Refs #30188 -- Avoided GROUP BY when aggregating over non-aggregates.
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@ -409,11 +409,11 @@ class Query(BaseExpression):
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if not self.annotation_select:
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return {}
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has_limit = self.low_mark != 0 or self.high_mark is not None
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has_existing_annotations = any(
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existing_annotations = [
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annotation for alias, annotation
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in self.annotations.items()
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if alias not in added_aggregate_names
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)
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]
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# Decide if we need to use a subquery.
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#
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# Existing annotations would cause incorrect results as get_aggregation()
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@ -425,13 +425,14 @@ class Query(BaseExpression):
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# those operations must be done in a subquery so that the query
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# aggregates on the limit and/or distinct results instead of applying
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# the distinct and limit after the aggregation.
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if (isinstance(self.group_by, tuple) or has_limit or has_existing_annotations or
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if (isinstance(self.group_by, tuple) or has_limit or existing_annotations or
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self.distinct or self.combinator):
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from django.db.models.sql.subqueries import AggregateQuery
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outer_query = AggregateQuery(self.model)
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inner_query = self.clone()
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inner_query.select_for_update = False
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inner_query.select_related = False
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inner_query.set_annotation_mask(self.annotation_select)
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if not has_limit and not self.distinct_fields:
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# Queries with distinct_fields need ordering and when a limit
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# is applied we must take the slice from the ordered query.
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@ -443,7 +444,11 @@ class Query(BaseExpression):
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# query is grouped by the main model's primary key. However,
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# clearing the select clause can alter results if distinct is
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# used.
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if inner_query.default_cols and has_existing_annotations:
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has_existing_aggregate_annotations = any(
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annotation for annotation in existing_annotations
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if getattr(annotation, 'contains_aggregate', True)
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)
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if inner_query.default_cols and has_existing_aggregate_annotations:
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inner_query.group_by = (self.model._meta.pk.get_col(inner_query.get_initial_alias()),)
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inner_query.default_cols = False
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@ -453,10 +458,12 @@ class Query(BaseExpression):
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# and move them to the outer AggregateQuery.
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col_cnt = 0
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for alias, expression in list(inner_query.annotation_select.items()):
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annotation_select_mask = inner_query.annotation_select_mask
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if expression.is_summary:
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expression, col_cnt = inner_query.rewrite_cols(expression, col_cnt)
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outer_query.annotations[alias] = expression.relabeled_clone(relabels)
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del inner_query.annotations[alias]
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annotation_select_mask.remove(alias)
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# Make sure the annotation_select wont use cached results.
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inner_query.set_annotation_mask(inner_query.annotation_select_mask)
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if inner_query.select == () and not inner_query.default_cols and not inner_query.annotation_select_mask:
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@ -551,7 +551,6 @@ class BasicExpressionsTests(TestCase):
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)
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self.assertEqual(qs.get().float, 1.2)
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@skipUnlessDBFeature('supports_subqueries_in_group_by')
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def test_aggregate_subquery_annotation(self):
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with self.assertNumQueries(1) as ctx:
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aggregate = Company.objects.annotate(
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@ -566,7 +565,11 @@ class BasicExpressionsTests(TestCase):
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self.assertEqual(aggregate, {'ceo_salary_gt_20': 1})
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# Aggregation over a subquery annotation doesn't annotate the subquery
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# twice in the inner query.
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self.assertLessEqual(ctx.captured_queries[0]['sql'].count('SELECT'), 4,)
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sql = ctx.captured_queries[0]['sql']
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self.assertLessEqual(sql.count('SELECT'), 3)
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# GROUP BY isn't required to aggregate over a query that doesn't
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# contain nested aggregates.
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self.assertNotIn('GROUP BY', sql)
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def test_explicit_output_field(self):
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class FuncA(Func):
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