ruvector_sona/
trajectory.rs

1//! Lock-free trajectory buffer for SONA
2//!
3//! Provides efficient, non-blocking trajectory recording during inference.
4
5use crate::types::{QueryTrajectory, TrajectoryStep};
6use crossbeam::queue::ArrayQueue;
7use std::sync::atomic::{AtomicU64, Ordering};
8use std::time::Instant;
9
10/// Lock-free trajectory buffer using crossbeam ArrayQueue
11pub struct TrajectoryBuffer {
12    /// Internal queue
13    buffer: ArrayQueue<QueryTrajectory>,
14    /// Capacity
15    capacity: usize,
16    /// Count of dropped trajectories
17    dropped: AtomicU64,
18    /// Total trajectories seen
19    total_seen: AtomicU64,
20}
21
22impl TrajectoryBuffer {
23    /// Create new buffer with capacity
24    pub fn new(capacity: usize) -> Self {
25        Self {
26            buffer: ArrayQueue::new(capacity),
27            capacity,
28            dropped: AtomicU64::new(0),
29            total_seen: AtomicU64::new(0),
30        }
31    }
32
33    /// Record trajectory (non-blocking)
34    ///
35    /// Returns true if recorded, false if buffer full
36    pub fn record(&self, trajectory: QueryTrajectory) -> bool {
37        self.total_seen.fetch_add(1, Ordering::Relaxed);
38
39        match self.buffer.push(trajectory) {
40            Ok(()) => true,
41            Err(_) => {
42                self.dropped.fetch_add(1, Ordering::Relaxed);
43                false
44            }
45        }
46    }
47
48    /// Try to pop single trajectory
49    pub fn pop(&self) -> Option<QueryTrajectory> {
50        self.buffer.pop()
51    }
52
53    /// Drain all trajectories
54    pub fn drain(&self) -> Vec<QueryTrajectory> {
55        let mut result = Vec::with_capacity(self.len());
56        while let Some(t) = self.buffer.pop() {
57            result.push(t);
58        }
59        result
60    }
61
62    /// Drain up to n trajectories
63    pub fn drain_n(&self, n: usize) -> Vec<QueryTrajectory> {
64        let mut result = Vec::with_capacity(n.min(self.len()));
65        for _ in 0..n {
66            match self.buffer.pop() {
67                Some(t) => result.push(t),
68                None => break,
69            }
70        }
71        result
72    }
73
74    /// Get current length
75    pub fn len(&self) -> usize {
76        self.buffer.len()
77    }
78
79    /// Check if empty
80    pub fn is_empty(&self) -> bool {
81        self.buffer.is_empty()
82    }
83
84    /// Check if full
85    pub fn is_full(&self) -> bool {
86        self.buffer.is_full()
87    }
88
89    /// Get capacity
90    pub fn capacity(&self) -> usize {
91        self.capacity
92    }
93
94    /// Get dropped count
95    pub fn dropped_count(&self) -> u64 {
96        self.dropped.load(Ordering::Relaxed)
97    }
98
99    /// Get total seen count
100    pub fn total_seen(&self) -> u64 {
101        self.total_seen.load(Ordering::Relaxed)
102    }
103
104    /// Get success rate
105    pub fn success_rate(&self) -> f64 {
106        let total = self.total_seen.load(Ordering::Relaxed);
107        let dropped = self.dropped.load(Ordering::Relaxed);
108        if total == 0 {
109            1.0
110        } else {
111            (total - dropped) as f64 / total as f64
112        }
113    }
114
115    /// Reset statistics (not the buffer contents)
116    pub fn reset_stats(&self) {
117        self.dropped.store(0, Ordering::Relaxed);
118        self.total_seen.store(0, Ordering::Relaxed);
119    }
120}
121
122/// Builder for constructing trajectories during inference
123pub struct TrajectoryBuilder {
124    /// Trajectory ID
125    id: u64,
126    /// Query embedding
127    query_embedding: Vec<f32>,
128    /// Steps collected
129    steps: Vec<TrajectoryStep>,
130    /// Start time
131    start_time: Instant,
132    /// Model route
133    model_route: Option<String>,
134    /// Context IDs
135    context_ids: Vec<String>,
136}
137
138impl TrajectoryBuilder {
139    /// Start new trajectory
140    pub fn new(id: u64, query_embedding: Vec<f32>) -> Self {
141        Self {
142            id,
143            query_embedding,
144            steps: Vec::with_capacity(16),
145            start_time: Instant::now(),
146            model_route: None,
147            context_ids: Vec::new(),
148        }
149    }
150
151    /// Add execution step
152    pub fn add_step(&mut self, activations: Vec<f32>, attention_weights: Vec<f32>, reward: f32) {
153        let step_idx = self.steps.len();
154        self.steps.push(TrajectoryStep::new(
155            activations,
156            attention_weights,
157            reward,
158            step_idx,
159        ));
160    }
161
162    /// Add step with layer name
163    pub fn add_named_step(&mut self, name: &str, activations: Vec<f32>, attention_weights: Vec<f32>, reward: f32) {
164        let step_idx = self.steps.len();
165        self.steps.push(
166            TrajectoryStep::new(activations, attention_weights, reward, step_idx)
167                .with_layer(name)
168        );
169    }
170
171    /// Set model route
172    pub fn set_model_route(&mut self, route: &str) {
173        self.model_route = Some(route.to_string());
174    }
175
176    /// Add context ID
177    pub fn add_context(&mut self, context_id: &str) {
178        self.context_ids.push(context_id.to_string());
179    }
180
181    /// Get current step count
182    pub fn step_count(&self) -> usize {
183        self.steps.len()
184    }
185
186    /// Get elapsed time
187    pub fn elapsed(&self) -> std::time::Duration {
188        self.start_time.elapsed()
189    }
190
191    /// Finalize and build trajectory
192    pub fn build(self, final_quality: f32) -> QueryTrajectory {
193        let latency_us = self.start_time.elapsed().as_micros() as u64;
194
195        QueryTrajectory {
196            id: self.id,
197            query_embedding: self.query_embedding,
198            steps: self.steps,
199            final_quality,
200            latency_us,
201            model_route: self.model_route,
202            context_ids: self.context_ids,
203        }
204    }
205
206    /// Build with explicit latency
207    pub fn build_with_latency(self, final_quality: f32, latency_us: u64) -> QueryTrajectory {
208        QueryTrajectory {
209            id: self.id,
210            query_embedding: self.query_embedding,
211            steps: self.steps,
212            final_quality,
213            latency_us,
214            model_route: self.model_route,
215            context_ids: self.context_ids,
216        }
217    }
218}
219
220/// Trajectory ID generator
221pub struct TrajectoryIdGen {
222    counter: AtomicU64,
223}
224
225impl TrajectoryIdGen {
226    /// Create new generator
227    pub fn new() -> Self {
228        Self {
229            counter: AtomicU64::new(0),
230        }
231    }
232
233    /// Create with starting ID
234    pub fn with_start(start: u64) -> Self {
235        Self {
236            counter: AtomicU64::new(start),
237        }
238    }
239
240    /// Generate next ID
241    pub fn next(&self) -> u64 {
242        self.counter.fetch_add(1, Ordering::Relaxed)
243    }
244
245    /// Get current value without incrementing
246    pub fn current(&self) -> u64 {
247        self.counter.load(Ordering::Relaxed)
248    }
249}
250
251impl Default for TrajectoryIdGen {
252    fn default() -> Self {
253        Self::new()
254    }
255}
256
257#[cfg(test)]
258mod tests {
259    use super::*;
260
261    #[test]
262    fn test_buffer_basic_ops() {
263        let buffer = TrajectoryBuffer::new(10);
264
265        assert!(buffer.is_empty());
266        assert_eq!(buffer.capacity(), 10);
267
268        let trajectory = QueryTrajectory::new(1, vec![0.1, 0.2]);
269        assert!(buffer.record(trajectory));
270
271        assert_eq!(buffer.len(), 1);
272        assert!(!buffer.is_empty());
273    }
274
275    #[test]
276    fn test_buffer_overflow() {
277        let buffer = TrajectoryBuffer::new(3);
278
279        for i in 0..5 {
280            let trajectory = QueryTrajectory::new(i, vec![0.1]);
281            buffer.record(trajectory);
282        }
283
284        assert_eq!(buffer.len(), 3);
285        assert_eq!(buffer.dropped_count(), 2);
286        assert_eq!(buffer.total_seen(), 5);
287    }
288
289    #[test]
290    fn test_buffer_drain() {
291        let buffer = TrajectoryBuffer::new(10);
292
293        for i in 0..5 {
294            let trajectory = QueryTrajectory::new(i, vec![0.1]);
295            buffer.record(trajectory);
296        }
297
298        let drained = buffer.drain();
299        assert_eq!(drained.len(), 5);
300        assert!(buffer.is_empty());
301    }
302
303    #[test]
304    fn test_buffer_drain_n() {
305        let buffer = TrajectoryBuffer::new(10);
306
307        for i in 0..5 {
308            let trajectory = QueryTrajectory::new(i, vec![0.1]);
309            buffer.record(trajectory);
310        }
311
312        let partial = buffer.drain_n(3);
313        assert_eq!(partial.len(), 3);
314        assert_eq!(buffer.len(), 2);
315    }
316
317    #[test]
318    fn test_builder() {
319        let mut builder = TrajectoryBuilder::new(42, vec![0.1, 0.2, 0.3]);
320
321        builder.add_step(vec![0.5], vec![0.4, 0.6], 0.7);
322        builder.add_step(vec![0.6], vec![0.3, 0.7], 0.8);
323        builder.set_model_route("llama-7b");
324        builder.add_context("ctx-123");
325
326        assert_eq!(builder.step_count(), 2);
327
328        let trajectory = builder.build(0.85);
329
330        assert_eq!(trajectory.id, 42);
331        assert_eq!(trajectory.steps.len(), 2);
332        assert_eq!(trajectory.final_quality, 0.85);
333        assert_eq!(trajectory.model_route, Some("llama-7b".to_string()));
334        assert!(trajectory.latency_us > 0);
335    }
336
337    #[test]
338    fn test_id_generator() {
339        let gen = TrajectoryIdGen::new();
340
341        assert_eq!(gen.next(), 0);
342        assert_eq!(gen.next(), 1);
343        assert_eq!(gen.next(), 2);
344        assert_eq!(gen.current(), 3);
345    }
346
347    #[test]
348    fn test_success_rate() {
349        let buffer = TrajectoryBuffer::new(2);
350
351        for i in 0..4 {
352            buffer.record(QueryTrajectory::new(i, vec![]));
353        }
354
355        assert!((buffer.success_rate() - 0.5).abs() < 1e-6);
356    }
357}