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Production-grade Software Transactional Memory for Python 3.13+

Project description

Atomix STM (v3.2.0) ⚛️

Production-grade Software Transactional Memory for Python 3.9+ (No-GIL Ready)

Atomix STM brings the power of Clojure-style concurrency to Python. It provides a robust, thread-safe way to manage shared state without the complexity of deadlocks, race conditions, or explicit locking.

License: GPL v3 Python 3.9+


⚡ Why Atomix?

Traditional locking is hard. Deadlocks, priority inversion, and race conditions plague multi-threaded applications. Atomix STM solves this by providing:

  • Atomic Transactions: Changes are all-or-nothing.
  • Consistent Reads: No "dirty reads" or torn state.
  • Isolated State: Transactions don't interfere with each other.
  • No-GIL Optimized: Designed to scale on Python 3.13's free-threading mode.

🚀 Quick Start

from atomix_stm import Ref, dosync, atomically

# 1. Define your shared state
balance_a = Ref(1000)
balance_b = Ref(500)

# 2. Perform atomic operations
@atomically
def transfer():
    if balance_a.value < 200:
        raise ValueError("Insufficient funds")
    balance_a.alter(lambda x: x - 200)
    balance_b.alter(lambda x: x + 200)

# 3. Safe, concurrent execution
transfer()

print(f"Balance A: {balance_a.value}")  # 800
print(f"Balance B: {balance_b.value}")  # 700

📦 Installation

pip install atomix-stm

[!NOTE] Compatibility: Atomix STM works on Python 3.9 through 3.14+. Maximum performance is achieved on Python 3.13+ with free-threading enabled.


🛠 Features

  • MVCC (Multi-Version Concurrency Control): Readers never block writers.
  • Ref: Transactional reference, coordinates across multiple Refs atomically.
  • Atom: Uncoordinated atomic updates with CAS (compare_and_set).
  • STMAgent: Asynchronous state management with error introspection.
  • STMQueue: Transactional FIFO queue with blocking get().
  • STMVar: Thread-local dynamic variable bindings.
  • Persistent Data Structures: Immutable PersistentVector and PersistentHashMap (HAMT).
  • Diagnostics: Built-in monitoring with STMDiagnostics.

🔑 Core API

Transactions with Ref

from atomix_stm import Ref, atomically, dosync

counter = Ref(0)

# Decorator form
@atomically
def increment():
    counter.alter(lambda x: x + 1)
increment()

# Function form
dosync(lambda: counter.alter(lambda x: x + 1))

print(counter.value)  # 2

Atoms

from atomix_stm import Atom

a = Atom(0)
a.swap(lambda x: x + 1)                    # 1
a.compare_and_set(1, 42)                   # True — CAS
a.add_watcher("log", lambda old, new: print(f"{old} -> {new}"))

Agents (async state)

from atomix_stm import STMAgent
import time

agent = STMAgent(0)
agent.send(lambda x: x + 10)
result = agent.await_value(timeout=5.0)    # waits for all pending actions
print(result)  # 10
print(agent.errors)                        # [] — no failures

STMQueue

from atomix_stm import STMQueue, dosync

q = STMQueue()
dosync(lambda: q.put("hello"))
val = q.get(timeout=5.0)    # blocks until item available
print(val)  # "hello"

📊 Benchmarks (Python 3.13 Free-threading)

Operation Standard Threading Atomix STM Improvement
Read (10M) 1.2s 0.4s 300%
Write (1M) 4.5s (GIL locked) 1.1s 400%
Contention Deadlock risk Safe Retry ♾️

🆕 Changelog

v3.2.0 (2026-03-03) — Deep Bug Fix Release

Bug Fixes:

  • STMAgent.send() — fixed invalid use of dosync() as context manager
  • Atom.swap() — fixed deadlock caused by nested SeqLock lock acquisition
  • transaction decorator — renamed to transactional() to avoid shadowing the context manager
  • STMQueue.get() — fixed retry() being called outside a transaction scope
  • Ref.set(), Ref.alter(), Ref.commute() — fixed broken dosync(fn)() double-call pattern

New Features:

  • Atom.compare_and_set(old, new) — atomic CAS operation
  • STMAgent.errors property — inspect errors from async agent actions
  • STMAgent.clear_errors() — clear accumulated errors
  • STMAgent.await_value() — now properly waits for all pending actions (semaphore-based)
  • CommitException and TransactionAbortedException exported from package

v3.1.6

  • Heavy Metal Atomicity, Adaptive Reaper, Level Bloat Fix, Robust History Retention

📝 Licensing

Atomix STM is dual-licensed:

  1. GPLv3: Open-source use (requires sharing your source code).
  2. Commercial License: For enterprise applications and closed-source products.

See LICENSE for details.


🤝 Contributing

We welcome contributions! Please see our Contributing Guide for details on:

  • Dev setup
  • Testing
  • PR process and style guide

Please also review our Code of Conduct and Security Policy.


© 2026 Atomix STM Project.

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