minor
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bin/test.py
37
bin/test.py
@ -1,11 +1,11 @@
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#!/usr/bin/env python
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#!/usr/bin/env python
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import sys
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import sys
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from grid.DDD import random_grid
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from interp.grid.DDD import random_grid
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from baker import get_phis_3D, run_baker_3D
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from interp.baker import get_phis, run_baker
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from baker.tools import smblog
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from interp.tools import log
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from baker.tools import exact_func_3D, smberror, improved_answer
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from interp.tools import exact_func_3D, improved_answer
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from grid.simplex import contains
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from interp.grid.simplex import contains
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try:
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try:
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total_points = int(sys.argv[1])
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total_points = int(sys.argv[1])
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@ -13,7 +13,7 @@ except:
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total_points = 20
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total_points = 20
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smblog.info(total_points)
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log.info(total_points)
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g = random_grid(total_points)
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g = random_grid(total_points)
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open('/tmp/for_qhull.txt', 'w').write(g.for_qhull())
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open('/tmp/for_qhull.txt', 'w').write(g.for_qhull())
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@ -21,25 +21,26 @@ open('/tmp/for_qhull.txt', 'w').write(g.for_qhull())
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X = [0.5, 0.3, 0.4]
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X = [0.5, 0.3, 0.4]
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R, S = g.get_simplex_and_nearest_points(X, extra_points = 6, simplex_size=4)
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R, S = g.get_simplex_and_nearest_points(X, extra_points = 6, simplex_size=4)
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smblog.info("Containing Simplex: %s" % contains(X, R.points))
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sys.exit()
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log.info("Containing Simplex: %s" % contains(X, R.points))
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exact = exact_func_3D(X)
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exact = exact_func_3D(X)
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smblog.info("exact solution: %0.6f" % exact)
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log.info("exact solution: %0.6f" % exact)
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phis = get_phis_3D(X, R.points)
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phis = get_phis(X, R.points)
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smblog.info("phi values (should all be positive): %s %s" % (phis, sum(phis)))
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log.info("phi values (should all be positive): %s %s" % (phis, sum(phis)))
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if [i for i in phis if i < 0.0]:
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if [i for i in phis if i < 0.0]:
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smblog.error("problems")
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log.error("problems")
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try:
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try:
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r = run_baker_3D(X, R, S)
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r = run_baker(X, R, S)
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smblog.info("run_baker manual: %s" % improved_answer(r, exact))
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log.info("run_baker manual: %s" % improved_answer(r, exact))
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except smberror as e:
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except Exception as e:
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smblog.error(e)
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log.error(e)
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try:
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try:
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answer = g.run_baker(X)
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answer = g.run_baker(X)
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smblog.info("run_baker from grid: %s" % improved_answer(answer, exact))
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log.info("run_baker from grid: %s" % improved_answer(answer, exact))
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except smberror as e:
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except Exception as e:
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smblog.error(e)
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log.error(e)
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@ -75,21 +75,19 @@ def get_phis(X, R):
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def qlinear(X, R):
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def qlinear(X, R):
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"""
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"""
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this calculates the linear portion of q from X to R
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this calculates the linear portion of q from R to X
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also, this is baker eq 3
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also, this is baker eq 3
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X = destination point
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X = destination point
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R = simplex points
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R = simplex points
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q = CFD quantities of interest at the simplex points
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q = quantity of interest at the simplex points
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"""
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"""
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phis = get_phis(X, R.verts)
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phis = get_phis(X, R.verts)
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qlin = np.sum([q_i * phi_i for q_i, phi_i in zip(R.q, phis)])
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qlin = np.sum([q_i * phi_i for q_i, phi_i in zip(R.q, phis)])
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return phis, qlin
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return phis, qlin
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qlinear_3D = qlinear
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def get_error(phi, R, S, order = 2):
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def get_error(phi, R, S, order = 2):
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log.debug("len(phi): %d"% len(phi))
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log.debug("len(phi): %d"% len(phi))
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B = [] # baker eq 9
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B = [] # baker eq 9
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@ -150,6 +148,7 @@ def run_baker(X, R, S, order=2):
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S = extra points
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S = extra points
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"""
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"""
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log.debug("order = %d" % order)
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log.debug("order = %d" % order)
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log.debug("extra points = %d" % len(S.verts))
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answer = {
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answer = {
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'qlin': None,
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'qlin': None,
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9
setup.py
9
setup.py
@ -4,15 +4,20 @@ from setuptools import setup, find_packages
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setup(
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setup(
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name = 'smbinterp',
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name = 'smbinterp',
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version = '0.01',
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version = '0.02',
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packages = find_packages(),
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packages = find_packages(),
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install_requires = [
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install_requires = [
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'numpy',
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'numpy',
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'scipy',
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'scipy',
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'Delny',
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],
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],
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# entry_points = {'console_scripts': ['booze = baker.booze:main',]},
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author = "Stephen M. McQuay",
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author = "Stephen M. McQuay",
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author_email = "stephen@mcquay.me",
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author_email = "stephen@mcquay.me",
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url = "https://mcquay.me/hg/research",
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url = "https://mcquay.me/hg/research",
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license = "GPL",
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license = "GPL",
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# entry_points = {'console_scripts': ['booze = baker.booze:main',]},
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)
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)
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@ -37,8 +37,6 @@ class TestSequenceFunctions(unittest.TestCase):
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self.exact = exact_func(self.X)
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self.exact = exact_func(self.X)
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self.accuracy = 8
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def test_R_contains_X(self):
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def test_R_contains_X(self):
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self.assertTrue(contains(self.X, self.R.verts))
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self.assertTrue(contains(self.X, self.R.verts))
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