fix: get_abs_location partial
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commit
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17
nhf/test.py
17
nhf/test.py
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@ -163,5 +163,22 @@ class TestUtils(unittest.TestCase):
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self.assertAlmostEqual(bbox.ylen, 15)
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self.assertAlmostEqual(bbox.zlen, 5)
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def test_abs_location(self):
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box = Cq.Solid.makeBox(1, 1, 1)
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assembly = (
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Cq.Assembly()
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.add(box, name="b1")
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.add(box, name="b2", loc=Cq.Location((0,0,1)))
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.add(box, name="b3", loc=Cq.Location((0,0,2)))
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)
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(x, y, z), _ = assembly.get_abs_location("b2@faces@>Y").toTuple()
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self.assertAlmostEqual(x, 0.5)
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self.assertAlmostEqual(y, 1)
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self.assertAlmostEqual(z, 1.5)
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(rx, ry, rz), _ = assembly.get_abs_direction("b2@faces@>Y").toTuple()
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self.assertAlmostEqual(rx, 0)
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self.assertAlmostEqual(ry, 1)
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self.assertAlmostEqual(rz, 0)
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if __name__ == '__main__':
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unittest.main()
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@ -30,7 +30,7 @@ class TestJoints(unittest.TestCase):
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Tests the arm radius
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"""
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j = MJ.ShoulderJoint()
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for deflection in [0, 40, 95, 120]:
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for deflection in [0, 40, j.angle_max_deflection]:
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with self.subTest(deflection=deflection):
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a = j.assembly(deflection=deflection)
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# Axle
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31
nhf/utils.py
31
nhf/utils.py
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@ -1,9 +1,10 @@
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"""
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Utility functions for cadquery objects
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"""
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import math
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import functools
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import math
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import cadquery as Cq
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from cadquery.occ_impl.solver import ConstraintSpec
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from nhf import Role
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from typing import Union, Tuple, cast
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from nhf.materials import KEY_ITEM, KEY_MATERIAL
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@ -198,14 +199,40 @@ Cq.Assembly.markPlane = mark_plane
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def get_abs_location(self: Cq.Assembly,
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tag: str) -> Cq.Location:
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"""
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Gets the location of a tag
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BUG: Currently bugged. See `nhf/test.py` for example
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"""
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name, shape = self._query(tag)
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loc_self = shape.location()
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loc_self = Cq.Location(shape.Center())
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loc_parent, _ = self._subloc(name)
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loc = loc_parent * loc_self
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return loc
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Cq.Assembly.get_abs_location = get_abs_location
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def get_abs_direction(self: Cq.Assembly,
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tag: str) -> Cq.Location:
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"""
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Gets the location of a tag
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"""
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name, shape = self._query(tag)
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# Must match `cadquery.occ_impl.solver.ConstraintSpec._getAxis`
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if isinstance(shape, Cq.Face):
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vec_dir = shape.normalAt()
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elif isinstance(shape, Cq.Edge) and shape.geomType() != "CIRCLE":
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vec_dir = shape.tangentAt()
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elif isinstance(shape, Cq.Edge) and shape.geomType() == "CIRCLE":
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vec_dir = shape.normal()
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else:
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raise ValueError(f"Cannot construct Axis for {shape}")
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loc_self = Cq.Location(vec_dir)
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loc_parent, _ = self._subloc(name)
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loc = loc_parent * loc_self
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return loc
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Cq.Assembly.get_abs_direction = get_abs_direction
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# Tallying functions
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