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Triple-C/app/src/components/projects/home/BrowserTab.tsx
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import { useCallback, useEffect, useRef, useState } from "react";
import { listen } from "@tauri-apps/api/event";
import type {
BrowserInstallTarget,
BrowserSetupOutcome,
BrowserViewChangedEvent,
BrowserViewPopoutChangedEvent,
BrowserViewStatus,
PlaywrightDetection,
Project,
} from "../../../lib/types";
import {
checkBrowserViewSupport,
closeBrowserViewPopout,
getBrowserViewStatus,
installBrowserViewBrowser,
installBrowserViewSupport,
getBrowserViewMatchWindow,
getBrowserViewPopoutState,
openBrowserViewPopout,
openPageInContainerBrowser,
setBrowserViewEnabled,
setBrowserViewMatchWindow,
setBrowserViewPopoutAlwaysOnTop,
} from "../../../lib/tauri-commands";
import { isBrowserViewUsable } from "../../../lib/browserViewSupport";
import { useAppState } from "../../../store/appState";
import OpenPageDialog from "./OpenPageDialog";
import AccordionSection from "../../ui/AccordionSection";
import Button from "../../ui/Button";
import StatusIndicator from "../../ui/StatusIndicator";
import Toggle from "../../ui/Toggle";
interface Props {
project: Project;
active: boolean;
}
const OFF: BrowserViewStatus = {
enabled: false,
state: "off",
url: null,
host_port: null,
container_port: null,
started_at: null,
detection: null,
message: null,
};
/** Which install is in flight. `null` means none — nothing installs itself. */
type SetupJob = null | "packages" | BrowserInstallTarget;
/**
* Watch — and take over — the browser Claude is driving with Playwright inside
* the container.
*
* The pane is an iframe onto Playwright's own live dashboard, which runs in the
* container and is reached through a token-gated listener on the host's
* loopback. Nothing starts until the user asks: this is remote control of a
* browser in a privileged sandbox, so it is off by default and opted into per
* project, exactly like the auth bridge.
*
* The same rule, harder, applies to setup. Opening this tab *probes* the
* container (one `node -e`, read-only) so the pane can say what is missing
* before the user asks for a view — but it never installs anything. Installing
* packages and downloading a browser are container mutations measured in
* hundreds of megabytes; both are separate, labelled, user-pressed buttons.
*/
export default function BrowserTab({ project, active }: Props) {
const [status, setStatus] = useState<BrowserViewStatus>(OFF);
const [busy, setBusy] = useState(false);
const [error, setError] = useState<string | null>(null);
/** Bumped to force the iframe to reload without changing its src. */
const [reloadKey, setReloadKey] = useState(0);
/** Last read-only probe of the container, for the setup panel. */
const [detection, setDetection] = useState<PlaywrightDetection | null>(null);
const [job, setJob] = useState<SetupJob>(null);
const [outcome, setOutcome] = useState<BrowserSetupOutcome | null>(null);
const [setupError, setSetupError] = useState<string | null>(null);
/**
* Whether the view is in its own window instead of this pane, and whether
* that window is pinned. `null` means "not asked yet" — a distinct state from
* "not popped out", because rendering the iframe on a guess is what puts a
* second viewer on the browser.
*/
const [poppedOut, setPoppedOut] = useState<boolean | null>(null);
const [onTop, setOnTop] = useState(false);
/** The "open a page" dialog, and the request it is running. */
const [matchWindow, setMatchWindow] = useState(false);
const [askPage, setAskPage] = useState(false);
const [openingPage, setOpeningPage] = useState(false);
const pushToast = useAppState((s) => s.pushToast);
const setContainerProgress = useAppState((s) => s.setContainerProgress);
const progress = useAppState((s) => s.containerProgress[project.id]);
const running = project.status === "running";
// The backend is the source of truth: it emits whenever a view starts or is
// torn down (container stopped, project removed, viewer died).
const projectId = project.id;
const mounted = useRef(true);
useEffect(() => {
mounted.current = true;
return () => {
mounted.current = false;
};
}, []);
useEffect(() => {
let dispose: (() => void) | undefined;
listen<BrowserViewChangedEvent>("browser-view-changed", (event) => {
if (event.payload.project_id === projectId && mounted.current) {
setStatus(event.payload.status);
}
}).then((un) => {
if (mounted.current) dispose = un;
else un();
});
return () => dispose?.();
}, [projectId]);
// The window is the backend's, not this component's: it survives the tab
// being closed, the pane being unmounted and the view being torn down from
// elsewhere. So its state is listened for, never assumed.
useEffect(() => {
let dispose: (() => void) | undefined;
listen<BrowserViewPopoutChangedEvent>("browser-view-popout-changed", (event) => {
if (event.payload.project_id === projectId && mounted.current) {
setPoppedOut(event.payload.open);
setOnTop(event.payload.always_on_top);
}
}).then((un) => {
if (mounted.current) dispose = un;
else un();
});
return () => dispose?.();
}, [projectId]);
useEffect(() => {
if (!active || !running) return;
getBrowserViewPopoutState(projectId)
.then((s) => {
if (!mounted.current) return;
setPoppedOut(s.open);
setOnTop(s.always_on_top);
})
// Unreachable in practice, but a pane stuck at "not asked yet" would
// never show the view at all — so fail towards the tab.
.catch(() => mounted.current && setPoppedOut(false));
getBrowserViewMatchWindow(projectId)
.then((on) => mounted.current && setMatchWindow(on))
.catch(() => {});
getBrowserViewStatus(projectId)
.then((s) => mounted.current && setStatus(s))
.catch(() => {});
// Read-only. This is what lets the pane offer setup before the user hits a
// wall, and it is why a "not installed" answer is never stale.
checkBrowserViewSupport(projectId)
.then((d) => mounted.current && setDetection(d))
.catch(() => {});
}, [active, projectId, running]);
const toggle = useCallback(
async (next: boolean) => {
setBusy(true);
setError(null);
try {
const result = await setBrowserViewEnabled(projectId, next);
if (mounted.current) setStatus(result);
} catch (e) {
const detail = String(e);
if (mounted.current) setError(detail);
pushToast({
kind: "error",
message: next ? "Could not start the browser view" : "Could not stop the browser view",
detail,
});
} finally {
if (mounted.current) setBusy(false);
}
},
[projectId, pushToast],
);
/**
* Pop the view out, or pull it back.
*
* Both are window operations only — the viewer keeps running either way — so
* this is cheap enough to toggle freely and never interrupts what the agent
* is doing in the browser.
*/
const popOut = useCallback(async () => {
try {
await openBrowserViewPopout(projectId, onTop);
if (mounted.current) setPoppedOut(true);
} catch (e) {
pushToast({
kind: "error",
message: "Could not open the browser in its own window",
detail: String(e),
});
}
}, [projectId, onTop, pushToast]);
const popIn = useCallback(async () => {
try {
await closeBrowserViewPopout(projectId);
if (mounted.current) setPoppedOut(false);
} catch (e) {
pushToast({
kind: "error",
message: "Could not close the browser window",
detail: String(e),
});
}
}, [projectId, pushToast]);
const toggleOnTop = useCallback(
async (next: boolean) => {
setOnTop(next);
try {
await setBrowserViewPopoutAlwaysOnTop(projectId, next);
} catch (e) {
if (mounted.current) setOnTop(!next);
pushToast({
kind: "error",
message: "Could not change the window's stacking",
detail: String(e),
});
}
},
[projectId, pushToast],
);
/**
* Open a URL in a browser inside the container.
*
* The pane only ever *watched* browsers something else published; this is the
* one action that opens one. It also means the page can be resized later —
* whoever launches a bound browser is the only process that can drive it.
*/
const openPage = useCallback(
async (url: string, width: number, height: number) => {
setOpeningPage(true);
try {
const result = await openPageInContainerBrowser(projectId, url, width, height);
if (!mounted.current) return;
setAskPage(false);
if (result.error) {
pushToast({ kind: "error", message: "The page didn’t open", detail: result.error });
} else {
pushToast({ kind: "success", message: `Opened ${url} at ${width}×${height}` });
}
} catch (e) {
pushToast({
kind: "error",
message: "Could not open the page in the container’s browser",
detail: String(e),
});
} finally {
if (mounted.current) setOpeningPage(false);
}
},
[projectId, pushToast],
);
const toggleMatchWindow = useCallback(
async (next: boolean) => {
setMatchWindow(next);
try {
await setBrowserViewMatchWindow(projectId, next);
} catch (e) {
if (mounted.current) setMatchWindow(!next);
pushToast({
kind: "error",
message: "Could not match the page to the window",
detail: String(e),
});
}
},
[projectId, pushToast],
);
/** Run one install. Every path clears the progress line it started. */
const install = useCallback(
async (which: Exclude<SetupJob, null>) => {
setJob(which);
setSetupError(null);
setOutcome(null);
try {
const result =
which === "packages"
? await installBrowserViewSupport(projectId)
: await installBrowserViewBrowser(projectId, which);
if (!mounted.current) return;
// The command re-probes, so the pane updates itself — no reopening the
// tab, no second button to press.
setDetection(result.detection);
setOutcome(result);
if (result.warning) {
// Not an error — the step did what it said — but the caveat is the
// part that decides whether the browser will actually work.
pushToast({
kind: "info",
message: "Setup finished, with something to know",
detail: result.warning,
});
} else {
pushToast({
kind: "success",
message:
which === "packages" ? "Playwright installed" : `${which} installed and verified`,
});
}
} catch (e) {
const detail = String(e);
if (mounted.current) setSetupError(detail);
pushToast({ kind: "error", message: "Setup failed", detail });
} finally {
setContainerProgress(projectId, null);
if (mounted.current) setJob(null);
}
},
[projectId, pushToast, setContainerProgress],
);
// A stopped container can't be hosting a browser — and can't be installed
// into either, so say that plainly rather than offering controls that would
// only fail.
if (!running) {
return (
<Explainer title="The container isn’t running.">
Start the container, have Claude drive a browser with Playwright, then come
back here to watch it.
</Explainer>
);
}
const live = status.state === "running" && status.url;
// Prefer the probe: it is the fresher of the two, and it is the one that
// reflects an install that just finished.
const probed = detection ?? status.detection;
const ready = isBrowserViewUsable(probed);
// Mirrors Rust `PlaywrightDetection::needs_browser`: the Chrome channel is an
// apt package, so it never shows up in `browsers`, and a container that has
// it is not missing a browser.
const needsBrowser =
probed !== null &&
probed.chrome_channel === null &&
(probed.browsers.length === 0 || revisionSkew(probed));
const needsSetup = probed !== null && (!ready || needsBrowser);
return (
<div className="flex flex-col h-full min-h-0">
<div className="flex items-center gap-2 px-4 py-2 border-b border-[var(--border-color)] flex-shrink-0 flex-wrap">
<StatusIndicator
tone={
busy
? "busy"
: status.state === "running"
? "running"
: status.state === "unavailable"
? "error"
: "off"
}
label={
busy
? "Starting"
: status.state === "running"
? "Live"
: status.state === "unavailable"
? "Unavailable"
: "Off"
}
/>
{live && (
<span className="text-xs text-[var(--text-secondary)] font-mono truncate">
127.0.0.1:{status.host_port} → container :{status.container_port}
</span>
)}
<div className="flex-1" />
{progress && (
<span
className="flex items-center gap-1.5 text-xs text-[var(--text-secondary)] min-w-0"
aria-live="polite"
>
<StatusIndicator tone="busy" label="" />
<span className="truncate">{progress}</span>
</span>
)}
{live && poppedOut === true && (
<span className="flex items-center gap-1.5 text-xs text-[var(--text-secondary)]">
Keep on top
{/* The accessible name matches the visible text, as everywhere else
a Toggle is used — a `<label>` around it would be inert anyway,
since a Toggle renders a button. */}
<Toggle checked={onTop} onChange={toggleOnTop} label="Keep on top" />
</span>
)}
{live && poppedOut === true && (
<span
className="flex items-center gap-1.5 text-xs text-[var(--text-secondary)]"
title="Resize the page itself as the window is dragged, so the layout actually reflows. Applies to pages opened from here."
>
Match window
<Toggle checked={matchWindow} onChange={toggleMatchWindow} label="Match window" />
</span>
)}
{live && poppedOut === false && (
<Button size="md" onClick={() => setReloadKey((k) => k + 1)}>
Reload
</Button>
)}
{live && (
<Button size="md" onClick={() => setAskPage(true)}>
Open a page…
</Button>
)}
{live && poppedOut !== null && (
<Button size="md" onClick={poppedOut ? popIn : popOut}>
{poppedOut ? "Put back in tab" : "Open in own window"}
</Button>
)}
<Button
size="md"
variant={live ? "secondary" : "primary"}
disabled={busy || job !== null}
onClick={() => toggle(!status.enabled || status.state !== "running")}
>
{busy ? "Working…" : live ? "Stop" : "Start browser view"}
</Button>
</div>
{live && poppedOut === true ? (
// The iframe is unmounted while the window is up, on purpose. Two
// viewers on one browser both work, but both also *drive* it — two
// cursors taking over the same page is not a feature.
<div className="flex-1 min-h-0 flex items-center justify-center p-6">
<div className="max-w-[28rem] text-center">
<h2 className="text-[13px] font-semibold text-[var(--text-primary)]">
This view is in its own window.
</h2>
<p className="mt-1 text-[13px] text-[var(--text-secondary)] leading-relaxed">
Move it to another screen, or keep it on top, and watch the browser while
you work here. The view keeps running either way — closing the window
brings it back into this tab.
</p>
<div className="mt-3 flex items-center justify-center gap-2">
<Button size="md" variant="primary" onClick={popIn}>
Put back in tab
</Button>
</div>
</div>
</div>
) : live && poppedOut === false ? (
<iframe
key={reloadKey}
// Loopback only, and the URL carries the one-time session token the
// host-side gate checks before anything reaches the container.
src={status.url ?? undefined}
title={`Playwright browser view for ${project.name}`}
// What is framed here is served by a process inside the container,
// which is the untrusted side of this app. Unsandboxed, it could
// simply set `top.location` and navigate the *app's* webview
// somewhere of its choosing — the frame is cross-origin, so it cannot
// read the app, but steering the whole window is not something a
// viewer pane should be able to do.
//
// The allowances are what the Playwright dashboard actually needs and
// no more:
// allow-scripts — it is an application, not a document.
// allow-same-origin — it must reach its own WebSocket and assets,
// and the host-side gate recognises the pane's
// own sub-resource requests by their
// `Origin`/`Referer`; an opaque origin would
// send `null` and be refused. This does not
// grant access to *this* app: 127.0.0.1:4782x
// is a different origin from the app's.
// allow-forms/-modals/-downloads/-popups — dashboard UI affordances
// (trace download, confirm dialogs, opening a
// page in a new window).
//
// Deliberately absent, and the point of the attribute:
// `allow-top-navigation`, `allow-top-navigation-by-user-activation`
// and `allow-popups-to-escape-sandbox`. Do not add them.
//
// No `referrerPolicy` either: the gate in `browser_view/proxy.rs`
// reads the token out of a same-origin `Referer`, so stripping it
// would break the pane.
sandbox="allow-scripts allow-same-origin allow-forms allow-modals allow-downloads allow-popups"
className="flex-1 min-h-0 w-full border-0 bg-[var(--bg-primary)]"
/>
) : live ? (
// Live, but the window's state hasn't come back yet. An instant, and
// deliberately empty: guessing "not popped out" here is what would
// flash a second viewer onto the browser.
<div className="flex-1 min-h-0" />
) : (
<div className="flex-1 min-h-0 overflow-y-auto">
{/* Setup stays on screen while an install is running and after it
finishes, so its output and caveats don't vanish at the moment
they become readable. */}
{needsSetup ||
status.state === "unavailable" ||
job !== null ||
outcome !== null ||
setupError !== null ? (
<Setup
detection={probed}
message={status.state === "unavailable" ? status.message : null}
job={job}
progress={job ? progress : undefined}
outcome={outcome}
error={setupError}
onInstall={install}
/>
) : error ? (
<Explainer title="The browser view didn’t start." tone="error">
<span className="font-mono text-xs break-words">{error}</span>
</Explainer>
) : (
<Explainer title="Nothing is being watched yet.">
Start the view to run Playwright’s live dashboard inside this container
and mirror it here. You’ll see any browser a script has published with{" "}
<Code>await browser.bind(&apos;claude&apos;)</Code> — and{" "}
<Code>@playwright/mcp</Code> publishes automatically, so nothing extra is
needed if Claude is using that.
</Explainer>
)}
</div>
)}
{askPage && (
<OpenPageDialog
busy={openingPage}
onOpen={openPage}
onClose={() => setAskPage(false)}
/>
)}
</div>
);
}
/**
* Mirrors Rust `PlaywrightDetection::revision_skew`.
*
* Browsers are installed, but not the revision one of the two Playwright copies
* would launch — so the cache looks full and launches fail. A probe that didn't
* answer leaves the executable null, and "unknown" must not read as "broken".
*/
function revisionSkew(d: PlaywrightDetection | null): boolean {
if (!d || d.browsers.length === 0) return false;
// `!= null`, not `!== null`: a probe from a container that predates these
// fields omits them entirely, and `undefined` is "didn't answer" — which must
// never render as "your browsers are wrong".
const viewerBroken = d.chromium_executable != null && !d.chromium_executable_exists;
const scriptsBroken =
d.script_chromium_executable != null && !d.script_chromium_executable_exists;
return viewerBroken || scriptsBroken;
}
/**
* The skew sentence, naming both halves.
*
* "Install a browser" over a cache that visibly already holds one reads as
* nonsense, so the copy has to say which copy of Playwright wants what.
*/
function skewText(d: PlaywrightDetection | null): string {
if (!d) return "";
const scriptsBroken =
d.script_chromium_executable !== null && !d.script_chromium_executable_exists;
const [version, wanted] = scriptsBroken
? [d.script_playwright_version, d.script_chromium_executable]
: [d.playwright_version, d.chromium_executable];
return (
`This container has ${d.browsers.join(", ")}, but ` +
`${scriptsBroken ? 'the Playwright a script gets from require("playwright")' : "the Playwright serving the viewer"}` +
` — ${version ?? "?"} — launches ${wanted ?? "?"}, which isn’t there. ` +
(scriptsBroken
? "Two copies ended up in one tree, each pinning its own browser revision, so the viewer works and every script Claude writes fails. Re-run “Set up Playwright” to reinstall them as one consistent set."
: "Install Chromium below: it runs that build’s own installer, so it fetches exactly the revision that is missing.")
);
}
/** What the container is short of, as a list rather than as prose. */
function missingParts(d: PlaywrightDetection | null): string[] {
if (!d) return [];
const out: string[] = [];
if (!d.node_version) out.push("Node.js");
if (!d.playwright_version) out.push("playwright");
else if (!d.has_bind) out.push("a newer playwright — this build has no browser.bind()");
if (!d.cli_entry) out.push("@playwright/cli");
return out;
}
/**
* Setup, as one action per line, each saying what it costs before it is
* pressed.
*
* The old pane printed npm commands here and left the rest to the user. The
* result, verified with a real one: an `@playwright/mcp` install that could
* never satisfy this pane, a global install that hit EACCES, a Chromium that
* downloaded and then would not start because the image shipped none of its
* shared libraries, and a long tail of commands after that. Current base images
* bake those libraries in, so that last one is fixed at the source — but a
* project keeps its original base image until it is migrated, so the install
* action still handles a container that lacks them.
*/
function Setup({
detection,
message,
job,
progress,
outcome,
error,
onInstall,
}: {
detection: PlaywrightDetection | null;
message: string | null;
job: SetupJob;
progress?: string;
outcome: BrowserSetupOutcome | null;
error: string | null;
onInstall: (which: Exclude<SetupJob, null>) => void;
}) {
const busy = job !== null;
const havePackages = isBrowserViewUsable(detection);
const missing = missingParts(detection);
const browsers = detection?.browsers ?? [];
const chrome = detection?.chrome_channel ?? null;
const noBrowser = browsers.length === 0 && chrome === null;
// Installed browsers that cannot be launched. Handled apart from `noBrowser`
// because the fix is the same button but the sentence must not be "install a
// browser" over a cache that visibly has one.
const skew = revisionSkew(detection) && chrome === null;
return (
<div className="p-4 max-w-[46rem] space-y-4">
<div>
<h2 className="text-[13px] font-semibold text-[var(--text-primary)]">
{!havePackages
? "This container can’t serve a browser view yet"
: skew
? "The installed browser isn’t the one Playwright launches"
: noBrowser
? "Playwright is ready — but there’s no browser to drive yet"
: "This container is set up"}
</h2>
<p className="mt-1 text-[13px] text-[var(--text-secondary)] leading-relaxed">
{message ??
(missing.length > 0
? `Missing: ${missing.join(", ")}.`
: skew
? skewText(detection)
: noBrowser
? "Playwright and the viewer are installed. Install a browser below so there is something to watch."
: "Start the view from the button above once Claude has a browser open.")}
</p>
</div>
<Step
title="1. Playwright and the viewer UI"
detail={
<>
Installs <Code>playwright</Code> and <Code>@playwright/cli</Code> into{" "}
<Code>/workspace/node_modules</Code> inside the container. That directory is
container storage — your project folders are mounted one level down, so
nothing of yours is touched — and no <Code>sudo</Code> is involved. Small
download; browsers come next.
</>
}
done={havePackages}
doneLabel={`Installed — playwright ${detection?.playwright_version ?? ""}, @playwright/cli ${detection?.cli_version ?? ""}`}
action={
<Button
size="md"
variant={havePackages ? "secondary" : "primary"}
disabled={busy}
onClick={() => onInstall("packages")}
>
{job === "packages" ? "Installing…" : havePackages ? "Reinstall" : "Set up Playwright"}
</Button>
}
/>
<Step
title="2. A browser to drive"
detail={
<>
Both check the system libraries a browser links against first. Current base
images ship them, so that step is normally skipped; a container built from an
older image gets them installed with apt, which is the difference between a
browser that downloads successfully and one that also starts. Both end by
actually launching the browser to prove it works. Browsers land in{" "}
<Code>~/.cache/ms-playwright</Code>, which is on the home volume, so they
survive container recreation and are only lost on a project Reset.
</>
}
done={browsers.length > 0 || chrome !== null}
doneLabel={[
browsers.length > 0 ? browsers.join(", ") : null,
chrome ? `Chrome channel (${chrome})` : null,
]
.filter(Boolean)
.join(" · ")}
action={
<div className="flex flex-col gap-2 items-end">
<Button
size="md"
variant={browsers.length > 0 || !havePackages ? "secondary" : "primary"}
disabled={busy || !havePackages}
onClick={() => onInstall("chromium")}
>
{job === "chromium" ? "Installing…" : "Install Chromium"}
</Button>
<Button
size="md"
disabled={busy || !havePackages}
onClick={() => onInstall("chrome")}
>
{job === "chrome" ? "Installing…" : "Install Chrome channel"}
</Button>
</div>
}
>
<ul className="mt-2 space-y-1 text-xs text-[var(--text-secondary)] leading-relaxed">
<li>
<strong className="text-[var(--text-primary)]">Chromium</strong> — Playwright’s
own build, used by <Code>chromium.launch()</Code> with no channel. Several
hundred MB.
</li>
<li>
<strong className="text-[var(--text-primary)]">Chrome channel</strong> — Google
Chrome from apt, which is what <Code>@playwright/mcp</Code> asks for. Install
this one if Claude drives the browser through the MCP plugin. Roughly 150 MB.
</li>
</ul>
</Step>
{busy && (
<p
className="text-xs font-mono text-[var(--text-secondary)] break-all"
aria-live="polite"
>
{progress ?? "Working…"}
</p>
)}
{error && (
<div className="text-xs text-[var(--error)]">
<p className="font-semibold">That didn’t work.</p>
<pre className="mt-1 whitespace-pre-wrap font-mono break-words text-[var(--text-secondary)]">
{error}
</pre>
</div>
)}
{outcome?.warning && (
<div className="text-xs text-[var(--text-primary)] border border-[var(--border-color)] rounded-[var(--radius-control)] p-3">
<p className="font-semibold">Worth knowing</p>
<p className="mt-1 whitespace-pre-wrap text-[var(--text-secondary)] leading-relaxed">
{outcome.warning}
</p>
</div>
)}
{outcome?.log && (
<AccordionSection
id="browser-view-install-log"
title="Install output"
defaultOpen={false}
>
<pre className="p-3 text-xs font-mono whitespace-pre-wrap break-words text-[var(--text-secondary)] max-h-64 overflow-y-auto">
{outcome.log}
</pre>
</AccordionSection>
)}
{detection && (
<dl className="text-xs grid grid-cols-[auto_1fr] gap-x-3 gap-y-1 pt-3 border-t border-[var(--border-color)]">
<Detail label="Node.js" value={detection.node_version} />
<Detail label="Playwright" value={detection.playwright_version} />
<Detail label="Resolved from" value={detection.playwright_path} />
<Detail
label="browser.bind()"
value={detection.has_bind ? "available" : "not in this build"}
/>
<Detail label="@playwright/cli" value={detection.cli_version} />
<Detail
label="Browsers"
value={browsers.length > 0 ? browsers.join(", ") : null}
/>
<Detail label="Chrome channel" value={chrome} />
{detection.searched.length > 0 && (
<Detail label="Searched" value={detection.searched.join(", ")} />
)}
</dl>
)}
</div>
);
}
/** One numbered setup step: what it does, whether it is done, and its button. */
function Step({
title,
detail,
done,
doneLabel,
action,
children,
}: {
title: string;
detail: React.ReactNode;
done: boolean;
doneLabel?: string;
action: React.ReactNode;
children?: React.ReactNode;
}) {
return (
<div className="border border-[var(--border-color)] rounded-[var(--radius-control)] p-3">
<div className="flex items-start gap-3">
<div className="flex-1 min-w-0">
<div className="flex items-center gap-2 flex-wrap">
<h3 className="text-[13px] font-semibold text-[var(--text-primary)]">{title}</h3>
<StatusIndicator tone={done ? "ok" : "off"} label={done ? "Installed" : "Not installed"} />
</div>
<p className="mt-1 text-xs text-[var(--text-secondary)] leading-relaxed">{detail}</p>
{done && doneLabel && (
<p className="mt-1 text-xs font-mono text-[var(--text-secondary)] break-all">
{doneLabel}
</p>
)}
{children}
</div>
<div className="flex-shrink-0">{action}</div>
</div>
</div>
);
}
function Detail({ label, value }: { label: string; value: string | null }) {
return (
<>
<dt className="text-[var(--text-secondary)]">{label}</dt>
<dd className="font-mono text-[var(--text-primary)] break-all">
{value ?? "not found"}
</dd>
</>
);
}
function Explainer({
title,
tone = "normal",
children,
}: {
title: string;
tone?: "normal" | "error";
children: React.ReactNode;
}) {
return (
<div className="p-4 max-w-[46rem]">
<h2
className={`text-[13px] font-semibold ${
tone === "error" ? "text-[var(--error)]" : "text-[var(--text-primary)]"
}`}
>
{title}
</h2>
<p className="mt-1 text-[13px] text-[var(--text-secondary)] leading-relaxed">
{children}
</p>
</div>
);
}
function Code({ children }: { children: React.ReactNode }) {
return (
<code className="font-mono text-xs px-1 py-0.5 rounded-[var(--radius-control)] bg-[var(--bg-tertiary)] text-[var(--text-primary)]">
{children}
</code>
);
}