diff --git a/Cargo.toml b/Cargo.toml index 325c8ab..c831146 100644 --- a/Cargo.toml +++ b/Cargo.toml @@ -41,6 +41,7 @@ tokio = { version = "1", features = ["rt", "rt-multi-thread", "macros", "process name = "swactor" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" autobenches = false [profile.bench] diff --git a/LICENSE b/LICENSE new file mode 100644 index 0000000..be3f7b2 --- /dev/null +++ b/LICENSE @@ -0,0 +1,661 @@ + GNU AFFERO GENERAL PUBLIC LICENSE + Version 3, 19 November 2007 + + Copyright (C) 2007 Free Software Foundation, Inc. + Everyone is permitted to copy and distribute verbatim copies + of this license document, but changing it is not allowed. + + Preamble + + The GNU Affero General Public License is a free, copyleft license for +software and other kinds of works, specifically designed to ensure +cooperation with the community in the case of network server software. + + The licenses for most software and other practical works are designed +to take away your freedom to share and change the works. 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If not, see . + +Also add information on how to contact you by electronic and paper mail. + + If your software can interact with users remotely through a computer +network, you should also make sure that it provides a way for users to +get its source. For example, if your program is a web application, its +interface could display a "Source" link that leads users to an archive +of the code. There are many ways you could offer source, and different +solutions will be better for different programs; see section 13 for the +specific requirements. + + You should also get your employer (if you work as a programmer) or school, +if any, to sign a "copyright disclaimer" for the program, if necessary. +For more information on this, and how to apply and follow the GNU AGPL, see +. diff --git a/README.md b/README.md index 054e109..765c75d 100644 --- a/README.md +++ b/README.md @@ -1,23 +1,363 @@ # swactor -Minimal actor runtime for Rust. One trait, one message type. -Single-threaded (`tick()`) or multi-threaded (`run()`). +A small, WASM-first actor runtime for Rust: one trait, location-transparent +addresses, and a built-in cluster. Actors are ordinary structs; a message is +any `Clone + Send + Sync` type; an address works the same whether the actor +lives in this process, on a peer, or behind NAT on another node. -## Description +## What it is -Core runtime is `src/`. Actors implement `ActorInterface` (in `actor.rs`), -interact through `Ctx` (in `runtime.rs`), and run on worker threads (`worker.rs`). +Every actor is one trait. There is no separate message trait to implement — +anything `Clone + Send + Sync` is a message by blanket impl: -`crates/` builds upward: `std` adds OTP patterns (supervision, monitoring, groups), -`distribution` adds clustering, everything else composes from there. - -## Dev commands - -`cargo xtask --help` for the basic test command. - -## Testing +```rust +// src/actor.rs +pub trait Message: 'static + Sized + Clone + Send + Sync {} +impl Message for T {} +pub trait ActorInterface: 'static + Send { + type Incoming: Message; + type Response: Message; + fn handle(&mut self, ctx: &Ctx, msg: Self::Incoming); + // ...on_start, on_stop, handle_down (death monitoring) as needed +} ``` + +You drive the runtime single-threaded with `tick()` (this is what compiles to +WASM) or multi-threaded with `run()`: + +```rust +use swactor::actor::{ActorInterface, Ctx}; +use swactor::runtime::{Runtime, RuntimeConfig}; + +struct Counter { count: u64 } + +impl ActorInterface for Counter { + type Incoming = (); // `()` is Clone + Send + Sync, so it's a message + type Response = (); + fn handle(&mut self, _ctx: &Ctx, _: Self::Incoming) { + self.count += 1; + println!("hit #{self.count}"); + } +} + +fn main() -> Result<(), swactor::Error> { + let rt = Runtime::new(RuntimeConfig::default()); // 1 worker → drive with tick() + let addr = rt.spawn(Counter { count: 0 })?; + rt.send_to(addr, ())?; + for _ in 0..3 { rt.tick(); } // spawn → handle → done + Ok(()) +} +``` + +`RuntimeConfig` is four knobs — `max_actors`, `channel_buffer_size`, +`num_threads`, and a per-tick `actor_message_budget` (inspired by BEAM's +reduction count, so one chatty mailbox can't starve the rest). + +## Features + +Each feature is shown in the code that implements it. + +### Route messages by actor_id across cluster boundaries + +An actor's identity is a 32-byte address, not a pointer: + +```rust +// src/actor.rs +pub struct ActorAddress(pub [u8; 32]); +``` + +You send to it the same way whether it lives in this process, on a peer across +the room, or behind NAT on another continent — one call, `ctx.send(addr, msg)`. +The locality decision is exactly one address-map lookup; a miss hands the +message to the cluster transport instead of a local worker: + +```rust +// src/delivery.rs — the cluster boundary +fn route_nonlocal(&self, addr: ActorAddress, msg: Box) -> Result<(), Error> { + #[cfg(feature = "transport")] + { + if self.inbox_registry.contains(&addr) { // a pending reply inbox + return self.inbox_registry.try_deliver(addr, msg); + } + if let Some(sink) = self.remote_sink { // ← off this node + return sink.send(addr, msg); + } + } + self.inbox_registry.try_deliver(addr, msg) +} +``` + +The transport seam is a single trait — any cluster driver satisfies it: + +```rust +// src/runtime.rs +pub trait RemoteSink: Send + Sync { + fn send(&self, addr: ActorAddress, msg: Box) -> Result<(), Error>; +} +``` + +Where `addr` lives is resolved from a signed, gossiped directory: a host-signed +`DirectoryEntry` binds `actor_addr → node_id`, backed by an LRU `LocationCache`. +The node's own mailbox (`node_id → ActorAddress`) is rebound on restart without +changing identity, which is why `NodeId` and `ActorAddress` are deliberately +distinct types. + +### WASM by default + +The same runtime that runs on a thread pool also compiles to `wasm32` and steps +one tick at a time from a host (browser, Node, an embedding app). Randomness, +timers, and the address map all have a no-op/wasm path behind the `wasm` +feature. The [ping-pong demo](examples/ping-pong) is one runtime compiled to a +`.wasm` cdylib and driven by Node: + +```sh +cd examples/ping-pong && ./run.sh +``` + +### Built-in engine and driver, tasks included + +A node ships batteries-included: the actor engine (worker threads), a network +driver, and the pump/fanout tasks that wire them — you don't assemble the glue. +The driver tracks its own established send/recv pumps per QUIC stream and emits +lifecycle events (edge ready, stream fault, pump stopped): + +```rust +// crates/iroh-driver/src/driver_pumps.rs +pub enum DriverEventOut { + DriverEdgeReady { edge_id: EdgeId }, + StreamFault { edge_id: EdgeId }, + PumpStopped { edge_id: EdgeId, ring_id: RingId }, +} +``` + +### `iroh` integration — QUIC, TLS, and NAT traversal + +The bundled driver is [iroh](https://iroh.computer): QUIC-based peer transport +with built-in TLS, NAT hole-punching, and relay-server fallback. You hand it a +Tokio engine and it runs accepts, dials, stream I/O, retries, and shutdown on +it; peers are admitted through an optional allow-list: + +```rust +// crates/iroh-driver/src/iroh_driver.rs +pub struct IrohDriverConfig { + pub secret_key: Option, // None → fresh random identity + pub relay_mode: RelayMode, // default: n0 production relays + pub node: DistributedNodeConfig, + pub peer_auth: Option>>, + pub additional_alpns: Vec>, // opaque to the driver +} +``` + +### Built-in SWIM cluster + +Membership is a real SWIM implementation — direct + indirect (relay) probes, +suspicion timers, and Lifeguard local-health scaling — not heartbeats. The probe +state machine emits typed actions; the host adapter turns them into sends: + +```rust +// crates/distribution/src/swim/probe.rs +pub enum SwimAction { + SendPing { to: NodeId, sequence: u64 }, + SendPingReq { relay: NodeId, target: NodeId, sequence: u64 }, // indirect probe + Suspect(NodeId), + DeclareDead(NodeId), + Diag(SwimDiagEvent), // RTT samples — observation only, no protocol effect +} +``` + +Name bindings, node metadata (relay URL, human name), and the actor→host +directory each run as independent gossip actors, so the cluster goes quiet once +it converges. + +### OTP-style standard library + +Behind the `std` feature, one extension adds the patterns you reach for: +symbolic naming, death monitoring (watching), and process groups. Install it on +the runtime and actors get `CtxWatching` / `CtxNaming`: + +```rust +// src/std/extension.rs +pub struct StdExtension { + name_registry: NameRegistry, // logical names → addresses + watch_registry: WatchRegistry, // exit notifications + group_registry: GroupRegistry, // named groups / pub-sub +} +// runtime.with_extension(Arc::new(StdExtension::new())); +``` + +### Process manager for external processes + +Treat an OS process like an actor. Describe it, spawn it onto the runtime, and +send it commands; its lifecycle (started / exited / signaled) arrives as +messages: + +```rust +// crates/process/src/types.rs +pub struct ProcessSpec { + pub command: String, + pub args: Vec, + pub env: HashMap, + pub working_dir: Option, + pub label: Option, +} +``` + +There's a YAML-driven pipeline layer on top (`crates/process/src/pipeline.rs`) +for multi-step jobs with progress and failure reporting. + +### Zero-copy movement of large byte objects + +Big buffers (activations, tensors) move by handing over a pointer into a shared +arena, not by copying. Producers lease a byte region; consumers read it through a +process-local pointer derived from a base + offset. A lease is only returned with +a `QuiescenceProof`, so a region is never recycled under a live reader: + +```rust +// crates/data-plane/src/ring.rs +pub struct ProcessLocalPointer(pub u64); +impl ProcessLocalPointer { + pub fn from_base_plus_offset(base: ArenaBase, offset: u64) -> Self { + Self(base.0 + offset) + } +} + +// crates/data-plane/src/arena.rs +pub enum ArenaRequest { + LeaseRing(LeaseRing), + CancelLease { request_id: LeaseRequestId }, + ReleaseRing { ring_id: RingId, proof: QuiescenceProof }, +} +``` + +### Custom metrics through the datastream + +Telemetry is a deliberately dumb pipe: producers tag bytes with a channel id, +nothing in the middle interprets the payload, and views are read-time +projections. To add a metric stream, define a type and implement one constant — +no schema registry to negotiate with: + +```rust +// crates/datastream/src/record.rs +pub trait Record { + const CHANNEL: &'static str; +} + +// crates/data-plane/src/arena.rs — the arena publishes its own health this way +impl Record for ArenaSample { + const CHANNEL: &'static str = ARENA_SAMPLE_CHANNEL; // "mvp.arena" +} +``` + +### Built-in dashboard + +A read-only HTML/SSE dashboard renders the frames the datastream already +carries — workers, the actor roster, per-actor dossiers, fleet hardware. It sends +no control signals back, so the whole thing is one Axum router: + +```rust +// crates/dashboard/src/server.rs +fn router(state: AppState) -> Router { + Router::new() + .route("/", get(root_page)) + .route("/events", get(frame_stream)) // live frames over SSE + .route("/api/frames", get(recent_frames)) + .route("/api/views", get(views_json)) + .route("/api/view/{*path}", get(view_snapshot)) + .route("/view/{*path}", get(view_page)) + .with_state(state) +} +``` + +## Architecture + +The workspace builds upward from a tiny core. Each crate is one responsibility: + +```mermaid +flowchart TD + core["swactor
ActorInterface · Ctx · Runtime · delivery · channels"] + stdx["swactor::std
naming · watching · groups"] + dist["distribution
SWIM · registry · directory · location cache"] + trans["transport
codec registry · identity · crypto"] + driver["iroh-driver
QUIC driver · pump tasks"] + ds["datastream
telemetry pipe · frames · views"] + dp["data-plane
arena · zero-copy rings"] + dash["dashboard
read-only HTML/SSE"] + proc["process
managed processes · pipelines"] + app["myelin
node · orchestrator · chat"] + + core --> stdx + stdx --> dist + dist --> trans + dist --> driver + ds --> dash + ds --> dp + core --> proc + dist --> app + driver --> app +``` + +| Crate | Role | +| --- | --- | +| `swactor` (`src/`) | Core runtime: the actor trait, `Ctx`, scheduler, address map, channels | +| `crates/transport` | Codec registry, node identity, message signing — transport-agnostic | +| `crates/distribution` | Clustering: SWIM membership, naming, metadata + actor directory gossip | +| `crates/iroh-driver` | iroh/QUIC network driver with its pump/fanout tasks | +| `crates/datastream` | Per-node telemetry pipe; nothing in the middle interprets payloads | +| `crates/data-plane` | Arena-backed zero-copy byte movement and rings | +| `crates/process` | Managed external processes and YAML pipelines | +| `crates/dashboard` | Read-only HTML/SSE dashboard over datastream frames | +| `crates/provisioning` | Cloud node provisioning | +| `crates/bindings/{python,wasm-runtime,wasm-crypto}` | Language / target bindings | +| `apps/myelin` | The node binary that wires the above into a runnable cluster node | +| `tools/vastai` | Vast.ai GPU-marketplace tooling | + +## Used for + +- **A drop-in replacement for GPU jobs on cloud infrastructure.** `apps/myelin` + ships an orchestrator plus a containerized worker node + (`apps/myelin/node-image`) that provisions, stages models, and runs them. +- **Orchestration for sharded inference.** The node image includes a + [tinygrad](https://github.com/tinygrad/tinygrad) worker + (`apps/myelin/node-image/tinygrad_worker.py`); a vLLM backend is planned. + +## Examples + +**Working:** [`examples/ping-pong`](examples/ping-pong) — two actors volley on a +single-threaded runtime compiled to WebAssembly, driven tick-by-tick from Node. +Shows spawning, message passing, and death monitoring in one file. + +**Planned** (tracked in `.deployment-notes/ROADMAP.md`): + +- Two actors talking in-process, over IPC, and across a WAN — in Rust, Python, + and WASM — from the same code. +- Typed chunk streaming across IPC or WAN. +- A non-trivially sharded training job (not easily expressed in Ray). +- A full pipeline-parallel example of a model sharded across N ≥ 3 cheap GPUs. + +## Developing + +Requires the pinned nightly toolchain (`rust-toolchain.toml`): + +```sh cargo check --workspace -cargo xtask test +cargo xtask test # see `cargo xtask --help` ``` + +The language bindings (`crates/bindings/*`) build on demand with `-p` / +`--workspace`, not during normal native iteration. + +## Status + +swactor is early and under active development. The runtime, clustering, and the +`myelin` node are exercised by the workspace test suite, but APIs are still +moving. + +## License + +Licensed under the [GNU Affero General Public License v3.0 only] +(./LICENSE) (`AGPL-3.0-only`). The AGPL's network clause (§13) requires anyone +who runs a modified swactor as a network service to offer its source to users. +The copyright holder is not bound by their own license and may relicense future +releases freely; external contributors should expect a CLA requirement before +changes are merged. diff --git a/apps/myelin/Cargo.toml b/apps/myelin/Cargo.toml index fa29a2f..290e34b 100644 --- a/apps/myelin/Cargo.toml +++ b/apps/myelin/Cargo.toml @@ -2,6 +2,7 @@ name = "myelin" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" publish = false autobins = false diff --git a/crates/bindings/python/Cargo.toml b/crates/bindings/python/Cargo.toml index 3488195..5e3afdd 100644 --- a/crates/bindings/python/Cargo.toml +++ b/crates/bindings/python/Cargo.toml @@ -2,6 +2,7 @@ name = "python" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [lib] name = "swactor" diff --git a/crates/bindings/wasm-crypto/Cargo.toml b/crates/bindings/wasm-crypto/Cargo.toml index 5e31df5..45cf493 100644 --- a/crates/bindings/wasm-crypto/Cargo.toml +++ b/crates/bindings/wasm-crypto/Cargo.toml @@ -2,6 +2,7 @@ name = "wasm-crypto" version = "0.1.0" edition = "2021" +license = "AGPL-3.0-only" [lib] crate-type = ["cdylib"] diff --git a/crates/bindings/wasm-runtime/Cargo.toml b/crates/bindings/wasm-runtime/Cargo.toml index a227dbc..c47943c 100644 --- a/crates/bindings/wasm-runtime/Cargo.toml +++ b/crates/bindings/wasm-runtime/Cargo.toml @@ -2,6 +2,7 @@ name = "wasm-runtime" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [lib] crate-type = ["cdylib"] diff --git a/crates/dashboard/Cargo.toml b/crates/dashboard/Cargo.toml index 67803de..85f875f 100644 --- a/crates/dashboard/Cargo.toml +++ b/crates/dashboard/Cargo.toml @@ -2,6 +2,7 @@ name = "dashboard" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [dependencies] axum = "0.8" diff --git a/crates/data-plane/Cargo.toml b/crates/data-plane/Cargo.toml index 96fe77f..4403d93 100644 --- a/crates/data-plane/Cargo.toml +++ b/crates/data-plane/Cargo.toml @@ -2,6 +2,7 @@ name = "data-plane" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" publish = false [dependencies] diff --git a/crates/datastream/Cargo.toml b/crates/datastream/Cargo.toml index c6510c1..a42c7f3 100644 --- a/crates/datastream/Cargo.toml +++ b/crates/datastream/Cargo.toml @@ -2,6 +2,7 @@ name = "datastream" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [dependencies] swactor = { path = "../..", features = ["serde", "transport"] } diff --git a/crates/distribution/Cargo.toml b/crates/distribution/Cargo.toml index a4793ac..55c2dd1 100644 --- a/crates/distribution/Cargo.toml +++ b/crates/distribution/Cargo.toml @@ -2,6 +2,7 @@ name = "distribution" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [features] default = [] diff --git a/crates/iroh-driver/Cargo.toml b/crates/iroh-driver/Cargo.toml index 5cfeb00..516b013 100644 --- a/crates/iroh-driver/Cargo.toml +++ b/crates/iroh-driver/Cargo.toml @@ -2,6 +2,7 @@ name = "iroh-driver" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [lib] name = "iroh_driver" diff --git a/crates/process/Cargo.toml b/crates/process/Cargo.toml index 9bce661..3aef69c 100644 --- a/crates/process/Cargo.toml +++ b/crates/process/Cargo.toml @@ -2,6 +2,7 @@ name = "swactor-process" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [dependencies] swactor = { path = "../..", default-features = false, features = ["no_random"] } diff --git a/crates/provisioning/Cargo.toml b/crates/provisioning/Cargo.toml index 56ab86d..9cb4de0 100644 --- a/crates/provisioning/Cargo.toml +++ b/crates/provisioning/Cargo.toml @@ -2,6 +2,7 @@ name = "provisioning" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" publish = false [dependencies] diff --git a/crates/transport/Cargo.toml b/crates/transport/Cargo.toml index 7eb5c6b..6b9a404 100644 --- a/crates/transport/Cargo.toml +++ b/crates/transport/Cargo.toml 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"f0805222e57f7521d6a62e36fa9163bc891acd422f971defe97d64e70d0a4fe5" diff --git a/examples/ping-pong/Cargo.toml b/examples/ping-pong/Cargo.toml new file mode 100644 index 0000000..87080cc --- /dev/null +++ b/examples/ping-pong/Cargo.toml @@ -0,0 +1,18 @@ +[package] +name = "pingpong" +version = "0.1.0" +edition = "2024" +license = "AGPL-3.0-only" +publish = false +description = "swactor ping-pong: a minimal WebAssembly actor demo" + +[lib] +crate-type = ["cdylib"] + +# Declares this example as its own workspace root so it builds standalone +# (with `./run.sh`) without joining the root workspace. +[workspace] + +[dependencies] +swactor = { path = "../..", default-features = false, features = ["wasm", "std"] } +wasm-bindgen = "0.2" diff --git a/examples/ping-pong/index.html b/examples/ping-pong/index.html new file mode 100644 index 0000000..bbeb8eb --- /dev/null +++ b/examples/ping-pong/index.html @@ -0,0 +1,159 @@ + + + + + +swactor · ping-pong + + + + +

swactor · ping-pong

+

+ Two actors volley a ball on a WebAssembly actor runtime. The browser drives it + one tick() at a time; each line below is one actor message.
+ swactor dashboard ↗ + — live actor stats, served alongside this page. +

+ +
+
+ + + + +
+
+
+ +
Loading wasm…
+ + + + diff --git a/examples/ping-pong/run.mjs b/examples/ping-pong/run.mjs new file mode 100644 index 0000000..f0fe58b --- /dev/null +++ b/examples/ping-pong/run.mjs @@ -0,0 +1,28 @@ +// swactor ping-pong -- host driver. +// +// Spawns a Ping and a Pong actor on the wasm actor runtime, then drives it +// tick-by-tick, printing each volley as it happens. Pass an optional volley cap: +// +// node run.mjs [volleys] (default 10) + +import { App } from "./pkg/pingpong.js"; + +const max = Math.max(2, Number(process.argv[2] ?? 10)); + +const app = new App(); +const log = app.new_log(); +const pong = app.spawn_pong(log.addr(), max); +app.spawn_ping(pong, log.addr(), max); + +console.log(`\n== swactor ping-pong == target ${max} volleys\n`); + +for (let t = 0; t < 1000; t++) { + app.tick(); + let line; + while ((line = log.try_recv())) console.log(" " + line); + if (app.actor_count() === 0) break; +} + +console.log( + `\nactors remaining: ${app.actor_count()}, messages processed: ${app.total_messages()}\n`, +); diff --git a/examples/ping-pong/run.sh b/examples/ping-pong/run.sh new file mode 100755 index 0000000..fba4c4f --- /dev/null +++ b/examples/ping-pong/run.sh @@ -0,0 +1,11 @@ +#!/usr/bin/env bash +# swactor ping-pong -- compile the demo to WebAssembly and run it. +# +# One-liner from this directory: ./run.sh [volleys] +# +# Compiles the Rust cdylib to ./pkg/ via wasm-pack, then drives it with Node. +set -euo pipefail +cd "$(dirname "$0")" + +wasm-pack build --target nodejs --out-name pingpong +node run.mjs "$@" diff --git a/examples/ping-pong/serve.sh b/examples/ping-pong/serve.sh new file mode 100755 index 0000000..81ea45b --- /dev/null +++ b/examples/ping-pong/serve.sh @@ -0,0 +1,40 @@ +#!/usr/bin/env bash +# swactor live demo -- serve the ping-pong wasm page AND the swactor dashboard. +# +# One-liner from this directory: ./serve.sh [port] +# +# Brings up two local servers: +# - swactor dashboard (native Rust; a dummy node feeds it live actor stats) +# at http://localhost:9090/ +# - ping-pong wasm demo (static files) +# at http://localhost:/ (default 8000) +# +# Ctrl+C stops both. +set -euo pipefail +cd "$(dirname "$0")" +ROOT="$(cd ../.. && pwd)" + +port="${1:-8000}" +dash_port=9090 + +# --- swactor dashboard ------------------------------------------------------- +# The dashboard is a workspace member; build it from the root manifest, then run +# the dummy-node binary, which starts the Axum server and publishes live stats. +echo ">> building swactor dashboard..." +cargo build --manifest-path "$ROOT/Cargo.toml" -p dashboard --bin swactor_dummy_node +echo ">> launching dashboard on :${dash_port}" +"$ROOT/target/debug/swactor_dummy_node" & +dash_pid=$! +cleanup() { kill "$dash_pid" 2>/dev/null || true; wait "$dash_pid" 2>/dev/null || true; } +trap cleanup EXIT INT TERM + +# --- ping-pong wasm page ----------------------------------------------------- +wasm-pack build --target web --out-name pingpong --out-dir pkg-web + +echo +echo ">> ping-pong : http://localhost:${port}/" +echo ">> dashboard : http://localhost:${dash_port}/ (live swactor stats)" +echo ">> (Ctrl+C to stop)" +echo + +python3 -m http.server "$port" diff --git a/examples/ping-pong/src/lib.rs b/examples/ping-pong/src/lib.rs new file mode 100644 index 0000000..a4be31d --- /dev/null +++ b/examples/ping-pong/src/lib.rs @@ -0,0 +1,232 @@ +//! swactor · ping-pong -- a minimal WebAssembly actor demo. +//! +//! Two actors, `Ping` and `Pong`, volley a ball back and forth on a +//! single-threaded actor runtime compiled to wasm. The host (Node.js) advances +//! the runtime one step at a time with `tick()` and drains a shared log inbox +//! to print each volley. +//! +//! When the volley cap is reached the hitter stops; the other actor, which is +//! *watching* it, observes the death, posts a final summary, and stops too. +//! This shows the three load-bearing swactor ideas in one place: spawning +//! actors, message passing, and death monitoring. +//! +//! Build & run from this directory: `./run.sh` + +use std::sync::Arc; + +use wasm_bindgen::prelude::*; + +use swactor::actor::{ActorAddress, ActorExited, ActorInterface}; +use swactor::runtime::{Ctx, Inbox, Runtime as SwactorRuntime, RuntimeConfig}; +use swactor::std::{CtxWatching, StdExtension}; + +// ─── Host-facing bindings ─────────────────────────────────────────────────── + +/// Opaque actor-address handle, passed between spawn calls and the host. +#[wasm_bindgen] +#[derive(Clone)] +pub struct Addr(ActorAddress); + +/// Inbox the host polls each tick for log lines and the final summary. +#[wasm_bindgen] +pub struct LogInbox { + inner: Inbox, +} + +#[wasm_bindgen] +impl LogInbox { + /// The address actors send their log lines to. + pub fn addr(&self) -> Addr { + Addr(*self.inner.addr()) + } + + /// Pop the next log line, or `undefined` when empty. + pub fn try_recv(&self) -> Option { + self.inner.try_recv() + } +} + +/// The ping-pong app: a single-threaded swactor runtime with the std extension +/// (watching) installed. The host drives it by calling [`App::tick`]. +#[wasm_bindgen] +pub struct App { + rt: SwactorRuntime, +} + +#[wasm_bindgen] +impl App { + #[wasm_bindgen(constructor)] + pub fn new() -> App { + let rt = SwactorRuntime::new(RuntimeConfig { + num_threads: 1, + ..RuntimeConfig::default() + }) + .with_extension(Arc::new(StdExtension::new())); + App { rt } + } + + /// Advance the runtime one tick. + pub fn tick(&self) { + self.rt.tick(); + } + + /// Actors currently alive. + pub fn actor_count(&self) -> usize { + self.rt.stats().actors.len() + } + + /// Total messages processed across all workers. + pub fn total_messages(&self) -> f64 { + self.rt + .stats() + .workers + .iter() + .map(|w| w.messages_processed) + .sum::() as f64 + } + + /// Create a log inbox the host drains each tick. + pub fn new_log(&self) -> LogInbox { + LogInbox { + inner: self.rt.new_inbox().expect("new_log"), + } + } + + /// Spawn the `Pong` actor. Returns its address. + pub fn spawn_pong(&self, log: &Addr, max_volleys: u32) -> Addr { + let addr = self + .rt + .spawn(Pong { + log: log.0, + max: max_volleys, + }) + .expect("spawn pong"); + Addr(addr) + } + + /// Spawn the `Ping` actor, pointed at an existing `Pong`. Returns its address. + pub fn spawn_ping(&self, pong: &Addr, log: &Addr, max_volleys: u32) -> Addr { + let addr = self + .rt + .spawn(Ping { + pong: pong.0, + log: log.0, + max: max_volleys, + }) + .expect("spawn ping"); + Addr(addr) + } +} + +// ─── The ball ─────────────────────────────────────────────────────────────── + +/// A ball in flight between the two actors. +/// +/// `volleys` is the running hit count -- each hitter increments it. `from` is +/// the address the ball came from (and should be returned to). `Ping` knows +/// `Pong` from spawn time so only `Pong` reads `from`, but both set it so the +/// protocol reads symmetrically. +#[derive(Clone)] +struct Ball { + volleys: u32, + from: ActorAddress, +} + +// ─── Ping ─────────────────────────────────────────────────────────────────── + +struct Ping { + pong: ActorAddress, + log: ActorAddress, + max: u32, +} + +impl Ping { + /// Hit the ball as volley number `v`: log it, then either return it to Pong + /// or, if the cap is reached, stop. + fn volley(&self, ctx: &Ctx, v: u32) { + let _ = ctx.send(self.log, format!("ping | volley {:>2}/{}", v, self.max)); + if v < self.max { + let _ = ctx.send( + self.pong, + Ball { + volleys: v, + from: ctx.self_addr(), + }, + ); + } else { + let _ = ctx.send(self.log, "ping | cap reached, stopping".to_string()); + ctx.stop_self(); + } + } +} + +impl ActorInterface for Ping { + type Incoming = Ball; + type Response = (); + + fn on_start(&mut self, ctx: &Ctx) { + // Ping knows Pong from spawn time, so it can watch it immediately. + ctx.watch(self.pong); + self.volley(ctx, 1); // serve + } + + fn handle(&mut self, ctx: &Ctx, ball: Ball) { + // Pong returned the ball; this is our next hit. + self.volley(ctx, ball.volleys + 1); + } + + fn on_actor_exit(&mut self, ctx: &Ctx, exited: ActorExited) { + let _ = ctx.send( + self.log, + format!( + "done | rally complete -- {} volleys played (pong exited: {:?})", + self.max, exited.reason + ), + ); + ctx.stop_self(); + } +} + +// ─── Pong ─────────────────────────────────────────────────────────────────── + +struct Pong { + log: ActorAddress, + max: u32, +} + +impl ActorInterface for Pong { + type Incoming = Ball; + type Response = (); + + fn handle(&mut self, ctx: &Ctx, ball: Ball) { + // Watch whoever served this ball. Idempotent across volleys, so this is + // also how Pong (spawned before Ping) first learns Ping's address. + ctx.watch(ball.from); + + let v = ball.volleys + 1; + let _ = ctx.send(self.log, format!("pong | volley {:>2}/{}", v, self.max)); + if v < self.max { + let _ = ctx.send( + ball.from, + Ball { + volleys: v, + from: ctx.self_addr(), + }, + ); + } else { + let _ = ctx.send(self.log, "pong | cap reached, stopping".to_string()); + ctx.stop_self(); + } + } + + fn on_actor_exit(&mut self, ctx: &Ctx, exited: ActorExited) { + let _ = ctx.send( + self.log, + format!( + "done | rally complete -- {} volleys played (ping exited: {:?})", + self.max, exited.reason + ), + ); + ctx.stop_self(); + } +} diff --git a/tools/vastai/Cargo.toml b/tools/vastai/Cargo.toml index 0b88b55..158acbc 100644 --- a/tools/vastai/Cargo.toml +++ b/tools/vastai/Cargo.toml @@ -2,6 +2,7 @@ name = "swactor-vastai" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" publish = false [dependencies] diff --git a/xtask/Cargo.toml b/xtask/Cargo.toml index ba651d8..7c71cc8 100644 --- a/xtask/Cargo.toml +++ b/xtask/Cargo.toml @@ -2,6 +2,7 @@ name = "xtask" version = "0.1.0" edition = "2024" +license = "AGPL-3.0-only" [dependencies] serde_json = "1"