//! `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 = std::env::temp_dir().join(format!("aura-nodes-{tag}-{}", std::process::id())); 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") } #[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 (#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) ); }