test_helper.py 6.0 KB

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  1. """Test functions for fftpack.helper module
  2. Copied from fftpack.helper by Pearu Peterson, October 2005
  3. """
  4. import numpy as np
  5. from numpy.testing import assert_array_almost_equal
  6. from numpy import fft, pi
  7. class TestFFTShift:
  8. def test_definition(self):
  9. x = [0, 1, 2, 3, 4, -4, -3, -2, -1]
  10. y = [-4, -3, -2, -1, 0, 1, 2, 3, 4]
  11. assert_array_almost_equal(fft.fftshift(x), y)
  12. assert_array_almost_equal(fft.ifftshift(y), x)
  13. x = [0, 1, 2, 3, 4, -5, -4, -3, -2, -1]
  14. y = [-5, -4, -3, -2, -1, 0, 1, 2, 3, 4]
  15. assert_array_almost_equal(fft.fftshift(x), y)
  16. assert_array_almost_equal(fft.ifftshift(y), x)
  17. def test_inverse(self):
  18. for n in [1, 4, 9, 100, 211]:
  19. x = np.random.random((n,))
  20. assert_array_almost_equal(fft.ifftshift(fft.fftshift(x)), x)
  21. def test_axes_keyword(self):
  22. freqs = [[0, 1, 2], [3, 4, -4], [-3, -2, -1]]
  23. shifted = [[-1, -3, -2], [2, 0, 1], [-4, 3, 4]]
  24. assert_array_almost_equal(fft.fftshift(freqs, axes=(0, 1)), shifted)
  25. assert_array_almost_equal(fft.fftshift(freqs, axes=0),
  26. fft.fftshift(freqs, axes=(0,)))
  27. assert_array_almost_equal(fft.ifftshift(shifted, axes=(0, 1)), freqs)
  28. assert_array_almost_equal(fft.ifftshift(shifted, axes=0),
  29. fft.ifftshift(shifted, axes=(0,)))
  30. assert_array_almost_equal(fft.fftshift(freqs), shifted)
  31. assert_array_almost_equal(fft.ifftshift(shifted), freqs)
  32. def test_uneven_dims(self):
  33. """ Test 2D input, which has uneven dimension sizes """
  34. freqs = [
  35. [0, 1],
  36. [2, 3],
  37. [4, 5]
  38. ]
  39. # shift in dimension 0
  40. shift_dim0 = [
  41. [4, 5],
  42. [0, 1],
  43. [2, 3]
  44. ]
  45. assert_array_almost_equal(fft.fftshift(freqs, axes=0), shift_dim0)
  46. assert_array_almost_equal(fft.ifftshift(shift_dim0, axes=0), freqs)
  47. assert_array_almost_equal(fft.fftshift(freqs, axes=(0,)), shift_dim0)
  48. assert_array_almost_equal(fft.ifftshift(shift_dim0, axes=[0]), freqs)
  49. # shift in dimension 1
  50. shift_dim1 = [
  51. [1, 0],
  52. [3, 2],
  53. [5, 4]
  54. ]
  55. assert_array_almost_equal(fft.fftshift(freqs, axes=1), shift_dim1)
  56. assert_array_almost_equal(fft.ifftshift(shift_dim1, axes=1), freqs)
  57. # shift in both dimensions
  58. shift_dim_both = [
  59. [5, 4],
  60. [1, 0],
  61. [3, 2]
  62. ]
  63. assert_array_almost_equal(fft.fftshift(freqs, axes=(0, 1)), shift_dim_both)
  64. assert_array_almost_equal(fft.ifftshift(shift_dim_both, axes=(0, 1)), freqs)
  65. assert_array_almost_equal(fft.fftshift(freqs, axes=[0, 1]), shift_dim_both)
  66. assert_array_almost_equal(fft.ifftshift(shift_dim_both, axes=[0, 1]), freqs)
  67. # axes=None (default) shift in all dimensions
  68. assert_array_almost_equal(fft.fftshift(freqs, axes=None), shift_dim_both)
  69. assert_array_almost_equal(fft.ifftshift(shift_dim_both, axes=None), freqs)
  70. assert_array_almost_equal(fft.fftshift(freqs), shift_dim_both)
  71. assert_array_almost_equal(fft.ifftshift(shift_dim_both), freqs)
  72. def test_equal_to_original(self):
  73. """ Test that the new (>=v1.15) implementation (see #10073) is equal to the original (<=v1.14) """
  74. from numpy.core import asarray, concatenate, arange, take
  75. def original_fftshift(x, axes=None):
  76. """ How fftshift was implemented in v1.14"""
  77. tmp = asarray(x)
  78. ndim = tmp.ndim
  79. if axes is None:
  80. axes = list(range(ndim))
  81. elif isinstance(axes, int):
  82. axes = (axes,)
  83. y = tmp
  84. for k in axes:
  85. n = tmp.shape[k]
  86. p2 = (n + 1) // 2
  87. mylist = concatenate((arange(p2, n), arange(p2)))
  88. y = take(y, mylist, k)
  89. return y
  90. def original_ifftshift(x, axes=None):
  91. """ How ifftshift was implemented in v1.14 """
  92. tmp = asarray(x)
  93. ndim = tmp.ndim
  94. if axes is None:
  95. axes = list(range(ndim))
  96. elif isinstance(axes, int):
  97. axes = (axes,)
  98. y = tmp
  99. for k in axes:
  100. n = tmp.shape[k]
  101. p2 = n - (n + 1) // 2
  102. mylist = concatenate((arange(p2, n), arange(p2)))
  103. y = take(y, mylist, k)
  104. return y
  105. # create possible 2d array combinations and try all possible keywords
  106. # compare output to original functions
  107. for i in range(16):
  108. for j in range(16):
  109. for axes_keyword in [0, 1, None, (0,), (0, 1)]:
  110. inp = np.random.rand(i, j)
  111. assert_array_almost_equal(fft.fftshift(inp, axes_keyword),
  112. original_fftshift(inp, axes_keyword))
  113. assert_array_almost_equal(fft.ifftshift(inp, axes_keyword),
  114. original_ifftshift(inp, axes_keyword))
  115. class TestFFTFreq:
  116. def test_definition(self):
  117. x = [0, 1, 2, 3, 4, -4, -3, -2, -1]
  118. assert_array_almost_equal(9*fft.fftfreq(9), x)
  119. assert_array_almost_equal(9*pi*fft.fftfreq(9, pi), x)
  120. x = [0, 1, 2, 3, 4, -5, -4, -3, -2, -1]
  121. assert_array_almost_equal(10*fft.fftfreq(10), x)
  122. assert_array_almost_equal(10*pi*fft.fftfreq(10, pi), x)
  123. class TestRFFTFreq:
  124. def test_definition(self):
  125. x = [0, 1, 2, 3, 4]
  126. assert_array_almost_equal(9*fft.rfftfreq(9), x)
  127. assert_array_almost_equal(9*pi*fft.rfftfreq(9, pi), x)
  128. x = [0, 1, 2, 3, 4, 5]
  129. assert_array_almost_equal(10*fft.rfftfreq(10), x)
  130. assert_array_almost_equal(10*pi*fft.rfftfreq(10, pi), x)
  131. class TestIRFFTN:
  132. def test_not_last_axis_success(self):
  133. ar, ai = np.random.random((2, 16, 8, 32))
  134. a = ar + 1j*ai
  135. axes = (-2,)
  136. # Should not raise error
  137. fft.irfftn(a, axes=axes)