19 typename std::enable_if<std::is_same<
decltype(output.get()), Context::Builder>::value>::type* enable =
nullptr)
30 GuardedRef{thread_context.waiter->m_mutex, thread_context.callback_threads}, &connection,
31 [&] {
return connection.m_threads.add(kj::heap<
ProxyServer<Thread>>(connection, thread_context, std::thread{})); })};
36 auto make_request_thread{[&]{
43 auto request = connection.m_thread_map.makeThreadRequest();
44 request.setName(thread_context.thread_name);
45 return request.send().getResult();
48 GuardedRef{thread_context.waiter->m_mutex, thread_context.request_threads},
49 &connection, make_request_thread)};
51 auto context = output.init();
52 context.setThread(request_thread->second->m_client);
53 context.setCallbackThread(callback_thread->second->m_client);
60 typename std::enable_if<
61 std::is_same<
decltype(Accessor::get(server_context.call_context.getParams())), Context::Reader>::value,
62 kj::Promise<typename ServerContext::CallContext>>::type
64 auto& server = server_context.proxy_server;
66 int req = server_context.req;
73 auto self = server.thisCap();
74 auto invoke = [self = kj::mv(self), call_context = kj::mv(server_context.call_context), &server, &loop, req, fn,
args...](
CancelMonitor& cancel_monitor)
mutable {
97 auto& request_threads = thread_context.request_threads;
101 Lock cancel_lock{cancel_mutex};
105 if (cancel_monitor.m_canceled) {
110 assert(!cancel_monitor.m_on_cancel);
111 cancel_monitor.m_on_cancel = [&loop, &server_context, &cancel_mutex, req]() {
112 MP_LOG(loop,
Log::Info) <<
"IPC server request #" << req <<
" canceled while executing.";
124 Lock cancel_lock{cancel_mutex};
125 server_context.request_canceled =
true;
131 std::tie(request_thread, inserted) =
SetThread(
132 GuardedRef{thread_context.waiter->m_mutex, request_threads}, server.m_context.connection,
133 [&] {
return Accessor::get(call_context.getParams()).getCallbackThread(); });
141 const bool erase_thread{inserted};
150 cancel_lock.
m_lock.unlock();
165 cancel_monitor.m_on_cancel = nullptr;
166 auto self_dispose{kj::mv(self)};
174 ConnThreads::node_type removed;
176 Lock lock(thread_context.waiter->m_mutex);
177 removed = request_threads.extract(server.m_context.connection);
182 if (server_context.request_canceled) {
183 MP_LOG(loop,
Log::Info) <<
"IPC server request #" << req <<
" canceled before it could be executed";
184 }
else KJ_IF_MAYBE(exception, kj::runCatchingExceptions([&]{
186 fn.invoke(server_context,
args...);
188 MP_LOG(loop,
Log::Info) <<
"IPC server request #" << req <<
" interrupted (" << e.
what() <<
")";
191 MP_LOG(loop,
Log::Error) <<
"IPC server request #" << req <<
" uncaught exception (" << kj::str(*exception).cStr() <<
")";
192 kj::throwRecoverableException(kj::mv(*exception));
201 const auto& params = server_context.call_context.getParams();
202 Context::Reader context_arg = Accessor::get(params);
203 auto thread_client = context_arg.getThread();
204 auto result = server.m_context.connection->m_threads.getLocalServer(thread_client)
205 .then([&loop, invoke = kj::mv(invoke), req](
const kj::Maybe<Thread::Server&>& perhaps)
mutable {
209 KJ_IF_MAYBE (thread_server, perhaps) {
210 auto& thread =
static_cast<ProxyServer<Thread>&
>(*thread_server);
212 <<
"IPC server post request #" << req <<
" {" << thread.m_thread_context.thread_name <<
"}";
213 return thread.template post<typename ServerContext::CallContext>(std::move(invoke));
216 <<
"IPC server error request #" << req <<
", missing thread to execute request";
217 throw std::runtime_error(
"invalid thread handle");
auto PassField(Priority< 1 >, TypeList< LocalType & >, ServerContext &server_context, Fn &&fn, Args &&... args) -> Require< typename decltype(Accessor::get(server_context.call_context.getParams()))::Calls >
PassField override for callable interface reference arguments.
ThreadContext & thread_context