"tests/vscode:/vscode.git/clone" did not exist on "552b26293621e586687a523970f554746a5db387"
thread_pool.rs 9.81 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
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
242
243
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
274
275
276
277
278
279
// SPDX-FileCopyrightText: Copyright (c) 2024-2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
// SPDX-License-Identifier: Apache-2.0

use std::{
    sync::{Arc, Mutex, atomic::AtomicUsize},
    thread::JoinHandle,
    time::Duration,
};

use async_trait::async_trait;
use dashmap::DashMap;
use rustc_hash::FxBuildHasher;
use tokio::sync::oneshot;

use super::{KvIndexerInterface, KvRouterError, SyncIndexer, WorkerTask};
use crate::protocols::*;

/// Generic wrapper that provides [`KvIndexerInterface`] for any [`SyncIndexer`] backend.
///
/// Spawns N OS threads for processing write events (sticky-routed by WorkerId).
/// Read operations (find_matches) are executed inline on the caller's thread,
/// avoiding channel overhead and allowing reads to scale with callers.
///
/// # Architecture
///
/// ```text
///                                       +------------------------------------+
///                                       |     N Worker Threads (OS threads)  |
///                                       |                                    |
///  worker_event_channels[0] ----------> |   Thread 0: blocking recv loop     |
///  worker_event_channels[1] ----------> |   Thread 1: blocking recv loop     |
///  worker_event_channels[N] ----------> |   Thread N: blocking recv loop     |
///                                       |                                    |
///  find_matches() ---(inline)---------> |   Arc<T: SyncIndexer>              |
///                                       |   (shared, thread-safe)            |
///                                       +------------------------------------+
/// ```
pub struct ThreadPoolIndexer<T: SyncIndexer> {
    /// Shared backend - thread-safe via internal locking.
    backend: Arc<T>,

    /// Maps WorkerId to worker thread index for sticky routing.
    worker_assignments: DashMap<WorkerId, usize, FxBuildHasher>,
    /// Counter for round-robin assignment of new WorkerIds.
    worker_assignment_count: AtomicUsize,

    /// Channels to send tasks to worker threads (one per thread).
    /// Sending `WorkerTask::Terminate` signals the thread to shut down.
    worker_event_channels: Vec<flume::Sender<WorkerTask>>,

    /// Number of worker threads.
    num_workers: usize,
    /// Block size for KV cache.
    kv_block_size: u32,

    /// Handles to worker threads for joining on shutdown.
    thread_handles: Mutex<Vec<JoinHandle<()>>>,
}

impl<T: SyncIndexer> ThreadPoolIndexer<T> {
    /// Create a new `ThreadPoolIndexer` wrapping the given backend.
    ///
    /// Spawns `num_workers` OS threads, each running a blocking recv loop
    /// that processes events by calling `backend.apply_event()`.
    ///
    /// # Arguments
    ///
    /// * `backend` - The thread-safe data structure to wrap
    /// * `num_workers` - Number of worker threads for event processing
    /// * `kv_block_size` - Block size for KV cache
    ///
    /// # Panics
    ///
    /// Panics if `num_workers` is 0.
    pub fn new(backend: T, num_workers: usize, kv_block_size: u32) -> Self {
        assert!(num_workers > 0, "Number of workers must be greater than 0");

        let backend = Arc::new(backend);
        let mut worker_event_senders = Vec::new();
        let mut thread_handles = Vec::new();
        for _ in 0..num_workers {
            let (event_sender, event_receiver) = flume::unbounded::<WorkerTask>();
            worker_event_senders.push(event_sender);

            let backend = Arc::clone(&backend);

            let handle = std::thread::spawn(move || {
                backend.worker(event_receiver).unwrap();
            });
            thread_handles.push(handle);
        }

        Self {
            backend,
            worker_assignments: DashMap::with_hasher(FxBuildHasher),
            worker_assignment_count: AtomicUsize::new(0),
            worker_event_channels: worker_event_senders,
            num_workers,
            kv_block_size,
            thread_handles: Mutex::new(thread_handles),
        }
    }

    /// Get a reference to the underlying backend.
    pub fn backend(&self) -> &T {
        &self.backend
    }

    /// Wait for all worker channels to drain.
    ///
    /// Used primarily for testing and benchmarking to ensure all queued events
    /// have been picked up by workers before checking results.
    pub async fn flush(&self) {
        loop {
            let all_empty = self.worker_event_channels.iter().all(|ch| ch.is_empty());

            if all_empty {
                break;
            }

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

#[async_trait]
impl<T: SyncIndexer> KvIndexerInterface for ThreadPoolIndexer<T> {
    async fn find_matches(
        &self,
        sequence: Vec<LocalBlockHash>,
    ) -> Result<OverlapScores, KvRouterError> {
        // Execute inline on caller's thread - no channel dispatch
        Ok(self.backend.find_matches(&sequence, false))
    }

    async fn find_matches_for_request(
        &self,
        tokens: &[u32],
        lora_name: Option<&str>,
    ) -> Result<OverlapScores, KvRouterError> {
        let sequence = compute_block_hash_for_seq(tokens, self.kv_block_size, None, lora_name);
        Ok(self.backend.find_matches(&sequence, false))
    }

    async fn apply_event(&self, event: RouterEvent) {
        let worker_id = event.worker_id;

        // Get or assign worker thread index using sticky round-robin
        let thread_idx = *self.worker_assignments.entry(worker_id).or_insert_with(|| {
            let idx = self
                .worker_assignment_count
                .fetch_add(1, std::sync::atomic::Ordering::Relaxed);
            idx % self.num_workers
        });

        // Send event to the assigned worker thread
        if let Err(e) = self.worker_event_channels[thread_idx].send(WorkerTask::Event(event)) {
            tracing::error!(
                "Failed to send event to worker thread {}: {:?}",
                thread_idx,
                e
            );
        }
    }

    async fn remove_worker(&self, worker_id: WorkerId) {
        // Route to the worker's assigned thread (if any), otherwise broadcast
        // to all threads since dp_ranks may be spread across threads.
        let thread_idx = self.worker_assignments.get(&worker_id).map(|v| *v);
        match thread_idx {
            Some(idx) => {
                if let Err(e) =
                    self.worker_event_channels[idx].send(WorkerTask::RemoveWorker(worker_id))
                {
                    tracing::error!(
                        "Failed to send RemoveWorker to worker thread {}: {:?}",
                        idx,
                        e
                    );
                }
            }
            None => {
                // Worker was never assigned a thread - broadcast to all
                for channel in &self.worker_event_channels {
                    let _ = channel.send(WorkerTask::RemoveWorker(worker_id));
                }
            }
        }
    }

    async fn remove_worker_dp_rank(&self, worker_id: WorkerId, dp_rank: DpRank) {
        // Broadcast to all threads — the dp_rank may be on any thread.
        // Don't remove from worker_assignments since other dp_ranks may still exist.
        for channel in &self.worker_event_channels {
            let _ = channel.send(WorkerTask::RemoveWorkerDpRank(worker_id, dp_rank));
        }
    }

    fn shutdown(&self) {
        // Send shutdown signal to all worker threads
        for channel in self.worker_event_channels.iter() {
            let _ = channel.send(WorkerTask::Terminate);
        }

        // Take ownership of thread handles and join them
        let handles = std::mem::take(
            &mut *self
                .thread_handles
                .lock()
                .expect("thread_handles mutex poisoned"),
        );
        for handle in handles {
            if let Err(e) = handle.join() {
                tracing::error!("Worker thread panicked during shutdown: {:?}", e);
            }
        }
    }

    async fn dump_events(&self) -> Result<Vec<RouterEvent>, KvRouterError> {
        // Fast path: backend can dump directly from shared state (e.g. ConcurrentRadixTree).
        if let Some(events) = self.backend.dump_events() {
            return Ok(events);
        }

        // Slow path: collect from each worker thread via channel (e.g. PositionalIndexer).
        let mut receivers = Vec::new();

        for channel in &self.worker_event_channels {
            let (resp_tx, resp_rx) = oneshot::channel::<anyhow::Result<Vec<RouterEvent>>>();
            let dump_req = WorkerTask::DumpEvents(resp_tx);

            channel
                .send(dump_req)
                .map_err(|_| KvRouterError::IndexerOffline)?;
            receivers.push(resp_rx);
        }

        let mut event_id_counter = 0;

        let mut all_events = Vec::new();

        for resp_rx in receivers {
            let mut events = resp_rx
                .await
                .map_err(|_| KvRouterError::IndexerDroppedRequest)?
                .map_err(|_| KvRouterError::IndexerOffline)?;
            for event in &mut events {
                event.event.event_id = event_id_counter;
                event_id_counter += 1;
            }
            all_events.extend(events);
        }

        Ok(all_events)
    }

    async fn process_routing_decision_for_request(
        &self,
        _tokens_with_hashes: &mut TokensWithHashes,
        _worker: WorkerWithDpRank,
    ) -> Result<(), KvRouterError> {
        // No-op: pruning not supported in ThreadPoolIndexer
        Ok(())
    }

    async fn flush(&self) -> usize {
        let curr_size: usize = self.worker_event_channels.iter().map(|ch| ch.len()).sum();
        loop {
            let all_empty = self.worker_event_channels.iter().all(|ch| ch.is_empty());

            if all_empty {
                break;
            }

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