Files
periscope/tests/pcb/test_kicad_pcb.py
T
michele c87adf11a9 Add AF trace analysis after PCB checks (2.63.5).
Trigger λ/10 and tr/(6 tpd) from FACT; pairs analyzed together; Z only from
datasheet; visible INSUFFICIENT skips; lossless RLGC cascade (no OpenEMS).
2026-09-22 08:39:37 +02:00

281 lines
9.4 KiB
Python

"""KiCad PCB ingest — parse only, no SI/creepage checks.
Favor: footprint+pad net; named nets; segment on a net.
Against: .kicad_sch rejected; missing Reference skipped; empty board ok.
"""
from __future__ import annotations
from pathlib import Path
import pytest
from backend.periscopex.parsers_kicad_pcb import parse_kicad_pcb
_PCB = """(kicad_pcb (version 20240108) (generator pcbnew)
(net 0 "")
(net 1 "GND")
(net 2 "+3V3")
(footprint "Resistor_SMD:R_0603_1608Metric"
(layer "F.Cu")
(at 10 20 0)
(property "Reference" "R1" (at 0 0 0) (effects (font (size 1 1))))
(property "Value" "10k" (at 0 0 0) (effects (font (size 1 1))))
(pad "1" smd roundrect (at -0.75 0) (size 0.8 0.9) (layers "F.Cu") (net 2 "+3V3"))
(pad "2" smd roundrect (at 0.75 0) (size 0.8 0.9) (layers "F.Cu") (net 1 "GND"))
)
(footprint "Resistor_SMD:R_0603_1608Metric"
(layer "F.Cu")
(at 0 0 0)
(property "Reference" "#PWR01" (at 0 0 0) (effects (font (size 1 1))))
(pad "1" smd rect (at 0 0) (size 1 1) (layers "F.Cu") (net 1 "GND"))
)
(segment (start 10 20) (end 12 20) (width 0.25) (layer "F.Cu") (net 1))
(via (at 11 20) (size 0.8) (drill 0.4) (layers "F.Cu" "B.Cu") (net 1))
)
"""
def test_parse_footprint_pads_and_nets(tmp_path: Path):
p = tmp_path / "board.kicad_pcb"
p.write_text(_PCB)
g = parse_kicad_pcb(p)
assert "GND" in g.nets and "+3V3" in g.nets
assert "R1" in g.footprints
r1 = g.footprints["R1"]
assert r1.x == 10 and r1.y == 20
by_num = {pad.number: pad for pad in r1.pads}
assert by_num["1"].net == "+3V3"
assert by_num["2"].net == "GND"
assert by_num["1"].x == pytest.approx(9.25)
assert by_num["2"].x == pytest.approx(10.75)
assert r1.courtyard == []
def test_parse_segment_and_via_resolve_net_name(tmp_path: Path):
p = tmp_path / "board.kicad_pcb"
p.write_text(_PCB)
g = parse_kicad_pcb(p)
assert len(g.segments) == 1
assert g.segments[0].net == "GND"
assert len(g.vias) == 1
assert g.vias[0].net == "GND"
assert g.vias[0].drill == pytest.approx(0.4)
assert g.vias[0].layers == ("F.Cu", "B.Cu")
def test_power_flag_footprint_is_skipped(tmp_path: Path):
p = tmp_path / "board.kicad_pcb"
p.write_text(_PCB)
g = parse_kicad_pcb(p)
assert "#PWR01" not in g.footprints
def test_kicad_sch_is_rejected_as_pcb(tmp_path: Path):
p = tmp_path / "sheet.kicad_sch"
p.write_text("(kicad_sch (version 20250114) (uuid \"1\"))\n")
with pytest.raises(ValueError, match="kicad_pcb"):
parse_kicad_pcb(p)
def test_parse_keepout_zone_polygon(tmp_path: Path):
p = tmp_path / "keepout.kicad_pcb"
p.write_text("""(kicad_pcb (version 20240108) (generator pcbnew)
(zone (net 0) (net_name "") (layer "F.Cu") (name "ANT_KEEPOUT")
(keepout (tracks not_allowed) (vias not_allowed) (copperpour not_allowed))
(polygon (pts (xy 0 0) (xy 10 0) (xy 10 8) (xy 0 8)))
)
)
""")
g = parse_kicad_pcb(p)
assert len(g.zones) == 1
z = g.zones[0]
assert z.keepout is True
assert z.name == "ANT_KEEPOUT"
assert len(z.outlines[0]) == 4
def test_empty_board_parses(tmp_path: Path):
p = tmp_path / "empty.kicad_pcb"
p.write_text("(kicad_pcb (version 20240108) (generator pcbnew))\n")
g = parse_kicad_pcb(p)
assert g.footprints == {}
assert g.segments == []
_PCB_V10 = """(kicad_pcb (version 20260206) (generator pcbnew)
(footprint "Package_TO_SOT_SMD:SOT-23-5"
(layer "F.Cu")
(at 0 0 0)
(property "Reference" "U3" (at 0 0 0) (effects (font (size 1 1))))
(pad "1" smd rect (at 0 0) (size 1 1) (layers "F.Cu") (net "VSYS"))
(pad "2" smd rect (at 1 0) (size 1 1) (layers "F.Cu") (net "GND"))
(pad "5" smd rect (at 2 0) (size 1 1) (layers "F.Cu") (net "3V3_DIGITAL"))
)
(footprint "RF_Module:ESP"
(layer "F.Cu")
(at 10 0 0)
(property "Reference" "U5" (at 0 0 0) (effects (font (size 1 1))))
(pad "1" smd rect (at 0 0) (size 1 1) (layers "F.Cu") (net "GND"))
(pad "2" smd rect (at 1 0) (size 1 1) (layers "F.Cu") (net "3V3_DIGITAL"))
(pad "3" smd rect (at 2 0) (size 1 1) (layers "F.Cu") (net "/ESP32_EN"))
)
)
"""
def test_kicad10_pad_net_string_form(tmp_path: Path):
from backend.periscopex.parsers_kicad_pcb import nets_from_pcb
p = tmp_path / "v10.kicad_pcb"
p.write_text(_PCB_V10)
g = parse_kicad_pcb(p)
assert g.footprints["U3"].pads[1].net == "GND"
nets = nets_from_pcb(g)
assert ("U3", "2") in nets["GND"]
assert ("U3", "5") in nets["3V3_DIGITAL"]
assert ("U5", "3") in nets["ESP32_EN"] # leading / stripped
def test_build_graph_prefers_pcb_nets_over_sch(tmp_path: Path):
"""Board pad nets win when sch geometry would swap rails."""
from backend.periscopex.graph import build_graph
sch = tmp_path / "netlist.kicad_sch"
# Minimal sch: only needs to parse as kicad_sch with some parts.
sch.write_text("""(kicad_sch (version 20250114) (uuid "1")
(lib_symbols
(symbol "Device:R"
(pin passive (at 0 3.81 90) (length 2.54)
(name "~" (effects (font (size 1.27 1.27))))
(number "1" (effects (font (size 1.27 1.27))))
)
(pin passive (at 0 -3.81 90) (length 2.54)
(name "~" (effects (font (size 1.27 1.27))))
(number "2" (effects (font (size 1.27 1.27))))
)
)
)
(symbol (lib_id "Device:R") (at 0 0 0) (unit 1) (uuid "a")
(property "Reference" "R1" (at 0 0 0) (effects (font (size 1.27 1.27))))
(property "Value" "10k" (at 0 0 0) (effects (font (size 1.27 1.27))))
(pin "1" (uuid "p1")) (pin "2" (uuid "p2"))
)
(global_label "GND" (at 0 3.81 0) (uuid "b"))
)
""")
pcb = tmp_path / "pcb.kicad_pcb"
pcb.write_text(_PCB_V10)
bom = tmp_path / "bom.csv"
bom.write_text(
"Reference,Value,Footprint,Manufacturer Part Number\n"
"U3,AP2112,SOT23,\nU5,ESP32,,\nR1,10k,,\n"
)
g = build_graph(
sch, bom, tmp_path / "ex", tmp_path / "pat", tmp_path / "mod",
pcb_path=pcb,
)
assert g.components["U3"].pins["2"] == "GND"
assert g.components["U3"].pins["5"] == "3V3_DIGITAL"
assert g.components["U5"].pins["1"] == "GND"
assert g.components["U5"].pins["2"] == "3V3_DIGITAL"
def test_upload_pcb_sets_has_pcb(tmp_path: Path):
from fastapi.testclient import TestClient
from backend.main import app
from backend.services.storage import LocalStorageBackend
app.state.storage = LocalStorageBackend(tmp_path)
client = TestClient(app)
pid = client.post("/api/projects", json={"name": "board"}).json()["id"]
resp = client.post(
f"/api/projects/{pid}/upload/pcb",
files={"file": ("board.kicad_pcb", _PCB.encode(), "text/plain")},
)
assert resp.status_code == 200, resp.text
body = resp.json()
assert body["footprints"] == 1
assert body["nets"] >= 2
fresh = client.get(f"/api/projects/{pid}").json()
assert fresh["has_pcb"] is True
assert fresh["has_netlist"] is False
def test_upload_sch_as_pcb_is_rejected(tmp_path: Path):
from fastapi.testclient import TestClient
from backend.main import app
from backend.services.storage import LocalStorageBackend
app.state.storage = LocalStorageBackend(tmp_path)
client = TestClient(app)
pid = client.post("/api/projects", json={"name": "board"}).json()["id"]
resp = client.post(
f"/api/projects/{pid}/upload/pcb",
files={"file": ("sheet.kicad_sch", b"(kicad_sch (version 1))\n", "text/plain")},
)
assert resp.status_code == 400
fresh = client.get(f"/api/projects/{pid}").json()
assert not fresh.get("has_pcb")
class _FakeWs:
def __init__(self, root: Path):
self.root = root
def local_path(self, rel: str) -> Path:
return self.root / rel
def test_layout_graph_skipped_when_pcb_missing(tmp_path: Path):
from backend.services.pipeline import _write_layout_graph
(tmp_path / "uploads").mkdir()
_write_layout_graph(_FakeWs(tmp_path), "p1")
assert not (tmp_path / "layout_graph.json").is_file()
def test_layout_graph_fail_soft_on_invalid_pcb(tmp_path: Path):
from backend.services.pipeline import _write_layout_graph
uploads = tmp_path / "uploads"
uploads.mkdir()
(uploads / "pcb.kicad_pcb").write_text("(kicad_sch (version 1))\n")
_write_layout_graph(_FakeWs(tmp_path), "p1")
assert not (tmp_path / "layout_graph.json").is_file()
def test_layout_graph_written_from_valid_pcb(tmp_path: Path):
from backend.services.pipeline import _write_layout_graph
uploads = tmp_path / "uploads"
uploads.mkdir()
(uploads / "pcb.kicad_pcb").write_text(_PCB)
_write_layout_graph(_FakeWs(tmp_path), "p1")
out = tmp_path / "layout_graph.json"
assert out.is_file()
data = __import__("json").loads(out.read_text())
assert "R1" in data["footprints"]
def test_stackup_thickness_without_full_dielectrics(tmp_path: Path):
p = tmp_path / "t.kicad_pcb"
p.write_text("""(kicad_pcb (version 20240108)
(net 0 "")
(net 1 "VOUT")
(setup
(stackup
(layer "F.Cu" (type "copper") (thickness 0.035mm))
(layer "B.Cu" (type "copper") (thickness 0.035))
)
)
(via (at 1 1) (size 0.8) (drill 0.4) (layers "F.Cu" "B.Cu") (net 1))
(arc (start 0 0) (end 2 0) (width 0.4) (layer "F.Cu") (net 1))
)
""")
g = parse_kicad_pcb(p)
assert g.stackup is not None
assert g.stackup.copper_thickness_mm == pytest.approx(0.035)
assert len(g.vias) == 1
assert any(s.width == pytest.approx(0.4) and s.net == "VOUT" for s in g.segments)