Files
pbakaus_impeccable/crates/cli/tests/agent_target.rs
T
a3bb21cbde Address review: one Go per tab, declines for a granted miss, and grace per overlay
Four review threads on the agent-target protocol and the hook stand-down.

Overlay: a tab acting on one target is busy for every other target
(`agent_target_in_flight`), so two held generate requests can never both
be claimed by one tab and the second Go can never overwrite the session
the first one minted. Every exit from actOnAgentTarget ends the acting
state, and teardown clears the target ledger, so a Go that never happened
does not refuse the next connection's targets. A miss after a granted
claim now declines (handing the lease back so another page or a remount
can serve) instead of posting a result that ended the request for every
tab.

Hook: the live-preview marker probe runs before the per-session edit cap,
so a file already past the cap stands down for a variants wrap instead
of emitting the suppression notice.

Server: each overlay's first no_match word extends the resolution grace
by the full window (its watch re-reports do not), so an overlay that
reports after another page's grace lapsed still gets its late-mount
watch instead of completing the roll call with a no_match verdict.

Tests: a Rust and a Node protocol case for the late overlay's grace, a
hook case for the cap-then-wrap order, and contract pins for the busy
check, the decline on a granted miss, and the teardown clear.

Written with AI assistance (Claude).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-09-15 05:45:49 +05:00

471 lines
24 KiB
Rust

//! Agent-initiated element targeting (the `generate` command) against a real
//! `live-server`: the held-open `POST /agent-target`, the overlay's
//! `/agent-target-result`, and the `/agent-target-claim` roll call with its
//! leases. The full 28-case protocol matrix runs from Node
//! (tests/live-agent-target.test.mjs); this covers the core paths so
//! `cargo test --workspace` gates them on every platform.
use std::io::{BufRead, BufReader, Read, Write};
use std::net::TcpStream;
use std::path::Path;
use std::time::{Duration, Instant};
fn http(port: u16, method: &str, target: &str, body: Option<&str>) -> (u16, String) {
let mut s = TcpStream::connect(("127.0.0.1", port)).expect("connect");
s.set_read_timeout(Some(Duration::from_secs(20))).unwrap();
let body = body.unwrap_or("");
let req = format!(
"{} {} HTTP/1.1\r\nHost: 127.0.0.1:{}\r\nContent-Type: application/json\r\nContent-Length: {}\r\nConnection: close\r\n\r\n{}",
method,
target,
port,
body.len(),
body
);
s.write_all(req.as_bytes()).unwrap();
let mut out = Vec::new();
let _ = s.read_to_end(&mut out);
let text = String::from_utf8_lossy(&out).into_owned();
let status: u16 = text.split_whitespace().nth(1).and_then(|c| c.parse().ok()).unwrap_or(0);
let body = text.split_once("\r\n\r\n").map(|(_, b)| b.to_string()).unwrap_or_default();
let body = if text.to_ascii_lowercase().contains("transfer-encoding: chunked") {
let mut rest = body.as_str();
let mut assembled = String::new();
while let Some((size_line, after)) = rest.split_once("\r\n") {
let size = usize::from_str_radix(size_line.trim(), 16).unwrap_or(0);
if size == 0 {
break;
}
assembled.push_str(&after[..size.min(after.len())]);
rest = after.get(size + 2..).unwrap_or("");
}
assembled
} else {
body
};
(status, body)
}
fn post_json(port: u16, path: &str, body: serde_json::Value) -> (u16, serde_json::Value) {
let (status, text) = http(port, "POST", path, Some(&body.to_string()));
let parsed = serde_json::from_str(&text).unwrap_or(serde_json::json!({ "raw": text }));
(status, parsed)
}
/// A minimal fake overlay: holds the SSE stream open and yields `data:` frames.
struct Overlay {
reader: BufReader<TcpStream>,
}
impl Overlay {
fn connect(port: u16, token: &str, client_id: &str) -> Overlay {
let mut s = TcpStream::connect(("127.0.0.1", port)).expect("connect sse");
s.set_read_timeout(Some(Duration::from_secs(10))).unwrap();
let req = format!(
"GET /events?token={}&clientId={} HTTP/1.1\r\nHost: 127.0.0.1:{}\r\nAccept: text/event-stream\r\n\r\n",
token, client_id, port
);
s.write_all(req.as_bytes()).unwrap();
let mut reader = BufReader::new(s);
// Consume the response head.
loop {
let mut line = String::new();
let n = reader.read_line(&mut line).expect("sse head");
if n == 0 || line == "\r\n" {
break;
}
}
Overlay { reader }
}
/// The next `data:` frame whose parsed JSON satisfies `matches`; chunk
/// size lines and keepalives are skipped.
fn next(&mut self, matches: impl Fn(&serde_json::Value) -> bool) -> serde_json::Value {
let deadline = Instant::now() + Duration::from_secs(10);
while Instant::now() < deadline {
let mut line = String::new();
match self.reader.read_line(&mut line) {
Ok(0) => panic!("sse stream closed"),
Ok(_) => {}
Err(e) => panic!("sse read: {e}"),
}
let line = line.trim_end_matches(['\r', '\n']);
if let Some(json) = line.strip_prefix("data: ") {
if let Ok(v) = serde_json::from_str::<serde_json::Value>(json) {
if matches(&v) {
return v;
}
}
}
}
panic!("no matching sse frame within 10s");
}
}
fn wait_for(p: &Path, secs: u64) -> bool {
let deadline = Instant::now() + Duration::from_secs(secs);
while !p.exists() && Instant::now() < deadline {
std::thread::sleep(Duration::from_millis(50));
}
p.exists()
}
fn free_port() -> u16 {
let l = std::net::TcpListener::bind("127.0.0.1:0").unwrap();
let port = l.local_addr().unwrap().port();
drop(l);
port
}
struct Server {
child: std::process::Child,
dir: std::path::PathBuf,
port: u16,
token: String,
}
impl Server {
fn start(tag: &str) -> Server {
let dir = std::env::temp_dir().join(format!("impeccable-agent-target-{}-{}", tag, std::process::id()));
let _ = std::fs::remove_dir_all(&dir);
std::fs::create_dir_all(dir.join(".impeccable/live")).unwrap();
std::fs::write(dir.join("index.html"), "<html><body><h1>t</h1></body></html>").unwrap();
let port = free_port();
let child = std::process::Command::new(env!("CARGO_BIN_EXE_impeccable"))
.args(["live-server", &format!("--port={}", port)])
.current_dir(&dir)
.env("IMPECCABLE_LIVE_COPY_AGENT", "off")
// A short timeout keeps the browser_timeout case fast; the env
// override exists exactly for this. The lease shrinks with it.
.env("IMPECCABLE_AGENT_TARGET_TIMEOUT_MS", "400")
.env("IMPECCABLE_AGENT_TARGET_CLAIM_LEASE_MS", "250")
.env("IMPECCABLE_AGENT_TARGET_RESOLVE_GRACE_MS", "150")
.stdout(std::process::Stdio::null())
.stderr(std::process::Stdio::null())
.spawn()
.expect("spawn live-server");
let pid_file = dir.join(".impeccable/live/server.json");
assert!(wait_for(&pid_file, 10), "server pid file never appeared");
let info: serde_json::Value =
serde_json::from_str(&std::fs::read_to_string(&pid_file).unwrap()).unwrap();
let port = info["port"].as_u64().expect("port") as u16;
let token = info["token"].as_str().expect("token").to_string();
Server { child, dir, port, token }
}
fn target(&self, extra: serde_json::Value) -> serde_json::Value {
let mut body = serde_json::json!({ "token": self.token, "selector": "h1", "action": "bolder", "count": 3 });
if let (Some(b), Some(e)) = (body.as_object_mut(), extra.as_object()) {
for (k, v) in e {
b.insert(k.clone(), v.clone());
}
}
body
}
/// POST /agent-target on a thread: the server holds it until a verdict.
fn hold(&self, extra: serde_json::Value) -> std::thread::JoinHandle<(u16, serde_json::Value)> {
let port = self.port;
let body = self.target(extra);
std::thread::spawn(move || post_json(port, "/agent-target", body))
}
fn claim(&self, target_id: &str, client_id: &str, eligible: bool) -> serde_json::Value {
let body = if eligible {
serde_json::json!({ "token": self.token, "targetId": target_id, "clientId": client_id, "eligible": true })
} else {
serde_json::json!({ "token": self.token, "targetId": target_id, "clientId": client_id, "eligible": false, "state": "CYCLING", "reason": "session_active" })
};
post_json(self.port, "/agent-target-claim", body).1
}
}
impl Drop for Server {
fn drop(&mut self) {
let _ = http(self.port, "GET", &format!("/stop?token={}", self.token), None);
let _ = self.child.kill();
let _ = self.child.wait();
let _ = std::fs::remove_dir_all(&self.dir);
}
}
#[test]
fn agent_target_validates_and_answers_no_browser() {
let s = Server::start("validate");
let (st, body) = post_json(s.port, "/agent-target", serde_json::json!({ "token": "nope", "selector": "h1", "action": "bolder", "count": 3 }));
assert_eq!(st, 401, "{body}");
let (st, body) = post_json(s.port, "/agent-target", s.target(serde_json::json!({ "action": "bold" })));
assert_eq!(st, 400);
assert!(body["error"].as_str().unwrap().contains("invalid action"), "{body}");
assert!(body["error"].as_str().unwrap().contains("bolder"), "{body}");
let (st, body) = post_json(s.port, "/agent-target", s.target(serde_json::json!({ "count": 9 })));
assert_eq!(st, 400);
assert_eq!(body["error"], serde_json::json!("agent_target: count must be 1-8"));
let (st, body) = post_json(s.port, "/agent-target", serde_json::json!({ "token": s.token, "action": "bolder", "count": 3 }));
assert_eq!(st, 400);
assert_eq!(body["error"], serde_json::json!("agent_target: selector is required"));
// No overlay attached: answered at once, not held.
let (st, body) = post_json(s.port, "/agent-target", s.target(serde_json::json!({})));
assert_eq!(st, 200);
assert_eq!(body["ok"], serde_json::json!(false));
assert_eq!(body["error"], serde_json::json!("no_browser_connected"));
}
#[test]
fn agent_target_broadcasts_and_resolves_with_the_browser_result() {
let s = Server::start("resolve");
let mut tab = Overlay::connect(s.port, &s.token, "tab-a");
tab.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({ "text": "Studio", "index": 2, "prompt": "warmer", "dryRun": true }));
let pushed = tab.next(|m| m["type"] == "agent_target");
assert_eq!(pushed["selector"], serde_json::json!("h1"));
assert_eq!(pushed["text"], serde_json::json!("Studio"));
assert_eq!(pushed["index"], serde_json::json!(2));
assert_eq!(pushed["prompt"], serde_json::json!("warmer"));
assert_eq!(pushed["dryRun"], serde_json::json!(true));
let target_id = pushed["targetId"].as_str().expect("targetId").to_string();
assert_eq!(target_id.len(), 8);
let claim = s.claim(&target_id, "tab-a", true);
assert_eq!(claim, serde_json::json!({ "ok": true, "granted": true, "pending": true }));
// A second tab is denied while the lease is held, and told the request
// is still pending.
let denied = s.claim(&target_id, "tab-b", true);
assert_eq!(denied, serde_json::json!({ "ok": true, "granted": false, "pending": true }));
let (st, ack) = post_json(
s.port,
"/agent-target-result",
serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "dryRun": true, "matchCount": 1, "element": { "tag": "h1" } }),
);
assert_eq!(st, 200);
assert_eq!(ack, serde_json::json!({ "ok": true, "delivered": true }));
let (st, verdict) = held.join().unwrap();
assert_eq!(st, 200, "{verdict}");
assert_eq!(verdict["targetId"], serde_json::json!(target_id));
assert_eq!(verdict["ok"], serde_json::json!(true));
assert_eq!(verdict["matchCount"], serde_json::json!(1));
// Resolved: a late result reports delivered:false, a late claim says gone.
let (_, late) = post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true }));
assert_eq!(late, serde_json::json!({ "ok": true, "delivered": false }));
assert_eq!(s.claim(&target_id, "tab-b", true), serde_json::json!({ "ok": true, "granted": false, "pending": false }));
}
#[test]
fn agent_target_times_out_when_the_overlay_never_answers() {
let s = Server::start("timeout");
let mut tab = Overlay::connect(s.port, &s.token, "tab-a");
tab.next(|m| m["type"] == "connected");
let started = Instant::now();
let held = s.hold(serde_json::json!({}));
tab.next(|m| m["type"] == "agent_target");
let (st, verdict) = held.join().unwrap();
assert_eq!(st, 200);
assert_eq!(verdict["error"], serde_json::json!("browser_timeout"));
assert_eq!(verdict["timeoutMs"], serde_json::json!(400));
assert!(started.elapsed() < Duration::from_secs(5));
}
#[test]
fn agent_target_roll_call_answers_busy_once_every_overlay_declined() {
let s = Server::start("busy");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let started = Instant::now();
let held = s.hold(serde_json::json!({}));
let pushed = a.next(|m| m["type"] == "agent_target");
let target_id = pushed["targetId"].as_str().unwrap().to_string();
assert_eq!(s.claim(&target_id, "tab-a", false), serde_json::json!({ "ok": true, "granted": false, "pending": true }), "the first decline leaves the request pending");
assert_eq!(s.claim(&target_id, "tab-b", false), serde_json::json!({ "ok": true, "granted": false, "pending": false }), "the last decline completes the roll call");
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["error"], serde_json::json!("busy"));
assert_eq!(verdict["state"], serde_json::json!("CYCLING"));
assert_eq!(verdict["reason"], serde_json::json!("session_active"));
assert!(started.elapsed() < Duration::from_millis(350), "the busy verdict did not wait for the timeout");
}
#[test]
fn agent_target_lease_lapses_and_a_disconnect_releases_it() {
let s = Server::start("lease");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
// A holds the lease; B is denied inside it.
assert_eq!(s.claim(&target_id, "tab-a", true)["granted"], serde_json::json!(true));
assert_eq!(s.claim(&target_id, "tab-b", true)["granted"], serde_json::json!(false));
// A leaves without a result: its lease is handed back at once, well
// inside the 250ms lease, and B rescues the request.
drop(a);
let mut granted = false;
for _ in 0..20 {
std::thread::sleep(Duration::from_millis(15));
if s.claim(&target_id, "tab-b", true)["granted"] == serde_json::json!(true) {
granted = true;
break;
}
}
assert!(granted, "the disconnect released the lease");
post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "sessionId": "aabbccdd" }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["ok"], serde_json::json!(true));
assert_eq!(verdict["sessionId"], serde_json::json!("aabbccdd"));
let _ = &mut b;
}
#[test]
fn agent_target_replays_pending_targets_to_a_late_overlay() {
let s = Server::start("replay");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
a.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let pushed = a.next(|m| m["type"] == "agent_target");
let target_id = pushed["targetId"].as_str().unwrap().to_string();
// B connects after the broadcast and still hears the pending target.
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
let replayed = b.next(|m| m["type"] == "agent_target");
assert_eq!(replayed["targetId"], serde_json::json!(target_id));
assert_eq!(s.claim(&target_id, "tab-b", true)["granted"], serde_json::json!(true));
post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "sessionId": "aabbccdd" }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["sessionId"], serde_json::json!("aabbccdd"));
}
#[test]
fn agent_target_reconnect_keeps_the_overlays_lease_and_word() {
let s = Server::start("reconnect");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
assert_eq!(s.claim(&target_id, "tab-a", true)["granted"], serde_json::json!(true));
// An EventSource reconnect: the same page opens a replacement connection
// under its clientId before the old one is seen to close.
let mut a2 = Overlay::connect(s.port, &s.token, "tab-a");
a2.next(|m| m["type"] == "agent_target");
drop(a);
std::thread::sleep(Duration::from_millis(150));
// The old connection's close must not hand tab-a's lease to anyone:
// tab-b stays denied, tab-a renews as the holder.
assert_eq!(s.claim(&target_id, "tab-b", true)["granted"], serde_json::json!(false), "the lease survived the reconnect");
assert_eq!(s.claim(&target_id, "tab-a", true)["granted"], serde_json::json!(true));
post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "sessionId": "aabbccdd" }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["sessionId"], serde_json::json!("aabbccdd"));
let _ = (&mut a2, &mut b);
}
#[test]
fn agent_target_roll_call_counts_overlays_not_connections() {
let s = Server::start("distinct");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut a2 = Overlay::connect(s.port, &s.token, "tab-a");
a.next(|m| m["type"] == "connected");
a2.next(|m| m["type"] == "connected");
let started = Instant::now();
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
// One overlay behind two connections reports busy once: that completes
// the roll call instead of waiting on a "second" report until timeout.
assert_eq!(s.claim(&target_id, "tab-a", false), serde_json::json!({ "ok": true, "granted": false, "pending": false }), "one overlay behind two connections completes the roll call alone");
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["error"], serde_json::json!("busy"));
assert!(started.elapsed() < Duration::from_millis(350), "the busy verdict did not wait for the timeout");
let _ = &mut a2;
}
#[test]
fn agent_target_answers_the_resolution_verdict_when_no_page_can_serve() {
let s = Server::start("no-match");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let started = Instant::now();
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
// Both idle pages lack the element: each declines with its resolution
// verdict instead of claiming.
let decline = |cid: &str, raw: u64| serde_json::json!({ "token": s.token, "targetId": target_id, "clientId": cid, "eligible": false, "state": "IDLE", "reason": "no_match", "result": { "ok": false, "error": "no_match", "selector": "h1", "matchCount": 0, "rawMatchCount": raw } });
assert_eq!(post_json(s.port, "/agent-target-claim", decline("tab-a", 0)).1, serde_json::json!({ "ok": true, "granted": false, "pending": true }));
// Every page said no_match: the roll call stays open for the resolution
// grace (150ms here), so the last decline is still answered pending.
assert_eq!(post_json(s.port, "/agent-target-claim", decline("tab-b", 2)).1, serde_json::json!({ "ok": true, "granted": false, "pending": true }), "an all-no_match roll call stays open for the grace");
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["error"], serde_json::json!("no_match"), "{verdict}");
assert_eq!(verdict["ok"], serde_json::json!(false));
assert_eq!(verdict["targetId"], serde_json::json!(target_id));
let elapsed = started.elapsed();
assert!(elapsed >= Duration::from_millis(140) && elapsed < Duration::from_millis(380), "answered when the grace lapsed, not before and not by the timeout: {elapsed:?}");
let _ = &mut b;
}
#[test]
fn agent_target_prefers_busy_over_no_match_across_pages() {
let s = Server::start("busy-wins");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
// The page that has the element is mid-session; the other page lacks it.
// The agent should retry later, so busy outranks no_match.
post_json(s.port, "/agent-target-claim", serde_json::json!({ "token": s.token, "targetId": target_id, "clientId": "tab-b", "eligible": false, "state": "IDLE", "reason": "no_match", "result": { "ok": false, "error": "no_match", "matchCount": 0, "rawMatchCount": 0 } }));
assert_eq!(s.claim(&target_id, "tab-a", false), serde_json::json!({ "ok": true, "granted": false, "pending": false }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["error"], serde_json::json!("busy"), "{verdict}");
assert_eq!(verdict["reason"], serde_json::json!("session_active"));
let _ = &mut b;
}
#[test]
fn agent_target_lets_a_late_mount_claim_within_the_resolution_grace() {
let s = Server::start("late-mount");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
a.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
// The only page cannot resolve the target yet: its decline leaves the
// request pending for the grace instead of answering no_match.
let decline = serde_json::json!({ "token": s.token, "targetId": target_id, "clientId": "tab-a", "eligible": false, "state": "IDLE", "reason": "no_match", "result": { "ok": false, "error": "no_match", "matchCount": 0, "rawMatchCount": 0 } });
assert_eq!(post_json(s.port, "/agent-target-claim", decline).1, serde_json::json!({ "ok": true, "granted": false, "pending": true }));
std::thread::sleep(Duration::from_millis(60));
// The element mounted: the same page claims and serves.
assert_eq!(s.claim(&target_id, "tab-a", true), serde_json::json!({ "ok": true, "granted": true, "pending": true }));
post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "sessionId": "aabbccdd" }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["ok"], serde_json::json!(true), "{verdict}");
assert_eq!(verdict["sessionId"], serde_json::json!("aabbccdd"));
}
#[test]
fn agent_target_late_overlay_first_no_match_extends_the_grace() {
let s = Server::start("late-grace");
let mut a = Overlay::connect(s.port, &s.token, "tab-a");
let mut b = Overlay::connect(s.port, &s.token, "tab-b");
a.next(|m| m["type"] == "connected");
b.next(|m| m["type"] == "connected");
let held = s.hold(serde_json::json!({}));
let target_id = a.next(|m| m["type"] == "agent_target")["targetId"].as_str().unwrap().to_string();
let decline = |cid: &str| serde_json::json!({ "token": s.token, "targetId": target_id, "clientId": cid, "eligible": false, "state": "IDLE", "reason": "no_match", "result": { "ok": false, "error": "no_match", "matchCount": 0, "rawMatchCount": 0 } });
assert_eq!(post_json(s.port, "/agent-target-claim", decline("tab-a")).1["pending"], serde_json::json!(true));
// Tab A's grace (150ms) lapses before tab B says its first word.
std::thread::sleep(Duration::from_millis(200));
let reported_at = Instant::now();
let answer = post_json(s.port, "/agent-target-claim", decline("tab-b")).1;
assert_eq!(answer["pending"], serde_json::json!(true), "a late overlay's first no_match word extends the grace: {answer}");
// Tab B's watcher finds the element within its grace and claims.
std::thread::sleep(Duration::from_millis(60));
assert_eq!(s.claim(&target_id, "tab-b", true)["granted"], serde_json::json!(true));
post_json(s.port, "/agent-target-result", serde_json::json!({ "token": s.token, "targetId": target_id, "ok": true, "sessionId": "aabbccdd" }));
let (_, verdict) = held.join().unwrap();
assert_eq!(verdict["sessionId"], serde_json::json!("aabbccdd"), "{verdict}");
assert!(reported_at.elapsed() < Duration::from_millis(400));
let _ = &mut b;
}