use crate::{ data::container::DataContainer, error::SystemError, module::ModuleData, request::FromRequest, response::Responder, service::{BoxService, Handler, Service, ServiceFactory, ServiceRequest, ServiceResponse}, }; use crate::{ error::InternalError, request::{payload::Payload, EventRequest}, response::{EventResponse, EventResponseBuilder}, rt::SystemCommand, service::{factory, BoxServiceFactory, HandlerService}, }; use futures_core::{future::LocalBoxFuture, ready}; use pin_project::pin_project; use std::{ collections::HashMap, future::Future, pin::Pin, rc::Rc, task::{Context, Poll}, }; use tokio::sync::mpsc::{unbounded_channel, UnboundedReceiver, UnboundedSender}; pub type Event = String; pub type EventServiceFactory = BoxServiceFactory<(), ServiceRequest, ServiceResponse, SystemError>; pub struct Module { name: String, data: DataContainer, service_map: Rc>, req_tx: UnboundedSender, req_rx: UnboundedReceiver, sys_tx: UnboundedSender, } impl Module { pub fn new(sys_tx: UnboundedSender) -> Self { let (req_tx, req_rx) = unbounded_channel::(); Self { name: "".to_owned(), data: DataContainer::new(), service_map: Rc::new(HashMap::new()), req_tx, req_rx, sys_tx, } } pub fn name(mut self, s: &str) -> Self { self.name = s.to_owned(); self } pub fn data(mut self, data: D) -> Self { self.data.insert(ModuleData::new(data)); self } pub fn event(mut self, event: Event, handler: H) -> Self where H: Handler, T: FromRequest + 'static, R: Future + 'static, R::Output: Responder + 'static, { if self.service_map.contains_key(&event) { log::error!("Duplicate Event: {}", &event); } Rc::get_mut(&mut self.service_map) .unwrap() .insert(event, factory(HandlerService::new(handler))); self } pub fn req_tx(&self) -> UnboundedSender { self.req_tx.clone() } pub fn handle(&self, request: EventRequest) { log::debug!("Module: {} receive request: {:?}", self.name, request); match self.req_tx.send(request) { Ok(_) => {}, Err(e) => { log::error!("Module: {} with error: {:?}", self.name, e); }, } } pub fn forward_map(&self) -> HashMap> { self.service_map .keys() .map(|key| (key.clone(), self.req_tx())) .collect::>() } } impl Future for Module { type Output = (); fn poll(mut self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll { loop { match ready!(Pin::new(&mut self.req_rx).poll_recv(cx)) { None => return Poll::Ready(()), Some(request) => { let mut service = self.new_service(request.get_id().to_string()); if let Ok(service) = ready!(Pin::new(&mut service).poll(cx)) { log::trace!("Spawn module service for request {}", request.get_id()); tokio::task::spawn_local(async move { let _ = service.call(request).await; }); } }, } } } } impl ServiceFactory for Module { type Response = (); type Error = SystemError; type Service = BoxService; type Config = String; type Future = LocalBoxFuture<'static, Result>; fn new_service(&self, cfg: Self::Config) -> Self::Future { log::trace!("Create module service for request {}", cfg); let sys_tx = self.sys_tx.clone(); let service_map = self.service_map.clone(); Box::pin(async move { let service = ModuleService { service_map, sys_tx }; let module_service = Box::new(service) as Self::Service; Ok(module_service) }) } } pub struct ModuleService { service_map: Rc>, sys_tx: UnboundedSender, } impl Service for ModuleService { type Response = (); type Error = SystemError; type Future = LocalBoxFuture<'static, Result>; fn call(&self, request: EventRequest) -> Self::Future { log::trace!("Call module service for request {}", request.get_id()); match self.service_map.get(request.get_event()) { Some(factory) => { let fut = ModuleServiceFuture { request, fut: factory.new_service(()), }; let sys_tx = self.sys_tx.clone(); Box::pin(async move { let resp = fut.await.unwrap_or_else(|e| e.into()); sys_tx.send(SystemCommand::EventResponse(resp)); Ok(()) }) }, None => Box::pin(async { Err(InternalError::new("".to_string()).into()) }), } } } type BoxModuleService = BoxService; #[pin_project] pub struct ModuleServiceFuture { request: EventRequest, #[pin] fut: LocalBoxFuture<'static, Result>, } impl Future for ModuleServiceFuture { type Output = Result; fn poll(mut self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll { loop { let service = ready!(self.as_mut().project().fut.poll(cx))?; let req = ServiceRequest::new(self.as_mut().request.clone(), Payload::None); log::debug!("Call service to handle request {:?}", self.request); let (_, resp) = ready!(Pin::new(&mut service.call(req)).poll(cx))?.into_parts(); return Poll::Ready(Ok(resp)); } } } #[cfg(test)] mod tests { use super::*; use crate::rt::Runtime; use futures_util::{future, pin_mut}; use tokio::sync::mpsc::unbounded_channel; pub async fn hello_service() -> String { "hello".to_string() } #[test] fn test() { let mut runtime = Runtime::new().unwrap(); runtime.block_on(async { let (sys_tx, mut sys_rx) = unbounded_channel::(); let event = "hello".to_string(); let mut module = Module::new(sys_tx).event(event.clone(), hello_service); let req_tx = module.req_tx(); let mut event = async move { let request = EventRequest::new(event.clone()); req_tx.send(request).unwrap(); match sys_rx.recv().await { Some(cmd) => { log::info!("{:?}", cmd); }, None => panic!(""), } }; pin_mut!(module, event); future::select(module, event).await; }); } }