4ff729e192
Build PCM package / build (push) Successful in 13s
- Selected vias and through-hole pads inject at the drill-wall ring on every spanned layer (both contact models), not the whole pad face, so the pad/pour spreading resistance is part of the result. Vias are now selectable as contacts. - Soldered THT joints: the hole is modeled solder-filled (core in parallel with the plating, also for stitching THT barrels) and the pad face carries an average-thickness solder coat over the modeled copper (SOLDER_THICKNESS_UM). - Vias with drills above a configurable threshold (dialog field, default CAP_MAX_DRILL_MM = 0.5) keep open mouths even with capping selected - the fab caps only small vias. - Geometry dump schema v6: electrode barrel fields, cap_max_drill_nm. - Verified against R = rho/(pi t)*acosh(d/2a) for two circular contacts on a sheet (+2.6% at h = 0.15 mm, a = 1 mm; uniform model above the equipotential one as required by the contact bracket). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
116 lines
4.3 KiB
Python
116 lines
4.3 KiB
Python
"""Top-level orchestration for the KiCad-launched action.
|
||
|
||
Flow: connect -> read the two selected contacts (rectangles/pads) ->
|
||
gather fills -> selection dialog (net, layers, contacts, current, cell)
|
||
-> extract vias -> solve -> figures + report.
|
||
|
||
Every failure is reported twice: on stdout (lands in the KiCad status-bar
|
||
warning list) and as a matplotlib error figure, so it cannot be missed.
|
||
"""
|
||
from __future__ import annotations
|
||
|
||
import sys
|
||
import traceback
|
||
|
||
from . import config, pipeline, report
|
||
from .errors import CandidateError, UserFacingError
|
||
|
||
|
||
def _fail(message: str, outdir) -> None:
|
||
print(f"ERROR: {message}")
|
||
from . import plots
|
||
fig = plots.fig_error(message)
|
||
plots.save_and_show([(fig, "error")], outdir)
|
||
sys.exit(1)
|
||
|
||
|
||
def main() -> None:
|
||
outdir = None
|
||
try:
|
||
from kipy.errors import ApiError
|
||
|
||
from . import board_io, dialog
|
||
try:
|
||
kicad, board = board_io.connect()
|
||
stackup = board_io.get_stackup_info(board)
|
||
es1, es2, net_hint = board_io.get_electrodes(board, stackup)
|
||
if board_io.any_zone_unfilled(board) or config.ALWAYS_REFILL:
|
||
board_io.refill(board)
|
||
fills = board_io.gather_net_fills(board)
|
||
tracks = board_io.gather_net_tracks(board)
|
||
copper = board_io.merge_copper(
|
||
fills, board_io.tracks_as_polygons(tracks))
|
||
candidate_nets = board_io.nets_overlapping(copper, es1, es2)
|
||
buildups = board_io.gather_mask_buildups(board)
|
||
except ApiError as e:
|
||
raise UserFacingError(
|
||
f"KiCad API error: {e}\nIf KiCad is showing a dialog, close "
|
||
f"it and run again."
|
||
)
|
||
|
||
if not candidate_nets:
|
||
raise CandidateError(
|
||
"No copper (zone fill or trace) overlaps both contacts. "
|
||
"Check that both sit over copper of the same net and that "
|
||
"the fills are up to date (press B in the board editor)."
|
||
)
|
||
|
||
def group_label(parts):
|
||
names = [p.label for p in parts[:3]]
|
||
more = f" +{len(parts) - 3}" if len(parts) > 3 else ""
|
||
return f"{len(parts)}× " + ", ".join(names) + more
|
||
|
||
def group_contact(parts):
|
||
contacts = {p.contact for p in parts}
|
||
return contacts.pop() if len(contacts) == 1 else "auto"
|
||
|
||
default_net = (net_hint if net_hint in candidate_nets
|
||
else candidate_nets[0])
|
||
selection = dialog.ask(
|
||
candidates={n: list(copper[n].keys()) for n in candidate_nets},
|
||
layer_order=stackup.names,
|
||
default_net=default_net,
|
||
e1_label=group_label(es1), e2_label=group_label(es2),
|
||
contact1=group_contact(es1), contact2=group_contact(es2),
|
||
buildup_layers=sorted(buildups.keys()),
|
||
)
|
||
if selection is None:
|
||
print("cancelled")
|
||
return
|
||
|
||
if selection.contact1 != "auto":
|
||
for e in es1:
|
||
e.contact = selection.contact1
|
||
if selection.contact2 != "auto":
|
||
for e in es2:
|
||
e.contact = selection.contact2
|
||
if selection.cell_um is not None:
|
||
config.CELL_UM_OVERRIDE = selection.cell_um
|
||
config.ADAPTIVE_CELLS = selection.adaptive
|
||
|
||
try:
|
||
problem = board_io.build_problem(
|
||
board, selection.net, selection.layers, es1, es2, stackup,
|
||
fills,
|
||
buildups=(buildups if selection.include_buildup else None),
|
||
extra_cu_um=selection.extra_cu_um,
|
||
tracks=(tracks if selection.include_tracks else None),
|
||
vias_capped=selection.vias_capped,
|
||
cap_max_drill_mm=selection.cap_max_drill_mm)
|
||
outdir = report.make_output_dir(board_io.board_dir(board))
|
||
except ApiError as e:
|
||
raise UserFacingError(f"KiCad API error: {e}")
|
||
|
||
report.write_geometry_dump(outdir, problem)
|
||
pipeline.run(problem, outdir, show=True, i_test=selection.current_a,
|
||
freq_hz=selection.freq_hz,
|
||
contact_model=selection.contact_model)
|
||
except UserFacingError as e:
|
||
_fail(str(e), outdir)
|
||
except Exception:
|
||
_fail(traceback.format_exc(), outdir)
|
||
|
||
|
||
if __name__ == "__main__":
|
||
main()
|