push_router.rs 18.6 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
// SPDX-FileCopyrightText: Copyright (c) 2024-2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
// SPDX-License-Identifier: Apache-2.0

use std::sync::Arc;

use anyhow::Result;
use dynamo_runtime::{
    pipeline::{
        AsyncEngine, AsyncEngineContextProvider, Error, ManyOut, PushRouter, ResponseStream,
        SingleIn, async_trait,
    },
    protocols::annotated::Annotated,
};
use futures::stream::{self, StreamExt};
use serde_json::json;
16
use tracing::Instrument;
17
18
19
20

use crate::{
    kv_router::{
        KvRouter,
21
        metrics::RouterRequestMetrics,
22
23
24
        protocols::{TokensWithHashes, WorkerWithDpRank},
    },
    preprocessor::PreprocessedRequest,
25
26
27
28
    protocols::common::{
        llm_backend::LLMEngineOutput,
        timing::{RequestPhase, RequestTracker},
    },
29
30
31
32
33
34
35
36
37
38
39
40
41
42
};

pub struct KvPushRouter {
    inner: PushRouter<PreprocessedRequest, Annotated<LLMEngineOutput>>,
    pub chooser: Arc<KvRouter>,
}

/// Result of worker selection containing instance ID, dp_rank, and overlap amount.
struct WorkerSelection {
    instance_id: u64,
    dp_rank: u32,
    overlap_amount: u32,
}

43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
/// Drop guard that ensures `free()` and final metrics are recorded even if the
/// response stream is dropped without being polled to completion.
///
/// In the happy path, `finish().await` runs cleanup inline in the async context.
/// If the stream is dropped early (e.g., client disconnect, consumer drop), the
/// `Drop` impl fires and spawns a task to call `free()`.
struct RequestGuard {
    chooser: Arc<KvRouter>,
    context_id: String,
    tracker: Option<Arc<RequestTracker>>,
    request_metrics: Arc<RouterRequestMetrics>,
    cumulative_osl: usize,
    metrics_recorded: bool,
    freed: bool,
}

impl RequestGuard {
    async fn finish(&mut self) {
        self.record_metrics();
62
        if let Err(e) = self.chooser.free(&self.context_id).await {
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
            tracing::warn!("Failed to free request {}: {e}", self.context_id);
        }
        self.freed = true;
    }

    fn record_metrics(&mut self) {
        if self.metrics_recorded {
            return;
        }
        self.metrics_recorded = true;
        if let Some(ref tracker) = self.tracker {
            tracker.record_finish();
            tracker.record_osl(self.cumulative_osl);
            self.request_metrics
                .output_sequence_tokens
                .observe(self.cumulative_osl as f64);
        }
        self.request_metrics.requests_total.inc();
    }
}

impl Drop for RequestGuard {
    fn drop(&mut self) {
        self.record_metrics();
87
        if !self.freed {
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
            let chooser = self.chooser.clone();
            let context_id = self.context_id.clone();
            let Ok(handle) = tokio::runtime::Handle::try_current() else {
                tracing::warn!("No tokio runtime for drop guard free of request {context_id}");
                return;
            };
            handle.spawn(async move {
                if let Err(e) = chooser.free(&context_id).await {
                    tracing::warn!("Failed to free request {context_id} (drop guard): {e}");
                }
            });
        }
    }
}

103
104
105
106
107
108
109
110
111
112
impl KvPushRouter {
    pub fn new(
        inner: PushRouter<PreprocessedRequest, Annotated<LLMEngineOutput>>,
        chooser: Arc<KvRouter>,
    ) -> Self {
        KvPushRouter { inner, chooser }
    }

    /// Select a worker for the request, either using a preselected worker or finding the best match.
    ///
113
    /// When `is_query_only` is false, this also registers the request with the scheduler via `add_request`.
114
115
116
117
118
119
120
121
122
    async fn select_worker(
        &self,
        context_id: &str,
        request: &PreprocessedRequest,
        phase: RequestPhase,
        is_query_only: bool,
    ) -> Result<WorkerSelection, Error> {
        let routing = request.routing.as_ref();
        let lora_name = routing.and_then(|r| r.lora_name.clone());
123
        let priority_jump = routing.and_then(|r| r.priority_jump).unwrap_or(0.0);
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
        let dp_rank = routing.and_then(|r| r.dp_rank).unwrap_or(0);
        let expected_output_tokens = routing.and_then(|r| r.expected_output_tokens);

        // Get pre-selected worker based on phase, with backend_instance_id as fallback
        let preselected_id = match phase {
            RequestPhase::Prefill => {
                routing.and_then(|r| r.prefill_worker_id.or(r.backend_instance_id))
            }
            RequestPhase::Decode => {
                routing.and_then(|r| r.decode_worker_id.or(r.backend_instance_id))
            }
            RequestPhase::Aggregated => routing.and_then(|r| r.backend_instance_id),
        };

        let Some(id) = preselected_id else {
            let (best_worker, overlap_amount) = self
                .chooser
                .find_best_match(
                    Some(context_id),
                    &request.token_ids,
                    request.router_config_override.as_ref(),
                    !is_query_only,
                    lora_name,
147
                    priority_jump,
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
                )
                .await?;

            return Ok(WorkerSelection {
                instance_id: best_worker.worker_id,
                dp_rank: best_worker.dp_rank,
                overlap_amount,
            });
        };

        tracing::debug!(
            worker_id = id,
            dp_rank = dp_rank,
            ?phase,
            "Routing to specified worker"
        );

        let worker = WorkerWithDpRank::new(id, dp_rank);
        let overlap_blocks = self
            .chooser
            .get_overlap_blocks(&request.token_ids, worker)
            .await?;

171
        if !is_query_only {
172
173
174
175
176
177
178
179
            self.chooser
                .add_request(
                    context_id.to_string(),
                    &request.token_ids,
                    overlap_blocks,
                    expected_output_tokens,
                    worker,
                    lora_name,
180
                    request.router_config_override.as_ref(),
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
                )
                .await;
        } else {
            tracing::debug!(
                request_id = %context_id,
                worker_id = id,
                dp_rank = dp_rank,
                "Skipping add_request - query or handled externally"
            );
        }

        Ok(WorkerSelection {
            instance_id: id,
            dp_rank,
            overlap_amount: overlap_blocks,
        })
    }
}

#[async_trait]
impl AsyncEngine<SingleIn<PreprocessedRequest>, ManyOut<Annotated<LLMEngineOutput>>, Error>
    for KvPushRouter
{
    /// Generate method that handles KV-aware routing with three distinct behaviors:
    ///
    /// 1. **If `query_instance_id` annotation is set**:
    ///    - Returns the best matching worker ID without routing the request
    ///    - Does NOT update any router local states
    ///    - Response includes worker_instance_id and token_data annotations
    ///
    /// 2. **If `backend_instance_id` is set in the request**:
    ///    - Routes directly to the specified backend instance
    ///    - DOES update router states to track this request (unless query_instance_id is also set)
    ///    - Bypasses the normal KV matching logic
    ///
    /// 3. **If neither are set (default behavior)**:
    ///    - Finds the best worker based on KV cache overlap
    ///    - Updates router states to track the request
    ///    - Routes to the selected worker
    ///
    /// The router state updates include tracking active sequences and managing
    /// prefill/completion lifecycle for proper KV cache management.
    async fn generate(
        &self,
        request: SingleIn<PreprocessedRequest>,
    ) -> Result<ManyOut<Annotated<LLMEngineOutput>>, Error> {
        // Extract context ID for request tracking
        let context_id = request.context().id().to_string();

        // Simple query-only detection: presence of query_instance_id annotation means query-only mode
        let is_query_only = request.get_annotation_value("query_instance_id").is_some();

        // Get phase from tracker (defaults to Aggregated if no tracker or phase not set)
        let phase = request
            .tracker
            .as_ref()
            .map(|t| t.phase())
            .unwrap_or(RequestPhase::Aggregated);

        let block_size = self.chooser.block_size() as usize;
        let selection = self
242
            .select_worker(&context_id, &request, phase, is_query_only)
243
            .instrument(tracing::info_span!("kv_router.select_worker"))
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
            .await?;
        let WorkerSelection {
            instance_id,
            dp_rank,
            overlap_amount,
        } = selection;

        // In approximate mode (use_kv_events=false), record the routing decision
        // so the indexer can track cache state based on routing decisions.
        // This covers both pre-selected workers and find_best_match selections.
        if !is_query_only && !self.chooser.kv_router_config().use_kv_events {
            let worker = WorkerWithDpRank::new(instance_id, dp_rank);
            let mut tokens_with_hashes =
                TokensWithHashes::new(request.token_ids.clone(), self.chooser.block_size());
            if let Err(e) = self
                .chooser
                .indexer()
                .process_routing_decision_for_request(&mut tokens_with_hashes, worker)
                .await
            {
                tracing::warn!(
                    request_id = %context_id,
                    worker_id = instance_id,
                    dp_rank = dp_rank,
                    error = %e,
                    "Failed to record routing decision in approximate mode"
                );
            }
        }

274
275
276
        // Record routing metrics on tracker and observe ISL + prefill start.
        let request_metrics =
            RouterRequestMetrics::from_component(self.chooser.client().endpoint.component());
277
278
279
        if let Some(ref tracker) = request.tracker {
            let isl_blocks = request.token_ids.len().div_ceil(block_size);
            tracker.record_kv_hit(overlap_amount, isl_blocks);
280
281
282
283
            tracker.record_isl(
                request.token_ids.len(),
                overlap_amount as usize * block_size,
            );
284
285
            tracker.record_worker_full(instance_id, dp_rank, self.chooser.worker_type());
        }
286
287
288
        request_metrics
            .input_sequence_tokens
            .observe(request.token_ids.len() as f64);
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319

        // Handle query-only requests: early return with worker info
        if is_query_only {
            let stream_context = request.context().clone();
            let worker_id_info = request.tracker.as_ref().and_then(|t| t.get_worker_info());

            tracing::trace!(
                ?phase,
                worker_id = instance_id,
                ?worker_id_info,
                "Returning worker selection (query-only mode)"
            );

            let output = LLMEngineOutput {
                disaggregated_params: Some(json!({
                    "worker_id": worker_id_info,
                    "token_ids": request.token_ids
                })),
                ..Default::default()
            };
            let response = Annotated::from_data(output);
            let stream = stream::iter(vec![response]);
            return Ok(ResponseStream::new(Box::pin(stream), stream_context));
        }

        // Route to worker
        let isl_tokens = request.token_ids.len();
        let expected_output_tokens = request
            .routing
            .as_ref()
            .and_then(|r| r.expected_output_tokens);
320
        let track_output_blocks = self.chooser.kv_router_config().router_track_output_blocks;
321
        let tracker = request.tracker.clone();
322
323
324
325
326

        let (mut backend_input, context) = request.into_parts();
        backend_input.routing_mut().dp_rank = Some(dp_rank);
        let updated_request = context.map(|_| backend_input);

327
328
329
330
331
        // Record prefill start right before pushing to backend (OnceLock: first call wins).
        if let Some(ref tracker) = tracker {
            tracker.record_prefill_start();
        }

332
        let chooser = self.chooser.clone();
333
334
335
336
337
338
339
340
341
342
343
344
        let mut response_stream = self
            .inner
            .direct(updated_request, instance_id)
            .instrument(tracing::info_span!(
                "kv_router.route_request",
                request_id = %context_id,
                worker_id = instance_id,
                dp_rank = dp_rank,
                overlap_blocks = overlap_amount,
                phase = ?phase,
            ))
            .await?;
345
346
347
        let stream_context = response_stream.context();
        let context_for_monitoring = stream_context.clone();

348
349
350
        // Wrap stream with lifecycle management (mark_prefill_completed, free).
        // RequestGuard ensures free() and final metrics run even if the stream is
        // dropped without being polled to completion (e.g., client disconnect).
351
        let wrapped_stream = Box::pin(async_stream::stream! {
352
353
354
355
356
357
358
359
360
            let mut guard = RequestGuard {
                chooser: chooser.clone(),
                context_id: context_id.clone(),
                tracker: tracker.clone(),
                request_metrics: request_metrics.clone(),
                cumulative_osl: 0,
                metrics_recorded: false,
                freed: false,
            };
361
            let mut prefill_marked = false;
362
            let mut first_token_recorded = false;
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
            let mut current_total_blocks = isl_tokens.div_ceil(block_size);

            loop {
                tokio::select! {
                    biased;

                    _ = context_for_monitoring.stopped() => {
                        tracing::debug!("Request {context_id} cancelled, ending stream");
                        break;
                    }

                    item = response_stream.next() => {
                        let Some(item) = item else {
                            break;
                        };

379
380
381
                        if !prefill_marked {
                            // Only mark prefill completed when we receive actual tokens,
                            // not empty bootstrap info (token_ids: []) from disaggregated prefill
382
383
384
385
386
387
388
389
390
391
392
                            let has_tokens = item.data.as_ref()
                                .map(|d| !d.token_ids.is_empty())
                                .unwrap_or(false);
                            if has_tokens {
                                if let Err(e) = chooser.mark_prefill_completed(&context_id).await {
                                    tracing::warn!("Failed to mark prefill completed for request {context_id}: {e}");
                                }
                                prefill_marked = true;
                            }
                        }

393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
                        let new_tokens = item.data.as_ref()
                            .map(|d| d.token_ids.len())
                            .unwrap_or(0);

                        if !first_token_recorded && new_tokens > 0 {
                            if let Some(ref tracker) = tracker {
                                tracker.record_first_token();
                                if let Some(ttft) = tracker.ttft_ms() {
                                    request_metrics
                                        .time_to_first_token_seconds
                                        .observe(ttft / 1000.0);
                                }
                            }
                            first_token_recorded = true;
                        }

409
                        guard.cumulative_osl += new_tokens;
410

411
                        if track_output_blocks {
412
                            let new_total_blocks = (isl_tokens + guard.cumulative_osl).div_ceil(block_size);
413
414
                            if new_total_blocks > current_total_blocks {
                                let decay_fraction = expected_output_tokens.map(|eot| {
415
                                    (1.0 - (guard.cumulative_osl as f64 / eot.max(1) as f64)).max(0.0)
416
417
418
419
420
421
                                });
                                if let Err(e) = chooser.add_output_block(&context_id, decay_fraction).await {
                                    tracing::warn!(
                                        "Failed to add output block for request {context_id}: {e}"
                                    );
                                }
422
423

                                if let Some(ref tracker) = tracker {
424
                                    tracker.record_osl(guard.cumulative_osl);
425
426
427
428
429
430
431
432
                                    tracker.record_finish();
                                    if let Some(avg_itl) = tracker.avg_itl_ms() {
                                        request_metrics
                                            .inter_token_latency_seconds
                                            .observe(avg_itl / 1000.0);
                                    }
                                }

433
434
435
436
437
438
439
440
441
                                current_total_blocks = new_total_blocks;
                            }
                        }

                        yield item;
                    }
                }
            }

442
            guard.finish().await;
443
444
445
446
        });
        Ok(ResponseStream::new(wrapped_stream, stream_context))
    }
}
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491

/// A direct routing wrapper for `RouterMode::Direct`.
///
/// This wraps a `PushRouter` and reads worker IDs from each request's routing hints,
/// then routes directly to the specified worker. Used when an external router
/// (e.g., EPP) handles worker selection.
pub struct DirectRoutingRouter {
    inner: PushRouter<PreprocessedRequest, Annotated<LLMEngineOutput>>,
}

impl DirectRoutingRouter {
    pub fn new(inner: PushRouter<PreprocessedRequest, Annotated<LLMEngineOutput>>) -> Self {
        DirectRoutingRouter { inner }
    }

    /// Extract worker ID from request routing hints.
    /// Returns an error if no worker ID is found (required in direct routing mode).
    fn get_worker_id(request: &PreprocessedRequest) -> Result<u64, Error> {
        let routing = request.routing.as_ref();
        let worker_id = routing.and_then(|r| r.decode_worker_id.or(r.backend_instance_id));

        worker_id.ok_or_else(|| {
            anyhow::anyhow!(
                "Worker ID required (--direct-route) but none found in request. \
                 Expected decode_worker_id or backend_instance_id to be set by external router (e.g., EPP)."
            )
        })
    }
}

#[async_trait]
impl AsyncEngine<SingleIn<PreprocessedRequest>, ManyOut<Annotated<LLMEngineOutput>>, Error>
    for DirectRoutingRouter
{
    async fn generate(
        &self,
        request: SingleIn<PreprocessedRequest>,
    ) -> Result<ManyOut<Annotated<LLMEngineOutput>>, Error> {
        let worker_id = Self::get_worker_id(&request)?;

        tracing::debug!(worker_id = worker_id, "Direct routing to specified worker");

        self.inner.direct(request, worker_id).await
    }
}