# Blueprint view as main graph + composite definitions — Implementation Plan > **Parent spec:** `docs/specs/0017-blueprint-view-definitions.md` > > **For agentic workers:** REQUIRED SUB-SKILL: use the `implement` skill to run > this plan. Steps use `- [ ]` checkboxes for tracking. **Goal:** Rewrite the `aura graph` blueprint view (`render_blueprint`) to a main graph (composites as opaque nodes) + a `where:` definitions section, on a flat ascii-dag layout only, and re-point its tests. **Architecture:** `render_blueprint` builds a flat main graph (one node per top-level item — a composite labelled by `name()`, opaque) plus a definitions block where each distinct composite type (deduped by `name()`, collected recursively) renders its interior once with `[in:k]`/`[out]` port markers. The old `ItemDisplay`/`producer_id`/`consumer_ids`/subgraph machinery and the nested-composite `unimplemented!` are removed. `render_flat_graph` is untouched. **Tech Stack:** `crates/aura-cli/src/graph.rs` (render), `crates/aura-cli/src/main.rs` (tests), `ascii-dag` flat `RenderMode::Vertical`, the `aura_engine` Blueprint/Composite API. --- **Files this plan creates or modifies:** - Modify: `crates/aura-cli/src/graph.rs:1-132` — module doc-comment (1-10), drop `ItemDisplay`/`producer_id`/`consumer_ids` (16-46), rewrite `render_blueprint` (48-132) incl. removing the `unimplemented!` (74-77); add `render_flat`, `collect_distinct_composites`, `render_definition`; fix imports (12-14). - Modify: `crates/aura-cli/src/main.rs:184` — stale "clustered blueprint view" comment in the `graph` arm. - Test: `crates/aura-cli/src/main.rs:215-227,256-286` — replace the two old blueprint tests; add `blueprint_view_main_graph_shows_composite_as_opaque_node`, `blueprint_view_defines_each_composite_once`, `nested_composite_renders_without_panic`, `reused_composite_defined_once`, and a recaptured `blueprint_view_golden`. --- ### Task 1: Rewrite `render_blueprint` + behavioural tests (RED → GREEN) **Files:** - Modify: `crates/aura-cli/src/graph.rs:1-132` - Test: `crates/aura-cli/src/main.rs:215-227,256-286` (+ new tests) - [ ] **Step 1: Replace the two old blueprint tests with the four behavioural tests** In `crates/aura-cli/src/main.rs`, DELETE the test `blueprint_view_shows_cluster_and_param_generic_labels` (currently lines 215-227) and the test `blueprint_view_golden` (currently lines 256-286). In their place put the four behavioural tests below (the recaptured golden is added in Task 2). Insert them in the `#[cfg(test)] mod tests` block (e.g. where the old blueprint tests were): ```rust #[test] fn blueprint_view_main_graph_shows_composite_as_opaque_node() { let out = graph::render_blueprint(&sample_blueprint()); // the composite is a single opaque main-graph node, not an expanded cluster assert!(out.contains("[sma_cross]"), "missing opaque composite node:\n{out}"); // top-level leaves render as their bare-type nodes for needle in ["[Exposure]", "[SimBroker]", "[Recorder]"] { assert!(out.contains(needle), "missing {needle}:\n{out}"); } // a definitions section is present assert!(out.contains("where:"), "missing where: section:\n{out}"); // the flat layout draws no subgraph cluster box assert!(!out.contains('╔'), "blueprint view must not draw a cluster box:\n{out}"); } #[test] fn blueprint_view_defines_each_composite_once() { let out = graph::render_blueprint(&sample_blueprint()); // the sma_cross body is defined exactly once, with its interior + ports assert_eq!(out.matches("sma_cross:").count(), 1, "definition not rendered once:\n{out}"); for needle in ["[SMA]", "[Sub]", "[in:0]", "[out]"] { assert!(out.contains(needle), "missing {needle} in definition:\n{out}"); } } #[test] fn nested_composite_renders_without_panic() { // a composite whose interior contains another composite — render reads // structure only (no compile/validate), so a minimal fixture suffices. let inner = Composite::new( "inner", vec![Sma::factory().into()], vec![], vec![vec![Target { node: 0, slot: 0 }]], OutPort { node: 0, field: 0 }, ); let outer = Composite::new( "outer", vec![BlueprintNode::Composite(inner), Sub::factory().into()], vec![Edge { from: 0, to: 1, slot: 0, from_field: 0 }], vec![vec![Target { node: 0, slot: 0 }]], OutPort { node: 1, field: 0 }, ); let bp = Blueprint::new( vec![BlueprintNode::Composite(outer)], vec![SourceSpec { kind: ScalarKind::F64, targets: vec![Target { node: 0, slot: 0 }] }], vec![], ); let out = graph::render_blueprint(&bp); // must not panic (no unimplemented!) // outer shows the inner composite as an opaque node, and both get a definition assert!(out.contains("[outer]"), "missing opaque outer node:\n{out}"); assert!(out.contains("[inner]"), "inner must be opaque inside outer's definition:\n{out}"); assert_eq!(out.matches("outer:").count(), 1, "outer defined once:\n{out}"); assert_eq!(out.matches("inner:").count(), 1, "inner defined once:\n{out}"); } #[test] fn reused_composite_defined_once() { // the same composite type used twice: two opaque nodes, one definition. let bp = Blueprint::new( vec![ BlueprintNode::Composite(sma_cross("dup")), BlueprintNode::Composite(sma_cross("dup")), Exposure::factory().into(), ], vec![SourceSpec { kind: ScalarKind::F64, targets: vec![Target { node: 0, slot: 0 }, Target { node: 1, slot: 0 }], }], vec![ Edge { from: 0, to: 2, slot: 0, from_field: 0 }, Edge { from: 1, to: 2, slot: 0, from_field: 0 }, ], ); let out = graph::render_blueprint(&bp); assert_eq!(out.matches("[dup]").count(), 2, "two opaque uses expected:\n{out}"); assert_eq!(out.matches("dup:").count(), 1, "body defined once:\n{out}"); } ``` These tests need `Composite`, `OutPort`, `BlueprintNode`, `Blueprint`, `Edge`, `SourceSpec`, `Target`, `ScalarKind`, `Sma`, `Sub`, `Exposure` in scope. They are already imported at the top of `main.rs` (lines 11-16: `aura_core::{... ScalarKind ...}`, `aura_engine::{... Blueprint, BlueprintNode, Composite, Edge, ... OutPort, ... SourceSpec, Target}`, `aura_std::{Exposure, Recorder, SimBroker, Sma, Sub}`). No new imports needed in `main.rs`. - [ ] **Step 2: Run the new tests to verify they fail (RED)** Run: `cargo test -p aura-cli` Expected: FAIL — the four new tests fail (the opaque-node / `where:` / definition assertions fail against the current cluster render, and `nested_composite_renders_without_panic` panics at the `unimplemented!("...nested-composite cluster rendering...")`). The four must-stay-green tests still pass; the build itself is clean (this is a behavioural RED, not a compile error). - [ ] **Step 3: Rewrite `graph.rs` — imports + module doc** In `crates/aura-cli/src/graph.rs`, replace the module doc-comment (lines 1-10) and imports (lines 12-14) with: ```rust //! The `aura graph` ASCII-DAG adapter (#13, #38): turns the engine's //! graph-as-data (C9) into an `ascii_dag::Graph` rendered to a `String`. Two //! views. `render_blueprint` shows the authored structure — a flat main graph //! wiring the harness with each composite as a single opaque node, plus a //! `where:` section that defines each distinct composite type once (its interior //! with `[in:k]`/`[out]` port markers). `render_flat_graph` shows the flat //! post-inline graph (boundaries dissolved, C23). Rendering reads structure + //! node `label()`s only — never `eval`. //! //! ascii-dag borrows its node labels as `&'a str`, so each function first //! materializes the owned label `String`s (which outlive the `Graph`), then //! borrows into them. `RenderMode::Vertical` is mandatory: Horizontal collapses a //! fan-out onto one path. Both views build flat graphs (no subgraphs): the //! subgraph layout mis-centres wide sibling labels, the flat layout does not. use ascii_dag::graph::{Graph, RenderMode}; use aura_core::Node; use aura_engine::{Blueprint, BlueprintNode, Composite, Edge, SourceSpec}; ``` (`Composite` is added — named by the new helpers; `Target` is dropped — no longer named after the `ItemDisplay` collapse. `Edge`/`SourceSpec`/`Node` remain: they are `render_flat_graph`'s parameter types.) - [ ] **Step 4: Rewrite `graph.rs` — replace `ItemDisplay`/`producer_id`/`consumer_ids`/`render_blueprint` (old lines 16-132)** Delete the `ItemDisplay` enum, `producer_id`, `consumer_ids`, and the old `render_blueprint` body (old lines 16-132) and replace with: ```rust /// Blueprint view: the authored structure (#38). A flat main graph wires the /// harness with each composite shown as a single opaque node; a `where:` section /// defines each distinct composite type once. Flat layout only (no subgraphs). pub fn render_blueprint(bp: &Blueprint) -> String { // pass 1: one main-graph node per top-level item (leaf -> bare-type label; // composite -> its name, opaque) and one node per source. let mut labels: Vec = Vec::new(); let mut item_ids: Vec = Vec::with_capacity(bp.nodes().len()); for item in bp.nodes() { let id = labels.len(); labels.push(match item { BlueprintNode::Leaf(factory) => factory.label(), BlueprintNode::Composite(c) => c.name().to_string(), }); item_ids.push(id); } let mut source_ids: Vec = Vec::with_capacity(bp.sources().len()); for src in bp.sources() { let id = labels.len(); labels.push(format!("source:{:?}", src.kind)); source_ids.push(id); } // pass 2: edges — every endpoint is a single opaque node, so the slot that // mattered for cluster fan-in is irrelevant here. let mut edges: Vec<(usize, usize)> = Vec::new(); for e in bp.edges() { edges.push((item_ids[e.from], item_ids[e.to])); } for (src, &sid) in bp.sources().iter().zip(&source_ids) { for t in &src.targets { edges.push((sid, item_ids[t.node])); } } let main = render_flat(&labels, &edges); // definitions: each distinct composite type, once, recursively. let defs = collect_distinct_composites(bp); if defs.is_empty() { return main; } let body = defs.iter().map(|c| render_definition(c)).collect::>().join("\n"); format!("{main}\nwhere:\n\n{body}") } /// Build and render a flat (no-subgraph) ascii-dag graph from owned labels and /// edge pairs — the same idiom `render_flat_graph` uses. fn render_flat(labels: &[String], edges: &[(usize, usize)]) -> String { let mut g = Graph::with_mode(RenderMode::Vertical); for (id, l) in labels.iter().enumerate() { g.add_node(id, l); } for &(from, to) in edges { g.add_edge(from, to, None); } g.render() } /// Every distinct composite type in the blueprint, in first-seen order, keyed by /// `name()` (the authoring type identity — same name implies same structure). /// Recurses into a composite's interior on first sight so nested composites get /// their own definition; a later same-name occurrence is skipped (deduped). fn collect_distinct_composites(bp: &Blueprint) -> Vec<&Composite> { fn walk<'a>(items: &'a [BlueprintNode], seen: &mut Vec<&'a str>, out: &mut Vec<&'a Composite>) { for item in items { if let BlueprintNode::Composite(c) = item { if !seen.contains(&c.name()) { seen.push(c.name()); out.push(c); walk(c.nodes(), seen, out); } } } } let mut seen: Vec<&str> = Vec::new(); let mut out: Vec<&Composite> = Vec::new(); walk(bp.nodes(), &mut seen, &mut out); out } /// Render one composite's interior as a flat graph: interior leaves as `[type]`, /// nested composites as opaque `[name]`, plus an `[in:k]` entry marker per input /// role (wired to its interior targets) and an `[out]` marker (wired from the /// output port). Prefixed `":\n"`. fn render_definition(c: &Composite) -> String { let mut labels: Vec = Vec::with_capacity(c.nodes().len()); for inner in c.nodes() { labels.push(match inner { BlueprintNode::Leaf(factory) => factory.label(), BlueprintNode::Composite(inner_c) => inner_c.name().to_string(), }); } let mut edges: Vec<(usize, usize)> = Vec::new(); for e in c.edges() { edges.push((e.from, e.to)); } for (role, targets) in c.input_roles().iter().enumerate() { let in_id = labels.len(); labels.push(format!("in:{role}")); for t in targets { edges.push((in_id, t.node)); } } let out_id = labels.len(); labels.push("out".to_string()); edges.push((c.output().node, out_id)); format!("{}:\n{}", c.name(), render_flat(&labels, &edges)) } ``` - [ ] **Step 5: Build (compile gate — `render_blueprint`'s signature is unchanged, so `main()` still compiles)** Run: `cargo build -p aura-cli --all-targets` Expected: compiles, 0 errors. (If clippy flags an unused `Target` import, it was not dropped in Step 3 — drop it.) - [ ] **Step 6: Run the package suite to verify the new tests pass (GREEN)** Run: `cargo test -p aura-cli` Expected: PASS — the four new tests now pass, and the four must-stay-green tests still pass. (`blueprint_view_golden` is not present yet; it is added in Task 2.) --- ### Task 2: Recapture the blueprint golden + full-suite gate **Files:** - Test: `crates/aura-cli/src/main.rs` (re-add `blueprint_view_golden`); comment at `main.rs:184`. - [ ] **Step 1: Capture the exact rendered bytes** Run: `cargo run -q -p aura-cli -- graph` Expected: the new flat main-graph + `where: sma_cross: ...` render prints to stdout (deterministic Sugiyama layout, no RNG). Copy the **verbatim** stdout (including the trailing blank lines `render()` emits) for the golden below. - [ ] **Step 2: Add the recaptured `blueprint_view_golden` test** In `crates/aura-cli/src/main.rs`, in the `#[cfg(test)] mod tests` block, add: ```rust #[test] fn blueprint_view_golden() { let out = graph::render_blueprint(&sample_blueprint()); // ascii-dag's Sugiyama layout is deterministic (no RNG); these are the // exact bytes `aura graph` emits — main graph (composites opaque) + the // `where:` definitions section. Re-capture via `aura graph` if intended. let expected = r#""#; assert_eq!(out, expected, "blueprint render drifted; re-capture if intended"); } ``` Replace `` with the exact bytes captured in Step 1 (raw string `r#"..."#`; preserve every space, box glyph, arrow, and the trailing newlines). Do not hand-edit the captured bytes. - [ ] **Step 3: Fix the stale comment in the `graph` arm** In `crates/aura-cli/src/main.rs`, in `main()`'s `Some("graph")` arm (around line 184), update the comment that calls the default view the "clustered blueprint view": Replace: ```rust // `--compiled` selects the flat post-inline view; default is the // clustered blueprint view. Strictness beyond this stays minimal (#16). ``` with: ```rust // `--compiled` selects the flat post-inline view; default is the // blueprint view (main graph + composite definitions). Strictness // beyond this stays minimal (#16). ``` - [ ] **Step 4: Run the package suite to verify the golden passes** Run: `cargo test -p aura-cli` Expected: PASS — all aura-cli tests including the new `blueprint_view_golden`. If the golden fails, the pasted bytes do not match — re-capture via Step 1 and re-paste; do not hand-edit. - [ ] **Step 5: Full workspace gate — tests + lint** Run: `cargo test --workspace` Expected: PASS, 0 failed. In particular the four must-stay-green tests (`compiled_view_dissolves_the_composite_boundary`, `compiled_view_golden`, `swapped_param_vector_changes_the_compiled_render`, `run_sample_is_deterministic_and_non_trivial`) remain green — `render_flat_graph` is untouched, so `compiled_view_golden` is byte-identical. Run: `cargo clippy --workspace --all-targets -- -D warnings` Expected: 0 warnings (no unused `Target` import, no dead `ItemDisplay`/`producer_id`/ `consumer_ids`).