pcbjam/wasm
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Filename Latest commit message Latest commit date
Gergő Törcsvári b5b1a0ac05
fix(wasm): dynCall signature-mismatch fallback + eeschema collab wire converters
Two things, both verified in the real web app (two-tab eeschema collab).

1. dynCall crash fix (all apps) — scripts/common/shims/dyncall-binding.js.tmpl.
   Programmatic editor edits trapped with 'indirect call signature mismatch': the
   asyncify-instrumented wasmExports[dynCall_<sig>] trampoline does call_indirect with a
   stale type for some table indices (post-asyncify+O2) even though the table entry is
   valid. Proven by patching the built js: at the trap getWasmTableEntry(index) SUCCEEDS
   where the trampoline fails. Fix: the shim now catches the 'signature mismatch'
   RuntimeError and falls back to getWasmTableEntry; the Asyncify unwind sentinel and real
   exceptions re-throw, so instrumentation/unwind is untouched for normal calls. This
   unblocks ALL programmatic edits, not just collab (e.g. eeschema SCH_ITEM::Move).

2. eeschema collab apply converters (wasm/bindings/eeschema_embind.cpp).
   doApply now handles added-item construction (build the SCH_ITEM with the delta's uuid
   via const_cast — as the s-expr parser does — + commit.Add) and richer SCH_LINE
   serialization (start/end/layer) so wire edits reconstruct on the peer. Implemented for
   SCH_LINE (wires) + SCH_JUNCTION; other types log 'no converter for added type' and are
   skipped (next batch). eeschema re-enabled in the web app collab gate.

Tests: eeschema-collab.spec snapshot (green); apply/two-tab skipped — they no-op headless
because the e2e harness's kicadOpenFile returns false (OpenProjectFiles bails before
building the connectivity graph), so SCH_COMMIT::Push doesn't persist. Verified in-app.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-05 13:56:42 +02:00
..
bindings fix(wasm): dynCall signature-mismatch fallback + eeschema collab wire converters 2026-06-05 13:56:42 +02:00
cmake refactor: 💡 remove orphaned files 2026-06-05 13:18:24 +02:00
kiplatform refactor: 💡 remove orphaned files 2026-06-05 13:18:24 +02:00
stubs refactor: 💡 remove orphaned files 2026-06-05 13:18:24 +02:00
README.md refactor: 💡 remove orphaned files 2026-06-05 13:18:24 +02:00

WASM Compatibility Layer

This directory contains WASM-specific implementations that allow KiCad to run in a web browser while keeping our KiCad fork as close to upstream as possible.

Principle

Instead of patching KiCad source files, we:

  1. Provide alternative implementations for platform-specific code (kiplatform)
  2. Stub out libraries/features that can't work in the browser (libgit2, curl, nng, scripting, 3D viewer, ...)
  3. Expose KiCad to JavaScript via Embind bindings
  4. Override host package detection during cross-compilation (cmake find-modules)

The KiCad-side hooks for this are small if(EMSCRIPTEN) branches in KiCad's own CMakeLists that pull sources from this directory — see "How it's wired" below.

Directory Structure

wasm/
├── README.md               # This file
├── kiplatform/             # Platform abstraction implementations (compiled into KiCad)
│   ├── app.cpp             # App lifecycle (paths, startup)
│   ├── drivers.cpp         # GPU detection (returns "WebGL")
│   ├── environment.cpp     # Environment variables
│   ├── io.cpp              # File I/O (WASM virtual filesystem)
│   ├── policy.cpp          # Security policy (always permissive)
│   ├── secrets.cpp         # Credential storage
│   ├── sysinfo.cpp         # System information
│   ├── printing.cpp        # Print support (browser print())
│   └── ui.cpp              # UI helpers
├── bindings/               # Embind bindings exposing each app to JavaScript
│   ├── pcbnew_embind.cpp
│   ├── eeschema_embind.cpp
│   ├── pl_editor_embind.cpp
│   └── calculator_embind.cpp
├── stubs/                  # Stub implementations + header shims for unavailable deps
│   ├── *.c / *.cpp         # libgit2, curl, nng, scripting, 3D viewer, frame stubs, ...
│   ├── char_traits_uint16_workaround.h
│   └── GL/ nng/ ngspice/   # Header stubs found via include paths
└── cmake/                  # CMake find-module overrides for cross-compilation
    └── Find*.cmake / Use*.cmake

How it's wired

kiplatform — compiled into KiCad

The kiplatform/*.cpp files are added directly to KiCad's kiplatform library by an if(EMSCRIPTEN) branch in kicad/libs/kiplatform/CMakeLists.txt, which references them as ${PROJECT_SOURCE_DIR}/../wasm/kiplatform/*.cpp. There is no separate libkiplatform_wasm.a.

stubs — compiled by the build script and KiCad CMakeLists

scripts/kicad/build-kicad-target.sh compiles the C stubs (libgit2_stub.c, curl_stub.c, nng_stub.c) and force-includes char_traits_uint16_workaround.h. App-specific *_frame_stub.cpp / *_scripting_stub.cpp are picked up per app, and the remaining *_stub.cpp files are pulled in by if(EMSCRIPTEN) branches in the KiCad fork's own CMakeLists. Header stubs under GL/, nng/, ngspice/ are resolved via include paths.

bindings — per app

build-kicad-target.sh compiles wasm/bindings/<app>_embind.cpp for the app being built (apps without an embind file get an empty placeholder object).

cmake — module path

build-kicad-target.sh passes -DCMAKE_MODULE_PATH="${PROJECT_ROOT}/wasm/cmake" so the WASM find-module stubs override host package detection.

Coroutine/fiber support is not in this directory — it comes from the KiCad fork's kicad/thirdparty/libcontext/libcontext.cpp (LIBCONTEXT_PLATFORM_wasm32). The GLU tesselator comes from kicad/libs/kimath/glu_tess/glu_tess_impl.cpp.

Adding New Implementations

  1. Create the implementation file in the appropriate directory (kiplatform/, stubs/, bindings/).
  2. Wire it in: a stub C file goes in build-kicad-target.sh; a kiplatform/app source goes in the relevant if(EMSCRIPTEN) branch of the KiCad-side CMakeLists.
  3. Ensure the header interface matches KiCad's expected interface.
  4. Test with a minimal build before full integration.