use crate::http1::{SendRequest, Sender};
use hyper::client::conn::http1;
use net_pool::backend::{Address, BackendState};
use net_pool::{Error, Strategy, debug, instrument_current_span, tokio_spawn};
use std::collections::hash_map::Entry;
use std::collections::{HashMap, HashSet};
use std::hash::{Hash, Hasher};
use std::sync::atomic::AtomicBool;
use std::sync::atomic::Ordering::Relaxed;
use std::sync::{Arc, Mutex};
#[derive(Clone)]
struct SrData(Arc<SendRequest>);
impl PartialEq for SrData {
fn eq(&self, other: &Self) -> bool {
self.0.as_ref() as *const _ == other.0.as_ref() as *const _
}
}
impl Eq for SrData {}
impl Hash for SrData {
fn hash<H: Hasher>(&self, state: &mut H) {
state.write_usize(self.0.as_ref() as *const _ as usize)
}
}
struct Inner {
free: HashSet<SrData>,
work: HashSet<SrData>,
}
impl Inner {
fn new() -> Self {
Inner {
free: HashSet::new(),
work: HashSet::new(),
}
}
fn add_work_sr(&mut self, sr: Arc<SendRequest>) {
self.work.insert(SrData(sr));
}
fn remove_sr(&mut self, sr: Arc<SendRequest>) -> bool {
let d = SrData(sr);
if self.work.remove(&d) {
true
} else if self.free.remove(&d) {
true
} else {
false
}
}
fn get_sr(&mut self) -> (usize, Option<Arc<SendRequest>>) {
let mut dels = 0;
if self.free.is_empty() {
self.work.retain(|d| {
if Arc::strong_count(&d.0) == 2 {
if !d.0.is_closed() {
self.free.insert(d.clone());
} else {
dels += 1;
}
false
} else {
true
}
});
}
loop {
let d = match self.free.iter().next() {
None => return (dels, None),
Some(d) => d.clone(),
};
self.free.remove(&d);
if d.0.is_closed() {
dels += 1;
} else {
let sr = d.0.clone();
self.work.insert(d);
return (dels, Some(sr));
}
}
}
}
pub struct Pool {
state: net_pool::pool::BaseState,
use_tls: AtomicBool,
free_conn_map: Mutex<HashMap<u64, Inner>>,
}
impl Pool {
pub fn new(strategy: Arc<dyn Strategy>) -> Self {
let p = Pool {
state: net_pool::pool::BaseState::new(strategy),
use_tls: AtomicBool::new(false),
free_conn_map: Mutex::new(HashMap::new()),
};
<Pool as net_pool::pool::Pool>::set_keepalive(
&p,
Some(std::time::Duration::from_secs(60 * 1)),
);
p
}
}
impl Default for Pool {
fn default() -> Self {
Pool::new(Arc::new(net_pool::strategy::CHStrategy::default()))
}
}
impl<L: Strategy + 'static> From<L> for Pool {
fn from(value: L) -> Self {
Self::new(Arc::new(value))
}
}
impl net_pool::pool::Pool for Pool {
net_pool::macros::base_pool_impl! {state}
fn remove_backend(&self, addr: &Address) -> bool {
if self.state.lb_strategy.remove_backend(addr) {
self.clear_bs_sr(addr.hash_code());
true
} else {
false
}
}
fn use_tls(&self, tls: bool) {
self.use_tls.store(tls, Relaxed);
}
fn tls(&self) -> bool {
self.use_tls.load(Relaxed)
}
}
impl Pool {
fn clear_bs_sr(&self, hash_code: u64) {
let mut guard = self.free_conn_map.lock().unwrap();
if let Some(inner) = guard.remove(&hash_code) {
assert!(
self.state
.cur_conn
.fetch_sub(inner.free.len() + inner.work.len(), Relaxed)
> 0
);
debug!(
"[desc] current connection count: {}",
self.state.cur_conn.load(Relaxed)
);
}
}
fn get_sender(&self, bs: &BackendState) -> Option<Sender> {
let mut guard = self.free_conn_map.lock().unwrap();
let inner = guard.get_mut(&bs.hash_code())?;
let sr = {
let (del_cnt, sr) = inner.get_sr();
if del_cnt > 0 {
assert!(self.state.cur_conn.fetch_sub(del_cnt, Relaxed) > 0);
debug!(
"[desc] current connection count: {}",
self.state.cur_conn.load(Relaxed)
);
}
sr
};
if let Some(sr) = sr {
let tls = <Pool as net_pool::pool::Pool>::tls(self);
Some(Sender::new(
sr,
crate::utils::base_url(tls, bs.get_address()),
))
} else {
None
}
}
fn add_sr(&self, hash_code: u64, sr: Arc<SendRequest>) {
let mut guard = self.free_conn_map.lock().unwrap();
match guard.entry(hash_code) {
Entry::Occupied(mut o) => {
o.get_mut().add_work_sr(sr);
}
Entry::Vacant(e) => {
let mut inner = Inner::new();
inner.add_work_sr(sr);
e.insert(inner);
}
}
}
fn remove_sr(&self, hash_code: u64, sr: Arc<SendRequest>) {
let mut guard = self.free_conn_map.lock().unwrap();
if let Some(inner) = guard.get_mut(&hash_code) {
if inner.remove_sr(sr) {
assert!(self.state.cur_conn.fetch_sub(1, Relaxed) > 0);
debug!(
"[desc] current connection count: {}",
self.state.cur_conn.load(Relaxed)
);
}
}
}
fn run_conn<C: Future<Output = Result<(), hyper::Error>> + Send + 'static>(
pool: Arc<Self>,
c: C,
sr: Arc<SendRequest>,
bs: &BackendState,
) {
let hash_code = bs.hash_code();
pool.add_sr(hash_code, sr.clone());
let ka = <Pool as net_pool::pool::Pool>::get_keepalive(&pool);
tokio_spawn! {
instrument_current_span! {
async move {
let _r = crate::utils::run_conn(sr.clone(), c, ka).await;
debug!("connection closed: {:?}", _r);
pool.remove_sr(hash_code, sr);
}
}
};
}
async fn create_tls_sender(self: Arc<Self>, bs: &BackendState) -> Result<Sender, Error> {
let tls = <Pool as net_pool::pool::Pool>::tls(&self);
let addr = bs.get_address();
let tcp = crate::utils::create_https_stream(addr).await?;
let tls_tcp =
crate::utils::create_tls_tcp(tcp, addr, crate::utils::HTTP1_TLS_CLIENT_CFG.clone())
.await?;
let io = hyper_util::rt::TokioIo::new(tls_tcp);
let pair = http1::handshake(io)
.await
.map_err(|e| Error::from_other(e))?;
let sr = Arc::new(pair.0);
Pool::run_conn(self, pair.1, sr.clone(), &bs);
Ok(Sender::new(sr, crate::utils::base_url(tls, addr)))
}
async fn create_non_tls_sender(self: Arc<Self>, bs: &BackendState) -> Result<Sender, Error> {
let addr = bs.get_address();
let tls = <Pool as net_pool::pool::Pool>::tls(&self);
let tcp = crate::utils::create_http_stream(addr).await?;
let io = hyper_util::rt::TokioIo::new(tcp);
let pair = http1::handshake(io)
.await
.map_err(|e| Error::from_other(e))?;
let sr = Arc::new(pair.0);
Pool::run_conn(self, pair.1, sr.clone(), &bs);
Ok(Sender::new(sr, crate::utils::base_url(tls, addr)))
}
async fn create_sender(self: Arc<Self>, bs: &BackendState) -> Result<Sender, Error> {
if <Pool as net_pool::pool::Pool>::tls(&self) {
self.create_tls_sender(bs).await
} else {
self.create_non_tls_sender(bs).await
}
}
async fn real(self: Arc<Self>, bs: BackendState) -> Result<Sender, Error> {
if let Some(sender) = self.clone().get_sender(&bs) {
return Ok(sender);
}
let sender = {
net_pool::pool::increase_current(&self.state.max_conn, &self.state.cur_conn)?;
self.clone().create_sender(&bs).await.map(|s| {
debug!(
"[incr] current connection count: {}",
self.state.cur_conn.load(Relaxed)
);
s
})
};
if sender.is_err() {
assert!(self.state.cur_conn.fetch_sub(1, Relaxed) > 0);
}
sender
}
}
pub trait HttpPool {
fn get(self: Arc<Self>, key: &str) -> impl Future<Output = Result<Sender, Error>> + Send;
fn target(self: Arc<Self>, _: &Address) -> impl Future<Output = Result<Sender, Error>> + Send;
}
impl HttpPool for Pool {
async fn get(self: Arc<Self>, key: &str) -> Result<Sender, Error> {
let bs = self
.state
.lb_strategy
.get_backend(key)
.ok_or(Error::NoBackend)?;
self.real(bs).await
}
async fn target(self: Arc<Self>, addr: &Address) -> Result<Sender, Error> {
if !self.state.lb_strategy.contain(addr) {
return Err(Error::NoBackend);
}
self.real(BackendState::new(None, addr.clone())).await
}
}
pub async fn get<P: HttpPool>(pool: Arc<P>, key: &str) -> Result<Sender, Error> {
HttpPool::get(pool, key).await
}