL;
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}
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goto done;
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}
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p->mark = _mark;
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}
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{ // args ',' args
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{ // args ',' args
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if (p->error_indicator) {
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if (p->error_indicator) {
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return NULL;
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return NULL;
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@ -2100,3 +2100,24 @@ void *_PyPegen_arguments_parsing_error(Parser *p, expr_ty e) {
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return RAISE_SYNTAX_ERROR(msg);
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return RAISE_SYNTAX_ERROR(msg);
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}
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}
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void *
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_PyPegen_nonparen_genexp_in_call(Parser *p, expr_ty args)
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{
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/* The rule that calls this function is 'args for_if_clauses'.
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For the input f(L, x for x in y), L and x are in args and
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the for is parsed as a for_if_clause. We have to check if
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len <= 1, so that input like dict((a, b) for a, b in x)
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gets successfully parsed and then we pass the last
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argument (x in the above example) as the location of the
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error */
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Py_ssize_t len = asdl_seq_LEN(args->v.Call.args);
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if (len <= 1) {
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return NULL;
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}
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return RAISE_SYNTAX_ERROR_KNOWN_LOCATION(
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(expr_ty) asdl_seq_GET(args->v.Call.args, len - 1),
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"Generator expression must be parenthesized"
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);
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}
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@ -152,7 +152,7 @@ RAISE_ERROR_KNOWN_LOCATION(Parser *p, PyObject *errtype, int lineno,
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#define RAISE_SYNTAX_ERROR(msg, ...) _PyPegen_raise_error(p, PyExc_SyntaxError, msg, ##__VA_ARGS__)
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#define RAISE_SYNTAX_ERROR(msg, ...) _PyPegen_raise_error(p, PyExc_SyntaxError, msg, ##__VA_ARGS__)
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#define RAISE_INDENTATION_ERROR(msg, ...) _PyPegen_raise_error(p, PyExc_IndentationError, msg, ##__VA_ARGS__)
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#define RAISE_INDENTATION_ERROR(msg, ...) _PyPegen_raise_error(p, PyExc_IndentationError, msg, ##__VA_ARGS__)
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#define RAISE_SYNTAX_ERROR_KNOWN_LOCATION(a, msg, ...) \
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#define RAISE_SYNTAX_ERROR_KNOWN_LOCATION(a, msg, ...) \
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RAISE_ERROR_KNOWN_LOCATION(p, PyExc_SyntaxError, a->lineno, a->col_offset, msg, ##__VA_ARGS__)
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RAISE_ERROR_KNOWN_LOCATION(p, PyExc_SyntaxError, (a)->lineno, (a)->col_offset, msg, ##__VA_ARGS__)
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Py_LOCAL_INLINE(void *)
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Py_LOCAL_INLINE(void *)
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CHECK_CALL(Parser *p, void *result)
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CHECK_CALL(Parser *p, void *result)
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@ -262,6 +262,7 @@ mod_ty _PyPegen_make_module(Parser *, asdl_seq *);
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// Error reporting helpers
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// Error reporting helpers
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expr_ty _PyPegen_get_invalid_target(expr_ty e);
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expr_ty _PyPegen_get_invalid_target(expr_ty e);
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void *_PyPegen_arguments_parsing_error(Parser *, expr_ty);
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void *_PyPegen_arguments_parsing_error(Parser *, expr_ty);
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void *_PyPegen_nonparen_genexp_in_call(Parser *p, expr_ty args);
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void *_PyPegen_parse(Parser *);
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void *_PyPegen_parse(Parser *);
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