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mirror of https://github.com/fafhrd91/actix-web synced 2024-11-30 18:44:35 +01:00
actix-web/src/test.rs
2017-12-29 11:33:04 -08:00

404 lines
12 KiB
Rust

//! Various helpers for Actix applications to use during testing.
use std::{net, thread};
use std::rc::Rc;
use std::sync::mpsc;
use std::str::FromStr;
use std::collections::HashMap;
use actix::{Arbiter, SyncAddress, System, msgs};
use cookie::Cookie;
use http::{Uri, Method, Version, HeaderMap, HttpTryFrom};
use http::header::{HeaderName, HeaderValue};
use futures::Future;
use tokio_core::net::TcpListener;
use tokio_core::reactor::Core;
use net2::TcpBuilder;
use error::Error;
use server::{HttpServer, ServerSettings};
use handler::{Handler, Responder, ReplyItem};
use channel::{HttpHandler, IntoHttpHandler};
use middleware::Middleware;
use application::{Application, HttpApplication};
use param::Params;
use router::Router;
use payload::Payload;
use httprequest::HttpRequest;
use httpresponse::HttpResponse;
/// The `TestServer` type.
///
/// `TestServer` is very simple test server that simplify process of writing
/// integrational tests cases for actix web applications.
///
/// # Examples
///
/// ```rust
/// # extern crate actix;
/// # extern crate actix_web;
/// # use actix_web::*;
/// # extern crate reqwest;
/// #
/// # fn my_handler(req: HttpRequest) -> HttpResponse {
/// # httpcodes::HTTPOk.response()
/// # }
/// #
/// # fn main() {
/// use actix_web::test::TestServer;
///
/// let srv = TestServer::new(|app| app.handler(my_handler));
///
/// assert!(reqwest::get(&srv.url("/")).unwrap().status().is_success());
/// # }
/// ```
pub struct TestServer {
addr: net::SocketAddr,
thread: Option<thread::JoinHandle<()>>,
sys: SyncAddress<System>,
}
impl TestServer {
/// Start new test server
///
/// This methos accepts configuration method. You can add
/// middlewares or set handlers for test application.
pub fn new<F>(config: F) -> Self
where F: Sync + Send + 'static + Fn(&mut TestApp<()>),
{
TestServer::with_state(||(), config)
}
/// Start new test server with application factory
pub fn with_factory<H, F, U, V>(factory: F) -> Self
where H: HttpHandler,
F: Sync + Send + 'static + Fn() -> U,
U: IntoIterator<Item=V> + 'static,
V: IntoHttpHandler<Handler=H>,
{
let (tx, rx) = mpsc::channel();
// run server in separate thread
let join = thread::spawn(move || {
let sys = System::new("actix-test-server");
let tcp = net::TcpListener::bind("127.0.0.1:0").unwrap();
let local_addr = tcp.local_addr().unwrap();
let tcp = TcpListener::from_listener(tcp, &local_addr, Arbiter::handle()).unwrap();
HttpServer::new(factory).start_incoming(tcp.incoming(), false);
tx.send((Arbiter::system(), local_addr)).unwrap();
let _ = sys.run();
});
let (sys, addr) = rx.recv().unwrap();
TestServer {
addr: addr,
thread: Some(join),
sys: sys,
}
}
/// Start new test server with custom application state
///
/// This methos accepts state factory and configuration method.
pub fn with_state<S, FS, F>(state: FS, config: F) -> Self
where S: 'static,
FS: Sync + Send + 'static + Fn() -> S,
F: Sync + Send + 'static + Fn(&mut TestApp<S>),
{
let (tx, rx) = mpsc::channel();
// run server in separate thread
let join = thread::spawn(move || {
let sys = System::new("actix-test-server");
let tcp = net::TcpListener::bind("127.0.0.1:0").unwrap();
let local_addr = tcp.local_addr().unwrap();
let tcp = TcpListener::from_listener(tcp, &local_addr, Arbiter::handle()).unwrap();
HttpServer::new(move || {
let mut app = TestApp::new(state());
config(&mut app);
app}
).start_incoming(tcp.incoming(), false);
tx.send((Arbiter::system(), local_addr)).unwrap();
let _ = sys.run();
});
let (sys, addr) = rx.recv().unwrap();
TestServer {
addr: addr,
thread: Some(join),
sys: sys,
}
}
/// Get firat available unused address
pub fn unused_addr() -> net::SocketAddr {
let addr: net::SocketAddr = "127.0.0.1:0".parse().unwrap();
let socket = TcpBuilder::new_v4().unwrap();
socket.bind(&addr).unwrap();
socket.reuse_address(true).unwrap();
let tcp = socket.to_tcp_listener().unwrap();
tcp.local_addr().unwrap()
}
/// Construct test server url
pub fn url(&self, uri: &str) -> String {
if uri.starts_with('/') {
format!("http://{}{}", self.addr, uri)
} else {
format!("http://{}/{}", self.addr, uri)
}
}
/// Stop http server
fn stop(&mut self) {
if let Some(handle) = self.thread.take() {
self.sys.send(msgs::SystemExit(0));
let _ = handle.join();
}
}
}
impl Drop for TestServer {
fn drop(&mut self) {
self.stop()
}
}
/// Test application helper for testing request handlers.
pub struct TestApp<S=()> {
app: Option<Application<S>>,
}
impl<S: 'static> TestApp<S> {
fn new(state: S) -> TestApp<S> {
let app = Application::with_state(state);
TestApp{app: Some(app)}
}
/// Register handler for "/"
pub fn handler<H: Handler<S>>(&mut self, handler: H) {
self.app = Some(self.app.take().unwrap().resource("/", |r| r.h(handler)));
}
/// Register middleware
pub fn middleware<T>(&mut self, mw: T) -> &mut TestApp<S>
where T: Middleware<S> + 'static
{
self.app = Some(self.app.take().unwrap().middleware(mw));
self
}
}
impl<S: 'static> IntoHttpHandler for TestApp<S> {
type Handler = HttpApplication<S>;
fn into_handler(mut self, settings: ServerSettings) -> HttpApplication<S> {
self.app.take().unwrap().into_handler(settings)
}
}
#[doc(hidden)]
impl<S: 'static> Iterator for TestApp<S> {
type Item = HttpApplication<S>;
fn next(&mut self) -> Option<Self::Item> {
if let Some(mut app) = self.app.take() {
Some(app.finish())
} else {
None
}
}
}
/// Test `HttpRequest` builder
///
/// ```rust
/// # extern crate http;
/// # extern crate actix_web;
/// # use http::{header, StatusCode};
/// # use actix_web::*;
/// use actix_web::test::TestRequest;
///
/// fn index(req: HttpRequest) -> HttpResponse {
/// if let Some(hdr) = req.headers().get(header::CONTENT_TYPE) {
/// httpcodes::HTTPOk.response()
/// } else {
/// httpcodes::HTTPBadRequest.response()
/// }
/// }
///
/// fn main() {
/// let resp = TestRequest::with_header("content-type", "text/plain")
/// .run(index).unwrap();
/// assert_eq!(resp.status(), StatusCode::OK);
///
/// let resp = TestRequest::default()
/// .run(index).unwrap();
/// assert_eq!(resp.status(), StatusCode::BAD_REQUEST);
/// }
/// ```
pub struct TestRequest<S> {
state: S,
version: Version,
method: Method,
uri: Uri,
headers: HeaderMap,
params: Params<'static>,
cookies: Option<Vec<Cookie<'static>>>,
payload: Option<Payload>,
}
impl Default for TestRequest<()> {
fn default() -> TestRequest<()> {
TestRequest {
state: (),
method: Method::GET,
uri: Uri::from_str("/").unwrap(),
version: Version::HTTP_11,
headers: HeaderMap::new(),
params: Params::new(),
cookies: None,
payload: None,
}
}
}
impl TestRequest<()> {
/// Create TestReqeust and set request uri
pub fn with_uri(path: &str) -> TestRequest<()> {
TestRequest::default().uri(path)
}
/// Create TestReqeust and set header
pub fn with_header<K, V>(key: K, value: V) -> TestRequest<()>
where HeaderName: HttpTryFrom<K>,
HeaderValue: HttpTryFrom<V>
{
TestRequest::default().header(key, value)
}
}
impl<S> TestRequest<S> {
/// Start HttpRequest build process with application state
pub fn with_state(state: S) -> TestRequest<S> {
TestRequest {
state: state,
method: Method::GET,
uri: Uri::from_str("/").unwrap(),
version: Version::HTTP_11,
headers: HeaderMap::new(),
params: Params::new(),
cookies: None,
payload: None,
}
}
/// Set HTTP version of this request
pub fn version(mut self, ver: Version) -> Self {
self.version = ver;
self
}
/// Set HTTP method of this request
pub fn method(mut self, meth: Method) -> Self {
self.method = meth;
self
}
/// Set HTTP Uri of this request
pub fn uri(mut self, path: &str) -> Self {
self.uri = Uri::from_str(path).unwrap();
self
}
/// Set a header
pub fn header<K, V>(mut self, key: K, value: V) -> Self
where HeaderName: HttpTryFrom<K>,
HeaderValue: HttpTryFrom<V>
{
if let Ok(key) = HeaderName::try_from(key) {
if let Ok(value) = HeaderValue::try_from(value) {
self.headers.append(key, value);
return self
}
}
panic!("Can not create header");
}
/// Set request path pattern parameter
pub fn param(mut self, name: &'static str, value: &'static str) -> Self {
self.params.add(name, value);
self
}
/// Complete request creation and generate `HttpRequest` instance
pub fn finish(self) -> HttpRequest<S> {
let TestRequest { state, method, uri, version, headers, params, cookies, payload } = self;
let req = HttpRequest::new(method, uri, version, headers, payload);
req.as_mut().cookies = cookies;
req.as_mut().params = params;
let (router, _) = Router::new::<S>("/", ServerSettings::default(), HashMap::new());
req.with_state(Rc::new(state), router)
}
/// This method generates `HttpRequest` instance and runs handler
/// with generated request.
///
/// This method panics is handler returns actor or async result.
pub fn run<H: Handler<S>>(self, mut h: H) ->
Result<HttpResponse, <<H as Handler<S>>::Result as Responder>::Error>
{
let req = self.finish();
let resp = h.handle(req.clone());
match resp.respond_to(req.clone_without_state()) {
Ok(resp) => {
match resp.into().into() {
ReplyItem::Message(resp) => Ok(resp),
ReplyItem::Actor(_) => panic!("Actor handler is not supported."),
ReplyItem::Future(_) => panic!("Async handler is not supported."),
}
},
Err(err) => Err(err),
}
}
/// This method generates `HttpRequest` instance and runs handler
/// with generated request.
///
/// This method panics is handler returns actor.
pub fn run_async<H, R, F, E>(self, h: H) -> Result<HttpResponse, E>
where H: Fn(HttpRequest<S>) -> F + 'static,
F: Future<Item=R, Error=E> + 'static,
R: Responder<Error=E> + 'static,
E: Into<Error> + 'static
{
let req = self.finish();
let fut = h(req.clone());
let mut core = Core::new().unwrap();
match core.run(fut) {
Ok(r) => {
match r.respond_to(req.clone_without_state()) {
Ok(reply) => match reply.into().into() {
ReplyItem::Message(resp) => Ok(resp),
_ => panic!("Nested async replies are not supported"),
},
Err(e) => Err(e),
}
},
Err(err) => Err(err),
}
}
}