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537 lines
17 KiB
537 lines
17 KiB
"""Tests for laguerre module.
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"""
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from functools import reduce
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import numpy as np
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import numpy.polynomial.laguerre as lag
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from numpy.polynomial.polynomial import polyval
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from numpy.testing import (
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assert_almost_equal, assert_raises, assert_equal, assert_,
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)
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L0 = np.array([1])/1
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L1 = np.array([1, -1])/1
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L2 = np.array([2, -4, 1])/2
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L3 = np.array([6, -18, 9, -1])/6
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L4 = np.array([24, -96, 72, -16, 1])/24
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L5 = np.array([120, -600, 600, -200, 25, -1])/120
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L6 = np.array([720, -4320, 5400, -2400, 450, -36, 1])/720
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Llist = [L0, L1, L2, L3, L4, L5, L6]
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def trim(x):
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return lag.lagtrim(x, tol=1e-6)
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class TestConstants:
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def test_lagdomain(self):
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assert_equal(lag.lagdomain, [0, 1])
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def test_lagzero(self):
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assert_equal(lag.lagzero, [0])
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def test_lagone(self):
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assert_equal(lag.lagone, [1])
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def test_lagx(self):
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assert_equal(lag.lagx, [1, -1])
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class TestArithmetic:
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x = np.linspace(-3, 3, 100)
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def test_lagadd(self):
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for i in range(5):
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for j in range(5):
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msg = f"At i={i}, j={j}"
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tgt = np.zeros(max(i, j) + 1)
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tgt[i] += 1
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tgt[j] += 1
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res = lag.lagadd([0]*i + [1], [0]*j + [1])
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assert_equal(trim(res), trim(tgt), err_msg=msg)
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def test_lagsub(self):
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for i in range(5):
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for j in range(5):
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msg = f"At i={i}, j={j}"
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tgt = np.zeros(max(i, j) + 1)
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tgt[i] += 1
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tgt[j] -= 1
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res = lag.lagsub([0]*i + [1], [0]*j + [1])
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assert_equal(trim(res), trim(tgt), err_msg=msg)
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def test_lagmulx(self):
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assert_equal(lag.lagmulx([0]), [0])
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assert_equal(lag.lagmulx([1]), [1, -1])
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for i in range(1, 5):
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ser = [0]*i + [1]
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tgt = [0]*(i - 1) + [-i, 2*i + 1, -(i + 1)]
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assert_almost_equal(lag.lagmulx(ser), tgt)
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def test_lagmul(self):
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# check values of result
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for i in range(5):
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pol1 = [0]*i + [1]
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val1 = lag.lagval(self.x, pol1)
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for j in range(5):
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msg = f"At i={i}, j={j}"
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pol2 = [0]*j + [1]
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val2 = lag.lagval(self.x, pol2)
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pol3 = lag.lagmul(pol1, pol2)
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val3 = lag.lagval(self.x, pol3)
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assert_(len(pol3) == i + j + 1, msg)
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assert_almost_equal(val3, val1*val2, err_msg=msg)
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def test_lagdiv(self):
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for i in range(5):
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for j in range(5):
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msg = f"At i={i}, j={j}"
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ci = [0]*i + [1]
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cj = [0]*j + [1]
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tgt = lag.lagadd(ci, cj)
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quo, rem = lag.lagdiv(tgt, ci)
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res = lag.lagadd(lag.lagmul(quo, ci), rem)
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assert_almost_equal(trim(res), trim(tgt), err_msg=msg)
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def test_lagpow(self):
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for i in range(5):
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for j in range(5):
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msg = f"At i={i}, j={j}"
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c = np.arange(i + 1)
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tgt = reduce(lag.lagmul, [c]*j, np.array([1]))
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res = lag.lagpow(c, j)
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assert_equal(trim(res), trim(tgt), err_msg=msg)
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class TestEvaluation:
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# coefficients of 1 + 2*x + 3*x**2
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c1d = np.array([9., -14., 6.])
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c2d = np.einsum('i,j->ij', c1d, c1d)
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c3d = np.einsum('i,j,k->ijk', c1d, c1d, c1d)
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# some random values in [-1, 1)
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x = np.random.random((3, 5))*2 - 1
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y = polyval(x, [1., 2., 3.])
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def test_lagval(self):
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#check empty input
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assert_equal(lag.lagval([], [1]).size, 0)
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#check normal input)
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x = np.linspace(-1, 1)
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y = [polyval(x, c) for c in Llist]
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for i in range(7):
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msg = f"At i={i}"
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tgt = y[i]
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res = lag.lagval(x, [0]*i + [1])
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assert_almost_equal(res, tgt, err_msg=msg)
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#check that shape is preserved
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for i in range(3):
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dims = [2]*i
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x = np.zeros(dims)
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assert_equal(lag.lagval(x, [1]).shape, dims)
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assert_equal(lag.lagval(x, [1, 0]).shape, dims)
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assert_equal(lag.lagval(x, [1, 0, 0]).shape, dims)
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def test_lagval2d(self):
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x1, x2, x3 = self.x
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y1, y2, y3 = self.y
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#test exceptions
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assert_raises(ValueError, lag.lagval2d, x1, x2[:2], self.c2d)
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#test values
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tgt = y1*y2
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res = lag.lagval2d(x1, x2, self.c2d)
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assert_almost_equal(res, tgt)
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#test shape
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z = np.ones((2, 3))
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res = lag.lagval2d(z, z, self.c2d)
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assert_(res.shape == (2, 3))
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def test_lagval3d(self):
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x1, x2, x3 = self.x
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y1, y2, y3 = self.y
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#test exceptions
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assert_raises(ValueError, lag.lagval3d, x1, x2, x3[:2], self.c3d)
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#test values
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tgt = y1*y2*y3
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res = lag.lagval3d(x1, x2, x3, self.c3d)
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assert_almost_equal(res, tgt)
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#test shape
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z = np.ones((2, 3))
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res = lag.lagval3d(z, z, z, self.c3d)
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assert_(res.shape == (2, 3))
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def test_laggrid2d(self):
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x1, x2, x3 = self.x
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y1, y2, y3 = self.y
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#test values
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tgt = np.einsum('i,j->ij', y1, y2)
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res = lag.laggrid2d(x1, x2, self.c2d)
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assert_almost_equal(res, tgt)
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#test shape
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z = np.ones((2, 3))
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res = lag.laggrid2d(z, z, self.c2d)
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assert_(res.shape == (2, 3)*2)
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def test_laggrid3d(self):
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x1, x2, x3 = self.x
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y1, y2, y3 = self.y
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#test values
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tgt = np.einsum('i,j,k->ijk', y1, y2, y3)
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res = lag.laggrid3d(x1, x2, x3, self.c3d)
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assert_almost_equal(res, tgt)
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#test shape
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z = np.ones((2, 3))
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res = lag.laggrid3d(z, z, z, self.c3d)
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assert_(res.shape == (2, 3)*3)
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class TestIntegral:
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def test_lagint(self):
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# check exceptions
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assert_raises(TypeError, lag.lagint, [0], .5)
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assert_raises(ValueError, lag.lagint, [0], -1)
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assert_raises(ValueError, lag.lagint, [0], 1, [0, 0])
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assert_raises(ValueError, lag.lagint, [0], lbnd=[0])
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assert_raises(ValueError, lag.lagint, [0], scl=[0])
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assert_raises(TypeError, lag.lagint, [0], axis=.5)
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# test integration of zero polynomial
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for i in range(2, 5):
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k = [0]*(i - 2) + [1]
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res = lag.lagint([0], m=i, k=k)
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assert_almost_equal(res, [1, -1])
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# check single integration with integration constant
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for i in range(5):
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scl = i + 1
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pol = [0]*i + [1]
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tgt = [i] + [0]*i + [1/scl]
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lagpol = lag.poly2lag(pol)
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lagint = lag.lagint(lagpol, m=1, k=[i])
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res = lag.lag2poly(lagint)
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assert_almost_equal(trim(res), trim(tgt))
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# check single integration with integration constant and lbnd
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for i in range(5):
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scl = i + 1
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pol = [0]*i + [1]
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lagpol = lag.poly2lag(pol)
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lagint = lag.lagint(lagpol, m=1, k=[i], lbnd=-1)
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assert_almost_equal(lag.lagval(-1, lagint), i)
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# check single integration with integration constant and scaling
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for i in range(5):
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scl = i + 1
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pol = [0]*i + [1]
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tgt = [i] + [0]*i + [2/scl]
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lagpol = lag.poly2lag(pol)
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lagint = lag.lagint(lagpol, m=1, k=[i], scl=2)
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res = lag.lag2poly(lagint)
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assert_almost_equal(trim(res), trim(tgt))
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# check multiple integrations with default k
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for i in range(5):
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for j in range(2, 5):
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pol = [0]*i + [1]
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tgt = pol[:]
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for k in range(j):
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tgt = lag.lagint(tgt, m=1)
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res = lag.lagint(pol, m=j)
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assert_almost_equal(trim(res), trim(tgt))
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# check multiple integrations with defined k
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for i in range(5):
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for j in range(2, 5):
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pol = [0]*i + [1]
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tgt = pol[:]
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for k in range(j):
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tgt = lag.lagint(tgt, m=1, k=[k])
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res = lag.lagint(pol, m=j, k=list(range(j)))
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assert_almost_equal(trim(res), trim(tgt))
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# check multiple integrations with lbnd
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for i in range(5):
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for j in range(2, 5):
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pol = [0]*i + [1]
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tgt = pol[:]
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for k in range(j):
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tgt = lag.lagint(tgt, m=1, k=[k], lbnd=-1)
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res = lag.lagint(pol, m=j, k=list(range(j)), lbnd=-1)
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assert_almost_equal(trim(res), trim(tgt))
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# check multiple integrations with scaling
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for i in range(5):
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for j in range(2, 5):
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pol = [0]*i + [1]
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tgt = pol[:]
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for k in range(j):
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tgt = lag.lagint(tgt, m=1, k=[k], scl=2)
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res = lag.lagint(pol, m=j, k=list(range(j)), scl=2)
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assert_almost_equal(trim(res), trim(tgt))
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def test_lagint_axis(self):
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# check that axis keyword works
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c2d = np.random.random((3, 4))
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tgt = np.vstack([lag.lagint(c) for c in c2d.T]).T
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res = lag.lagint(c2d, axis=0)
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assert_almost_equal(res, tgt)
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tgt = np.vstack([lag.lagint(c) for c in c2d])
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res = lag.lagint(c2d, axis=1)
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assert_almost_equal(res, tgt)
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tgt = np.vstack([lag.lagint(c, k=3) for c in c2d])
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res = lag.lagint(c2d, k=3, axis=1)
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assert_almost_equal(res, tgt)
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class TestDerivative:
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def test_lagder(self):
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# check exceptions
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assert_raises(TypeError, lag.lagder, [0], .5)
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assert_raises(ValueError, lag.lagder, [0], -1)
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# check that zeroth derivative does nothing
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for i in range(5):
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tgt = [0]*i + [1]
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res = lag.lagder(tgt, m=0)
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assert_equal(trim(res), trim(tgt))
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# check that derivation is the inverse of integration
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for i in range(5):
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for j in range(2, 5):
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tgt = [0]*i + [1]
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res = lag.lagder(lag.lagint(tgt, m=j), m=j)
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assert_almost_equal(trim(res), trim(tgt))
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# check derivation with scaling
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for i in range(5):
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for j in range(2, 5):
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tgt = [0]*i + [1]
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res = lag.lagder(lag.lagint(tgt, m=j, scl=2), m=j, scl=.5)
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assert_almost_equal(trim(res), trim(tgt))
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def test_lagder_axis(self):
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# check that axis keyword works
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c2d = np.random.random((3, 4))
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tgt = np.vstack([lag.lagder(c) for c in c2d.T]).T
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res = lag.lagder(c2d, axis=0)
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assert_almost_equal(res, tgt)
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tgt = np.vstack([lag.lagder(c) for c in c2d])
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res = lag.lagder(c2d, axis=1)
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assert_almost_equal(res, tgt)
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class TestVander:
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# some random values in [-1, 1)
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x = np.random.random((3, 5))*2 - 1
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def test_lagvander(self):
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# check for 1d x
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x = np.arange(3)
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v = lag.lagvander(x, 3)
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assert_(v.shape == (3, 4))
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for i in range(4):
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coef = [0]*i + [1]
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assert_almost_equal(v[..., i], lag.lagval(x, coef))
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# check for 2d x
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x = np.array([[1, 2], [3, 4], [5, 6]])
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v = lag.lagvander(x, 3)
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assert_(v.shape == (3, 2, 4))
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for i in range(4):
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coef = [0]*i + [1]
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assert_almost_equal(v[..., i], lag.lagval(x, coef))
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def test_lagvander2d(self):
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# also tests lagval2d for non-square coefficient array
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x1, x2, x3 = self.x
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c = np.random.random((2, 3))
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van = lag.lagvander2d(x1, x2, [1, 2])
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tgt = lag.lagval2d(x1, x2, c)
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res = np.dot(van, c.flat)
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assert_almost_equal(res, tgt)
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# check shape
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van = lag.lagvander2d([x1], [x2], [1, 2])
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assert_(van.shape == (1, 5, 6))
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def test_lagvander3d(self):
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# also tests lagval3d for non-square coefficient array
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x1, x2, x3 = self.x
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c = np.random.random((2, 3, 4))
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van = lag.lagvander3d(x1, x2, x3, [1, 2, 3])
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tgt = lag.lagval3d(x1, x2, x3, c)
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res = np.dot(van, c.flat)
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assert_almost_equal(res, tgt)
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# check shape
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van = lag.lagvander3d([x1], [x2], [x3], [1, 2, 3])
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assert_(van.shape == (1, 5, 24))
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class TestFitting:
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def test_lagfit(self):
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def f(x):
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return x*(x - 1)*(x - 2)
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# Test exceptions
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assert_raises(ValueError, lag.lagfit, [1], [1], -1)
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assert_raises(TypeError, lag.lagfit, [[1]], [1], 0)
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assert_raises(TypeError, lag.lagfit, [], [1], 0)
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assert_raises(TypeError, lag.lagfit, [1], [[[1]]], 0)
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assert_raises(TypeError, lag.lagfit, [1, 2], [1], 0)
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assert_raises(TypeError, lag.lagfit, [1], [1, 2], 0)
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assert_raises(TypeError, lag.lagfit, [1], [1], 0, w=[[1]])
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assert_raises(TypeError, lag.lagfit, [1], [1], 0, w=[1, 1])
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assert_raises(ValueError, lag.lagfit, [1], [1], [-1,])
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assert_raises(ValueError, lag.lagfit, [1], [1], [2, -1, 6])
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assert_raises(TypeError, lag.lagfit, [1], [1], [])
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# Test fit
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x = np.linspace(0, 2)
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y = f(x)
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#
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coef3 = lag.lagfit(x, y, 3)
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assert_equal(len(coef3), 4)
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assert_almost_equal(lag.lagval(x, coef3), y)
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coef3 = lag.lagfit(x, y, [0, 1, 2, 3])
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assert_equal(len(coef3), 4)
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assert_almost_equal(lag.lagval(x, coef3), y)
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#
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coef4 = lag.lagfit(x, y, 4)
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assert_equal(len(coef4), 5)
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assert_almost_equal(lag.lagval(x, coef4), y)
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coef4 = lag.lagfit(x, y, [0, 1, 2, 3, 4])
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assert_equal(len(coef4), 5)
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assert_almost_equal(lag.lagval(x, coef4), y)
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#
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coef2d = lag.lagfit(x, np.array([y, y]).T, 3)
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assert_almost_equal(coef2d, np.array([coef3, coef3]).T)
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coef2d = lag.lagfit(x, np.array([y, y]).T, [0, 1, 2, 3])
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assert_almost_equal(coef2d, np.array([coef3, coef3]).T)
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# test weighting
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w = np.zeros_like(x)
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yw = y.copy()
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w[1::2] = 1
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y[0::2] = 0
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wcoef3 = lag.lagfit(x, yw, 3, w=w)
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assert_almost_equal(wcoef3, coef3)
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wcoef3 = lag.lagfit(x, yw, [0, 1, 2, 3], w=w)
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assert_almost_equal(wcoef3, coef3)
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#
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wcoef2d = lag.lagfit(x, np.array([yw, yw]).T, 3, w=w)
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assert_almost_equal(wcoef2d, np.array([coef3, coef3]).T)
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wcoef2d = lag.lagfit(x, np.array([yw, yw]).T, [0, 1, 2, 3], w=w)
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assert_almost_equal(wcoef2d, np.array([coef3, coef3]).T)
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# test scaling with complex values x points whose square
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# is zero when summed.
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x = [1, 1j, -1, -1j]
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assert_almost_equal(lag.lagfit(x, x, 1), [1, -1])
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assert_almost_equal(lag.lagfit(x, x, [0, 1]), [1, -1])
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|
|
|
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class TestCompanion:
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|
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def test_raises(self):
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assert_raises(ValueError, lag.lagcompanion, [])
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assert_raises(ValueError, lag.lagcompanion, [1])
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|
|
|
def test_dimensions(self):
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for i in range(1, 5):
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coef = [0]*i + [1]
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assert_(lag.lagcompanion(coef).shape == (i, i))
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|
|
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def test_linear_root(self):
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assert_(lag.lagcompanion([1, 2])[0, 0] == 1.5)
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|
|
|
|
|
class TestGauss:
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|
|
|
def test_100(self):
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|
x, w = lag.laggauss(100)
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|
|
|
# test orthogonality. Note that the results need to be normalized,
|
|
# otherwise the huge values that can arise from fast growing
|
|
# functions like Laguerre can be very confusing.
|
|
v = lag.lagvander(x, 99)
|
|
vv = np.dot(v.T * w, v)
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|
vd = 1/np.sqrt(vv.diagonal())
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|
vv = vd[:, None] * vv * vd
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|
assert_almost_equal(vv, np.eye(100))
|
|
|
|
# check that the integral of 1 is correct
|
|
tgt = 1.0
|
|
assert_almost_equal(w.sum(), tgt)
|
|
|
|
|
|
class TestMisc:
|
|
|
|
def test_lagfromroots(self):
|
|
res = lag.lagfromroots([])
|
|
assert_almost_equal(trim(res), [1])
|
|
for i in range(1, 5):
|
|
roots = np.cos(np.linspace(-np.pi, 0, 2*i + 1)[1::2])
|
|
pol = lag.lagfromroots(roots)
|
|
res = lag.lagval(roots, pol)
|
|
tgt = 0
|
|
assert_(len(pol) == i + 1)
|
|
assert_almost_equal(lag.lag2poly(pol)[-1], 1)
|
|
assert_almost_equal(res, tgt)
|
|
|
|
def test_lagroots(self):
|
|
assert_almost_equal(lag.lagroots([1]), [])
|
|
assert_almost_equal(lag.lagroots([0, 1]), [1])
|
|
for i in range(2, 5):
|
|
tgt = np.linspace(0, 3, i)
|
|
res = lag.lagroots(lag.lagfromroots(tgt))
|
|
assert_almost_equal(trim(res), trim(tgt))
|
|
|
|
def test_lagtrim(self):
|
|
coef = [2, -1, 1, 0]
|
|
|
|
# Test exceptions
|
|
assert_raises(ValueError, lag.lagtrim, coef, -1)
|
|
|
|
# Test results
|
|
assert_equal(lag.lagtrim(coef), coef[:-1])
|
|
assert_equal(lag.lagtrim(coef, 1), coef[:-3])
|
|
assert_equal(lag.lagtrim(coef, 2), [0])
|
|
|
|
def test_lagline(self):
|
|
assert_equal(lag.lagline(3, 4), [7, -4])
|
|
|
|
def test_lag2poly(self):
|
|
for i in range(7):
|
|
assert_almost_equal(lag.lag2poly([0]*i + [1]), Llist[i])
|
|
|
|
def test_poly2lag(self):
|
|
for i in range(7):
|
|
assert_almost_equal(lag.poly2lag(Llist[i]), [0]*i + [1])
|
|
|
|
def test_weight(self):
|
|
x = np.linspace(0, 10, 11)
|
|
tgt = np.exp(-x)
|
|
res = lag.lagweight(x)
|
|
assert_almost_equal(res, tgt)
|
|
|