0bf15cb069
First fieldtest of the project. A standalone downstream-consumer crate
(fieldtests/cycle-0006-substrate/) path-depends on the engine crates and
exercises the post-0006 substrate from the public interface only (rustdoc +
specs + ledger, never crates/ source):
1 custom recording node via the Node contract + Ctx::now()
2 fan-out/fan-in DAG, 3-arg bootstrap, run() -> ()
3 two interior streams recorded from one run (the cycle headline)
4 byte-identical recorded output across two runs (C1 determinism)
5 mis-wired recording edge rejected (KindMismatch) at bootstrap
Findings: 3 working (carry-on), 2 friction, 1 spec_gap.
- friction: a nested standalone consumer crate fights the workspace
resolver (needs an empty [workspace] table — Cargo's own hint).
- friction: recorder boilerplate is hand-rewritten per author (C9
deliberately ships no library sink).
- spec_gap: the public surface never states output: vec![] is THE sink
declaration, nor defines a Some return paired with empty output.
Spec at docs/specs/fieldtest-0006-substrate.md feeds the 0007 plan.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
109 lines
3.5 KiB
Rust
109 lines
3.5 KiB
Rust
//! Fieldtest c0006 #2 — multi-stage fan-out / fan-in DAG, bootstrapped + run.
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//!
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//! Axes: "Build a multi-stage fan-out / fan-in DAG (one source fanning into
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//! SMA(2) and SMA(4), then a combiner)" and "Bootstrap and run a Harness (note
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//! the new bootstrap arity and that run returns ())."
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//!
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//! source --> SMA(2) --\
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//! \ Sub(fast - slow) --> Recorder
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//! \-> SMA(4) --/
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//!
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//! A downstream author wires the classic spread DAG and records the combiner's
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//! output. This fixture leans on the post-0006 surface: bootstrap takes exactly
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//! THREE positional args (no observe), and run returns () — retention is the
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//! recorder's channel, owned by the caller.
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use std::sync::mpsc::{self, Sender};
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use aura_core::{Ctx, Firing, InputSpec, Node, NodeSchema, Scalar, ScalarKind, Timestamp};
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use aura_engine::{Edge, Harness, SourceSpec, Target};
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use aura_std::{Sma, Sub};
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struct Recorder {
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tx: Sender<(Timestamp, f64)>,
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}
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impl Recorder {
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fn new(tx: Sender<(Timestamp, f64)>) -> Self {
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Self { tx }
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}
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}
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impl Node for Recorder {
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fn schema(&self) -> NodeSchema {
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NodeSchema {
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inputs: vec![InputSpec {
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kind: ScalarKind::F64,
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lookback: 1,
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firing: Firing::Any,
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}],
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output: vec![],
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}
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}
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fn eval(&mut self, ctx: Ctx<'_>) -> Option<&[Scalar]> {
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let w = ctx.f64_in(0);
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if w.is_empty() {
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return None;
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}
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let _ = self.tx.send((ctx.now(), w[0]));
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None
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}
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}
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fn f64_stream(pairs: &[(i64, f64)]) -> Vec<(Timestamp, Scalar)> {
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pairs
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.iter()
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.map(|&(t, v)| (Timestamp(t), Scalar::F64(v)))
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.collect()
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}
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fn main() {
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let (tx, rx) = mpsc::channel();
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// nodes: 0 = SMA(2), 1 = SMA(4), 2 = Sub(0 - 1), 3 = Recorder taps Sub.
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let mut h = Harness::bootstrap(
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vec![
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Box::new(Sma::new(2)),
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Box::new(Sma::new(4)),
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Box::new(Sub::new()),
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Box::new(Recorder::new(tx)),
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],
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vec![SourceSpec {
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kind: ScalarKind::F64,
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// source fans out into both SMAs
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targets: vec![Target { node: 0, slot: 0 }, Target { node: 1, slot: 0 }],
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}],
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vec![
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Edge { from: 0, to: 2, slot: 0, from_field: 0 }, // SMA(2) -> Sub.in0
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Edge { from: 1, to: 2, slot: 1, from_field: 0 }, // SMA(4) -> Sub.in1
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Edge { from: 2, to: 3, slot: 0, from_field: 0 }, // Sub -> Recorder
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],
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)
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.expect("valid DAG");
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// ascending-in-price stream: SMA(2) leads SMA(4), spread stays constant once warm.
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h.run(vec![f64_stream(&[
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(1, 10.0),
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(2, 12.0),
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(3, 14.0),
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(4, 16.0),
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(5, 18.0),
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(6, 20.0),
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])]);
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let recorded: Vec<(Timestamp, f64)> = rx.try_iter().collect();
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// Sub fires once both SMAs are warm. SMA(4) warms at the 4th sample (t=4).
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// t=4: SMA2=mean(16,14)=15, SMA4=mean(16,14,12,10)=13 -> 2
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// t=5: SMA2=mean(18,16)=17, SMA4=mean(18,16,14,12)=15 -> 2
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// t=6: SMA2=mean(20,18)=19, SMA4=mean(20,18,16,14)=17 -> 2
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let expected = vec![
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(Timestamp(4), 2.0),
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(Timestamp(5), 2.0),
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(Timestamp(6), 2.0),
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];
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println!("recorded = {recorded:?}");
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println!("expected = {expected:?}");
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assert_eq!(recorded, expected, "fan-out/fan-in spread DAG recorded output");
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println!("c0006_2 OK: fan-out/fan-in DAG bootstrapped (3-arg) + run () + recorded");
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}
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