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Aura/crates/aura-cli/tests/project_nodes.rs
T
claude ab3f16879b feat(runner, cli, research): metric/tap schema carriers + the C29 coverage walk
C29 compile/unit seam, tasks 6-10 -- iteration 1 of the self-description
plan complete: every engine-shipped vocabulary entry now carries a
gate-clean one-line meaning.

- aura-runner: the internal tap recording sink threads its doc (the
  last unthreaded NodeSchema site) -- first full workspace build since
  the field became required.
- aura-cli scaffold: the sample node's template carries a doc line plus
  a maintenance comment, so every scaffolded extension crate starts
  gate-clean; both extension-vocabulary fixture exemplars thread real
  meaning lines (the load seam walks these in iteration 2). New E2E:
  the scaffold's own doc must pass its own gate -- an alibi doc in the
  template would teach the wrong pattern to every new project, and the
  compiler checks only the field's presence, never its shape.
- aura-research: metric_vocabulary()/tap_vocabulary() promote from bare
  name arrays to MetricSchema/TapSchema carriers (id + doc, 17 + 4
  authored lines); callers adapt to .id with byte-identical output
  (introspection goldens unchanged). The #190 guard keeps its triple --
  the doc column adds no fourth roster site.
- Coverage: tests/self_description.rs walks all five vocabularies
  (blocks, metrics, taps, folds, std nodes) through doc_gate -- the
  guard that keeps any future edit from blanking a doc.

Adjudicated review residue: the 17 metric doc strings are surfaced by
no CLI path yet -- deliberate; task 8 pins callers byte-identical, the
surfacing belongs to the CLI self-description work (#315). Plan-cited
coordinates lib.rs:1003/:1283 resolved to the real caller sites
(:1019/:1299); the plan's literal test code was reconciled to the real
accessors (FoldRegistry::core().roster(), Env::std()).

Gates: cargo test --workspace green (0 failed, incl. the new coverage
walk + scaffold E2E); cargo clippy --workspace --all-targets --
-D warnings clean.

refs #316
2026-07-23 17:19:01 +02:00

244 lines
11 KiB
Rust

//! `aura nodes new` (#241): sibling node-crate scaffold + [nodes] attach.
use std::path::Path;
use std::process::Command;
fn temp_cwd(tag: &str) -> std::path::PathBuf {
let d = Path::new(env!("CARGO_TARGET_TMPDIR")).join(format!("aura-nodes-{tag}"));
let _ = std::fs::remove_dir_all(&d);
std::fs::create_dir_all(&d).unwrap();
d
}
fn aura(args: &[&str], cwd: &Path) -> std::process::Output {
Command::new(env!("CARGO_BIN_EXE_aura"))
.args(args)
.current_dir(cwd)
.output()
.expect("spawn aura")
}
/// Property (#258): a test sandbox must not outlive its run — `temp_cwd` must
/// hand back a run-STABLE path that lives off the `env::temp_dir()` tmpfs, so
/// its own pre-create `remove_dir_all` reclaims the previous run instead of
/// stranding one `aura-nodes-*` directory per test-binary invocation.
///
/// The helper today keys the name on `std::process::id()`, so every run mints a
/// new path the wipe can never match: >50 000 leaked dirs filled a 16 GiB tmpfs
/// to 100%. The in-repo remedy is the knob-lab scaffold's (commit 84e1075, sibling
/// `project_sweep_campaign.rs`): a fixed name under `CARGO_TARGET_TMPDIR`. This
/// pins that property at one representative site — the assertion reads the path
/// value only, so it is deterministic and does not depend on any external state.
#[test]
fn temp_cwd_sandbox_does_not_leak_under_env_temp_dir() {
let sandbox = temp_cwd("leakguard");
// Read the path value, then reclaim immediately so a red run of this very
// test does not itself add to the leak it describes.
let path = sandbox.clone();
let _ = std::fs::remove_dir_all(&sandbox);
let pid = std::process::id().to_string();
assert!(
!path.to_string_lossy().contains(&pid),
"sandbox name embeds the pid ({pid}), so no later run's pre-create wipe \
can reclaim it — one directory leaks per run: {}",
path.display(),
);
assert!(
!path.starts_with(std::env::temp_dir()),
"sandbox lives under env::temp_dir() — the tmpfs the >50k-dir leak filled: {}",
path.display(),
);
}
#[test]
fn nodes_new_scaffolds_a_sibling_crate_and_attaches_it() {
let cwd = temp_cwd("attach");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
let out = aura(&["nodes", "new", "lab-nodes", "--engine-path", &engine], &proj);
assert!(out.status.success(), "stderr: {}", String::from_utf8_lossy(&out.stderr));
let stdout = String::from_utf8_lossy(&out.stdout);
assert!(stdout.contains("lab_nodes"), "names the namespace: {stdout}");
let crate_dir = cwd.join("lab-nodes");
assert!(crate_dir.join("Cargo.toml").is_file());
assert!(crate_dir.join("src/lib.rs").is_file());
assert!(!crate_dir.join("Aura.toml").exists(), "a node crate is not a project");
let toml = std::fs::read_to_string(proj.join("Aura.toml")).unwrap();
assert!(toml.contains("[nodes]"), "{toml}");
assert!(toml.contains("../lab-nodes"), "{toml}");
}
/// Property (#243): a freshly scaffolded node crate stamps resolvable
/// provenance too — `aura nodes new` follows the same `git init` with an
/// initial commit as `aura new` (`scaffold_node_crate`, `scaffold.rs`), so
/// `git rev-parse HEAD` resolves from the crate's very first run rather than
/// leaving HEAD unborn. This half of #243's property runs and is asserted
/// separately from `new_outside_a_work_tree_leaves_a_resolvable_head`
/// (`project_new.rs`), which covers the `aura new` project half only.
#[test]
fn nodes_new_leaves_a_resolvable_head() {
let cwd = temp_cwd("resolvable-head");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
let out = aura(&["nodes", "new", "lab-nodes", "--engine-path", &engine], &proj);
assert!(out.status.success(), "stderr: {}", String::from_utf8_lossy(&out.stderr));
let crate_dir = cwd.join("lab-nodes");
let head = Command::new("git")
.args(["rev-parse", "HEAD"])
.current_dir(&crate_dir)
.output()
.expect("run git rev-parse HEAD");
assert!(
head.status.success(),
"fresh node-crate scaffold has no HEAD (`git rev-parse HEAD` failed): {}",
String::from_utf8_lossy(&head.stderr)
);
}
/// Property (#241): `--namespace` sets the vocabulary prefix independently
/// of the crate's own (directory) name — a crate can be named anything, but
/// the blueprints that reference its nodes address them under the namespace
/// the flag chose, never a name silently derived from the crate name. This
/// is exercised transitively by the big sweep/campaign fixture
/// (`project_sweep_campaign.rs`, `--namespace knob_lab` on a `knob-lab-nodes`
/// crate) but a failure there would not cleanly bisect to this property; this
/// test isolates it.
#[test]
fn nodes_new_namespace_flag_overrides_crate_derived_default() {
let cwd = temp_cwd("ns-override");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
let out = aura(
&["nodes", "new", "weird-crate-name", "--namespace", "custom_ns", "--engine-path", &engine],
&proj,
);
assert!(out.status.success(), "stderr: {}", String::from_utf8_lossy(&out.stderr));
let stdout = String::from_utf8_lossy(&out.stdout);
assert!(stdout.contains("custom_ns"), "reports the override namespace: {stdout}");
assert!(
!stdout.contains("weird_crate_name"),
"must not fall back to the crate-derived default namespace: {stdout}"
);
let lib = std::fs::read_to_string(cwd.join("weird-crate-name/src/lib.rs")).unwrap();
assert!(
lib.contains("custom_ns::Scale") && lib.contains("namespace: \"custom_ns\""),
"the generated vocabulary is registered under the override namespace: {lib}"
);
assert!(
!lib.contains("weird_crate_name"),
"the crate-derived name must not leak into the vocabulary: {lib}"
);
}
/// Property (#241): the single-crate attach guard checks for the *presence*
/// of a `[nodes]` section in `Aura.toml`, not merely a non-empty `crates`
/// list — a hand-edited `Aura.toml` carrying an empty `[nodes]` section still
/// refuses a second attach. Without this, `aura nodes new` would scaffold a
/// crate that `append_nodes_pointer` then refuses to wire in, leaving an
/// orphaned crate on disk.
#[test]
fn nodes_new_refuses_when_nodes_section_present_but_crates_empty() {
let cwd = temp_cwd("empty-section");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let toml_path = proj.join("Aura.toml");
let mut toml = std::fs::read_to_string(&toml_path).unwrap();
toml.push_str("\n[nodes]\ncrates = []\n");
std::fs::write(&toml_path, toml).unwrap();
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
let out = aura(&["nodes", "new", "x-nodes", "--engine-path", &engine], &proj);
assert_eq!(out.status.code(), Some(1));
assert!(
String::from_utf8_lossy(&out.stderr).contains("already attached"),
"{}",
String::from_utf8_lossy(&out.stderr)
);
assert!(
!cwd.join("x-nodes").exists(),
"the guard must fire before scaffolding the crate (no orphaned crate on disk)"
);
}
#[test]
fn a_second_nodes_new_refuses_single_crate() {
let cwd = temp_cwd("second");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
assert!(aura(&["nodes", "new", "a-nodes", "--engine-path", &engine], &proj).status.success());
let out = aura(&["nodes", "new", "b-nodes", "--engine-path", &engine], &proj);
assert_eq!(out.status.code(), Some(1));
assert!(
String::from_utf8_lossy(&out.stderr).contains("already attached"),
"{}", String::from_utf8_lossy(&out.stderr)
);
}
#[test]
fn nodes_new_outside_a_project_refuses() {
let cwd = temp_cwd("outside");
let out = aura(&["nodes", "new", "x-nodes"], &cwd);
assert_eq!(out.status.code(), Some(1));
assert!(
String::from_utf8_lossy(&out.stderr).contains("needs a project"),
"{}", String::from_utf8_lossy(&out.stderr)
);
}
/// The full role-2 loop: scaffold, build, and the project resolves the
/// crate's namespace end to end (vocabulary listing names the node).
#[test]
fn attached_crate_namespace_resolves_after_build() {
let cwd = temp_cwd("resolve");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
assert!(aura(&["nodes", "new", "lab-nodes", "--engine-path", &engine], &proj).status.success());
let build = Command::new("cargo")
.arg("build")
.current_dir(cwd.join("lab-nodes"))
.output()
.expect("cargo build");
assert!(build.status.success(), "{}", String::from_utf8_lossy(&build.stderr));
let out = aura(&["graph", "introspect", "--vocabulary"], &proj);
assert!(out.status.success(), "stderr: {}", String::from_utf8_lossy(&out.stderr));
assert!(
String::from_utf8_lossy(&out.stdout).contains("lab_nodes::Scale"),
"{}", String::from_utf8_lossy(&out.stdout)
);
}
/// Property (#316 self-description): the scaffold's own seed node ships a
/// `doc:` line that itself passes the C29 shape gate (`aura_core::doc_gate`)
/// — non-empty and not a bare restatement of the type name. This exact text
/// is what a new extension author copy-pastes as the very first node of
/// their crate; if the scaffold's own doc failed the gate it would teach the
/// wrong pattern (an alibi doc) to every project built from it, and nothing
/// else would catch that — `NodeSchema.doc` is required at compile time
/// (E0063 without it) but its *shape* is never checked by the compiler.
#[test]
fn nodes_new_scaffold_doc_passes_the_doc_gate() {
let cwd = temp_cwd("doc-gate");
assert!(aura(&["new", "lab"], &cwd).status.success());
let proj = cwd.join("lab");
let engine = env!("CARGO_MANIFEST_DIR").to_string() + "/../..";
assert!(aura(&["nodes", "new", "lab-nodes", "--engine-path", &engine], &proj).status.success());
let lib = std::fs::read_to_string(cwd.join("lab-nodes/src/lib.rs")).unwrap();
let doc_line = lib
.lines()
.find(|l| l.trim_start().starts_with("doc:"))
.unwrap_or_else(|| panic!("scaffold must carry a doc: field: {lib}"));
let doc_text = doc_line
.split_once('"')
.and_then(|(_, rest)| rest.rsplit_once('"'))
.map(|(text, _)| text)
.unwrap_or_else(|| panic!("doc: field must be a string literal: {doc_line}"));
aura_core::doc_gate("lab_nodes::Scale", doc_text).unwrap_or_else(|f| {
panic!("scaffold's own doc line fails its own gate: {f:?}{doc_text:?}")
});
}