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b68212f539
Previously related fields didn't implement get_lookup, instead related fields were treated specially. This commit removed some of the special handling. In particular, related fields return Lookup instances now, too. Other notable changes in this commit is removal of support for annotations in names_to_path().
282 lines
11 KiB
Python
282 lines
11 KiB
Python
from django.db.models import Q, Sum
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from django.db.models.deletion import ProtectedError
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from django.db.utils import IntegrityError
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from django.forms.models import modelform_factory
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from django.test import TestCase, skipIfDBFeature
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from .models import (
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A, B, C, D, Address, Board, CharLink, Company, Contact, Content, Developer,
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Guild, HasLinkThing, Link, Node, Note, OddRelation1, OddRelation2,
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Organization, Person, Place, Related, Restaurant, Tag, Team, TextLink,
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)
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class GenericRelationTests(TestCase):
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def test_inherited_models_content_type(self):
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"""
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Test that GenericRelations on inherited classes use the correct content
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type.
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"""
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p = Place.objects.create(name="South Park")
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r = Restaurant.objects.create(name="Chubby's")
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l1 = Link.objects.create(content_object=p)
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l2 = Link.objects.create(content_object=r)
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self.assertEqual(list(p.links.all()), [l1])
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self.assertEqual(list(r.links.all()), [l2])
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def test_reverse_relation_pk(self):
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"""
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Test that the correct column name is used for the primary key on the
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originating model of a query. See #12664.
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"""
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p = Person.objects.create(account=23, name='Chef')
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Address.objects.create(street='123 Anywhere Place',
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city='Conifer', state='CO',
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zipcode='80433', content_object=p)
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qs = Person.objects.filter(addresses__zipcode='80433')
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self.assertEqual(1, qs.count())
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self.assertEqual('Chef', qs[0].name)
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def test_charlink_delete(self):
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oddrel = OddRelation1.objects.create(name='clink')
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CharLink.objects.create(content_object=oddrel)
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oddrel.delete()
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def test_textlink_delete(self):
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oddrel = OddRelation2.objects.create(name='tlink')
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TextLink.objects.create(content_object=oddrel)
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oddrel.delete()
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def test_q_object_or(self):
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"""
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Tests that SQL query parameters for generic relations are properly
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grouped when OR is used.
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Test for bug http://code.djangoproject.com/ticket/11535
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In this bug the first query (below) works while the second, with the
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query parameters the same but in reverse order, does not.
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The issue is that the generic relation conditions do not get properly
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grouped in parentheses.
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"""
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note_contact = Contact.objects.create()
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org_contact = Contact.objects.create()
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Note.objects.create(note='note', content_object=note_contact)
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org = Organization.objects.create(name='org name')
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org.contacts.add(org_contact)
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# search with a non-matching note and a matching org name
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qs = Contact.objects.filter(Q(notes__note__icontains=r'other note') |
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Q(organizations__name__icontains=r'org name'))
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self.assertIn(org_contact, qs)
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# search again, with the same query parameters, in reverse order
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qs = Contact.objects.filter(
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Q(organizations__name__icontains=r'org name') |
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Q(notes__note__icontains=r'other note'))
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self.assertIn(org_contact, qs)
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def test_join_reuse(self):
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qs = Person.objects.filter(
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addresses__street='foo'
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).filter(
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addresses__street='bar'
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)
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self.assertEqual(str(qs.query).count('JOIN'), 2)
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def test_generic_relation_ordering(self):
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"""
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Test that ordering over a generic relation does not include extraneous
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duplicate results, nor excludes rows not participating in the relation.
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"""
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p1 = Place.objects.create(name="South Park")
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p2 = Place.objects.create(name="The City")
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c = Company.objects.create(name="Chubby's Intl.")
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Link.objects.create(content_object=p1)
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Link.objects.create(content_object=c)
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places = list(Place.objects.order_by('links__id'))
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def count_places(place):
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return len([p for p in places if p.id == place.id])
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self.assertEqual(len(places), 2)
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self.assertEqual(count_places(p1), 1)
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self.assertEqual(count_places(p2), 1)
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def test_target_model_is_unsaved(self):
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"""Test related to #13085"""
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# Fails with another, ORM-level error
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dev1 = Developer(name='Joe')
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note = Note(note='Deserves promotion', content_object=dev1)
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self.assertRaises(IntegrityError, note.save)
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def test_target_model_len_zero(self):
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"""Test for #13085 -- __len__() returns 0"""
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team1 = Team.objects.create(name='Backend devs')
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try:
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note = Note(note='Deserve a bonus', content_object=team1)
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except Exception as e:
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if (issubclass(type(e), Exception) and
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str(e) == 'Impossible arguments to GFK.get_content_type!'):
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self.fail("Saving model with GenericForeignKey to model instance whose "
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"__len__ method returns 0 shouldn't fail.")
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raise e
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note.save()
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def test_target_model_nonzero_false(self):
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"""Test related to #13085"""
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# __nonzero__() returns False -- This actually doesn't currently fail.
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# This test validates that
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g1 = Guild.objects.create(name='First guild')
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note = Note(note='Note for guild', content_object=g1)
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note.save()
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@skipIfDBFeature('interprets_empty_strings_as_nulls')
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def test_gfk_to_model_with_empty_pk(self):
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"""Test related to #13085"""
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# Saving model with GenericForeignKey to model instance with an
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# empty CharField PK
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b1 = Board.objects.create(name='')
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tag = Tag(label='VP', content_object=b1)
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tag.save()
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def test_ticket_20378(self):
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# Create a couple of extra HasLinkThing so that the autopk value
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# isn't the same for Link and HasLinkThing.
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hs1 = HasLinkThing.objects.create()
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hs2 = HasLinkThing.objects.create()
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hs3 = HasLinkThing.objects.create()
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hs4 = HasLinkThing.objects.create()
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l1 = Link.objects.create(content_object=hs3)
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l2 = Link.objects.create(content_object=hs4)
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self.assertQuerysetEqual(
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HasLinkThing.objects.filter(links=l1),
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[hs3], lambda x: x)
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self.assertQuerysetEqual(
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HasLinkThing.objects.filter(links=l2),
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[hs4], lambda x: x)
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self.assertQuerysetEqual(
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HasLinkThing.objects.exclude(links=l2),
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[hs1, hs2, hs3], lambda x: x, ordered=False)
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self.assertQuerysetEqual(
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HasLinkThing.objects.exclude(links=l1),
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[hs1, hs2, hs4], lambda x: x, ordered=False)
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def test_ticket_20564(self):
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b1 = B.objects.create()
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b2 = B.objects.create()
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b3 = B.objects.create()
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c1 = C.objects.create(b=b1)
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c2 = C.objects.create(b=b2)
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c3 = C.objects.create(b=b3)
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A.objects.create(flag=None, content_object=b1)
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A.objects.create(flag=True, content_object=b2)
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self.assertQuerysetEqual(
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C.objects.filter(b__a__flag=None),
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[c1, c3], lambda x: x
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)
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self.assertQuerysetEqual(
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C.objects.exclude(b__a__flag=None),
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[c2], lambda x: x
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)
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def test_ticket_20564_nullable_fk(self):
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b1 = B.objects.create()
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b2 = B.objects.create()
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b3 = B.objects.create()
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d1 = D.objects.create(b=b1)
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d2 = D.objects.create(b=b2)
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d3 = D.objects.create(b=b3)
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d4 = D.objects.create()
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A.objects.create(flag=None, content_object=b1)
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A.objects.create(flag=True, content_object=b1)
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A.objects.create(flag=True, content_object=b2)
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self.assertQuerysetEqual(
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D.objects.exclude(b__a__flag=None),
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[d2], lambda x: x
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)
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self.assertQuerysetEqual(
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D.objects.filter(b__a__flag=None),
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[d1, d3, d4], lambda x: x
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)
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self.assertQuerysetEqual(
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B.objects.filter(a__flag=None),
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[b1, b3], lambda x: x
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)
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self.assertQuerysetEqual(
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B.objects.exclude(a__flag=None),
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[b2], lambda x: x
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)
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def test_extra_join_condition(self):
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# A crude check that content_type_id is taken in account in the
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# join/subquery condition.
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self.assertIn("content_type_id", str(B.objects.exclude(a__flag=None).query).lower())
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# No need for any joins - the join from inner query can be trimmed in
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# this case (but not in the above case as no a objects at all for given
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# B would then fail).
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self.assertNotIn(" join ", str(B.objects.exclude(a__flag=True).query).lower())
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self.assertIn("content_type_id", str(B.objects.exclude(a__flag=True).query).lower())
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def test_annotate(self):
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hs1 = HasLinkThing.objects.create()
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hs2 = HasLinkThing.objects.create()
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HasLinkThing.objects.create()
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b = Board.objects.create(name=str(hs1.pk))
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Link.objects.create(content_object=hs2)
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l = Link.objects.create(content_object=hs1)
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Link.objects.create(content_object=b)
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qs = HasLinkThing.objects.annotate(Sum('links')).filter(pk=hs1.pk)
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# If content_type restriction isn't in the query's join condition,
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# then wrong results are produced here as the link to b will also match
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# (b and hs1 have equal pks).
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self.assertEqual(qs.count(), 1)
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self.assertEqual(qs[0].links__sum, l.id)
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l.delete()
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# Now if we don't have proper left join, we will not produce any
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# results at all here.
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# clear cached results
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qs = qs.all()
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self.assertEqual(qs.count(), 1)
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# Note - 0 here would be a nicer result...
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self.assertIs(qs[0].links__sum, None)
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# Finally test that filtering works.
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self.assertEqual(qs.filter(links__sum__isnull=True).count(), 1)
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self.assertEqual(qs.filter(links__sum__isnull=False).count(), 0)
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def test_filter_targets_related_pk(self):
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HasLinkThing.objects.create()
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hs2 = HasLinkThing.objects.create()
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l = Link.objects.create(content_object=hs2)
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self.assertNotEqual(l.object_id, l.pk)
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self.assertQuerysetEqual(
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HasLinkThing.objects.filter(links=l.pk),
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[hs2], lambda x: x)
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def test_editable_generic_rel(self):
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GenericRelationForm = modelform_factory(HasLinkThing, fields='__all__')
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form = GenericRelationForm()
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self.assertIn('links', form.fields)
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form = GenericRelationForm({'links': None})
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self.assertTrue(form.is_valid())
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form.save()
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links = HasLinkThing._meta.get_field('links')
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self.assertEqual(links.save_form_data_calls, 1)
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def test_ticket_22998(self):
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related = Related.objects.create()
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content = Content.objects.create(related_obj=related)
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Node.objects.create(content=content)
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# deleting the Related cascades to the Content cascades to the Node,
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# where the pre_delete signal should fire and prevent deletion.
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with self.assertRaises(ProtectedError):
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related.delete()
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def test_ticket_22982(self):
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place = Place.objects.create(name='My Place')
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self.assertIn('GenericRelatedObjectManager', str(place.links))
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