mirror of
https://github.com/logos-co/logos-cpp-sdk.git
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A C++ interface:"universal" cdylib that calls another module via modules().<dep>... segfaulted on its FIRST cross-module call: the typed dependency surface (LogosModules) was wired inside lidlTryFireContext, which returns early when no persistence context was stored (g_ctxStored == false). When the daemon never delivers a context (observed: zero set_context calls for a context-less module), maybeSetLogosModules never ran, m_logosModulesPtr stayed null, and LogosModuleContext::modules() dereferenced null. modules() does not need the context — each dependency client bakes its target+origin at codegen time and creates its lp client lazily on first call. So wire it in its own context-independent once-latch (lidlEnsureModulesWired), called at the top of lidlTryFireContext before the context-gated early return, i.e. on the first dispatch / set_context / set_emit_callback. A module with deps but no stored context now has modules() wired before any handler runs. (Bump the concurrent-dispatch doctest's post-daemon-start sleep 3 -> 6 to match the rust spec's cold-start margin.) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
504 lines
24 KiB
C++
504 lines
24 KiB
C++
#include "lidl_gen_cdylib.h"
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#include "lidl_emit_common.h"
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#include <QTextStream>
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QString lidlToPascalCase(const QString& name);
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QString lidlTypeToQt(const TypeExpr& te);
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bool lidlIsStdConvertible(const TypeExpr& te);
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namespace {
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// The cdylib-supported subset: std-convertible LIDL types only — the same
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// Qt-free set the std apiStyle handled, so any universal module that built
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// under std also builds as a header-first cdylib.
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bool typeSupported(const TypeExpr& te, bool isReturn)
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{
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if (te.kind == TypeExpr::Primitive) {
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if (te.name == "tstr" || te.name == "bstr" || te.name == "int"
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|| te.name == "uint" || te.name == "float64" || te.name == "bool")
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return true;
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// any (LogosMap/LogosList/json) routes through nlohmann in either
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// direction; result (StdLogosResult) and void only make sense as a
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// return. All Qt-free.
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if (te.name == "any")
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return true;
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if (isReturn && (te.name == "result" || te.name == "void"))
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return true;
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return false;
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}
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if (te.kind == TypeExpr::Array && te.elements.size() == 1) {
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const TypeExpr& e = te.elements[0];
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return e.kind == TypeExpr::Primitive
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&& (e.name == "tstr" || e.name == "int" || e.name == "uint"
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|| e.name == "float64" || e.name == "bool" || e.name == "any");
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}
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// Maps ({k: v}, i.e. LogosMap) round-trip through nlohmann too.
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if (te.kind == TypeExpr::Map)
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return true;
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return false;
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}
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// json arg expression -> std-typed C++ expression
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QString jsonArgToStd(const TypeExpr& te, const QString& expr)
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{
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if (te.kind == TypeExpr::Primitive) {
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if (te.name == "tstr") return expr + ".get<std::string>()";
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if (te.name == "bstr") return "lidlBytesFromJson(" + expr + ")";
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if (te.name == "int") return expr + ".get<int64_t>()";
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if (te.name == "uint") return expr + ".get<uint64_t>()";
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if (te.name == "float64") return expr + ".get<double>()";
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if (te.name == "bool") return expr + ".get<bool>()";
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}
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if (te.kind == TypeExpr::Array && te.elements.size() == 1) {
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const QString inner = lidlTypeToStd(te);
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return expr + ".get<" + inner + ">()";
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}
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return expr;
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}
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// std-typed return variable -> json expression
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QString stdReturnToJson(const MethodDecl& md, const QString& var)
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{
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const TypeExpr& te = md.returnType;
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if (md.resultReturn) {
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// StdLogosResult -> the canonical {success, value, error} object
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// (same shape logos_json_convert emits for Qt LogosResult).
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return "lidlResultToJson(" + var + ")";
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}
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if (md.jsonReturn) {
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return var; // LogosMap / LogosList are nlohmann::json already
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}
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if (te.kind == TypeExpr::Primitive) {
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if (te.name == "bstr") return "lidlBytesToJson(" + var + ")";
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return "nlohmann::json(" + var + ")";
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}
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return "nlohmann::json(" + var + ")";
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}
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void emitInterfaceJson(QTextStream& s, const ModuleDecl& module)
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{
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s << "static nlohmann::json lidlInterfaceJson()\n{\n";
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s << " nlohmann::json methods = nlohmann::json::array();\n";
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for (const MethodDecl& md : module.methods) {
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s << " {\n nlohmann::json obj;\n";
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s << " obj[\"name\"] = \"" << md.name << "\";\n";
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if (!md.description.empty()) {
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QString esc = qs(md.description);
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esc.replace('\\', "\\\\").replace('"', "\\\"").replace('\n', "\\n");
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s << " obj[\"description\"] = \"" << esc << "\";\n";
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}
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QString sig = qs(md.name) + "(";
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for (int i = 0; i < md.params.size(); ++i) {
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sig += lidlTypeToQt(md.params[i].type);
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if (i + 1 < md.params.size()) sig += ",";
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}
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sig += ")";
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s << " obj[\"signature\"] = \"" << sig << "\";\n";
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s << " obj[\"returnType\"] = \"" << lidlTypeToQt(md.returnType) << "\";\n";
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s << " obj[\"isInvokable\"] = true;\n";
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if (!md.params.empty()) {
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s << " nlohmann::json params = nlohmann::json::array();\n";
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for (const ParamDecl& pd : md.params) {
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s << " params.push_back({{\"type\", \"" << lidlTypeToQt(pd.type)
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<< "\"}, {\"name\", \"" << pd.name << "\"}});\n";
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}
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s << " obj[\"parameters\"] = params;\n";
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}
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s << " methods.push_back(obj);\n }\n";
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}
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for (const EventDecl& ed : module.events) {
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s << " {\n nlohmann::json obj;\n";
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s << " obj[\"type\"] = \"event\";\n";
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s << " obj[\"name\"] = \"" << ed.name << "\";\n";
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if (!ed.description.empty()) {
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QString esc = qs(ed.description);
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esc.replace('\\', "\\\\").replace('"', "\\\"").replace('\n', "\\n");
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s << " obj[\"description\"] = \"" << esc << "\";\n";
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}
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QString sig = qs(ed.name) + "(";
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for (int i = 0; i < ed.params.size(); ++i) {
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sig += lidlTypeToQt(ed.params[i].type);
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if (i + 1 < ed.params.size()) sig += ",";
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}
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sig += ")";
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s << " obj[\"signature\"] = \"" << sig << "\";\n";
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if (!ed.params.empty()) {
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s << " nlohmann::json params = nlohmann::json::array();\n";
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for (const ParamDecl& pd : ed.params) {
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s << " params.push_back({{\"type\", \"" << lidlTypeToQt(pd.type)
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<< "\"}, {\"name\", \"" << pd.name << "\"}});\n";
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}
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s << " obj[\"parameters\"] = params;\n";
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}
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s << " methods.push_back(obj);\n }\n";
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}
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s << " return methods;\n}\n\n";
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}
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} // namespace
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bool lidlCdylibSupported(const ModuleDecl& module, QString* error)
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{
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for (const MethodDecl& md : module.methods) {
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for (const ParamDecl& pd : md.params) {
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if (!typeSupported(pd.type, /*isReturn=*/false)) {
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if (error)
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*error = QString("method '%1': parameter '%2' has a type outside the "
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"cdylib-supported (Qt-free) subset")
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.arg(qs(md.name), qs(pd.name));
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return false;
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}
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}
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// `void` is not a lidlBuiltinType, so the .lidl parser yields it as a
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// Named type "void" (the impl-header parser writes "-> void"); an empty
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// name is the in-memory void from the header path. Treat both as void.
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const bool voidReturn =
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md.returnType.name == "void"
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|| (md.returnType.kind == TypeExpr::Primitive && md.returnType.name.empty());
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if (!voidReturn && !md.jsonReturn && !md.resultReturn
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&& !typeSupported(md.returnType, /*isReturn=*/true)) {
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if (error)
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*error = QString("method '%1': return type outside the cdylib-supported "
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"(Qt-free) subset").arg(qs(md.name));
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return false;
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}
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}
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for (const EventDecl& ed : module.events) {
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for (const ParamDecl& pd : ed.params) {
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if (!typeSupported(pd.type, /*isReturn=*/false)) {
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if (error)
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*error = QString("event '%1': parameter '%2' has a type outside the "
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"cdylib-supported (Qt-free) subset")
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.arg(qs(ed.name), qs(pd.name));
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return false;
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}
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}
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}
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return true;
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}
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QString lidlMakeModuleImplExports(const ModuleDecl& module,
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const QString& implClass,
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const QString& implHeader)
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{
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QString c;
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QTextStream s(&c);
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s << "// AUTO-GENERATED by logos-cpp-generator --cdylib -- do not edit\n";
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s << "//\n";
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s << "// The common module-impl C ABI exports (logos_module_impl.h) around the\n";
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s << "// universal impl class `" << implClass << "`. Qt-FREE: compiled into the\n";
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s << "// module's cdylib; the uniform Qt-plugin glue (or a future no-Qt host)\n";
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s << "// drives it exclusively through these symbols.\n";
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s << "#include \"" << implHeader << "\"\n";
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s << "#include \"logos_module_impl.h\"\n";
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s << "#include \"logos_protocol.h\"\n";
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s << "#include \"logos_module_context.h\"\n";
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s << "#include \"logos_result.h\"\n";
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s << "#include <nlohmann/json.hpp>\n";
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s << "#include <cstdlib>\n";
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s << "#include <cstring>\n";
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s << "#include <atomic>\n";
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s << "#include <map>\n";
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s << "#include <mutex>\n";
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s << "#include <string>\n";
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s << "#include <vector>\n";
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// The Qt-free typed dependency surface: LogosModules (behind modules())
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// built from this module's dependencies (metadata.json#dependencies),
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// calling the lp_* C ABI — no Qt in the cdylib. The umbrella codegen
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// emits logos_sdk.h for every cdylib module (empty when there are no
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// dependencies), so this include is always available.
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s << "#include \"logos_sdk.h\"\n";
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s << "\n";
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// -- shared statics ------------------------------------------------------
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s << "namespace {\n\n";
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s << implClass << "& lidlImpl()\n{\n static " << implClass << " impl;\n return impl;\n}\n\n";
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s << "logos_module_emit_cb g_emitCb = nullptr;\n";
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s << "void* g_emitUd = nullptr;\n";
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s << "std::mutex g_emitMutex;\n";
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s << "std::mutex g_ctxMutex;\n";
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s << "bool g_ctxStored = false;\n";
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s << "std::string g_ctxPath, g_ctxId, g_ctxPersist;\n";
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s << "std::atomic<bool> g_hookFired{false};\n\n";
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s << "char* lidlStrdup(const std::string& str)\n{\n";
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s << " char* out = static_cast<char*>(std::malloc(str.size() + 1));\n";
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s << " if (out) std::memcpy(out, str.data(), str.size() + 1);\n";
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s << " return out;\n}\n\n";
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s << "// Canonical tagged bytes form {\"_bytes\": base64url} (see logos_protocol.h)\n";
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s << "std::string lidlB64UrlEncode(const std::vector<uint8_t>& bytes)\n{\n";
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s << " static const char* alpha = \"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_\";\n";
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s << " std::string out;\n";
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s << " size_t i = 0;\n";
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s << " while (i + 3 <= bytes.size()) {\n";
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s << " uint32_t n = (uint32_t(bytes[i]) << 16) | (uint32_t(bytes[i+1]) << 8) | uint32_t(bytes[i+2]);\n";
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s << " out += alpha[(n >> 18) & 0x3f]; out += alpha[(n >> 12) & 0x3f];\n";
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s << " out += alpha[(n >> 6) & 0x3f]; out += alpha[n & 0x3f];\n";
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s << " i += 3;\n }\n";
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s << " if (i < bytes.size()) {\n";
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s << " uint32_t n = uint32_t(bytes[i]) << 16;\n";
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s << " if (i + 1 < bytes.size()) n |= uint32_t(bytes[i+1]) << 8;\n";
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s << " out += alpha[(n >> 18) & 0x3f]; out += alpha[(n >> 12) & 0x3f];\n";
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s << " if (i + 1 < bytes.size()) out += alpha[(n >> 6) & 0x3f];\n";
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s << " }\n return out;\n}\n\n";
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s << "int lidlB64Idx(char ch)\n{\n";
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s << " if (ch >= 'A' && ch <= 'Z') return ch - 'A';\n";
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s << " if (ch >= 'a' && ch <= 'z') return ch - 'a' + 26;\n";
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s << " if (ch >= '0' && ch <= '9') return ch - '0' + 52;\n";
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s << " if (ch == '-') return 62;\n if (ch == '_') return 63;\n return -1;\n}\n\n";
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s << "std::vector<uint8_t> lidlBytesFromJson(const nlohmann::json& j)\n{\n";
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s << " std::vector<uint8_t> out;\n";
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s << " // Lenient bytes decode (matches the std path, where a QString or\n";
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s << " // QByteArray arg both became bytes): a caller may send the tagged\n";
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s << " // {\"_bytes\": base64url} form, a plain string (raw UTF-8 bytes), or\n";
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s << " // an array of byte values. Only the tagged form needs base64.\n";
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s << " if (j.is_string()) {\n";
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s << " const std::string s = j.get<std::string>();\n";
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s << " out.assign(s.begin(), s.end());\n";
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s << " return out;\n";
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s << " }\n";
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s << " if (j.is_number()) {\n";
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s << " // A number arg becomes its decimal text as bytes — matches\n";
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s << " // Qt's QVariant(int)->QByteArray, so a caller (or the\n";
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s << " // logoscore CLI's type auto-detection) passing a bare number\n";
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s << " // to a bytes param behaves the same as the Qt path.\n";
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s << " const std::string s = j.dump();\n";
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s << " out.assign(s.begin(), s.end());\n";
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s << " return out;\n";
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s << " }\n";
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s << " if (j.is_array()) {\n";
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s << " for (const auto& e : j)\n";
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s << " if (e.is_number_integer() || e.is_number_unsigned())\n";
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s << " out.push_back(static_cast<uint8_t>(e.get<int64_t>() & 0xff));\n";
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s << " return out;\n";
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s << " }\n";
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s << " if (!j.is_object() || j.size() != 1 || !j.contains(\"_bytes\") || !j[\"_bytes\"].is_string())\n";
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s << " return out;\n";
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s << " const std::string s64 = j[\"_bytes\"].get<std::string>();\n";
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s << " size_t i = 0;\n";
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s << " while (i + 4 <= s64.size()) {\n";
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s << " int a = lidlB64Idx(s64[i]), b = lidlB64Idx(s64[i+1]), c2 = lidlB64Idx(s64[i+2]), d = lidlB64Idx(s64[i+3]);\n";
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s << " if (a < 0 || b < 0 || c2 < 0 || d < 0) return {};\n";
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s << " uint32_t n = (uint32_t(a) << 18) | (uint32_t(b) << 12) | (uint32_t(c2) << 6) | uint32_t(d);\n";
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s << " out.push_back((n >> 16) & 0xff); out.push_back((n >> 8) & 0xff); out.push_back(n & 0xff);\n";
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s << " i += 4;\n }\n";
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s << " size_t rem = s64.size() - i;\n";
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s << " if (rem == 2 || rem == 3) {\n";
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s << " int a = lidlB64Idx(s64[i]), b = lidlB64Idx(s64[i+1]);\n";
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s << " if (a < 0 || b < 0) return {};\n";
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s << " uint32_t n = (uint32_t(a) << 18) | (uint32_t(b) << 12);\n";
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s << " out.push_back((n >> 16) & 0xff);\n";
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s << " if (rem == 3) {\n";
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s << " int c2 = lidlB64Idx(s64[i+2]);\n";
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s << " if (c2 < 0) return {};\n";
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s << " n |= uint32_t(c2) << 6;\n";
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s << " out.push_back((n >> 8) & 0xff);\n";
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s << " }\n }\n return out;\n}\n\n";
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s << "nlohmann::json lidlBytesToJson(const std::vector<uint8_t>& bytes)\n{\n";
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s << " return nlohmann::json{{\"_bytes\", lidlB64UrlEncode(bytes)}};\n}\n\n";
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s << "nlohmann::json lidlResultToJson(const StdLogosResult& r)\n{\n";
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s << " nlohmann::json obj;\n";
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s << " obj[\"success\"] = r.success;\n";
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s << " obj[\"value\"] = r.value;\n";
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s << " obj[\"error\"] = r.error.empty() ? nlohmann::json() : nlohmann::json(r.error);\n";
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s << " return obj;\n}\n\n";
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emitInterfaceJson(s, module);
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s << "} // namespace\n\n";
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// -- event wiring (install once, lazily) ---------------------------------
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s << "static void lidlEnsureEmitWiring()\n{\n";
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s << " static std::once_flag once;\n";
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s << " std::call_once(once, []() {\n";
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s << " _logos_codegen_::maybeSetEmitEvent(lidlImpl(),\n";
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s << " [](const std::string& name, void* args) {\n";
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s << " // cdylib events sidecar marshals into nlohmann::json\n";
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s << " const nlohmann::json* payload = static_cast<const nlohmann::json*>(args);\n";
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s << " std::lock_guard<std::mutex> lock(g_emitMutex);\n";
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s << " if (g_emitCb) {\n";
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s << " const std::string dumped = payload ? payload->dump() : \"[]\";\n";
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s << " g_emitCb(name.c_str(), dumped.c_str(), g_emitUd);\n";
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s << " }\n";
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s << " });\n";
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s << " });\n}\n\n";
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// -- typed dependency surface (modules().<dep>...) -----------------------
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// Wire modules() INDEPENDENTLY of the persistence context. Each dependency
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// client bakes its target+origin at codegen time and creates its lp client
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// lazily on first call, so modules() needs nothing from the context. A
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// module with deps but no STORED context still must have it wired — gating
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// it on the context latch (as it used to be) left m_logosModulesPtr null and
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// segfaulted the first cross-module call when the daemon never delivered a
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// context. No-op for impls that don't derive LogosModuleContext. Fired once
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// from the FIRST lidlTryFireContext (i.e. the first dispatch / set_context /
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// set_emit_callback), before the context-gated early return below.
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s << "static void lidlEnsureModulesWired()\n{\n";
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s << " static std::once_flag once;\n";
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s << " std::call_once(once, []() {\n";
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s << " _logos_codegen_::maybeSetLogosModules(lidlImpl(), new LogosModules());\n";
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s << " });\n}\n\n";
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// The context ready-latch: stamp the context + fire onContextReady ONCE,
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// as soon as the module is fully wired (context stored AND the emit
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// callback delivered) — at module load, before publication. Hosts that
|
|
// never wire an emit callback still get the hook before first dispatch
|
|
// (requireEmit = false fallback).
|
|
s << "static void lidlTryFireContext(bool requireEmit)\n{\n";
|
|
s << " lidlEnsureEmitWiring();\n";
|
|
s << " lidlEnsureModulesWired();\n";
|
|
s << " if (g_hookFired.load(std::memory_order_acquire)) return;\n";
|
|
s << " std::string path, id, persist;\n";
|
|
s << " {\n";
|
|
s << " std::lock_guard<std::mutex> lock(g_ctxMutex);\n";
|
|
s << " if (!g_ctxStored) return;\n";
|
|
s << " path = g_ctxPath; id = g_ctxId; persist = g_ctxPersist;\n";
|
|
s << " }\n";
|
|
s << " if (requireEmit) {\n";
|
|
s << " std::lock_guard<std::mutex> lock(g_emitMutex);\n";
|
|
s << " if (!g_emitCb) return;\n";
|
|
s << " }\n";
|
|
s << " g_hookFired.store(true, std::memory_order_release);\n";
|
|
// modules() was already wired by lidlEnsureModulesWired() above (before this
|
|
// context-gated early return), so onContextReady can safely call
|
|
// modules().<dep>... / subscribe to dependency events from the hook.
|
|
s << " _logos_codegen_::maybeSetContext(lidlImpl(), path, id, persist);\n";
|
|
s << "}\n\n";
|
|
|
|
// -- exports -------------------------------------------------------------
|
|
s << "extern \"C\" {\n\n";
|
|
|
|
s << "char* logos_module_dispatch(const char* method, const char* args_json)\n{\n";
|
|
s << " if (!method) return nullptr;\n";
|
|
s << " lidlTryFireContext(false);\n";
|
|
s << " nlohmann::json args = nlohmann::json::array();\n";
|
|
s << " if (args_json && *args_json) {\n";
|
|
s << " args = nlohmann::json::parse(args_json, nullptr, false);\n";
|
|
s << " if (args.is_discarded() || !args.is_array()) return nullptr;\n";
|
|
s << " }\n";
|
|
s << " const std::string m(method);\n";
|
|
s << " try {\n";
|
|
|
|
for (const MethodDecl& md : module.methods) {
|
|
s << " if (m == \"" << md.name << "\") {\n";
|
|
s << " if (args.size() < " << md.params.size() << ") return nullptr;\n";
|
|
QString call = "lidlImpl()." + qs(md.name) + "(";
|
|
for (int i = 0; i < md.params.size(); ++i) {
|
|
call += jsonArgToStd(md.params[i].type,
|
|
QString("args.at(%1)").arg(i));
|
|
if (i + 1 < md.params.size()) call += ", ";
|
|
}
|
|
call += ")";
|
|
// `void` parses as a Named type "void" from a .lidl (it isn't a
|
|
// lidlBuiltinType); empty name is the header path's in-memory void.
|
|
const bool voidReturn =
|
|
md.returnType.name == "void"
|
|
|| (md.returnType.kind == TypeExpr::Primitive && md.returnType.name.empty())
|
|
|| lidlTypeToQt(md.returnType) == "void";
|
|
if (voidReturn) {
|
|
s << " " << call << ";\n";
|
|
s << " return lidlStrdup(\"true\");\n";
|
|
} else {
|
|
s << " auto result = " << call << ";\n";
|
|
s << " return lidlStrdup(" << stdReturnToJson(md, "result") << ".dump());\n";
|
|
}
|
|
s << " }\n";
|
|
}
|
|
|
|
s << " } catch (const std::exception& e) {\n";
|
|
s << " nlohmann::json err{{\"code\", \"dispatch_failed\"}, {\"message\", e.what()},\n";
|
|
s << " {\"origin\", \"" << module.name << "\"}};\n";
|
|
s << " return lidlStrdup(err.dump());\n";
|
|
s << " }\n";
|
|
s << " return nullptr; // unknown method\n";
|
|
s << "}\n\n";
|
|
|
|
s << "char* logos_module_get_methods(void)\n{\n";
|
|
s << " return lidlStrdup(lidlInterfaceJson().dump());\n}\n\n";
|
|
|
|
s << "void logos_module_set_context(const char* module_path,\n";
|
|
s << " const char* instance_id,\n";
|
|
s << " const char* instance_persistence_path)\n{\n";
|
|
s << " {\n";
|
|
s << " std::lock_guard<std::mutex> lock(g_ctxMutex);\n";
|
|
s << " g_ctxPath = module_path ? module_path : \"\";\n";
|
|
s << " g_ctxId = instance_id ? instance_id : \"\";\n";
|
|
s << " g_ctxPersist = instance_persistence_path ? instance_persistence_path : \"\";\n";
|
|
s << " g_ctxStored = true;\n";
|
|
s << " }\n";
|
|
s << " lidlTryFireContext(true);\n";
|
|
s << "}\n\n";
|
|
|
|
s << "void logos_module_set_emit_callback(logos_module_emit_cb cb, void* user_data)\n{\n";
|
|
s << " {\n";
|
|
s << " std::lock_guard<std::mutex> lock(g_emitMutex);\n";
|
|
s << " g_emitCb = cb;\n";
|
|
s << " g_emitUd = user_data;\n";
|
|
s << " }\n";
|
|
s << " lidlTryFireContext(true);\n";
|
|
s << "}\n\n";
|
|
|
|
s << "int logos_module_accept_token(const char* module_name, const char* token)\n{\n";
|
|
s << " if (!module_name || !token) return -1;\n";
|
|
s << " // Seed the protocol's shared TokenManager so this module's OUTBOUND\n";
|
|
s << " // lp_client (modules().<dep>...) can authenticate calls. In\n";
|
|
s << " // particular the capability_module bootstrap token the host\n";
|
|
s << " // delivers at load lets the automatic requestModule flow fetch a\n";
|
|
s << " // per-target token on the first cross-module call. lp_token_save\n";
|
|
s << " // writes the same TokenManager::instance() the lp_client reads.\n";
|
|
s << " return lp_token_save(module_name, token);\n}\n\n";
|
|
|
|
s << "const char* logos_module_get_protocol_version(void)\n{\n";
|
|
s << " return LOGOS_PROTOCOL_VERSION_STRING;\n}\n\n";
|
|
|
|
s << "void logos_module_string_free(char* str)\n{\n";
|
|
s << " std::free(str);\n}\n\n";
|
|
|
|
s << "} // extern \"C\"\n";
|
|
return c;
|
|
}
|
|
|
|
QString lidlMakeEventsSourceCdylib(const ModuleDecl& module,
|
|
const QString& implClass,
|
|
const QString& implHeader)
|
|
{
|
|
QString c;
|
|
QTextStream s(&c);
|
|
s << "// AUTO-GENERATED by logos-cpp-generator --cdylib -- do not edit\n";
|
|
s << "// Typed `logos_events:` bodies, cdylib flavor: marshal into\n";
|
|
s << "// nlohmann::json and route through LogosModuleContext::emitEventImpl_\n";
|
|
s << "// (the export wrapper forwards to the host's emit callback).\n";
|
|
s << "#include \"" << implHeader << "\"\n";
|
|
s << "#include <nlohmann/json.hpp>\n\n";
|
|
|
|
for (const EventDecl& ed : module.events) {
|
|
s << "void " << implClass << "::" << ed.name << "(";
|
|
for (int i = 0; i < ed.params.size(); ++i) {
|
|
const QString stdType = lidlTypeToStd(ed.params[i].type);
|
|
if (stdType == "std::string" || stdType.startsWith("std::vector"))
|
|
s << "const " << stdType << "& " << ed.params[i].name;
|
|
else
|
|
s << stdType << " " << ed.params[i].name;
|
|
if (i + 1 < ed.params.size()) s << ", ";
|
|
}
|
|
s << ")\n{\n";
|
|
s << " nlohmann::json args = nlohmann::json::array();\n";
|
|
for (const ParamDecl& pd : ed.params) {
|
|
if (pd.type.kind == TypeExpr::Primitive && pd.type.name == "bstr")
|
|
s << " args.push_back(nlohmann::json{{\"_bytes\", \"\"}}); // bstr events: encode upstream\n";
|
|
else
|
|
s << " args.push_back(" << pd.name << ");\n";
|
|
}
|
|
s << " emitEventImpl_(\"" << ed.name << "\", &args);\n";
|
|
s << "}\n\n";
|
|
}
|
|
return c;
|
|
}
|
|
|