Fixed #27719 -- Added QuerySet.alias() to allow creating reusable aliases.
QuerySet.alias() allows creating reusable aliases for expressions that don't need to be selected but are used for filtering, ordering, or as a part of complex expressions. Thanks Simon Charette for reviews.
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AUTHORS
2
AUTHORS
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@ -41,7 +41,7 @@ answer newbie questions, and generally made Django that much better:
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Aleksi Häkli <aleksi.hakli@iki.fi>
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Alexander Dutton <dev@alexdutton.co.uk>
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Alexander Myodov <alex@myodov.com>
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Alexandr Tatarinov <tatarinov1997@gmail.com>
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Alexandr Tatarinov <tatarinov.dev@gmail.com>
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Alex Aktsipetrov <alex.akts@gmail.com>
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Alex Becker <https://alexcbecker.net/>
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Alex Couper <http://alexcouper.com/>
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@ -1085,6 +1085,16 @@ class QuerySet:
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with extra data or aggregations.
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"""
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self._not_support_combined_queries('annotate')
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return self._annotate(args, kwargs, select=True)
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def alias(self, *args, **kwargs):
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"""
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Return a query set with added aliases for extra data or aggregations.
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"""
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self._not_support_combined_queries('alias')
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return self._annotate(args, kwargs, select=False)
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def _annotate(self, args, kwargs, select=True):
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self._validate_values_are_expressions(args + tuple(kwargs.values()), method_name='annotate')
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annotations = {}
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for arg in args:
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@ -1114,8 +1124,9 @@ class QuerySet:
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if isinstance(annotation, FilteredRelation):
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clone.query.add_filtered_relation(annotation, alias)
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else:
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clone.query.add_annotation(annotation, alias, is_summary=False)
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clone.query.add_annotation(
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annotation, alias, is_summary=False, select=select,
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)
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for alias, annotation in clone.query.annotations.items():
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if alias in annotations and annotation.contains_aggregate:
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if clone._fields is None:
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@ -1015,11 +1015,14 @@ class Query(BaseExpression):
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alias = seen[int_model] = join_info.joins[-1]
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return alias or seen[None]
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def add_annotation(self, annotation, alias, is_summary=False):
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def add_annotation(self, annotation, alias, is_summary=False, select=True):
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"""Add a single annotation expression to the Query."""
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annotation = annotation.resolve_expression(self, allow_joins=True, reuse=None,
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summarize=is_summary)
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self.append_annotation_mask([alias])
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if select:
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self.append_annotation_mask([alias])
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else:
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self.set_annotation_mask(set(self.annotation_select).difference({alias}))
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self.annotations[alias] = annotation
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def resolve_expression(self, query, *args, **kwargs):
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@ -1707,6 +1710,11 @@ class Query(BaseExpression):
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# which is executed as a wrapped subquery if any of the
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# aggregate() elements reference an existing annotation. In
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# that case we need to return a Ref to the subquery's annotation.
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if name not in self.annotation_select:
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raise FieldError(
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"Cannot aggregate over the '%s' alias. Use annotate() "
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"to promote it." % name
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)
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return Ref(name, self.annotation_select[name])
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else:
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return annotation
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@ -1911,6 +1919,11 @@ class Query(BaseExpression):
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# For lookups spanning over relationships, show the error
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# from the model on which the lookup failed.
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raise
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elif name in self.annotations:
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raise FieldError(
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"Cannot select the '%s' alias. Use annotate() to promote "
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"it." % name
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)
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else:
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names = sorted([
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*get_field_names_from_opts(opts), *self.extra,
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@ -268,6 +268,42 @@ control the name of the annotation::
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For an in-depth discussion of aggregation, see :doc:`the topic guide on
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Aggregation </topics/db/aggregation>`.
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``alias()``
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~~~~~~~~~~~
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.. method:: alias(*args, **kwargs)
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.. versionadded:: 3.2
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Same as :meth:`annotate`, but instead of annotating objects in the
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``QuerySet``, saves the expression for later reuse with other ``QuerySet``
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methods. This is useful when the result of the expression itself is not needed
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but it is used for filtering, ordering, or as a part of a complex expression.
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Not selecting the unused value removes redundant work from the database which
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should result in better performance.
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For example, if you want to find blogs with more than 5 entries, but are not
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interested in the exact number of entries, you could do this::
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>>> from django.db.models import Count
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>>> blogs = Blog.objects.alias(entries=Count('entry')).filter(entries__gt=5)
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``alias()`` can be used in conjunction with :meth:`annotate`, :meth:`exclude`,
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:meth:`filter`, :meth:`order_by`, and :meth:`update`. To use aliased expression
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with other methods (e.g. :meth:`aggregate`), you must promote it to an
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annotation::
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Blog.objects.alias(entries=Count('entry')).annotate(
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entries=F('entries'),
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).aggregate(Sum('entries'))
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:meth:`filter` and :meth:`order_by` can take expressions directly, but
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expression construction and usage often does not happen in the same place (for
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example, ``QuerySet`` method creates expressions, for later use in views).
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``alias()`` allows building complex expressions incrementally, possibly
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spanning multiple methods and modules, refer to the expression parts by their
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aliases and only use :meth:`annotate` for the final result.
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``order_by()``
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~~~~~~~~~~~~~~
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@ -269,6 +269,10 @@ Models
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:py:class:`datetime.time`, :py:class:`datetime.timedelta`,
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:py:class:`decimal.Decimal`, and :py:class:`uuid.UUID` instances.
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* The new :meth:`.QuerySet.alias` method allows creating reusable aliases for
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expressions that don't need to be selected but are used for filtering,
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ordering, or as a part of complex expressions.
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Requests and Responses
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~~~~~~~~~~~~~~~~~~~~~~
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@ -10,7 +10,7 @@ from django.db.models import (
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Subquery, Sum, Value, When,
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)
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from django.db.models.expressions import RawSQL
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from django.db.models.functions import Length, Lower
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from django.db.models.functions import Coalesce, Length, Lower
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from django.test import TestCase, skipUnlessDBFeature
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from .models import (
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@ -664,3 +664,225 @@ class NonAggregateAnnotationTestCase(TestCase):
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{'name': 'Paul Bissex', 'max_pages': 0},
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{'name': 'Wesley J. Chun', 'max_pages': 0},
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])
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class AliasTests(TestCase):
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@classmethod
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def setUpTestData(cls):
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cls.a1 = Author.objects.create(name='Adrian Holovaty', age=34)
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cls.a2 = Author.objects.create(name='Jacob Kaplan-Moss', age=35)
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cls.a3 = Author.objects.create(name='James Bennett', age=34)
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cls.a4 = Author.objects.create(name='Peter Norvig', age=57)
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cls.a5 = Author.objects.create(name='Stuart Russell', age=46)
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p1 = Publisher.objects.create(name='Apress', num_awards=3)
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cls.b1 = Book.objects.create(
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isbn='159059725', pages=447, rating=4.5, price=Decimal('30.00'),
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contact=cls.a1, publisher=p1, pubdate=datetime.date(2007, 12, 6),
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name='The Definitive Guide to Django: Web Development Done Right',
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)
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cls.b2 = Book.objects.create(
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isbn='159059996', pages=300, rating=4.0, price=Decimal('29.69'),
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contact=cls.a3, publisher=p1, pubdate=datetime.date(2008, 6, 23),
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name='Practical Django Projects',
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)
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cls.b3 = Book.objects.create(
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isbn='013790395', pages=1132, rating=4.0, price=Decimal('82.80'),
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contact=cls.a4, publisher=p1, pubdate=datetime.date(1995, 1, 15),
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name='Artificial Intelligence: A Modern Approach',
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)
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cls.b4 = Book.objects.create(
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isbn='155860191', pages=946, rating=5.0, price=Decimal('75.00'),
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contact=cls.a4, publisher=p1, pubdate=datetime.date(1991, 10, 15),
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name='Paradigms of Artificial Intelligence Programming: Case Studies in Common Lisp',
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)
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cls.b1.authors.add(cls.a1, cls.a2)
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cls.b2.authors.add(cls.a3)
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cls.b3.authors.add(cls.a4, cls.a5)
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cls.b4.authors.add(cls.a4)
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Store.objects.create(
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name='Amazon.com',
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original_opening=datetime.datetime(1994, 4, 23, 9, 17, 42),
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friday_night_closing=datetime.time(23, 59, 59)
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)
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Store.objects.create(
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name='Books.com',
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original_opening=datetime.datetime(2001, 3, 15, 11, 23, 37),
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friday_night_closing=datetime.time(23, 59, 59)
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)
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def test_basic_alias(self):
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qs = Book.objects.alias(is_book=Value(1))
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self.assertIs(hasattr(qs.first(), 'is_book'), False)
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def test_basic_alias_annotation(self):
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qs = Book.objects.alias(
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is_book_alias=Value(1),
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).annotate(is_book=F('is_book_alias'))
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self.assertIs(hasattr(qs.first(), 'is_book_alias'), False)
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.is_book, 1)
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def test_basic_alias_f_annotation(self):
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qs = Book.objects.alias(
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another_rating_alias=F('rating')
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).annotate(another_rating=F('another_rating_alias'))
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self.assertIs(hasattr(qs.first(), 'another_rating_alias'), False)
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.another_rating, book.rating)
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def test_alias_after_annotation(self):
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qs = Book.objects.annotate(
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is_book=Value(1),
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).alias(is_book_alias=F('is_book'))
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book = qs.first()
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self.assertIs(hasattr(book, 'is_book'), True)
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self.assertIs(hasattr(book, 'is_book_alias'), False)
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def test_overwrite_annotation_with_alias(self):
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qs = Book.objects.annotate(is_book=Value(1)).alias(is_book=F('is_book'))
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self.assertIs(hasattr(qs.first(), 'is_book'), False)
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def test_overwrite_alias_with_annotation(self):
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qs = Book.objects.alias(is_book=Value(1)).annotate(is_book=F('is_book'))
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.is_book, 1)
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def test_alias_annotation_expression(self):
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qs = Book.objects.alias(
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is_book_alias=Value(1),
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).annotate(is_book=Coalesce('is_book_alias', 0))
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self.assertIs(hasattr(qs.first(), 'is_book_alias'), False)
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.is_book, 1)
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def test_alias_default_alias_expression(self):
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qs = Author.objects.alias(
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Sum('book__pages'),
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).filter(book__pages__sum__gt=2000)
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self.assertIs(hasattr(qs.first(), 'book__pages__sum'), False)
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self.assertSequenceEqual(qs, [self.a4])
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def test_joined_alias_annotation(self):
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qs = Book.objects.select_related('publisher').alias(
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num_awards_alias=F('publisher__num_awards'),
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).annotate(num_awards=F('num_awards_alias'))
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self.assertIs(hasattr(qs.first(), 'num_awards_alias'), False)
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.num_awards, book.publisher.num_awards)
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def test_alias_annotate_with_aggregation(self):
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qs = Book.objects.alias(
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is_book_alias=Value(1),
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rating_count_alias=Count('rating'),
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).annotate(
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is_book=F('is_book_alias'),
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rating_count=F('rating_count_alias'),
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)
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book = qs.first()
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self.assertIs(hasattr(book, 'is_book_alias'), False)
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self.assertIs(hasattr(book, 'rating_count_alias'), False)
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for book in qs:
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with self.subTest(book=book):
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self.assertEqual(book.is_book, 1)
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self.assertEqual(book.rating_count, 1)
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def test_filter_alias_with_f(self):
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qs = Book.objects.alias(
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other_rating=F('rating'),
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).filter(other_rating=4.5)
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self.assertIs(hasattr(qs.first(), 'other_rating'), False)
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self.assertSequenceEqual(qs, [self.b1])
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def test_filter_alias_with_double_f(self):
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qs = Book.objects.alias(
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other_rating=F('rating'),
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).filter(other_rating=F('rating'))
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self.assertIs(hasattr(qs.first(), 'other_rating'), False)
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self.assertEqual(qs.count(), Book.objects.count())
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def test_filter_alias_agg_with_double_f(self):
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qs = Book.objects.alias(
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sum_rating=Sum('rating'),
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).filter(sum_rating=F('sum_rating'))
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self.assertIs(hasattr(qs.first(), 'sum_rating'), False)
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self.assertEqual(qs.count(), Book.objects.count())
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def test_update_with_alias(self):
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Book.objects.alias(
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other_rating=F('rating') - 1,
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).update(rating=F('other_rating'))
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self.b1.refresh_from_db()
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self.assertEqual(self.b1.rating, 3.5)
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def test_order_by_alias(self):
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qs = Author.objects.alias(other_age=F('age')).order_by('other_age')
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self.assertIs(hasattr(qs.first(), 'other_age'), False)
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self.assertQuerysetEqual(qs, [34, 34, 35, 46, 57], lambda a: a.age)
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def test_order_by_alias_aggregate(self):
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qs = Author.objects.values('age').alias(age_count=Count('age')).order_by('age_count', 'age')
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self.assertIs(hasattr(qs.first(), 'age_count'), False)
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self.assertQuerysetEqual(qs, [35, 46, 57, 34], lambda a: a['age'])
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def test_dates_alias(self):
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qs = Book.objects.alias(
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pubdate_alias=F('pubdate'),
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).dates('pubdate_alias', 'month')
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self.assertCountEqual(qs, [
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datetime.date(1991, 10, 1),
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datetime.date(1995, 1, 1),
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datetime.date(2007, 12, 1),
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datetime.date(2008, 6, 1),
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])
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def test_datetimes_alias(self):
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qs = Store.objects.alias(
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original_opening_alias=F('original_opening'),
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).datetimes('original_opening_alias', 'year')
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self.assertCountEqual(qs, [
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datetime.datetime(1994, 1, 1),
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datetime.datetime(2001, 1, 1),
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])
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def test_aggregate_alias(self):
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msg = (
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"Cannot aggregate over the 'other_age' alias. Use annotate() to "
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"promote it."
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)
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with self.assertRaisesMessage(FieldError, msg):
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Author.objects.alias(
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other_age=F('age'),
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).aggregate(otherage_sum=Sum('other_age'))
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def test_defer_only_alias(self):
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qs = Book.objects.alias(rating_alias=F('rating') - 1)
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msg = "Book has no field named 'rating_alias'"
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for operation in ['defer', 'only']:
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with self.subTest(operation=operation):
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with self.assertRaisesMessage(FieldDoesNotExist, msg):
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getattr(qs, operation)('rating_alias').first()
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@skipUnlessDBFeature('can_distinct_on_fields')
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def test_distinct_on_alias(self):
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qs = Book.objects.alias(rating_alias=F('rating') - 1)
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msg = "Cannot resolve keyword 'rating_alias' into field."
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with self.assertRaisesMessage(FieldError, msg):
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qs.distinct('rating_alias').first()
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def test_values_alias(self):
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qs = Book.objects.alias(rating_alias=F('rating') - 1)
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msg = (
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"Cannot select the 'rating_alias' alias. Use annotate() to "
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"promote it."
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)
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for operation in ['values', 'values_list']:
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with self.subTest(operation=operation):
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with self.assertRaisesMessage(FieldError, msg):
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getattr(qs, operation)('rating_alias')
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@ -574,6 +574,7 @@ class ManagerTest(SimpleTestCase):
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'filter',
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'aggregate',
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'annotate',
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'alias',
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'complex_filter',
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'exclude',
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'in_bulk',
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@ -303,6 +303,7 @@ class QuerySetSetOperationTests(TestCase):
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combinators.append('intersection')
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for combinator in combinators:
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for operation in (
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'alias',
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'annotate',
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'defer',
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'delete',
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