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import pytest |
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from pybind11_tests import ConstructorStats |
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np = pytest.importorskip("numpy") |
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m = pytest.importorskip("pybind11_tests.eigen_matrix") |
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ref = np.array( |
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[ |
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[0.0, 3, 0, 0, 0, 11], |
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[22, 0, 0, 0, 17, 11], |
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[7, 5, 0, 1, 0, 11], |
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[0, 0, 0, 0, 0, 11], |
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[0, 0, 14, 0, 8, 11], |
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] |
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) |
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def assert_equal_ref(mat): |
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np.testing.assert_array_equal(mat, ref) |
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def assert_sparse_equal_ref(sparse_mat): |
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assert_equal_ref(sparse_mat.toarray()) |
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def test_fixed(): |
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assert_equal_ref(m.fixed_c()) |
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assert_equal_ref(m.fixed_r()) |
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assert_equal_ref(m.fixed_copy_r(m.fixed_r())) |
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assert_equal_ref(m.fixed_copy_c(m.fixed_c())) |
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assert_equal_ref(m.fixed_copy_r(m.fixed_c())) |
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assert_equal_ref(m.fixed_copy_c(m.fixed_r())) |
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def test_dense(): |
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assert_equal_ref(m.dense_r()) |
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assert_equal_ref(m.dense_c()) |
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assert_equal_ref(m.dense_copy_r(m.dense_r())) |
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assert_equal_ref(m.dense_copy_c(m.dense_c())) |
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assert_equal_ref(m.dense_copy_r(m.dense_c())) |
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assert_equal_ref(m.dense_copy_c(m.dense_r())) |
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def test_partially_fixed(): |
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ref2 = np.array([[0.0, 1, 2, 3], [4, 5, 6, 7], [8, 9, 10, 11], [12, 13, 14, 15]]) |
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np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2), ref2) |
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np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2), ref2) |
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np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2[:, 1]), ref2[:, [1]]) |
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np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2[0, :]), ref2[[0], :]) |
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np.testing.assert_array_equal( |
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m.partial_copy_four_rm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)] |
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) |
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np.testing.assert_array_equal( |
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m.partial_copy_four_rm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :] |
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) |
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np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2), ref2) |
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np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2), ref2) |
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np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2[:, 1]), ref2[:, [1]]) |
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np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2[0, :]), ref2[[0], :]) |
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np.testing.assert_array_equal( |
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m.partial_copy_four_cm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)] |
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) |
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np.testing.assert_array_equal( |
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m.partial_copy_four_cm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :] |
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) |
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functions = [ |
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m.partial_copy_four_rm_r, |
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m.partial_copy_four_rm_c, |
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m.partial_copy_four_cm_r, |
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m.partial_copy_four_cm_c, |
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] |
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matrix_with_wrong_shape = [[1, 2], [3, 4]] |
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for f in functions: |
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with pytest.raises(TypeError) as excinfo: |
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f(matrix_with_wrong_shape) |
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assert "incompatible function arguments" in str(excinfo.value) |
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def test_mutator_descriptors(): |
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zr = np.arange(30, dtype="float32").reshape(5, 6) |
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zc = zr.reshape(6, 5).transpose() |
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m.fixed_mutator_r(zr) |
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m.fixed_mutator_c(zc) |
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m.fixed_mutator_a(zr) |
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m.fixed_mutator_a(zc) |
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with pytest.raises(TypeError) as excinfo: |
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m.fixed_mutator_r(zc) |
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assert ( |
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"(arg0: numpy.ndarray[numpy.float32[5, 6]," |
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" flags.writeable, flags.c_contiguous]) -> None" in str(excinfo.value) |
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) |
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with pytest.raises(TypeError) as excinfo: |
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m.fixed_mutator_c(zr) |
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assert ( |
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"(arg0: numpy.ndarray[numpy.float32[5, 6]," |
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" flags.writeable, flags.f_contiguous]) -> None" in str(excinfo.value) |
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) |
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with pytest.raises(TypeError) as excinfo: |
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m.fixed_mutator_a(np.array([[1, 2], [3, 4]], dtype="float32")) |
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assert "(arg0: numpy.ndarray[numpy.float32[5, 6], flags.writeable]) -> None" in str( |
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excinfo.value |
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) |
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zr.flags.writeable = False |
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with pytest.raises(TypeError): |
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m.fixed_mutator_r(zr) |
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with pytest.raises(TypeError): |
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m.fixed_mutator_a(zr) |
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def test_cpp_casting(): |
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assert m.cpp_copy(m.fixed_r()) == 22.0 |
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assert m.cpp_copy(m.fixed_c()) == 22.0 |
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z = np.array([[5.0, 6], [7, 8]]) |
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assert m.cpp_copy(z) == 7.0 |
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assert m.cpp_copy(m.get_cm_ref()) == 21.0 |
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assert m.cpp_copy(m.get_rm_ref()) == 21.0 |
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assert m.cpp_ref_c(m.get_cm_ref()) == 21.0 |
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assert m.cpp_ref_r(m.get_rm_ref()) == 21.0 |
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with pytest.raises(RuntimeError) as excinfo: |
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m.cpp_ref_any(m.fixed_c()) |
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assert "Unable to cast Python instance" in str(excinfo.value) |
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with pytest.raises(RuntimeError) as excinfo: |
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m.cpp_ref_any(m.fixed_r()) |
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assert "Unable to cast Python instance" in str(excinfo.value) |
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assert m.cpp_ref_any(m.ReturnTester.create()) == 1.0 |
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assert m.cpp_ref_any(m.get_cm_ref()) == 21.0 |
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assert m.cpp_ref_any(m.get_cm_ref()) == 21.0 |
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def test_pass_readonly_array(): |
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z = np.full((5, 6), 42.0) |
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z.flags.writeable = False |
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np.testing.assert_array_equal(z, m.fixed_copy_r(z)) |
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np.testing.assert_array_equal(m.fixed_r_const(), m.fixed_r()) |
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assert not m.fixed_r_const().flags.writeable |
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np.testing.assert_array_equal(m.fixed_copy_r(m.fixed_r_const()), m.fixed_r_const()) |
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def test_nonunit_stride_from_python(): |
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counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3)) |
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second_row = counting_mat[1, :] |
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second_col = counting_mat[:, 1] |
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np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col) |
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np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col) |
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np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col) |
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counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3)) |
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slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]] |
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for ref_mat in slices: |
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np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat) |
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np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat) |
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m.double_threer(second_row) |
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m.double_threec(second_col) |
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np.testing.assert_array_equal(counting_mat, [[0.0, 2, 2], [6, 16, 10], [6, 14, 8]]) |
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def test_negative_stride_from_python(msg): |
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"""Eigen doesn't support (as of yet) negative strides. When a function takes an Eigen matrix by |
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copy or const reference, we can pass a numpy array that has negative strides. Otherwise, an |
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exception will be thrown as Eigen will not be able to map the numpy array.""" |
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counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3)) |
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counting_mat = counting_mat[::-1, ::-1] |
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second_row = counting_mat[1, :] |
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second_col = counting_mat[:, 1] |
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np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row) |
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np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col) |
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np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col) |
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np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col) |
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counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3)) |
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counting_3d = counting_3d[::-1, ::-1, ::-1] |
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slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]] |
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for ref_mat in slices: |
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np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat) |
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np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat) |
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with pytest.raises(TypeError) as excinfo: |
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m.double_threer(second_row) |
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assert ( |
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msg(excinfo.value) |
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== """ |
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double_threer(): incompatible function arguments. The following argument types are supported: |
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1. (arg0: numpy.ndarray[numpy.float32[1, 3], flags.writeable]) -> None |
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Invoked with: """ |
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+ repr(np.array([5.0, 4.0, 3.0], dtype="float32")) |
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) |
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with pytest.raises(TypeError) as excinfo: |
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m.double_threec(second_col) |
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assert ( |
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msg(excinfo.value) |
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== """ |
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double_threec(): incompatible function arguments. The following argument types are supported: |
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1. (arg0: numpy.ndarray[numpy.float32[3, 1], flags.writeable]) -> None |
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Invoked with: """ |
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+ repr(np.array([7.0, 4.0, 1.0], dtype="float32")) |
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) |
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def test_block_runtime_error_type_caster_eigen_ref_made_a_copy(): |
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with pytest.raises(RuntimeError) as excinfo: |
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m.block(ref, 0, 0, 0, 0) |
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assert str(excinfo.value) == "type_caster for Eigen::Ref made a copy." |
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def test_nonunit_stride_to_python(): |
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assert np.all(m.diagonal(ref) == ref.diagonal()) |
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assert np.all(m.diagonal_1(ref) == ref.diagonal(1)) |
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for i in range(-5, 7): |
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assert np.all(m.diagonal_n(ref, i) == ref.diagonal(i)), f"m.diagonal_n({i})" |
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rof = np.asarray(ref, order="F") |
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assert np.all(m.block(rof, 2, 1, 3, 3) == rof[2:5, 1:4]) |
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assert np.all(m.block(rof, 1, 4, 4, 2) == rof[1:, 4:]) |
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assert np.all(m.block(rof, 1, 4, 3, 2) == rof[1:4, 4:]) |
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def test_eigen_ref_to_python(): |
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chols = [m.cholesky1, m.cholesky2, m.cholesky3, m.cholesky4] |
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for i, chol in enumerate(chols, start=1): |
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mymat = chol(np.array([[1.0, 2, 4], [2, 13, 23], [4, 23, 77]])) |
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assert np.all( |
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mymat == np.array([[1, 0, 0], [2, 3, 0], [4, 5, 6]]) |
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), f"cholesky{i}" |
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def assign_both(a1, a2, r, c, v): |
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a1[r, c] = v |
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a2[r, c] = v |
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def array_copy_but_one(a, r, c, v): |
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z = np.array(a, copy=True) |
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z[r, c] = v |
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return z |
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def test_eigen_return_references(): |
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"""Tests various ways of returning references and non-referencing copies""" |
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primary = np.ones((10, 10)) |
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a = m.ReturnTester() |
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a_get1 = a.get() |
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assert not a_get1.flags.owndata |
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assert a_get1.flags.writeable |
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assign_both(a_get1, primary, 3, 3, 5) |
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a_get2 = a.get_ptr() |
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assert not a_get2.flags.owndata |
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assert a_get2.flags.writeable |
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assign_both(a_get1, primary, 2, 3, 6) |
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a_view1 = a.view() |
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assert not a_view1.flags.owndata |
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assert not a_view1.flags.writeable |
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with pytest.raises(ValueError): |
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a_view1[2, 3] = 4 |
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a_view2 = a.view_ptr() |
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assert not a_view2.flags.owndata |
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assert not a_view2.flags.writeable |
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with pytest.raises(ValueError): |
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a_view2[2, 3] = 4 |
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a_copy1 = a.copy_get() |
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assert a_copy1.flags.owndata |
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assert a_copy1.flags.writeable |
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np.testing.assert_array_equal(a_copy1, primary) |
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a_copy1[7, 7] = -44 |
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c1want = array_copy_but_one(primary, 7, 7, -44) |
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a_copy2 = a.copy_view() |
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assert a_copy2.flags.owndata |
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assert a_copy2.flags.writeable |
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np.testing.assert_array_equal(a_copy2, primary) |
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a_copy2[4, 4] = -22 |
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c2want = array_copy_but_one(primary, 4, 4, -22) |
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a_ref1 = a.ref() |
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assert not a_ref1.flags.owndata |
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assert a_ref1.flags.writeable |
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assign_both(a_ref1, primary, 1, 1, 15) |
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a_ref2 = a.ref_const() |
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assert not a_ref2.flags.owndata |
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assert not a_ref2.flags.writeable |
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with pytest.raises(ValueError): |
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a_ref2[5, 5] = 33 |
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a_ref3 = a.ref_safe() |
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assert not a_ref3.flags.owndata |
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assert a_ref3.flags.writeable |
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assign_both(a_ref3, primary, 0, 7, 99) |
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a_ref4 = a.ref_const_safe() |
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assert not a_ref4.flags.owndata |
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assert not a_ref4.flags.writeable |
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with pytest.raises(ValueError): |
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a_ref4[7, 0] = 987654321 |
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a_copy3 = a.copy_ref() |
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assert a_copy3.flags.owndata |
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assert a_copy3.flags.writeable |
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np.testing.assert_array_equal(a_copy3, primary) |
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a_copy3[8, 1] = 11 |
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c3want = array_copy_but_one(primary, 8, 1, 11) |
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a_copy4 = a.copy_ref_const() |
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assert a_copy4.flags.owndata |
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assert a_copy4.flags.writeable |
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np.testing.assert_array_equal(a_copy4, primary) |
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a_copy4[8, 4] = 88 |
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c4want = array_copy_but_one(primary, 8, 4, 88) |
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a_block1 = a.block(3, 3, 2, 2) |
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assert not a_block1.flags.owndata |
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assert a_block1.flags.writeable |
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a_block1[0, 0] = 55 |
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primary[3, 3] = 55 |
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a_block2 = a.block_safe(2, 2, 3, 2) |
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assert not a_block2.flags.owndata |
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assert a_block2.flags.writeable |
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a_block2[2, 1] = -123 |
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primary[4, 3] = -123 |
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a_block3 = a.block_const(6, 7, 4, 3) |
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assert not a_block3.flags.owndata |
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assert not a_block3.flags.writeable |
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with pytest.raises(ValueError): |
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a_block3[2, 2] = -44444 |
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a_copy5 = a.copy_block(2, 2, 2, 3) |
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assert a_copy5.flags.owndata |
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assert a_copy5.flags.writeable |
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np.testing.assert_array_equal(a_copy5, primary[2:4, 2:5]) |
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a_copy5[1, 1] = 777 |
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c5want = array_copy_but_one(primary[2:4, 2:5], 1, 1, 777) |
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a_corn1 = a.corners() |
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assert not a_corn1.flags.owndata |
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assert a_corn1.flags.writeable |
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a_corn1 *= 50 |
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a_corn1[1, 1] = 999 |
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primary[0, 0] = 50 |
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primary[0, 9] = 50 |
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primary[9, 0] = 50 |
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primary[9, 9] = 999 |
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a_corn2 = a.corners_const() |
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assert not a_corn2.flags.owndata |
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assert not a_corn2.flags.writeable |
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with pytest.raises(ValueError): |
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a_corn2[1, 0] = 51 |
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np.testing.assert_array_equal(a_get1, primary) |
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np.testing.assert_array_equal(a_get2, primary) |
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np.testing.assert_array_equal(a_view1, primary) |
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np.testing.assert_array_equal(a_view2, primary) |
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np.testing.assert_array_equal(a_ref1, primary) |
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np.testing.assert_array_equal(a_ref2, primary) |
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np.testing.assert_array_equal(a_ref3, primary) |
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np.testing.assert_array_equal(a_ref4, primary) |
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np.testing.assert_array_equal(a_block1, primary[3:5, 3:5]) |
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np.testing.assert_array_equal(a_block2, primary[2:5, 2:4]) |
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np.testing.assert_array_equal(a_block3, primary[6:10, 7:10]) |
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np.testing.assert_array_equal( |
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a_corn1, primary[0 :: primary.shape[0] - 1, 0 :: primary.shape[1] - 1] |
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) |
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np.testing.assert_array_equal( |
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a_corn2, primary[0 :: primary.shape[0] - 1, 0 :: primary.shape[1] - 1] |
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) |
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np.testing.assert_array_equal(a_copy1, c1want) |
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np.testing.assert_array_equal(a_copy2, c2want) |
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np.testing.assert_array_equal(a_copy3, c3want) |
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np.testing.assert_array_equal(a_copy4, c4want) |
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np.testing.assert_array_equal(a_copy5, c5want) |
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def assert_keeps_alive(cl, method, *args): |
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cstats = ConstructorStats.get(cl) |
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start_with = cstats.alive() |
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a = cl() |
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assert cstats.alive() == start_with + 1 |
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z = method(a, *args) |
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assert cstats.alive() == start_with + 1 |
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del a |
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assert cstats.alive() == start_with + 1 |
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del z |
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assert cstats.alive() == start_with |
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|
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def test_eigen_keepalive(): |
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a = m.ReturnTester() |
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cstats = ConstructorStats.get(m.ReturnTester) |
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assert cstats.alive() == 1 |
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unsafe = [a.ref(), a.ref_const(), a.block(1, 2, 3, 4)] |
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copies = [ |
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a.copy_get(), |
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a.copy_view(), |
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a.copy_ref(), |
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a.copy_ref_const(), |
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a.copy_block(4, 3, 2, 1), |
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] |
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del a |
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assert cstats.alive() == 0 |
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del unsafe |
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del copies |
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for meth in [ |
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m.ReturnTester.get, |
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m.ReturnTester.get_ptr, |
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m.ReturnTester.view, |
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m.ReturnTester.view_ptr, |
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m.ReturnTester.ref_safe, |
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m.ReturnTester.ref_const_safe, |
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m.ReturnTester.corners, |
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m.ReturnTester.corners_const, |
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]: |
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assert_keeps_alive(m.ReturnTester, meth) |
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for meth in [m.ReturnTester.block_safe, m.ReturnTester.block_const]: |
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assert_keeps_alive(m.ReturnTester, meth, 4, 3, 2, 1) |
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|
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def test_eigen_ref_mutators(): |
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"""Tests Eigen's ability to mutate numpy values""" |
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|
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orig = np.array([[1.0, 2, 3], [4, 5, 6], [7, 8, 9]]) |
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zr = np.array(orig) |
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zc = np.array(orig, order="F") |
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m.add_rm(zr, 1, 0, 100) |
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assert np.all(zr == np.array([[1.0, 2, 3], [104, 5, 6], [7, 8, 9]])) |
|
m.add_cm(zc, 1, 0, 200) |
|
assert np.all(zc == np.array([[1.0, 2, 3], [204, 5, 6], [7, 8, 9]])) |
|
|
|
m.add_any(zr, 1, 0, 20) |
|
assert np.all(zr == np.array([[1.0, 2, 3], [124, 5, 6], [7, 8, 9]])) |
|
m.add_any(zc, 1, 0, 10) |
|
assert np.all(zc == np.array([[1.0, 2, 3], [214, 5, 6], [7, 8, 9]])) |
|
|
|
|
|
with pytest.raises(TypeError): |
|
m.add_rm(zc, 1, 0, 1) |
|
with pytest.raises(TypeError): |
|
m.add_cm(zr, 1, 0, 1) |
|
|
|
|
|
m.add1(zr, 1, 0, -100) |
|
m.add2(zr, 1, 0, -20) |
|
assert np.all(zr == orig) |
|
m.add1(zc, 1, 0, -200) |
|
m.add2(zc, 1, 0, -10) |
|
assert np.all(zc == orig) |
|
|
|
|
|
|
|
cornersr = zr[0::2, 0::2] |
|
cornersc = zc[0::2, 0::2] |
|
|
|
assert np.all(cornersr == np.array([[1.0, 3], [7, 9]])) |
|
assert np.all(cornersc == np.array([[1.0, 3], [7, 9]])) |
|
|
|
with pytest.raises(TypeError): |
|
m.add_rm(cornersr, 0, 1, 25) |
|
with pytest.raises(TypeError): |
|
m.add_cm(cornersr, 0, 1, 25) |
|
with pytest.raises(TypeError): |
|
m.add_rm(cornersc, 0, 1, 25) |
|
with pytest.raises(TypeError): |
|
m.add_cm(cornersc, 0, 1, 25) |
|
m.add_any(cornersr, 0, 1, 25) |
|
m.add_any(cornersc, 0, 1, 44) |
|
assert np.all(zr == np.array([[1.0, 2, 28], [4, 5, 6], [7, 8, 9]])) |
|
assert np.all(zc == np.array([[1.0, 2, 47], [4, 5, 6], [7, 8, 9]])) |
|
|
|
|
|
zro = zr[0:4, 0:4] |
|
zro.flags.writeable = False |
|
with pytest.raises(TypeError): |
|
m.add_rm(zro, 0, 0, 0) |
|
with pytest.raises(TypeError): |
|
m.add_any(zro, 0, 0, 0) |
|
with pytest.raises(TypeError): |
|
m.add1(zro, 0, 0, 0) |
|
with pytest.raises(TypeError): |
|
m.add2(zro, 0, 0, 0) |
|
|
|
|
|
zi = np.array([[1, 2], [3, 4]]) |
|
with pytest.raises(TypeError): |
|
m.add_rm(zi) |
|
|
|
|
|
def test_numpy_ref_mutators(): |
|
"""Tests numpy mutating Eigen matrices (for returned Eigen::Ref<...>s)""" |
|
|
|
m.reset_refs() |
|
|
|
zc = m.get_cm_ref() |
|
zcro = m.get_cm_const_ref() |
|
zr = m.get_rm_ref() |
|
zrro = m.get_rm_const_ref() |
|
|
|
assert [zc[1, 2], zcro[1, 2], zr[1, 2], zrro[1, 2]] == [23] * 4 |
|
|
|
assert not zc.flags.owndata |
|
assert zc.flags.writeable |
|
assert not zr.flags.owndata |
|
assert zr.flags.writeable |
|
assert not zcro.flags.owndata |
|
assert not zcro.flags.writeable |
|
assert not zrro.flags.owndata |
|
assert not zrro.flags.writeable |
|
|
|
zc[1, 2] = 99 |
|
expect = np.array([[11.0, 12, 13], [21, 22, 99], [31, 32, 33]]) |
|
|
|
assert np.all(zc == expect) |
|
assert np.all(zcro == expect) |
|
assert np.all(m.get_cm_ref() == expect) |
|
|
|
zr[1, 2] = 99 |
|
assert np.all(zr == expect) |
|
assert np.all(zrro == expect) |
|
assert np.all(m.get_rm_ref() == expect) |
|
|
|
|
|
with pytest.raises(ValueError): |
|
zcro[1, 2] = 6 |
|
with pytest.raises(ValueError): |
|
zrro[1, 2] = 6 |
|
|
|
|
|
|
|
y1 = np.array(m.get_cm_const_ref()) |
|
|
|
assert y1.flags.owndata |
|
assert y1.flags.writeable |
|
|
|
assert y1[1, 2] == 99 |
|
y1[1, 2] += 12 |
|
assert y1[1, 2] == 111 |
|
assert zc[1, 2] == 99 |
|
|
|
|
|
def test_both_ref_mutators(): |
|
"""Tests a complex chain of nested eigen/numpy references""" |
|
|
|
m.reset_refs() |
|
|
|
z = m.get_cm_ref() |
|
z[0, 2] -= 3 |
|
z2 = m.incr_matrix(z, 1) |
|
z2[1, 1] += 6 |
|
z3 = m.incr_matrix(z, 2) |
|
z3[2, 2] += -5 |
|
z4 = m.incr_matrix(z, 3) |
|
z4[1, 1] -= 1 |
|
z5 = m.incr_matrix(z, 4) |
|
z5[0, 0] = 0 |
|
assert np.all(z == z2) |
|
assert np.all(z == z3) |
|
assert np.all(z == z4) |
|
assert np.all(z == z5) |
|
expect = np.array([[0.0, 22, 20], [31, 37, 33], [41, 42, 38]]) |
|
assert np.all(z == expect) |
|
|
|
y = np.array(range(100), dtype="float64").reshape(10, 10) |
|
y2 = m.incr_matrix_any(y, 10) |
|
y3 = m.incr_matrix_any( |
|
y2[0::2, 0::2], -33 |
|
) |
|
y4 = m.even_rows(y3) |
|
y5 = m.even_cols(y4) |
|
y6 = m.incr_matrix_any(y5, 1000) |
|
|
|
|
|
yexpect = np.array(range(100), dtype="float64").reshape(10, 10) |
|
yexpect += 10 |
|
yexpect[0::2, 0::2] -= 33 |
|
yexpect[0::4, 0::4] += 1000 |
|
assert np.all(y6 == yexpect[0::4, 0::4]) |
|
assert np.all(y5 == yexpect[0::4, 0::4]) |
|
assert np.all(y4 == yexpect[0::4, 0::2]) |
|
assert np.all(y3 == yexpect[0::2, 0::2]) |
|
assert np.all(y2 == yexpect) |
|
assert np.all(y == yexpect) |
|
|
|
|
|
def test_nocopy_wrapper(): |
|
|
|
|
|
int_matrix_colmajor = np.array([[1, 2, 3], [4, 5, 6], [7, 8, 9]], order="F") |
|
dbl_matrix_colmajor = np.array( |
|
int_matrix_colmajor, dtype="double", order="F", copy=True |
|
) |
|
int_matrix_rowmajor = np.array(int_matrix_colmajor, order="C", copy=True) |
|
dbl_matrix_rowmajor = np.array( |
|
int_matrix_rowmajor, dtype="double", order="C", copy=True |
|
) |
|
|
|
|
|
assert m.get_elem(int_matrix_colmajor) == 8 |
|
assert m.get_elem(dbl_matrix_colmajor) == 8 |
|
assert m.get_elem(int_matrix_rowmajor) == 8 |
|
assert m.get_elem(dbl_matrix_rowmajor) == 8 |
|
|
|
|
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_nocopy(int_matrix_colmajor) |
|
assert "get_elem_nocopy(): incompatible function arguments." in str(excinfo.value) |
|
assert ", flags.f_contiguous" in str(excinfo.value) |
|
assert m.get_elem_nocopy(dbl_matrix_colmajor) == 8 |
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_nocopy(int_matrix_rowmajor) |
|
assert "get_elem_nocopy(): incompatible function arguments." in str(excinfo.value) |
|
assert ", flags.f_contiguous" in str(excinfo.value) |
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_nocopy(dbl_matrix_rowmajor) |
|
assert "get_elem_nocopy(): incompatible function arguments." in str(excinfo.value) |
|
assert ", flags.f_contiguous" in str(excinfo.value) |
|
|
|
|
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_rm_nocopy(int_matrix_colmajor) |
|
assert "get_elem_rm_nocopy(): incompatible function arguments." in str( |
|
excinfo.value |
|
) |
|
assert ", flags.c_contiguous" in str(excinfo.value) |
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_rm_nocopy(dbl_matrix_colmajor) |
|
assert "get_elem_rm_nocopy(): incompatible function arguments." in str( |
|
excinfo.value |
|
) |
|
assert ", flags.c_contiguous" in str(excinfo.value) |
|
assert m.get_elem_rm_nocopy(int_matrix_rowmajor) == 8 |
|
with pytest.raises(TypeError) as excinfo: |
|
m.get_elem_rm_nocopy(dbl_matrix_rowmajor) |
|
assert "get_elem_rm_nocopy(): incompatible function arguments." in str( |
|
excinfo.value |
|
) |
|
assert ", flags.c_contiguous" in str(excinfo.value) |
|
|
|
|
|
def test_eigen_ref_life_support(): |
|
"""Ensure the lifetime of temporary arrays created by the `Ref` caster |
|
|
|
The `Ref` caster sometimes creates a copy which needs to stay alive. This needs to |
|
happen both for directs casts (just the array) or indirectly (e.g. list of arrays). |
|
""" |
|
|
|
a = np.full(shape=10, fill_value=8, dtype=np.int8) |
|
assert m.get_elem_direct(a) == 8 |
|
|
|
list_of_a = [a] |
|
assert m.get_elem_indirect(list_of_a) == 8 |
|
|
|
|
|
def test_special_matrix_objects(): |
|
assert np.all(m.incr_diag(7) == np.diag([1.0, 2, 3, 4, 5, 6, 7])) |
|
|
|
asymm = np.array([[1.0, 2, 3, 4], [5, 6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16]]) |
|
symm_lower = np.array(asymm) |
|
symm_upper = np.array(asymm) |
|
for i in range(4): |
|
for j in range(i + 1, 4): |
|
symm_lower[i, j] = symm_lower[j, i] |
|
symm_upper[j, i] = symm_upper[i, j] |
|
|
|
assert np.all(m.symmetric_lower(asymm) == symm_lower) |
|
assert np.all(m.symmetric_upper(asymm) == symm_upper) |
|
|
|
|
|
def test_dense_signature(doc): |
|
assert ( |
|
doc(m.double_col) |
|
== """ |
|
double_col(arg0: numpy.ndarray[numpy.float32[m, 1]]) -> numpy.ndarray[numpy.float32[m, 1]] |
|
""" |
|
) |
|
assert ( |
|
doc(m.double_row) |
|
== """ |
|
double_row(arg0: numpy.ndarray[numpy.float32[1, n]]) -> numpy.ndarray[numpy.float32[1, n]] |
|
""" |
|
) |
|
assert doc(m.double_complex) == ( |
|
""" |
|
double_complex(arg0: numpy.ndarray[numpy.complex64[m, 1]])""" |
|
""" -> numpy.ndarray[numpy.complex64[m, 1]] |
|
""" |
|
) |
|
assert doc(m.double_mat_rm) == ( |
|
""" |
|
double_mat_rm(arg0: numpy.ndarray[numpy.float32[m, n]])""" |
|
""" -> numpy.ndarray[numpy.float32[m, n]] |
|
""" |
|
) |
|
|
|
|
|
def test_defaults(doc): |
|
assert "\n" not in str(doc(m.defaults_mat)) |
|
assert "\n" not in str(doc(m.defaults_vec)) |
|
|
|
|
|
def test_named_arguments(): |
|
a = np.array([[1.0, 2], [3, 4], [5, 6]]) |
|
b = np.ones((2, 1)) |
|
|
|
assert np.all(m.matrix_multiply(a, b) == np.array([[3.0], [7], [11]])) |
|
assert np.all(m.matrix_multiply(A=a, B=b) == np.array([[3.0], [7], [11]])) |
|
assert np.all(m.matrix_multiply(B=b, A=a) == np.array([[3.0], [7], [11]])) |
|
|
|
with pytest.raises(ValueError) as excinfo: |
|
m.matrix_multiply(b, a) |
|
assert str(excinfo.value) == "Nonconformable matrices!" |
|
|
|
with pytest.raises(ValueError) as excinfo: |
|
m.matrix_multiply(A=b, B=a) |
|
assert str(excinfo.value) == "Nonconformable matrices!" |
|
|
|
with pytest.raises(ValueError) as excinfo: |
|
m.matrix_multiply(B=a, A=b) |
|
assert str(excinfo.value) == "Nonconformable matrices!" |
|
|
|
|
|
def test_sparse(): |
|
pytest.importorskip("scipy") |
|
assert_sparse_equal_ref(m.sparse_r()) |
|
assert_sparse_equal_ref(m.sparse_c()) |
|
assert_sparse_equal_ref(m.sparse_copy_r(m.sparse_r())) |
|
assert_sparse_equal_ref(m.sparse_copy_c(m.sparse_c())) |
|
assert_sparse_equal_ref(m.sparse_copy_r(m.sparse_c())) |
|
assert_sparse_equal_ref(m.sparse_copy_c(m.sparse_r())) |
|
|
|
|
|
def test_sparse_signature(doc): |
|
pytest.importorskip("scipy") |
|
assert ( |
|
doc(m.sparse_copy_r) |
|
== """ |
|
sparse_copy_r(arg0: scipy.sparse.csr_matrix[numpy.float32]) -> scipy.sparse.csr_matrix[numpy.float32] |
|
""" |
|
) |
|
assert ( |
|
doc(m.sparse_copy_c) |
|
== """ |
|
sparse_copy_c(arg0: scipy.sparse.csc_matrix[numpy.float32]) -> scipy.sparse.csc_matrix[numpy.float32] |
|
""" |
|
) |
|
|
|
|
|
def test_issue738(): |
|
"""Ignore strides on a length-1 dimension (even if they would be incompatible length > 1)""" |
|
assert np.all(m.iss738_f1(np.array([[1.0, 2, 3]])) == np.array([[1.0, 102, 203]])) |
|
assert np.all( |
|
m.iss738_f1(np.array([[1.0], [2], [3]])) == np.array([[1.0], [12], [23]]) |
|
) |
|
|
|
assert np.all(m.iss738_f2(np.array([[1.0, 2, 3]])) == np.array([[1.0, 102, 203]])) |
|
assert np.all( |
|
m.iss738_f2(np.array([[1.0], [2], [3]])) == np.array([[1.0], [12], [23]]) |
|
) |
|
|
|
|
|
@pytest.mark.parametrize("func", [m.iss738_f1, m.iss738_f2]) |
|
@pytest.mark.parametrize("sizes", [(0, 2), (2, 0)]) |
|
def test_zero_length(func, sizes): |
|
"""Ignore strides on a length-0 dimension (even if they would be incompatible length > 1)""" |
|
assert np.all(func(np.zeros(sizes)) == np.zeros(sizes)) |
|
|
|
|
|
def test_issue1105(): |
|
"""Issue 1105: 1xN or Nx1 input arrays weren't accepted for eigen |
|
compile-time row vectors or column vector""" |
|
assert m.iss1105_row(np.ones((1, 7))) |
|
assert m.iss1105_col(np.ones((7, 1))) |
|
|
|
|
|
with pytest.raises(TypeError) as excinfo: |
|
m.iss1105_row(np.ones((7, 1))) |
|
assert "incompatible function arguments" in str(excinfo.value) |
|
with pytest.raises(TypeError) as excinfo: |
|
m.iss1105_col(np.ones((1, 7))) |
|
assert "incompatible function arguments" in str(excinfo.value) |
|
|
|
|
|
def test_custom_operator_new(): |
|
"""Using Eigen types as member variables requires a class-specific |
|
operator new with proper alignment""" |
|
|
|
o = m.CustomOperatorNew() |
|
np.testing.assert_allclose(o.a, 0.0) |
|
np.testing.assert_allclose(o.b.diagonal(), 1.0) |
|
|