Files
buzz/crates/buzz-backend-kubernetes/tests/wire_fixtures.rs
T
cls 9dfa06ffee
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feat: import Chinese-localized Buzz source snapshot
Signed-off-by: cls_宁波本机 <908705107@qq.com>
2026-08-13 18:34:25 +08:00

223 lines
8.7 KiB
Rust

//! Golden wire fixtures (spec §Provider Protocol).
//!
//! These drive the **built binary** over a real pipe rather than calling an
//! in-process function: the contract the desktop depends on is
//! `stdin → one JSON object on stdout → exit code`, and an in-process test
//! would assert the shape of a value while skipping the three things that
//! actually break — the process writing nothing, writing two objects, or
//! signalling the outcome through the exit code.
use std::io::Write;
use std::path::{Path, PathBuf};
use std::process::{Command, Stdio};
fn fixtures() -> PathBuf {
Path::new(env!("CARGO_MANIFEST_DIR")).join("tests/fixtures/provider-wire")
}
/// Feed one request to the binary; return `(stdout, exit code)`.
fn run(request: &str) -> (String, i32) {
let mut child = Command::new(env!("CARGO_BIN_EXE_buzz-backend-kubernetes"))
// A kubeconfig that does not exist, so a fixture that accidentally
// reaches the cluster fails loudly here instead of depending on
// whatever cluster the developer is pointed at.
.env("KUBECONFIG", "/nonexistent/kubeconfig-for-fixture-tests")
.stdin(Stdio::piped())
.stdout(Stdio::piped())
.spawn()
.expect("could not run the provider binary");
child
.stdin
.take()
.expect("no stdin")
.write_all(request.as_bytes())
.expect("could not write the request");
let out = child.wait_with_output().expect("provider did not exit");
(
String::from_utf8(out.stdout).expect("stdout was not UTF-8"),
out.status.code().unwrap_or(-1),
)
}
fn read(name: &str) -> String {
std::fs::read_to_string(fixtures().join(name))
.unwrap_or_else(|e| panic!("could not read fixture {name}: {e}"))
}
/// Every response fixture, byte-compared after key-sorted re-serialization so
/// a field rename fails here rather than in a desktop reading `undefined`.
#[test]
fn responses_match_their_fixtures() {
let cases = [
"deploy-relay-mesh",
"deploy-relay-mesh-padded",
"deploy-tag-image",
"deploy-no-owner",
];
// The list must cover every response fixture on disk. A literal array is
// never empty, so `!is_empty()` would assert nothing; what can actually go
// wrong is a fixture added to the directory and never added here, which
// reads as a passing suite that exercises one case fewer than it appears to.
let mut on_disk: Vec<String> = std::fs::read_dir(fixtures())
.expect("could not read the fixture directory")
.filter_map(|entry| entry.ok()?.file_name().into_string().ok())
.filter_map(|name| Some(name.strip_suffix(".response.json")?.to_string()))
.collect();
on_disk.sort();
let mut listed: Vec<String> = cases.iter().map(|c| c.to_string()).collect();
listed.sort();
assert_eq!(on_disk, listed, "response fixtures and cases disagree");
for case in cases {
let (stdout, code) = run(&read(&format!("{case}.request.json")));
assert_eq!(code, 0, "{case}: a produced response must exit 0");
// Exactly one object, terminated by exactly one newline. Two responses
// would leave the desktop's reader holding a second one forever.
assert_eq!(
stdout.matches('\n').count(),
1,
"{case}: expected exactly one line, got {stdout:?}"
);
let actual: serde_json::Value =
serde_json::from_str(&stdout).unwrap_or_else(|e| panic!("{case}: {e}: {stdout:?}"));
let expected: serde_json::Value =
serde_json::from_str(&read(&format!("{case}.response.json"))).unwrap();
assert_eq!(
actual, expected,
"{case}: response drifted from its fixture"
);
}
}
/// `info` is checked on the fields the desktop reads rather than byte-for-byte:
/// the namespace default is randomly generated per call (§K8s Namespace), so a
/// golden copy of it would be a test that fails every run.
#[test]
fn info_response_carries_the_contract_fields() {
let (stdout, code) = run(&read("info.request.json"));
assert_eq!(code, 0);
let info: serde_json::Value = serde_json::from_str(&stdout).unwrap();
assert_eq!(info["ok"], true);
assert_eq!(info["protocol_version"], 1);
assert_eq!(info["name"], "kubernetes");
let schema = &info["config_schema"];
assert_eq!(
schema["required"],
serde_json::json!(["namespace", "image"])
);
let default = schema["properties"]["namespace"]["default"]
.as_str()
.expect("no generated namespace default");
assert!(
default.starts_with("buzz-agents-"),
"unexpected namespace default: {default}"
);
let image_default = schema["properties"]["image"]["default"]
.as_str()
.expect("no image default");
assert!(
image_default.starts_with("ghcr.io/block/buzz-sprig:")
&& image_default.contains("@sha256:"),
"unexpected image default: {image_default}"
);
}
/// The desktop's richest payload must parse. No response fixture: this one
/// reaches the cluster, so its outcome depends on a kubeconfig. What it
/// guards is that every field the desktop sends is *accepted* — a payload the
/// provider rejects at parse time is a deploy that never starts.
#[test]
fn the_full_desktop_payload_is_accepted() {
let (stdout, code) = run(&read("deploy-full-launch.request.json"));
assert_eq!(code, 0);
let response: serde_json::Value = serde_json::from_str(&stdout).unwrap();
let error = response["error"].as_str().unwrap_or_default();
// It fails — there is no cluster — but it must fail at the *connection*,
// having accepted every field above it.
assert!(
error.contains("kubeconfig"),
"the full payload was rejected before reaching the cluster: {error}"
);
}
/// Sami's pre-registered respond-to matrix, driven through the built binary.
///
/// `build_env` runs at `main.rs:124`, `client::connect` at `:132`, so under a
/// kubeconfig that cannot exist the error string *is* the ordering assertion:
/// "kubeconfig" means the gate passed and we reached the cluster, anything
/// else means we refused before writing a Secret. A test asserting only
/// `ok: false` would pass on the connection error and prove nothing.
///
/// The cases are applied to the real full-launch request so each one differs
/// from a known-good deploy in exactly the field under test.
#[test]
fn the_respond_to_gate_matches_the_harness_acceptance_surface() {
let key_a = "a".repeat(64);
let padded_upper = format!(" {} ", "A".repeat(64));
// (name, respond_to, allowlist, must reach the cluster)
let cases: Vec<(&str, &str, Option<Vec<String>>, bool)> = vec![
("allowlist + []", "allowlist", Some(vec![]), false),
("allowlist + absent", "allowlist", None, false),
(
"allowlist + junk",
"allowlist",
Some(vec!["beefcafe".into()]),
false,
),
("unparseable mode", "npub1abc", None, false),
("padded mode", " allowlist ", None, false),
(
"allowlist + two valid",
"allowlist",
Some(vec![key_a.clone(), "b".repeat(64)]),
true,
),
(
"owner-only + junk list",
"owner-only",
Some(vec!["beefcafe".into()]),
true,
),
(
"allowlist + padded upper",
"allowlist",
Some(vec![padded_upper]),
true,
),
("nobody", "nobody", None, true),
("anyone", "anyone", None, true),
];
let base: serde_json::Value =
serde_json::from_str(&read("deploy-full-launch.request.json")).unwrap();
for (name, mode, allowlist, reaches_cluster) in cases {
let mut request = base.clone();
let agent = &mut request["agent"];
agent["respond_to"] = serde_json::json!(mode);
agent["respond_to_allowlist"] = match &allowlist {
Some(list) => serde_json::json!(list),
None => serde_json::Value::Null,
};
let (stdout, code) = run(&request.to_string());
assert_eq!(code, 0, "{name}: provider did not exit cleanly");
let response: serde_json::Value = serde_json::from_str(&stdout).unwrap();
let error = response["error"].as_str().unwrap_or_default();
let reached = error.contains("kubeconfig");
assert_eq!(
reached, reaches_cluster,
"{name}: expected reaches_cluster={reaches_cluster}, got error: {error}"
);
if !reaches_cluster {
assert!(
error.contains("deploy refused"),
"{name}: refused, but not by the gate: {error}"
);
}
}
}