with the expression passed as argument in EXPR. */
static void
-get_final_proc_ref (gfc_se *se, gfc_expr *expr)
+get_final_proc_ref (gfc_se *se, gfc_expr *expr, tree class_container)
{
gfc_expr *final_wrapper = NULL;
gcc_assert (expr->ts.type == BT_DERIVED || expr->ts.type == BT_CLASS);
+ bool using_class_container = false;
if (expr->ts.type == BT_DERIVED)
gfc_is_finalizable (expr->ts.u.derived, &final_wrapper);
+ else if (class_container)
+ {
+ using_class_container = true;
+ se->expr = gfc_class_vtab_final_get (class_container);
+ }
else
{
final_wrapper = gfc_copy_expr (expr);
gfc_add_final_component (final_wrapper);
}
- gcc_assert (final_wrapper->expr_type == EXPR_VARIABLE);
+ if (!using_class_container)
+ {
+ gcc_assert (final_wrapper->expr_type == EXPR_VARIABLE);
- gfc_conv_expr (se, final_wrapper);
+ gfc_conv_expr (se, final_wrapper);
+ }
if (POINTER_TYPE_P (TREE_TYPE (se->expr)))
se->expr = build_fold_indirect_ref_loc (input_location, se->expr);
passed as argument in EXPR. */
static void
-get_elem_size (gfc_se *se, gfc_expr *expr)
+get_elem_size (gfc_se *se, gfc_expr *expr, tree class_container)
{
gcc_assert (expr->ts.type == BT_DERIVED || expr->ts.type == BT_CLASS);
se->expr = TYPE_SIZE_UNIT (se->expr);
se->expr = fold_convert (gfc_array_index_type, se->expr);
}
+ else if (class_container)
+ se->expr = gfc_class_vtab_size_get (class_container);
else
{
gfc_expr *class_size = gfc_copy_expr (expr);
expression passed as argument in VAR. */
static void
-get_var_descr (gfc_se *se, gfc_expr *var)
+get_var_descr (gfc_se *se, gfc_expr *var, tree class_container)
{
gfc_se tmp_se;
else
gfc_conv_expr (&tmp_se, var);
}
+ else if (class_container)
+ tmp_se.expr = gfc_class_data_get (class_container);
else
{
gfc_expr *array_expr;
static void
-get_vptr (gfc_se *se, gfc_expr *expr)
+get_vptr (gfc_se *se, gfc_expr *expr, tree class_container)
{
- gfc_expr *vptr_expr = gfc_copy_expr (expr);
- gfc_add_vptr_component (vptr_expr);
+ if (class_container)
+ se->expr = gfc_class_vptr_get (class_container);
+ else
+ {
+ gfc_expr *vptr_expr = gfc_copy_expr (expr);
+ gfc_add_vptr_component (vptr_expr);
- gfc_se tmp_se;
- gfc_init_se (&tmp_se, NULL);
- tmp_se.want_pointer = 1;
- gfc_conv_expr (&tmp_se, vptr_expr);
- gfc_free_expr (vptr_expr);
+ gfc_se tmp_se;
+ gfc_init_se (&tmp_se, NULL);
+ tmp_se.want_pointer = 1;
+ gfc_conv_expr (&tmp_se, vptr_expr);
+ gfc_free_expr (vptr_expr);
- gfc_add_block_to_block (&se->pre, &tmp_se.pre);
- gfc_add_block_to_block (&se->post, &tmp_se.post);
- se->expr = tmp_se.expr;
+ gfc_add_block_to_block (&se->pre, &tmp_se.pre);
+ gfc_add_block_to_block (&se->post, &tmp_se.post);
+ se->expr = tmp_se.expr;
+ }
}
true when a finalizer call has been inserted. */
bool
-gfc_add_finalizer_call (stmtblock_t *block, gfc_expr *expr2)
+gfc_add_finalizer_call (stmtblock_t *block, gfc_expr *expr2,
+ tree class_container)
{
tree tmp;
gfc_ref *ref;
gfc_se final_se;
gfc_init_se (&final_se, NULL);
- get_final_proc_ref (&final_se, expr);
+ get_final_proc_ref (&final_se, expr, class_container);
gfc_add_block_to_block (block, &final_se.pre);
gfc_se size_se;
gfc_init_se (&size_se, NULL);
- get_elem_size (&size_se, expr);
+ get_elem_size (&size_se, expr, class_container);
gfc_add_block_to_block (&tmp_block, &size_se.pre);
gfc_se desc_se;
gfc_init_se (&desc_se, NULL);
- get_var_descr (&desc_se, expr);
+ get_var_descr (&desc_se, expr, class_container);
gfc_add_block_to_block (&tmp_block, &desc_se.pre);
tmp = build_call_expr_loc (input_location, final_se.expr, 3,
gfc_se vptr_se;
gfc_init_se (&vptr_se, NULL);
- get_vptr (&vptr_se, expr);
+ get_vptr (&vptr_se, expr, class_container);
cond2 = fold_build2_loc (input_location, NE_EXPR, logical_type_node,
vptr_se.expr,