kevy_rt/runtime.rs
1//! The public entry point: configure and run the thread-per-core server.
2
3use crate::Commands;
4use crate::message::{Inbound, PubSubPatternReg, PubSubReg};
5use crate::shard::Shard;
6use kevy_map::KevyMap;
7use kevy_persist::{Aof, Fsync};
8use kevy_ring::{Consumer, Producer};
9use kevy_store::Store;
10use kevy_sys::{Poller, Waker, tcp_listen_reuseport, waker};
11use std::collections::{HashMap, VecDeque};
12use std::io;
13use std::path::PathBuf;
14use std::sync::atomic::{AtomicBool, AtomicU64};
15use std::sync::{Arc, RwLock};
16
17/// Default slots in each per-core-pair SPSC ring. A full ring spills
18/// to a local backlog (see [`Shard`]), so this only bounds the
19/// lock-free fast path, not capacity. Overridable via the
20/// `[advanced] ring_capacity` config field threaded through
21/// [`Runtime::with_advanced`].
22const DEFAULT_RING_CAPACITY: usize = 1024;
23
24/// The public entry point: configure and run the thread-per-core server.
25pub struct Runtime<C: Commands> {
26 pub(crate) ip: [u8; 4],
27 pub(crate) port: u16,
28 pub(crate) nshards: usize,
29 pub(crate) commands: C,
30 /// Directory for per-shard snapshot files (`dump-<id>.rdb`) and AOF logs.
31 pub(crate) data_dir: PathBuf,
32 /// Whether the append-only log is enabled.
33 pub(crate) enable_aof: bool,
34 /// fsync policy for the AOF. Default `EverySec` matches Redis.
35 pub(crate) appendfsync: Fsync,
36 /// auto-trigger BGREWRITEAOF when AOF grew this many % above the size
37 /// at the previous rewrite. `0` disables. Default `100` (matches Redis).
38 pub(crate) auto_aof_rewrite_pct: u32,
39 /// Floor below which auto-rewrite is skipped. Default `64 MiB`.
40 pub(crate) auto_aof_rewrite_min_size: u64,
41 /// Reactor SPSC ring slot count. See [`DEFAULT_RING_CAPACITY`].
42 pub(crate) ring_capacity: usize,
43 /// Reactor busy-poll iter limit before parking. Stored as `u32`
44 /// for the per-shard counter; the [`Shard`] field carries it
45 /// forward into the loop.
46 pub(crate) spin_limit: u32,
47 /// Reactor blocking-wait timeout in ms when parked.
48 pub(crate) park_timeout_ms: u32,
49 /// Wall-clock-read throttle for the tick check (TTL reaper / live
50 /// config refresh / auto-AOF-rewrite).
51 pub(crate) tick_check_every: u32,
52 /// `[slowlog].slower_than_micros`. Default: `-1` (OFF — zero
53 /// hot-path cost: every command would otherwise pay an
54 /// `Instant::now()` pair around dispatch). Set to `10_000` to match
55 /// Redis's default 10 ms threshold; see [`Self::with_slowlog`] /
56 /// `CONFIG SET slowlog-log-slower-than 10000`.
57 pub(crate) slowlog_slower_than_micros: i64,
58 /// `[slowlog].max_len`. Per-shard cap.
59 pub(crate) slowlog_max_len: u32,
60 /// Single-node cluster mode: slot-based key routing (CRC16 `{hashtag}`
61 /// → contiguous ranges) + one deterministic extra listener per shard at
62 /// `cluster_port_base + id`. `None` = off (default, zero change).
63 pub(crate) cluster_port_base: Option<u16>,
64 /// v3-cluster replication: when `true`, each shard runs a
65 /// `ReplicationSource` with `replication_buffer_size` byte budget;
66 /// every applied mutation is pushed to the backlog. The TCP
67 /// listener + streaming loop arrive in subsequent tasks (T1.12+);
68 /// this batch only wires the producer side. Default `false`.
69 pub(crate) enable_replication: bool,
70 /// Per-shard backlog byte budget when `enable_replication` is set.
71 /// Fed from `[replication] replication_buffer_size`. Default
72 /// `256 MiB` (matches the kevy-config default).
73 pub(crate) replication_buffer_size: u64,
74 /// v3-cluster replication listener: shard `i` binds at
75 /// `replication_port_base + i` (mirrors cluster listener pattern;
76 /// per Issue Ledger I2). `None` = no listener (producer side runs
77 /// without a network surface, backlog accumulates and evicts —
78 /// useful for benchmarks). Default `None`.
79 pub(crate) replication_port_base: Option<u16>,
80 /// Per-shard SlotTable reconnect-window in ms (T1.15). After a
81 /// streaming replica disconnects, its `(replica_id, sent_offset)`
82 /// is recorded in the shard's `slots` map; slots past this age
83 /// are reaped on the next shard tick. Default `60_000` (60 s)
84 /// matches the kevy-config default.
85 pub(crate) replication_reconnect_window_ms: u32,
86 /// Per-shard replica inboxes installed by
87 /// [`Self::with_replica_inboxes`]. Each entry is consumed
88 /// (via `Option::take`) when its shard is constructed, so the
89 /// receiver flows from this Vec to the matching `Shard.replica_inbox`.
90 /// Empty when no replica mode is configured.
91 pub(crate) replica_inboxes: Vec<Option<crate::replica_inbox::ReplicaInboxReceiver>>,
92 /// v1.25 UDS: when `Some(path)`, ALSO bind a Unix-domain stream
93 /// listener at `path` on shard 0 (single global socket, like valkey's
94 /// `unixsocket` config). Lets benches/local clients skip TCP loopback
95 /// overhead. TCP listener stays bound regardless.
96 #[allow(dead_code)] // consumed during run() via take-into-Shard
97 pub(crate) unix_socket_path: Option<PathBuf>,
98}
99
100impl<C: Commands> Runtime<C> {
101 #[must_use]
102 pub fn new(ip: [u8; 4], port: u16, nshards: usize, commands: C) -> Self {
103 Runtime {
104 ip,
105 port,
106 nshards: nshards.max(1),
107 commands,
108 data_dir: PathBuf::from("."),
109 enable_aof: true,
110 appendfsync: Fsync::EverySec,
111 auto_aof_rewrite_pct: 100,
112 auto_aof_rewrite_min_size: 64 * 1024 * 1024,
113 ring_capacity: DEFAULT_RING_CAPACITY,
114 spin_limit: 256,
115 park_timeout_ms: 50,
116 tick_check_every: 256,
117 slowlog_slower_than_micros: -1,
118 slowlog_max_len: 128,
119 cluster_port_base: None,
120 enable_replication: false,
121 replica_inboxes: Vec::new(),
122 replication_buffer_size: 256 * 1024 * 1024,
123 replication_port_base: None,
124 replication_reconnect_window_ms: 60_000,
125 unix_socket_path: None,
126 }
127 }
128
129
130 /// Spawn one thread per shard and run until `stop` is set.
131 /// v1.25 UDS: also bind a Unix-domain stream listener at `path`. Lets
132 /// local clients (and benchmarks) skip the TCP loopback round-trip.
133 /// Bound on shard 0 only (no SO_REUSEPORT for AF_UNIX, single global
134 /// socket like valkey's `unixsocket` config). TCP listener stays
135 /// bound at the configured `port` regardless.
136 #[must_use]
137 pub fn with_unix_socket(mut self, path: PathBuf) -> Self {
138 self.unix_socket_path = Some(path);
139 self
140 }
141
142 pub fn run(mut self, stop: Arc<AtomicBool>) -> io::Result<()> {
143 let n = self.nshards;
144
145 // v1.25 A.3 (B2: single global bio thread, per
146 // `bench/V125-DECISIONS-PENDING.md`). Spawn BEFORE shards so
147 // every shard's first overwrite already has a live consumer.
148 // The held `bio_send` is moved into the shard loop below
149 // (`store.set_bio_drop_sender`); shutdown ordering is:
150 // 1. shards return → their `Store`s drop → their cloned
151 // Sender halves drop
152 // 2. this fn's local `bio_send` is dropped here at end of
153 // scope → channel closes → bio thread's `recv()` returns
154 // Err → bio thread exits
155 // 3. `bio_handle.join()` blocks until that exit so a final
156 // large free isn't truncated by process tear-down
157 // (`madvise` returning the page to the kernel still needs the
158 // process alive). See `crate::bio` for the full rationale.
159 let (bio_send, bio_handle) = crate::bio::spawn();
160
161 // Cluster binds shard `i` at `port_base + i`; reject a range that
162 // overflows u16 up front (loud) instead of wrapping a listener onto
163 // a low/privileged port while CLUSTER SLOTS advertises 65536+.
164 if let Some(base) = self.cluster_port_base
165 && base as usize + n > u16::MAX as usize + 1
166 {
167 return Err(io::Error::new(
168 io::ErrorKind::InvalidInput,
169 format!(
170 "cluster port range {base}..={} exceeds 65535 ({n} shards)",
171 base as usize + n - 1
172 ),
173 ));
174 }
175
176 // Same overflow check for the replication port range
177 // (`base + 0 .. base + n`). See Issue Ledger I2 for the
178 // per-shard listener decision.
179 if let Some(base) = self.replication_port_base
180 && base as usize + n > u16::MAX as usize + 1
181 {
182 return Err(io::Error::new(
183 io::ErrorKind::InvalidInput,
184 format!(
185 "replication port range {base}..={} exceeds 65535 ({n} shards)",
186 base as usize + n - 1
187 ),
188 ));
189 }
190
191 // One lock-free SPSC ring per ordered core-pair (i→j): the producer goes
192 // to shard i's outbox[j], the consumer to shard j's inbox[i]. There is no
193 // self-ring — a shard runs its own commands inline, never over a ring.
194 let mut outboxes: Vec<Vec<Option<Producer<Inbound>>>> =
195 (0..n).map(|_| (0..n).map(|_| None).collect()).collect();
196 let mut inboxes: Vec<Vec<Option<Consumer<Inbound>>>> =
197 (0..n).map(|_| (0..n).map(|_| None).collect()).collect();
198 for i in 0..n {
199 for j in 0..n {
200 if i == j {
201 continue;
202 }
203 let (p, c) = kevy_ring::ring::<Inbound>(self.ring_capacity);
204 outboxes[i][j] = Some(p);
205 inboxes[j][i] = Some(c);
206 }
207 }
208
209 let mut wakers: Vec<Arc<Waker>> = Vec::with_capacity(n);
210 for _ in 0..n {
211 wakers.push(Arc::new(waker()?));
212 }
213 let parked: Vec<Arc<crate::shard::CachePadded<AtomicBool>>> = (0..n)
214 .map(|_| Arc::new(crate::shard::CachePadded::new(AtomicBool::new(false))))
215 .collect();
216 // Per-shard inbox-dirty bitmaps (one u64 bit per peer src).
217 // Senders OR a bit on the target's dirty word; the target's
218 // `drain_inbound_core` swaps and short-circuits when 0.
219 assert!(
220 n <= 64,
221 "kevy-rt: shard count {n} exceeds 64 — inbound_dirty bitmap holds one bit per peer in a u64. Reduce --threads or extend to a multi-word bitmap.",
222 );
223 // A2 (2026-06-20): pad each Arc<AtomicU64> to a full 64-byte cache
224 // line. H1 c2c diagnostic showed cross-shard fetch_or vs. owner
225 // swap on adjacent atomics bounced cache lines between cores.
226 let inbound_dirty: Vec<Arc<crate::shard::CachePadded<AtomicU64>>> = (0..n)
227 .map(|_| Arc::new(crate::shard::CachePadded::new(AtomicU64::new(0))))
228 .collect();
229
230 // Shared pub/sub channel registry (one per server, read on every PUBLISH).
231 let pubsub: PubSubReg = Arc::new(RwLock::new(HashMap::new()));
232 // Shared pub/sub pattern registry. Empty in steady state — the
233 // channel-only PUBLISH path skips the walk when so.
234 let pubsub_patterns: PubSubPatternReg = Arc::new(RwLock::new(Vec::new()));
235
236 // Reconcile the on-disk shard layout (count + routing) before any
237 // shard loads its files; a mismatch re-homes every key once, here.
238 // Skipped for a pure in-memory run against a dir with no kevy files.
239 // Cluster mode always records the layout even with AOF off and an
240 // empty dir: a later SAVE writes slot-distributed `dump-{i}.rdb`, and
241 // without a meta a non-cluster restart would read them as KevyHash
242 // and silently strand every key.
243 if self.enable_aof
244 || self.cluster_port_base.is_some()
245 || crate::reshard::has_kevy_files(&self.data_dir)
246 {
247 let routing = if self.cluster_port_base.is_some() {
248 kevy_persist::Routing::Slots
249 } else {
250 kevy_persist::Routing::KevyHash
251 };
252 crate::reshard::ensure_layout(&self.data_dir, n, routing, &self.commands)?;
253 }
254
255 // Advertised cluster topology (None = cluster off). A 0.0.0.0 bind
256 // advertises 127.0.0.1 — an unroutable redirect target would strand
257 // every cluster client (single-machine scope; no announce-ip knob).
258 let topo = self.cluster_port_base.map(|base| crate::cluster::ClusterTopo {
259 ip: if self.ip == [0, 0, 0, 0] { [127, 0, 0, 1] } else { self.ip },
260 port_base: base,
261 });
262
263 // Build every shard up front so a bind/open failure aborts before we spawn.
264 let mut shards = Vec::with_capacity(n);
265 // UDS listener: only ONE per server (no SO_REUSEPORT for AF_UNIX), so
266 // it lives on shard 0. Bound up-front so a bind failure aborts before
267 // any shard spawns.
268 let mut unix_listener: Option<kevy_sys::Socket> = None;
269 if let Some(p) = self.unix_socket_path.as_ref() {
270 let path_bytes = p.to_string_lossy();
271 unix_listener = Some(kevy_sys::unix_listen(path_bytes.as_bytes(), 1024)?);
272 }
273 for id in 0..n {
274 let listener = tcp_listen_reuseport(self.ip, self.port, 1024)?;
275 // Cluster mode: a second, deterministic per-shard listener at
276 // port_base + id (plain bind — exactly one owner per port).
277 let cluster_listener = match self.cluster_port_base {
278 Some(base) => Some(kevy_sys::tcp_listen(self.ip, base + id as u16, 1024)?),
279 None => None,
280 };
281 // Replication listener (per Issue Ledger I2): per-shard
282 // deterministic port, same `tcp_listen` (no SO_REUSEPORT)
283 // pattern as cluster. A replica's shard-aware client will
284 // connect to every `base + id` to mirror the full keyspace.
285 let replication_listener = match self.replication_port_base {
286 Some(base) => Some(kevy_sys::tcp_listen(self.ip, base + id as u16, 1024)?),
287 None => None,
288 };
289 let aof = if self.enable_aof {
290 Some(Aof::open(
291 &kevy_persist::layout::aof_path(&self.data_dir, id),
292 self.appendfsync,
293 )?)
294 } else {
295 None
296 };
297 let mut store = Store::new();
298 // The reactor loop refreshes the store clock once per batch, so
299 // lazy expiry can trust the cached clock (skip per-command
300 // `Instant::now()`).
301 store.set_cached_clock(true);
302 // v1.25 A.3: hand the bio-drop channel sender to the store so
303 // SET overwrites of heavy values (Arc<[u8]> ≥ 256 B, non-empty
304 // collections) get freed off-reactor. Sender clone is cheap
305 // (`Arc::clone`); the bio thread is shared across all shards
306 // (B2 single-global, mirrors valkey `bio.c`).
307 store.set_bio_drop_sender(bio_send.clone());
308 self.commands.on_shard_init(&mut store);
309 shards.push(Shard {
310 id,
311 nshards: n,
312 cluster: topo.clone(),
313 cluster_listener,
314 // UDS: only shard 0 holds the (single) unix listener.
315 unix_listener: if id == 0 { unix_listener.take() } else { None },
316 store,
317 commands: self.commands.clone(),
318 poller: Poller::new()?,
319 listener,
320 waker: wakers[id].clone(),
321 inboxes: std::mem::take(&mut inboxes[id]),
322 outboxes: std::mem::take(&mut outboxes[id]),
323 backlog: (0..n).map(|_| VecDeque::new()).collect(),
324 wakers: wakers.clone(),
325 conns: KevyMap::new(),
326 arm_pending: Vec::new(),
327 closing_uring_conns: Vec::new(),
328 fd_to_conn: KevyMap::new(),
329 next_conn_id: 1,
330 events: Vec::with_capacity(1024),
331 read_buf: vec![0u8; 64 * 1024],
332 pending_wakes: 0,
333 backlog_nonempty: 0,
334 request_batch_nonempty: 0,
335 publish_batch_nonempty: 0,
336 parked: parked.clone(),
337 inbound_dirty: inbound_dirty.clone(),
338 data_dir: self.data_dir.clone(),
339 aof,
340 replicate: if self.enable_replication {
341 Some(kevy_replicate::source::ReplicationSource::new(
342 usize::try_from(self.replication_buffer_size)
343 .unwrap_or(usize::MAX),
344 ))
345 } else {
346 None
347 },
348 replication_listener,
349 replicas: Vec::new(),
350 slots: kevy_replicate::slot::SlotTable::new(),
351 replication_reconnect_window_ms: self.replication_reconnect_window_ms,
352 replication_epoch: std::time::Instant::now(),
353 replica_inbox: self.replica_inboxes.get_mut(id).and_then(Option::take),
354 replica_snapshot_buf: Vec::new(),
355 persist: crate::persist_worker::PersistWorker::new(),
356 auto_aof_rewrite_pct: self.auto_aof_rewrite_pct,
357 auto_aof_rewrite_min_size: self.auto_aof_rewrite_min_size,
358 dirty: Vec::new(),
359 pubsub: pubsub.clone(),
360 pubsub_patterns: pubsub_patterns.clone(),
361 psub_local: HashMap::new(),
362 subs_by_channel: HashMap::new(),
363 publish_batch: (0..n).map(|_| Vec::new()).collect(),
364 request_batch: (0..n).map(|_| Vec::new()).collect(),
365 // Seed from the live config at construction, not default():
366 // these flags were otherwise blind until the first 100 ms
367 // shard tick, so a write landing before that never fired
368 // its keyspace notification (CI-visible flake; a real
369 // startup gap for any pre-configured notify_keyspace_events).
370 notify_flags: self
371 .commands
372 .live_runtime_config()
373 .notify_flags
374 .unwrap_or_default(),
375 spin_limit: self.spin_limit,
376 // `Poller::wait` takes the timeout as `i32` (POSIX
377 // poll/epoll convention). The config knob is `u32` —
378 // we clamp to i32::MAX, far above any sane park-timeout.
379 park_timeout_ms: self.park_timeout_ms.min(i32::MAX as u32) as i32,
380 tick_check_every: self.tick_check_every,
381 slowlog: crate::exec_slowlog::SlowlogState::new(
382 self.slowlog_slower_than_micros,
383 self.slowlog_max_len,
384 ),
385 blocked: crate::blocked::BlockedClients::new(),
386 origin_blocks: std::collections::HashMap::new(),
387 xwaiters: crate::block_xshard::XShardWaiters::default(),
388 reply_scratch: Vec::with_capacity(4096),
389 argv_pool: kevy_resp::ArgvPool::new(),
390 });
391 }
392
393 // Reactor selection on Linux:
394 // KEVY_IO_URING unset → auto: try io_uring, fall back to epoll if the
395 // host can't build the ring (probe below) — startup never fails.
396 // KEVY_IO_URING=0/off/no/false → force the epoll readiness reactor.
397 // KEVY_IO_URING=<anything else> → force io_uring (no fallback; a
398 // setup failure then surfaces loudly — for benchmarks / tests).
399 // The probe creates+drops a real ring with the run_uring parameters, so
400 // it catches a seccomp-blocked io_uring_setup (Docker's default profile)
401 // and pre-5.19 kernels before any shard loads data. (macOS = kqueue.)
402 #[cfg(target_os = "linux")]
403 let use_uring = match std::env::var("KEVY_IO_URING").ok().as_deref() {
404 Some("0") | Some("off") | Some("no") | Some("false") => false,
405 Some(_) => true,
406 None => {
407 let avail = crate::uring_reactor::io_uring_available();
408 eprintln!(
409 "kevy: reactor = {} (io_uring {})",
410 if avail { "io_uring" } else { "epoll" },
411 if avail { "available" } else { "unavailable — kernel <5.19 or seccomp; using epoll" },
412 );
413 avail
414 }
415 };
416
417 // v1.18.0: the replication listener + accept path is wired only
418 // through the epoll/kqueue reactor (`shard.run`); the io_uring
419 // T1.12.5: io_uring + replication is now supported. The
420 // replication-adjacent work (accept / read / write / pump /
421 // slot+view+watermark ticks) is poll-driven from the io_uring
422 // reactor's tick path (mostly per-tick @ 10 Hz, with
423 // `pump_replication` + `reap_closed_replicas` per-iter via
424 // their own early returns when nothing's live). Throughput
425 // path stays io_uring-native — only replica metadata uses
426 // polling. See `Shard::run_uring`.
427
428 let mut handles = Vec::with_capacity(n);
429 for shard in shards {
430 let stop = stop.clone();
431 let id = shard.id;
432 handles.push(std::thread::spawn(move || {
433 #[cfg(target_os = "linux")]
434 let res = if use_uring { shard.run_uring(stop) } else { shard.run(stop) };
435 #[cfg(not(target_os = "linux"))]
436 let res = shard.run(stop);
437 if let Err(e) = res {
438 eprintln!("kevy: shard {id} exited with error: {e}");
439 }
440 }));
441 }
442 for h in handles {
443 let _ = h.join();
444 }
445 // v1.25 A.3 shutdown: every shard has joined → every cloned
446 // sender on every Store has been dropped. Drop the last live
447 // sender (this fn's `bio_send`) so the channel closes; the bio
448 // thread's `recv()` returns Err and it exits its loop. The
449 // `join()` then blocks until that exit completes — guarding
450 // against process tear-down while a final large free is in
451 // flight (an unsafe wrt `madvise`/`munmap` semantics — the
452 // kernel needs the process alive to actually release pages).
453 drop(bio_send);
454 let _ = bio_handle.join();
455 Ok(())
456 }
457}