pcbjam/wasm/stubs/oce_plugin_stub.cpp
2026-08-10 10:14:19 +02:00

248 lines
6.5 KiB
C++

/*
* WASM shadow of the oce 3D plugin's flat-C surface (oce3d_*) — the editor
* build links this INSTEAD of s3d_plugin_oce (no OCC in pcbnew.wasm; see
* docs/features/occ-split/README.md). The static plugin registry
* (kicad/3d-viewer/3d_cache/pcbjam_static_3d_plugins.cpp) consumes exactly
* this surface, so the plugin manager, S3D_CACHE, and the scene build compile
* untouched — .step/.iges footprint models keep loading, their parse just runs
* in the occ_service worker.
*
* oce3d_Load: the model file is already in MEMFS (materialized by
* PCBJAM_3D::EnsureModelFile before the plugin dispatch). Ship its bytes to
* the worker (EM_ASYNC_JS suspend — legal here: EnsureModelFile already
* suspends on this same S3D_CACHE::load path), get back the SCENEGRAPH
* serialized in KiCad's own binary cache format, and rebuild it with
* S3D::ReadCache.
*
* Metadata (extensions/filters/versions) mirrors plugins/3d/oce/oce.cpp and
* include/plugins/3d/3d_plugin.h so the manager's handshake and extension map
* are identical to the real plugin's.
*/
#include <cstdlib>
#include <cstring>
#include <string>
#include <vector>
#include <emscripten.h>
#include <wx/string.h>
#include <wx/filefn.h>
#include <plugins/3dapi/ifsg_api.h>
class SCENEGRAPH;
namespace
{
// Non-Windows extension/filter lists from plugins/3d/oce/oce.cpp (FILE_DATA).
const std::vector<std::string> k_extensions = {
"stp", "STP", "stpZ", "stpz", "STPZ", "step", "STEP", "stp.gz", "STP.GZ", "step.gz",
"STEP.GZ", "igs", "IGS", "iges", "IGES"
};
const std::vector<std::string> k_filters = {
"STEP (*.stp;*.STP;*.stpZ;*.stpz;*.STPZ;*.step;*.STEP;*.stp.gz;*.STP.GZ;*.step.gz;"
"*.STEP.GZ)|*.stp;*.STP;*.stpZ;*.stpz;*.STPZ;*.step;*.STEP;*.stp.gz;*.STP.GZ;"
"*.step.gz;*.STEP.GZ",
"IGES (*.igs;*.IGS;*.iges;*.IGES)|*.igs;*.IGS;*.iges;*.IGES"
};
bool acceptAnyCacheTag( const char*, void* )
{
// The cache blob just crossed the worker boundary from our own writer —
// there is no plugin-version drift to guard against.
return true;
}
} // namespace
// Phase E shape (docs/features/async/22 §5, K5): waits for the worker
// parse+tessellate via a token wait instead of Asyncify-parking in place. The
// wait result is a malloc'd path string: the scenegraph-cache file written
// into this module's MEMFS ("" on failure). Every resolution defers to at
// least a microtask (the early-resolve contract, doc 22 §10 Phase E retry).
EM_JS( void, js_occLoadModelStart, ( int aToken, const char* aModelPath ),
{
const modelPath = UTF8ToString( aModelPath );
const finish = ( cachePath ) => {
const n = lengthBytesUTF8( cachePath ) + 1;
const p = _malloc( n );
stringToUTF8( cachePath, p, n );
globalThis.__wxScheduler.resolveWait( aToken, p );
};
let req;
try
{
const hook = globalThis.occService;
if( !hook || typeof hook.request !== 'function' )
{
console.error( '[pcbjam-occ] loadModel: occ_service provider not installed' );
req = Promise.resolve( null );
}
else
{
const bytes = FS.readFile( modelPath ); // Uint8Array copy — transferable
const dot = modelPath.lastIndexOf( '.' );
const ext = dot >= 0 ? modelPath.slice( dot + 1 ) : 'step';
req = Promise.resolve( hook.request( { kind: 'loadModel', bytes, ext } ) );
}
}
catch( e )
{
console.error( '[pcbjam-occ] loadModel request failed:', e );
req = Promise.resolve( null );
}
req.then( ( res ) => {
let cachePath = '';
if( res && res.ok && res.bytes && res.bytes.length )
{
cachePath = '/tmp/pcbjam_occ_model_cache.3dc';
FS.writeFile( cachePath, res.bytes );
}
else if( res && res.report )
{
console.error( '[pcbjam-occ] loadModel failed:', res.report );
}
finish( cachePath );
} ).catch( ( e ) => {
console.error( '[pcbjam-occ] loadModel request failed:', e );
finish( '' );
} );
} )
// Token waits live in the wx wasm port (evtloop.cpp).
extern "C" int wxWasmBeginWait( const char* aKind );
extern "C" int wxWasmYieldUntil( int aToken );
extern "C"
{
// --- class handshake (include/plugins/3d/3d_plugin.h semantics) -------------
char const* oce3d_GetKicadPluginClass( void )
{
return "PLUGIN_3D";
}
void oce3d_GetClassVersion( unsigned char* Major, unsigned char* Minor, unsigned char* Patch,
unsigned char* Revision )
{
if( Major )
*Major = 1;
if( Minor )
*Minor = 0;
if( Patch )
*Patch = 0;
if( Revision )
*Revision = 0;
}
bool oce3d_CheckClassVersion( unsigned char Major, unsigned char, unsigned char, unsigned char )
{
return Major == 1;
}
// --- plugin identity (plugins/3d/oce/oce.cpp values) -------------------------
const char* oce3d_GetKicadPluginName( void )
{
return "PLUGIN_3D_OCE";
}
void oce3d_GetPluginVersion( unsigned char* Major, unsigned char* Minor, unsigned char* Patch,
unsigned char* Revision )
{
if( Major )
*Major = 1;
if( Minor )
*Minor = 4;
if( Patch )
*Patch = 2;
if( Revision )
*Revision = 0;
}
int oce3d_GetNExtensions( void )
{
return (int) k_extensions.size();
}
char const* oce3d_GetModelExtension( int aIndex )
{
if( aIndex < 0 || aIndex >= (int) k_extensions.size() )
return nullptr;
return k_extensions[aIndex].c_str();
}
int oce3d_GetNFilters( void )
{
return (int) k_filters.size();
}
char const* oce3d_GetFileFilter( int aIndex )
{
if( aIndex < 0 || aIndex >= (int) k_filters.size() )
return nullptr;
return k_filters[aIndex].c_str();
}
bool oce3d_CanRender( void )
{
return true;
}
SCENEGRAPH* oce3d_Load( char const* aFileName )
{
if( !aFileName )
return nullptr;
const int token = wxWasmBeginWait( "occ" );
js_occLoadModelStart( token, aFileName );
// The malloc'd path pointer rides the wait as an int32.
char* cachePath = (char*) (uintptr_t) (uint32_t) wxWasmYieldUntil( token );
if( !cachePath || !*cachePath )
{
std::free( cachePath );
return nullptr;
}
// ReadCache returns the top-level SCENEGRAPH as its SGNODE base.
SGNODE* node = S3D::ReadCache( cachePath, nullptr, &acceptAnyCacheTag );
wxRemoveFile( wxString::FromUTF8( cachePath ) );
std::free( cachePath );
return reinterpret_cast<SCENEGRAPH*>( node );
}
} // extern "C"