`GeoQuerySet.distance` now allows calculations to/from non-point geodetic geometry fields as allowed on PostGIS 1.5.
git-svn-id: http://code.djangoproject.com/svn/django/trunk@12312 bcc190cf-cafb-0310-a4f2-bffc1f526a37
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@ -632,10 +632,11 @@ class GeoQuerySet(QuerySet):
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# field is geodetic). However, the PostGIS ST_distance_sphere/spheroid()
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# procedures may only do queries from point columns to point geometries
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# some error checking is required.
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if not isinstance(geo_field, PointField):
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raise ValueError('Spherical distance calculation only supported on PointFields.')
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if not str(Geometry(buffer(params[0].ewkb)).geom_type) == 'Point':
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raise ValueError('Spherical distance calculation only supported with Point Geometry parameters')
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if not backend.geography:
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if not isinstance(geo_field, PointField):
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raise ValueError('Spherical distance calculation only supported on PointFields.')
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if not str(Geometry(buffer(params[0].ewkb)).geom_type) == 'Point':
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raise ValueError('Spherical distance calculation only supported with Point Geometry parameters')
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# The `function` procedure argument needs to be set differently for
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# geodetic distance calculations.
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if spheroid:
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@ -148,13 +148,24 @@ class DistanceTest(unittest.TestCase):
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if oracle: tol = 2
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else: tol = 5
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# Now testing geodetic distance aggregation.
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hillsdale = AustraliaCity.objects.get(name='Hillsdale')
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if not oracle:
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# PostGIS is limited to disance queries only to/from point geometries,
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# ensuring a TypeError is raised if something else is put in.
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self.assertRaises(ValueError, AustraliaCity.objects.distance, 'LINESTRING(0 0, 1 1)')
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self.assertRaises(ValueError, AustraliaCity.objects.distance, LineString((0, 0), (1, 1)))
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# Testing geodetic distance calculation with a non-point geometry
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# (a LineString of Wollongong and Shellharbour coords).
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ls = LineString( ( (150.902, -34.4245), (150.87, -34.5789) ) )
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if oracle or connection.ops.geography:
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# Reference query:
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# SELECT ST_distance_sphere(point, ST_GeomFromText('LINESTRING(150.9020 -34.4245,150.8700 -34.5789)', 4326)) FROM distapp_australiacity ORDER BY name;
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distances = [1120954.92533513, 140575.720018241, 640396.662906304,
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60580.9693849269, 972807.955955075, 568451.8357838,
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40435.4335201384, 0, 68272.3896586844, 12375.0643697706, 0]
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qs = AustraliaCity.objects.distance(ls).order_by('name')
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for city, distance in zip(qs, distances):
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# Testing equivalence to within a meter.
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self.assertAlmostEqual(distance, city.distance.m, 0)
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else:
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# PostGIS 1.4 and below is limited to disance queries only
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# to/from point geometries, check for raising of ValueError.
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self.assertRaises(ValueError, AustraliaCity.objects.distance, ls)
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self.assertRaises(ValueError, AustraliaCity.objects.distance, ls.wkt)
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# Got the reference distances using the raw SQL statements:
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# SELECT ST_distance_spheroid(point, ST_GeomFromText('POINT(151.231341 -33.952685)', 4326), 'SPHEROID["WGS 84",6378137.0,298.257223563]') FROM distapp_australiacity WHERE (NOT (id = 11));
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@ -182,6 +193,7 @@ class DistanceTest(unittest.TestCase):
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1162619.7297006]
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# Testing with spheroid distances first.
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hillsdale = AustraliaCity.objects.get(name='Hillsdale')
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qs = AustraliaCity.objects.exclude(id=hillsdale.id).distance(hillsdale.point, spheroid=True)
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for i, c in enumerate(qs):
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self.assertAlmostEqual(spheroid_distances[i], c.distance.m, tol)
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@ -195,8 +207,9 @@ class DistanceTest(unittest.TestCase):
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def test03c_distance_method(self):
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"Testing the `distance` GeoQuerySet method used with `transform` on a geographic field."
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# Normally you can't compute distances from a geometry field
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# that is not a PointField (on PostGIS).
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self.assertRaises(ValueError, CensusZipcode.objects.distance, self.stx_pnt)
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# that is not a PointField (on PostGIS 1.4 and below).
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if not connection.ops.geography:
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self.assertRaises(ValueError, CensusZipcode.objects.distance, self.stx_pnt)
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# We'll be using a Polygon (created by buffering the centroid
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# of 77005 to 100m) -- which aren't allowed in geographic distance
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