vex_queue/
memory.rs

1//! In-memory queue implementation with priority scheduling
2
3use async_trait::async_trait;
4use chrono::{DateTime, Duration, Utc};
5use std::cmp::Ordering;
6use std::collections::{BinaryHeap, HashMap};
7use std::sync::Arc;
8use tokio::sync::RwLock;
9use uuid::Uuid;
10
11use crate::backend::{QueueBackend, QueueError};
12use crate::job::{JobEntry, JobStatus};
13
14/// Priority entry for the heap - orders by run_at time (earliest first)
15#[derive(Debug, Clone, Eq, PartialEq)]
16struct PriorityEntry {
17    run_at: DateTime<Utc>,
18    id: Uuid,
19}
20
21impl Ord for PriorityEntry {
22    fn cmp(&self, other: &Self) -> Ordering {
23        // Reverse order: earlier run_at = higher priority
24        other.run_at.cmp(&self.run_at)
25    }
26}
27
28impl PartialOrd for PriorityEntry {
29    fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
30        Some(self.cmp(other))
31    }
32}
33
34#[derive(Debug, Default)]
35pub struct MemoryQueue {
36    jobs: Arc<RwLock<HashMap<Uuid, JobEntry>>>,
37    queue: Arc<RwLock<BinaryHeap<PriorityEntry>>>,
38}
39
40impl MemoryQueue {
41    pub fn new() -> Self {
42        Self::default()
43    }
44}
45
46#[async_trait]
47impl QueueBackend for MemoryQueue {
48    async fn enqueue(
49        &self,
50        tenant_id: &str,
51        job_type: &str,
52        payload: serde_json::Value,
53        delay_secs: Option<u64>,
54    ) -> Result<Uuid, QueueError> {
55        let id = Uuid::new_v4();
56        let now = Utc::now();
57        let run_at = now + Duration::seconds(delay_secs.unwrap_or(0) as i64);
58
59        let entry = JobEntry {
60            id,
61            tenant_id: tenant_id.to_string(),
62            job_type: job_type.to_string(),
63            payload,
64            status: JobStatus::Pending,
65            created_at: now,
66            run_at,
67            attempts: 0,
68            last_error: None,
69        };
70
71        let mut jobs = self.jobs.write().await;
72        jobs.insert(id, entry);
73
74        let mut queue = self.queue.write().await;
75        queue.push(PriorityEntry { run_at, id });
76
77        Ok(id)
78    }
79
80    async fn dequeue(&self) -> Result<Option<JobEntry>, QueueError> {
81        let mut queue = self.queue.write().await;
82        let now = Utc::now();
83
84        // Peek at the earliest job
85        if let Some(entry) = queue.peek() {
86            if entry.run_at <= now {
87                // Job is ready - pop it
88                let entry = queue.pop().unwrap();
89                let mut jobs = self.jobs.write().await;
90
91                if let Some(job) = jobs.get_mut(&entry.id) {
92                    // Only process if still pending
93                    if job.status == JobStatus::Pending {
94                        job.status = JobStatus::Running;
95                        return Ok(Some(job.clone()));
96                    }
97                }
98            }
99        }
100
101        Ok(None)
102    }
103
104    async fn update_status(
105        &self,
106        id: Uuid,
107        status: JobStatus,
108        error: Option<String>,
109        delay_secs: Option<u64>,
110    ) -> Result<(), QueueError> {
111        let mut jobs = self.jobs.write().await;
112
113        if let Some(job) = jobs.get_mut(&id) {
114            job.status = status;
115            job.last_error = error;
116            job.attempts += if matches!(status, JobStatus::Failed(_)) {
117                1
118            } else {
119                0
120            };
121
122            if let JobStatus::Failed(retry_count) = status {
123                // Use provided delay or fall back to exponential backoff
124                let backoff_secs = delay_secs.unwrap_or_else(|| {
125                    2_u64.pow(retry_count.min(6)) // Default: exponential, cap at ~1 min
126                });
127                let run_at = Utc::now() + Duration::seconds(backoff_secs as i64);
128                job.run_at = run_at;
129                job.status = JobStatus::Pending; // Reset to pending for retry
130
131                tracing::debug!(
132                    job_id = %id,
133                    retry_count = retry_count,
134                    delay_secs = backoff_secs,
135                    "Re-queuing job with backoff"
136                );
137
138                let mut queue = self.queue.write().await;
139                queue.push(PriorityEntry { run_at, id });
140            }
141        }
142
143        Ok(())
144    }
145
146    async fn get_status(&self, id: Uuid) -> Result<JobStatus, QueueError> {
147        let jobs = self.jobs.read().await;
148        jobs.get(&id).map(|j| j.status).ok_or(QueueError::NotFound)
149    }
150}
151
152#[cfg(test)]
153mod tests {
154    use super::*;
155    use serde_json::json;
156
157    #[tokio::test]
158    async fn test_enqueue_dequeue() {
159        let queue = MemoryQueue::new();
160        let payload = json!({ "foo": "bar" });
161
162        // Enqueue
163        let id = queue
164            .enqueue("test-tenant", "test_job", payload.clone(), None)
165            .await
166            .unwrap();
167
168        let status = queue.get_status(id).await.unwrap();
169        assert_eq!(status, JobStatus::Pending);
170
171        // Dequeue
172        let job = queue.dequeue().await.unwrap().expect("Should have job");
173        assert_eq!(job.id, id);
174        assert_eq!(job.job_type, "test_job");
175        assert_eq!(job.status, JobStatus::Running);
176
177        // Dequeue empty
178        let empty = queue.dequeue().await.unwrap();
179        assert!(empty.is_none());
180    }
181
182    #[tokio::test]
183    async fn test_delayed_job() {
184        let queue = MemoryQueue::new();
185        let payload = json!({});
186
187        // Enqueue with delay
188        let id = queue
189            .enqueue("test-tenant", "delayed", payload, Some(1))
190            .await
191            .unwrap();
192
193        // Should be none immediately
194        let job = queue.dequeue().await.unwrap();
195        assert!(job.is_none());
196
197        // Wait
198        tokio::time::sleep(std::time::Duration::from_millis(1100)).await;
199
200        // Should be available (Note: MemoryQueue checks run_at > now)
201        let job = queue
202            .dequeue()
203            .await
204            .unwrap()
205            .expect("Should have delayed job");
206        assert_eq!(job.id, id);
207    }
208}