self.assertEqual(list(r), list('dcba'))
self.assertRaises(StopIteration, next, r)
+ def test_reverse_iterator_for_empty_dict(self):
+ # bpo-38525: revered iterator should work properly
+
+ # empty dict is directly used for reference count test
+ self.assertEqual(list(reversed({})), [])
+ self.assertEqual(list(reversed({}.items())), [])
+ self.assertEqual(list(reversed({}.values())), [])
+ self.assertEqual(list(reversed({}.keys())), [])
+
+ # dict() and {} don't trigger the same code path
+ self.assertEqual(list(reversed(dict())), [])
+ self.assertEqual(list(reversed(dict().items())), [])
+ self.assertEqual(list(reversed(dict().values())), [])
+ self.assertEqual(list(reversed(dict().keys())), [])
+
+ def test_reverse_iterator_for_shared_shared_dicts(self):
+ class A:
+ def __init__(self, x, y):
+ if x: self.x = x
+ if y: self.y = y
+
+ self.assertEqual(list(reversed(A(1, 2).__dict__)), ['y', 'x'])
+ self.assertEqual(list(reversed(A(1, 0).__dict__)), ['x'])
+ self.assertEqual(list(reversed(A(0, 1).__dict__)), ['y'])
+
def test_dict_copy_order(self):
# bpo-34320
od = collections.OrderedDict([('a', 1), ('b', 2)])
di->di_dict = dict;
di->di_used = dict->ma_used;
di->len = dict->ma_used;
- if ((itertype == &PyDictRevIterKey_Type ||
+ if (itertype == &PyDictRevIterKey_Type ||
itertype == &PyDictRevIterItem_Type ||
- itertype == &PyDictRevIterValue_Type) && dict->ma_used) {
+ itertype == &PyDictRevIterValue_Type) {
+ if (dict->ma_values) {
+ di->di_pos = dict->ma_used - 1;
+ }
+ else {
di->di_pos = dict->ma_keys->dk_nentries - 1;
+ }
}
else {
di->di_pos = 0;