pcbjam/wasm
Repository files (latest commit first)
Filename Latest commit message Latest commit date
Viktor Vaczi 3034d9d76f Add KiCad WASM build infrastructure and dependency scripts
- Add build environment setup (scripts/common/env.sh, versions.sh, functions.sh)
- Add dependency build scripts for Zstd, GLM, FreeType, HarfBuzz, Pixman, Cairo
- Add placeholder scripts for OpenCASCADE, ngspice, protobuf
- Add WASM compatibility layer (wasm/kiplatform/, wasm/libcontext/)
- Add CMake modules for KiCad WASM cross-compilation
- Add PCBnew test infrastructure (tests/kicad/)
- Add build plan documentation

Successfully tested builds: Zstd 1.5.5, GLM 0.9.9.8, FreeType 2.13.2,
HarfBuzz 8.3.0, Pixman 0.42.2, Cairo 1.18.0

🤖 Generated with [Claude Code](https://claude.com/claude-code)

Co-Authored-By: Claude <noreply@anthropic.com>
2025-12-04 13:15:04 +01:00
..
cmake Add KiCad WASM build infrastructure and dependency scripts 2025-12-04 13:15:04 +01:00
kiplatform Add KiCad WASM build infrastructure and dependency scripts 2025-12-04 13:15:04 +01:00
libcontext Add KiCad WASM build infrastructure and dependency scripts 2025-12-04 13:15:04 +01:00
CMakeLists.txt Add KiCad WASM build infrastructure and dependency scripts 2025-12-04 13:15:04 +01:00
README.md Add KiCad WASM build infrastructure and dependency scripts 2025-12-04 13:15:04 +01:00

WASM Compatibility Layer

This directory contains WASM-specific implementations that allow KiCad to run in a web browser without modifying KiCad's source code.

Principle

Instead of patching KiCad source files, we:

  1. Override include paths to use our headers first
  2. Provide alternative implementations for platform-specific code
  3. Link our libraries instead of system libraries

Directory Structure

wasm/
├── CMakeLists.txt          # Master CMake for compatibility layer
├── README.md               # This file
├── kiplatform/             # Platform abstraction implementations
│   ├── CMakeLists.txt
│   ├── app.cpp             # App lifecycle (paths, startup)
│   ├── drivers.cpp         # GPU detection (returns "WebGL")
│   ├── environment.cpp     # Environment variables (localStorage)
│   ├── io.cpp              # File I/O (WASM virtual filesystem)
│   ├── policy.cpp          # Security policy (always permissive)
│   ├── secrets.cpp         # Credential storage (localStorage)
│   ├── sysinfo.cpp         # System information
│   └── printing.cpp        # Print support (browser print())
├── libcontext/             # Coroutine/fiber implementation
│   ├── CMakeLists.txt
│   └── fcontext_wasm.cpp   # Emscripten Asyncify fibers
├── shims/                  # Header overrides
│   └── *.h                 # Headers that redirect to our impls
└── config/                 # Build configuration
    ├── kicad_wasm_config.h # Version and feature config
    └── setup.h             # Platform setup

How It Works

Include Path Override

When building KiCad for WASM, we add our directories first in the include path:

-I$PROJECT_ROOT/wasm/shims
-I$PROJECT_ROOT/wasm/kiplatform
-I$PROJECT_ROOT/stubs/include

This means when KiCad includes <kiplatform/app.h>, it finds our version first.

Library Override

We build libkiplatform_wasm.a and link it instead of the native kiplatform:

-L$BUILD_ROOT/wasm -lkiplatform_wasm

CMake Integration

The main KiCad build is configured to find our implementations:

-DCMAKE_MODULE_PATH="$PROJECT_ROOT/cmake"
-DKIPLATFORM_LIBRARY="$BUILD_ROOT/wasm/libkiplatform_wasm.a"

Adding New Implementations

  1. Create the implementation file in the appropriate directory
  2. Add it to the CMakeLists.txt
  3. Ensure the header interface matches KiCad's expected interface
  4. Test with a minimal build before full integration