1import pytest 2from pybind11_tests import ConstructorStats 3 4pytestmark = pytest.requires_eigen_and_numpy 5 6with pytest.suppress(ImportError): 7 from pybind11_tests import eigen as m 8 import numpy as np 9 10 ref = np.array([[ 0., 3, 0, 0, 0, 11], 11 [22, 0, 0, 0, 17, 11], 12 [ 7, 5, 0, 1, 0, 11], 13 [ 0, 0, 0, 0, 0, 11], 14 [ 0, 0, 14, 0, 8, 11]]) 15 16 17def assert_equal_ref(mat): 18 np.testing.assert_array_equal(mat, ref) 19 20 21def assert_sparse_equal_ref(sparse_mat): 22 assert_equal_ref(sparse_mat.toarray()) 23 24 25def test_fixed(): 26 assert_equal_ref(m.fixed_c()) 27 assert_equal_ref(m.fixed_r()) 28 assert_equal_ref(m.fixed_copy_r(m.fixed_r())) 29 assert_equal_ref(m.fixed_copy_c(m.fixed_c())) 30 assert_equal_ref(m.fixed_copy_r(m.fixed_c())) 31 assert_equal_ref(m.fixed_copy_c(m.fixed_r())) 32 33 34def test_dense(): 35 assert_equal_ref(m.dense_r()) 36 assert_equal_ref(m.dense_c()) 37 assert_equal_ref(m.dense_copy_r(m.dense_r())) 38 assert_equal_ref(m.dense_copy_c(m.dense_c())) 39 assert_equal_ref(m.dense_copy_r(m.dense_c())) 40 assert_equal_ref(m.dense_copy_c(m.dense_r())) 41 42 43def test_partially_fixed(): 44 ref2 = np.array([[0., 1, 2, 3], [4, 5, 6, 7], [8, 9, 10, 11], [12, 13, 14, 15]]) 45 np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2), ref2) 46 np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2), ref2) 47 np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2[:, 1]), ref2[:, [1]]) 48 np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2[0, :]), ref2[[0], :]) 49 np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)]) 50 np.testing.assert_array_equal( 51 m.partial_copy_four_rm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :]) 52 53 np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2), ref2) 54 np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2), ref2) 55 np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2[:, 1]), ref2[:, [1]]) 56 np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2[0, :]), ref2[[0], :]) 57 np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)]) 58 np.testing.assert_array_equal( 59 m.partial_copy_four_cm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :]) 60 61 # TypeError should be raise for a shape mismatch 62 functions = [m.partial_copy_four_rm_r, m.partial_copy_four_rm_c, 63 m.partial_copy_four_cm_r, m.partial_copy_four_cm_c] 64 matrix_with_wrong_shape = [[1, 2], 65 [3, 4]] 66 for f in functions: 67 with pytest.raises(TypeError) as excinfo: 68 f(matrix_with_wrong_shape) 69 assert "incompatible function arguments" in str(excinfo.value) 70 71 72def test_mutator_descriptors(): 73 zr = np.arange(30, dtype='float32').reshape(5, 6) # row-major 74 zc = zr.reshape(6, 5).transpose() # column-major 75 76 m.fixed_mutator_r(zr) 77 m.fixed_mutator_c(zc) 78 m.fixed_mutator_a(zr) 79 m.fixed_mutator_a(zc) 80 with pytest.raises(TypeError) as excinfo: 81 m.fixed_mutator_r(zc) 82 assert ('(arg0: numpy.ndarray[float32[5, 6], flags.writeable, flags.c_contiguous]) -> None' 83 in str(excinfo.value)) 84 with pytest.raises(TypeError) as excinfo: 85 m.fixed_mutator_c(zr) 86 assert ('(arg0: numpy.ndarray[float32[5, 6], flags.writeable, flags.f_contiguous]) -> None' 87 in str(excinfo.value)) 88 with pytest.raises(TypeError) as excinfo: 89 m.fixed_mutator_a(np.array([[1, 2], [3, 4]], dtype='float32')) 90 assert ('(arg0: numpy.ndarray[float32[5, 6], flags.writeable]) -> None' 91 in str(excinfo.value)) 92 zr.flags.writeable = False 93 with pytest.raises(TypeError): 94 m.fixed_mutator_r(zr) 95 with pytest.raises(TypeError): 96 m.fixed_mutator_a(zr) 97 98 99def test_cpp_casting(): 100 assert m.cpp_copy(m.fixed_r()) == 22. 101 assert m.cpp_copy(m.fixed_c()) == 22. 102 z = np.array([[5., 6], [7, 8]]) 103 assert m.cpp_copy(z) == 7. 104 assert m.cpp_copy(m.get_cm_ref()) == 21. 105 assert m.cpp_copy(m.get_rm_ref()) == 21. 106 assert m.cpp_ref_c(m.get_cm_ref()) == 21. 107 assert m.cpp_ref_r(m.get_rm_ref()) == 21. 108 with pytest.raises(RuntimeError) as excinfo: 109 # Can't reference m.fixed_c: it contains floats, m.cpp_ref_any wants doubles 110 m.cpp_ref_any(m.fixed_c()) 111 assert 'Unable to cast Python instance' in str(excinfo.value) 112 with pytest.raises(RuntimeError) as excinfo: 113 # Can't reference m.fixed_r: it contains floats, m.cpp_ref_any wants doubles 114 m.cpp_ref_any(m.fixed_r()) 115 assert 'Unable to cast Python instance' in str(excinfo.value) 116 assert m.cpp_ref_any(m.ReturnTester.create()) == 1. 117 118 assert m.cpp_ref_any(m.get_cm_ref()) == 21. 119 assert m.cpp_ref_any(m.get_cm_ref()) == 21. 120 121 122def test_pass_readonly_array(): 123 z = np.full((5, 6), 42.0) 124 z.flags.writeable = False 125 np.testing.assert_array_equal(z, m.fixed_copy_r(z)) 126 np.testing.assert_array_equal(m.fixed_r_const(), m.fixed_r()) 127 assert not m.fixed_r_const().flags.writeable 128 np.testing.assert_array_equal(m.fixed_copy_r(m.fixed_r_const()), m.fixed_r_const()) 129 130 131def test_nonunit_stride_from_python(): 132 counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3)) 133 second_row = counting_mat[1, :] 134 second_col = counting_mat[:, 1] 135 np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row) 136 np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row) 137 np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row) 138 np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col) 139 np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col) 140 np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col) 141 142 counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3)) 143 slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]] 144 for slice_idx, ref_mat in enumerate(slices): 145 np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat) 146 np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat) 147 148 # Mutator: 149 m.double_threer(second_row) 150 m.double_threec(second_col) 151 np.testing.assert_array_equal(counting_mat, [[0., 2, 2], [6, 16, 10], [6, 14, 8]]) 152 153 154def test_negative_stride_from_python(msg): 155 """Eigen doesn't support (as of yet) negative strides. When a function takes an Eigen matrix by 156 copy or const reference, we can pass a numpy array that has negative strides. Otherwise, an 157 exception will be thrown as Eigen will not be able to map the numpy array.""" 158 159 counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3)) 160 counting_mat = counting_mat[::-1, ::-1] 161 second_row = counting_mat[1, :] 162 second_col = counting_mat[:, 1] 163 np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row) 164 np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row) 165 np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row) 166 np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col) 167 np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col) 168 np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col) 169 170 counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3)) 171 counting_3d = counting_3d[::-1, ::-1, ::-1] 172 slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]] 173 for slice_idx, ref_mat in enumerate(slices): 174 np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat) 175 np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat) 176 177 # Mutator: 178 with pytest.raises(TypeError) as excinfo: 179 m.double_threer(second_row) 180 assert msg(excinfo.value) == """ 181 double_threer(): incompatible function arguments. The following argument types are supported: 182 1. (arg0: numpy.ndarray[float32[1, 3], flags.writeable]) -> None 183 184 Invoked with: """ + repr(np.array([ 5., 4., 3.], dtype='float32')) # noqa: E501 line too long 185 186 with pytest.raises(TypeError) as excinfo: 187 m.double_threec(second_col) 188 assert msg(excinfo.value) == """ 189 double_threec(): incompatible function arguments. The following argument types are supported: 190 1. (arg0: numpy.ndarray[float32[3, 1], flags.writeable]) -> None 191 192 Invoked with: """ + repr(np.array([ 7., 4., 1.], dtype='float32')) # noqa: E501 line too long 193 194 195def test_nonunit_stride_to_python(): 196 assert np.all(m.diagonal(ref) == ref.diagonal()) 197 assert np.all(m.diagonal_1(ref) == ref.diagonal(1)) 198 for i in range(-5, 7): 199 assert np.all(m.diagonal_n(ref, i) == ref.diagonal(i)), "m.diagonal_n({})".format(i) 200 201 assert np.all(m.block(ref, 2, 1, 3, 3) == ref[2:5, 1:4]) 202 assert np.all(m.block(ref, 1, 4, 4, 2) == ref[1:, 4:]) 203 assert np.all(m.block(ref, 1, 4, 3, 2) == ref[1:4, 4:]) 204 205 206def test_eigen_ref_to_python(): 207 chols = [m.cholesky1, m.cholesky2, m.cholesky3, m.cholesky4] 208 for i, chol in enumerate(chols, start=1): 209 mymat = chol(np.array([[1., 2, 4], [2, 13, 23], [4, 23, 77]])) 210 assert np.all(mymat == np.array([[1, 0, 0], [2, 3, 0], [4, 5, 6]])), "cholesky{}".format(i) 211 212 213def assign_both(a1, a2, r, c, v): 214 a1[r, c] = v 215 a2[r, c] = v 216 217 218def array_copy_but_one(a, r, c, v): 219 z = np.array(a, copy=True) 220 z[r, c] = v 221 return z 222 223 224def test_eigen_return_references(): 225 """Tests various ways of returning references and non-referencing copies""" 226 227 master = np.ones((10, 10)) 228 a = m.ReturnTester() 229 a_get1 = a.get() 230 assert not a_get1.flags.owndata and a_get1.flags.writeable 231 assign_both(a_get1, master, 3, 3, 5) 232 a_get2 = a.get_ptr() 233 assert not a_get2.flags.owndata and a_get2.flags.writeable 234 assign_both(a_get1, master, 2, 3, 6) 235 236 a_view1 = a.view() 237 assert not a_view1.flags.owndata and not a_view1.flags.writeable 238 with pytest.raises(ValueError): 239 a_view1[2, 3] = 4 240 a_view2 = a.view_ptr() 241 assert not a_view2.flags.owndata and not a_view2.flags.writeable 242 with pytest.raises(ValueError): 243 a_view2[2, 3] = 4 244 245 a_copy1 = a.copy_get() 246 assert a_copy1.flags.owndata and a_copy1.flags.writeable 247 np.testing.assert_array_equal(a_copy1, master) 248 a_copy1[7, 7] = -44 # Shouldn't affect anything else 249 c1want = array_copy_but_one(master, 7, 7, -44) 250 a_copy2 = a.copy_view() 251 assert a_copy2.flags.owndata and a_copy2.flags.writeable 252 np.testing.assert_array_equal(a_copy2, master) 253 a_copy2[4, 4] = -22 # Shouldn't affect anything else 254 c2want = array_copy_but_one(master, 4, 4, -22) 255 256 a_ref1 = a.ref() 257 assert not a_ref1.flags.owndata and a_ref1.flags.writeable 258 assign_both(a_ref1, master, 1, 1, 15) 259 a_ref2 = a.ref_const() 260 assert not a_ref2.flags.owndata and not a_ref2.flags.writeable 261 with pytest.raises(ValueError): 262 a_ref2[5, 5] = 33 263 a_ref3 = a.ref_safe() 264 assert not a_ref3.flags.owndata and a_ref3.flags.writeable 265 assign_both(a_ref3, master, 0, 7, 99) 266 a_ref4 = a.ref_const_safe() 267 assert not a_ref4.flags.owndata and not a_ref4.flags.writeable 268 with pytest.raises(ValueError): 269 a_ref4[7, 0] = 987654321 270 271 a_copy3 = a.copy_ref() 272 assert a_copy3.flags.owndata and a_copy3.flags.writeable 273 np.testing.assert_array_equal(a_copy3, master) 274 a_copy3[8, 1] = 11 275 c3want = array_copy_but_one(master, 8, 1, 11) 276 a_copy4 = a.copy_ref_const() 277 assert a_copy4.flags.owndata and a_copy4.flags.writeable 278 np.testing.assert_array_equal(a_copy4, master) 279 a_copy4[8, 4] = 88 280 c4want = array_copy_but_one(master, 8, 4, 88) 281 282 a_block1 = a.block(3, 3, 2, 2) 283 assert not a_block1.flags.owndata and a_block1.flags.writeable 284 a_block1[0, 0] = 55 285 master[3, 3] = 55 286 a_block2 = a.block_safe(2, 2, 3, 2) 287 assert not a_block2.flags.owndata and a_block2.flags.writeable 288 a_block2[2, 1] = -123 289 master[4, 3] = -123 290 a_block3 = a.block_const(6, 7, 4, 3) 291 assert not a_block3.flags.owndata and not a_block3.flags.writeable 292 with pytest.raises(ValueError): 293 a_block3[2, 2] = -44444 294 295 a_copy5 = a.copy_block(2, 2, 2, 3) 296 assert a_copy5.flags.owndata and a_copy5.flags.writeable 297 np.testing.assert_array_equal(a_copy5, master[2:4, 2:5]) 298 a_copy5[1, 1] = 777 299 c5want = array_copy_but_one(master[2:4, 2:5], 1, 1, 777) 300 301 a_corn1 = a.corners() 302 assert not a_corn1.flags.owndata and a_corn1.flags.writeable 303 a_corn1 *= 50 304 a_corn1[1, 1] = 999 305 master[0, 0] = 50 306 master[0, 9] = 50 307 master[9, 0] = 50 308 master[9, 9] = 999 309 a_corn2 = a.corners_const() 310 assert not a_corn2.flags.owndata and not a_corn2.flags.writeable 311 with pytest.raises(ValueError): 312 a_corn2[1, 0] = 51 313 314 # All of the changes made all the way along should be visible everywhere 315 # now (except for the copies, of course) 316 np.testing.assert_array_equal(a_get1, master) 317 np.testing.assert_array_equal(a_get2, master) 318 np.testing.assert_array_equal(a_view1, master) 319 np.testing.assert_array_equal(a_view2, master) 320 np.testing.assert_array_equal(a_ref1, master) 321 np.testing.assert_array_equal(a_ref2, master) 322 np.testing.assert_array_equal(a_ref3, master) 323 np.testing.assert_array_equal(a_ref4, master) 324 np.testing.assert_array_equal(a_block1, master[3:5, 3:5]) 325 np.testing.assert_array_equal(a_block2, master[2:5, 2:4]) 326 np.testing.assert_array_equal(a_block3, master[6:10, 7:10]) 327 np.testing.assert_array_equal(a_corn1, master[0::master.shape[0] - 1, 0::master.shape[1] - 1]) 328 np.testing.assert_array_equal(a_corn2, master[0::master.shape[0] - 1, 0::master.shape[1] - 1]) 329 330 np.testing.assert_array_equal(a_copy1, c1want) 331 np.testing.assert_array_equal(a_copy2, c2want) 332 np.testing.assert_array_equal(a_copy3, c3want) 333 np.testing.assert_array_equal(a_copy4, c4want) 334 np.testing.assert_array_equal(a_copy5, c5want) 335 336 337def assert_keeps_alive(cl, method, *args): 338 cstats = ConstructorStats.get(cl) 339 start_with = cstats.alive() 340 a = cl() 341 assert cstats.alive() == start_with + 1 342 z = method(a, *args) 343 assert cstats.alive() == start_with + 1 344 del a 345 # Here's the keep alive in action: 346 assert cstats.alive() == start_with + 1 347 del z 348 # Keep alive should have expired: 349 assert cstats.alive() == start_with 350 351 352def test_eigen_keepalive(): 353 a = m.ReturnTester() 354 cstats = ConstructorStats.get(m.ReturnTester) 355 assert cstats.alive() == 1 356 unsafe = [a.ref(), a.ref_const(), a.block(1, 2, 3, 4)] 357 copies = [a.copy_get(), a.copy_view(), a.copy_ref(), a.copy_ref_const(), 358 a.copy_block(4, 3, 2, 1)] 359 del a 360 assert cstats.alive() == 0 361 del unsafe 362 del copies 363 364 for meth in [m.ReturnTester.get, m.ReturnTester.get_ptr, m.ReturnTester.view, 365 m.ReturnTester.view_ptr, m.ReturnTester.ref_safe, m.ReturnTester.ref_const_safe, 366 m.ReturnTester.corners, m.ReturnTester.corners_const]: 367 assert_keeps_alive(m.ReturnTester, meth) 368 369 for meth in [m.ReturnTester.block_safe, m.ReturnTester.block_const]: 370 assert_keeps_alive(m.ReturnTester, meth, 4, 3, 2, 1) 371 372 373def test_eigen_ref_mutators(): 374 """Tests Eigen's ability to mutate numpy values""" 375 376 orig = np.array([[1., 2, 3], [4, 5, 6], [7, 8, 9]]) 377 zr = np.array(orig) 378 zc = np.array(orig, order='F') 379 m.add_rm(zr, 1, 0, 100) 380 assert np.all(zr == np.array([[1., 2, 3], [104, 5, 6], [7, 8, 9]])) 381 m.add_cm(zc, 1, 0, 200) 382 assert np.all(zc == np.array([[1., 2, 3], [204, 5, 6], [7, 8, 9]])) 383 384 m.add_any(zr, 1, 0, 20) 385 assert np.all(zr == np.array([[1., 2, 3], [124, 5, 6], [7, 8, 9]])) 386 m.add_any(zc, 1, 0, 10) 387 assert np.all(zc == np.array([[1., 2, 3], [214, 5, 6], [7, 8, 9]])) 388 389 # Can't reference a col-major array with a row-major Ref, and vice versa: 390 with pytest.raises(TypeError): 391 m.add_rm(zc, 1, 0, 1) 392 with pytest.raises(TypeError): 393 m.add_cm(zr, 1, 0, 1) 394 395 # Overloads: 396 m.add1(zr, 1, 0, -100) 397 m.add2(zr, 1, 0, -20) 398 assert np.all(zr == orig) 399 m.add1(zc, 1, 0, -200) 400 m.add2(zc, 1, 0, -10) 401 assert np.all(zc == orig) 402 403 # a non-contiguous slice (this won't work on either the row- or 404 # column-contiguous refs, but should work for the any) 405 cornersr = zr[0::2, 0::2] 406 cornersc = zc[0::2, 0::2] 407 408 assert np.all(cornersr == np.array([[1., 3], [7, 9]])) 409 assert np.all(cornersc == np.array([[1., 3], [7, 9]])) 410 411 with pytest.raises(TypeError): 412 m.add_rm(cornersr, 0, 1, 25) 413 with pytest.raises(TypeError): 414 m.add_cm(cornersr, 0, 1, 25) 415 with pytest.raises(TypeError): 416 m.add_rm(cornersc, 0, 1, 25) 417 with pytest.raises(TypeError): 418 m.add_cm(cornersc, 0, 1, 25) 419 m.add_any(cornersr, 0, 1, 25) 420 m.add_any(cornersc, 0, 1, 44) 421 assert np.all(zr == np.array([[1., 2, 28], [4, 5, 6], [7, 8, 9]])) 422 assert np.all(zc == np.array([[1., 2, 47], [4, 5, 6], [7, 8, 9]])) 423 424 # You shouldn't be allowed to pass a non-writeable array to a mutating Eigen method: 425 zro = zr[0:4, 0:4] 426 zro.flags.writeable = False 427 with pytest.raises(TypeError): 428 m.add_rm(zro, 0, 0, 0) 429 with pytest.raises(TypeError): 430 m.add_any(zro, 0, 0, 0) 431 with pytest.raises(TypeError): 432 m.add1(zro, 0, 0, 0) 433 with pytest.raises(TypeError): 434 m.add2(zro, 0, 0, 0) 435 436 # integer array shouldn't be passable to a double-matrix-accepting mutating func: 437 zi = np.array([[1, 2], [3, 4]]) 438 with pytest.raises(TypeError): 439 m.add_rm(zi) 440 441 442def test_numpy_ref_mutators(): 443 """Tests numpy mutating Eigen matrices (for returned Eigen::Ref<...>s)""" 444 445 m.reset_refs() # In case another test already changed it 446 447 zc = m.get_cm_ref() 448 zcro = m.get_cm_const_ref() 449 zr = m.get_rm_ref() 450 zrro = m.get_rm_const_ref() 451 452 assert [zc[1, 2], zcro[1, 2], zr[1, 2], zrro[1, 2]] == [23] * 4 453 454 assert not zc.flags.owndata and zc.flags.writeable 455 assert not zr.flags.owndata and zr.flags.writeable 456 assert not zcro.flags.owndata and not zcro.flags.writeable 457 assert not zrro.flags.owndata and not zrro.flags.writeable 458 459 zc[1, 2] = 99 460 expect = np.array([[11., 12, 13], [21, 22, 99], [31, 32, 33]]) 461 # We should have just changed zc, of course, but also zcro and the original eigen matrix 462 assert np.all(zc == expect) 463 assert np.all(zcro == expect) 464 assert np.all(m.get_cm_ref() == expect) 465 466 zr[1, 2] = 99 467 assert np.all(zr == expect) 468 assert np.all(zrro == expect) 469 assert np.all(m.get_rm_ref() == expect) 470 471 # Make sure the readonly ones are numpy-readonly: 472 with pytest.raises(ValueError): 473 zcro[1, 2] = 6 474 with pytest.raises(ValueError): 475 zrro[1, 2] = 6 476 477 # We should be able to explicitly copy like this (and since we're copying, 478 # the const should drop away) 479 y1 = np.array(m.get_cm_const_ref()) 480 481 assert y1.flags.owndata and y1.flags.writeable 482 # We should get copies of the eigen data, which was modified above: 483 assert y1[1, 2] == 99 484 y1[1, 2] += 12 485 assert y1[1, 2] == 111 486 assert zc[1, 2] == 99 # Make sure we aren't referencing the original 487 488 489def test_both_ref_mutators(): 490 """Tests a complex chain of nested eigen/numpy references""" 491 492 m.reset_refs() # In case another test already changed it 493 494 z = m.get_cm_ref() # numpy -> eigen 495 z[0, 2] -= 3 496 z2 = m.incr_matrix(z, 1) # numpy -> eigen -> numpy -> eigen 497 z2[1, 1] += 6 498 z3 = m.incr_matrix(z, 2) # (numpy -> eigen)^3 499 z3[2, 2] += -5 500 z4 = m.incr_matrix(z, 3) # (numpy -> eigen)^4 501 z4[1, 1] -= 1 502 z5 = m.incr_matrix(z, 4) # (numpy -> eigen)^5 503 z5[0, 0] = 0 504 assert np.all(z == z2) 505 assert np.all(z == z3) 506 assert np.all(z == z4) 507 assert np.all(z == z5) 508 expect = np.array([[0., 22, 20], [31, 37, 33], [41, 42, 38]]) 509 assert np.all(z == expect) 510 511 y = np.array(range(100), dtype='float64').reshape(10, 10) 512 y2 = m.incr_matrix_any(y, 10) # np -> eigen -> np 513 y3 = m.incr_matrix_any(y2[0::2, 0::2], -33) # np -> eigen -> np slice -> np -> eigen -> np 514 y4 = m.even_rows(y3) # numpy -> eigen slice -> (... y3) 515 y5 = m.even_cols(y4) # numpy -> eigen slice -> (... y4) 516 y6 = m.incr_matrix_any(y5, 1000) # numpy -> eigen -> (... y5) 517 518 # Apply same mutations using just numpy: 519 yexpect = np.array(range(100), dtype='float64').reshape(10, 10) 520 yexpect += 10 521 yexpect[0::2, 0::2] -= 33 522 yexpect[0::4, 0::4] += 1000 523 assert np.all(y6 == yexpect[0::4, 0::4]) 524 assert np.all(y5 == yexpect[0::4, 0::4]) 525 assert np.all(y4 == yexpect[0::4, 0::2]) 526 assert np.all(y3 == yexpect[0::2, 0::2]) 527 assert np.all(y2 == yexpect) 528 assert np.all(y == yexpect) 529 530 531def test_nocopy_wrapper(): 532 # get_elem requires a column-contiguous matrix reference, but should be 533 # callable with other types of matrix (via copying): 534 int_matrix_colmajor = np.array([[1, 2, 3], [4, 5, 6], [7, 8, 9]], order='F') 535 dbl_matrix_colmajor = np.array(int_matrix_colmajor, dtype='double', order='F', copy=True) 536 int_matrix_rowmajor = np.array(int_matrix_colmajor, order='C', copy=True) 537 dbl_matrix_rowmajor = np.array(int_matrix_rowmajor, dtype='double', order='C', copy=True) 538 539 # All should be callable via get_elem: 540 assert m.get_elem(int_matrix_colmajor) == 8 541 assert m.get_elem(dbl_matrix_colmajor) == 8 542 assert m.get_elem(int_matrix_rowmajor) == 8 543 assert m.get_elem(dbl_matrix_rowmajor) == 8 544 545 # All but the second should fail with m.get_elem_nocopy: 546 with pytest.raises(TypeError) as excinfo: 547 m.get_elem_nocopy(int_matrix_colmajor) 548 assert ('get_elem_nocopy(): incompatible function arguments.' in str(excinfo.value) and 549 ', flags.f_contiguous' in str(excinfo.value)) 550 assert m.get_elem_nocopy(dbl_matrix_colmajor) == 8 551 with pytest.raises(TypeError) as excinfo: 552 m.get_elem_nocopy(int_matrix_rowmajor) 553 assert ('get_elem_nocopy(): incompatible function arguments.' in str(excinfo.value) and 554 ', flags.f_contiguous' in str(excinfo.value)) 555 with pytest.raises(TypeError) as excinfo: 556 m.get_elem_nocopy(dbl_matrix_rowmajor) 557 assert ('get_elem_nocopy(): incompatible function arguments.' in str(excinfo.value) and 558 ', flags.f_contiguous' in str(excinfo.value)) 559 560 # For the row-major test, we take a long matrix in row-major, so only the third is allowed: 561 with pytest.raises(TypeError) as excinfo: 562 m.get_elem_rm_nocopy(int_matrix_colmajor) 563 assert ('get_elem_rm_nocopy(): incompatible function arguments.' in str(excinfo.value) and 564 ', flags.c_contiguous' in str(excinfo.value)) 565 with pytest.raises(TypeError) as excinfo: 566 m.get_elem_rm_nocopy(dbl_matrix_colmajor) 567 assert ('get_elem_rm_nocopy(): incompatible function arguments.' in str(excinfo.value) and 568 ', flags.c_contiguous' in str(excinfo.value)) 569 assert m.get_elem_rm_nocopy(int_matrix_rowmajor) == 8 570 with pytest.raises(TypeError) as excinfo: 571 m.get_elem_rm_nocopy(dbl_matrix_rowmajor) 572 assert ('get_elem_rm_nocopy(): incompatible function arguments.' in str(excinfo.value) and 573 ', flags.c_contiguous' in str(excinfo.value)) 574 575 576def test_eigen_ref_life_support(): 577 """Ensure the lifetime of temporary arrays created by the `Ref` caster 578 579 The `Ref` caster sometimes creates a copy which needs to stay alive. This needs to 580 happen both for directs casts (just the array) or indirectly (e.g. list of arrays). 581 """ 582 583 a = np.full(shape=10, fill_value=8, dtype=np.int8) 584 assert m.get_elem_direct(a) == 8 585 586 list_of_a = [a] 587 assert m.get_elem_indirect(list_of_a) == 8 588 589 590def test_special_matrix_objects(): 591 assert np.all(m.incr_diag(7) == np.diag([1., 2, 3, 4, 5, 6, 7])) 592 593 asymm = np.array([[ 1., 2, 3, 4], 594 [ 5, 6, 7, 8], 595 [ 9, 10, 11, 12], 596 [13, 14, 15, 16]]) 597 symm_lower = np.array(asymm) 598 symm_upper = np.array(asymm) 599 for i in range(4): 600 for j in range(i + 1, 4): 601 symm_lower[i, j] = symm_lower[j, i] 602 symm_upper[j, i] = symm_upper[i, j] 603 604 assert np.all(m.symmetric_lower(asymm) == symm_lower) 605 assert np.all(m.symmetric_upper(asymm) == symm_upper) 606 607 608def test_dense_signature(doc): 609 assert doc(m.double_col) == """ 610 double_col(arg0: numpy.ndarray[float32[m, 1]]) -> numpy.ndarray[float32[m, 1]] 611 """ 612 assert doc(m.double_row) == """ 613 double_row(arg0: numpy.ndarray[float32[1, n]]) -> numpy.ndarray[float32[1, n]] 614 """ 615 assert doc(m.double_complex) == """ 616 double_complex(arg0: numpy.ndarray[complex64[m, 1]]) -> numpy.ndarray[complex64[m, 1]] 617 """ 618 assert doc(m.double_mat_rm) == """ 619 double_mat_rm(arg0: numpy.ndarray[float32[m, n]]) -> numpy.ndarray[float32[m, n]] 620 """ 621 622 623def test_named_arguments(): 624 a = np.array([[1.0, 2], [3, 4], [5, 6]]) 625 b = np.ones((2, 1)) 626 627 assert np.all(m.matrix_multiply(a, b) == np.array([[3.], [7], [11]])) 628 assert np.all(m.matrix_multiply(A=a, B=b) == np.array([[3.], [7], [11]])) 629 assert np.all(m.matrix_multiply(B=b, A=a) == np.array([[3.], [7], [11]])) 630 631 with pytest.raises(ValueError) as excinfo: 632 m.matrix_multiply(b, a) 633 assert str(excinfo.value) == 'Nonconformable matrices!' 634 635 with pytest.raises(ValueError) as excinfo: 636 m.matrix_multiply(A=b, B=a) 637 assert str(excinfo.value) == 'Nonconformable matrices!' 638 639 with pytest.raises(ValueError) as excinfo: 640 m.matrix_multiply(B=a, A=b) 641 assert str(excinfo.value) == 'Nonconformable matrices!' 642 643 644@pytest.requires_eigen_and_scipy 645def test_sparse(): 646 assert_sparse_equal_ref(m.sparse_r()) 647 assert_sparse_equal_ref(m.sparse_c()) 648 assert_sparse_equal_ref(m.sparse_copy_r(m.sparse_r())) 649 assert_sparse_equal_ref(m.sparse_copy_c(m.sparse_c())) 650 assert_sparse_equal_ref(m.sparse_copy_r(m.sparse_c())) 651 assert_sparse_equal_ref(m.sparse_copy_c(m.sparse_r())) 652 653 654@pytest.requires_eigen_and_scipy 655def test_sparse_signature(doc): 656 assert doc(m.sparse_copy_r) == """ 657 sparse_copy_r(arg0: scipy.sparse.csr_matrix[float32]) -> scipy.sparse.csr_matrix[float32] 658 """ # noqa: E501 line too long 659 assert doc(m.sparse_copy_c) == """ 660 sparse_copy_c(arg0: scipy.sparse.csc_matrix[float32]) -> scipy.sparse.csc_matrix[float32] 661 """ # noqa: E501 line too long 662 663 664def test_issue738(): 665 """Ignore strides on a length-1 dimension (even if they would be incompatible length > 1)""" 666 assert np.all(m.iss738_f1(np.array([[1., 2, 3]])) == np.array([[1., 102, 203]])) 667 assert np.all(m.iss738_f1(np.array([[1.], [2], [3]])) == np.array([[1.], [12], [23]])) 668 669 assert np.all(m.iss738_f2(np.array([[1., 2, 3]])) == np.array([[1., 102, 203]])) 670 assert np.all(m.iss738_f2(np.array([[1.], [2], [3]])) == np.array([[1.], [12], [23]])) 671 672 673def test_issue1105(): 674 """Issue 1105: 1xN or Nx1 input arrays weren't accepted for eigen 675 compile-time row vectors or column vector""" 676 assert m.iss1105_row(np.ones((1, 7))) 677 assert m.iss1105_col(np.ones((7, 1))) 678 679 # These should still fail (incompatible dimensions): 680 with pytest.raises(TypeError) as excinfo: 681 m.iss1105_row(np.ones((7, 1))) 682 assert "incompatible function arguments" in str(excinfo.value) 683 with pytest.raises(TypeError) as excinfo: 684 m.iss1105_col(np.ones((1, 7))) 685 assert "incompatible function arguments" in str(excinfo.value) 686 687 688def test_custom_operator_new(): 689 """Using Eigen types as member variables requires a class-specific 690 operator new with proper alignment""" 691 692 o = m.CustomOperatorNew() 693 np.testing.assert_allclose(o.a, 0.0) 694 np.testing.assert_allclose(o.b.diagonal(), 1.0) 695