for (unsigned i = 0; i < vec_safe_length (offload_funcs); i++)
{
+ symtab_node *node = symtab_node::get ((*offload_funcs)[i]);
+ if (!node)
+ continue;
+ node->force_output = true;
streamer_write_enum (ob->main_stream, LTO_symtab_tags,
LTO_symtab_last_tag, LTO_symtab_unavail_node);
lto_output_fn_decl_ref (ob->decl_state, ob->main_stream,
for (unsigned i = 0; i < vec_safe_length (offload_vars); i++)
{
+ symtab_node *node = symtab_node::get ((*offload_vars)[i]);
+ if (!node)
+ continue;
+ node->force_output = true;
streamer_write_enum (ob->main_stream, LTO_symtab_tags,
LTO_symtab_last_tag, LTO_symtab_variable);
lto_output_var_decl_ref (ob->decl_state, ob->main_stream,
#endif
&& lookup_attribute ("omp declare target link", DECL_ATTRIBUTES (it));
+ /* See also omp_finish_file and output_offload_tables in lto-cgraph.c. */
+ if (!symtab_node::get (it))
+ continue;
+
tree size = NULL_TREE;
if (is_var)
size = fold_convert (const_ptr_type_node, DECL_SIZE_UNIT (it));
add_decls_addresses_to_decl_constructor (offload_vars, v_v);
tree vars_decl_type = build_array_type_nelts (pointer_sized_int_node,
- num_vars * 2);
+ vec_safe_length (v_v));
tree funcs_decl_type = build_array_type_nelts (pointer_sized_int_node,
num_funcs);
SET_TYPE_ALIGN (vars_decl_type, TYPE_ALIGN (pointer_sized_int_node));
for (unsigned i = 0; i < num_funcs; i++)
{
tree it = (*offload_funcs)[i];
+ /* See also add_decls_addresses_to_decl_constructor
+ and output_offload_tables in lto-cgraph.c. */
+ if (!symtab_node::get (it))
+ continue;
targetm.record_offload_symbol (it);
}
for (unsigned i = 0; i < num_vars; i++)
{
tree it = (*offload_vars)[i];
+ if (!symtab_node::get (it))
+ continue;
#ifdef ACCEL_COMPILER
if (DECL_HAS_VALUE_EXPR_P (it)
&& lookup_attribute ("omp declare target link",
--- /dev/null
+! { dg-additional-options "-O3" }
+!
+! With -O3 the static local variable A.10 generated for
+! the array constructor [-2, -4, ..., -20] is optimized
+! away - which has to be handled in the offload_vars table.
+!
+program main
+ implicit none (type, external)
+ integer :: j
+ integer, allocatable :: A(:)
+
+ A = [(3*j, j=1, 10)]
+ call bar (A)
+ deallocate (A)
+contains
+ subroutine bar (array)
+ integer :: i
+ integer :: array(:)
+
+ !$omp target map(from:array)
+ !$acc parallel copyout(array)
+ array = [(-2*i, i = 1, size(array))]
+ !$omp do private(array)
+ !$acc loop gang private(array)
+ do i = 1, 10
+ array(i) = 9*i
+ end do
+ if (any (array /= [(-2*i, i = 1, 10)])) error stop 2
+ !$omp end target
+ !$acc end parallel
+ end subroutine bar
+end