Self-hosted emergence-engineering/pcbjam (browser KiCad WASM) — CMMS embed fork. Upstream tracked as remote "upstream".
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  • C++ 36%
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  • JavaScript 2.6%
  • Other 5.2%
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Repository files (latest commit first)
Filename Latest commit message Latest commit date
Viktor Vaczi a4ad69412e fix(wasm): bind dynCall_* to real DYNCALLS=1 exports; refactor shim into files
The shim bound bare dynCall_* names to JS getWasmTableEntry() calls, bypassing
the asyncify-instrumented dynCall_* wasm trampolines that -sDYNCALLS=1 provides.
That broke Asyncify unwind/rewind through indirect calls -> "indirect call
signature mismatch" (caught every frame in Firefox; fatal renderer crash in
Chrome). Bind the bare names to wasmExports["dynCall_<sig>"] instead.

Result: the PCBnew "select draw lines" e2e is green in Firefox (tool selects and
draws, zero page errors). Dropped the fiber-stabilization block, the shipped
diagnostic block, and the exportCallStack JS hack (all compensated for the wrong
binding); shim shrank 521 -> ~250 lines.

- scripts/common/inject-dyncall-shims.sh: orchestrator only; injected JS extracted
  to scripts/common/shims/
- scripts/common/shims/dyncall-binding.js.tmpl: per-signature binding template
- scripts/common/shims/handlesleep.js: nested-Asyncify handleSleep fix (#9153)
- scripts/common/shims/diagnostics.js: logging-only, opt-in via SHIM_DIAGNOSTICS=1
- tests/package.json: add test:kicad:firefox / test:kicad:chrome scripts

Known issue (tracked separately): Chrome still renderer-crashes on the first
coroutine resume. Asyncify.doRewind replays the deep main-context call stack and
exceeds V8's execution-stack limit (Firefox tolerates the same wasm). Proper fix
is JSPI.

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-05-25 15:07:10 +02:00
docker wasm: validate kicad hi-dpi scaling 2026-03-22 12:48:05 +01:00
features wip: nested-asyncify fix, wxAuiToolBar registration, tests, research docs 2026-04-21 13:58:16 +02:00
kicad@f6e9239aaa wip: nested-asyncify fix, wxAuiToolBar registration, tests, research docs 2026-04-21 13:58:16 +02:00
logs Added logs .gitignore. 2026-01-03 13:52:34 +01:00
research wip: nested-asyncify fix, wxAuiToolBar registration, tests, research docs 2026-04-21 13:58:16 +02:00
scripts fix(wasm): bind dynCall_* to real DYNCALLS=1 exports; refactor shim into files 2026-05-25 15:07:10 +02:00
tests fix(wasm): bind dynCall_* to real DYNCALLS=1 exports; refactor shim into files 2026-05-25 15:07:10 +02:00
wasm wasm: validate kicad hi-dpi scaling 2026-03-22 12:48:05 +01:00
wxwidgets@bb80f91e8b wip: nested-asyncify fix, wxAuiToolBar registration, tests, research docs 2026-04-21 13:58:16 +02:00
.dockerignore Add Docker build environment for KiCad WASM 2025-12-08 12:07:01 +01:00
.gitignore fix(wasm): Fix asyncify rewind with asyncify-aware dynCall shims 2026-03-13 12:26:48 +01:00
.gitmodules Remove unused legacy build scripts and directories 2025-12-27 11:07:54 +01:00
build.md Update documentation to reflect current project structure 2025-12-27 11:13:17 +01:00
CLAUDE.md fix(wasm): Fix Asyncify modal errors with global lock mechanism 2026-01-19 14:35:08 +01:00
learning.md fix(wasm): Fix Asyncify modal errors with global lock mechanism 2026-01-19 14:35:08 +01:00
README.md fix(wasm): Fix asyncify rewind with asyncify-aware dynCall shims 2026-03-13 12:26:48 +01:00

KiCad WebAssembly Port

Run KiCad PCBnew in the browser using WebAssembly.

Quick Start

Full Build (KiCad + All Tests)

# 1. Initialize submodules
git submodule update --init --recursive

# 2. Build KiCad WASM (Docker, ~10 min incremental, ~1-2 hours full)
./docker/build.sh

# 3. Build wxWidgets for local testing
./scripts/build-wxuniversal-wasm.sh

# 4. Build wxWidgets test apps
./scripts/build-wasm-test.sh

# 5. Run all tests
cd tests && npm install
npm test              # wxWidgets tests (256 tests)
npm run test:kicad    # KiCad tests (2 tests)

wxWidgets Only (No Docker)

# Requires: Node.js 18+ (Emscripten SDK auto-installed on first build)
./scripts/build-wxuniversal-wasm.sh
./scripts/build-wasm-test.sh
cd tests && npm install && npm test

Project Structure

kicad-wasm/
├── kicad/                  # KiCad source (git submodule)
├── wxwidgets/              # wxWidgets source (git submodule)
├── wasm/                   # WASM compatibility layer
│   ├── bindings/           # Embind bindings for JavaScript
│   ├── cmake/              # CMake find modules
│   ├── kiplatform/         # Platform abstraction (app, UI, printing)
│   ├── libcontext/         # Coroutine/fiber implementation
│   ├── shims/              # Runtime JavaScript shims
│   └── stubs/              # Stub implementations (libgit2, curl)
├── scripts/                # Build scripts
│   ├── build-wxuniversal-wasm.sh   # Build wxWidgets for WASM
│   ├── build-wasm-test.sh          # Build wxWidgets test apps
│   ├── deps/               # Dependency build scripts
│   ├── kicad/              # KiCad build scripts
│   ├── common/             # Shared utilities
│   └── config/             # Build config wrappers
├── docker/                 # Docker build environment
├── tests/                  # Playwright E2E tests
│   ├── e2e/                # Test specs
│   └── apps/               # WASM test applications
├── tools/                  # External tools (binaryen)
└── output/                 # Build output (pcbnew.js, pcbnew.wasm)

Feature Branches

Each feature branch has a folder in features/<branch-name>/ containing:

  • Documentation and research notes
  • root.patch - changes to main repo
  • kicad.patch - changes to KiCad fork
  • wxwidgets.patch - changes to wxWidgets fork

Generate patches: ./scripts/create-feature-patches.sh [branch-name]

Two Build Workflows

1. KiCad Build (Docker)

Full KiCad PCBnew build using Docker:

# Build KiCad WASM
./docker/build.sh

# Copy output to test directory
./tests/scripts/setup-kicad-wasm.sh

# Run KiCad tests
cd tests && npm install && npm run test:kicad

Output: output/pcbnew.js, output/pcbnew.wasm

See build.md for detailed build documentation.

2. wxWidgets Test Apps (Local)

Build standalone wxWidgets test apps for feature testing:

# Build wxWidgets for WASM
./scripts/build-wxuniversal-wasm.sh

# Build test apps
./scripts/build-wasm-test.sh

# Run wxWidgets tests
cd tests && npm install && npm test

Output: tests/apps/standalone/

Prerequisites

For KiCad Build (Docker)

  • Docker Desktop with 16GB+ RAM allocated
  • 10+ GB disk space for build cache

For wxWidgets Build (Local)

  • Node.js 18+ (for tests)
  • Emscripten SDK (auto-installed on first build)
# Initialize submodules
git submodule update --init --recursive

# Install Emscripten SDK (auto-runs on first build, or run manually)
./scripts/setup-emsdk.sh

Testing

cd tests
npm install

# Run all tests
npm test

# Run specific tests
npm run test:kicad          # KiCad tests only
npx playwright test menu    # Menu tests only

See tests/README.md for test documentation.

Current Status

  • wxWidgets WASM: Core widgets working (menus, dialogs, grids, trees, OpenGL)
  • KiCad PCBnew: Builds and loads in browser, canvas rendering working
  • In Progress: Testing wxWidgets features used by KiCad

Documentation

License

KiCad is GPL-3.0. This project follows the same license.