use std::{fmt, marker::PhantomData};
use super::{Service, ServiceCtx, ServiceFactory};
pub struct Map<A, F, Req, Res> {
service: A,
f: F,
_t: PhantomData<fn(Req) -> Res>,
}
impl<A, F, Req, Res> Map<A, F, Req, Res> {
pub(crate) fn new(service: A, f: F) -> Self
where
A: Service<Req>,
F: Fn(A::Response) -> Res,
{
Self {
service,
f,
_t: PhantomData,
}
}
}
impl<A, F, Req, Res> Clone for Map<A, F, Req, Res>
where
A: Clone,
F: Clone,
{
#[inline]
fn clone(&self) -> Self {
Map {
service: self.service.clone(),
f: self.f.clone(),
_t: PhantomData,
}
}
}
impl<A, F, Req, Res> fmt::Debug for Map<A, F, Req, Res>
where
A: fmt::Debug,
{
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("Map")
.field("service", &self.service)
.field("map", &std::any::type_name::<F>())
.finish()
}
}
impl<A, F, Req, Res> Service<Req> for Map<A, F, Req, Res>
where
A: Service<Req>,
F: Fn(A::Response) -> Res,
{
type Response = Res;
type Error = A::Error;
crate::forward_poll_ready!(service);
crate::forward_poll_shutdown!(service);
#[inline]
async fn call(
&self,
req: Req,
ctx: ServiceCtx<'_, Self>,
) -> Result<Self::Response, Self::Error> {
ctx.call(&self.service, req).await.map(|r| (self.f)(r))
}
}
pub struct MapFactory<A, F, Req, Res, Cfg> {
a: A,
f: F,
r: PhantomData<fn(Req, Cfg) -> Res>,
}
impl<A, F, Req, Res, Cfg> MapFactory<A, F, Req, Res, Cfg>
where
A: ServiceFactory<Req, Cfg>,
F: Fn(A::Response) -> Res,
{
pub(crate) fn new(a: A, f: F) -> Self {
Self {
a,
f,
r: PhantomData,
}
}
}
impl<A, F, Req, Res, Cfg> Clone for MapFactory<A, F, Req, Res, Cfg>
where
A: Clone,
F: Clone,
{
#[inline]
fn clone(&self) -> Self {
Self {
a: self.a.clone(),
f: self.f.clone(),
r: PhantomData,
}
}
}
impl<A, F, Req, Res, Cfg> fmt::Debug for MapFactory<A, F, Req, Res, Cfg>
where
A: fmt::Debug,
{
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("MapFactory")
.field("factory", &self.a)
.field("map", &std::any::type_name::<F>())
.finish()
}
}
impl<A, F, Req, Res, Cfg> ServiceFactory<Req, Cfg> for MapFactory<A, F, Req, Res, Cfg>
where
A: ServiceFactory<Req, Cfg>,
F: Fn(A::Response) -> Res + Clone,
{
type Response = Res;
type Error = A::Error;
type Service = Map<A::Service, F, Req, Res>;
type InitError = A::InitError;
#[inline]
async fn create(&self, cfg: Cfg) -> Result<Self::Service, Self::InitError> {
Ok(Map {
service: self.a.create(cfg).await?,
f: self.f.clone(),
_t: PhantomData,
})
}
}
#[cfg(test)]
mod tests {
use ntex_util::future::lazy;
use std::task::{Context, Poll};
use crate::{fn_factory, Pipeline, Service, ServiceCtx, ServiceFactory};
#[derive(Debug, Clone)]
struct Srv;
impl Service<()> for Srv {
type Response = ();
type Error = ();
fn poll_ready(&self, _: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
Poll::Ready(Ok(()))
}
async fn call(&self, _: (), _: ServiceCtx<'_, Self>) -> Result<(), ()> {
Ok(())
}
}
#[ntex::test]
async fn test_service() {
let srv = Pipeline::new(Srv.map(|_| "ok").clone());
let res = srv.call(()).await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), "ok");
let res = lazy(|cx| srv.poll_ready(cx)).await;
assert_eq!(res, Poll::Ready(Ok(())));
let res = lazy(|cx| srv.poll_shutdown(cx)).await;
assert_eq!(res, Poll::Ready(()));
format!("{:?}", srv);
}
#[ntex::test]
async fn test_pipeline() {
let srv = Pipeline::new(crate::chain(Srv).map(|_| "ok").clone());
let res = srv.call(()).await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), "ok");
let res = lazy(|cx| srv.poll_ready(cx)).await;
assert_eq!(res, Poll::Ready(Ok(())));
let res = lazy(|cx| srv.poll_shutdown(cx)).await;
assert_eq!(res, Poll::Ready(()));
}
#[ntex::test]
async fn test_factory() {
let new_srv = fn_factory(|| async { Ok::<_, ()>(Srv) })
.map(|_| "ok")
.clone();
let srv = Pipeline::new(new_srv.create(&()).await.unwrap());
let res = srv.call(()).await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), ("ok"));
format!("{:?}", new_srv);
}
#[ntex::test]
async fn test_pipeline_factory() {
let new_srv = crate::chain_factory(fn_factory(|| async { Ok::<_, ()>(Srv) }))
.map(|_| "ok")
.clone();
let srv = Pipeline::new(new_srv.create(&()).await.unwrap());
let res = srv.call(()).await;
assert!(res.is_ok());
assert_eq!(res.unwrap(), ("ok"));
format!("{:?}", new_srv);
}
}