use bytes::BytesMut;
use futures::{Poll, Future, Stream};
use http::header::CONTENT_LENGTH;
use serde_json;
use serde::Serialize;
use serde::de::DeserializeOwned;
use error::{Error, JsonPayloadError};
use handler::Responder;
use httprequest::HttpRequest;
use httpresponse::HttpResponse;
pub struct Json<T: Serialize> (pub T);
impl<T: Serialize> Responder for Json<T> {
type Item = HttpResponse;
type Error = Error;
fn respond_to(self, _: HttpRequest) -> Result<HttpResponse, Error> {
let body = serde_json::to_string(&self.0)?;
Ok(HttpResponse::Ok()
.content_type("application/json")
.body(body)?)
}
}
pub struct JsonBody<S, T: DeserializeOwned>{
limit: usize,
ct: &'static str,
req: Option<HttpRequest<S>>,
fut: Option<Box<Future<Item=T, Error=JsonPayloadError>>>,
}
impl<S, T: DeserializeOwned> JsonBody<S, T> {
pub fn from_request(req: &HttpRequest<S>) -> Self {
JsonBody{
limit: 262_144,
req: Some(req.clone()),
fut: None,
ct: "application/json",
}
}
pub fn limit(mut self, limit: usize) -> Self {
self.limit = limit;
self
}
pub fn content_type(mut self, ct: &'static str) -> Self {
self.ct = ct;
self
}
}
impl<S, T: DeserializeOwned + 'static> Future for JsonBody<S, T> {
type Item = T;
type Error = JsonPayloadError;
fn poll(&mut self) -> Poll<T, JsonPayloadError> {
if let Some(req) = self.req.take() {
if let Some(len) = req.headers().get(CONTENT_LENGTH) {
if let Ok(s) = len.to_str() {
if let Ok(len) = s.parse::<usize>() {
if len > self.limit {
return Err(JsonPayloadError::Overflow);
}
} else {
return Err(JsonPayloadError::Overflow);
}
}
}
if !self.ct.is_empty() && req.content_type() != self.ct {
return Err(JsonPayloadError::ContentType)
}
let limit = self.limit;
let fut = req.payload().readany()
.from_err()
.fold(BytesMut::new(), move |mut body, chunk| {
if (body.len() + chunk.len()) > limit {
Err(JsonPayloadError::Overflow)
} else {
body.extend_from_slice(&chunk);
Ok(body)
}
})
.and_then(|body| Ok(serde_json::from_slice::<T>(&body)?));
self.fut = Some(Box::new(fut));
}
self.fut.as_mut().expect("JsonBody could not be used second time").poll()
}
}
#[cfg(test)]
mod tests {
use super::*;
use bytes::Bytes;
use http::header;
use futures::Async;
impl PartialEq for JsonPayloadError {
fn eq(&self, other: &JsonPayloadError) -> bool {
match *self {
JsonPayloadError::Overflow => match *other {
JsonPayloadError::Overflow => true,
_ => false,
},
JsonPayloadError::ContentType => match *other {
JsonPayloadError::ContentType => true,
_ => false,
},
_ => false,
}
}
}
#[derive(Serialize, Deserialize, PartialEq, Debug)]
struct MyObject {
name: String,
}
#[test]
fn test_json() {
let json = Json(MyObject{name: "test".to_owned()});
let resp = json.respond_to(HttpRequest::default()).unwrap();
assert_eq!(resp.headers().get(header::CONTENT_TYPE).unwrap(), "application/json");
}
#[test]
fn test_json_body() {
let mut req = HttpRequest::default();
let mut json = req.json::<MyObject>();
assert_eq!(json.poll().err().unwrap(), JsonPayloadError::ContentType);
let mut json = req.json::<MyObject>().content_type("text/json");
req.headers_mut().insert(header::CONTENT_TYPE,
header::HeaderValue::from_static("application/json"));
assert_eq!(json.poll().err().unwrap(), JsonPayloadError::ContentType);
let mut json = req.json::<MyObject>().limit(100);
req.headers_mut().insert(header::CONTENT_TYPE,
header::HeaderValue::from_static("application/json"));
req.headers_mut().insert(header::CONTENT_LENGTH,
header::HeaderValue::from_static("10000"));
assert_eq!(json.poll().err().unwrap(), JsonPayloadError::Overflow);
req.headers_mut().insert(header::CONTENT_LENGTH,
header::HeaderValue::from_static("16"));
req.payload_mut().unread_data(Bytes::from_static(b"{\"name\": \"test\"}"));
let mut json = req.json::<MyObject>();
assert_eq!(json.poll().ok().unwrap(), Async::Ready(MyObject{name: "test".to_owned()}));
}
}