lemmy/server/src/rate_limit/mod.rs

184 lines
4.5 KiB
Rust
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pub mod rate_limiter;
use super::{IPAddr, Settings};
use crate::api::APIError;
use crate::settings::RateLimitConfig;
use actix_web::dev::{Service, ServiceRequest, ServiceResponse, Transform};
use failure::Error;
use futures::future::{ok, Ready};
use log::warn;
use rate_limiter::{RateLimitType, RateLimiter};
use std::collections::HashMap;
use std::future::Future;
use std::pin::Pin;
use std::sync::Arc;
use std::task::{Context, Poll};
use std::time::SystemTime;
use strum::IntoEnumIterator;
use tokio::sync::Mutex;
#[derive(Debug, Clone)]
pub struct RateLimit(pub Arc<Mutex<RateLimiter>>);
#[derive(Debug, Clone)]
pub struct RateLimited(Arc<Mutex<RateLimiter>>, RateLimitType);
pub struct RateLimitedMiddleware<S>(RateLimited, S);
impl RateLimit {
pub fn message(&self) -> RateLimited {
self.kind(RateLimitType::Message)
}
pub fn post(&self) -> RateLimited {
self.kind(RateLimitType::Post)
}
pub fn register(&self) -> RateLimited {
self.kind(RateLimitType::Register)
}
fn kind(&self, type_: RateLimitType) -> RateLimited {
RateLimited(self.0.clone(), type_)
}
}
impl RateLimited {
pub async fn wrap<T, E>(
self,
ip_addr: String,
fut: impl Future<Output = Result<T, E>>,
) -> Result<T, E>
where
E: From<failure::Error>,
{
let rate_limit: RateLimitConfig = actix_web::web::block(move || {
// needs to be in a web::block because the RwLock in settings is from stdlib
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Ok(Settings::get().rate_limit) as Result<_, failure::Error>
})
.await
.map_err(|e| match e {
actix_web::error::BlockingError::Error(e) => e,
_ => APIError::err("Operation canceled").into(),
})?;
// before
{
let mut limiter = self.0.lock().await;
match self.1 {
RateLimitType::Message => {
limiter.check_rate_limit_full(
self.1,
&ip_addr,
rate_limit.message,
rate_limit.message_per_second,
false,
)?;
return fut.await;
}
RateLimitType::Post => {
limiter.check_rate_limit_full(
self.1.clone(),
&ip_addr,
rate_limit.post,
rate_limit.post_per_second,
true,
)?;
}
RateLimitType::Register => {
limiter.check_rate_limit_full(
self.1,
&ip_addr,
rate_limit.register,
rate_limit.register_per_second,
true,
)?;
}
};
}
let res = fut.await;
// after
{
let mut limiter = self.0.lock().await;
if res.is_ok() {
match self.1 {
RateLimitType::Post => {
limiter.check_rate_limit_full(
self.1,
&ip_addr,
rate_limit.post,
rate_limit.post_per_second,
false,
)?;
}
RateLimitType::Register => {
limiter.check_rate_limit_full(
self.1,
&ip_addr,
rate_limit.register,
rate_limit.register_per_second,
false,
)?;
}
_ => (),
};
}
}
res
}
}
impl<S> Transform<S> for RateLimited
where
S: Service<Request = ServiceRequest, Response = ServiceResponse, Error = actix_web::Error>,
S::Future: 'static,
{
type Request = S::Request;
type Response = S::Response;
type Error = actix_web::Error;
type InitError = ();
type Transform = RateLimitedMiddleware<S>;
type Future = Ready<Result<Self::Transform, Self::InitError>>;
fn new_transform(&self, service: S) -> Self::Future {
ok(RateLimitedMiddleware(self.clone(), service))
}
}
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type FutResult<T, E> = dyn Future<Output = Result<T, E>>;
impl<S> Service for RateLimitedMiddleware<S>
where
S: Service<Request = ServiceRequest, Response = ServiceResponse, Error = actix_web::Error>,
S::Future: 'static,
{
type Request = S::Request;
type Response = S::Response;
type Error = actix_web::Error;
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type Future = Pin<Box<FutResult<Self::Response, Self::Error>>>;
fn poll_ready(&mut self, cx: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
self.1.poll_ready(cx)
}
fn call(&mut self, req: S::Request) -> Self::Future {
let ip_addr = req
.connection_info()
.remote()
.unwrap_or("127.0.0.1:12345")
.split(':')
.next()
.unwrap_or("127.0.0.1")
.to_string();
let fut = self.0.clone().wrap(ip_addr, self.1.call(req));
Box::pin(async move { fut.await.map_err(actix_web::Error::from) })
}
}