cortiq_server/lib.rs
1//! Cortiq Server — OpenAI-compatible API + web management dashboard.
2
3pub mod api;
4pub mod dashboard;
5pub mod openai;
6pub mod streaming;
7
8use axum::{Json, Router, routing::get};
9use cortiq_engine::{CortiqRuntime, Pipeline};
10use std::sync::Arc;
11use tokio::sync::{Mutex, OwnedMutexGuard, OwnedSemaphorePermit, Semaphore};
12use tower_http::cors::CorsLayer;
13
14/// Fixed pool of pipeline slots over ONE shared mmap'd model (roadmap
15/// §3 «serving полностью сериализован», этап 5.1): the weights are
16/// zero-copy shared through `Arc<CmfModel>`, each slot owns its
17/// KV-cache / recurrent state / sampler / workspace. A request checks a
18/// slot out for the duration of one generation, so up to `slots`
19/// requests decode CONCURRENTLY; excess requests queue fairly on the
20/// semaphore. This is bounded-concurrency serving, not yet continuous
21/// batching (этап 5.2+).
22pub struct PipelinePool {
23 slots: Vec<Arc<Mutex<Pipeline>>>,
24 sem: Arc<Semaphore>,
25}
26
27/// A checked-out slot: holds both the concurrency permit and the
28/// pipeline lock until dropped.
29pub struct SlotGuard {
30 pub pipe: OwnedMutexGuard<Pipeline>,
31 // Keep the permit after the mutex guard so drop glue unlocks the
32 // pipeline before another waiter can acquire the permit.
33 _permit: OwnedSemaphorePermit,
34}
35
36impl PipelinePool {
37 pub fn new(pipelines: Vec<Pipeline>) -> Self {
38 assert!(
39 !pipelines.is_empty(),
40 "pipeline pool needs at least one slot"
41 );
42 let sem = Arc::new(Semaphore::new(pipelines.len()));
43 Self {
44 slots: pipelines
45 .into_iter()
46 .map(|p| Arc::new(Mutex::new(p)))
47 .collect(),
48 sem,
49 }
50 }
51
52 pub fn n_slots(&self) -> usize {
53 self.slots.len()
54 }
55
56 /// Wait for a free slot and check it out. With `permits == slots`,
57 /// holding a permit guarantees the try_lock scan finds a free slot.
58 pub async fn acquire(&self) -> SlotGuard {
59 let permit = self
60 .sem
61 .clone()
62 .acquire_owned()
63 .await
64 .expect("slot semaphore closed");
65 for s in &self.slots {
66 if let Ok(pipe) = s.clone().try_lock_owned() {
67 return SlotGuard {
68 pipe,
69 _permit: permit,
70 };
71 }
72 }
73 unreachable!("semaphore permit held but every slot is locked")
74 }
75}
76
77/// Shared application state: runtime (masks, metrics), a tokenizer
78/// handle that never blocks on generation, and the slot pool.
79pub struct AppState {
80 pub runtime: CortiqRuntime,
81 pub tokenizer: Arc<cortiq_engine::tokenizer::Tokenizer>,
82 pub slots: PipelinePool,
83}
84
85/// Liveness probe — returns 200 as soon as the server is accepting
86/// connections. Used by process managers that embed `cortiq serve` (e.g.
87/// a gateway spawning it as a local model server) to know when it is ready.
88async fn healthz() -> Json<serde_json::Value> {
89 Json(serde_json::json!({ "status": "ok" }))
90}
91
92/// Build the full router with all endpoints.
93pub fn build_router(state: Arc<AppState>) -> Router {
94 Router::new()
95 .route("/healthz", get(healthz))
96 .merge(openai::routes())
97 .merge(api::routes())
98 .merge(dashboard::routes())
99 .layer(CorsLayer::permissive())
100 .with_state(state)
101}