Pending Bytes&Items in Carrier Lanes

Co-Authored-By: brekotis <93345790+brekotis@users.noreply.github.com>
This commit is contained in:
Alexey
2026-08-26 18:40:06 +03:00
parent 75b2aae009
commit 016ad247a4
4 changed files with 258 additions and 55 deletions
+105 -22
View File
@@ -1,7 +1,7 @@
use std::collections::HashMap;
use std::net::IpAddr;
use std::sync::Arc;
use std::sync::atomic::{AtomicBool, AtomicU64, Ordering};
use std::sync::atomic::{AtomicBool, AtomicU8, AtomicU64, Ordering};
use std::time::Duration;
use tokio::sync::OwnedSemaphorePermit;
@@ -10,7 +10,7 @@ use tokio_util::sync::CancellationToken;
use super::{ManagerError, ProfileKey, WebProcessRuntime, WebSocketBudgetLease};
/// One process-owned WebSocket carrier class used for eviction priority.
#[derive(Clone, Copy, Debug, PartialEq, Eq)]
#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
pub(crate) enum WebSocketKind {
/// One connection multiplexes every logical stream in a session.
Multiplex,
@@ -18,23 +18,42 @@ pub(crate) enum WebSocketKind {
Lane(u32),
}
#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
struct WebSocketClaimKey {
session_hash: super::TokenHash,
kind: WebSocketKind,
}
#[repr(u8)]
enum WebSocketPhase {
Claimed,
Upgraded,
Active,
Closing,
}
pub(super) struct WebSocketEntry {
id: u64,
owner: ProfileKey,
session_id: u64,
claim: WebSocketClaimKey,
client_ip: IpAddr,
kind: WebSocketKind,
liveness_interval_ms: u64,
created_tick: u64,
last_peer_tick: AtomicU64,
last_progress_tick: AtomicU64,
opened: AtomicBool,
phase: AtomicU8,
closing: AtomicBool,
cancel: CancellationToken,
released: CancellationToken,
}
#[derive(Default)]
pub(super) struct WebSocketRegistry {
entries: HashMap<u64, Arc<WebSocketEntry>>,
claims: HashMap<WebSocketClaimKey, u64>,
evictions_in_flight: usize,
closed: bool,
}
@@ -64,10 +83,20 @@ impl WebSocketConnection {
/// Marks successful ownership transfer from HTTP to the WebSocket codec.
pub(crate) fn mark_opened(&self) {
self.entry.opened.store(true, Ordering::Release);
self.entry
.phase
.store(WebSocketPhase::Upgraded as u8, Ordering::Release);
self.mark_progress();
}
/// Marks the first validated carrier binary message as active progress.
pub(crate) fn mark_active(&self) {
self.entry
.phase
.store(WebSocketPhase::Active as u8, Ordering::Release);
self.mark_peer_activity();
}
/// Refreshes the peer-liveness deadline after any received WebSocket message.
pub(crate) fn mark_peer_activity(&self) {
if let Some(runtime) = self.runtime.upgrade() {
@@ -90,7 +119,16 @@ impl WebSocketConnection {
impl Drop for WebSocketConnection {
fn drop(&mut self) {
if let Some(runtime) = self.runtime.upgrade() {
runtime.websockets.lock().entries.remove(&self.entry.id);
let mut registry = runtime.websockets.lock();
registry.entries.remove(&self.entry.id);
if registry.claims.get(&self.entry.claim) == Some(&self.entry.id) {
registry.claims.remove(&self.entry.claim);
}
if self.entry.closing.load(Ordering::Acquire) {
registry.evictions_in_flight = registry.evictions_in_flight.saturating_sub(1);
}
drop(registry);
self.entry.released.cancel();
drop(self.base_budget.take());
drop(self.slot.take());
runtime.websocket_notify.notify_waiters();
@@ -103,81 +141,126 @@ pub(super) async fn admit(
runtime: &Arc<WebProcessRuntime>,
owner: ProfileKey,
session_id: u64,
session_hash: super::TokenHash,
client_ip: IpAddr,
kind: WebSocketKind,
base_bytes: usize,
liveness_interval: Duration,
eviction_timeout: Duration,
parent_cancellation: CancellationToken,
) -> Result<WebSocketConnection, ManagerError> {
let liveness_interval_ms = liveness_interval.as_millis().min(u128::from(u64::MAX)) as u64;
if let Some(connection) = try_admit(
match try_admit(
runtime,
owner,
session_id,
session_hash,
client_ip,
kind,
base_bytes,
liveness_interval_ms,
&parent_cancellation,
) {
return Ok(connection);
Ok(connection) => return Ok(connection),
Err(TryAdmitError::Conflict) => return Err(ManagerError::Concurrent),
Err(TryAdmitError::Closed) => return Err(ManagerError::Closed),
Err(TryAdmitError::Capacity) => {}
}
let Some(victim) = select_victim(runtime, owner, session_id, client_ip, None) else {
let Some(victim) = select_victim(runtime, owner, session_id, client_ip, None, true) else {
runtime.record_limit_hit();
return Err(ManagerError::Limit);
};
let released = runtime.websocket_notify.notified();
let released = victim.released.cancelled();
victim.cancel.cancel();
let _ = tokio::time::timeout(eviction_timeout, released).await;
try_admit(
match try_admit(
runtime,
owner,
session_id,
session_hash,
client_ip,
kind,
base_bytes,
liveness_interval_ms,
)
.ok_or_else(|| {
&parent_cancellation,
) {
Ok(connection) => Ok(connection),
Err(TryAdmitError::Conflict) => Err(ManagerError::Concurrent),
Err(TryAdmitError::Closed) => Err(ManagerError::Closed),
Err(TryAdmitError::Capacity) => {
runtime.record_limit_hit();
ManagerError::Limit
})
Err(ManagerError::Limit)
}
}
}
enum TryAdmitError {
Capacity,
Conflict,
Closed,
}
fn try_admit(
runtime: &Arc<WebProcessRuntime>,
owner: ProfileKey,
session_id: u64,
session_hash: super::TokenHash,
client_ip: IpAddr,
kind: WebSocketKind,
base_bytes: usize,
liveness_interval_ms: u64,
) -> Option<WebSocketConnection> {
parent_cancellation: &CancellationToken,
) -> Result<WebSocketConnection, TryAdmitError> {
let claim = WebSocketClaimKey { session_hash, kind };
{
let registry = runtime.websockets.lock();
if registry.closed {
return Err(TryAdmitError::Closed);
}
if registry.claims.contains_key(&claim) {
return Err(TryAdmitError::Conflict);
}
}
let slot = Arc::clone(&runtime.websocket_connections)
.try_acquire_owned()
.ok()?;
let base_budget = runtime.try_websocket_base_budget(owner, base_bytes)?;
let id = runtime.websocket_next_id.fetch_add(1, Ordering::Relaxed);
.map_err(|_| TryAdmitError::Capacity)?;
let base_budget = runtime
.try_websocket_base_budget(owner, base_bytes)
.ok_or(TryAdmitError::Capacity)?;
let id = runtime
.websocket_next_id
.fetch_update(Ordering::AcqRel, Ordering::Acquire, |value| {
value.checked_add(1)
})
.map_err(|_| TryAdmitError::Capacity)?;
let now = runtime.websocket_tick();
let entry = Arc::new(WebSocketEntry {
id,
owner,
session_id,
claim,
client_ip,
kind,
liveness_interval_ms,
created_tick: now,
last_peer_tick: AtomicU64::new(now),
last_progress_tick: AtomicU64::new(now),
opened: AtomicBool::new(false),
cancel: CancellationToken::new(),
phase: AtomicU8::new(WebSocketPhase::Claimed as u8),
closing: AtomicBool::new(false),
cancel: parent_cancellation.child_token(),
released: CancellationToken::new(),
});
let mut registry = runtime.websockets.lock();
if registry.closed {
return None;
return Err(TryAdmitError::Closed);
}
if registry.claims.contains_key(&claim) {
return Err(TryAdmitError::Conflict);
}
registry.claims.insert(claim, id);
registry.entries.insert(id, Arc::clone(&entry));
drop(registry);
Some(WebSocketConnection {
Ok(WebSocketConnection {
runtime: Arc::downgrade(runtime),
entry,
slot: Some(slot),
+4 -13
View File
@@ -81,6 +81,8 @@ struct DownBatch {
struct CarrierLane {
instance: u64,
pending_bytes: usize,
pending_items: usize,
pending_frames: VecDeque<QueuedFrame>,
pending_windows: HashMap<u32, usize>,
unacked: Option<DownBatch>,
@@ -96,6 +98,8 @@ impl CarrierLane {
fn new(instance: u64) -> Self {
Self {
instance,
pending_bytes: 0,
pending_items: 0,
pending_frames: VecDeque::new(),
pending_windows: HashMap::new(),
unacked: None,
@@ -124,7 +128,6 @@ struct SessionState {
last_up_sequence: u64,
last_up_digest: TokenHash,
carrier_lanes: HashMap<u32, CarrierLane>,
lane_open_claims: HashSet<u32>,
lane_open_waits: usize,
next_lane_instance: u64,
websocket_lane_reservations: HashMap<u32, u16>,
@@ -231,7 +234,6 @@ impl WebSession {
last_up_sequence: 0,
last_up_digest: [0; 32],
carrier_lanes,
lane_open_claims: HashSet::new(),
lane_open_waits: 0,
next_lane_instance,
websocket_lane_reservations: HashMap::new(),
@@ -458,17 +460,6 @@ impl WebSession {
.map(|manager| manager.budget_notify())
}
fn release_stream_reservation(&self, peer_port: u16) {
let removed = self.state.lock().active_peer_ports.remove(&peer_port);
if removed && let Some(manager) = self.manager.upgrade() {
manager.release_stream(
self.profile_key,
self.client_ip,
self.profile.public_addr,
peer_port,
);
}
}
}
fn inbound_queue_cost(queue: &VecDeque<InboundChunk>) -> (usize, usize) {
+144 -19
View File
@@ -15,6 +15,12 @@ use crate::web::frame::{self, Frame, FrameType};
use crate::web::manager::{ManagerError, TokenHash};
impl WebSession {
/// Classifies control and pre-OPEN polls for their reserved handler pool.
pub(crate) fn lane_poll_is_auxiliary(&self, lane_id: u32) -> bool {
let state = self.state.lock();
lane_id == 0 || !state.carrier_lanes.contains_key(&lane_id)
}
/// Applies one exactly-once uplink batch to an independent HTTPS lane.
pub(crate) fn process_up_lane(
self: &Arc<Self>,
@@ -53,7 +59,8 @@ impl WebSession {
}
self.ensure_carrier_active_locked(&state)?;
state.last_activity = Instant::now();
if !state.carrier_lanes.contains_key(&lane_id) {
let new_lane = !state.carrier_lanes.contains_key(&lane_id);
if new_lane {
if lane_id != 0
&& frames
.first()
@@ -71,18 +78,20 @@ impl WebSession {
self.close();
return Err(ManagerError::Protocol);
}
if insert_carrier_lane(&mut state, lane_id).is_none() {
drop(state);
self.close();
return Err(ManagerError::Protocol);
if state.carrier_lanes.len()
>= self.profile.max_streams_per_session.saturating_add(1)
{
return Err(ManagerError::Limit);
}
}
let lane = state
let (last_sequence, last_digest, up_active) = state
.carrier_lanes
.get_mut(&lane_id)
.ok_or(ManagerError::Protocol)?;
if sequence == lane.last_up_sequence && sequence != 0 {
return if bool::from(lane.last_up_digest.ct_eq(&digest)) {
.get(&lane_id)
.map_or((0, [0; 32], false), |lane| {
(lane.last_up_sequence, lane.last_up_digest, lane.up_active)
});
if sequence == last_sequence && sequence != 0 {
return if bool::from(last_digest.ct_eq(&digest)) {
Ok(sequence)
} else {
drop(state);
@@ -90,15 +99,14 @@ impl WebSession {
Err(ManagerError::Protocol)
};
}
if sequence == 0 || sequence != lane.last_up_sequence.saturating_add(1) {
if sequence == 0 || sequence != last_sequence.saturating_add(1) {
drop(state);
self.close();
return Err(ManagerError::Protocol);
}
if lane.up_active {
if up_active {
return Err(ManagerError::Concurrent);
}
lane.up_active = true;
if !validate_batch(&state, &frames) {
drop(state);
self.close();
@@ -116,6 +124,17 @@ impl WebSession {
}
return Err(ManagerError::Backpressure);
}
if new_lane && insert_carrier_lane(&mut state, lane_id).is_none() {
self.release_locked(&mut state, reserve_bytes, reserve_items, false);
drop(state);
self.close();
return Err(ManagerError::Protocol);
}
let Some(lane) = state.carrier_lanes.get_mut(&lane_id) else {
self.release_locked(&mut state, reserve_bytes, reserve_items, false);
return Err(ManagerError::Closed);
};
lane.up_active = true;
let mut unused_bytes = reserve_bytes;
let mut unused_items = reserve_items;
let applied = self.apply_batch_locked(
@@ -150,6 +169,7 @@ impl WebSession {
if committed {
self.finish_carrier_commit();
}
self.lane_open_notify.notify_waiters();
for completion in opened {
self.spawn_stream(completion, false);
}
@@ -168,14 +188,26 @@ impl WebSession {
if !self.carrier().uses_lanes() || lane_id > frame::MAX_STREAM_ID {
return Err(ManagerError::Protocol);
}
let (epoch, notify) = {
if !self.wait_for_lane_open(lane_id, cursor).await? {
return Ok(PollResult {
body: Bytes::new(),
next_cursor: cursor,
lane_closed: false,
});
}
let (instance, epoch, notify) = {
let mut state = self.state.lock();
if state.closed {
return Err(ManagerError::Closed);
}
state.last_activity = Instant::now();
let acknowledged = {
let Some(lane) = state.carrier_lanes.get_mut(&lane_id) else {
return Err(ManagerError::Protocol);
return Ok(PollResult {
body: Bytes::new(),
next_cursor: cursor,
lane_closed: true,
});
};
if let Some(unacked) = &lane.unacked {
if cursor == unacked.base_cursor {
@@ -201,6 +233,14 @@ impl WebSession {
}
};
if let Some(batch) = acknowledged {
if let Some(lane) = state.carrier_lanes.get_mut(&lane_id) {
lane.pending_bytes = lane
.pending_bytes
.saturating_sub(batch.data_bytes.saturating_add(batch.control_bytes));
lane.pending_items = lane
.pending_items
.saturating_sub(batch.data_items.saturating_add(batch.control_items));
}
self.release_locked(&mut state, batch.data_bytes, batch.data_items, false);
self.release_locked(&mut state, batch.control_bytes, batch.control_items, true);
if let Some(stream) = state.streams.get_mut(&lane_id)
@@ -209,13 +249,12 @@ impl WebSession {
waker.wake();
}
}
state.last_activity = Instant::now();
let lane = state
.carrier_lanes
.get_mut(&lane_id)
.ok_or(ManagerError::Protocol)?;
lane.down_epoch = lane.down_epoch.wrapping_add(1).max(1);
(lane.down_epoch, Arc::clone(&lane.notify))
(lane.instance, lane.down_epoch, Arc::clone(&lane.notify))
};
notify.notify_waiters();
@@ -235,7 +274,7 @@ impl WebSession {
lane_closed: true,
});
};
if lane.down_epoch != epoch {
if lane.instance != instance || lane.down_epoch != epoch {
return Ok(PollResult {
body: Bytes::new(),
next_cursor: cursor,
@@ -304,7 +343,7 @@ impl WebSession {
if state
.carrier_lanes
.get(&lane_id)
.is_some_and(|lane| lane.down_epoch == epoch)
.is_some_and(|lane| lane.instance == instance && lane.down_epoch == epoch)
{
state.last_activity = Instant::now();
}
@@ -317,6 +356,60 @@ impl WebSession {
}
}
async fn wait_for_lane_open(
&self,
lane_id: u32,
cursor: u64,
) -> Result<bool, ManagerError> {
let wait = {
let mut state = self.state.lock();
if state.closed {
return Err(ManagerError::Closed);
}
if state.carrier_lanes.contains_key(&lane_id) {
return Ok(true);
}
if cursor != 0 || lane_id == 0 {
drop(state);
self.close();
return Err(ManagerError::Protocol);
}
if state.closed_streams.contains(&lane_id)
|| state.closing_streams.contains_key(&lane_id)
{
return Ok(true);
}
if state.lane_open_waits >= self.limits.max_lane_open_waits_per_session {
return Err(ManagerError::Limit);
}
state.lane_open_waits += 1;
LaneOpenWaitGuard { session: self }
};
let deadline = Duration::from_secs(self.timeouts.lane_open_wait_secs);
let opened = tokio::time::timeout(deadline, async {
loop {
let notified = self.lane_open_notify.notified();
{
let state = self.state.lock();
if state.closed
|| state.carrier_lanes.contains_key(&lane_id)
|| state.closed_streams.contains(&lane_id)
|| state.closing_streams.contains_key(&lane_id)
{
return state.carrier_lanes.contains_key(&lane_id)
|| state.closed_streams.contains(&lane_id)
|| state.closing_streams.contains_key(&lane_id);
}
}
notified.await;
}
})
.await
.unwrap_or(false);
drop(wait);
Ok(opened)
}
pub(super) fn queue_lane_frame_locked(
&self,
state: &mut SessionState,
@@ -363,6 +456,15 @@ impl WebSession {
<= self.limits.max_frame_payload_bytes
});
if can_coalesce {
if state.carrier_lanes.get(&stream_id).is_none_or(|lane| {
lane.pending_bytes
> self
.limits
.pending_bytes_per_lane
.saturating_sub(payload.len())
}) {
return false;
}
if !self.reserve_locked(state, payload.len(), 0, PendingClass::Downlink) {
return false;
}
@@ -378,6 +480,7 @@ impl WebSession {
last.cost += payload.len();
let payload_len = (last.encoded.len() - frame::HEADER_BYTES) as u32;
last.encoded[4..8].copy_from_slice(&payload_len.to_be_bytes());
lane.pending_bytes += payload.len();
lane.notify.notify_waiters();
return true;
}
@@ -387,6 +490,14 @@ impl WebSession {
} else {
PendingClass::Downlink
};
if state.carrier_lanes.get(&stream_id).is_none_or(|lane| {
lane.pending_bytes
> self.limits.pending_bytes_per_lane.saturating_sub(cost)
|| lane.pending_items
>= self.limits.pending_items_per_lane
}) {
return false;
}
if !self.reserve_locked(state, cost, 1, class) {
return false;
}
@@ -409,6 +520,8 @@ impl WebSession {
control,
cost,
});
lane.pending_bytes += cost;
lane.pending_items += 1;
if frame_type == FrameType::Window {
lane.pending_windows.insert(stream_id, index);
}
@@ -455,6 +568,18 @@ impl WebSession {
}
self.release_locked(state, data_bytes, data_items, false);
self.release_locked(state, control_bytes, control_items, true);
self.lane_open_notify.notify_waiters();
}
}
struct LaneOpenWaitGuard<'a> {
session: &'a WebSession,
}
impl Drop for LaneOpenWaitGuard<'_> {
fn drop(&mut self) {
let mut state = self.session.state.lock();
state.lane_open_waits = state.lane_open_waits.saturating_sub(1);
}
}
+4
View File
@@ -100,6 +100,8 @@ impl WebSession {
);
return Err(ManagerError::Protocol);
}
drop(state);
self.lane_open_notify.notify_waiters();
Ok(WebSocketLaneReservation {
session: Arc::clone(self),
lane_id,
@@ -229,6 +231,7 @@ impl WebSession {
let mut state = self.state.lock();
let reserved = state.websocket_lane_reservations.remove(&lane_id);
if let Some(stream) = state.streams.remove(&lane_id) {
state.closing_streams.insert(lane_id, stream.instance);
let (bytes, items) = inbound_queue_cost(&stream.inbound);
self.release_locked(&mut state, bytes, items, false);
if let Some(waker) = stream.read_waker {
@@ -245,6 +248,7 @@ impl WebSession {
if let Some(peer_port) = reserved {
self.release_websocket_lane_reservation(lane_id, peer_port);
}
self.lane_open_notify.notify_waiters();
}
fn release_websocket_lane_reservation(&self, lane_id: u32, peer_port: u16) {