translation recovery py test
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from __future__ import print_function
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import numpy as np
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import unittest
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import gtsam
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def SimulateMeasurements(gt_poses, graph_edges):
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measurements = gtsam.BinaryMeasurementsUnit3()
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for edge in graph_edges:
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Ta = gt_poses.atPose3(edge[0]).translation()
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Tb = gt_poses.atPose3(edge[1]).translation()
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measurements.append(BinaryMeasurementUnit3( \
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edge[0], edge[1], gtsam.Unit3(Tb - Ta), \
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gtsam.noiseModel.Isotropic.Sigma(3, 0.01)))
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return measurements
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# Hard-coded values from dubrovnik-3-7-pre.txt
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def ExampleValues():
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T = []
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T.append(gtsam.Point3(np.array([7.3030e-01, -2.6490e-01, -1.7127e+00])))
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T.append(gtsam.Point3(np.array([-1.0590e+00, -3.6017e-02, -1.5720e+00])))
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T.append(gtsam.Point3(np.array([8.5034e+00, 6.7499e+00, -3.6383e+00])))
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data = gtsam.Values()
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for i in range(len(T)):
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data.insert(i, gtsam.Pose3(R[i], T[i]))
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return data
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class TestTranslationRecovery(unittest.TestCase):
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"""Test selected Translation Recovery methods."""
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def test_constructor(self):
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"""Construct from binary measurements."""
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algorithm = gtsam.TranslationRecovery(gtsam.BinaryMeasurementsUnit3())
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self.assertIsInstance(algorithm, gtsam.TranslationRecovery)
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def test_run(self):
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gt_poses = ExampleValues()
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measurements = SimulateMeasurements(gt_poses, [[0, 1], [0, 2], [1, 2]])
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algorithm = gtsam.TranslationRecovery(measurements)
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result = algorithm.run(2.0)
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for i in range(3):
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self.gtsamAssertEquals(result.atPoint3(i), 2*gt_poses.atPose3(i).translation(), 1e-6)
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if __name__ == "__main__":
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unittest.main()
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