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cdsl-cad/cadfs_to_cdsl/tests/test_integration.py
T

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Python

from __future__ import annotations
from copy import deepcopy
import tempfile, unittest
from pathlib import Path
from cadfs_to_cdsl.compare import compare_steps
from cadfs_to_cdsl.featurescript_parser import parse_featurescript
from cadfs_to_cdsl.lowering import lower_model
from cadfs_to_cdsl.rebuild import rebuild_candidate
class IntegrationTests(unittest.TestCase):
def test_known_rp_roundtrip_00000173(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0000/00000173.txt"; gold = root / "step_abc/0000/00000173.step"
if not feature.exists() or not gold.exists(): self.skipTest("CADFS sample is not installed")
cdsl = lower_model(parse_featurescript(feature.read_text(), "00000173"), {}).cdsl
with tempfile.TemporaryDirectory() as tmp:
rebuilt = Path(tmp) / "rebuild.step"
result = rebuild_candidate(cdsl, rebuilt)
self.assertEqual(result["status"], "rebuilt")
comparison = compare_steps(gold, rebuilt)
self.assertFalse(comparison["strict"]["passed"])
self.assertTrue(comparison["rp"]["passed"])
self.assertEqual(comparison["decision"], "approximate_pass")
def test_standard_tapped_through_counterbore_00002243(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0000/00002243.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00002243"), {})
first = next(item for item in result.cdsl["features"] if item["id"] == "f_F1")
self.assertEqual(first["atomic_id"], "extrude_add_two_sided")
self.assertEqual(first["params"]["distance_mm"], 125.0)
self.assertEqual(first["params"]["reverse_distance_mm"], 125.0)
cut = next(item for item in result.cdsl["features"] if item["id"] == "f_F3")
self.assertEqual(cut["atomic_id"], "extrude_cut_two_sided")
hole = next(item for item in result.cdsl["features"] if item["atomic_id"] == "hole_wizard")
self.assertEqual(hole["params"]["hole_type"], "c_bore")
self.assertEqual(hole["params"]["diameter_mm"], 15.0)
self.assertEqual(hole["params"]["end_condition"]["type"], "through_all")
self.assertNotIn("counterbore", hole["params"])
with tempfile.TemporaryDirectory() as tmp:
rebuilt = Path(tmp) / "rebuild.step"
self.assertEqual(rebuild_candidate(result.cdsl, rebuilt)["status"], "rebuilt")
comparison = compare_steps(root / "step_abc/0000/00002243.step", rebuilt)
self.assertTrue(comparison["strict"]["passed"])
def test_rectilinear_fillet_arcs_00129362_preserve_recovered_sketch_geometry(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0012/00129362.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00129362"), {})
profile = next(item for item in result.cdsl["geometry"]["sketches"] if item["id"] == "sketch_F0")["profile"]
arcs = [segment for segment in profile["contours"][0]["segments"] if segment["type"] == "arc"]
self.assertEqual(sorted(arc["center"] for arc in arcs), [[25.4, 12.7], [25.4, 63.5]])
self.assertTrue(all(abs(arc["radius_mm"] - 12.7) <= 1e-12 for arc in arcs))
triangle = next(item for item in result.cdsl["geometry"]["sketches"] if item["id"] == "sketch_F5")["profile"]
self.assertEqual(
sorted({coordinate for contour in triangle["contours"] for segment in contour["segments"] for point in (segment.get("start"), segment.get("end")) if point for coordinate in point}),
[-12.7, -6.35, 0.0, 6.35, 12.7, 25.4, 34.925, 41.275],
)
with tempfile.TemporaryDirectory() as tmp:
rebuilt = Path(tmp) / "rebuild.step"
outcome = rebuild_candidate(result.cdsl, rebuilt)
self.assertEqual(outcome["status"], "rebuilt")
def test_cylindrical_swept_face_selector_00111611(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0011/00111611.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00111611"), {})
fillet = next(item for item in result.cdsl["features"] if item["id"] == "f_F3")
self.assertEqual(fillet["atomic_id"], "fillet")
self.assertEqual(fillet["selectors"][0]["kind"], "face")
self.assertEqual(
fillet["selectors"][0]["geometry"],
{"axis_origin_mm": [0.0, 0.0, 0.0], "axis_direction": [0.0, -1.0, 0.0], "radius_mm": 45.66},
)
chamfer = next(item for item in result.cdsl["features"] if item["id"] == "f_F5")
self.assertEqual(
sorted(selector["geometry"]["axis_origin_mm"] for selector in chamfer["selectors"]),
sorted([[0.0, 25.4, 33.37], [33.38, 25.4, 0.0], [0.0, 25.4, -33.38], [-33.38, 25.4, 0.0]]),
)
sketches = {item["id"]: item for item in result.cdsl["geometry"]["sketches"]}
f4 = next(item for item in result.cdsl["features"] if item["id"] == "f_F4")
self.assertEqual(
sorted(segment["center"] for contour in sketches[f4["sketch_id"]]["profile"]["contours"] for segment in contour["segments"]),
sorted([[0.0, 33.37], [33.38, 0.0], [-33.38, 0.0], [0.0, -33.38]]),
)
f7 = next(item for item in result.cdsl["features"] if item["id"] == "f_F7")
self.assertEqual(
[segment["radius_mm"] for contour in sketches[f7["sketch_id"]]["profile"]["contours"] for segment in contour["segments"]],
[4.48, 2.36],
)
self.assertNotIn("result_mode", next(item for item in result.cdsl["features"] if item["id"] == "f_F7")["params"])
self.assertEqual(next(item for item in result.cdsl["features"] if item["id"] == "f_F9")["params"]["result_mode"], "new_body")
from build123d import import_step
with tempfile.TemporaryDirectory() as tmp:
rebuilt = Path(tmp) / "rebuild.step"
outcome = rebuild_candidate(result.cdsl, rebuilt)
self.assertEqual(outcome["status"], "rebuilt")
runtime_box = outcome["result"]["bbox_mm"]
imported_box = import_step(str(rebuilt)).bounding_box()
actual = [imported_box.min.X, imported_box.min.Y, imported_box.min.Z, imported_box.max.X, imported_box.max.Y, imported_box.max.Z]
expected = runtime_box["min"] + runtime_box["max"]
for value, target in zip(actual, expected): self.assertAlmostEqual(value, target, places=5)
def test_inward_shells_00789939_lower_and_rebuild(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0078/00789939.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00789939"), {})
features = {item["id"]: item for item in result.cdsl["features"]}
self.assertEqual(features["f_F2"]["atomic_id"], "shell")
self.assertEqual(features["f_F5"]["atomic_id"], "shell")
self.assertEqual(features["f_F2"]["params"], {"thickness_mm": 2.5, "inward": True})
self.assertEqual(features["f_F5"]["params"], {"thickness_mm": 2.5, "inward": True})
self.assertNotIn("F2", [item.get("feature_id") for item in result.diagnostics])
self.assertNotIn("F5", [item.get("feature_id") for item in result.diagnostics])
with tempfile.TemporaryDirectory() as tmp:
rebuilt = Path(tmp) / "rebuild.step"
outcome = rebuild_candidate(result.cdsl, rebuilt)
self.assertEqual(outcome["status"], "rebuilt")
self.assertEqual(outcome["result"]["solid_count"], 2)
def test_outward_cap_shells_lower_and_rebuild_prefixes(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
cases = (("00090436", 2.5), ("00107631", 3.8))
for sample_id, thickness in cases:
with self.subTest(sample_id=sample_id):
feature = root / "featurescript_rp" / sample_id[:4] / f"{sample_id}.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), sample_id), {})
shell_index, shell = next(
(index, item)
for index, item in enumerate(result.cdsl["features"])
if item["id"] == "f_F2"
)
self.assertEqual(shell["atomic_id"], "shell")
self.assertEqual(shell["params"], {"thickness_mm": thickness, "inward": False})
self.assertNotIn("shell_outward", {item.get("capability") for item in result.diagnostics})
prefix = deepcopy(result.cdsl)
prefix["features"] = prefix["features"][:shell_index + 1]
with tempfile.TemporaryDirectory() as tmp:
outcome = rebuild_candidate(prefix, Path(tmp) / "outward-shell.step")
self.assertEqual(outcome["status"], "rebuilt")
self.assertEqual(outcome["result"]["solid_count"], 1)
def test_sweep_00542223_preserves_its_open_bspline_path(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0054/00542223.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00542223"), {})
sweep = next(item for item in result.cdsl["features"] if item["id"] == "f_F5")
segment = sweep["params"]["path"]["segment"]
self.assertEqual(result.status, "converted_complete")
self.assertEqual(sweep["atomic_id"], "sweep_add")
self.assertEqual(sweep["sketch_id"], "sketch_F4")
self.assertEqual(segment["points"], [[-40.0, -50.0], [-20.0, -14.96], [0.0, 5.0]])
self.assertEqual(segment["start_tangent"], [27.94, 92.49])
self.assertEqual(segment["end_tangent"], [52.88, 49.52])
self.assertNotIn("F2", [item.get("feature_id") for item in result.diagnostics])
self.assertNotIn("F5", [item.get("feature_id") for item in result.diagnostics])
def test_circular_pattern_00542223_preserves_all_sweep_arms(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0054/00542223.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00542223"), {})
candidate = dict(result.cdsl)
candidate["features"] = result.cdsl["features"][:4]
from engine.cdsl_engine.runtime import rebuild_cdsl
with tempfile.TemporaryDirectory() as tmp:
rebuilt = rebuild_cdsl(candidate, Path(tmp) / "pattern.step")
self.assertEqual(rebuilt["solid_count"], 1)
bbox = rebuilt["bbox_mm"]
self.assertAlmostEqual(bbox["min"][0], -52.14101625137758)
self.assertAlmostEqual(bbox["min"][1], -57.500000100000065)
self.assertAlmostEqual(bbox["max"][0], 52.14101625137762)
self.assertAlmostEqual(bbox["max"][1], 37.5000001000001)
def test_fused_body_circular_copy_faces_bind_and_shell_00542223(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0054/00542223.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
candidate = lower_model(parse_featurescript(feature.read_text(), "00542223"), {}).cdsl
with tempfile.TemporaryDirectory() as tmp:
outcome = rebuild_candidate(candidate, Path(tmp) / "rebuild.step")
self.assertEqual(outcome["status"], "rebuilt")
result = outcome["result"]
self.assertIn("f_F7", [item["feature_id"] for item in result["feature_results"]])
shell_selectors = [
item for item in result["selector_resolution"]
if item["feature_id"] == "f_F7"
]
self.assertEqual(
{item["selector"]["owner_feature_id"] for item in shell_selectors},
{"f_F5", "f_F6.c1.f_F5", "f_F6.c2.f_F5", "f_F1"},
)
self.assertTrue(all(item["status"] == "resolved" for item in shell_selectors))
def test_face_chamfer_ignores_periodic_seams_00111611(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0011/00111611.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
from copy import deepcopy
from engine.cdsl_engine.capabilities import CapabilityAnalyzer, sketch_ids_required_by_contract
from engine.cdsl_engine.runtime import EXECUTORS, ExecutionSession, _execute_node, _selector_edges
from engine.cdsl_engine.sketch_solver import CORE_SHAPE_GENERATORS, resolve_required_sketches
from cadfs_to_cdsl.selector_binding import bind_candidate_selectors
candidate = lower_model(parse_featurescript(feature.read_text(), "00111611"), {}).cdsl
bound, _ = bind_candidate_selectors(candidate)
resolved = resolve_required_sketches(
deepcopy(bound), sketch_ids_required_by_contract(bound), errors={},
)
analysis = CapabilityAnalyzer(
atomic_ids=EXECUTORS, profile_types=CORE_SHAPE_GENERATORS,
).analyze(resolved)
session = ExecutionSession(
sketches={str(item["id"]): item for item in resolved["geometry"]["sketches"]},
nodes={node.feature_id: node for node in analysis.plan},
)
for node in analysis.plan:
if node.feature_id == "f_F5":
edges = _selector_edges(node, session, tangent_propagation=True)
break
_execute_node(node, session)
else:
self.fail("F5 chamfer was not planned")
self.assertEqual(len(edges), 8)
self.assertTrue(all(str(edge.geom_type).endswith("CIRCLE") for edge in edges))
def test_circular_remove_pattern_replays_cut_sources_00159804(self):
root = Path(__file__).parents[2] / "data/cadfs-sample/CADFS_test"
feature = root / "featurescript_rp/0015/00159804.txt"
if not feature.exists(): self.skipTest("CADFS sample is not installed")
result = lower_model(parse_featurescript(feature.read_text(), "00159804"), {})
source = next(item for item in result.cdsl["features"] if item["id"] == "f_F8")
pattern = next(item for item in result.cdsl["features"] if item["id"] == "f_F9")
self.assertEqual(source["atomic_id"], "extrude_cut_blind")
self.assertNotIn("result_mode", source["params"])
self.assertEqual(pattern["params"]["operation_mode"], "remove")
if __name__ == "__main__": unittest.main()