lib.rs 51 KB
Newer Older
1
// SPDX-FileCopyrightText: Copyright (c) 2024-2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
2
3
4
5
6
// SPDX-License-Identifier: Apache-2.0

use async_once_cell::OnceCell as AsyncOnceCell;
use libc::c_char;
use once_cell::sync::OnceCell;
7
use std::borrow::Cow;
8
use std::ffi::CStr;
9
use std::ptr;
10
use std::sync::Arc;
11
use std::sync::atomic::{AtomicU32, Ordering};
12
use std::time::Duration;
13

14
15
16
17
18
use dynamo_kv_router::{
    config::{KvRouterConfig, RouterConfigOverride},
    protocols::*,
};
use dynamo_llm::kv_router::publisher::KvEventPublisher;
19
use dynamo_llm::model_card::ModelDeploymentCard;
20
use dynamo_llm::preprocessor::OpenAIPreprocessor;
21
use dynamo_runtime::discovery::{DiscoveryQuery, hash_pod_name};
22
use dynamo_runtime::{DistributedRuntime, Worker};
23
24
25
26

use dynamo_runtime::Runtime;

use dynamo_llm::discovery::{ModelManager, WORKER_TYPE_DECODE};
27
use dynamo_llm::kv_router::{KvRouter, PrefillRouter};
28
29
use dynamo_runtime::pipeline::RouterMode;

30
31
use std::collections::HashSet;

32
33
34
static WK: OnceCell<Worker> = OnceCell::new();
static DRT: AsyncOnceCell<DistributedRuntime> = AsyncOnceCell::new();
// [FIXME] shouldn't the publisher be instance passing between API calls?
GuanLuo's avatar
GuanLuo committed
35
static KV_PUB: OnceCell<KvEventPublisher> = OnceCell::new();
36

37
38
39
40
41
42
struct DiscoveredModelBootstrap {
    preprocessor: Arc<OpenAIPreprocessor>,
    card: ModelDeploymentCard,
    actual_namespace: String,
}

43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
/// Convert a C string pointer to a Rust string, falling back to a default when:
/// - the pointer is NULL,
/// - the bytes are not valid UTF-8,
/// - or the resulting string is empty/whitespace.
#[inline]
unsafe fn cstr_or_default<'a>(ptr: *const c_char, default_val: &'a str) -> Cow<'a, str> {
    if ptr.is_null() {
        return Cow::from(default_val);
    }
    match unsafe { CStr::from_ptr(ptr) }
        .to_str()
        .ok()
        .map(|s| s.trim())
    {
        Some(s) if !s.is_empty() => Cow::from(s.to_owned()),
        _ => Cow::from(default_val),
    }
}

62
63
64
65
66
67
68
fn initialize_tracing() {
    // Sets up RUST_LOG environment variable for logging while KV Publishing
    // Example: os.environ["RUST_LOG"] = "debug"
    let subscriber = tracing_subscriber::fmt()
        .with_env_filter(tracing_subscriber::EnvFilter::from_default_env())
        .finish();

69
70
71
    if tracing::subscriber::set_global_default(subscriber).is_ok() {
        tracing::debug!("Tracing initialized");
    }
72
73
74
}

#[repr(u32)]
Neelay Shah's avatar
Neelay Shah committed
75
pub enum DynamoLlmResult {
76
77
78
79
    OK = 0,
    ERR = 1,
}

80
81
82
83
84
85
86
87
88
// Wait for the discovery daemon to sync indefinitely and return at least one instance.
// This is because the Model info is registered by workers and it may take up to 30 min for the model weights to load and for the worker to register itself.
// The waiting timeout is implemented in the Kubernetes StartupProbe. The EPP waiting loops runs indefinitely, the Probe is a single source of truth with when to kill the EPP if discovery fails.
// If workers are not found within the probe's failureThreshold × periodSeconds, the pod will be killed and restarted.
// Users can adjust the StartupProbe waiting timed in the DGD for large models.
async fn wait_for_discovery_sync(drt: &DistributedRuntime) -> usize {
    tracing::info!(
        "Waiting for discovery to sync (no timeout - controlled by K8s StartupProbe)..."
    );
89
90
91
92
93
94
95
96
97
98
99
100
    let discovery = drt.discovery();

    loop {
        match discovery.list(DiscoveryQuery::AllModels).await {
            Ok(instances) if !instances.is_empty() => {
                return instances.len();
            }
            Ok(_) => {
                tracing::debug!("No instances yet, waiting...");
                tokio::time::sleep(std::time::Duration::from_millis(500)).await;
            }
            Err(e) => {
101
102
103
                // Log and continue - transient errors shouldn't stop the wait
                tracing::warn!("Discovery list error: {}, retrying...", e);
                tokio::time::sleep(std::time::Duration::from_millis(500)).await;
104
105
106
107
108
            }
        }
    }
}

109
/// # Safety
GuanLuo's avatar
GuanLuo committed
110
/// the namespace_c_str and component_c_str are passed as pointers to C strings
111
#[unsafe(no_mangle)]
Neelay Shah's avatar
Neelay Shah committed
112
pub unsafe extern "C" fn dynamo_llm_init(
GuanLuo's avatar
GuanLuo committed
113
114
    namespace_c_str: *const c_char,
    component_c_str: *const c_char,
115
    kv_block_size: u32,
Neelay Shah's avatar
Neelay Shah committed
116
) -> DynamoLlmResult {
117
118
119
120
    initialize_tracing();
    let wk = match WK.get_or_try_init(Worker::from_settings) {
        Ok(wk) => wk.clone(),
        Err(e) => {
121
            tracing::error!(error = ?e, "Failed to initialize runtime (Worker::from_settings)");
Neelay Shah's avatar
Neelay Shah committed
122
            return DynamoLlmResult::ERR;
123
124
125
126
127
128
129
130
131
132
        }
    };
    let rt = wk.runtime();
    let secondary = rt.secondary().clone();
    let result = secondary.block_on(async {
        // Initialize the distributed runtime
        match DRT
            .get_or_try_init(async { DistributedRuntime::from_settings(rt.clone()).await })
            .await
        {
133
            Ok(drt) => {
134
                // Wait for discovery to sync before returning.
135
                // This is needed because dynamo_create_worker_selection_pipeline() is called
136
137
138
139
                // immediately after, and it needs discovery.list() to return data.
                // The discovery daemon takes time to query K8s and returns async, so we need to wait.
                // Note: This waits indefinitely - the K8s StartupProbe is the timeout mechanism.
                wait_for_discovery_sync(drt).await;
140
141
                Ok(())
            }
142
            Err(e) => {
143
                tracing::error!(error = ?e, "Failed to initialize distributed runtime");
Neelay Shah's avatar
Neelay Shah committed
144
                Err(DynamoLlmResult::ERR)
145
146
147
            }
        }
    });
GuanLuo's avatar
GuanLuo committed
148
    let namespace = match unsafe { CStr::from_ptr(namespace_c_str) }.to_str() {
149
150
        Ok(s) => s.to_string(),
        Err(e) => {
151
            tracing::error!(error = ?e, "Failed to convert C string to Rust string (namespace)");
Neelay Shah's avatar
Neelay Shah committed
152
            return DynamoLlmResult::ERR;
153
154
155
        }
    };

156
157
158
159
160
    let component_cow = unsafe { cstr_or_default(component_c_str, "backend") };
    if let Cow::Borrowed("backend") = &component_cow {
        tracing::info!("defaulting to \"backend\" for component");
    }
    let component: String = component_cow.into_owned();
161
162

    match result {
163
        Ok(_) => match KV_PUB.get_or_try_init(move || {
Yan Ru Pei's avatar
Yan Ru Pei committed
164
            dynamo_create_kv_publisher(namespace, component, kv_block_size)
165
        }) {
Neelay Shah's avatar
Neelay Shah committed
166
            Ok(_) => DynamoLlmResult::OK,
167
            Err(e) => {
168
                tracing::error!(error = ?e, "Failed to initialize distributed runtime");
Neelay Shah's avatar
Neelay Shah committed
169
                DynamoLlmResult::ERR
170
171
172
173
174
175
            }
        },
        Err(e) => e,
    }
}

176
#[unsafe(no_mangle)]
Neelay Shah's avatar
Neelay Shah committed
177
pub extern "C" fn dynamo_llm_shutdown() -> DynamoLlmResult {
178
179
180
    let wk = match WK.get() {
        Some(wk) => wk,
        None => {
181
            tracing::error!("Runtime not initialized");
Neelay Shah's avatar
Neelay Shah committed
182
            return DynamoLlmResult::ERR;
183
184
185
186
187
        }
    };

    wk.runtime().shutdown();

Neelay Shah's avatar
Neelay Shah committed
188
    DynamoLlmResult::OK
189
190
}

191
#[unsafe(no_mangle)]
Neelay Shah's avatar
Neelay Shah committed
192
193
pub extern "C" fn dynamo_llm_load_publisher_create() -> DynamoLlmResult {
    DynamoLlmResult::OK
194
195
196
197
}

// instantiate a kv publisher
// this will bring up the task to publish and the channels to await publishing events
Neelay Shah's avatar
Neelay Shah committed
198
199
// the [`dynamo_kv_publish_store_event`] call will use a handle to the publisher to send events
// store and the [`dynamo_kv_event_create_removed`] will create remove events
200
201
202
// these call mus be driving by external c++ threads that are consuming the kv events from the
// c++ executor api

Neelay Shah's avatar
Neelay Shah committed
203
fn dynamo_create_kv_publisher(
GuanLuo's avatar
GuanLuo committed
204
205
    namespace: String,
    component: String,
206
    kv_block_size: u32,
GuanLuo's avatar
GuanLuo committed
207
) -> Result<KvEventPublisher, anyhow::Error> {
208
    tracing::info!("Creating KV Publisher for model: {}", component);
209
210
211
212
213
    match DRT
        .get()
        .ok_or(anyhow::Error::msg("Could not get Distributed Runtime"))
    {
        Ok(drt) => {
GuanLuo's avatar
GuanLuo committed
214
            let backend = drt.namespace(namespace)?.component(component)?;
Yan Ru Pei's avatar
Yan Ru Pei committed
215
            KvEventPublisher::new(backend, kv_block_size, None)
216
217
218
219
220
221
222
223
224
        }
        Err(e) => Err(e),
    }
}

fn kv_event_create_stored_block_from_parts(
    block_hash: u64,
    token_ids: *const u32,
    num_tokens: usize,
225
    kv_block_size: u32,
226
    lora_name: Option<&str>,
227
) -> KvCacheStoredBlockData {
228
229
230
    let tokens_hash = compute_block_hash_for_seq(
        unsafe { std::slice::from_raw_parts(token_ids, num_tokens) },
        kv_block_size,
231
232
233
234
        BlockHashOptions {
            lora_name,
            ..Default::default()
        },
235
    )[0];
236
237
238
    KvCacheStoredBlockData {
        block_hash: ExternalSequenceBlockHash(block_hash),
        tokens_hash,
239
        mm_extra_info: None,
240
241
242
243
244
    }
}
static WARN_COUNT: AtomicU32 = AtomicU32::new(0);

fn kv_event_create_stored_from_parts(
245
    kv_params: DynamoKvStoredEventParams,
246
    kv_block_size: u32,
247
248
249
250
) -> KvCacheEvent {
    let mut blocks: Vec<KvCacheStoredBlockData> = Vec::new();

    let mut token_offset: usize = 0;
251
252
253
254
255
256
257
258
259
    for block_idx in 0..kv_params.num_blocks {
        let block_hash = unsafe { *kv_params.block_ids.offset(block_idx.try_into().unwrap()) };
        let tokens = unsafe { kv_params.token_ids.offset(token_offset.try_into().unwrap()) };
        let num_toks = unsafe {
            *kv_params
                .num_block_tokens
                .offset(block_idx.try_into().unwrap())
        };

260
        if num_toks != (kv_block_size as usize) {
Ryan Olson's avatar
Ryan Olson committed
261
262
            if WARN_COUNT
                .fetch_update(Ordering::SeqCst, Ordering::SeqCst, |c| {
263
                    if c < 3 { Some(c + 1) } else { None }
Ryan Olson's avatar
Ryan Olson committed
264
265
266
                })
                .is_ok()
            {
267
                tracing::warn!(
268
269
                    "Block not published. Block size must be {} tokens to be published. Block size is: {}",
                    kv_block_size,
Ryan Olson's avatar
Ryan Olson committed
270
271
                    num_toks
                );
272
273
274
275
276
            }
            break;
        }
        token_offset += num_toks;
        blocks.push(kv_event_create_stored_block_from_parts(
277
278
279
280
            block_hash,
            tokens,
            num_toks,
            kv_block_size,
281
            kv_params.lora_name.as_deref(),
282
283
284
285
286
287
        ));
    }

    KvCacheEvent {
        data: KvCacheEventData::Stored(KvCacheStoreData {
            blocks,
288
            parent_hash: kv_params.parent_hash.map(ExternalSequenceBlockHash),
289
        }),
290
        event_id: kv_params.event_id,
Yan Ru Pei's avatar
Yan Ru Pei committed
291
        dp_rank: 0,
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
    }
}

fn kv_event_create_removed_from_parts(
    event_id: u64,
    block_ids: *const u64,
    num_blocks: usize,
) -> KvCacheEvent {
    let block_hashes: Vec<ExternalSequenceBlockHash> =
        unsafe { std::slice::from_raw_parts(block_ids, num_blocks) }
            .to_vec()
            .iter()
            .map(|&v| ExternalSequenceBlockHash(v))
            .collect();
    KvCacheEvent {
        event_id,
        data: KvCacheEventData::Removed(KvCacheRemoveData { block_hashes }),
Yan Ru Pei's avatar
Yan Ru Pei committed
309
        dp_rank: 0,
310
311
312
    }
}

313
314
315
316
317
318
319
pub struct DynamoKvStoredEventParams {
    pub event_id: u64,
    pub token_ids: *const u32,
    pub num_block_tokens: *const usize,
    pub block_ids: *const u64,
    pub num_blocks: usize,
    pub parent_hash: Option<u64>,
320
    pub lora_name: Option<String>,
321
322
}

323
324
/// # Safety
/// parent_hash is passed as pointer to indicate whether the blocks
325
326
/// has a parent hash or not. nullptr is used to represent no parent hash.
/// lora_name is an optional null-terminated C string; pass nullptr for base model.
327
#[unsafe(no_mangle)]
Neelay Shah's avatar
Neelay Shah committed
328
pub unsafe extern "C" fn dynamo_kv_event_publish_stored(
329
330
331
332
333
334
    event_id: u64,
    token_ids: *const u32,
    num_block_tokens: *const usize,
    block_ids: *const u64,
    num_blocks: usize,
    parent_hash: *const u64,
335
    lora_name: *const c_char,
Neelay Shah's avatar
Neelay Shah committed
336
) -> DynamoLlmResult {
337
338
339
340
341
342
343
    let parent_hash = {
        if parent_hash.is_null() {
            None
        } else {
            Some(unsafe { *parent_hash })
        }
    };
344
345
346
347
348
349
350
351
352
353
354
    let lora_name = if lora_name.is_null() {
        None
    } else {
        match unsafe { CStr::from_ptr(lora_name) }.to_str() {
            Ok(s) => Some(s.to_owned()),
            Err(e) => {
                tracing::error!(error = ?e, "Failed to convert C string to Rust string (lora_name)");
                return DynamoLlmResult::ERR;
            }
        }
    };
355
    let kv_params = DynamoKvStoredEventParams {
356
357
358
359
360
361
        event_id,
        token_ids,
        num_block_tokens,
        block_ids,
        num_blocks,
        parent_hash,
362
        lora_name,
363
364
365
    };
    let publisher = KV_PUB.get().unwrap();
    let event = kv_event_create_stored_from_parts(kv_params, publisher.kv_block_size());
366
    match publisher.publish(event) {
Neelay Shah's avatar
Neelay Shah committed
367
        Ok(_) => DynamoLlmResult::OK,
368
369
        Err(e) => {
            eprintln!("Error publishing stored kv event {:?}", e);
Neelay Shah's avatar
Neelay Shah committed
370
            DynamoLlmResult::ERR
371
372
373
374
        }
    }
}

375
#[unsafe(no_mangle)]
Neelay Shah's avatar
Neelay Shah committed
376
pub extern "C" fn dynamo_kv_event_publish_removed(
377
378
379
    event_id: u64,
    block_ids: *const u64,
    num_blocks: usize,
Neelay Shah's avatar
Neelay Shah committed
380
) -> DynamoLlmResult {
381
382
383
    let publisher = KV_PUB.get().unwrap();
    let event = kv_event_create_removed_from_parts(event_id, block_ids, num_blocks);
    match publisher.publish(event) {
Neelay Shah's avatar
Neelay Shah committed
384
        Ok(_) => DynamoLlmResult::OK,
385
386
        Err(e) => {
            eprintln!("Error publishing removed kv event {:?}", e);
Neelay Shah's avatar
Neelay Shah committed
387
            DynamoLlmResult::ERR
388
389
390
391
        }
    }
}

392
/* ------------------------------------------------------------------------
393
 *  Router Bindings for GAIE EPP
394
395
 * ------------------------------------------------------------------------ */

396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
// Default timeout for bookkeeping operations
const BOOKKEEPING_TIMEOUT_SEC: u64 = 5;
/// Complete routing result for a chat completion request (C-compatible)
#[repr(C)]
pub struct CRoutingResult {
    /// Whether disaggregated mode is active
    pub is_disaggregated: bool,
    /// Prefill worker ID (only valid if is_disaggregated is true)
    pub prefill_worker_id: u64,
    /// Decode worker ID
    pub decode_worker_id: u64,
    /// Token IDs (needed for add_request callback)
    pub token_ids: *mut u32,
    /// Number of tokens in the request
    pub token_count: usize,
411
412
}

413
414
415
416
417
418
419
420
impl Default for CRoutingResult {
    fn default() -> Self {
        Self {
            is_disaggregated: false,
            prefill_worker_id: 0,
            decode_worker_id: 0,
            token_ids: ptr::null_mut(),
            token_count: 0,
421
        }
422
    }
423
}
424

425
426
427
428
429
430
431
432
433
434
435
436
437
/// Container holding routers and preprocessor for query routing
pub struct RouterHandles {
    prefill_router: Arc<PrefillRouter>,
    decode_router: Arc<KvRouter>,
    #[allow(dead_code)]
    model_manager: Arc<ModelManager>,
    #[allow(dead_code)]
    namespace: String,
    /// Cached runtime for executing async operations (avoids creating new runtime per call)
    runtime: Runtime,
    /// Preprocessor for tokenization and template application (fetched via discovery)
    preprocessor: Option<Arc<OpenAIPreprocessor>>,
}
438

439
440
impl RouterHandles {
    /// Query optimal prefill worker for a request.
441
442
    ///
    /// When `allowed_worker_ids` is Some, only workers in that set are considered.
443
444
445
446
    /// Returns worker_id on success.
    async fn query_prefill_worker(
        &self,
        tokens: &[u32],
447
        block_mm_infos: Option<&[Option<dynamo_kv_router::protocols::BlockExtraInfo>]>,
448
449
450
        update_states: bool,
        lora_name: Option<String>,
        priority_jump: f64,
451
        allowed_worker_ids: Option<HashSet<WorkerId>>,
452
    ) -> Result<u64, QueryRouterResult> {
453
454
455
456
        if let Some(ref ids) = allowed_worker_ids {
            self.prefill_router.register_workers(ids);
        }

457
        self.prefill_router
458
459
460
461
462
463
            .query_prefill_worker(
                tokens,
                block_mm_infos,
                update_states,
                lora_name,
                priority_jump,
464
                allowed_worker_ids,
465
            )
466
467
468
469
470
471
472
            .await
            .map(|(worker_id, _dp_rank)| worker_id)
            .map_err(|e| {
                tracing::error!(error = ?e, "Prefill query failed");
                QueryRouterResult::ErrQueryFailed
            })
    }
473

474
475
476
477
    /// Query optimal decode worker for a request.
    /// For disaggregated mode, set `is_disaggregated` to true to use overlap_score_weight=0
    /// (since KV cache is being transferred from prefill, not reused).
    ///
478
479
480
    /// When `allowed_worker_ids` is Some, only workers in that set are considered.
    /// This does NOT overwrite the router's internal worker state — it only filters this decision.
    ///
481
482
483
484
485
486
487
488
    /// Note: The C bindings are query-only and must not mutate router state during worker
    /// selection. State updates require a `context_id` (request id) and are managed via the
    /// explicit bookkeeping APIs (`add_request`, `mark_prefill_complete`, `free_request`).
    /// Returns (worker, overlap_blocks) on success.
    async fn query_decode_worker(
        &self,
        tokens: &[u32],
        is_disaggregated: bool,
489
        allowed_worker_ids: Option<HashSet<WorkerId>>,
490
    ) -> Result<(WorkerWithDpRank, u32), QueryRouterResult> {
491
492
493
494
        if let Some(ref ids) = allowed_worker_ids {
            self.decode_router.register_workers(ids);
        }

495
496
497
498
499
        // For decode phase in disaggregated mode, use overlap_score_weight=0
        // This matches prefill_router.rs
        let config_override = if is_disaggregated {
            Some(RouterConfigOverride {
                overlap_score_weight: Some(0.0),
500
501
                assume_kv_reuse: Some(false),
                track_prefill_tokens: Some(false),
502
                ..Default::default()
503
            })
504
505
506
507
        } else {
            None
        };

508
        self.decode_router
509
510
511
512
513
514
515
516
            .find_best_match(
                None,
                tokens,
                None,
                config_override.as_ref(),
                false,
                None,
                0.0,
517
                None,
518
                allowed_worker_ids,
519
            )
520
521
522
523
524
525
526
            .await
            .map_err(|e| {
                tracing::error!(error = ?e, "Decode query failed");
                QueryRouterResult::ErrQueryFailed
            })
    }
}
527

528
529
/// Opaque handle for the router pair
pub type RouterHandlesPtr = *mut RouterHandles;
530

531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
/// Result codes for query router C FFI
#[repr(u32)]
pub enum QueryRouterResult {
    Ok = 0,
    ErrInvalidHandle = 1,
    ErrInvalidParam = 2,
    ErrInitFailed = 3,
    ErrQueryFailed = 4,
    ErrDisaggEnforced = 5,
    ErrTimeout = 6,
}

/// Build a `KvRouterConfig` from defaults, overridden by optional `DYN_*` environment variables.
fn kv_router_config_from_env() -> KvRouterConfig {
    let mut cfg = KvRouterConfig::default();

    fn env_f64(key: &str) -> Option<f64> {
        std::env::var(key).ok().and_then(|v| v.parse().ok())
549
    }
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
    fn env_bool(key: &str) -> Option<bool> {
        std::env::var(key)
            .ok()
            .and_then(|v| match v.to_lowercase().as_str() {
                "true" | "1" | "yes" | "on" => Some(true),
                "false" | "0" | "no" | "off" => Some(false),
                _ => None,
            })
    }

    if let Some(v) = env_f64("DYN_OVERLAP_SCORE_WEIGHT") {
        cfg.overlap_score_weight = v;
    }
    if let Some(v) = env_f64("DYN_ROUTER_TEMPERATURE") {
        cfg.router_temperature = v;
    }
    if let Some(v) = env_bool("DYN_USE_KV_EVENTS") {
        cfg.use_kv_events = v;
    }
    if let Some(v) = env_bool("DYN_ROUTER_REPLICA_SYNC") {
        cfg.router_replica_sync = v;
    }
    if let Some(v) = env_bool("DYN_ROUTER_TRACK_ACTIVE_BLOCKS") {
        cfg.router_track_active_blocks = v;
    }
    if let Some(v) = env_bool("DYN_ROUTER_TRACK_OUTPUT_BLOCKS") {
        cfg.router_track_output_blocks = v;
    }
578
579
580
    if let Some(v) = env_bool("DYN_ROUTER_TRACK_PREFILL_TOKENS") {
        cfg.router_track_prefill_tokens = v;
    }
581
582
583
    if let Some(v) = env_f64("DYN_ROUTER_QUEUE_THRESHOLD") {
        cfg.router_queue_threshold = Some(v);
    }
584
585
586
587
588
589
590
591

    tracing::info!(
        overlap_score_weight = cfg.overlap_score_weight,
        router_temperature = cfg.router_temperature,
        use_kv_events = cfg.use_kv_events,
        router_replica_sync = cfg.router_replica_sync,
        router_track_active_blocks = cfg.router_track_active_blocks,
        router_track_output_blocks = cfg.router_track_output_blocks,
592
        router_track_prefill_tokens = cfg.router_track_prefill_tokens,
593
        router_queue_threshold = ?cfg.router_queue_threshold,
594
595
596
597
        "KvRouterConfig initialized (DYN_* env overrides applied)"
    );

    cfg
598
599
}

600
/// Create router handles for query-only routing
601
///
602
603
604
/// This function waits for at least one decode worker to be discovered before returning.
/// It auto-detects disaggregated mode by checking if prefill workers are present.
/// The KV cache block size is automatically fetched from the model card via discovery.
605
///
606
607
608
/// # Arguments
/// - `namespace`: Namespace for the model
/// - `component`: Component name (defaults to "backend" if NULL or empty)
609
/// - `enforce_disagg`: If true, requires prefill workers to be present at init time
610
/// - `out_handle`: Output handle
611
///
612
613
614
/// # Safety
/// - All string parameters must be valid null-terminated C strings
/// - The returned handle must be freed with `destroy`
615
#[unsafe(no_mangle)]
616
617
618
pub unsafe extern "C" fn create_routers(
    namespace: *const c_char,
    component: *const c_char,
619
    enforce_disagg: bool,
620
621
    out_handle: *mut RouterHandlesPtr,
) -> QueryRouterResult {
622
623
    initialize_tracing();

624
625
    if namespace.is_null() || out_handle.is_null() {
        return QueryRouterResult::ErrInvalidParam;
626
627
    }

628
629
630
    let namespace_str = match unsafe { CStr::from_ptr(namespace) }.to_str() {
        Ok(s) => s.to_owned(),
        Err(_) => return QueryRouterResult::ErrInvalidParam,
631
632
    };

633
634
    let component_str = if component.is_null() {
        "backend".to_string()
635
    } else {
636
637
638
        match unsafe { CStr::from_ptr(component) }.to_str() {
            Ok(s) if !s.is_empty() => s.to_owned(),
            _ => "backend".to_string(),
639
640
641
        }
    };

642
643
644
    // Create the runtime once - it will be stored in RouterHandles and reused
    let runtime = match Runtime::from_settings() {
        Ok(rt) => rt,
645
        Err(e) => {
646
647
            tracing::error!(error = ?e, "Failed to create runtime");
            return QueryRouterResult::ErrInitFailed;
648
649
        }
    };
650
651
652
653
654
655
656
657
658
659

    // Clone for use inside the async block (the original will be moved into handles)
    let runtime_for_async = runtime.clone();

    let result = runtime_for_async.secondary().block_on(async {
        let drt = match DistributedRuntime::from_settings(runtime_for_async.clone()).await {
            Ok(drt) => drt,
            Err(e) => {
                tracing::error!(error = ?e, "Failed to create distributed runtime");
                return Err(QueryRouterResult::ErrInitFailed);
660
            }
661
662
        };

663
664
665
666
667
668
669
670
671
672
673
674
675
676
        let DiscoveredModelBootstrap {
            preprocessor,
            card,
            actual_namespace,
        } = match init_preprocessor(&drt, &namespace_str).await {
            Ok(result) => result,
            Err(e) => {
                tracing::error!(error = %e, "Failed to initialize preprocessor");
                return Err(QueryRouterResult::ErrInitFailed);
            }
        };
        let block_size = card.kv_cache_block_size;
        let model_name = card.display_name.clone();
        let enable_eagle = card.runtime_config.enable_eagle;
677
678
679

        if actual_namespace != namespace_str {
            tracing::info!(
680
681
                base_namespace = %namespace_str,
                actual_namespace = %actual_namespace,
682
                "Worker namespace has rolling-update suffix"
683
            );
684
685
        }

686
687
        let mut kv_router_config = kv_router_config_from_env();
        kv_router_config.skip_initial_worker_wait = true;
688

689
690
691
        // Build endpoint using the actual namespace discovered from workers,
        // which may include a rolling-update hash suffix.
        let component_handle = match drt.namespace(&actual_namespace) {
692
693
694
695
696
697
            Ok(ns) => match ns.component(&component_str) {
                Ok(c) => c,
                Err(e) => {
                    tracing::error!(error = ?e, "Failed to get component");
                    return Err(QueryRouterResult::ErrInitFailed);
                }
698
            },
699
700
701
702
703
704
            Err(e) => {
                tracing::error!(error = ?e, "Failed to get namespace");
                return Err(QueryRouterResult::ErrInitFailed);
            }
        };
        let endpoint = component_handle.endpoint("generate");
705

706
        let model_manager = Arc::new(ModelManager::new());
707

708
709
710
711
712
        // Create decode router
        let decode_router = match model_manager
            .kv_chooser_for(
                &endpoint,
                block_size,
713
                Some(kv_router_config.clone()),
714
                WORKER_TYPE_DECODE,
715
                Some(model_name.clone()),
716
                enable_eagle,
717
718
719
720
721
722
723
724
725
            )
            .await
        {
            Ok(r) => r,
            Err(e) => {
                tracing::error!(error = ?e, "Failed to create decode router");
                return Err(QueryRouterResult::ErrInitFailed);
            }
        };
726

727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
        // Wait for the runtime config watch to be populated with at least one
        // decode worker's ModelRuntimeConfig. skip_initial_worker_wait=true
        // skips this inside KvRouter::new, but the selector needs workers in
        // workers_with_configs to avoid NoEndpoints on the first request.
        // discovery sync already confirmed workers exist; this just waits for
        // the async join of instance IDs + configs to complete in the watch.
        {
            let mut config_watch = model_manager
                .get_or_create_runtime_config_watcher(&endpoint)
                .await
                .map_err(|e| {
                    tracing::error!(error = ?e, "Failed to get runtime config watcher");
                    QueryRouterResult::ErrInitFailed
                })?;
            tracing::info!(
                "Waiting for decode workers to register ModelRuntimeConfig \
                 (no timeout - controlled by K8s StartupProbe)..."
            );
            let wait_result = config_watch.wait_for(|m| !m.is_empty()).await.map(|_| ());
            match wait_result {
                Ok(()) => {
                    let count = config_watch.borrow().len();
                    tracing::info!(
                        worker_count = count,
                        "Runtime config watch populated with decode workers"
                    );
                }
                Err(_) => {
                    tracing::error!(
                        "Runtime config watch closed before any workers appeared. \
                         Decode routing will fail. \
                         Verify workers are running and publishing to discovery."
                    );
                    return Err(QueryRouterResult::ErrInitFailed);
                }
            }
        }

765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
        // Create PrefillRouter with a pending activation channel.
        // A background task watches discovery for prefill workers and activates
        // the router when one appears. Before activation, requests gracefully
        // fallback to decode-only routing.
        let mut prefill_config = kv_router_config;
        prefill_config.router_track_active_blocks = false;

        let (prefill_tx, prefill_rx) = tokio::sync::oneshot::channel();
        let prefill_router = PrefillRouter::new(
            prefill_rx,
            model_manager.clone(),
            RouterMode::KV,
            block_size,
            Some(prefill_config),
            enforce_disagg,
            model_name.clone(),
            actual_namespace.clone(),
            enable_eagle,
        );

        // Spawn background discovery watcher for prefill workers.
        // Polls discovery until a prefill-only worker appears in the same
        // rolling-update namespace, then sends its endpoint through the channel
        // to activate the PrefillRouter.
        spawn_prefill_discovery_watcher(drt.clone(), actual_namespace.clone(), prefill_tx);
790
791
792
793
794
795

        Ok((
            prefill_router,
            decode_router,
            model_manager,
            namespace_str,
796
            Some(preprocessor),
797
798
        ))
    });
799
800

    match result {
801
802
803
804
805
806
807
808
809
810
811
        Ok((prefill_router, decode_router, model_manager, namespace_str, preprocessor)) => {
            let handles = RouterHandles {
                prefill_router,
                decode_router,
                model_manager,
                namespace: namespace_str,
                runtime, // Store the runtime for reuse
                preprocessor,
            };
            unsafe { *out_handle = Box::into_raw(Box::new(handles)) };
            QueryRouterResult::Ok
812
        }
813
        Err(code) => code,
814
815
816
817
818
    }
}

/// Add a request to the router's bookkeeping after worker selection.
///
819
820
821
/// Register the request with the KvRouter's scheduler for tracking active blocks
/// and managing prefill/decode lifecycle. Call this after `query_decode` returns
/// worker IDs and before sending the request to the worker.
822
823
///
/// # Safety
824
825
/// - `handle` must be a valid RouterHandles handle
/// - `request_id` must be a valid null-terminated C string
826
827
/// - `token_ids` must point to at least `token_count` valid u32 values
#[unsafe(no_mangle)]
828
829
830
pub unsafe extern "C" fn add_request(
    handle: RouterHandlesPtr,
    request_id: *const c_char,
831
832
833
834
    token_ids: *const u32,
    token_count: usize,
    worker_id: u64,
    dp_rank: u32,
835
836
837
838
) -> QueryRouterResult {
    if handle.is_null() || request_id.is_null() {
        return QueryRouterResult::ErrInvalidParam;
    }
839

840
841
842
843
    let handles = unsafe { &*handle };
    let request_id_str = match unsafe { CStr::from_ptr(request_id) }.to_str() {
        Ok(s) => s.to_owned(),
        Err(_) => return QueryRouterResult::ErrInvalidParam,
844
845
846
847
848
849
850
851
    };

    let tokens: Vec<u32> = if token_count > 0 && !token_ids.is_null() {
        unsafe { std::slice::from_raw_parts(token_ids, token_count) }.to_vec()
    } else {
        Vec::new()
    };

852
    let decode_router = handles.decode_router.clone();
853

854
855
    let result = handles.runtime.secondary().block_on(async {
        let timeout_duration = Duration::from_secs(BOOKKEEPING_TIMEOUT_SEC);
856

857
858
        tokio::time::timeout(timeout_duration, async {
            let worker = WorkerWithDpRank::new(worker_id, dp_rank);
859
860
861
862
863
864
            let router_config_override = RouterConfigOverride {
                overlap_score_weight: Some(0.0),
                assume_kv_reuse: Some(false),
                track_prefill_tokens: Some(false),
                ..Default::default()
            };
865

866
            // Compute overlap_blocks using the public method
867
            let overlap_blocks = match decode_router
868
                .get_overlap_blocks(&tokens, None, worker, None)
869
870
                .await
            {
871
872
873
874
875
876
877
878
879
880
881
                Ok(overlap) => overlap,
                Err(e) => {
                    tracing::warn!(error = ?e, "Failed to compute overlap, using 0");
                    0
                }
            };

            decode_router
                .add_request(
                    request_id_str.clone(),
                    &tokens,
882
                    None,
883
884
885
886
                    overlap_blocks,
                    None,
                    worker,
                    None, // lora_name
887
                    Some(&router_config_override),
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
                )
                .await;

            tracing::debug!(
                request_id = %request_id_str,
                worker_id = worker_id,
                dp_rank = dp_rank,
                overlap_blocks = overlap_blocks,
                token_count = tokens.len(),
                "add_request completed"
            );
        })
        .await
    });

    match result {
        Ok(()) => QueryRouterResult::Ok,
        Err(_elapsed) => {
            tracing::warn!(
                request_id = %request_id_str,
                timeout_secs = BOOKKEEPING_TIMEOUT_SEC,
                "add_request timed out"
            );
            QueryRouterResult::ErrTimeout
        }
    }
914
915
916
}

/// Mark prefill as completed for a request.
917
918
///
/// Call when the first token is generated to release prefill tokens from decode worker's load
919
920
///
/// # Safety
921
922
/// - `handle` must be a valid RouterHandles handle
/// - `request_id` must be a valid null-terminated C string
923
#[unsafe(no_mangle)]
924
925
926
927
928
929
930
pub unsafe extern "C" fn mark_prefill_complete(
    handle: RouterHandlesPtr,
    request_id: *const c_char,
) -> QueryRouterResult {
    if handle.is_null() || request_id.is_null() {
        return QueryRouterResult::ErrInvalidParam;
    }
931

932
933
934
935
    let handles = unsafe { &*handle };
    let request_id_str = match unsafe { CStr::from_ptr(request_id) }.to_str() {
        Ok(s) => s.to_owned(),
        Err(_) => return QueryRouterResult::ErrInvalidParam,
936
937
    };

938
    let decode_router = handles.decode_router.clone();
939

940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
    let result = handles.runtime.secondary().block_on(async {
        let timeout_duration = Duration::from_secs(BOOKKEEPING_TIMEOUT_SEC);

        tokio::time::timeout(timeout_duration, async {
            if let Err(e) = decode_router.mark_prefill_completed(&request_id_str).await {
                tracing::warn!(
                    request_id = %request_id_str,
                    error = %e,
                    "Failed to mark prefill complete"
                );
            } else {
                tracing::debug!(
                    request_id = %request_id_str,
                    "mark_prefill_complete completed"
                );
            }
        })
        .await
    });
959

960
961
962
    match result {
        Ok(()) => QueryRouterResult::Ok,
        Err(_elapsed) => {
963
            tracing::warn!(
964
965
966
                request_id = %request_id_str,
                timeout_secs = BOOKKEEPING_TIMEOUT_SEC,
                "mark_prefill_complete timed out"
967
            );
968
            QueryRouterResult::ErrTimeout
969
        }
970
    }
971
972
973
}

/// Free a request from the router's bookkeeping.
974
975
///
/// Call this when the stream is closed (completed or cancelled) to release all resources.
976
977
///
/// # Safety
978
979
/// - `handle` must be a valid RouterHandles handle
/// - `request_id` must be a valid null-terminated C string
980
#[unsafe(no_mangle)]
981
982
983
984
985
986
987
pub unsafe extern "C" fn free_request(
    handle: RouterHandlesPtr,
    request_id: *const c_char,
) -> QueryRouterResult {
    if handle.is_null() || request_id.is_null() {
        return QueryRouterResult::ErrInvalidParam;
    }
988

989
990
991
992
    let handles = unsafe { &*handle };
    let request_id_str = match unsafe { CStr::from_ptr(request_id) }.to_str() {
        Ok(s) => s.to_owned(),
        Err(_) => return QueryRouterResult::ErrInvalidParam,
993
994
    };

995
    let decode_router = handles.decode_router.clone();
996

997
998
    let result = handles.runtime.secondary().block_on(async {
        let timeout_duration = Duration::from_secs(BOOKKEEPING_TIMEOUT_SEC);
999

1000
1001
1002
1003
1004
1005
        tokio::time::timeout(timeout_duration, async {
            if let Err(e) = decode_router.free(&request_id_str).await {
                tracing::warn!(
                    request_id = %request_id_str,
                    error = %e,
                    "Failed to free request"
1006
                );
1007
            } else {
1008
                tracing::debug!(
1009
1010
                    request_id = %request_id_str,
                    "free_request completed"
1011
                );
1012
            }
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
        })
        .await
    });

    match result {
        Ok(()) => QueryRouterResult::Ok,
        Err(_elapsed) => {
            tracing::warn!(
                request_id = %request_id_str,
                timeout_secs = BOOKKEEPING_TIMEOUT_SEC,
                "free_request timed out"
            );
            QueryRouterResult::ErrTimeout
1026
1027
        }
    }
1028
}
1029

1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
/// Destroy router handles
///
/// # Safety
/// - `handle` must be a valid RouterHandles handle or null
/// - After this call, `handle` must not be used
#[unsafe(no_mangle)]
pub unsafe extern "C" fn destroy(handle: RouterHandlesPtr) {
    if !handle.is_null() {
        drop(unsafe { Box::from_raw(handle) });
    }
1040
1041
}

1042
/// Free a routing result.
1043
///
1044
/// # Safety
1045
/// - `result` must be a valid pointer to a CRoutingResult previously returned by route functions
1046
#[unsafe(no_mangle)]
1047
1048
1049
pub unsafe extern "C" fn free_routing_result(result: *mut CRoutingResult) {
    if result.is_null() {
        return;
1050
    }
1051

1052
    let res = unsafe { &mut *result };
1053

1054
1055
1056
    // Free token IDs
    if !res.token_ids.is_null() && res.token_count > 0 {
        drop(unsafe {
1057
            Box::from_raw(std::ptr::slice_from_raw_parts_mut(
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
                res.token_ids,
                res.token_count,
            ))
        });
        res.token_ids = ptr::null_mut();
        res.token_count = 0;
    }
}

/// Parse a JSON request string, apply the chat template, and tokenize.
/// Returns the token IDs on success, or a `QueryRouterResult` error code.
unsafe fn preprocess_request(
    handles: &RouterHandles,
    request_json: *const c_char,
) -> Result<Vec<u32>, QueryRouterResult> {
1073
1074
1075
1076
    let preprocessor = match &handles.preprocessor {
        Some(p) => p,
        None => {
            tracing::error!("Preprocessor not available");
1077
            return Err(QueryRouterResult::ErrInitFailed);
1078
1079
1080
1081
1082
        }
    };

    let json_str = match unsafe { CStr::from_ptr(request_json) }.to_str() {
        Ok(s) => s,
1083
        Err(_) => return Err(QueryRouterResult::ErrInvalidParam),
1084
1085
1086
1087
1088
1089
1090
    };

    let request: dynamo_llm::types::openai::chat_completions::NvCreateChatCompletionRequest =
        match serde_json::from_str(json_str) {
            Ok(req) => req,
            Err(e) => {
                tracing::error!(error = ?e, "Failed to parse request JSON");
1091
                return Err(QueryRouterResult::ErrInvalidParam);
1092
1093
1094
1095
1096
1097
1098
1099
            }
        };

    let formatted_prompt = match preprocessor.apply_template(&request) {
        Ok(Some(prompt)) => prompt,
        Ok(None) => String::new(),
        Err(e) => {
            tracing::error!(error = ?e, "Failed to apply chat template");
1100
            return Err(QueryRouterResult::ErrQueryFailed);
1101
1102
1103
1104
1105
1106
1107
        }
    };

    let encoding = match preprocessor.tokenize(&formatted_prompt) {
        Ok(enc) => enc,
        Err(e) => {
            tracing::error!(error = ?e, "Failed to tokenize");
1108
            return Err(QueryRouterResult::ErrQueryFailed);
1109
1110
1111
        }
    };

1112
1113
    Ok(encoding.token_ids().to_vec())
}
1114

1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
/// Parse pods JSON into an optional set of allowed worker IDs.
unsafe fn parse_pods_filter(pods_json: *const c_char) -> Option<HashSet<WorkerId>> {
    if pods_json.is_null() {
        return None;
    }
    match unsafe { CStr::from_ptr(pods_json) }.to_str() {
        Ok(s) if !s.is_empty() => match serde_json::from_str::<Vec<serde_json::Value>>(s) {
            Ok(pods) => {
                let mut worker_ids = HashSet::new();
                for pod in &pods {
                    let pod_name = pod
                        .get("pod")
                        .and_then(|p| p.get("podName"))
                        .or_else(|| pod.get("podName"))
                        .and_then(|v| v.as_str());
                    if let Some(name) = pod_name {
                        let worker_id = hash_pod_name(name);
                        tracing::debug!(
                            pod_name = name,
                            worker_id = format!("{:x}", worker_id),
                            "Mapped EPP pod to worker_id"
                        );
                        worker_ids.insert(worker_id);
                    }
                }
                tracing::info!(
                    pod_count = pods.len(),
                    unique_worker_ids = worker_ids.len(),
                    "Parsed EPP pods into allowed_worker_ids filter"
                );
                if worker_ids.is_empty() {
                    None
                } else {
                    Some(worker_ids)
                }
            }
            Err(e) => {
                tracing::error!(error = ?e, "Failed to parse pods JSON");
                None
            }
        },
        _ => None,
    }
}
1159

1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
/// Write token IDs into a `CRoutingResult`, transferring ownership to the caller.
fn write_tokens_to_result(tokens: &[u32], out: &mut CRoutingResult) {
    let token_vec: Vec<u32> = tokens.to_vec();
    let mut tokens_boxed = token_vec.into_boxed_slice();
    out.token_ids = tokens_boxed.as_mut_ptr();
    out.token_count = tokens.len();
    std::mem::forget(tokens_boxed);
}

/// Route a request to select the best **prefill** worker only.
///
/// This is used in disaggregated mode where the EPP runs separate prefill and decode
/// scoring profiles.  It tokenizes the request and queries only the prefill router.
///
/// The returned `CRoutingResult` contains:
/// - `prefill_worker_id`: the selected prefill worker
/// - `decode_worker_id`: 0 (unused — decode is handled by `route_decode_request`)
/// - `is_disaggregated`: always true (this function is only called in disagg mode)
/// - `token_ids` / `token_count`: the tokenized request (caller must free via `free_routing_result`)
///
/// # Safety
/// - `handle` must be a valid RouterHandles handle
/// - `request_json` must be a valid null-terminated C string containing JSON
/// - `pods_json` must be a valid null-terminated C string containing JSON, or null
/// - `out_result` must be a valid pointer
#[unsafe(no_mangle)]
pub unsafe extern "C" fn route_prefill_request(
    handle: RouterHandlesPtr,
    request_json: *const c_char,
    pods_json: *const c_char,
    out_result: *mut CRoutingResult,
) -> QueryRouterResult {
    if handle.is_null() || request_json.is_null() || out_result.is_null() {
        return QueryRouterResult::ErrInvalidParam;
    }

    let handles = unsafe { &*handle };

    let tokens = match unsafe { preprocess_request(handles, request_json) } {
        Ok(t) => t,
        Err(code) => return code,
    };

    let allowed_worker_ids = unsafe { parse_pods_filter(pods_json) };

    let result = handles.runtime.secondary().block_on(async {
        let prefill_worker_id = handles
            .query_prefill_worker(&tokens, None, false, None, 0.0, allowed_worker_ids)
1208
1209
1210
1211
            .await?;

        tracing::info!(
            prefill_worker_id = prefill_worker_id,
1212
1213
            token_count = tokens.len(),
            "Routed prefill request"
1214
1215
        );

1216
        Ok(prefill_worker_id)
1217
1218
    });

1219
    match result {
1220
1221
1222
1223
1224
1225
        Ok(prefill_worker_id) => {
            let out = unsafe { &mut *out_result };
            *out = CRoutingResult::default();
            out.is_disaggregated = true;
            out.prefill_worker_id = prefill_worker_id;
            write_tokens_to_result(&tokens, out);
1226
1227
1228
1229
            QueryRouterResult::Ok
        }
        Err(code) => code,
    }
1230
1231
}

1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
/// Route a request to select the best **decode** worker only.
///
/// This is used in both aggregated and disaggregated modes.
/// - When `is_disaggregated` is true, the decode router uses `overlap_score_weight=0`
///   (KV cache is being transferred from prefill, not reused locally).
/// - When `is_disaggregated` is false, normal KV-aware scoring is used.
///
/// The returned `CRoutingResult` contains:
/// - `decode_worker_id`: the selected decode worker
/// - `prefill_worker_id`: 0 (unused — prefill is handled by `route_prefill_request`)
/// - `is_disaggregated`: mirrors the input parameter
/// - `token_ids` / `token_count`: the tokenized request (caller must free via `free_routing_result`)
1244
///
1245
/// # Safety
1246
1247
1248
1249
/// - `handle` must be a valid RouterHandles handle
/// - `request_json` must be a valid null-terminated C string containing JSON
/// - `pods_json` must be a valid null-terminated C string containing JSON, or null
/// - `out_result` must be a valid pointer
1250
#[unsafe(no_mangle)]
1251
1252
1253
1254
1255
1256
1257
1258
1259
pub unsafe extern "C" fn route_decode_request(
    handle: RouterHandlesPtr,
    request_json: *const c_char,
    pods_json: *const c_char,
    is_disaggregated: bool,
    out_result: *mut CRoutingResult,
) -> QueryRouterResult {
    if handle.is_null() || request_json.is_null() || out_result.is_null() {
        return QueryRouterResult::ErrInvalidParam;
1260
1261
    }

1262
    let handles = unsafe { &*handle };
1263

1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
    let tokens = match unsafe { preprocess_request(handles, request_json) } {
        Ok(t) => t,
        Err(code) => return code,
    };

    let allowed_worker_ids = unsafe { parse_pods_filter(pods_json) };

    let result = handles.runtime.secondary().block_on(async {
        let (decode_worker, _overlap_blocks) = handles
            .query_decode_worker(&tokens, is_disaggregated, allowed_worker_ids)
            .await?;

        tracing::info!(
            is_disaggregated = is_disaggregated,
            decode_worker_id = decode_worker.worker_id,
            decode_dp_rank = decode_worker.dp_rank,
            token_count = tokens.len(),
            "Routed decode request"
        );

        Ok(decode_worker)
    });

    match result {
        Ok(decode_worker) => {
            let out = unsafe { &mut *out_result };
            *out = CRoutingResult::default();
            out.is_disaggregated = is_disaggregated;
            out.decode_worker_id = decode_worker.worker_id;
            write_tokens_to_result(&tokens, out);
            QueryRouterResult::Ok
        }
        Err(code) => code,
1297
    }
1298
1299
}

1300
/// Initialize the preprocessor and fetch the model card used for routing.
1301
1302
///
/// Waits for discovery to sync (model card must be available for tokenization),
1303
1304
/// then creates the preprocessor from the model card. Router settings are
/// derived directly from the returned card by the caller.
1305
1306
1307
async fn init_preprocessor(
    drt: &DistributedRuntime,
    target_namespace: &str,
1308
) -> anyhow::Result<DiscoveredModelBootstrap> {
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
    let instance_count = wait_for_discovery_sync(drt).await;
    if instance_count == 0 {
        anyhow::bail!("Discovery sync failed: no worker instances found. Is the backend running?");
    }
    tracing::info!(
        "Discovery sync complete, {} worker(s) found",
        instance_count
    );

    // Retry fetching the preprocessor: model card metadata may arrive after
    // worker endpoints are registered.
1320
    let bootstrap = loop {
1321
1322
1323
1324
1325
1326
1327
1328
1329
1330
1331
1332
1333
1334
        match fetch_preprocessor_from_discovery(drt, target_namespace).await {
            Ok(result) => break result,
            Err(e) => {
                tracing::warn!(
                    error = %e,
                    target_namespace,
                    "Model card not available yet, retrying in 5s..."
                );
                tokio::time::sleep(std::time::Duration::from_secs(5)).await;
            }
        }
    };

    tracing::info!(
1335
1336
1337
1338
        kv_cache_block_size = bootstrap.card.kv_cache_block_size,
        model_name = %bootstrap.card.display_name,
        actual_namespace = %bootstrap.actual_namespace,
        enable_eagle = bootstrap.card.runtime_config.enable_eagle,
1339
1340
1341
        "Preprocessor initialized from model card"
    );

1342
    Ok(bootstrap)
1343
1344
}

1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
1387
1388
1389
1390
1391
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
/// Spawn a background task that watches discovery for a prefill-only worker
/// in the given namespace. When found, sends its endpoint through `tx` to
/// activate the PrefillRouter. Polls every 1 second until a match is found.
fn spawn_prefill_discovery_watcher(
    drt: DistributedRuntime,
    target_namespace: String,
    tx: tokio::sync::oneshot::Sender<dynamo_runtime::component::Endpoint>,
) {
    use dynamo_llm::model_card::ModelDeploymentCard;
    use dynamo_runtime::discovery::DiscoveryInstance;

    tokio::spawn(async move {
        let discovery = drt.discovery();
        tracing::info!(
            namespace = target_namespace,
            "Background task: watching for prefill workers to register..."
        );

        loop {
            if let Ok(instances) = discovery.list(DiscoveryQuery::AllModels).await {
                for instance in instances {
                    if let DiscoveryInstance::Model {
                        namespace,
                        component,
                        endpoint,
                        ..
                    } = &instance
                    {
                        if namespace != &target_namespace {
                            continue;
                        }

                        let card = match instance.deserialize_model::<ModelDeploymentCard>() {
                            Ok(card) => card,
                            Err(_) => continue,
                        };

                        if !card.model_type.supports_prefill()
                            || card.model_type.supports_chat()
                            || card.model_type.supports_completions()
                        {
                            continue;
                        }

                        tracing::info!(
                            model_name = card.name(),
                            namespace = namespace.as_str(),
                            "Prefill worker discovered, activating PrefillRouter"
                        );

                        if let Ok(ns) = drt.namespace(namespace)
                            && let Ok(comp) = ns.component(component)
                        {
                            let ep = comp.endpoint(endpoint);
                            if tx.send(ep).is_err() {
                                tracing::debug!("PrefillRouter activation channel already closed");
                            }
                            return;
                        }
                    }
                }
            }

            tokio::time::sleep(Duration::from_secs(1)).await;
        }
    });
}

1413
1414
1415
1416
1417
1418
1419
/// Fetch model card via discovery and create preprocessor.
///
/// This function:
/// 1. Lists all models via discovery
/// 2. Finds the first model in the target namespace (decode workers only)
/// 3. Downloads the model config (tokenizer files) if needed
/// 4. Creates an OpenAIPreprocessor from the model card
1420
/// 5. Returns the preprocessor, the model card, and the resolved worker namespace
1421
1422
1423
async fn fetch_preprocessor_from_discovery(
    drt: &DistributedRuntime,
    target_namespace: &str,
1424
) -> anyhow::Result<DiscoveredModelBootstrap> {
1425
    use dynamo_runtime::discovery::DiscoveryInstance;
1426

1427
    let discovery = drt.discovery();
1428

1429
1430
    // List all models
    let instances = discovery.list(DiscoveryQuery::AllModels).await?;
1431

1432
1433
1434
1435
    // Find first model card in the target namespace (decode workers only).
    // Use prefix matching because workers may append a rolling-update hash
    // suffix to the base namespace (e.g. "ns-dgd-58908edc" vs "ns-dgd").
    let mut model_card: Option<(ModelDeploymentCard, String)> = None;
1436

1437
1438
    for instance in instances {
        if let DiscoveryInstance::Model { namespace, .. } = &instance {
1439
            if !namespace.starts_with(target_namespace) {
1440
1441
1442
                continue;
            }

1443
            let actual_namespace = namespace.clone();
1444
1445
1446
1447
1448
1449
            match instance.deserialize_model::<ModelDeploymentCard>() {
                Ok(card) => {
                    // Skip prefill-only workers, we want decode workers for routing
                    if card.model_type.supports_prefill()
                        && !card.model_type.supports_chat()
                        && !card.model_type.supports_completions()
1450
                    {
1451
                        continue;
1452
                    }
1453
                    model_card = Some((card, actual_namespace));
1454
                    break;
1455
                }
1456
1457
1458
                Err(e) => {
                    tracing::debug!(error = %e, "Failed to deserialize model card, skipping");
                    continue;
1459
1460
1461
                }
            }
        }
1462
    }
1463

1464
    let (mut card, actual_namespace) = model_card.ok_or_else(|| {
1465
1466
1467
1468
1469
1470
1471
        anyhow::anyhow!(
            "No model found in namespace '{}' via discovery",
            target_namespace
        )
    })?;

    tracing::info!(
1472
1473
1474
1475
        model_name = %card.display_name,
        kv_cache_block_size = card.kv_cache_block_size,
        actual_namespace = %actual_namespace,
        enable_eagle = card.runtime_config.enable_eagle,
1476
        "Found model card via discovery"
1477
1478
    );

1479
1480
    // Download config (tokenizer files) if not local
    card.download_config().await?;
1481

1482
    // Create preprocessor
1483
1484
    let preprocessor = OpenAIPreprocessor::new(card.clone())?;
    Ok(DiscoveredModelBootstrap {
1485
        preprocessor,
1486
        card,
1487
        actual_namespace,
1488
    })
1489
}