2020-04-11 20:03:22 +02:00
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use log::warn;
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2020-04-03 17:27:08 +02:00
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use rocket::{
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2020-04-06 17:37:13 +02:00
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data::{Data, FromData, FromDataFuture, Transform, TransformFuture, Transformed},
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2020-04-03 17:27:08 +02:00
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http::Status,
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2020-04-04 20:50:01 +02:00
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response::{self, Responder},
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2020-04-03 17:27:08 +02:00
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Outcome::*,
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Request, State,
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};
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2020-04-25 11:47:32 +02:00
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use ruma_api::Endpoint;
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2020-04-03 17:27:08 +02:00
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use ruma_identifiers::UserId;
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2020-04-25 11:47:32 +02:00
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use std::{convert::TryInto, io::Cursor, ops::Deref};
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2020-04-04 20:50:01 +02:00
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use tokio::io::AsyncReadExt;
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2020-02-15 22:42:21 +01:00
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const MESSAGE_LIMIT: u64 = 65535;
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2020-03-28 23:08:59 +01:00
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/// This struct converts rocket requests into ruma structs by converting them into http requests
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/// first.
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2020-04-23 14:27:50 +02:00
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pub struct Ruma<T> {
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body: T,
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2020-03-29 21:05:20 +02:00
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pub user_id: Option<UserId>,
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2020-03-30 00:10:15 +02:00
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pub json_body: serde_json::Value,
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2020-03-28 18:50:02 +01:00
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}
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2020-03-28 23:08:59 +01:00
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2020-04-25 11:47:32 +02:00
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impl<'a, T: Endpoint> FromData<'a> for Ruma<T> {
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2020-03-29 21:05:20 +02:00
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type Error = (); // TODO: Better error handling
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2020-04-04 20:50:01 +02:00
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type Owned = Data;
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type Borrowed = Self::Owned;
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2020-02-15 22:42:21 +01:00
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2020-04-06 17:37:13 +02:00
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fn transform<'r>(
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_req: &'r Request,
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data: Data,
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) -> TransformFuture<'r, Self::Owned, Self::Error> {
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2020-04-04 20:50:01 +02:00
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Box::pin(async move { Transform::Owned(Success(data)) })
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}
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fn from_data(
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request: &'a Request,
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outcome: Transformed<'a, Self>,
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) -> FromDataFuture<'a, Self, Self::Error> {
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Box::pin(async move {
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let data = rocket::try_outcome!(outcome.owned());
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let user_id = if T::METADATA.requires_authentication {
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let data = request.guard::<State<crate::Data>>().await.unwrap();
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// Get token from header or query value
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let token = match request
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.headers()
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.get_one("Authorization")
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2020-04-07 13:21:05 +02:00
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.map(|s| s[7..].to_owned()) // Split off "Bearer "
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2020-04-04 20:50:01 +02:00
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.or_else(|| request.get_query_value("access_token").and_then(|r| r.ok()))
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{
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// TODO: M_MISSING_TOKEN
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None => return Failure((Status::Unauthorized, ())),
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Some(token) => token,
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};
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// Check if token is valid
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match data.user_from_token(&token) {
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// TODO: M_UNKNOWN_TOKEN
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None => return Failure((Status::Unauthorized, ())),
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Some(user_id) => Some(user_id),
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}
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} else {
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None
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2020-03-29 21:05:20 +02:00
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};
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2020-04-04 20:50:01 +02:00
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let mut http_request = http::Request::builder()
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.uri(request.uri().to_string())
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.method(&*request.method().to_string());
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for header in request.headers().iter() {
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http_request = http_request.header(header.name.as_str(), &*header.value);
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2020-03-29 21:05:20 +02:00
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}
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2020-02-15 22:42:21 +01:00
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2020-04-04 20:50:01 +02:00
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let mut handle = data.open().take(MESSAGE_LIMIT);
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let mut body = Vec::new();
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handle.read_to_end(&mut body).await.unwrap();
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let http_request = http_request.body(body.clone()).unwrap();
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log::info!("{:?}", http_request);
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2020-04-23 14:27:50 +02:00
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match T::try_from(http_request) {
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2020-04-04 20:50:01 +02:00
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Ok(t) => Success(Ruma {
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body: t,
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user_id,
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// TODO: Can we avoid parsing it again?
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json_body: if !body.is_empty() {
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serde_json::from_slice(&body).expect("Ruma already parsed it successfully")
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} else {
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serde_json::Value::default()
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},
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}),
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Err(e) => {
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2020-04-11 20:03:22 +02:00
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warn!("{:?}", e);
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2020-04-04 20:50:01 +02:00
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Failure((Status::InternalServerError, ()))
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}
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2020-02-18 22:07:57 +01:00
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}
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2020-04-04 20:50:01 +02:00
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})
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2020-02-15 22:42:21 +01:00
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}
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}
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2020-04-23 14:27:50 +02:00
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impl<T> Deref for Ruma<T> {
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type Target = T;
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2020-02-15 22:42:21 +01:00
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fn deref(&self) -> &Self::Target {
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2020-03-28 18:50:02 +01:00
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&self.body
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}
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}
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2020-03-28 23:08:59 +01:00
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/// This struct converts ruma responses into rocket http responses.
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2020-04-08 23:25:19 +02:00
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pub struct MatrixResult<T, E = ruma_client_api::Error>(pub std::result::Result<T, E>);
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2020-04-04 20:50:01 +02:00
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2020-04-08 23:25:19 +02:00
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impl<T, E> TryInto<http::Response<Vec<u8>>> for MatrixResult<T, E>
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where
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T: TryInto<http::Response<Vec<u8>>>,
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E: Into<http::Response<Vec<u8>>>,
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{
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2020-02-18 22:07:57 +01:00
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type Error = T::Error;
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fn try_into(self) -> Result<http::Response<Vec<u8>>, T::Error> {
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match self.0 {
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Ok(t) => t.try_into(),
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Err(e) => Ok(e.into()),
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}
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}
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}
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2020-04-04 20:50:01 +02:00
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#[rocket::async_trait]
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2020-04-08 23:25:19 +02:00
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impl<'r, T, E> Responder<'r> for MatrixResult<T, E>
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2020-04-06 17:37:13 +02:00
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where
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2020-04-08 23:25:19 +02:00
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T: Send + TryInto<http::Response<Vec<u8>>>,
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2020-04-06 17:37:13 +02:00
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T::Error: Send,
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2020-04-08 23:25:19 +02:00
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E: Into<http::Response<Vec<u8>>> + Send,
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2020-04-06 17:37:13 +02:00
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{
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2020-04-04 20:50:01 +02:00
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async fn respond_to(self, _: &'r Request<'_>) -> response::Result<'r> {
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2020-02-18 22:07:57 +01:00
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let http_response: Result<http::Response<_>, _> = self.try_into();
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match http_response {
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2020-02-15 22:42:21 +01:00
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Ok(http_response) => {
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let mut response = rocket::response::Response::build();
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2020-04-06 17:37:13 +02:00
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response
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.sized_body(Cursor::new(http_response.body().clone()))
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.await;
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2020-02-15 22:42:21 +01:00
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2020-04-07 13:21:05 +02:00
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let status = http_response.status();
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response.raw_status(status.into(), "");
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2020-02-15 22:42:21 +01:00
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for header in http_response.headers() {
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response
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.raw_header(header.0.to_string(), header.1.to_str().unwrap().to_owned());
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}
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2020-03-28 18:50:02 +01:00
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response.raw_header("Access-Control-Allow-Origin", "*");
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response.raw_header(
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"Access-Control-Allow-Methods",
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"GET, POST, PUT, DELETE, OPTIONS",
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);
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response.raw_header(
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"Access-Control-Allow-Headers",
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"Origin, X-Requested-With, Content-Type, Accept, Authorization",
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);
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2020-02-15 22:42:21 +01:00
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response.ok()
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}
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Err(_) => Err(Status::InternalServerError),
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}
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}
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}
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2020-04-26 22:39:15 +02:00
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impl<T, E> Deref for MatrixResult<T, E> {
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type Target = Result<T, E>;
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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