41cbb5506f
Brings the other two composite-boundary edge-kinds to the named-projection shape #40 gave outputs. input_roles changes from a bare Vec<Vec<Target>> to Vec<Role { name, targets }> (rendered [in:<name>]); a composite gains params: Vec<ParamAlias { name, node, slot }> that relabels an interior leaf param slot's surface name in param_space() (rendered [param:<name>]). Param aliasing is a PURE NAMING OVERLAY, not curation (the load-bearing decision, per spec 0019): every interior param slot stays in param_space() and sweepable; the alias only relabels in place, never reorders or hides. Proven empirically — the MACD run is byte-identical (total_pips 0.1637945563898923, 3 sign flips), only the param labels improved: param_space() now surfaces [macd.fast, macd.slow, macd.signal] instead of three indistinguishable macd.length, and the manifest reads ema_fast/ ema_slow/ema_signal. C23 honoured: role/param/output names are non-load-bearing debug symbols dropped at lowering; identity is positional (role index, param slot, output field). compiled_view_golden is byte-identical (verified: the golden region is untouched in the diff). An out-of-range alias (missing/ non-leaf node or slot past the leaf's param count) is rejected at compile_with_params as BadInteriorIndex, mirroring the output range-check (no new variant). Orthogonal to #36 — purely additive at the composite level. Aliasing is demonstrated on the CLI MACD site only (the spec's worked example + a new E2E test macd_param_space_surfaces_the_three_named_aliases); sma_cross, the engine test fixtures, and the construction-layer fieldtests get the forced role-name + empty params, so the param_space C23 anchor goldens (param_space_mirrors_compiled_flat_node_param_order + siblings) stay byte-identical. Verification (orchestrator-run, not trusted from the agent report): cargo build/test/clippy --workspace -D warnings all green (engine 66, cli 12); the separate-workspace construction-layer fieldtest crate builds (guards the #42 latent-drift recurrence); compiled_view_golden + MACD determinism unchanged. Two faithful repairs to the plan's literal test/code bodies, no semantic change: the out-of-range test uses .err()/Some(BadInteriorIndex) (the Ok arm Vec<Box<dyn Node>> is not Debug, so .unwrap_err() would not compile), and the inline_composite destructure binds params as `param_aliases` to avoid shadowing the injected `params: &[Scalar]` arg. closes #41
124 lines
4.9 KiB
Rust
124 lines
4.9 KiB
Rust
// Milestone fieldtest — axis (d): introspect a built Blueprint via the
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// read-only graph-as-data accessors — can a consumer walk the graph as data
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// WITHOUT reading engine internals?
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//
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// Accessors under test (all public, from rustdoc):
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// Blueprint::nodes() / sources() / edges()
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// Composite::name() / nodes() / edges() / input_roles() / output()
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// BlueprintNode::{Leaf, Composite}; Node::label() on a boxed leaf
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//
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// Public interface only.
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use aura_core::ScalarKind;
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use aura_engine::{Blueprint, BlueprintNode, Composite, Edge, OutField, Role, SourceSpec, Target};
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// NB (fieldtest finding): `aura_engine::ScalarKind` does NOT resolve — the
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// construction surface (aura-engine) does not re-export the core scalar
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// vocabulary (ScalarKind / Scalar / Firing) that a graph-builder needs. A
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// downstream author building a Blueprint must reach into aura_core directly.
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// Recorded as friction in the spec. `node.label()` below dispatches on the
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// boxed leaf via the Node trait object without an explicit `use` of Node.
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fn sma_cross() -> Composite {
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Composite::new(
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"sma_cross",
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vec![
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aura_std::Sma::factory().into(),
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aura_std::Sma::factory().into(),
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aura_std::Sub::factory().into(),
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],
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vec![
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Edge { from: 0, to: 2, slot: 0, from_field: 0 },
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Edge { from: 1, to: 2, slot: 1, from_field: 0 },
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],
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vec![Role {
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name: "price".into(),
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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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vec![OutField { node: 2, field: 0, name: "out".into() }],
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)
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}
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fn describe_node(prefix: &str, n: &BlueprintNode) {
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match n {
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BlueprintNode::Leaf(factory) => {
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// A blueprint leaf is a value-empty LeafFactory (post cycle-0016): no
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// built node, so no input/output schema yet — introspect its declared
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// render label + tunable param count (inputs/outputs exist only after
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// build, on the compiled flat node).
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println!(
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"{prefix}LEAF {:<14} params={}",
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factory.label(),
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factory.params().len()
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);
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}
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BlueprintNode::Composite(c) => {
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// output() is now a record (&[OutField]); render the whole field list
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// (one entry today, but the type is the multi-field shape of #40).
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let out_fields: Vec<(usize, usize)> =
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c.output().iter().map(|f| (f.node, f.field)).collect();
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println!(
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"{prefix}COMPOSITE name={:?} interior_items={} roles={} out={:?}",
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c.name(),
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c.nodes().len(),
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c.input_roles().len(),
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out_fields,
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);
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for inner in c.nodes() {
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describe_node(&format!("{prefix} "), inner);
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}
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for (r, role) in c.input_roles().iter().enumerate() {
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println!("{prefix} role[{r}] {:?} fans into {:?}", role.name, role.targets);
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}
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for e in c.edges() {
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println!("{prefix} interior edge {e:?}");
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}
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}
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}
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}
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fn main() {
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let bp = Blueprint::new(
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vec![
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BlueprintNode::Composite(sma_cross()),
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aura_std::Exposure::factory().into(),
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],
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vec![SourceSpec {
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kind: ScalarKind::F64,
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targets: vec![Target { node: 0, slot: 0 }],
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}],
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vec![Edge { from: 0, to: 1, slot: 0, from_field: 0 }],
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);
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println!("== Blueprint graph-as-data walk ==");
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println!("sources: {}", bp.sources().len());
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for (i, s) in bp.sources().iter().enumerate() {
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println!(" source[{i}] kind={:?} -> {:?}", s.kind, s.targets);
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}
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println!("top-level items: {}", bp.nodes().len());
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for n in bp.nodes() {
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describe_node(" ", n);
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}
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println!("top-level edges: {}", bp.edges().len());
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for e in bp.edges() {
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println!(" edge {e:?}");
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}
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// The walk must reach the interior of the composite purely through the
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// public accessors — no engine internals.
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let first = &bp.nodes()[0];
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if let BlueprintNode::Composite(c) = first {
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assert_eq!(c.name(), "sma_cross");
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assert_eq!(c.nodes().len(), 3, "composite interior should have 3 items");
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assert_eq!(c.input_roles().len(), 1, "one price role");
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assert_eq!(c.input_roles()[0].name, "price", "the role carries its boundary name");
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assert_eq!(c.input_roles()[0].targets.len(), 2, "price fans into both SMAs");
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let out = c.output();
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assert_eq!(out.len(), 1, "the cross re-exports one output field");
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assert_eq!((out[0].node, out[0].field), (2, 0), "Sub output is the port");
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println!("OK: walked the composite interior via public accessors only.");
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} else {
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panic!("expected composite as first item");
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}
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}
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