use super::{Ctx, Service, ServiceFactory, util};
#[derive(Clone, Debug)]
pub struct AndThen<A, B> {
svc1: A,
svc2: B,
}
impl<A, B> AndThen<A, B> {
pub(crate) fn new(svc1: A, svc2: B) -> Self {
Self { svc1, svc2 }
}
}
impl<A, B, St, Req> Service<St, Req> for AndThen<A, B>
where
A: Service<St, Req>,
B: Service<St, A::Res, Error = A::Error>,
{
type Res = B::Res;
type Error = A::Error;
#[inline]
async fn call(&self, req: Req, ctx: Ctx<'_, Self, St>) -> Result<B::Res, A::Error> {
let result = ctx.call(&self.svc1, req).await?;
ctx.call(&self.svc2, result).await
}
#[inline]
async fn ready(&self, ctx: Ctx<'_, Self, St>) -> Result<(), Self::Error> {
util::ready(&self.svc1, &self.svc2, ctx).await
}
#[inline]
async fn shutdown(&self, ctx: Ctx<'_, Self, St>) {
util::shutdown(&self.svc1, &self.svc2, ctx).await;
}
}
#[derive(Debug, Clone)]
pub struct AndThenFactory<A, B> {
svc1: A,
svc2: B,
}
impl<A, B> AndThenFactory<A, B> {
pub fn new(svc1: A, svc2: B) -> Self {
Self { svc1, svc2 }
}
}
impl<A, B, St, Req> ServiceFactory<St, Req> for AndThenFactory<A, B>
where
A: ServiceFactory<St, Req>,
B: ServiceFactory<St, A::Res, Error = A::Error, InitError = A::InitError>,
{
type Res = B::Res;
type Error = A::Error;
type Service = AndThen<A::Service, B::Service>;
type InitError = A::InitError;
#[inline]
async fn create(&self, st: &St) -> Result<Self::Service, Self::InitError> {
Ok(AndThen {
svc1: self.svc1.create(st).await?,
svc2: self.svc2.create(st).await?,
})
}
}
#[cfg(test)]
mod tests {
use std::{cell::Cell, rc::Rc};
use crate::{Ctx, Service, factory, fn_factory, service};
#[derive(Debug, Clone)]
struct Srv1(Rc<Cell<usize>>, Rc<Cell<usize>>);
impl Service<(), &'static str> for Srv1 {
type Res = &'static str;
type Error = ();
async fn ready(&self, _: Ctx<'_, Self>) -> Result<(), Self::Error> {
self.0.set(self.0.get() + 1);
Ok(())
}
async fn call(&self, req: &'static str, _: Ctx<'_, Self>) -> Result<Self::Res, ()> {
Ok(req)
}
async fn shutdown(&self, _: Ctx<'_, Self, ()>) {
self.1.set(self.1.get() + 1);
}
}
#[derive(Debug, Clone)]
struct Srv2(Rc<Cell<usize>>, Rc<Cell<usize>>);
impl Service<(), &'static str> for Srv2 {
type Res = (&'static str, &'static str);
type Error = ();
async fn ready(&self, _: Ctx<'_, Self>) -> Result<(), Self::Error> {
self.0.set(self.0.get() + 1);
Ok(())
}
async fn call(&self, req: &'static str, _: Ctx<'_, Self>) -> Result<Self::Res, ()> {
Ok((req, "srv2"))
}
async fn shutdown(&self, _: Ctx<'_, Self, ()>) {
self.1.set(self.1.get() + 1);
}
}
#[ntex::test]
async fn test_ready() {
let cnt = Rc::new(Cell::new(0));
let cnt_sht = Rc::new(Cell::new(0));
let srv = service(Box::new(Srv1(cnt.clone(), cnt_sht.clone())))
.clone()
.and_then(crate::boxed::service(Srv2(cnt.clone(), cnt_sht.clone())));
assert!(format!("{srv:?}").contains("AndThen"));
let srv = srv.pipeline(());
let res = srv.ready().await;
assert_eq!(res, Ok(()));
assert_eq!(cnt.get(), 2);
srv.shutdown().await;
assert_eq!(cnt_sht.get(), 2);
}
#[ntex::test]
async fn test_ready2() {
let cnt = Rc::new(Cell::new(0));
let srv = Box::new(
service(Srv1(cnt.clone(), Rc::new(Cell::new(0))))
.and_then(Srv2(cnt.clone(), Rc::new(Cell::new(0)))),
)
.pipeline(());
let res = srv.ready().await;
assert_eq!(res, Ok(()));
assert_eq!(cnt.get(), 2);
}
#[ntex::test]
async fn test_call() {
let cnt = Rc::new(Cell::new(0));
let srv = service(Box::new(Srv1(cnt.clone(), Rc::new(Cell::new(0)))))
.and_then(Srv2(cnt, Rc::new(Cell::new(0))))
.pipeline(());
let res = srv.call("srv1").await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), ("srv1", "srv2"));
}
#[ntex::test]
async fn test_factory() {
let cnt = Rc::new(Cell::new(0));
let cnt2 = cnt.clone();
let new_srv = factory(fn_factory(move |(): &()| {
let cnt = cnt2.clone();
async move { Ok::<_, ()>(Srv1(cnt, Rc::new(Cell::new(0)))) }
}))
.and_then(fn_factory(move |(): &()| {
let cnt = cnt.clone();
async move { Ok(Srv2(cnt.clone(), Rc::new(Cell::new(0)))) }
}))
.clone();
let srv = new_srv.pipeline(()).await.unwrap();
let res = srv.call("srv1").await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), ("srv1", "srv2"));
}
}