breadcrumbs/tests/flow_watch.rs
Breadway 9009404536
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Wire breadcrumbs into the bread event fabric (app id crumbs)
The watch daemon publishes bread.crumbs.profile.changed and
bread.crumbs.health.changed on real transitions (not every poll tick)
and honors bread.command.crumbs.set_profile via the existing
state::set_profile path. BreadClient is fail-silent: if breadd is
down, breadcrumbs behaves exactly as before.

Document the contract in EVENTS.md. CLAUDE.md now points at
CONTRIBUTING (single-trunk, no three-branch model), bakery, and
EVENTS.md.
2026-08-15 21:38:16 +08:00

575 lines
20 KiB
Rust

//! In-process tests for the actual state machine (`flow::run`) and the watch
//! loop's health classification (`watch::classify`), driven entirely through
//! a faked `breadcrumbs::util::Runner` (see `tests/common`) — no subprocess
//! is ever spawned. This complements `tests/cli.rs`'s black-box coverage
//! (which spawns the real binary against fake-bin shell scripts) with fast,
//! precise coverage of the logic itself: candidate priority order, the
//! bootstrap+Tailscale gate, and every `watch::Health` transition.
mod common;
use std::collections::BTreeMap;
use bread_utils::bread_client::BreadEvent;
use breadcrumbs::bread_events;
use breadcrumbs::config::{Config, NetworkDef, Profile, Settings};
use breadcrumbs::flow;
use breadcrumbs::state::{self, State};
use breadcrumbs::util::with_runner;
use breadcrumbs::watch::{classify, Health};
use common::{fail, ok, EnvSandbox, FakeRunner};
fn net(ssid: &str, password: Option<&str>) -> NetworkDef {
NetworkDef {
ssid: ssid.to_string(),
password: password.map(str::to_string),
hidden: false,
}
}
fn hidden_net(ssid: &str, password: Option<&str>) -> NetworkDef {
NetworkDef {
ssid: ssid.to_string(),
password: password.map(str::to_string),
hidden: true,
}
}
fn base_config() -> Config {
Config {
settings: Settings::default(),
networks: Vec::new(),
profiles: BTreeMap::new(),
}
}
/// Wires up the nmcli plumbing every `flow::run` call needs regardless of
/// scenario: a Wi-Fi interface exists, radio/rescan calls are no-ops, no
/// saved NM connection profiles exist yet (so every connect takes the
/// "create via `device wifi connect`" path), DNS enforcement succeeds, and
/// the device reports connected after any successful connect attempt.
fn base_nm(visible_ssids: &[&str]) -> FakeRunner {
let visible = visible_ssids.join("\n");
FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "radio wifi on", ok(""))
.on_contains("nmcli", "wifi rescan", ok(""))
.on_contains("nmcli", "-f SSID device wifi list", ok(&visible))
.on_contains("nmcli", "NAME,TYPE", ok("")) // no saved profiles
.on_contains("nmcli", "GENERAL.CON-UUID", ok("uuid-1"))
.on_contains("nmcli", "ipv4.ignore-auto-dns", ok(""))
.on_contains("nmcli", "device reapply", ok(""))
.on_contains("nmcli", "DEVICE,STATE", ok("wlan0:connected"))
}
/// A successful `device wifi connect <ssid> ...` for every ssid in `ssids`.
fn allow_connects(runner: FakeRunner, ssids: &[&'static str]) -> FakeRunner {
ssids.iter().fold(runner, |r, ssid| {
let ssid: &'static str = ssid;
r.on(
move |prog, args| prog == "nmcli" && args.contains(&"connect") && args.contains(&ssid),
ok(""),
)
})
}
// ---------------------------------------------------------------------
// flow::run — candidate priority (pass 1 / pass 2)
// ---------------------------------------------------------------------
#[test]
fn flow_run_connects_to_first_visible_candidate_in_priority_order() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.networks = vec![
net("First", Some("pw1")),
net("Second", Some("pw2")),
];
cfg.profiles.insert(
"home".into(),
Profile {
networks: vec!["First".into(), "Second".into()],
..Default::default()
},
);
let runner = allow_connects(base_nm(&["First", "Second"]), &["First", "Second"])
.on(|prog, _| prog == "curl", ok("204"))
.with_command("curl");
let calls = runner.calls_handle();
let outcome = with_runner(runner, || flow::run(&mut cfg, "home"));
match outcome {
flow::Outcome::Connected { ssid, note } => {
assert_eq!(ssid, "First");
assert_eq!(note, None);
}
other => panic!("expected Connected, got {other:?}"),
}
// Priority order actually mattered: "Second" was never dialed even
// though it was visible and would have succeeded too.
let dialed_second = calls
.borrow()
.iter()
.any(|c| c.prog == "nmcli" && c.args.contains(&"connect".to_string()) && c.args.iter().any(|a| a == "Second"));
assert!(!dialed_second, "connected to Second when First should win");
// The password used for the winning connect is now NM's problem, not
// breadcrumbs' — cleared and (via clear_password_if_used) persisted.
assert_eq!(cfg.network("First").unwrap().password, None);
// Never touched, so its password is untouched too.
assert_eq!(
cfg.network("Second").unwrap().password,
Some("pw2".to_string())
);
}
#[test]
fn flow_run_pass2_falls_back_to_hidden_candidate_not_in_scan() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
// "Ghost" is neither visible nor hidden, so pass 1 *and* pass 2 both
// skip it outright — it should never be dialed.
cfg.networks = vec![
net("Ghost", Some("pw-ghost")),
hidden_net("Shadow", Some("pw-shadow")),
];
cfg.profiles.insert(
"away".into(),
Profile {
networks: vec!["Ghost".into(), "Shadow".into()],
..Default::default()
},
);
// Neither SSID shows up in the scan — "Shadow" is only reachable via the
// pass-2 "hidden and unseen" path.
let runner = allow_connects(base_nm(&[]), &["Shadow"])
.on(|prog, _| prog == "curl", ok("204"))
.with_command("curl");
let calls = runner.calls_handle();
let outcome = with_runner(runner, || flow::run(&mut cfg, "away"));
match outcome {
flow::Outcome::Connected { ssid, .. } => assert_eq!(ssid, "Shadow"),
other => panic!("expected Connected to Shadow, got {other:?}"),
}
let dialed_ghost = calls
.borrow()
.iter()
.any(|c| c.args.iter().any(|a| a == "Ghost") && c.args.contains(&"connect".to_string()));
assert!(!dialed_ghost, "Ghost should never have been dialed");
}
#[test]
fn flow_run_unknown_profile_short_circuits_before_touching_nm() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
let runner = FakeRunner::new(); // no rules at all
let calls = runner.calls_handle();
let outcome = with_runner(runner, || flow::run(&mut cfg, "does-not-exist"));
assert!(matches!(outcome, flow::Outcome::UnknownProfile(p) if p == "does-not-exist"));
// The only `Runner::run` call on this path is `notify`/`log`'s own
// `date` timestamp lookup — nmcli (or anything network-related) is
// never touched for a profile that doesn't exist.
assert!(
calls.borrow().iter().all(|c| c.prog != "nmcli"),
"unknown-profile path should never shell out to nmcli: {:?}",
calls.borrow()
);
}
// ---------------------------------------------------------------------
// flow::run — bootstrap + Tailscale gating
// ---------------------------------------------------------------------
fn tailscale_json_ok(exit_node: &str) -> String {
format!(
r#"{{"BackendState":"Running","Peer":{{"k1":{{"HostName":"{exit_node}","DNSName":"{exit_node}.ts.net.","Online":true,"ExitNode":true,"ExitNodeOption":true}}}}}}"#
)
}
fn tailscale_json_missing() -> &'static str {
r#"{"BackendState":"Running","Peer":{}}"#
}
#[test]
fn flow_run_moves_past_bootstrap_once_tailscale_is_healthy() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.settings.exit_node = "exitnode".into();
cfg.networks = vec![net("Guest", Some("guest-pw")), net("Corp", Some("corp-pw"))];
cfg.profiles.insert(
"work".into(),
Profile {
bootstrap: Some("Guest".into()),
networks: vec!["Corp".into()],
tailscale: true,
..Default::default()
},
);
let runner = allow_connects(base_nm(&["Guest", "Corp"]), &["Guest", "Corp"])
.with_command("curl")
.with_command("tailscale")
.on(|prog, _| prog == "curl", ok("204"))
.on_contains("tailscale", "status", ok(&tailscale_json_ok("exitnode")))
.on_contains("tailscale", "set", ok(""));
let calls = runner.calls_handle();
let outcome = with_runner(runner, || flow::run(&mut cfg, "work"));
match outcome {
flow::Outcome::Connected { ssid, .. } => assert_eq!(ssid, "Corp"),
other => panic!("expected Connected to Corp, got {other:?}"),
}
// Both the bootstrap and target connects used a local password, so both
// should have been cleared once NetworkManager took over.
assert_eq!(cfg.network("Guest").unwrap().password, None);
assert_eq!(cfg.network("Corp").unwrap().password, None);
let dialed_guest = calls
.borrow()
.iter()
.any(|c| c.args.iter().any(|a| a == "Guest") && c.args.contains(&"connect".to_string()));
assert!(dialed_guest, "bootstrap should have been dialed first");
}
#[test]
fn flow_run_stays_on_bootstrap_and_never_dials_target_when_tailscale_unhealthy() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.settings.exit_node = "exitnode".into();
cfg.networks = vec![net("Guest", Some("guest-pw")), net("Corp", Some("corp-pw"))];
cfg.profiles.insert(
"work".into(),
Profile {
bootstrap: Some("Guest".into()),
networks: vec!["Corp".into()],
tailscale: true,
..Default::default()
},
);
let runner = allow_connects(base_nm(&["Guest", "Corp"]), &["Guest", "Corp"])
.with_command("curl")
.with_command("tailscale")
.on(|prog, _| prog == "curl", ok("204"))
.on(
|prog, args| prog == "tailscale" && args.contains(&"status"),
ok(tailscale_json_missing()),
)
.on(
|prog, args| prog == "tailscale" && args.contains(&"set"),
ok(""),
);
let calls = runner.calls_handle();
let outcome = with_runner(runner, || flow::run(&mut cfg, "work"));
match &outcome {
flow::Outcome::TailscaleError { ssid, health } => {
assert_eq!(ssid.as_deref(), Some("Guest"));
assert_eq!(*health, breadcrumbs::tailscale::TsHealth::ExitNodeMissing);
}
other => panic!("expected TailscaleError, got {other:?}"),
}
let dialed_corp = calls
.borrow()
.iter()
.any(|c| c.args.iter().any(|a| a == "Corp") && c.args.contains(&"connect".to_string()));
assert!(
!dialed_corp,
"target network must never be dialed while Tailscale is unhealthy"
);
// The bootstrap connect *did* use a password and succeeded, so it's
// cleared even though the overall flow ends in an error.
assert_eq!(cfg.network("Guest").unwrap().password, None);
}
// ---------------------------------------------------------------------
// watch::classify — health-state transitions
// ---------------------------------------------------------------------
#[test]
fn classify_reports_unknown_profile_without_touching_nm() {
let _env = EnvSandbox::new();
let cfg = base_config(); // no profiles at all
let runner = FakeRunner::new();
let calls = runner.calls_handle();
let (health, ssid) = with_runner(runner, || classify(&cfg, "ghost"));
assert_eq!(health, Health::UnknownProfile);
assert_eq!(ssid, None);
assert!(calls.borrow().is_empty());
}
#[test]
fn classify_reports_no_adapter_when_wifi_interface_absent() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.profiles.insert("away".into(), Profile::default());
// `device status` succeeds but lists no wifi-type device.
let runner = FakeRunner::new().on_contains("nmcli", "DEVICE,TYPE", ok("eth0:ethernet"));
let (health, _) = with_runner(runner, || classify(&cfg, "away"));
assert_eq!(health, Health::NoAdapter);
}
#[test]
fn classify_reports_down_no_net_when_internet_check_fails() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.profiles.insert("away".into(), Profile::default());
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:HomeWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("192.168.1.50/24"))
.on(|prog, _| prog == "curl" || prog == "ping", fail(""));
let (health, ssid) = with_runner(runner, || classify(&cfg, "away"));
assert_eq!(health, Health::DownNoNet);
assert_eq!(ssid, Some("HomeWifi".to_string()));
}
#[test]
fn classify_reports_up_when_healthy_and_tailscale_not_required() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.profiles.insert("home".into(), Profile::default()); // tailscale: false
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:HomeWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("192.168.1.50/24"))
.with_command("curl")
.on(|prog, _| prog == "curl", ok("204"));
let (health, ssid) = with_runner(runner, || classify(&cfg, "home"));
assert_eq!(health, Health::Up);
assert_eq!(ssid, Some("HomeWifi".to_string()));
}
#[test]
fn classify_reports_down_tailscale_manual_when_not_installed() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.profiles.insert(
"work".into(),
Profile {
tailscale: true,
..Default::default()
},
);
// No `with_command("tailscale")`, so `tailscale::installed()` is false —
// `status::gather` never even tries to run the `tailscale` binary.
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:CorpWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("10.0.0.5/24"))
.with_command("curl")
.on(|prog, _| prog == "curl", ok("204"));
let (health, _) = with_runner(runner, || classify(&cfg, "work"));
assert_eq!(health, Health::DownTailscaleManual);
}
#[test]
fn classify_reports_down_tailscale_manual_when_needs_login() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.profiles.insert(
"work".into(),
Profile {
tailscale: true,
..Default::default()
},
);
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:CorpWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("10.0.0.5/24"))
.with_command("curl")
.with_command("tailscale")
.on(|prog, _| prog == "curl", ok("204"))
.on(
|prog, args| prog == "tailscale" && args.contains(&"status"),
ok(r#"{"BackendState":"NeedsLogin"}"#),
);
let (health, _) = with_runner(runner, || classify(&cfg, "work"));
assert_eq!(health, Health::DownTailscaleManual);
}
#[test]
fn classify_reports_down_tailscale_other_when_exit_node_offline() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.settings.exit_node = "exitnode".into();
cfg.profiles.insert(
"work".into(),
Profile {
tailscale: true,
..Default::default()
},
);
let json = r#"{"BackendState":"Running","Peer":{"k1":{"HostName":"exitnode","Online":false,"ExitNode":false,"ExitNodeOption":true}}}"#;
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:CorpWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("10.0.0.5/24"))
.with_command("curl")
.with_command("tailscale")
.on(|prog, _| prog == "curl", ok("204"))
.on(
|prog, args| prog == "tailscale" && args.contains(&"status"),
ok(json),
);
let (health, _) = with_runner(runner, || classify(&cfg, "work"));
assert_eq!(health, Health::DownTailscaleOther);
}
#[test]
fn classify_reports_up_when_tailscale_healthy() {
let _env = EnvSandbox::new();
let mut cfg = base_config();
cfg.settings.exit_node = "exitnode".into();
cfg.profiles.insert(
"work".into(),
Profile {
tailscale: true,
..Default::default()
},
);
let runner = FakeRunner::new()
.on_contains("nmcli", "DEVICE,TYPE", ok("wlan0:wifi"))
.on_contains("nmcli", "ACTIVE,SSID", ok("yes:CorpWifi"))
.on_contains("nmcli", "IP4.ADDRESS", ok("10.0.0.5/24"))
.with_command("curl")
.with_command("tailscale")
.on(|prog, _| prog == "curl", ok("204"))
.on_contains("tailscale", "status", ok(&tailscale_json_ok("exitnode")));
let (health, _) = with_runner(runner, || classify(&cfg, "work"));
assert_eq!(health, Health::Up);
}
// ---------------------------------------------------------------------
// bread.command.crumbs.set_profile — persists via the same path as the
// CLI, and must not depend on breadd being reachable (`emit` is
// fire-and-forget).
// ---------------------------------------------------------------------
fn command_event(event: &str, data: serde_json::Value) -> BreadEvent {
BreadEvent {
event: event.to_string(),
timestamp: 0,
data,
}
}
#[test]
fn set_profile_command_persists_even_with_no_daemon_reachable() {
let _env = EnvSandbox::new();
let cfg = Config::load().expect("fresh config");
state::set_profile(&cfg, "away").unwrap();
assert_eq!(State::load("away").profile, "away");
let acted = bread_events::handle_command(&command_event(
"bread.command.crumbs.set_profile",
serde_json::json!({ "profile": "home" }),
));
assert!(acted, "known profile must persist");
assert_eq!(State::load("away").profile, "home");
}
#[test]
fn set_profile_command_rejects_unknown_profile() {
let _env = EnvSandbox::new();
let cfg = Config::load().expect("fresh config");
state::set_profile(&cfg, "away").unwrap();
let acted = bread_events::handle_command(&command_event(
"bread.command.crumbs.set_profile",
serde_json::json!({ "profile": "bogus" }),
));
assert!(!acted);
assert_eq!(
State::load("away").profile,
"away",
"a rejected set_profile must not touch state"
);
}
#[test]
fn set_profile_command_rejects_missing_profile_field() {
let _env = EnvSandbox::new();
let cfg = Config::load().expect("fresh config");
state::set_profile(&cfg, "away").unwrap();
let acted = bread_events::handle_command(&command_event(
"bread.command.crumbs.set_profile",
serde_json::json!({}),
));
assert!(!acted);
assert_eq!(State::load("away").profile, "away");
}
#[test]
fn handle_command_ignores_unrecognized_verb() {
let _env = EnvSandbox::new();
let cfg = Config::load().expect("fresh config");
state::set_profile(&cfg, "away").unwrap();
let acted = bread_events::handle_command(&command_event(
"bread.command.crumbs.pin",
serde_json::json!({}),
));
assert!(!acted);
assert_eq!(
State::load("away").profile,
"away",
"an unrecognized verb must not touch state"
);
}
#[test]
fn handle_command_ignores_events_outside_its_own_command_namespace() {
let _env = EnvSandbox::new();
let cfg = Config::load().expect("fresh config");
state::set_profile(&cfg, "away").unwrap();
assert!(!bread_events::handle_command(&command_event(
"bread.command.clip.clear",
serde_json::json!({}),
)));
assert!(!bread_events::handle_command(&command_event(
"bread.crumbs.profile.changed",
serde_json::json!({ "from": "away", "to": "home" }),
)));
assert_eq!(State::load("away").profile, "away");
}