test_eigen.py 27.5 KB
Newer Older
Dean Moldovan's avatar
Dean Moldovan committed
1
import pytest
2

3
from pybind11_tests import ConstructorStats
Dean Moldovan's avatar
Dean Moldovan committed
4

5
6
np = pytest.importorskip("numpy")
m = pytest.importorskip("pybind11_tests.eigen")
7

Dean Moldovan's avatar
Dean Moldovan committed
8

9
10
11
12
13
14
15
16
17
ref = np.array(
    [
        [0.0, 3, 0, 0, 0, 11],
        [22, 0, 0, 0, 17, 11],
        [7, 5, 0, 1, 0, 11],
        [0, 0, 0, 0, 0, 11],
        [0, 0, 14, 0, 8, 11],
    ]
)
Dean Moldovan's avatar
Dean Moldovan committed
18
19
20
21
22
23
24


def assert_equal_ref(mat):
    np.testing.assert_array_equal(mat, ref)


def assert_sparse_equal_ref(sparse_mat):
25
    assert_equal_ref(sparse_mat.toarray())
Dean Moldovan's avatar
Dean Moldovan committed
26
27
28


def test_fixed():
29
30
31
32
33
34
    assert_equal_ref(m.fixed_c())
    assert_equal_ref(m.fixed_r())
    assert_equal_ref(m.fixed_copy_r(m.fixed_r()))
    assert_equal_ref(m.fixed_copy_c(m.fixed_c()))
    assert_equal_ref(m.fixed_copy_r(m.fixed_c()))
    assert_equal_ref(m.fixed_copy_c(m.fixed_r()))
Dean Moldovan's avatar
Dean Moldovan committed
35
36
37


def test_dense():
38
39
40
41
42
43
    assert_equal_ref(m.dense_r())
    assert_equal_ref(m.dense_c())
    assert_equal_ref(m.dense_copy_r(m.dense_r()))
    assert_equal_ref(m.dense_copy_c(m.dense_c()))
    assert_equal_ref(m.dense_copy_r(m.dense_c()))
    assert_equal_ref(m.dense_copy_c(m.dense_r()))
44

Dean Moldovan's avatar
Dean Moldovan committed
45

46
def test_partially_fixed():
47
    ref2 = np.array([[0.0, 1, 2, 3], [4, 5, 6, 7], [8, 9, 10, 11], [12, 13, 14, 15]])
48
49
50
51
    np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2), ref2)
    np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2), ref2)
    np.testing.assert_array_equal(m.partial_copy_four_rm_r(ref2[:, 1]), ref2[:, [1]])
    np.testing.assert_array_equal(m.partial_copy_four_rm_c(ref2[0, :]), ref2[[0], :])
52
    np.testing.assert_array_equal(
53
54
55
56
57
        m.partial_copy_four_rm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)]
    )
    np.testing.assert_array_equal(
        m.partial_copy_four_rm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :]
    )
58

59
60
61
62
    np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2), ref2)
    np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2), ref2)
    np.testing.assert_array_equal(m.partial_copy_four_cm_r(ref2[:, 1]), ref2[:, [1]])
    np.testing.assert_array_equal(m.partial_copy_four_cm_c(ref2[0, :]), ref2[[0], :])
63
    np.testing.assert_array_equal(
64
65
66
67
68
        m.partial_copy_four_cm_r(ref2[:, (0, 2)]), ref2[:, (0, 2)]
    )
    np.testing.assert_array_equal(
        m.partial_copy_four_cm_c(ref2[(3, 1, 2), :]), ref2[(3, 1, 2), :]
    )
69

70
    # TypeError should be raise for a shape mismatch
71
72
73
74
75
76
77
    functions = [
        m.partial_copy_four_rm_r,
        m.partial_copy_four_rm_c,
        m.partial_copy_four_cm_r,
        m.partial_copy_four_cm_c,
    ]
    matrix_with_wrong_shape = [[1, 2], [3, 4]]
78
79
80
81
82
    for f in functions:
        with pytest.raises(TypeError) as excinfo:
            f(matrix_with_wrong_shape)
        assert "incompatible function arguments" in str(excinfo.value)

83
84

def test_mutator_descriptors():
85
    zr = np.arange(30, dtype="float32").reshape(5, 6)  # row-major
86
87
    zc = zr.reshape(6, 5).transpose()  # column-major

88
89
90
91
    m.fixed_mutator_r(zr)
    m.fixed_mutator_c(zc)
    m.fixed_mutator_a(zr)
    m.fixed_mutator_a(zc)
92
    with pytest.raises(TypeError) as excinfo:
93
        m.fixed_mutator_r(zc)
94
95
96
97
    assert (
        "(arg0: numpy.ndarray[numpy.float32[5, 6],"
        " flags.writeable, flags.c_contiguous]) -> None" in str(excinfo.value)
    )
98
    with pytest.raises(TypeError) as excinfo:
99
        m.fixed_mutator_c(zr)
100
101
102
103
    assert (
        "(arg0: numpy.ndarray[numpy.float32[5, 6],"
        " flags.writeable, flags.f_contiguous]) -> None" in str(excinfo.value)
    )
104
    with pytest.raises(TypeError) as excinfo:
105
106
107
108
        m.fixed_mutator_a(np.array([[1, 2], [3, 4]], dtype="float32"))
    assert "(arg0: numpy.ndarray[numpy.float32[5, 6], flags.writeable]) -> None" in str(
        excinfo.value
    )
109
110
    zr.flags.writeable = False
    with pytest.raises(TypeError):
111
        m.fixed_mutator_r(zr)
112
    with pytest.raises(TypeError):
113
        m.fixed_mutator_a(zr)
114

115

116
def test_cpp_casting():
117
118
119
120
121
122
123
124
    assert m.cpp_copy(m.fixed_r()) == 22.0
    assert m.cpp_copy(m.fixed_c()) == 22.0
    z = np.array([[5.0, 6], [7, 8]])
    assert m.cpp_copy(z) == 7.0
    assert m.cpp_copy(m.get_cm_ref()) == 21.0
    assert m.cpp_copy(m.get_rm_ref()) == 21.0
    assert m.cpp_ref_c(m.get_cm_ref()) == 21.0
    assert m.cpp_ref_r(m.get_rm_ref()) == 21.0
125
    with pytest.raises(RuntimeError) as excinfo:
126
127
        # Can't reference m.fixed_c: it contains floats, m.cpp_ref_any wants doubles
        m.cpp_ref_any(m.fixed_c())
128
    assert "Unable to cast Python instance" in str(excinfo.value)
129
    with pytest.raises(RuntimeError) as excinfo:
130
131
        # Can't reference m.fixed_r: it contains floats, m.cpp_ref_any wants doubles
        m.cpp_ref_any(m.fixed_r())
132
133
    assert "Unable to cast Python instance" in str(excinfo.value)
    assert m.cpp_ref_any(m.ReturnTester.create()) == 1.0
134

135
136
    assert m.cpp_ref_any(m.get_cm_ref()) == 21.0
    assert m.cpp_ref_any(m.get_cm_ref()) == 21.0
137
138
139
140
141


def test_pass_readonly_array():
    z = np.full((5, 6), 42.0)
    z.flags.writeable = False
142
143
144
145
    np.testing.assert_array_equal(z, m.fixed_copy_r(z))
    np.testing.assert_array_equal(m.fixed_r_const(), m.fixed_r())
    assert not m.fixed_r_const().flags.writeable
    np.testing.assert_array_equal(m.fixed_copy_r(m.fixed_r_const()), m.fixed_r_const())
146

Dean Moldovan's avatar
Dean Moldovan committed
147
148
149

def test_nonunit_stride_from_python():
    counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3))
150
151
    second_row = counting_mat[1, :]
    second_col = counting_mat[:, 1]
152
153
154
155
156
157
    np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col)
    np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col)
    np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col)
Dean Moldovan's avatar
Dean Moldovan committed
158
159
160

    counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3))
    slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]]
161
    for ref_mat in slices:
162
163
        np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat)
        np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat)
Dean Moldovan's avatar
Dean Moldovan committed
164

165
    # Mutator:
166
167
    m.double_threer(second_row)
    m.double_threec(second_col)
168
    np.testing.assert_array_equal(counting_mat, [[0.0, 2, 2], [6, 16, 10], [6, 14, 8]])
169

Dean Moldovan's avatar
Dean Moldovan committed
170

171
def test_negative_stride_from_python(msg):
172
173
174
    """Eigen doesn't support (as of yet) negative strides. When a function takes an Eigen matrix by
    copy or const reference, we can pass a numpy array that has negative strides.  Otherwise, an
    exception will be thrown as Eigen will not be able to map the numpy array."""
175
176
177
178
179

    counting_mat = np.arange(9.0, dtype=np.float32).reshape((3, 3))
    counting_mat = counting_mat[::-1, ::-1]
    second_row = counting_mat[1, :]
    second_col = counting_mat[:, 1]
180
181
182
183
184
185
    np.testing.assert_array_equal(m.double_row(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_col(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_complex(second_row), 2.0 * second_row)
    np.testing.assert_array_equal(m.double_row(second_col), 2.0 * second_col)
    np.testing.assert_array_equal(m.double_col(second_col), 2.0 * second_col)
    np.testing.assert_array_equal(m.double_complex(second_col), 2.0 * second_col)
186
187
188
189

    counting_3d = np.arange(27.0, dtype=np.float32).reshape((3, 3, 3))
    counting_3d = counting_3d[::-1, ::-1, ::-1]
    slices = [counting_3d[0, :, :], counting_3d[:, 0, :], counting_3d[:, :, 0]]
190
    for ref_mat in slices:
191
192
        np.testing.assert_array_equal(m.double_mat_cm(ref_mat), 2.0 * ref_mat)
        np.testing.assert_array_equal(m.double_mat_rm(ref_mat), 2.0 * ref_mat)
193
194
195

    # Mutator:
    with pytest.raises(TypeError) as excinfo:
196
        m.double_threer(second_row)
197
198
199
    assert (
        msg(excinfo.value)
        == """
200
        double_threer(): incompatible function arguments. The following argument types are supported:
201
            1. (arg0: numpy.ndarray[numpy.float32[1, 3], flags.writeable]) -> None
202

203
        Invoked with: """
204
205
        + repr(np.array([5.0, 4.0, 3.0], dtype="float32"))
    )
206
207

    with pytest.raises(TypeError) as excinfo:
208
        m.double_threec(second_col)
209
210
211
    assert (
        msg(excinfo.value)
        == """
212
        double_threec(): incompatible function arguments. The following argument types are supported:
213
            1. (arg0: numpy.ndarray[numpy.float32[3, 1], flags.writeable]) -> None
214

215
        Invoked with: """
216
217
        + repr(np.array([7.0, 4.0, 1.0], dtype="float32"))
    )
218
219


Dean Moldovan's avatar
Dean Moldovan committed
220
def test_nonunit_stride_to_python():
221
222
    assert np.all(m.diagonal(ref) == ref.diagonal())
    assert np.all(m.diagonal_1(ref) == ref.diagonal(1))
Dean Moldovan's avatar
Dean Moldovan committed
223
    for i in range(-5, 7):
224
225
226
        assert np.all(
            m.diagonal_n(ref, i) == ref.diagonal(i)
        ), "m.diagonal_n({})".format(i)
Dean Moldovan's avatar
Dean Moldovan committed
227

228
229
230
    assert np.all(m.block(ref, 2, 1, 3, 3) == ref[2:5, 1:4])
    assert np.all(m.block(ref, 1, 4, 4, 2) == ref[1:, 4:])
    assert np.all(m.block(ref, 1, 4, 3, 2) == ref[1:4, 4:])
Dean Moldovan's avatar
Dean Moldovan committed
231
232
233


def test_eigen_ref_to_python():
234
    chols = [m.cholesky1, m.cholesky2, m.cholesky3, m.cholesky4]
Dean Moldovan's avatar
Dean Moldovan committed
235
    for i, chol in enumerate(chols, start=1):
236
237
238
239
        mymat = chol(np.array([[1.0, 2, 4], [2, 13, 23], [4, 23, 77]]))
        assert np.all(
            mymat == np.array([[1, 0, 0], [2, 3, 0], [4, 5, 6]])
        ), "cholesky{}".format(i)
Dean Moldovan's avatar
Dean Moldovan committed
240
241


242
243
244
245
246
247
248
249
250
251
252
253
254
def assign_both(a1, a2, r, c, v):
    a1[r, c] = v
    a2[r, c] = v


def array_copy_but_one(a, r, c, v):
    z = np.array(a, copy=True)
    z[r, c] = v
    return z


def test_eigen_return_references():
    """Tests various ways of returning references and non-referencing copies"""
255

256
    master = np.ones((10, 10))
257
    a = m.ReturnTester()
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
    a_get1 = a.get()
    assert not a_get1.flags.owndata and a_get1.flags.writeable
    assign_both(a_get1, master, 3, 3, 5)
    a_get2 = a.get_ptr()
    assert not a_get2.flags.owndata and a_get2.flags.writeable
    assign_both(a_get1, master, 2, 3, 6)

    a_view1 = a.view()
    assert not a_view1.flags.owndata and not a_view1.flags.writeable
    with pytest.raises(ValueError):
        a_view1[2, 3] = 4
    a_view2 = a.view_ptr()
    assert not a_view2.flags.owndata and not a_view2.flags.writeable
    with pytest.raises(ValueError):
        a_view2[2, 3] = 4

    a_copy1 = a.copy_get()
    assert a_copy1.flags.owndata and a_copy1.flags.writeable
    np.testing.assert_array_equal(a_copy1, master)
    a_copy1[7, 7] = -44  # Shouldn't affect anything else
    c1want = array_copy_but_one(master, 7, 7, -44)
    a_copy2 = a.copy_view()
    assert a_copy2.flags.owndata and a_copy2.flags.writeable
    np.testing.assert_array_equal(a_copy2, master)
    a_copy2[4, 4] = -22  # Shouldn't affect anything else
    c2want = array_copy_but_one(master, 4, 4, -22)

    a_ref1 = a.ref()
    assert not a_ref1.flags.owndata and a_ref1.flags.writeable
    assign_both(a_ref1, master, 1, 1, 15)
    a_ref2 = a.ref_const()
    assert not a_ref2.flags.owndata and not a_ref2.flags.writeable
    with pytest.raises(ValueError):
        a_ref2[5, 5] = 33
    a_ref3 = a.ref_safe()
    assert not a_ref3.flags.owndata and a_ref3.flags.writeable
    assign_both(a_ref3, master, 0, 7, 99)
    a_ref4 = a.ref_const_safe()
    assert not a_ref4.flags.owndata and not a_ref4.flags.writeable
    with pytest.raises(ValueError):
        a_ref4[7, 0] = 987654321

    a_copy3 = a.copy_ref()
    assert a_copy3.flags.owndata and a_copy3.flags.writeable
    np.testing.assert_array_equal(a_copy3, master)
    a_copy3[8, 1] = 11
    c3want = array_copy_but_one(master, 8, 1, 11)
    a_copy4 = a.copy_ref_const()
    assert a_copy4.flags.owndata and a_copy4.flags.writeable
    np.testing.assert_array_equal(a_copy4, master)
    a_copy4[8, 4] = 88
    c4want = array_copy_but_one(master, 8, 4, 88)

    a_block1 = a.block(3, 3, 2, 2)
    assert not a_block1.flags.owndata and a_block1.flags.writeable
    a_block1[0, 0] = 55
    master[3, 3] = 55
    a_block2 = a.block_safe(2, 2, 3, 2)
    assert not a_block2.flags.owndata and a_block2.flags.writeable
    a_block2[2, 1] = -123
    master[4, 3] = -123
    a_block3 = a.block_const(6, 7, 4, 3)
    assert not a_block3.flags.owndata and not a_block3.flags.writeable
    with pytest.raises(ValueError):
        a_block3[2, 2] = -44444

    a_copy5 = a.copy_block(2, 2, 2, 3)
    assert a_copy5.flags.owndata and a_copy5.flags.writeable
    np.testing.assert_array_equal(a_copy5, master[2:4, 2:5])
    a_copy5[1, 1] = 777
    c5want = array_copy_but_one(master[2:4, 2:5], 1, 1, 777)

    a_corn1 = a.corners()
    assert not a_corn1.flags.owndata and a_corn1.flags.writeable
    a_corn1 *= 50
    a_corn1[1, 1] = 999
    master[0, 0] = 50
    master[0, 9] = 50
    master[9, 0] = 50
    master[9, 9] = 999
    a_corn2 = a.corners_const()
    assert not a_corn2.flags.owndata and not a_corn2.flags.writeable
    with pytest.raises(ValueError):
        a_corn2[1, 0] = 51

    # All of the changes made all the way along should be visible everywhere
    # now (except for the copies, of course)
    np.testing.assert_array_equal(a_get1, master)
    np.testing.assert_array_equal(a_get2, master)
    np.testing.assert_array_equal(a_view1, master)
    np.testing.assert_array_equal(a_view2, master)
    np.testing.assert_array_equal(a_ref1, master)
    np.testing.assert_array_equal(a_ref2, master)
    np.testing.assert_array_equal(a_ref3, master)
    np.testing.assert_array_equal(a_ref4, master)
    np.testing.assert_array_equal(a_block1, master[3:5, 3:5])
    np.testing.assert_array_equal(a_block2, master[2:5, 2:4])
    np.testing.assert_array_equal(a_block3, master[6:10, 7:10])
356
357
358
359
360
361
    np.testing.assert_array_equal(
        a_corn1, master[0 :: master.shape[0] - 1, 0 :: master.shape[1] - 1]
    )
    np.testing.assert_array_equal(
        a_corn2, master[0 :: master.shape[0] - 1, 0 :: master.shape[1] - 1]
    )
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385

    np.testing.assert_array_equal(a_copy1, c1want)
    np.testing.assert_array_equal(a_copy2, c2want)
    np.testing.assert_array_equal(a_copy3, c3want)
    np.testing.assert_array_equal(a_copy4, c4want)
    np.testing.assert_array_equal(a_copy5, c5want)


def assert_keeps_alive(cl, method, *args):
    cstats = ConstructorStats.get(cl)
    start_with = cstats.alive()
    a = cl()
    assert cstats.alive() == start_with + 1
    z = method(a, *args)
    assert cstats.alive() == start_with + 1
    del a
    # Here's the keep alive in action:
    assert cstats.alive() == start_with + 1
    del z
    # Keep alive should have expired:
    assert cstats.alive() == start_with


def test_eigen_keepalive():
386
387
    a = m.ReturnTester()
    cstats = ConstructorStats.get(m.ReturnTester)
388
389
    assert cstats.alive() == 1
    unsafe = [a.ref(), a.ref_const(), a.block(1, 2, 3, 4)]
390
391
392
393
394
395
396
    copies = [
        a.copy_get(),
        a.copy_view(),
        a.copy_ref(),
        a.copy_ref_const(),
        a.copy_block(4, 3, 2, 1),
    ]
397
398
399
400
401
    del a
    assert cstats.alive() == 0
    del unsafe
    del copies

402
403
404
405
406
407
408
409
410
411
    for meth in [
        m.ReturnTester.get,
        m.ReturnTester.get_ptr,
        m.ReturnTester.view,
        m.ReturnTester.view_ptr,
        m.ReturnTester.ref_safe,
        m.ReturnTester.ref_const_safe,
        m.ReturnTester.corners,
        m.ReturnTester.corners_const,
    ]:
412
        assert_keeps_alive(m.ReturnTester, meth)
413

414
415
    for meth in [m.ReturnTester.block_safe, m.ReturnTester.block_const]:
        assert_keeps_alive(m.ReturnTester, meth, 4, 3, 2, 1)
416
417
418


def test_eigen_ref_mutators():
419
420
    """Tests Eigen's ability to mutate numpy values"""

421
    orig = np.array([[1.0, 2, 3], [4, 5, 6], [7, 8, 9]])
422
    zr = np.array(orig)
423
    zc = np.array(orig, order="F")
424
    m.add_rm(zr, 1, 0, 100)
425
    assert np.all(zr == np.array([[1.0, 2, 3], [104, 5, 6], [7, 8, 9]]))
426
    m.add_cm(zc, 1, 0, 200)
427
    assert np.all(zc == np.array([[1.0, 2, 3], [204, 5, 6], [7, 8, 9]]))
428

429
    m.add_any(zr, 1, 0, 20)
430
    assert np.all(zr == np.array([[1.0, 2, 3], [124, 5, 6], [7, 8, 9]]))
431
    m.add_any(zc, 1, 0, 10)
432
    assert np.all(zc == np.array([[1.0, 2, 3], [214, 5, 6], [7, 8, 9]]))
433
434
435

    # Can't reference a col-major array with a row-major Ref, and vice versa:
    with pytest.raises(TypeError):
436
        m.add_rm(zc, 1, 0, 1)
437
    with pytest.raises(TypeError):
438
        m.add_cm(zr, 1, 0, 1)
439
440

    # Overloads:
441
442
    m.add1(zr, 1, 0, -100)
    m.add2(zr, 1, 0, -20)
443
    assert np.all(zr == orig)
444
445
    m.add1(zc, 1, 0, -200)
    m.add2(zc, 1, 0, -10)
446
447
448
449
450
451
452
    assert np.all(zc == orig)

    # a non-contiguous slice (this won't work on either the row- or
    # column-contiguous refs, but should work for the any)
    cornersr = zr[0::2, 0::2]
    cornersc = zc[0::2, 0::2]

453
454
    assert np.all(cornersr == np.array([[1.0, 3], [7, 9]]))
    assert np.all(cornersc == np.array([[1.0, 3], [7, 9]]))
455
456

    with pytest.raises(TypeError):
457
        m.add_rm(cornersr, 0, 1, 25)
458
    with pytest.raises(TypeError):
459
        m.add_cm(cornersr, 0, 1, 25)
460
    with pytest.raises(TypeError):
461
        m.add_rm(cornersc, 0, 1, 25)
462
    with pytest.raises(TypeError):
463
464
465
        m.add_cm(cornersc, 0, 1, 25)
    m.add_any(cornersr, 0, 1, 25)
    m.add_any(cornersc, 0, 1, 44)
466
467
    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]]))
468
469
470
471
472

    # You shouldn't be allowed to pass a non-writeable array to a mutating Eigen method:
    zro = zr[0:4, 0:4]
    zro.flags.writeable = False
    with pytest.raises(TypeError):
473
        m.add_rm(zro, 0, 0, 0)
474
    with pytest.raises(TypeError):
475
        m.add_any(zro, 0, 0, 0)
476
    with pytest.raises(TypeError):
477
        m.add1(zro, 0, 0, 0)
478
    with pytest.raises(TypeError):
479
        m.add2(zro, 0, 0, 0)
480
481
482
483

    # integer array shouldn't be passable to a double-matrix-accepting mutating func:
    zi = np.array([[1, 2], [3, 4]])
    with pytest.raises(TypeError):
484
        m.add_rm(zi)
485
486
487
488
489


def test_numpy_ref_mutators():
    """Tests numpy mutating Eigen matrices (for returned Eigen::Ref<...>s)"""

490
491
492
493
494
495
    m.reset_refs()  # In case another test already changed it

    zc = m.get_cm_ref()
    zcro = m.get_cm_const_ref()
    zr = m.get_rm_ref()
    zrro = m.get_rm_const_ref()
496
497
498
499
500
501
502
503
504

    assert [zc[1, 2], zcro[1, 2], zr[1, 2], zrro[1, 2]] == [23] * 4

    assert not zc.flags.owndata and zc.flags.writeable
    assert not zr.flags.owndata and zr.flags.writeable
    assert not zcro.flags.owndata and not zcro.flags.writeable
    assert not zrro.flags.owndata and not zrro.flags.writeable

    zc[1, 2] = 99
505
    expect = np.array([[11.0, 12, 13], [21, 22, 99], [31, 32, 33]])
506
507
508
    # We should have just changed zc, of course, but also zcro and the original eigen matrix
    assert np.all(zc == expect)
    assert np.all(zcro == expect)
509
    assert np.all(m.get_cm_ref() == expect)
510
511
512
513

    zr[1, 2] = 99
    assert np.all(zr == expect)
    assert np.all(zrro == expect)
514
    assert np.all(m.get_rm_ref() == expect)
515
516
517
518
519
520
521
522
523

    # Make sure the readonly ones are numpy-readonly:
    with pytest.raises(ValueError):
        zcro[1, 2] = 6
    with pytest.raises(ValueError):
        zrro[1, 2] = 6

    # We should be able to explicitly copy like this (and since we're copying,
    # the const should drop away)
524
    y1 = np.array(m.get_cm_const_ref())
525
526
527
528
529
530
531
532
533
534
535
536

    assert y1.flags.owndata and y1.flags.writeable
    # We should get copies of the eigen data, which was modified above:
    assert y1[1, 2] == 99
    y1[1, 2] += 12
    assert y1[1, 2] == 111
    assert zc[1, 2] == 99  # Make sure we aren't referencing the original


def test_both_ref_mutators():
    """Tests a complex chain of nested eigen/numpy references"""

537
538
539
    m.reset_refs()  # In case another test already changed it

    z = m.get_cm_ref()  # numpy -> eigen
540
    z[0, 2] -= 3
541
    z2 = m.incr_matrix(z, 1)  # numpy -> eigen -> numpy -> eigen
542
    z2[1, 1] += 6
543
    z3 = m.incr_matrix(z, 2)  # (numpy -> eigen)^3
544
    z3[2, 2] += -5
545
    z4 = m.incr_matrix(z, 3)  # (numpy -> eigen)^4
546
    z4[1, 1] -= 1
547
    z5 = m.incr_matrix(z, 4)  # (numpy -> eigen)^5
548
549
550
551
552
    z5[0, 0] = 0
    assert np.all(z == z2)
    assert np.all(z == z3)
    assert np.all(z == z4)
    assert np.all(z == z5)
553
    expect = np.array([[0.0, 22, 20], [31, 37, 33], [41, 42, 38]])
554
555
    assert np.all(z == expect)

556
    y = np.array(range(100), dtype="float64").reshape(10, 10)
557
    y2 = m.incr_matrix_any(y, 10)  # np -> eigen -> np
558
559
560
    y3 = m.incr_matrix_any(
        y2[0::2, 0::2], -33
    )  # np -> eigen -> np slice -> np -> eigen -> np
561
562
563
    y4 = m.even_rows(y3)  # numpy -> eigen slice -> (... y3)
    y5 = m.even_cols(y4)  # numpy -> eigen slice -> (... y4)
    y6 = m.incr_matrix_any(y5, 1000)  # numpy -> eigen -> (... y5)
564
565

    # Apply same mutations using just numpy:
566
    yexpect = np.array(range(100), dtype="float64").reshape(10, 10)
567
568
569
570
571
572
573
574
575
576
577
578
579
580
    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():
    # get_elem requires a column-contiguous matrix reference, but should be
    # callable with other types of matrix (via copying):
581
582
583
584
585
586
587
588
    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
    )
589
590

    # All should be callable via get_elem:
591
592
593
594
    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
595

596
    # All but the second should fail with m.get_elem_nocopy:
597
    with pytest.raises(TypeError) as excinfo:
598
        m.get_elem_nocopy(int_matrix_colmajor)
599
600
601
    assert "get_elem_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.f_contiguous" in str(excinfo.value)
602
    assert m.get_elem_nocopy(dbl_matrix_colmajor) == 8
603
    with pytest.raises(TypeError) as excinfo:
604
        m.get_elem_nocopy(int_matrix_rowmajor)
605
606
607
    assert "get_elem_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.f_contiguous" in str(excinfo.value)
608
    with pytest.raises(TypeError) as excinfo:
609
        m.get_elem_nocopy(dbl_matrix_rowmajor)
610
611
612
    assert "get_elem_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.f_contiguous" in str(excinfo.value)
613
614
615

    # For the row-major test, we take a long matrix in row-major, so only the third is allowed:
    with pytest.raises(TypeError) as excinfo:
616
        m.get_elem_rm_nocopy(int_matrix_colmajor)
617
618
619
    assert "get_elem_rm_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.c_contiguous" in str(excinfo.value)
620
    with pytest.raises(TypeError) as excinfo:
621
        m.get_elem_rm_nocopy(dbl_matrix_colmajor)
622
623
624
    assert "get_elem_rm_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.c_contiguous" in str(excinfo.value)
625
    assert m.get_elem_rm_nocopy(int_matrix_rowmajor) == 8
626
    with pytest.raises(TypeError) as excinfo:
627
        m.get_elem_rm_nocopy(dbl_matrix_rowmajor)
628
629
630
    assert "get_elem_rm_nocopy(): incompatible function arguments." in str(
        excinfo.value
    ) and ", flags.c_contiguous" in str(excinfo.value)
631
632


633
634
635
636
637
638
639
640
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)
641
    assert m.get_elem_direct(a) == 8
642
643

    list_of_a = [a]
644
    assert m.get_elem_indirect(list_of_a) == 8
645
646


Dean Moldovan's avatar
Dean Moldovan committed
647
def test_special_matrix_objects():
648
    assert np.all(m.incr_diag(7) == np.diag([1.0, 2, 3, 4, 5, 6, 7]))
Dean Moldovan's avatar
Dean Moldovan committed
649

650
    asymm = np.array([[1.0, 2, 3, 4], [5, 6, 7, 8], [9, 10, 11, 12], [13, 14, 15, 16]])
Dean Moldovan's avatar
Dean Moldovan committed
651
652
653
654
655
656
657
    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]

658
659
    assert np.all(m.symmetric_lower(asymm) == symm_lower)
    assert np.all(m.symmetric_upper(asymm) == symm_upper)
Dean Moldovan's avatar
Dean Moldovan committed
660
661
662


def test_dense_signature(doc):
663
664
665
    assert (
        doc(m.double_col)
        == """
666
        double_col(arg0: numpy.ndarray[numpy.float32[m, 1]]) -> numpy.ndarray[numpy.float32[m, 1]]
667
    """
668
669
670
671
    )
    assert (
        doc(m.double_row)
        == """
672
        double_row(arg0: numpy.ndarray[numpy.float32[1, n]]) -> numpy.ndarray[numpy.float32[1, n]]
673
    """
674
675
676
    )
    assert doc(m.double_complex) == (
        """
677
        double_complex(arg0: numpy.ndarray[numpy.complex64[m, 1]])"""
678
679
680
681
682
        """ -> numpy.ndarray[numpy.complex64[m, 1]]
    """
    )
    assert doc(m.double_mat_rm) == (
        """
683
        double_mat_rm(arg0: numpy.ndarray[numpy.float32[m, n]])"""
684
685
686
        """ -> numpy.ndarray[numpy.float32[m, n]]
    """
    )
Dean Moldovan's avatar
Dean Moldovan committed
687
688


689
690
691
692
def test_named_arguments():
    a = np.array([[1.0, 2], [3, 4], [5, 6]])
    b = np.ones((2, 1))

693
694
695
    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]]))
696
697

    with pytest.raises(ValueError) as excinfo:
698
        m.matrix_multiply(b, a)
699
    assert str(excinfo.value) == "Nonconformable matrices!"
700
701

    with pytest.raises(ValueError) as excinfo:
702
        m.matrix_multiply(A=b, B=a)
703
    assert str(excinfo.value) == "Nonconformable matrices!"
704
705

    with pytest.raises(ValueError) as excinfo:
706
        m.matrix_multiply(B=a, A=b)
707
    assert str(excinfo.value) == "Nonconformable matrices!"
708
709


Dean Moldovan's avatar
Dean Moldovan committed
710
def test_sparse():
711
    pytest.importorskip("scipy")
712
713
714
715
716
717
    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()))
Dean Moldovan's avatar
Dean Moldovan committed
718
719
720


def test_sparse_signature(doc):
721
    pytest.importorskip("scipy")
722
723
724
    assert (
        doc(m.sparse_copy_r)
        == """
725
        sparse_copy_r(arg0: scipy.sparse.csr_matrix[numpy.float32]) -> scipy.sparse.csr_matrix[numpy.float32]
726
    """
727
728
729
730
    )
    assert (
        doc(m.sparse_copy_c)
        == """
731
        sparse_copy_c(arg0: scipy.sparse.csc_matrix[numpy.float32]) -> scipy.sparse.csc_matrix[numpy.float32]
732
    """
733
    )
734
735
736


def test_issue738():
737
    """Ignore strides on a length-1 dimension (even if they would be incompatible length > 1)"""
738
739
740
741
742
743
744
745
746
    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]])
    )
747
748


749
750
751
752
753
754
755
756
757
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)))

    # These should still fail (incompatible dimensions):
    with pytest.raises(TypeError) as excinfo:
        m.iss1105_row(np.ones((7, 1)))
758
    assert "incompatible function arguments" in str(excinfo.value)
759
760
    with pytest.raises(TypeError) as excinfo:
        m.iss1105_col(np.ones((1, 7)))
761
    assert "incompatible function arguments" in str(excinfo.value)
762
763


764
765
766
767
def test_custom_operator_new():
    """Using Eigen types as member variables requires a class-specific
    operator new with proper alignment"""

768
    o = m.CustomOperatorNew()
769
770
    np.testing.assert_allclose(o.a, 0.0)
    np.testing.assert_allclose(o.b.diagonal(), 1.0)