Skip to main content

Postgres-native background job queue — Python SDK with async/sync workers, transactional enqueue, progress tracking, and web UI

Project description

Awa

Postgres-native background job queue for Rust and Python.

Awa (Māori: river) provides durable, transactional job enqueueing with typed handlers in both Rust and Python. All queue state lives in Postgres — no Redis, no RabbitMQ. The Rust runtime handles polling, heartbeating, crash recovery, and dispatch. Python workers run on that same runtime via PyO3, getting Rust-grade reliability with Python-native ergonomics.

AWA Web UI — Dashboard (dark mode)

Features

  • Postgres-only — one dependency you already have.
  • Transactional enqueue — insert jobs inside your business transaction. Commit = visible. Rollback = gone.
  • Cancel by unique key — cancel scheduled jobs by their insert-time components (kind + args) without storing job IDs.
  • Rust and Python workers — same queues, identical semantics, mixed deployments.
  • Crash recovery — heartbeat + hard deadline rescue. Stale jobs recovered automatically.
  • Web UI — dashboard, job inspector, queue management, cron controls.
  • Structured progress — handlers report percent, message, and checkpoint metadata; persisted across retries.
  • Periodic/cron jobs — leader-elected scheduler with timezone support and atomic enqueue.
  • Webhook callbacks — park jobs for external completion with optional CEL expression filtering.
  • Sequential callbackswait_for_callback() suspends a handler mid-execution; resume_external() wakes it with a payload. Enables multi-step orchestration within a single handler.
  • HTTP Worker — feature-gated Worker that dispatches jobs to serverless functions (Lambda, Cloud Run) via HTTP with HMAC-blake3 callback auth.
  • LISTEN/NOTIFY wakeup — sub-10ms pickup latency.
  • Production alerting metrics — queue depth, lag, and wait-duration histogram via OpenTelemetry.
  • OpenTelemetry — 20+ built-in metrics (counters, histograms, gauges) for Prometheus/Grafana.
  • Hot/cold storage — runnable work in a hot table, deferred work in a cold table.
  • Rate limiting — per-queue token bucket.
  • Weighted concurrency — global worker pool with per-queue guarantees.

Local benchmarks show ~5.6k jobs/sec sustained throughput (Rust workers, with OTel metrics enabled), ~3.1k jobs/sec (Python workers), and sub-10ms p50 pickup latency. Enqueue throughput reaches ~30k/s single-producer, ~100k/s multi-producer. See benchmarking notes for methodology and caveats.

Core concurrency invariants (no duplicate processing after rescue, stale completions rejected, shutdown drain ordering) are checked with TLA+ models covering single and multi-instance deployments.

Getting Started

# 1. Install
pip install awa-pg awa-cli     # Python
# or: cargo add awa             # Rust

# 2. Start Postgres and run migrations
awa --database-url $DATABASE_URL migrate

# 3. Write a worker and start processing (see examples below)

# 4. Monitor
awa --database-url $DATABASE_URL serve   # → http://127.0.0.1:3000

Language-specific guides:

Python Example

import awa
import asyncio
from dataclasses import dataclass

@dataclass
class SendEmail:
    to: str
    subject: str

async def main():
    client = awa.AsyncClient("postgres://localhost/mydb")
    await client.migrate()

    @client.task(SendEmail, queue="email")
    async def handle_email(job):
        print(f"Sending to {job.args.to}: {job.args.subject}")

    await client.insert(
        SendEmail(to="alice@example.com", subject="Welcome"),
        queue="email",
    )

    client.start([("email", 2)])
    await asyncio.sleep(1)
    await client.shutdown()

asyncio.run(main())

Progress tracking — checkpoint and resume on retry:

@client.task(BatchImport, queue="etl")
async def handle_import(job):
    last_id = (job.progress or {}).get("metadata", {}).get("last_id", 0)
    for item in fetch_items(after=last_id):
        process(item)
        job.set_progress(50, "halfway")
        job.update_metadata({"last_id": item.id})
    await job.flush_progress()

Transactional enqueue — atomic with your business logic:

async with await client.transaction() as tx:
    await tx.execute("INSERT INTO orders (id) VALUES ($1)", order_id)
    await tx.insert(SendEmail(to="alice@example.com", subject="Order confirmed"))

Sync API for Django/Flask — use awa.Client for sync frameworks; all methods are plain (no suffix):

client = awa.Client("postgres://localhost/mydb")
client.migrate()
job = client.insert(SendEmail(to="bob@example.com", subject="Hello"))

Sequential callbacks — suspend a handler, wait for an external system, then resume:

@client.task(ProcessPayment, queue="payments")
async def handle_payment(job):
    token = await job.register_callback(timeout_seconds=3600)
    send_to_payment_gateway(token.id, job.args.amount)
    result = await job.wait_for_callback(token)
    # result contains the payload from resume_external()
    await record_payment(job.args.order_id, result)

The external system calls await client.resume_external(callback_id, {"status": "paid"}) to wake the handler.

Periodic jobs — leader-elected cron scheduling with timezone support:

client.periodic(
    "daily_report", "0 9 * * *",
    GenerateReport, GenerateReport(format="pdf"),
    timezone="Pacific/Auckland",
)

6-field expressions with seconds precision are also supported: "*/15 * * * * *" fires every 15 seconds.

See examples/python/ for complete runnable scripts tested in CI.

Rust Example

use awa::{Client, QueueConfig, JobArgs, JobResult, JobError, JobContext, Worker};
use serde::{Serialize, Deserialize};

#[derive(Debug, Serialize, Deserialize, JobArgs)]
struct SendEmail {
    to: String,
    subject: String,
}

struct SendEmailWorker;

#[async_trait::async_trait]
impl Worker for SendEmailWorker {
    fn kind(&self) -> &'static str { "send_email" }

    async fn perform(&self, ctx: &JobContext) -> Result<JobResult, JobError> {
        let args: SendEmail = serde_json::from_value(ctx.job.args.clone())
            .map_err(|e| JobError::terminal(e.to_string()))?;
        send_email(&args.to, &args.subject).await
            .map_err(JobError::retryable)?;
        Ok(JobResult::Completed)
    }
}

// Insert a job (with uniqueness)
awa::insert_with(&pool, &SendEmail { to: "alice@example.com".into(), subject: "Welcome".into() },
    awa::InsertOpts { unique: Some(awa::UniqueOpts { by_args: true, ..Default::default() }), ..Default::default() },
).await?;

// Cancel by unique key (e.g., when the triggering condition is resolved)
awa::admin::cancel_by_unique_key(&pool, "send_email", None, Some(&serde_json::json!({"to": "alice@example.com", "subject": "Welcome"})), None).await?;

// Start workers with a typed lifecycle hook
let client = Client::builder(pool)
    .queue("default", QueueConfig::default())
    .register_worker(SendEmailWorker)
    .on_event::<SendEmail, _, _>(|event| async move {
        if let awa::JobEvent::Exhausted { args, error, .. } = event {
            tracing::error!(to = %args.to, error = %error, "email job exhausted retries");
        }
    })
    .build()?;
client.start().await?;

Installation

Python

pip install awa-pg       # SDK: insert, worker, admin, progress
pip install awa-cli      # CLI: migrations, queue admin, web UI

Rust

[dependencies]
awa = "0.5"

CLI

Available via pip (no Rust toolchain needed) or cargo:

pip install awa-cli
# or: cargo install awa-cli

awa --database-url $DATABASE_URL migrate
awa --database-url $DATABASE_URL serve
awa --database-url $DATABASE_URL queue stats
awa --database-url $DATABASE_URL job list --state failed

Architecture

 ┌────────────────┐  ┌────────────────┐
 │ Rust producer  │  │  Python (pip)  │
 └───────┬────────┘  └────────┬───────┘
         └────────┬───────────┘
                  ▼
       ┌────────────────────┐
       │     PostgreSQL     │
       │     jobs_hot       │
       │     scheduled_jobs │
       └─────────┬──────────┘
                 │
       ┌─────────┼─────────┐
       ▼         ▼         ▼
   ┌────────┐┌────────┐┌────────┐
   │ Worker ││ Worker ││ Worker │
   │ (Rust) ││ (PyO3) ││ (PyO3) │
   └────────┘└────────┘└────────┘

All coordination through Postgres. The Rust runtime owns polling, heartbeats, shutdown, and crash recovery for both languages. Mixed Rust and Python workers coexist on the same queues. See architecture overview for full details.

Workspace

Crate Purpose
awa Main crate — re-exports awa-model + awa-worker
awa-model Types, queries, migrations, admin ops
awa-macros #[derive(JobArgs)] proc macro
awa-worker Runtime: dispatch, heartbeat, maintenance
awa-ui Web UI (axum API + embedded React frontend)
awa-cli CLI binary (migrations, admin, serve)
awa-python PyO3 extension module (pip install awa-pg)
awa-testing Test helpers (TestClient)

Documentation

Doc Description
Rust getting started From cargo add to a job reaching completed
Python getting started From pip install to a job reaching completed
Deployment guide Docker, Kubernetes, pool sizing, graceful shutdown
Migration guide Fresh installs, upgrades, extracted SQL, rollback strategy
Configuration reference QueueConfig, ClientBuilder, Python start(), env vars
Security & Postgres roles Minimum-privilege roles, callback auth, operational guidance
Troubleshooting Stuck running jobs, leader delays, heartbeat timeouts
Architecture overview System design, data flow, state machine, crash recovery
Web UI design API endpoints, pages, component library
Benchmarking notes Methodology, headline numbers, how to run
Validation test plan Full test matrix with 100+ test cases
TLA+ correctness models Formal verification of core invariants
Grafana dashboards Pre-built Prometheus dashboards for monitoring
Architecture Decision Records (ADRs)

License

MIT OR Apache-2.0

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distributions

No source distribution files available for this release.See tutorial on generating distribution archives.

Built Distributions

If you're not sure about the file name format, learn more about wheel file names.

awa_pg-0.5.1a3-cp312-cp312-macosx_11_0_arm64.whl (5.6 MB view details)

Uploaded CPython 3.12macOS 11.0+ ARM64

awa_pg-0.5.1a3-cp312-cp312-macosx_10_12_x86_64.whl (5.8 MB view details)

Uploaded CPython 3.12macOS 10.12+ x86-64

awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_x86_64.manylinux2014_x86_64.whl (6.2 MB view details)

Uploaded CPython 3.8manylinux: glibc 2.17+ x86-64

awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_aarch64.manylinux2014_aarch64.whl (6.3 MB view details)

Uploaded CPython 3.8manylinux: glibc 2.17+ ARM64

File details

Details for the file awa_pg-0.5.1a3-cp312-cp312-macosx_11_0_arm64.whl.

File metadata

File hashes

Hashes for awa_pg-0.5.1a3-cp312-cp312-macosx_11_0_arm64.whl
Algorithm Hash digest
SHA256 d0f194fb709be4d04bc0e9f80462409d14ac8712afea8947c9242ba75bbb59da
MD5 5d45d82e154b0261a92148a4fd8d38c9
BLAKE2b-256 2e4967ff9039bb35f6b98e64a41ee40d617bb363b065957a7d14febac360b45b

See more details on using hashes here.

Provenance

The following attestation bundles were made for awa_pg-0.5.1a3-cp312-cp312-macosx_11_0_arm64.whl:

Publisher: release.yml on hardbyte/awa

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file awa_pg-0.5.1a3-cp312-cp312-macosx_10_12_x86_64.whl.

File metadata

File hashes

Hashes for awa_pg-0.5.1a3-cp312-cp312-macosx_10_12_x86_64.whl
Algorithm Hash digest
SHA256 d47268cfb21d21c21b6c683a2143a6c78ae284bd8155183f9cc808e3f748940a
MD5 83a2d0fd98bc716efc6898176da90dce
BLAKE2b-256 f23c09c610010e26fadeb9e0666578e7e935ff42580320233c632a6ccae0fca8

See more details on using hashes here.

Provenance

The following attestation bundles were made for awa_pg-0.5.1a3-cp312-cp312-macosx_10_12_x86_64.whl:

Publisher: release.yml on hardbyte/awa

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_x86_64.manylinux2014_x86_64.whl.

File metadata

File hashes

Hashes for awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Algorithm Hash digest
SHA256 208a4cdd3eb3fd593a4359f9a7e04b0621f24120a3db2fe88f49346b9350cc18
MD5 54db9b9a7eca5a9b26cab2bd5e769785
BLAKE2b-256 e0c9087fbf356aa1ac50e0a791c6d0e34b74a4b78c4e5cd34d1c1567e3b7275d

See more details on using hashes here.

Provenance

The following attestation bundles were made for awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_x86_64.manylinux2014_x86_64.whl:

Publisher: release.yml on hardbyte/awa

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_aarch64.manylinux2014_aarch64.whl.

File metadata

File hashes

Hashes for awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Algorithm Hash digest
SHA256 adcd7e54a5cc68f351b604b0495404eb5f55ae881ce38187f377dae1b46f8a95
MD5 a7896f14201f772bb44904ced0c2dce6
BLAKE2b-256 69964c870025c6a3f8c8978ba38a39921ccab0a9d1747e90721fb108c163b19b

See more details on using hashes here.

Provenance

The following attestation bundles were made for awa_pg-0.5.1a3-cp38-cp38-manylinux_2_17_aarch64.manylinux2014_aarch64.whl:

Publisher: release.yml on hardbyte/awa

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page