pcbjam/web
Repository files (latest commit first)
Filename Latest commit message Latest commit date
Gergő Törcsvári f3119e690f
feat(standalone): floating sheet navigator panel backed by a C++ hierarchy export (sheet-panel)
Canvas-only eeschema sessions (read-only viewers, hide-UI editors) could not
reach the wx hierarchy pane, so a viewer of a hierarchical design was stuck
on the entry sheet. Adds the React stand-in (SheetPanel) + the bridge:

- eeschema_embind: kicadSheetsGetTree() (SCHEMATIC::Hierarchy(), page-number
  ordered: instance KIID path / parent / Sheetname / file / page / depth) and
  kicadSheetsEnter(path) (validated synchronously, applied on the coroutine
  via SCH_ACTIONS::changeSheet — same route as the wx pane, history intact).
  OnSchSheetChanged pushes window.kicadCollab.onSheetsState after EVERY
  navigation, wx-driven included, so the panel is event-driven.
- kicad → 9ab93b838e: navigate actions allowlisted for read-only viewers.
- SheetPanel.tsx: LayerPanel shell conventions; rendered + menu row only when
  the hierarchy has >1 sheet instance; viewers boot it collapsed.
- tests: fixtures/demo/hier (root → Power, IO → Sub) + web/sheet-panel.spec
  (list/order/depth, navigate + collab rebind, menu toggle/close, flat
  schematic has no panel, bridge-driven navigation updates the panel);
  SheetPanel.test.ts for the wire parser.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01CtN6ASBvMGNbjPqY5boycg
2026-08-29 16:24:57 +02:00
..
backend comments-ux: figma bubble pins, floating panel, seen/reactions/mentions UI, theme follow (0001 A–E + 0002) 2026-07-24 13:21:22 +02:00
pcbjam-shared@8dabf2e823 staging CI green-up: P-1 apply-slot wedge under JSPI, popup P-4 regression, ysync double-seed header, spec fixes 2026-08-28 22:25:21 +02:00
standalone feat(standalone): floating sheet navigator panel backed by a C++ hierarchy export (sheet-panel) 2026-08-29 16:24:57 +02:00
.env.example feat(editor): report uncaught errors to Better Stack 2026-08-03 12:24:30 +02:00
.gitignore feat(libs): eeschema symbol-chooser footprint selector + preview via publish-time fp-index 2026-07-07 21:09:21 +02:00
package.json chore: add dev:demo script (web) + refresh site lockfile 2026-06-30 09:54:49 +02:00
pnpm-lock.yaml feat: load-path §5 client — gateway transport behind the YjsProvider seam 2026-08-18 14:02:40 +02:00
pnpm-workspace.yaml feat(libs): r2-idb-sync bridge — sync-wire protocol, FE/BE packages, apps/server resolve+origin serving, GPL adapter 2026-06-17 09:59:59 +02:00
README.md feat: GPL backend self-provisions example libs + standalone port override 2026-06-16 16:28:21 +02:00
tsconfig.base.json feat(web): checkpoint web app init 2026-06-02 20:32:19 +02:00
turbo.json feat(editor): report uncaught errors to Better Stack 2026-08-03 12:24:30 +02:00

PCBJam Web — standalone editor (GPL)

A self-contained, GPL web app that opens KiCad projects in the WASM tools (pcbnew / eeschema / pl_editor / …) — from a local folder, or from any backend that implements the MIT @pcbjam/shared contract. It opens a tool by URL:

/p/<project>/<tool>/<file-path>      e.g. /p/demo/pcbnew/nyak.kicad_pcb

This workspace contains only the generic editor and a thin reference backend. All project-specific concerns (accounts, project management, uploads, auth) live in the separate closed application, which reuses this editor by hosting it standalone and redirecting to it (it must not link the GPL editor).

Layout

web/
├── standalone/      # @pcbjam/standalone — the GPL editor (Vite + React)
├── backend/         # @pcbjam/backend-example — thin reference @pcbjam/shared impl
└── pcbjam-shared/   # @pcbjam/shared — the FE↔BE contract (git submodule, MIT)
  • Editor: Vite + React + TypeScript. Boots a tool directly in the document (no iframe), syncs the project tree into MEMFS, drives File→Open, and runs same-tab collaboration over BroadcastChannel.
  • Example backend: Fastify + ts-rest serving a single project off the local filesystem (PROJECT_DIR). No DB, no auth, no uploads — the minimum the editor needs, and a worked example of the contract. Listens on :3060. On dev/start it self-provisions example libraries — a curated slice of upstream KiCad symbol + footprint libs is cloned + extracted into .libs (served as read-only origins), so a bare clone has libraries to browse with no closed repo present. See backend/src/extract/.

Quick start

cd web
pnpm install
git submodule update --init web/pcbjam-shared   # if not already populated

cp standalone/.env.example standalone/.env
cp backend/.env.example backend/.env            # PROJECT_DIR=../../tests/fixtures/demo

pnpm dev                                         # turbo: backend :3060 + editor :3048

Open http://localhost:3048 — either open a local folder (no backend needed) or open the backend's project. The editor can point at any conforming backend via VITE_API_BASE_URL.

WASM artifacts

The runtime artifacts (<tool>.js/.wasm, wx.js, images.tar.gz, <tool>.html) are build outputs, not committed. They are synced into tests/apps/kicad/ by tests/scripts/setup-kicad-wasm.sh (from repo-root output/).

They must be served same-origin as the app. Under the document's COEP / cross-origin-isolation (set by the Vite dev server), KiCad WASM refuses to load its glue/wasm from a different origin. pnpm dev runs scripts/link-wasm.mjs, which symlinks standalone/public/wasm → tests/apps/kicad; Vite serves them at /wasm. VITE_WASM_ASSET_BASE_URL defaults to /wasm.

  • Point the symlink elsewhere with WASM_SRC_DIR=/path pnpm --filter @pcbjam/standalone link-wasm.
  • If a tool won't load, the target dir is probably empty — run tests/scripts/setup-kicad-wasm.sh to populate tests/apps/kicad/.
  • prod: point VITE_WASM_ASSET_BASE_URL at a URL whose origin also satisfies the same-origin / COEP constraints.

Scripts

Command What
pnpm dev editor + example backend (turbo)
pnpm build build all packages
pnpm typecheck typecheck all packages

Contract (@pcbjam/shared, MIT)

The editor reads from a backend over the shared contract: GET /api/projects, GET /api/projects/:project, GET /api/projects/:project/files, and the streamed GET /api/projects/:project/files/* (raw bytes). Management/write operations and ownership are not part of this contract — they belong to the closed app.