.claude/skills/implementing-jsc-classes-cpp/SKILL.md
Implements JavaScript classes in C++ using JavaScriptCore. Use when creating new JS classes with C++ bindings, prototypes, or constructors.
npx skillsauth add oven-sh/bun implementing-jsc-classes-cppInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
3 of 9 scanners reported clean
Some scanners were skipped, did not run, or reported a non-clean status. Review each row below.
For publicly accessible Constructor and Prototype, create 3 classes:
class Foo : public JSC::DestructibleObject - if C++ fields exist; otherwise use JSC::constructEmptyObject with putDirectOffsetclass FooPrototype : public JSC::JSNonFinalObjectclass FooConstructor : public JSC::InternalFunctionNo public constructor? Only Prototype and class needed.
Classes with C++ fields need subspaces in:
src/bun.js/bindings/webcore/DOMClientIsoSubspaces.hsrc/bun.js/bindings/webcore/DOMIsoSubspaces.htemplate<typename MyClassT, JSC::SubspaceAccess mode>
static JSC::GCClient::IsoSubspace* subspaceFor(JSC::VM& vm) {
if constexpr (mode == JSC::SubspaceAccess::Concurrently)
return nullptr;
return WebCore::subspaceForImpl<MyClassT, WebCore::UseCustomHeapCellType::No>(
vm,
[](auto& spaces) { return spaces.m_clientSubspaceForMyClassT.get(); },
[](auto& spaces, auto&& space) { spaces.m_clientSubspaceForMyClassT = std::forward<decltype(space)>(space); },
[](auto& spaces) { return spaces.m_subspaceForMyClassT.get(); },
[](auto& spaces, auto&& space) { spaces.m_subspaceForMyClassT = std::forward<decltype(space)>(space); });
}
static JSC_DECLARE_HOST_FUNCTION(jsFooProtoFuncMethod);
static JSC_DECLARE_CUSTOM_GETTER(jsFooGetter_property);
static const HashTableValue JSFooPrototypeTableValues[] = {
{ "property"_s, static_cast<unsigned>(PropertyAttribute::ReadOnly | PropertyAttribute::CustomAccessor), NoIntrinsic, { HashTableValue::GetterSetterType, jsFooGetter_property, 0 } },
{ "method"_s, static_cast<unsigned>(PropertyAttribute::Function), NoIntrinsic, { HashTableValue::NativeFunctionType, jsFooProtoFuncMethod, 1 } },
};
class JSFooPrototype final : public JSC::JSNonFinalObject {
public:
using Base = JSC::JSNonFinalObject;
static constexpr unsigned StructureFlags = Base::StructureFlags;
static JSFooPrototype* create(JSC::VM& vm, JSC::JSGlobalObject* globalObject, JSC::Structure* structure) {
JSFooPrototype* prototype = new (NotNull, allocateCell<JSFooPrototype>(vm)) JSFooPrototype(vm, structure);
prototype->finishCreation(vm);
return prototype;
}
template<typename, JSC::SubspaceAccess>
static JSC::GCClient::IsoSubspace* subspaceFor(JSC::VM& vm) { return &vm.plainObjectSpace(); }
DECLARE_INFO;
static JSC::Structure* createStructure(JSC::VM& vm, JSC::JSGlobalObject* globalObject, JSC::JSValue prototype) {
auto* structure = JSC::Structure::create(vm, globalObject, prototype, JSC::TypeInfo(JSC::ObjectType, StructureFlags), info());
structure->setMayBePrototype(true);
return structure;
}
private:
JSFooPrototype(JSC::VM& vm, JSC::Structure* structure) : Base(vm, structure) {}
void finishCreation(JSC::VM& vm);
};
void JSFooPrototype::finishCreation(VM& vm) {
Base::finishCreation(vm);
reifyStaticProperties(vm, JSFoo::info(), JSFooPrototypeTableValues, *this);
JSC_TO_STRING_TAG_WITHOUT_TRANSITION();
}
// Getter
JSC_DEFINE_CUSTOM_GETTER(jsFooGetter_prop, (JSGlobalObject* globalObject, EncodedJSValue thisValue, PropertyName)) {
VM& vm = globalObject->vm();
auto scope = DECLARE_THROW_SCOPE(vm);
JSFoo* thisObject = jsDynamicCast<JSFoo*>(JSValue::decode(thisValue));
if (UNLIKELY(!thisObject)) {
Bun::throwThisTypeError(*globalObject, scope, "JSFoo"_s, "prop"_s);
return {};
}
return JSValue::encode(jsBoolean(thisObject->value()));
}
// Function
JSC_DEFINE_HOST_FUNCTION(jsFooProtoFuncMethod, (JSGlobalObject* globalObject, CallFrame* callFrame)) {
VM& vm = globalObject->vm();
auto scope = DECLARE_THROW_SCOPE(vm);
auto* thisObject = jsDynamicCast<JSFoo*>(callFrame->thisValue());
if (UNLIKELY(!thisObject)) {
Bun::throwThisTypeError(*globalObject, scope, "Foo"_s, "method"_s);
return {};
}
return JSValue::encode(thisObject->doSomething(vm, globalObject));
}
class JSFooConstructor final : public JSC::InternalFunction {
public:
using Base = JSC::InternalFunction;
static constexpr unsigned StructureFlags = Base::StructureFlags;
static JSFooConstructor* create(JSC::VM& vm, JSC::Structure* structure, JSC::JSObject* prototype) {
JSFooConstructor* constructor = new (NotNull, JSC::allocateCell<JSFooConstructor>(vm)) JSFooConstructor(vm, structure);
constructor->finishCreation(vm, prototype);
return constructor;
}
DECLARE_INFO;
template<typename CellType, JSC::SubspaceAccess>
static JSC::GCClient::IsoSubspace* subspaceFor(JSC::VM& vm) { return &vm.internalFunctionSpace(); }
static JSC::Structure* createStructure(JSC::VM& vm, JSC::JSGlobalObject* globalObject, JSC::JSValue prototype) {
return JSC::Structure::create(vm, globalObject, prototype, JSC::TypeInfo(JSC::InternalFunctionType, StructureFlags), info());
}
private:
JSFooConstructor(JSC::VM& vm, JSC::Structure* structure) : Base(vm, structure, callFoo, constructFoo) {}
void finishCreation(JSC::VM& vm, JSC::JSObject* prototype) {
Base::finishCreation(vm, 0, "Foo"_s);
putDirectWithoutTransition(vm, vm.propertyNames->prototype, prototype, JSC::PropertyAttribute::DontEnum | JSC::PropertyAttribute::DontDelete | JSC::PropertyAttribute::ReadOnly);
}
};
Add to ZigGlobalObject.h:
JSC::LazyClassStructure m_JSFooClassStructure;
Initialize in ZigGlobalObject.cpp:
m_JSFooClassStructure.initLater([](LazyClassStructure::Initializer& init) {
Bun::initJSFooClassStructure(init);
});
Visit in visitChildrenImpl:
m_JSFooClassStructure.visit(visitor);
extern "C" JSC::EncodedJSValue Bun__JSFooConstructor(Zig::GlobalObject* globalObject) {
return JSValue::encode(globalObject->m_JSFooClassStructure.constructor(globalObject));
}
extern "C" EncodedJSValue Bun__Foo__toJS(Zig::GlobalObject* globalObject, Foo* foo) {
auto* structure = globalObject->m_JSFooClassStructure.get(globalObject);
return JSValue::encode(JSFoo::create(globalObject->vm(), structure, globalObject, WTFMove(foo)));
}
Include #include "root.h" at the top of C++ files.
development
Maintainer-only workflow for handling GitHub Secret Scanning alerts on OpenClaw. Use when Codex needs to triage, redact, clean up, and resolve secret leakage found in issue comments, issue bodies, PR comments, or other GitHub content.
development
Maintainer workflow for OpenClaw releases, prereleases, changelog release notes, and publish validation. Use when Codex needs to prepare or verify stable or beta release steps, align version naming, assemble release notes, check release auth requirements, or validate publish-time commands and artifacts.
development
Run, watch, debug, and extend OpenClaw QA testing with qa-lab and qa-channel. Use when Codex needs to execute the repo-backed QA suite, inspect live QA artifacts, debug failing scenarios, add new QA scenarios, or explain the OpenClaw QA workflow. Prefer the live OpenAI lane with regular openai/gpt-5.4 in fast mode; do not use gpt-5.4-pro or gpt-5.4-mini unless the user explicitly overrides that policy.
development
End-to-end Parallels smoke, upgrade, and rerun workflow for OpenClaw across macOS, Windows, and Linux guests. Use when Codex needs to run, rerun, debug, or interpret VM-based install, onboarding, gateway smoke tests, latest-release-to-main upgrade checks, fresh snapshot retests, or optional Discord roundtrip verification under Parallels.