use std::{convert::Infallible, fmt, io, net, net::SocketAddr, rc::Rc, sync::mpsc, thread, time};
#[cfg(feature = "cookie")]
use coo_kie::Cookie;
use serde::{Serialize, de::DeserializeOwned};
use uuid::Uuid;
use crate::client::error::ClientPayloadError;
use crate::client::{Client, ClientConfig, ClientRequest, ClientResponse};
use crate::error::Error;
use crate::http::error::{HttpError, ResponseError};
use crate::http::header::{CONTENT_TYPE, HeaderName, HeaderValue};
use crate::http::test::TestRequest as HttpTestRequest;
use crate::http::{
self, HttpService, Method, Payload, Request, Response, StatusCode, Uri, Version,
};
#[cfg(feature = "ws")]
use crate::io::Sealed;
use crate::router::{Path, ResourceDef};
use crate::service::{IntoServiceFactory, Pipeline, fn_service};
use crate::time::{Millis, Seconds};
use crate::util::{Bytes, BytesMut, Stream, stream_recv};
#[cfg(feature = "ws")]
use crate::ws::{WsClient, WsClientConfig, WsConnection, error::WsClientError};
use crate::{Service, ServiceFactory, SharedCfg, io::IoConfig, rt::System, server::Server};
use crate::web::config::WebAppConfig;
use crate::web::httprequest::HttpRequest;
use crate::web::rmap::ResourceMap;
use crate::web::{AppState, FromRequest, HttpResponse, Responder, WebRequest, WebResponse};
pub fn ok_service<St: AppState, In>()
-> impl Service<St, WebRequest<In>, Res = WebResponse, Error = std::convert::Infallible> {
default_service::<St, In>(StatusCode::OK)
}
pub fn default_service<St: AppState, In>(
status_code: StatusCode,
) -> impl Service<St, WebRequest<In>, Res = WebResponse, Error = Infallible> {
fn_service(async move |req: WebRequest<In>| {
Ok::<_, Infallible>(req.into_response(HttpResponse::builder(status_code).build()))
})
}
pub async fn init_service<R, S, E>(app: R) -> Pipeline<Request, Response, E>
where
R: IntoServiceFactory<S, (), Request>,
S: ServiceFactory<(), Request, Res = Response, Error = E> + 'static,
S::InitError: fmt::Debug,
{
let srv = app.into_factory().map_init_err(|e| log::error!("{e:?}"));
srv.pipeline(()).await.unwrap()
}
pub async fn init_service_st<St, R, S, E>(st: St, app: R) -> Pipeline<Request, Response, E>
where
St: 'static,
R: IntoServiceFactory<S, St, Request>,
S: ServiceFactory<St, Request, Res = Response, Error = E> + 'static,
S::InitError: fmt::Debug,
{
let srv = app.into_factory().map_init_err(|e| log::error!("{e:?}"));
srv.pipeline(st).await.unwrap()
}
pub async fn call_service<R, E>(app: &Pipeline<R, Response, E>, req: R) -> Response
where
R: 'static,
E: fmt::Debug + 'static,
{
app.call(req).await.unwrap()
}
pub async fn read_response<E>(app: &Pipeline<Request, Response, E>, req: Request) -> Bytes
where
E: 'static,
{
let mut resp = app
.call(req)
.await
.unwrap_or_else(|_| panic!("read_response failed at application call"));
let mut body = resp.take_body();
let mut bytes = BytesMut::new();
while let Some(item) = stream_recv(&mut body).await {
bytes.extend_from_slice(&item.unwrap());
}
bytes.freeze()
}
pub async fn read_body(res: impl Into<Response>) -> Bytes {
let mut body = res.into().take_body();
let mut bytes = BytesMut::new();
while let Some(item) = stream_recv(&mut body).await {
bytes.extend_from_slice(&item.unwrap());
}
bytes.freeze()
}
pub async fn load_stream<S, E>(mut stream: S) -> Result<Bytes, E>
where
S: Stream<Item = Result<Bytes, E>> + Unpin,
{
let mut data = BytesMut::new();
while let Some(item) = stream_recv(&mut stream).await {
data.extend_from_slice(&item?);
}
Ok(data.freeze())
}
pub async fn read_response_json<T, E>(app: &Pipeline<Request, Response, E>, req: Request) -> T
where
T: DeserializeOwned,
E: 'static,
{
let body = read_response(app, req).await;
serde_json::from_slice(&body)
.unwrap_or_else(|e| panic!("read_response_json failed during deserialization, {e:?}"))
}
pub async fn from_request<St, T: FromRequest<St>>(
st: &St,
req: &HttpRequest,
payload: &mut Payload,
) -> Result<T, T::Error> {
T::from_request(st, req, payload).await
}
pub async fn respond_to<T: Responder>(slf: T, req: &HttpRequest) -> HttpResponse {
T::respond_to(slf, &(), req).await
}
#[derive(Debug)]
pub struct TestRequest<St = ()> {
req: HttpTestRequest,
rmap: ResourceMap,
path: Path<Uri>,
peer_addr: Option<SocketAddr>,
state: St,
config: WebAppConfig,
}
impl Default for TestRequest {
fn default() -> TestRequest {
TestRequest {
req: HttpTestRequest::default(),
rmap: ResourceMap::new(ResourceDef::new("")),
path: Path::new(Uri::default()),
peer_addr: None,
state: (),
config: WebAppConfig::new(),
}
}
}
impl TestRequest {
#[must_use]
pub fn with_uri(path: &str) -> TestRequest {
TestRequest::default().uri(path)
}
#[must_use]
pub fn with_header<K, V>(key: K, value: V) -> TestRequest
where
HeaderName: TryFrom<K>,
HeaderValue: TryFrom<V>,
<HeaderName as TryFrom<K>>::Error: Into<HttpError>,
{
TestRequest::default().header(key, value)
}
#[must_use]
pub fn get() -> TestRequest {
TestRequest::default().method(Method::GET)
}
#[must_use]
pub fn post() -> TestRequest {
TestRequest::default().method(Method::POST)
}
#[must_use]
pub fn put() -> TestRequest {
TestRequest::default().method(Method::PUT)
}
#[must_use]
pub fn patch() -> TestRequest {
TestRequest::default().method(Method::PATCH)
}
#[must_use]
pub fn delete() -> TestRequest {
TestRequest::default().method(Method::DELETE)
}
}
impl<St> TestRequest<St> {
#[must_use]
pub fn version(mut self, ver: Version) -> Self {
self.req.version(ver);
self
}
#[must_use]
pub fn method(mut self, meth: Method) -> Self {
self.req.method(meth);
self
}
#[must_use]
pub fn uri(mut self, path: &str) -> Self {
self.req.uri(path);
self
}
#[must_use]
pub fn header<K, V>(mut self, key: K, value: V) -> Self
where
HeaderName: TryFrom<K>,
HeaderValue: TryFrom<V>,
<HeaderName as TryFrom<K>>::Error: Into<HttpError>,
{
self.req.header(key, value);
self
}
#[must_use]
#[cfg(feature = "cookie")]
pub fn cookie<C>(mut self, cookie: C) -> Self
where
C: Into<Cookie<'static>>,
{
self.req.cookie(cookie);
self
}
#[must_use]
pub fn param(mut self, name: &'static str, value: &'static str) -> Self {
self.path.add_static(name, value);
self
}
#[must_use]
pub fn peer_addr(mut self, addr: SocketAddr) -> Self {
self.peer_addr = Some(addr);
self
}
#[must_use]
pub fn payload<B: Into<Bytes>>(mut self, data: B) -> Self {
self.req.set_payload(data);
self
}
#[must_use]
pub fn form<T: Serialize>(mut self, data: &T) -> Self {
let bytes = serde_urlencoded::to_string(data)
.expect("Failed to serialize test data as a urlencoded form");
self.req.set_payload(bytes);
self.req
.header(CONTENT_TYPE, "application/x-www-form-urlencoded");
self
}
#[must_use]
pub fn json<T: Serialize>(mut self, data: &T) -> Self {
let bytes = serde_json::to_string(data).expect("Failed to serialize test data to json");
self.req.set_payload(bytes);
self.req.header(CONTENT_TYPE, "application/json");
self
}
#[must_use]
pub fn state<NewSt: 'static>(self, state: NewSt) -> TestRequest<NewSt> {
TestRequest {
state,
req: self.req,
rmap: self.rmap,
path: self.path,
peer_addr: self.peer_addr,
config: self.config,
}
}
#[must_use]
pub fn app_state<T: Send + Sync + 'static>(mut self, data: T) -> Self {
self.config = self.config.set_state(data);
self
}
#[must_use]
#[cfg(test)]
pub(crate) fn rmap(mut self, rmap: ResourceMap) -> Self {
self.rmap = rmap;
self
}
#[must_use]
pub fn to_request(mut self) -> Request {
self.req.build()
}
#[must_use]
pub fn to_srv_request(mut self) -> WebRequest<St> {
let (head, payload) = self.req.build().into_parts();
*self.path.get_mut() = head.uri.clone();
let cfg = SharedCfg::new("TEST").add(self.config).build();
WebRequest::new(
HttpRequest::new(self.path, head, Rc::new(self.rmap), cfg.get()),
payload,
self.state,
)
}
#[must_use]
pub fn to_srv_response(self, res: HttpResponse) -> WebResponse {
self.to_srv_request().into_response(res)
}
#[must_use]
pub fn to_http_request(mut self) -> HttpRequest {
let (head, _) = self.req.build().into_parts();
*self.path.get_mut() = head.uri.clone();
let cfg = SharedCfg::new("TEST").add(self.config).build();
HttpRequest::new(self.path, head, Rc::new(self.rmap), cfg.get())
}
#[must_use]
pub fn to_http_parts(mut self) -> (HttpRequest, Payload, St) {
let (head, payload) = self.req.build().into_parts();
*self.path.get_mut() = head.uri.clone();
let cfg = SharedCfg::new("TEST").add(self.config).build();
let req = HttpRequest::new(self.path, head, Rc::new(self.rmap), cfg.get());
(req, payload, self.state)
}
}
pub fn server<F, I, Sf>(factory: F) -> TestServer
where
F: AsyncFn(&()) -> I + Send + Clone + 'static,
I: IntoServiceFactory<Sf, (), Request>,
Sf: ServiceFactory<(), Request> + 'static,
Sf::Res: Into<Response>,
Sf::Error: ResponseError,
Sf::InitError: fmt::Debug,
{
server_with(TestServerConfig::default(), factory)
}
pub fn server_with<F, I, Sf>(cfg: TestServerConfig, factory: F) -> TestServer
where
F: AsyncFn(&()) -> I + Send + Clone + 'static,
I: IntoServiceFactory<Sf, (), Request>,
Sf: ServiceFactory<(), Request> + 'static,
Sf::Res: Into<Response>,
Sf::Error: ResponseError,
Sf::InitError: fmt::Debug,
{
let sys = System::current().config();
let name = System::current().name().to_string();
let id = Uuid::now_v7();
let (tx, rx) = mpsc::channel();
log::debug!("Starting {name:?} web server {id:?}");
let ssl = match cfg.stream {
StreamType::Tcp => false,
#[cfg(feature = "openssl")]
StreamType::Openssl(_) => true,
#[cfg(feature = "rustls")]
StreamType::Rustls(_) => true,
};
thread::spawn(move || {
let sys = System::with_config(&name, sys);
let factory = async move |s: &()| {
factory(s)
.await
.into_factory()
.map_init_err(|e| io::Error::other(format!("{e:?}")))
};
let ctimeout = cfg.client_timeout;
let port = cfg.port;
let tcp = cfg
.listener
.unwrap_or(net::TcpListener::bind(format!("127.0.0.1:{port}")).unwrap());
let local_addr = tcp.local_addr().unwrap();
sys.run(move || {
let builder = crate::server::build().workers(1).disable_signals();
let secure = match cfg.stream {
StreamType::Tcp => false,
#[cfg(feature = "openssl")]
StreamType::Openssl(_) => true,
#[cfg(feature = "rustls")]
StreamType::Rustls(_) => true,
};
let c = cfg.srv_cfg.clone().unwrap_or_else(|| {
SharedCfg::new("WEB-SRV")
.add(IoConfig::new())
.add(http::HttpServiceConfig::new().set_headers_read_rate(
ctimeout,
Seconds::ZERO,
256,
))
.add(WebAppConfig::with(
&name,
secure,
local_addr,
format!("{local_addr}"),
))
.into()
});
let srv = match cfg.stream {
StreamType::Tcp => match cfg.tp {
HttpVer::Http1 => builder.listen("test", tcp, c, async move |st| {
HttpService::h1(factory(st).await)
}),
HttpVer::Http2 => builder.listen("test", tcp, c, async move |st| {
HttpService::h2(factory(st).await)
}),
HttpVer::Both => builder.listen("test", tcp, c, async move |st| {
HttpService::new(factory(st).await)
}),
},
#[cfg(feature = "openssl")]
StreamType::Openssl(acceptor) => match cfg.tp {
HttpVer::Http1 => builder.listen("test", tcp, c, async move |st| {
http::openssl(acceptor.clone(), HttpService::h1(factory(st).await))
}),
HttpVer::Http2 => builder.listen("test", tcp, c, async move |st| {
http::openssl(acceptor.clone(), HttpService::h2(factory(st).await))
}),
HttpVer::Both => builder.listen("test", tcp, c, async move |st| {
http::openssl(acceptor.clone(), HttpService::new(factory(st).await))
}),
},
#[cfg(feature = "rustls")]
StreamType::Rustls(config) => match cfg.tp {
HttpVer::Http1 => builder.listen("test", tcp, c, async move |st| {
http::rustls(
config.clone(),
http::ALPN_PROTO_H1,
HttpService::h1(factory(st).await),
)
}),
HttpVer::Http2 => builder.listen("test", tcp, c, async move |st| {
http::rustls(
config.clone(),
http::ALPN_PROTO_H2,
HttpService::h2(factory(st).await),
)
}),
HttpVer::Both => builder.listen("test", tcp, c, async move |st| {
http::rustls(
config.clone(),
http::ALPN_PROTOS,
HttpService::new(factory(st).await),
)
}),
},
}
.unwrap()
.run();
tx.send((System::current(), srv, local_addr)).unwrap();
Ok(())
})
});
let (system, server, addr) = rx.recv().unwrap();
thread::sleep(Millis(25).into());
let cfg = cfg.client_cfg.clone().unwrap_or_else(|| {
SharedCfg::new("TEST-CLIENT")
.add(IoConfig::new().set_connect_timeout(Millis(90_000)))
.add(ntex_tls::TlsConfig::new().set_handshake_timeout(Seconds(5)))
.add(
ntex_h2::ServiceConfig::new()
.set_max_header_list_size(256 * 1024)
.set_max_header_continuation_frames(96),
)
.add(ClientConfig::new().set_lifetime(Seconds::ZERO))
.add(
WsClientConfig::new()
.set_address(addr)
.set_timeout(Seconds(60)),
)
.build()
});
let client = {
#[cfg(feature = "openssl")]
{
use tls_openssl::ssl::{SslConnector, SslMethod, SslVerifyMode};
let mut builder = SslConnector::builder(SslMethod::tls()).unwrap();
builder.set_verify(SslVerifyMode::NONE);
let _ = builder
.set_alpn_protos(b"\x02h2\x08http/1.1")
.map_err(|e| log::error!("Cannot set alpn protocol: {e:?}"));
Client::builder()
.openssl(builder.build())
.build(cfg.clone())
}
#[cfg(not(feature = "openssl"))]
{
Client::builder().build(cfg.clone())
}
};
TestServer {
id,
cfg,
addr,
client,
system,
ssl,
server,
}
}
#[derive(Debug)]
pub struct TestServerConfig {
tp: HttpVer,
stream: StreamType,
client_timeout: Seconds,
port: u16,
listener: Option<net::TcpListener>,
srv_cfg: Option<SharedCfg>,
client_cfg: Option<SharedCfg>,
}
#[derive(Clone, Debug)]
enum HttpVer {
Http1,
Http2,
Both,
}
#[derive(Clone)]
#[allow(clippy::large_enum_variant)]
enum StreamType {
Tcp,
#[cfg(feature = "openssl")]
Openssl(tls_openssl::ssl::SslAcceptor),
#[cfg(feature = "rustls")]
Rustls(tls_rustls::ServerConfig),
}
impl fmt::Debug for StreamType {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
match self {
StreamType::Tcp => write!(f, "StreamType::Tcp"),
#[cfg(feature = "openssl")]
StreamType::Openssl(_) => write!(f, "StreamType::Openssl"),
#[cfg(feature = "rustls")]
StreamType::Rustls(_) => write!(f, "StreamType::Rustls"),
}
}
}
impl Default for TestServerConfig {
fn default() -> Self {
TestServerConfig::new()
}
}
#[must_use]
pub fn config() -> TestServerConfig {
TestServerConfig::new()
}
impl TestServerConfig {
#[must_use]
pub(crate) fn new() -> TestServerConfig {
TestServerConfig {
tp: HttpVer::Both,
stream: StreamType::Tcp,
client_timeout: Seconds(5),
port: 0,
listener: None,
srv_cfg: None,
client_cfg: None,
}
}
#[must_use]
pub fn h1(mut self) -> Self {
self.tp = HttpVer::Http1;
self
}
#[must_use]
pub fn h2(mut self) -> Self {
self.tp = HttpVer::Http2;
self
}
#[must_use]
#[cfg(feature = "openssl")]
pub fn openssl(mut self, acceptor: tls_openssl::ssl::SslAcceptor) -> Self {
self.stream = StreamType::Openssl(acceptor);
self
}
#[must_use]
#[cfg(feature = "rustls")]
pub fn rustls(mut self, config: tls_rustls::ServerConfig) -> Self {
self.stream = StreamType::Rustls(config);
self
}
#[must_use]
pub fn client_timeout(mut self, val: Seconds) -> Self {
self.client_timeout = val;
self
}
#[must_use]
pub fn port(mut self, port: u16) -> Self {
self.port = port;
self
}
#[must_use]
pub fn listener(mut self, listener: net::TcpListener) -> Self {
self.listener = Some(listener);
self
}
#[must_use]
pub fn server_cfg(mut self, cfg: impl Into<SharedCfg>) -> Self {
self.srv_cfg = Some(cfg.into());
self
}
#[must_use]
pub fn client_cfg(mut self, cfg: impl Into<SharedCfg>) -> Self {
self.client_cfg = Some(cfg.into());
self
}
}
#[derive(Debug)]
pub struct TestServer {
id: Uuid,
cfg: SharedCfg,
addr: net::SocketAddr,
client: Client,
system: crate::rt::System,
ssl: bool,
server: Server,
}
impl TestServer {
pub fn addr(&self) -> net::SocketAddr {
self.addr
}
pub fn url(&self, uri: &str) -> String {
let scheme = if self.ssl { "https" } else { "http" };
if uri.starts_with('/') {
format!("{}://localhost:{}{}", scheme, self.addr.port(), uri)
} else {
format!("{}://localhost:{}/{}", scheme, self.addr.port(), uri)
}
}
pub fn get<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.get(self.url(path.as_ref()).as_str())
}
pub fn post<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.post(self.url(path.as_ref()).as_str())
}
pub fn head<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.head(self.url(path.as_ref()).as_str())
}
pub fn put<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.put(self.url(path.as_ref()).as_str())
}
pub fn patch<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.patch(self.url(path.as_ref()).as_str())
}
pub fn delete<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.delete(self.url(path.as_ref()).as_str())
}
pub fn options<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.options(self.url(path.as_ref()).as_str())
}
pub fn query<S: AsRef<str>>(&self, path: S) -> ClientRequest {
self.client.query(self.url(path.as_ref()).as_str())
}
pub fn request<S: AsRef<str>>(&self, method: Method, path: S) -> ClientRequest {
self.client.request(method, path.as_ref())
}
pub async fn load_body(
&self,
response: ClientResponse,
) -> Result<Bytes, Error<ClientPayloadError>> {
response.body().limit(10_485_760).await
}
#[cfg(feature = "ws")]
pub async fn ws_at(&self, path: &str) -> Result<WsConnection<Sealed>, Error<WsClientError>> {
if self.ssl {
#[cfg(feature = "openssl")]
{
use tls_openssl::ssl::{SslConnector, SslMethod, SslVerifyMode};
let mut builder = SslConnector::builder(SslMethod::tls()).unwrap();
builder.set_verify(SslVerifyMode::NONE);
let _ = builder
.set_alpn_protos(b"\x08http/1.1")
.map_err(|e| log::error!("Cannot set alpn protocol: {e:?}"));
WsClient::new(self.url(path), &self.cfg)
.unwrap()
.openssl(builder.build())
.connect()
.await
.map(WsConnection::seal)
}
#[cfg(not(feature = "openssl"))]
{
panic!("openssl feature is required")
}
} else {
WsClient::new(self.url(path), &self.cfg)
.unwrap()
.connect()
.await
.map(WsConnection::seal)
}
}
#[cfg(feature = "ws")]
pub async fn ws(&self) -> Result<WsConnection<Sealed>, Error<WsClientError>> {
self.ws_at("/").await
}
pub async fn stop(&self) {
self.server.stop(true).await;
}
}
impl Drop for TestServer {
fn drop(&mut self) {
log::debug!("Stopping test web server {:?}", self.id);
drop(self.server.stop(false));
thread::sleep(time::Duration::from_millis(75));
self.system.stop();
thread::sleep(time::Duration::from_millis(25));
}
}
#[cfg(test)]
mod tests {
use serde::{Deserialize, Serialize};
use super::*;
use crate::http::{HttpMessage, header};
use crate::web::{self, App};
#[crate::rt_test]
async fn test_basics() {
let req = TestRequest::with_header(header::CONTENT_TYPE, "application/json")
.version(Version::HTTP_2)
.header(header::DATE, "some date")
.param("test", "123")
.app_state(20u64)
.peer_addr("127.0.0.1:8081".parse().unwrap())
.to_http_request();
assert!(req.headers().contains_key(header::CONTENT_TYPE));
assert!(req.headers().contains_key(header::DATE));
assert_eq!(req.peer_addr(), None);
assert_eq!(&req.match_info()["test"], "123");
assert_eq!(req.version(), Version::HTTP_2);
let data = req.app_state::<u64>().unwrap();
assert_eq!(*data, 20);
assert_eq!(format!("{:?}", StreamType::Tcp), "StreamType::Tcp");
let (_, pl, ()) = TestRequest::with_header(header::CONTENT_TYPE, "application/json")
.to_srv_request()
.into_parts();
let res = load_stream(pl).await.unwrap();
assert_eq!(res, &b""[..]);
}
#[crate::rt_test]
async fn test_request_methods() {
let app = init_service(
App::new().service(
web::resource("/index.html")
.route(web::put().to(async || HttpResponse::Ok().body("put!")))
.route(web::patch().to(async || HttpResponse::Ok().body("patch!")))
.route(web::delete().to(async || HttpResponse::Ok().body("delete!"))),
),
)
.await;
let put_req = TestRequest::put()
.uri("/index.html")
.header(header::CONTENT_TYPE, "application/json")
.to_request();
let result = read_response(&app, put_req).await;
assert_eq!(result, Bytes::from_static(b"put!"));
let patch_req = TestRequest::patch()
.uri("/index.html")
.header(header::CONTENT_TYPE, "application/json")
.to_request();
let result = read_response(&app, patch_req).await;
assert_eq!(result, Bytes::from_static(b"patch!"));
let delete_req = TestRequest::delete().uri("/index.html").to_request();
let result = read_response(&app, delete_req).await;
assert_eq!(result, Bytes::from_static(b"delete!"));
}
#[crate::rt_test]
async fn test_response() {
let app = init_service(
App::new().service(
web::resource("/index.html")
.route(web::post().to(async || HttpResponse::Ok().body("welcome!"))),
),
)
.await;
let req = TestRequest::post()
.uri("/index.html")
.header(header::CONTENT_TYPE, "application/json")
.to_request();
let result = read_response(&app, req).await;
assert_eq!(result, Bytes::from_static(b"welcome!"));
}
#[derive(Serialize, Deserialize)]
struct Person {
id: String,
name: String,
}
#[crate::rt_test]
async fn test_response_json() {
let app = init_service(
App::new().service(web::resource("/people").route(web::post().to(
async |person: web::types::Json<Person>| {
HttpResponse::Ok().json(&person.into_inner())
},
))),
)
.await;
let payload = r#"{"id":"12345","name":"User name"}"#.as_bytes();
let req = TestRequest::post()
.uri("/people")
.header(header::CONTENT_TYPE, "application/json")
.payload(payload)
.to_request();
let result: Person = read_response_json(&app, req).await;
assert_eq!(&result.id, "12345");
}
#[crate::rt_test]
async fn test_request_response_form() {
let app = init_service(
App::new().service(web::resource("/people").route(web::post().to(
async |person: web::types::Form<Person>| {
HttpResponse::Ok().json(&person.into_inner())
},
))),
)
.await;
let payload = Person {
id: "12345".to_string(),
name: "User name".to_string(),
};
let req = TestRequest::post()
.uri("/people")
.form(&payload)
.to_request();
assert_eq!(req.content_type(), "application/x-www-form-urlencoded");
let result: Person = read_response_json(&app, req).await;
assert_eq!(&result.id, "12345");
assert_eq!(&result.name, "User name");
}
#[crate::rt_test]
async fn test_request_response_json() {
let app = init_service(
App::new().service(web::resource("/people").route(web::post().to(
async |person: web::types::Json<Person>| {
HttpResponse::Ok().json(&person.into_inner())
},
))),
)
.await;
let payload = Person {
id: "12345".to_string(),
name: "User name".to_string(),
};
let req = TestRequest::post()
.uri("/people")
.json(&payload)
.to_request();
assert_eq!(req.content_type(), "application/json");
let result: Person = read_response_json(&app, req).await;
assert_eq!(&result.id, "12345");
assert_eq!(&result.name, "User name");
}
#[crate::rt_test]
async fn test_async_with_block() {
async fn async_with_block() -> Result<HttpResponse, Infallible> {
let res = web::block(move || Some(4usize).ok_or("wrong")).await;
#[allow(clippy::match_wild_err_arm)]
match res {
Ok(value) => Ok(HttpResponse::Ok()
.content_type("text/plain")
.body(format!("Async with block value: {value}"))),
Err(_) => panic!("Unexpected"),
}
}
let app =
init_service(App::new().service(web::resource("/index.html").to(async_with_block)))
.await;
let req = TestRequest::post().uri("/index.html").to_request();
let res = app.call(req).await.unwrap();
assert!(res.status().is_success());
}
#[crate::rt_test]
async fn test_test_methods() {
let srv = server(async |()| {
App::new().service(
web::resource("/").route((
web::route()
.method(Method::PUT)
.to(async || HttpResponse::Ok()),
web::route()
.method(Method::PATCH)
.to(async || HttpResponse::Ok()),
web::route()
.method(Method::DELETE)
.to(async || HttpResponse::Ok()),
web::route()
.method(Method::OPTIONS)
.to(async || HttpResponse::Ok()),
)),
)
});
assert_eq!(srv.put("/").send().await.unwrap().status(), StatusCode::OK);
assert_eq!(
srv.patch("/").send().await.unwrap().status(),
StatusCode::OK
);
assert_eq!(
srv.delete("/").send().await.unwrap().status(),
StatusCode::OK
);
assert_eq!(
srv.options("/").send().await.unwrap().status(),
StatusCode::OK
);
let res = srv.put("").send().await.unwrap();
assert_eq!(srv.load_body(res).await.unwrap(), Bytes::new());
}
#[cfg(feature = "cookie")]
#[test]
fn test_response_cookies() {
let req = TestRequest::default()
.cookie(
coo_kie::Cookie::build(("name", "value"))
.domain("www.rust-lang.org")
.path("/test")
.http_only(true)
.max_age(::time::Duration::days(1)),
)
.to_http_request();
let cookies = req.cookies().unwrap();
assert_eq!(cookies.len(), 1);
assert_eq!(cookies[0].name(), "name");
}
}