When add_schematic_component is called with a schematic that lives in a
sub-folder (e.g. sheets/rs485.kicad_sch), the handler derived the project
path as schematic.parent — which in a hierarchical project is the sheets/
directory, not the project root. Any project-local symbol library declared
in sym-lib-table (using ${KIPRJMOD}) is invisible to DynamicSymbolLoader
from that directory, causing "Symbol 'X' not found in library 'Y'" even
though the library file and sym-lib-table entry both exist.
Fix: walk the ancestor chain from the schematic file upward until a
directory is found that contains a sym-lib-table file or a .kicad_pro
file, then use that as the project root for library resolution.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
WireManager.delete_label only checked for Symbol("label") when scanning
the schematic s-expression list, so it silently skipped and failed to
delete global_label and hierarchical_label elements — returning False
with "No matching label found" even when a visible label existed at the
given coordinates.
Fix: collect all three label-like symbol types into a set and use `in`
instead of `==` for the type check.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
In hierarchical KiCad designs, sub-sheets (.kicad_sch files referenced
via (sheet ...) blocks) do not have a (sheet_instances) section — that
only appears in the top-level schematic.
WireManager.add_label was returning False with a logged error whenever
no (sheet_instances) marker was found, making it impossible to add any
net label (local, global, or hierarchical) to a sub-sheet.
Fix: fall back to inserting before the final item of the s-expression
list, which is equivalent to appending before the closing ')' of the
outer (kicad_sch ...) block.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Covers create_component_instance and _handle_add_schematic_component:
- default unit=1 behaviour
- explicit unit 2 and 4 written to (unit N) in schematic S-expression
- (instances ...) block also records the correct unit
- multiple units of the same reference placed independently
- handler param validation (missing schematicPath, missing component)
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Allows placing a specific unit (A=1, B=2, C=3, …) of a multi-unit KiCad
symbol rather than always defaulting to unit 1. Required for quad
optocouplers, dual op-amps, and other multi-unit parts where each channel
must be placed independently.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Covers the three bugs fixed in the previous commit:
- TestAddComponentNoTrailingUnderscore (integration): verifies clone() + no extra append()
- TestPinLocatorYAxisNegation (unit): rotation=0 and 90° cases with y-negation
- TestPinLocatorReferenceRstrip (unit): lookup tolerates 'R1_' artifact from kicad-skip
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Three bugs fixed in the schematic component and pin locator pipeline:
1. component_schematic: remove redundant symbol.append() after clone()
kicad-skip's clone() already inserts the raw element into the schematic
tree. The subsequent NamedCollection.append() detects the reference as
already registered (from the elementRename triggered by setting
property.Reference.value) and renames it "R1_" with a trailing
underscore, causing all subsequent pin lookups to fail.
2. pin_locator: negate lib y coordinate before rotation
lib_symbols in .kicad_sch use library y-up convention; schematic
coordinates use y-down. get_pin_location now negates pin_rel_y before
applying rotation, matching KiCad's own transform order (same approach
as _transform_local_point in schematic_analysis.py).
3. pin_locator: add .rstrip("_") guard in all symbol reference lookups
Defensive guard against any residual cases where kicad-skip writes a
trailing underscore to the Reference property value.
Also fixes the self-test script to use template_with_symbols.kicad_sch
(which contains placed _TEMPLATE_* symbols) rather than the expanded
template (which only contains lib_symbols definitions and has no cloneable
instances).
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Moves a net label (local, global, or hierarchical) to a new position in
place, avoiding the error-prone delete-then-re-add workflow. Supports an
optional currentPosition disambiguator and labelType filter.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
The Python executable and PYTHONPATH were hardcoded to Windows paths,
causing the server to fail silently on macOS/Linux. Now reads
KICAD_PYTHON from the environment (set by setup-macos.sh) with
python3 as the fallback.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
Bundles two changes for python/commands/schematic.py:
1. CRLF → LF line-ending normalization (matches the bulk renormalize
from the previous commit — was held back here because black would
also need to re-reformat it).
2. Black reflow of create_schematic()'s parameter list, which exceeded
the line length. Pre-existing drift, no logic change.
`git show --ignore-all-space HEAD` shows just the 2-line signature diff.
Mechanical application of the `.gitattributes` rules from the prior commit.
All 50 files differ only in line endings — verified by
`git diff --cached --ignore-all-space` being empty.
Before: main had 42 CRLF + 27 LF Python files plus mixed-ending in YAML,
templates, and shell scripts. After: every text file is LF (except the
Windows-native *.ps1, *.bat scripts which remain CRLF per gitattributes).
This eliminates the noisy-diff failure mode seen in PR #102, where a
small logic change produced a 918-line diff due to whole-file CRLF→LF
conversion.
Introduces a three-layer defence against CRLF/LF drift:
- `.gitattributes` normalizes all text files to LF on commit and checkout;
Windows-native scripts (*.bat, *.cmd, *.ps1) explicitly keep CRLF.
- `.editorconfig` instructs editors (VS Code, JetBrains, vim, etc.) to save
with LF by default so the problem is prevented at the source.
- `mixed-line-ending --fix=lf` hook in pre-commit catches anything that
slips through and auto-fixes it before commit.
No file contents are normalized in this commit — that follows in a
separate `git add --renormalize .` commit for easier review.
The placeholder static method on LibraryManager (library_schematic.py)
returned [] and had no dispatch entry or caller. The real tool of the
same name lives in library_symbol.py.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Add optional netName (exact case-sensitive match) and labelType
(net/global/power enum) parameters. Both are optional and AND
together when combined. Omitting both preserves current behaviour.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Parser used a 5000-char heuristic slice per symbol; any symbol block
shorter than 5000 chars bled into the next one, and last-write-wins in
the properties dict ensured the neighbor's data clobbered the target.
Reported as Simulation_SPICE:OPAMP returning PJFET data.
Switch to parenthesis-depth tracking to find the true end of each
(symbol ...) block. Also surface Sim.Pins so agents can read opamp pin
numbering without inferring it from schematic placement.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Two new tools for managing hierarchical schematic connections:
- add_schematic_hierarchical_label: create sheet interface ports on
sub-sheet schematics. These are the sub-sheet side of hierarchical
connections, linking to sheet pins on the parent.
- add_sheet_pin: add pins to sheet symbol blocks on the parent
schematic. Targets the correct sheet by matching the Sheetname
property. The pinName must match a hierarchical_label in the
sub-sheet.
Both tools use text-based S-expression insertion (not sexpdata
round-trip) to preserve KiCad's native file formatting. Labels
include proper justification based on orientation: left-justify for
rightward labels (0°), right-justify for leftward labels (180°).
Wire manager additions:
- _find_insertion_point(): locates sheet_instances block or final paren
- _text_insert(): inserts formatted S-expression text at the right position
- _make_hierarchical_label_text(): generates hierarchical_label S-expression
- _make_sheet_pin_text(): generates sheet pin S-expression
- WireManager.add_hierarchical_label(): static method for label insertion
- WireManager.add_sheet_pin(): static method for pin insertion into
named sheet blocks
12 unit tests covering insertion, orientation/justification mapping,
parameter validation, multi-sheet targeting, and error handling.
get_net_connections() built its match-point set exclusively from wire
endpoints. If a net label was placed directly at a pin endpoint with no
wire segment (valid KiCad style), the function returned 0 connections
because connected_wire_points was empty.
Fix: build all_match_points as the union of connected wire endpoints and
label positions. Pin matching checks both, so label-at-pin schematics
produce correct netlists alongside traditional wired schematics.
Also handles the case where the schematic object has no wire attribute
at all — instead of returning early, we continue with label positions
as the sole match points.
Tests: tests/test_label_at_pin_net_connections.py (11 unit tests)
- label at pin, no wire → pin found
- label at pin, within/outside tolerance
- label via wire → still found (regression)
- mixed wired and direct labels on same net
- no wire attribute → still detects label-at-pin
- template symbols skipped
Black/isort/flake8/mypy verified manually (pre-commit local npm hook
fails to install on Windows due to MobaXterm path environment issue).
get_net_connections() previously required wire segments between net
labels and component pins. If a label was placed exactly at a pin
endpoint (no wire), the net was silently dropped and generate_netlist
returned 0 nets.
Fix: build all_match_points as the union of connected wire endpoints
and label positions. Pin matching now checks both, so label-at-pin
schematics (valid KiCad style) produce correct netlists alongside
traditional wired schematics.
KiCad ships Python 3.9 on macOS (both v9 and v10), and `pcbnew.so` is
compiled against that interpreter. The previous `>=3.10` floor was
unreachable on macOS and docs referenced nonexistent
`python3.11/site-packages` paths. Lower the floor and correct the docs;
no source changes needed — all 49 files in `python/` already compile
clean on 3.9.
Also add `.venv/` to `.gitignore` (dotted form used by `python -m venv`).
Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
Two issues with run_erc on KiCad 9:
1. kicad-cli returns non-zero exit code when ERC violations exist.
The handler treated this as a command failure and returned early
with success=false, even though valid JSON output was produced.
Fix: check for output file existence instead of exit code.
2. KiCad 9 nests violations under sheets[].violations instead of
(or in addition to) the top-level violations[] array used by
KiCad 8. The handler only read the top-level array, reporting
0 violations on schematics with sub-sheets.
Fix: iterate sheets[] and collect all nested violations.
Both fixes are backward-compatible with KiCad 8.
6 unit tests added covering non-zero exit codes, KiCad 8 top-level
violations, KiCad 9 sheets[] nesting, mixed structures, zero
violations, and missing output files.
export_netlist was returning "Unknown command" because no Python handler
existed. generate_netlist was timing out (30s) due to an O(nets × components
× pins) wire-graph algorithm with a new PinLocator instantiated per net.
Both handlers now delegate to `kicad-cli sch export netlist`:
- export_netlist: new handler; writes KiCad XML / Spice / Cadstar / OrcadPCB2
to the caller-supplied outputPath. Added schematicPath parameter to the TS
tool definition (was absent, making file export impossible).
- generate_netlist: replaces the slow wire-graph with kicad-cli + XML parse;
returns the same {components, nets} JSON the TS handler already expected.
Also adds _find_kicad_cli_static() so both handlers share CLI discovery
without depending on ExportCommands (which requires a loaded pcbnew board).
Cleaned up generate_netlist schema in tool_schemas.py (removed outputPath and
format fields the handler never used), updated MCP tool descriptions and
SCHEMATIC_TOOLS_REFERENCE.md to clearly distinguish the two tools.
26 unit tests added covering parameter validation, subprocess mocking,
format mapping, XML→JSON parsing, and error/timeout propagation.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>