pcbjam/scripts/kicad/build-kicad-target.sh
Gergő Törcsvári 4f8c2d1f56
feat(eeschema): collab bridge read/emit + build fixes; apply WIP (yjs-bridge commit 3)
eeschema's half of the Yjs collaborative bridge, reusing the generic reconciler /
BroadcastChannel transport unchanged. Zero kicad-fork change: native SCH_ITEM uuid +
native SCHEMATIC_LISTENER. All in the wasm layer (wasm/bindings/eeschema_embind.cpp).

Working (verified in the web app):
- kicadCollabSnapshot(): enumerate sch.Hierarchy() -> LastScreen()->Items() as
  {id,type,x,y}; registers the listener on first call
- emit: SCHEMATIC_LISTENER subclass -> per-item delta via window.kicadCollab.onDelta;
  fires on real SCH_COMMIT::Push (a real wire move broadcasts added/removed/changed)

Apply is a documented follow-up (gated off so a peer tab can't crash): SCH_ITEM::Move
traps with 'indirect call signature mismatch' when invoked outside a KiCad tool
coroutine (Asyncify+fiber+exception-trampoline). Modify/Clone/GetPosition all work;
only the virtual Move write traps. Fix direction: route apply through TOOL_MANAGER.

Also: build-kicad-target.sh now force-relinks when only <app>_embind.cpp changed (the
embind .o isn't a make dep, so new bindings silently vanished), and adds the
expected/rtree/fmt thirdparty includes the eeschema bindings need.

Tests: eeschema-collab.spec.ts covers snapshot (green); apply/two-tab skipped with the
blocker noted. WasmTool gates collab to pl_editor only until eeschema apply works.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-05 13:56:41 +02:00

444 lines
19 KiB
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Executable file

#!/bin/bash
# Build a KiCad app (pcbnew, eeschema, calculator, pl_editor) for WebAssembly.
#
# Usage:
# ./scripts/kicad/build-kicad-target.sh <app> [options]
#
# Args:
# <app> pcbnew | eeschema | calculator | pl_editor (required)
#
# Options:
# --full Full clean rebuild (dependencies + KiCad)
# --clean-kicad Clean only KiCad build directory (not deps)
# --build-deps Build dependencies (default: skip)
# --debug Build with debug symbols (default)
# --release Build optimized without debug symbols
# --diag=... Diagnostic preprocessor flags (gal, coroutine, ctor, all)
# -j N Parallel compilation jobs (default: 1)
#
# Each app builds into its own tree: build-wasm/kicad-<app>/.
# Per-app extras live alongside generic stubs:
# - wasm/bindings/<app>_embind.cpp (optional)
# - wasm/stubs/<app>_frame_stub.cpp (optional, app-specific stubs)
# - wasm/stubs/<app>_scripting_stub.cpp (optional, app-specific scripting stubs)
#
# Most apps use the same name for the user-facing app, the CMake target, and
# the source subdirectory. Calculator is the exception: app=calculator but the
# upstream target and source subdir are both pcb_calculator (the OUTPUT_NAME
# property in pcb_calculator/CMakeLists.txt emits calculator.{js,wasm}).
# pl_editor is the standard case but its source subdir is pagelayout_editor.
set -e
if [ -z "$1" ]; then
echo "Error: missing <app> argument (pcbnew | eeschema | calculator | pl_editor | symbol_editor | gerbview)" >&2
exit 1
fi
APP_NAME="$1"
shift
# KICAD_TARGET: the CMake/make target name.
# KICAD_SUBDIR: the source/build subdirectory the target's artifacts land in.
# Most apps share all three names; the exceptions:
# - calculator: target+subdir are both pcb_calculator (OUTPUT_NAME=calculator)
# - pl_editor: subdir is pagelayout_editor (upstream source dir name)
# - symbol_editor: served by the eeschema kiface, so it builds in eeschema/
case "$APP_NAME" in
pcbnew|eeschema|gerbview)
KICAD_TARGET="$APP_NAME"
KICAD_SUBDIR="$APP_NAME"
;;
pl_editor)
KICAD_TARGET="pl_editor"
KICAD_SUBDIR="pagelayout_editor"
;;
calculator)
KICAD_TARGET="pcb_calculator"
KICAD_SUBDIR="pcb_calculator"
;;
symbol_editor)
KICAD_TARGET="symbol_editor"
KICAD_SUBDIR="eeschema"
;;
*)
echo "Error: unknown app '$APP_NAME' (expected: pcbnew | eeschema | calculator | pl_editor | symbol_editor | gerbview)" >&2
exit 1
;;
esac
SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
source "${SCRIPT_DIR}/../common/env.sh"
source "${SCRIPT_DIR}/../common/versions.sh"
source "${SCRIPT_DIR}/../common/functions.sh"
source "${SCRIPT_DIR}/../common/stages.sh"
KICAD_DIR="${PROJECT_ROOT}/kicad"
KICAD_BUILD="${BUILD_ROOT}/kicad-${APP_NAME}"
KICAD_STAMP="${BUILD_ROOT}/stamps/kicad-${APP_NAME}.stamp"
WASM_LAYER="${PROJECT_ROOT}/wasm"
WX_BUILD="${BUILD_ROOT}/wxwidgets-universal"
# Parse arguments - incremental build by default (optimized for development)
NO_CLEAN=1
FULL_CLEAN=0
SKIP_DEPS=1
DEBUG=0
DIAG_LIST=""
while [[ $# -gt 0 ]]; do
case $1 in
--full)
FULL_CLEAN=1
NO_CLEAN=0
SKIP_DEPS=0
shift
;;
--clean-kicad)
NO_CLEAN=0
shift
;;
--build-deps)
SKIP_DEPS=0
shift
;;
--debug)
DEBUG=1
shift
;;
--release)
DEBUG_BUILD=0
export DEBUG_BUILD
shift
;;
--diag=*)
DIAG_LIST="${1#--diag=}"
shift
;;
--diag)
DIAG_LIST="$2"
shift 2
;;
-j)
export JOBS="$2"
shift 2
;;
-j*)
export JOBS="${1#-j}"
shift
;;
*)
shift
;;
esac
done
# Diagnostic preprocessor defines from --diag=<csv> (gal, coroutine, ctor, all).
# These gate the KI_DIAG_* macros in kicad/include/kicad_wasm_diag.h. Output goes
# to stdout ([KICAD_OUT] logs), never errors. Off by default.
DIAG_DEFINES=""
if [ -n "${DIAG_LIST}" ]; then
IFS=',' read -ra _diag_cats <<< "${DIAG_LIST}"
for _cat in "${_diag_cats[@]}"; do
case "${_cat}" in
gal) DIAG_DEFINES="${DIAG_DEFINES} -DKICAD_DIAG_GAL=1" ;;
coroutine) DIAG_DEFINES="${DIAG_DEFINES} -DKICAD_DIAG_COROUTINE=1" ;;
ctor) DIAG_DEFINES="${DIAG_DEFINES} -DKICAD_DIAG_CTOR=1" ;;
all) DIAG_DEFINES="${DIAG_DEFINES} -DKICAD_DIAG_GAL=1 -DKICAD_DIAG_COROUTINE=1 -DKICAD_DIAG_CTOR=1" ;;
"") ;;
*) log_warn "Unknown --diag category: '${_cat}' (valid: gal, coroutine, ctor, all)" ;;
esac
done
log_info "Diagnostic logging enabled:${DIAG_DEFINES}"
fi
log_info "Building app: ${APP_NAME}"
log_info "Using ${JOBS} parallel jobs"
# Step 1: Clean build directories
if [ $FULL_CLEAN -eq 1 ]; then
log_info "Full clean: removing all stamps and build directories..."
rm -rf "${STAMPS_DIR}"/*
rm -rf "${BUILD_ROOT}/deps"/*
rm -rf "${BUILD_ROOT}/wxwidgets-universal"
rm -rf "${BUILD_ROOT}/stubs"
rm -rf "${KICAD_BUILD}"
rm -rf "${SYSROOT}"/*
elif [ $NO_CLEAN -eq 0 ]; then
log_info "Cleaning KiCad ${APP_NAME} build directory..."
rm -rf "${KICAD_BUILD}" "${KICAD_STAMP}"
else
log_info "Incremental build (use --clean-kicad or --full to clean)"
fi
# Step 2: Build dependencies
# Note: --with-occ for OpenCASCADE, but NOT ngspice since KICAD_SPICE=OFF
if [ $SKIP_DEPS -eq 0 ]; then
kw_stage deps
log_info "Building dependencies..."
"${SCRIPT_DIR}/../deps/build-all-deps.sh" --with-occ
else
log_info "Skipping dependencies (use --build-deps or --full to build)"
fi
# Note: We don't check the KiCad stamp here for incremental builds.
# CMake handles dependency tracking - it will detect changed source files
# and only recompile what's needed. The stamp is created at the end for
# scripts that want to know if KiCad was ever built successfully.
# Step 4: Build wxWidgets (incremental - only recompiles changed files)
kw_stage wxwidgets
log_info "Building wxWidgets..."
"${SCRIPT_DIR}/../build-wxuniversal-wasm.sh" --no-clean
log_info "Building KiCad ${APP_NAME} ${KICAD_VERSION} for WASM..."
# Step 5: Set build type
# Use environment DEBUG_BUILD if set, otherwise check local --debug flag
# -fexceptions is required because wxWidgets is built with exceptions enabled
# -matomics -mbulk-memory are required for shared memory (pthreads)
# NOTE: We use -O1 for debug builds because -O0 produces WASM with too many
# locals for V8/Chrome to compile (error: "local count too large").
# -O1 keeps debug info but optimizes enough to stay under V8's limits.
if [ "${DEBUG_BUILD:-0}" = "1" ] || [ $DEBUG -eq 1 ]; then
BUILD_TYPE="Debug"
EXTRA_FLAGS="-g -O1 -fexceptions -matomics -mbulk-memory"
# -gseparate-dwarf puts debug info in a separate .debug.wasm file
# This keeps the main WASM small (~200MB) while preserving full debug info
# DevTools loads the debug file on-demand when debugging
LINKER_DEBUG_FLAGS="-O1 -g -gseparate-dwarf -fexceptions"
log_info "Building KiCad in DEBUG mode (separate DWARF for smaller main binary)"
else
BUILD_TYPE="Release"
EXTRA_FLAGS="-O2 -fexceptions -matomics -mbulk-memory"
# -O0 at link time skips wasm-opt (which can OOM on large WASM files)
# Compilation is still -O2 for optimized code, but we skip post-link wasm-opt
LINKER_DEBUG_FLAGS="-O0 -fexceptions"
log_info "Building KiCad in RELEASE mode (skipping wasm-opt due to memory limits)"
fi
# Step 6: Create build directory
mkdir -p "${KICAD_BUILD}"
cd "${KICAD_BUILD}"
# Step 6.1: Build stub libraries for missing symbols
# Generic stubs (libgit2, curl, nng) are shared across apps and built in BUILD_ROOT/stubs.
# App-specific stubs (e.g. pcbnew_scripting_stub) build into the same directory but
# are only linked in when the corresponding source exists.
STUBS_DIR="${PROJECT_ROOT}/wasm/stubs"
STUBS_BUILD="${BUILD_ROOT}/stubs"
mkdir -p "${STUBS_BUILD}"
kw_stage kicad-stubs
log_info "Building stub libraries..."
# Compile libgit2 stub
emcc -c "${STUBS_DIR}/libgit2_stub.c" -o "${STUBS_BUILD}/libgit2_stub.o"
emar rcs "${STUBS_BUILD}/libgit2_stub.a" "${STUBS_BUILD}/libgit2_stub.o"
# Compile curl stub
emcc -c "${STUBS_DIR}/curl_stub.c" -o "${STUBS_BUILD}/curl_stub.o"
emar rcs "${STUBS_BUILD}/libcurl_stub.a" "${STUBS_BUILD}/curl_stub.o"
# Note: the GLU tesselator is provided by kicad/libs/kimath/glu_tess/glu_tess_impl.cpp,
# compiled as part of the GAL library (requires KiCad headers).
# Compile NNG stub (IPC API requires NNG but sockets don't work in WASM)
emcc -c -I"${STUBS_DIR}" "${STUBS_DIR}/nng_stub.c" -o "${STUBS_BUILD}/nng_stub.o"
emar rcs "${STUBS_BUILD}/libnng_stub.a" "${STUBS_BUILD}/nng_stub.o"
# wx flags for any C++ stubs that include wx headers
WX_CXXFLAGS=$("${WX_BUILD}/wx-config" --cxxflags 2>/dev/null || echo "-I${WX_BUILD}/lib/wx/include/emscripten-unicode-static-3.2 -I${PROJECT_ROOT}/wxwidgets/include")
# App-specific stubs:
# - pcbnew: pcbnew_scripting_stub.cpp (action-plugin scripting placeholders)
# - eeschema: eeschema_frame_stub.cpp (placeholder; grows as linker dictates)
APP_STUB_LINK=""
APP_SCRIPTING_STUB_SRC="${STUBS_DIR}/${APP_NAME}_scripting_stub.cpp"
if [ -f "${APP_SCRIPTING_STUB_SRC}" ]; then
log_info "Building app scripting stub: ${APP_NAME}_scripting_stub.cpp"
em++ -c ${WX_CXXFLAGS} "${APP_SCRIPTING_STUB_SRC}" -o "${STUBS_BUILD}/${APP_NAME}_scripting_stub.o"
emar rcs "${STUBS_BUILD}/lib${APP_NAME}_scripting_stub.a" "${STUBS_BUILD}/${APP_NAME}_scripting_stub.o"
APP_STUB_LINK="${APP_STUB_LINK} ${STUBS_BUILD}/lib${APP_NAME}_scripting_stub.a"
fi
APP_FRAME_STUB_SRC="${STUBS_DIR}/${APP_NAME}_frame_stub.cpp"
if [ -f "${APP_FRAME_STUB_SRC}" ] && [ -s "${APP_FRAME_STUB_SRC}" ]; then
log_info "Building app frame stub: ${APP_NAME}_frame_stub.cpp"
em++ -c ${WX_CXXFLAGS} "${APP_FRAME_STUB_SRC}" -o "${STUBS_BUILD}/${APP_NAME}_frame_stub.o"
emar rcs "${STUBS_BUILD}/lib${APP_NAME}_frame_stub.a" "${STUBS_BUILD}/${APP_NAME}_frame_stub.o"
APP_STUB_LINK="${APP_STUB_LINK} ${STUBS_BUILD}/lib${APP_NAME}_frame_stub.a"
fi
log_info "Stub libraries built"
# Step 6.2: Replace Emscripten's wasm-opt with stub to bypass asyncify transformation
# This allows Emscripten to generate JS with Asyncify runtime, but we run the real
# wasm-opt --asyncify on the host where more RAM is available (needs 50GB+ for KiCad)
if [ -z "${EMSDK}" ]; then
log_error "EMSDK environment variable is not set."
exit 1
fi
EMSDK_WASM_OPT="${EMSDK}/upstream/bin/wasm-opt"
if [ -f "${EMSDK_WASM_OPT}" ] && [ ! -f "${EMSDK_WASM_OPT}.real" ]; then
log_info "Backing up real wasm-opt..."
mv "${EMSDK_WASM_OPT}" "${EMSDK_WASM_OPT}.real"
fi
# Always copy the latest stub (in case it was updated)
cp "${STUBS_DIR}/wasm-opt-stub.sh" "${EMSDK_WASM_OPT}"
chmod +x "${EMSDK_WASM_OPT}"
log_info "wasm-opt stub installed (asyncify will run on host)"
# Step 6.3: Replace wasm-emscripten-finalize with stub (same pattern as wasm-opt)
# This tool also OOMs on large WASM with debug symbols, so we run it on the host
EMSDK_FINALIZE="${EMSDK}/upstream/bin/wasm-emscripten-finalize"
if [ -f "${EMSDK_FINALIZE}" ] && [ ! -f "${EMSDK_FINALIZE}.real" ]; then
log_info "Backing up real wasm-emscripten-finalize..."
mv "${EMSDK_FINALIZE}" "${EMSDK_FINALIZE}.real"
fi
# Always copy the latest stub (in case it was updated)
cp "${STUBS_DIR}/wasm-emscripten-finalize-stub.sh" "${EMSDK_FINALIZE}"
chmod +x "${EMSDK_FINALIZE}"
log_info "wasm-emscripten-finalize stub installed (finalize will run on host)"
# Step 6.5: Verify WASM support is in KiCad fork
# The kicad submodule should already have WASM port detection and kiplatform support
KICAD_CMAKE="${KICAD_DIR}/CMakeLists.txt"
if ! grep -q "msw|qt|gtk|osx|wasm" "${KICAD_CMAKE}"; then
log_error "KiCad fork is missing WASM port detection support."
log_error "Please ensure the kicad submodule has WASM modifications."
exit 1
fi
KIPLATFORM_CMAKE="${KICAD_DIR}/libs/kiplatform/CMakeLists.txt"
if ! grep -q "KICAD_WX_PORT STREQUAL wasm" "${KIPLATFORM_CMAKE}"; then
log_error "KiCad fork is missing kiplatform WASM support."
log_error "Please ensure the kicad submodule has WASM modifications."
exit 1
fi
log_info "KiCad WASM support verified"
# Embind object — built after CMake configure runs (so config.h exists). The
# linker line below references "${STUBS_BUILD}/${APP_NAME}_embind.o" so we
# create an empty placeholder when the source is missing, to keep the link
# line stable across apps.
EMBIND_OBJ="${STUBS_BUILD}/${APP_NAME}_embind.o"
EMBIND_SRC="${PROJECT_ROOT}/wasm/bindings/${APP_NAME}_embind.cpp"
# Step 7: Configure KiCad with CMake
# We use CMAKE_MODULE_PATH to inject our compatibility layer
kw_stage kicad-configure
log_info "Configuring KiCad with CMake..."
# Use ccache if available (CMAKE_*_COMPILER_LAUNCHER is the proper CMake way)
CCACHE_OPTS=""
if command -v ccache &> /dev/null; then
CCACHE_OPTS="-DCMAKE_C_COMPILER_LAUNCHER=ccache -DCMAKE_CXX_COMPILER_LAUNCHER=ccache"
log_info "Using ccache for compilation"
fi
emcmake cmake "${KICAD_DIR}" \
${CCACHE_OPTS} \
-DCMAKE_BUILD_TYPE=${BUILD_TYPE} \
-DCMAKE_INSTALL_PREFIX="${SYSROOT}" \
-DCMAKE_MODULE_PATH="${WASM_LAYER}/cmake" \
-DSYSROOT="${SYSROOT}" \
-DCMAKE_POLICY_VERSION_MINIMUM=3.5 \
-DCMAKE_CXX_FLAGS="${EXTRA_FLAGS} -pthread -sUSE_ZLIB=1 -DKICAD_USE_PLATFORM_WASM=1${DIAG_DEFINES} -I${SYSROOT}/include -I${STUBS_DIR} -include ${STUBS_DIR}/char_traits_uint16_workaround.h" \
-DCMAKE_C_FLAGS="${EXTRA_FLAGS} -pthread -sUSE_ZLIB=1 -I${SYSROOT}/include -I${STUBS_DIR}" \
-DCMAKE_EXE_LINKER_FLAGS="${LINKER_DEBUG_FLAGS} -pthread -sUSE_ZLIB=1 -sASYNCIFY=1 -sDYNCALLS=1 -sASYNCIFY_STACK_SIZE=65536 -sUSE_PTHREADS=1 -sPTHREAD_POOL_SIZE='navigator.hardwareConcurrency' -sPTHREAD_POOL_SIZE_STRICT=0 -sALLOW_MEMORY_GROWTH=1 -sINITIAL_MEMORY=256MB -sMAXIMUM_MEMORY=4GB -sMAX_WEBGL_VERSION=2 -sEXPORTED_RUNTIME_METHODS=['ccall','cwrap','UTF8ToString','stringToUTF8','lengthBytesUTF8','dynCall'] -sDEFAULT_LIBRARY_FUNCS_TO_INCLUDE=['\$dynCall'] --bind -L${SYSROOT}/lib ${STUBS_BUILD}/libgit2_stub.a ${STUBS_BUILD}/libcurl_stub.a${APP_STUB_LINK} ${STUBS_BUILD}/libnng_stub.a ${EMBIND_OBJ}" \
-DCMAKE_PREFIX_PATH="${SYSROOT};${WX_BUILD}" \
-DwxWidgets_CONFIG_EXECUTABLE="${WX_BUILD}/wx-config" \
\
-DKICAD_BUILD_QA_TESTS=OFF \
-DKICAD_SPICE=OFF \
-DKICAD_USE_EGL=OFF \
-DKICAD_USE_BUNDLED_GLEW=ON \
-DKICAD_BUILD_3D_VIEWER_WASM=OFF \
-DKICAD_IPC_API=ON \
-DKICAD_USE_PCH=ON \
\
-DZSTD_ROOT="${SYSROOT}" \
-DZSTD_INCLUDE_DIR="${SYSROOT}/include" \
-DZSTD_LIBRARY="${SYSROOT}/lib/libzstd.a" \
-DGLM_INCLUDE_DIR="${SYSROOT}/include" \
-DGLM_VERSION="0.9.9.8" \
-DBOOST_ROOT="${SYSROOT}" \
-DBoost_INCLUDE_DIR="${SYSROOT}/include" \
-DBoost_LIBRARY_DIR="${SYSROOT}/lib" \
-DBoost_NO_SYSTEM_PATHS=ON \
-DBoost_NO_BOOST_CMAKE=ON \
-DFREETYPE_INCLUDE_DIR_ft2build="${SYSROOT}/include/freetype2" \
-DFREETYPE_INCLUDE_DIR_freetype2="${SYSROOT}/include/freetype2" \
-DFREETYPE_LIBRARY="${SYSROOT}/lib/libfreetype.a" \
-DHarfBuzz_INCLUDE_DIR="${SYSROOT}/include/harfbuzz" \
-DHarfBuzz_LIBRARY="${SYSROOT}/lib/libharfbuzz.a" \
-DOCC_INCLUDE_DIR="${SYSROOT}/include/opencascade" \
-DOCC_LIBRARY_DIR="${SYSROOT}/lib" \
-DProtobuf_INCLUDE_DIR="${SYSROOT}/include" \
-DProtobuf_LIBRARY="${SYSROOT}/lib/libprotobuf.a" \
-DProtobuf_LITE_LIBRARY="${SYSROOT}/lib/libprotobuf-lite.a" \
-DProtobuf_PROTOC_EXECUTABLE="${SYSROOT}/bin/protoc" \
-DODBC_CONFIG:STRING="stub-for-wasm" \
-DODBCLIB:STRING="" \
-DODBC_CFLAGS:STRING="" \
-DODBC_LINK_FLAGS:STRING="" \
-DODBC_LIBRARIES:STRING="" \
\
-DBUILD_GITHUB_PLUGIN=OFF \
-DKICAD_PCM=OFF \
\
-DHAVE_STRCASECMP=1 \
-DHAVE_STRNCASECMP=1
# Step 7.1: Compile Embind bindings (after CMake so config.h exists)
# Exposes KiCad objects to JavaScript for future Pyodide integration.
# When no app-specific source exists, build an empty object so the linker line
# referencing ${APP_NAME}_embind.o doesn't break.
if [ -f "${EMBIND_SRC}" ]; then
log_info "Compiling Embind bindings (${APP_NAME})..."
# Use the same includes and flags that KiCad uses
KICAD_INCLUDES="-I${KICAD_BUILD} -I${KICAD_DIR}/include -I${KICAD_DIR}/${KICAD_SUBDIR} -I${KICAD_DIR}/common"
KICAD_INCLUDES+=" -I${KICAD_DIR}/libs/core/include -I${KICAD_DIR}/libs/kimath/include -I${KICAD_DIR}/libs/kiplatform/include"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/clipper2/Clipper2Lib/include"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/nlohmann_json"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/expected/include"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/rtree"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/fmt"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/dynamic_bitset"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/nanodbc"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty/picosha2"
KICAD_INCLUDES+=" -I${KICAD_DIR}/thirdparty"
KICAD_INCLUDES+=" -I${SYSROOT}/include"
# KiCad requires C++20 for concepts
em++ -std=c++20 -c ${EXTRA_FLAGS} ${WX_CXXFLAGS} ${KICAD_INCLUDES} "${EMBIND_SRC}" -o "${EMBIND_OBJ}"
else
log_info "No embind source for ${APP_NAME} (expected at ${EMBIND_SRC}); using empty placeholder"
EMPTY_C="${STUBS_BUILD}/${APP_NAME}_embind_empty.c"
: > "${EMPTY_C}"
emcc -c "${EMPTY_C}" -o "${EMBIND_OBJ}"
fi
# Step 8: Build the app target
kw_stage kicad-compile
log_info "Building ${APP_NAME} (CMake target: ${KICAD_TARGET})..."
# The embind object (step 7.1) is injected via linker flags, NOT tracked as a CMake/
# make dependency — so when ONLY <app>_embind.cpp changes, make sees no changed source,
# skips the link, and the new bindings silently vanish from the binary. Force a relink
# whenever the freshly-compiled embind object is newer than the linked output.
LINK_OUT_JS="${KICAD_BUILD}/${KICAD_SUBDIR}/${APP_NAME}.js"
LINK_OUT_WASM="${KICAD_BUILD}/${KICAD_SUBDIR}/${APP_NAME}.wasm"
if [ -f "${EMBIND_OBJ}" ] && [ -f "${LINK_OUT_JS}" ] && [ "${EMBIND_OBJ}" -nt "${LINK_OUT_JS}" ]; then
log_info "Embind object newer than ${APP_NAME}.js — forcing relink to pick up new bindings"
rm -f "${LINK_OUT_JS}" "${LINK_OUT_WASM}"
fi
emmake make -j${JOBS} "${KICAD_TARGET}"
# Step 8.1: Build bitmap resources (images.tar.gz)
# This creates the icon archive that KiCad loads at runtime
kw_stage kicad-bitmaps
log_info "Building bitmap resources..."
emmake make bitmap_archive_build
# Step 9: Create stamp file
create_stamp "${KICAD_STAMP}"
log_info "KiCad ${APP_NAME} build complete!"
log_info "Output: ${KICAD_BUILD}/${KICAD_SUBDIR}/${APP_NAME}.js"