+2017-03-18 Paul Thomas <pault@gcc.gnu.org>
+
+ PR fortran/79676
+ * module.c (mio_symbol_attribute): Remove reset of the flag
+ 'no_module_procedures'.
+ (check_for_module_procedures): New function. Move declaration
+ of 'no_module_procedures' to above it.
+ (gfc_dump_module): Traverse namespace calling new function.
+
2017-03-18 Paul Thomas <pault@gcc.gnu.org>
PR fortran/71838
/* The name of the .smod file that the submodule will write to. */
static const char *submodule_name;
-/* Suppress the output of a .smod file by module, if no module
- procedures have been seen. */
-static bool no_module_procedures;
-
static gfc_use_list *module_list;
/* If we're reading an intrinsic module, this is its ID. */
if (attr->array_outer_dependency)
MIO_NAME (ab_attribute) (AB_ARRAY_OUTER_DEPENDENCY, attr_bits);
if (attr->module_procedure)
- {
MIO_NAME (ab_attribute) (AB_MODULE_PROCEDURE, attr_bits);
- no_module_procedures = false;
- }
if (attr->oacc_declare_create)
MIO_NAME (ab_attribute) (AB_OACC_DECLARE_CREATE, attr_bits);
if (attr->oacc_declare_copyin)
}
+/* Suppress the output of a .smod file by module, if no module
+ procedures have been seen. */
+static bool no_module_procedures;
+
+static void
+check_for_module_procedures (gfc_symbol *sym)
+{
+ if (sym && sym->attr.module_procedure)
+ no_module_procedures = false;
+}
+
+
void
gfc_dump_module (const char *name, int dump_flag)
{
dump_smod =false;
no_module_procedures = true;
+ gfc_traverse_ns (gfc_current_ns, check_for_module_procedures);
+
dump_module (name, dump_flag);
if (no_module_procedures || dump_smod)
--- /dev/null
+! { dg-do run }
+!
+! Tests the fix for PR79676 in which submod_test was private even to the
+! submodule 'my_submod'.
+!
+! Contributed by Adam Hirst <adam@aphirst.karoo.co.uk>
+!
+module my_mod
+ private ! This hid 'submod_test'.
+ interface
+ module subroutine submod_test(x)
+ integer :: x
+ end subroutine
+ end interface
+ integer answer
+ public routine1, print_two, answer
+contains
+ subroutine routine1(x)
+ integer :: x
+ call submod_test(x)
+ end subroutine
+ subroutine print_two()
+ integer, parameter :: two = 2
+ answer = answer * two
+ end subroutine
+end module
+
+module my_mod_2
+ use my_mod
+contains
+ subroutine circular_dependency()
+ call print_two()
+ end subroutine
+end module
+
+submodule (my_mod) my_submod
+ use my_mod_2
+contains
+module subroutine submod_test(x)
+ integer :: x
+ answer = x
+ call circular_dependency()
+end subroutine
+
+end submodule
+
+program hello
+ use my_mod
+ implicit none
+ call routine1(2)
+ if (answer .ne. 4) call abort
+end program