- Add runtime body topology sync (add_body/remove_body + sync_bodies) with recompile, DDF patch (feq + BFS inward fill), and commit. - Unify action/obs flow: set_body/set_force are now host-only; run() auto-uploads action and downloads obs via CUDA stream. - Add read_body(id) -> BodyTelemetry and read_bodies() for DRL loops. - Add FRC_REGION flag (0x0800) for force_region cells. - Extract equilibrium helpers (lbm/equilibrium.py) and DDF patch module (body/ddf_patch.py). - Merge recompile / _runtime_recompile into single _recompile(). - Add n_objects to checkpoint; validate on load. - Add test suite: 40 unit + 19 integration tests (59 total). - Add conftest.py and docs/tests_overview.md for test documentation. - Update README.md and CONFIG.md for new API. Co-authored-by: Cursor <cursoragent@cursor.com>
235 lines
8.0 KiB
Python
235 lines
8.0 KiB
Python
"""BodySyncPlan construction — build_flags_for, build_compact_lists_for, build_next_objects, build_sync_plan, commit_pending.
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No GPU required."""
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import unittest
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import numpy as np
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from CelerisLab.body.manager import ObjectManager
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from CelerisLab.body.objects import SimObject
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from CelerisLab.body.geometry.circle import CircleGeometry
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from CelerisLab.body.sync_plan import BodySyncPlan
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from CelerisLab.lbm.descriptors import FLUID, SOLID, OBSTACLE, BC_CURVED
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def _make_circle_obj(cx: float, cy: float, radius: float,
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is_sensor: bool = False) -> SimObject:
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geom = CircleGeometry(cx, cy, radius)
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return SimObject(
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obj_id=-1,
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geometry=geom,
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center=(cx, cy),
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radius=radius,
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is_sensor=is_sensor,
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)
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class _StubCfg:
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def __init__(self, dim=2):
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self.dim = dim
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self.is_d3q19 = (dim == 3)
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class _StubField:
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"""Minimal LBMField stub for build_sync_plan testing."""
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def __init__(self, nx: int, ny: int):
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self.nx = nx
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self.ny = ny
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# Build a simple channel flag array (fluid everywhere except top/bottom walls).
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n = nx * ny
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self.flag = np.ones(n, dtype=np.uint16) * FLUID
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self.flag[:nx] = SOLID | 0x0010 # bottom wall
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self.flag[(ny - 1) * nx:ny * nx] = SOLID | 0x0010 # top wall
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# Save a clean copy for build_channel_flags
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self._channel_flags = self.flag.copy()
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def build_channel_flags(self) -> np.ndarray:
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"""Return a clean channel base (no object overlays)."""
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return self._channel_flags.copy()
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NX, NY = 64, 32
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class TestBuildFlagsFor(unittest.TestCase):
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def setUp(self):
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self.cfg = _StubCfg()
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self.mgr = ObjectManager(nx=NX, ny=NY, nz=1, nq=9, cfg=self.cfg)
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self.field = _StubField(NX, NY)
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def test_empty_objects_returns_base(self):
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base = self.field.build_channel_flags()
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result = ObjectManager.build_flags_for(
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[], base, nx=NX, ny=NY, nz=1)
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np.testing.assert_array_equal(result, base)
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def test_one_circle_produces_solid_region(self):
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base = self.field.build_channel_flags()
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obj = _make_circle_obj(32, 16, 5)
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result = ObjectManager.build_flags_for(
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[obj], base, nx=NX, ny=NY, nz=1)
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# Center cell should be solid with OBSTACLE and BC_CURVED bits
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center_idx = 32 + 16 * NX
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self.assertTrue(result[center_idx] & SOLID)
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self.assertTrue(result[center_idx] & OBSTACLE)
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def test_instance_method_delegates(self):
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base = self.field.build_channel_flags()
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obj = _make_circle_obj(32, 16, 5)
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self.mgr.add(obj)
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result = self.mgr.build_flags(base)
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center_idx = 32 + 16 * NX
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self.assertTrue(result[center_idx] & OBSTACLE)
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class TestBuildCompactListsFor(unittest.TestCase):
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def setUp(self):
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self.cfg = _StubCfg()
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self.mgr = ObjectManager(nx=NX, ny=NY, nz=1, nq=9, cfg=self.cfg)
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def test_circle_produces_curved_links(self):
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obj = _make_circle_obj(32, 16, 5)
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obj.obj_id = 0
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result = self.mgr.build_compact_lists_for([obj])
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cl_fluid_idx = result[0]
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self.assertGreater(len(cl_fluid_idx), 0)
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def test_sensor_produces_sensor_cells(self):
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obj = _make_circle_obj(32, 16, 5, is_sensor=True)
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obj.obj_id = 0
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result = self.mgr.build_compact_lists_for([obj])
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sensor_cells = result[8]
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self.assertGreater(len(sensor_cells), 0)
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def test_instance_method_delegates(self):
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obj = _make_circle_obj(32, 16, 5)
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self.mgr.add(obj)
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result = self.mgr.build_compact_lists()
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cl_fluid_idx = result[0]
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self.assertGreater(len(cl_fluid_idx), 0)
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class TestBuildNextObjects(unittest.TestCase):
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def setUp(self):
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self.cfg = _StubCfg()
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self.mgr = ObjectManager(nx=NX, ny=NY, nz=1, nq=9, cfg=self.cfg)
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def test_no_pending_returns_formal_objects(self):
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obj = _make_circle_obj(32, 16, 5)
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self.mgr.add(obj)
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result = self.mgr.build_next_objects()
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self.assertEqual(len(result), 1)
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self.assertEqual(result[0].obj_id, 0)
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def test_removal_excludes_object(self):
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obj0 = _make_circle_obj(20, 16, 3)
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obj1 = _make_circle_obj(40, 16, 3)
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id0 = self.mgr.add(obj0)
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self.mgr.add(obj1)
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self.mgr.stage_remove(id0)
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result = self.mgr.build_next_objects()
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self.assertEqual(len(result), 1)
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self.assertEqual(result[0].obj_id, 0)
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# The remaining object should be the second one (center at 40)
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self.assertAlmostEqual(result[0].center[0], 40.0)
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def test_add_appends_new_object(self):
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obj0 = _make_circle_obj(20, 16, 3)
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self.mgr.add(obj0)
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new_obj = _make_circle_obj(40, 16, 3)
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self.mgr.stage_add(new_obj)
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result = self.mgr.build_next_objects()
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self.assertEqual(len(result), 2)
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self.assertEqual(result[0].obj_id, 0)
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self.assertEqual(result[1].obj_id, 1)
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def test_ids_are_consecutive(self):
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obj0 = _make_circle_obj(20, 16, 3)
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obj1 = _make_circle_obj(30, 16, 3)
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obj2 = _make_circle_obj(40, 16, 3)
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id0 = self.mgr.add(obj0)
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self.mgr.add(obj1)
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self.mgr.add(obj2)
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# Remove middle object
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self.mgr.stage_remove(id0 + 1)
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result = self.mgr.build_next_objects()
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self.assertEqual(len(result), 2)
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self.assertEqual(result[0].obj_id, 0)
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self.assertEqual(result[1].obj_id, 1)
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def test_formal_registry_unchanged(self):
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obj = _make_circle_obj(32, 16, 5)
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id0 = self.mgr.add(obj)
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self.mgr.stage_remove(id0)
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self.mgr.build_next_objects()
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# Formal registry should be untouched
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self.assertEqual(self.mgr.count, 1)
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class TestBuildSyncPlan(unittest.TestCase):
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def setUp(self):
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self.cfg = _StubCfg()
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self.mgr = ObjectManager(nx=NX, ny=NY, nz=1, nq=9, cfg=self.cfg)
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self.field = _StubField(NX, NY)
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def test_add_body_produces_added_solid_mask(self):
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new_obj = _make_circle_obj(32, 16, 5)
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self.mgr.stage_add(new_obj)
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plan = self.mgr.build_sync_plan(self.field)
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self.assertIsInstance(plan, BodySyncPlan)
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self.assertEqual(plan.next_count, 1)
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# Center should be in added_solid_mask (was fluid, becomes solid)
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center_idx = 32 + 16 * NX
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self.assertTrue(plan.added_solid_mask[center_idx])
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def test_remove_body_produces_released_fluid_mask(self):
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obj = _make_circle_obj(32, 16, 5)
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id0 = self.mgr.add(obj)
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# Build current flags so the field "knows" about this body
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base = self.field.build_channel_flags()
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self.field.flag = self.mgr.build_flags(base)
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self.mgr.stage_remove(id0)
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plan = self.mgr.build_sync_plan(self.field)
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center_idx = 32 + 16 * NX
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self.assertTrue(plan.released_fluid_mask[center_idx])
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def test_no_change_masks_are_empty(self):
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plan = self.mgr.build_sync_plan(self.field)
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self.assertFalse(np.any(plan.added_solid_mask))
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self.assertFalse(np.any(plan.released_fluid_mask))
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class TestCommitPending(unittest.TestCase):
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def setUp(self):
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self.cfg = _StubCfg()
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self.mgr = ObjectManager(nx=NX, ny=NY, nz=1, nq=9, cfg=self.cfg)
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def test_commit_replaces_registry(self):
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obj0 = _make_circle_obj(20, 16, 3)
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obj1 = _make_circle_obj(40, 16, 3)
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id0 = self.mgr.add(obj0)
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self.mgr.add(obj1)
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self.mgr.stage_remove(id0)
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next_objs = self.mgr.build_next_objects()
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self.mgr.commit_pending(next_objs, np.zeros(1, dtype=np.int32))
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self.assertEqual(self.mgr.count, 1)
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self.assertEqual(self.mgr.get(0).obj_id, 0)
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self.assertFalse(self.mgr.has_pending_edit())
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def test_commit_clears_pending(self):
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self.mgr.stage_add(_make_circle_obj(32, 16, 5))
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next_objs = self.mgr.build_next_objects()
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self.mgr.commit_pending(next_objs, np.zeros(1, dtype=np.int32))
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self.assertFalse(self.mgr.has_pending_edit())
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if __name__ == "__main__":
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unittest.main()
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