def test_point_parse(self):
        """
        This test exercises the parsing logic our POINT WKT object
        @since 1.2
        @jira_ticket PYTHON-641
        @test_category dse geometric
        @expected_result We should be able to form POINT objects from properly formatted WKT strings
        """

        # Test basic point
        ps = "POINT (1.0 2.0)"
        po = Point.from_wkt(ps)
        self.assertEqual(po.x, 1.0)
        self.assertEqual(po.y, 2.0)

        # Test bad point strings
        bps = "POIN (1.0 2.0)"
        with self.assertRaises(ValueError):
            bpo = Point.from_wkt(bps)
        bps = "POINT (1.0 2.0 3.0 4.0 5.0"
        with self.assertRaises(ValueError):
            bpo = Point.from_wkt(bps)

        # Points get truncated automatically
        tps = "POINT (9.0 2.0 3.0 4.0 5.0)"
        tpo = Point.from_wkt(tps)
        self.assertEqual(tpo.x, 9.0)
        self.assertEqual(tpo.y, 2.0)

        # Test point with NAN
        ps = "POINT (NAN NAN)"
        po = Point.from_wkt(ps)
        self.assertTrue(math.isnan(po.x))
        self.assertTrue(math.isnan(po.y))
Exemplo n.º 2
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    def test_point_parse(self):
        """
        This test exercises the parsing logic our POINT WKT object
        @since 1.2
        @jira_ticket PYTHON-641
        @test_category dse geometric
        @expected_result We should be able to form POINT objects from properly formatted WKT strings
        """

        # Test basic point
        ps = "POINT (1.0 2.0)"
        po = Point.from_wkt(ps)
        self.assertEqual(po.x, 1.0)
        self.assertEqual(po.y, 2.0)

        # Test bad point strings
        bps = "POIN (1.0 2.0)"
        with self.assertRaises(ValueError):
            bpo = Point.from_wkt(bps)
        bps = "POINT (1.0 2.0 3.0 4.0 5.0"
        with self.assertRaises(ValueError):
            bpo = Point.from_wkt(bps)

        # Points get truncated automatically
        tps = "POINT (9.0 2.0 3.0 4.0 5.0)"
        tpo = Point.from_wkt(tps)
        self.assertEqual(tpo.x, 9.0)
        self.assertEqual(tpo.y, 2.0)

        # Test point with NAN
        ps = "POINT (NAN NAN)"
        po = Point.from_wkt(ps)
        self.assertTrue(math.isnan(po.x))
        self.assertTrue(math.isnan(po.y))
    def test_str_wkt(self):
        self.assertEqual(str(Point(1., 2.)), 'POINT (1.0 2.0)')
        self.assertEqual(str(Point()), "POINT (nan nan)")
        self.assertEqual(str(LineString(((1., 2.), (3., 4.), (5., 6.)))), 'LINESTRING (1.0 2.0, 3.0 4.0, 5.0 6.0)')
        self.assertEqual(str(_LinearRing(((1., 2.), (3., 4.), (5., 6.)))), 'LINEARRING (1.0 2.0, 3.0 4.0, 5.0 6.0)')
        self.assertEqual(str(Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                                     [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                                      [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])),
                         'POLYGON ((10.1 10.0, 110.0 10.0, 110.0 110.0, 10.0 110.0, 10.0 10.0), (20.0 20.0, 20.0 30.0, 30.0 30.0, 30.0 20.0, 20.0 20.0), (40.0 20.0, 40.0 30.0, 50.0 30.0, 50.0 20.0, 40.0 20.0))')

        class LinearRing(_LinearRing):
            pass
        for cls in (LineString, LinearRing, Polygon):
            self.assertEqual(str(cls()), cls.__name__.upper() + " EMPTY")
 def test_hash(self):
     for geo in (Point(1., 2.),
                 LineString(((1., 2.), (3., 4.), (5., 6.))),
                 _LinearRing(((1., 2.), (3., 4.), (5., 6.))),
                 Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                         [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                          [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])):
         self.assertEqual(len(set((geo, geo))), 1)
Exemplo n.º 5
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 def test_empty_wkb(self):
     for cls in (LineString, Polygon):
         class_name = cls.__name__
         cql_type = lookup_casstype(class_name + 'Type')
         self.assertEqual(
             str(cql_type.from_binary(cql_type.to_binary(cls(), 0), 0)),
             class_name.upper() + " EMPTY")
     self.assertEqual(
         str(PointType.from_binary(PointType.to_binary(Point(), 0), 0)),
         "POINT (nan nan)")
Exemplo n.º 6
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 def test_both_endian(self):
     self._verify_both_endian(PointType, "dd",
                              (WKBGeometryType.POINT, 1, 2), Point(1, 2))
     self._verify_both_endian(
         LineStringType, "Idddddd",
         (WKBGeometryType.LINESTRING, 3, 1, 2, 3, 4, 5, 6),
         LineString(((1, 2), (3, 4), (5, 6))))
     self._verify_both_endian(
         PolygonType, "IIdddddd",
         (WKBGeometryType.POLYGON, 1, 3, 1, 2, 3, 4, 5, 6),
         Polygon(((1, 2), (3, 4), (5, 6))))
    def test_eq(self):
        for geo in (Point(1., 2.),
                    LineString(((1., 2.), (3., 4.), (5., 6.))),
                    _LinearRing(((1., 2.), (3., 4.), (5., 6.))),
                    Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                            [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                             [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])):
            # same type
            self.assertEqual(geo, geo)

            # does not blow up on other types
            # specifically use assertFalse(eq) to make sure we're using the geo __eq__ operator
            self.assertFalse(geo == object())
class BasicGeometricPointTypeTest(AbstractGeometricTypeTest,
                                  BasicGeometricUnitTestCase):
    """
    Runs all the geometric tests against PointType
    """
    cql_type_name = "'{0}'".format(PointType.typename)
    original_value = Point(.5, .13)

    @unittest.skip("Empty String")
    def test_insert_empty_with_string(self):
        pass

    @unittest.skip("Empty String")
    def test_insert_empty_with_object(self):
        pass
Exemplo n.º 9
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 def objectify(cls, v, _):
     return Point.from_wkt(v)
Exemplo n.º 10
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# A map of common types and their corresponding groovy declaration for use in schema creation and insertion
MAX_LONG = 9223372036854775807
MIN_LONG = -9223372036854775808
ZERO_LONG = 0

if sys.version_info < (3, 0):
    MAX_LONG = long(MAX_LONG)
    MIN_LONG = long(MIN_LONG)
    ZERO_LONG = long(ZERO_LONG)

deserializers = GraphSON1TypeDeserializer()._deserializers

TYPE_MAP = {
    "point1":
    ["Point()",
     Point(.5, .13), GraphSON1TypeDeserializer.deserialize_point],
    "point2":
    ["Point()",
     Point(-5, .0), GraphSON1TypeDeserializer.deserialize_point],
    "linestring1": [
        "Linestring()",
        LineString(((1.0, 2.0), (3.0, 4.0), (-89.0, 90.0))),
        GraphSON1TypeDeserializer.deserialize_linestring
    ],
    "polygon1": [
        "Polygon()",
        Polygon([(10.0, 10.0), (80.0, 10.0), (80., 88.0), (10., 89.0),
                 (10., 10.0)], [[(20., 20.0), (20., 30.0), (30., 30.0),
                                 (30., 20.0), (20., 20.0)],
                                [(40., 20.0), (40., 30.0), (50., 30.0),
                                 (50., 20.0), (40., 20.0)]]),
Exemplo n.º 11
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MAKE_STRICT = "schema.config().option('graph.schema_mode').set('production')"
MAKE_NON_STRICT = "schema.config().option('graph.schema_mode').set('development')"
ALLOW_SCANS = "schema.config().option('graph.allow_scan').set('true')"

# A map of common types and their corresponding groovy declaration for use in schema creation and insertion
MAX_LONG = 9223372036854775807
MIN_LONG = -9223372036854775808
ZERO_LONG = 0

if sys.version_info < (3, 0):
    MAX_LONG = long(MAX_LONG)
    MIN_LONG = long(MIN_LONG)
    ZERO_LONG = long(ZERO_LONG)

TYPE_MAP = {
    "point1": ["Point()", Point(.5, .13)],
    "point2": ["Point()", Point(-5, .0)],
    "linestring1":
    ["Linestring()",
     LineString(((1.0, 2.0), (3.0, 4.0), (-89.0, 90.0)))],
    "polygon1": [
        "Polygon()",
        Polygon([(10.0, 10.0), (80.0, 10.0), (80., 88.0), (10., 89.0),
                 (10., 10.0)], [[(20., 20.0), (20., 30.0), (30., 30.0),
                                 (30., 20.0), (20., 20.0)],
                                [(40., 20.0), (40., 30.0), (50., 30.0),
                                 (50., 20.0), (40., 20.0)]])
    ],
    "smallint1": ["Smallint()", 1],
    "varint1": ["Varint()", 2147483647],
    "bigint1": ["Bigint()", MAX_LONG],
class GeoTypes(unittest.TestCase):

    samples = (Point(1, 2), LineString(((1, 2), (3, 4), (5, 6))), Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)], [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)], [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]]))

    def test_marshal_platform(self):
        for proto_ver in protocol_versions:
            for geo in self.samples:
                cql_type = lookup_casstype(geo.__class__.__name__ + 'Type')
                self.assertEqual(cql_type.from_binary(cql_type.to_binary(geo, proto_ver), proto_ver), geo)

    def _verify_both_endian(self, typ, body_fmt, params, expected):
        for proto_ver in protocol_versions:
            self.assertEqual(typ.from_binary(struct.pack(">BI" + body_fmt, wkb_be, *params), proto_ver), expected)
            self.assertEqual(typ.from_binary(struct.pack("<BI" + body_fmt, wkb_le, *params), proto_ver), expected)

    def test_both_endian(self):
        self._verify_both_endian(PointType, "dd", (WKBGeometryType.POINT, 1, 2), Point(1, 2))
        self._verify_both_endian(LineStringType, "Idddddd", (WKBGeometryType.LINESTRING, 3, 1, 2, 3, 4, 5, 6), LineString(((1, 2), (3, 4), (5, 6))))
        self._verify_both_endian(PolygonType, "IIdddddd", (WKBGeometryType.POLYGON, 1, 3, 1, 2, 3, 4, 5, 6), Polygon(((1, 2), (3, 4), (5, 6))))

    def test_empty_wkb(self):
        for cls in (LineString, Polygon):
            class_name = cls.__name__
            cql_type = lookup_casstype(class_name + 'Type')
            self.assertEqual(str(cql_type.from_binary(cql_type.to_binary(cls(), 0), 0)), class_name.upper() + " EMPTY")
        self.assertEqual(str(PointType.from_binary(PointType.to_binary(Point(), 0), 0)), "POINT (nan nan)")

    def test_str_wkt(self):
        self.assertEqual(str(Point(1., 2.)), 'POINT (1.0 2.0)')
        self.assertEqual(str(Point()), "POINT (nan nan)")
        self.assertEqual(str(LineString(((1., 2.), (3., 4.), (5., 6.)))), 'LINESTRING (1.0 2.0, 3.0 4.0, 5.0 6.0)')
        self.assertEqual(str(_LinearRing(((1., 2.), (3., 4.), (5., 6.)))), 'LINEARRING (1.0 2.0, 3.0 4.0, 5.0 6.0)')
        self.assertEqual(str(Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                                     [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                                      [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])),
                         'POLYGON ((10.1 10.0, 110.0 10.0, 110.0 110.0, 10.0 110.0, 10.0 10.0), (20.0 20.0, 20.0 30.0, 30.0 30.0, 30.0 20.0, 20.0 20.0), (40.0 20.0, 40.0 30.0, 50.0 30.0, 50.0 20.0, 40.0 20.0))')

        class LinearRing(_LinearRing):
            pass
        for cls in (LineString, LinearRing, Polygon):
            self.assertEqual(str(cls()), cls.__name__.upper() + " EMPTY")

    def test_repr(self):
        for geo in (Point(1., 2.),
                    LineString(((1., 2.), (3., 4.), (5., 6.))),
                    _LinearRing(((1., 2.), (3., 4.), (5., 6.))),
                    Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                            [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                             [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])):
            self.assertEqual(eval(repr(geo)), geo)

    def test_hash(self):
        for geo in (Point(1., 2.),
                    LineString(((1., 2.), (3., 4.), (5., 6.))),
                    _LinearRing(((1., 2.), (3., 4.), (5., 6.))),
                    Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                            [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                             [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])):
            self.assertEqual(len(set((geo, geo))), 1)

    def test_eq(self):
        for geo in (Point(1., 2.),
                    LineString(((1., 2.), (3., 4.), (5., 6.))),
                    _LinearRing(((1., 2.), (3., 4.), (5., 6.))),
                    Polygon([(10.1, 10.0), (110.0, 10.0), (110., 110.0), (10., 110.0), (10., 10.0)],
                            [[(20., 20.0), (20., 30.0), (30., 30.0), (30., 20.0), (20., 20.0)],
                             [(40., 20.0), (40., 30.0), (50., 30.0), (50., 20.0), (40., 20.0)]])):
            # same type
            self.assertEqual(geo, geo)

            # does not blow up on other types
            # specifically use assertFalse(eq) to make sure we're using the geo __eq__ operator
            self.assertFalse(geo == object())
Exemplo n.º 13
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 def deserialize(byts, protocol_version):
     is_little_endian = bool(_ord(byts[0]))
     point = point_le if is_little_endian else point_be
     return Point(*point.unpack_from(byts,
                                     5))  # ofs = endian byte + int type
Exemplo n.º 14
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def _convert_point(val):
    coords = _get_coords(val, 'Point')
    _validate_point(coords, val)
    point = Point(*coords)
    return point
Exemplo n.º 15
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 def deserialize(cls, value):
     return Point.from_wkt(value)