Extract the timer wheel and watch registry from the worker into a reusable std-extension crate, generalize the worker around a RuntimeExtension factory, and decompose the monolithic runtime test file into focused suites. - crates/std: extract TimerWheel (deterministic tick-counted one-shot/interval timers) and WatchRegistry (target-to-watcher death-notification index) out of src/worker.rs into reusable modules - crates/std: add Ctx extension traits (CtxMonitoring, CtxNaming, CtxWatching, CtxTimers) and Runtime extension traits (RuntimeNaming, RuntimeWatching, RuntimeGroups) wiring monitor/name/watch/timer/group support - src/worker.rs: replace the hard-coded timer/watch fields with a generic RuntimeExtension factory and add route_to_pool_or_remote for message routing (local pool, then cross-worker address map, then external inboxes) - tests: split the 4622-line tests/runtime_api.rs into focused suites (actor_lifecycle, message_delivery, runtime_stress, std_extension) plus a shared tests/common/mod.rs harness, and drop watch_api.rs - benches/fuzz: add runtime_benchmarks and adjust the runtime fuzz target - tools/docs: add fn_complexity.py and loc_analysis.py analysis scripts and refresh the runtime and worker-thread docs Signed-off-by: Zachery Aaron Shores-Chmielewski <zacheryasc@gmail.com> |
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|---|---|---|
| benches | ||
| crates | ||
| docs | ||
| examples | ||
| fuzz | ||
| scripts | ||
| src | ||
| tests | ||
| tools | ||
| .gitignore | ||
| Cargo.lock | ||
| Cargo.toml | ||
| Dockerfile | ||
| README.md | ||
swactor
Minimal actor runtime for Rust. Single-threaded or multi-threaded, with Python and WebAssembly bindings.
Quick Start
use swactor::actor::{ActorAddress, ActorInterface};
use swactor::runtime::{Ctx, Runtime, RuntimeConfig};
#[derive(Clone)]
struct Greet { name: String, reply_to: ActorAddress }
#[derive(Clone)]
struct Greeting(String);
struct Greeter;
impl ActorInterface for Greeter {
type Incoming = Greet;
type Response = Greeting;
fn handle(&mut self, ctx: &Ctx, msg: Greet) {
let _ = ctx.send(msg.reply_to, Greeting(format!("Hello, {}!", msg.name)));
}
}
fn main() {
let rt = Runtime::new(RuntimeConfig::default());
let addr = rt.spawn(Greeter).unwrap();
let inbox = rt.new_inbox::<Greeting>().unwrap();
rt.send_to(addr, Greet { name: "world".into(), reply_to: *inbox.addr() }).unwrap();
rt.tick();
rt.tick();
println!("{}", inbox.try_recv().unwrap().0); // "Hello, world!"
}
Features
Actor Model
Actors implement one trait (ActorInterface), receive one message type, and
hold mutable state. No lifecycle hooks, no supervision trees, no async.
Every actor gets a 32-byte globally unique ActorAddress. The same
ctx.send(addr, msg) call works whether the target is on the same worker,
a different worker thread, an external inbox, or a remote process.
Single-threaded mode (rt.tick()) gives deterministic frame-level control.
Multi-threaded mode (rt.run()) spawns OS threads with adaptive backoff.
See docs/runtime/actor-model.md and docs/runtime/runtime.md for the full model.
Transport
Pluggable cross-process messaging. User-provided codecs handle serialization (gRPC/protobuf, bincode, hand-rolled — no serde bounds imposed) and user-provided transports handle delivery (TCP, in-memory, gRPC channel).
cargo build --features transport
cargo run --example tcp_ping_pong --features transport -- receiver # terminal 1
cargo run --example tcp_ping_pong --features transport -- sender # terminal 2
See docs/distribution/transport.md for the routing chain, codec registry, and address resolution.
Runtime Dashboard
Live web dashboard for monitoring actors, message throughput, and mailbox depths. Supports trace recording and replay at configurable speed.
Includes hand-authored SVG diagrams (actor lifecycle, message lifecycle, tick cycle, transport routing) and generated diagrams from DOT sources (architecture, dataflow, type erasure).
See crates/runtime-dashboard/.
Language Bindings
Python — PyO3 via Maturin. Spawn actors from Python callables, pass dicts as messages, single-threaded or multi-threaded.
cd crates/swactor-python && maturin develop
Examples in examples/python/ (single-thread, async, Jupyter notebook).
WASM — wasm-bindgen. Runs single-threaded with deterministic addressing
(no_random feature).
cd crates/swactor-wasm && wasm-pack build --target nodejs
Connectome Analysis
Structural analysis of the internal dependency graph.
- depgraph (
tools/depgraph/) — AST-based extraction of module dependencies, outputs GraphViz DOT - spectral (
tools/spectral/) — Laplacian eigenvalue analysis, Connectome Complexity Index (CCI), coupling heatmaps, interactive HTML dashboard
cargo run --manifest-path tools/depgraph/Cargo.toml -- --src-dir src/ --output deps
python tools/spectral/spectral_analysis.py deps.dot
See docs/connectome/connectome.md for metric interpretation.
Building & Testing
cargo test # all tests
cargo test --features transport # include transport tests
cargo run --example hello # single actor example
cargo run --example ring # 500-actor ring topology
cargo bench # benchmarks (criterion)
Feature Flags
| Flag | Default | What it does |
|---|---|---|
getrandom |
yes | System RNG for actor addresses |
no_random |
no | Deterministic counter (WASM / reproducible tests) |
transport |
no | Pluggable remote messaging (codec + transport) |
tracing |
no | tracing instrumentation for runtime internals |
serde |
no | Serde derives for stats types |
python |
no | PyO3 bindings (cdylib wheel) |
Documentation
| Document | Covers |
|---|---|
| Actor Model | Traits, type erasure, addresses |
| Runtime | Runtime, Ctx, Inbox, RuntimeHandle, stats |
| Worker Thread | Tick phases, backoff, routing, full system topology |
| Channels | HybridChannel, AddressMap, Placement |
| Transport | Codec, Transport, remote messaging, address resolution |
| Distribution | SWIM membership, Kademlia, NodeDriver |
| Connectome | CCI metrics, spectral analysis interpretation |
| Dashboard | Live web UI, trace recording, diagram index |