Files
Codeman/test/terminal-tile-input.test.ts
T
Codeman maintainer b965c3d346 refactor(split): a tile's Ctrl+C copies through the primary pane's copy helpers
TerminalTile carried its own copy of the smart-copy branch (clean the
selection with this session's gutter, copy, clear, toast). PR 1 gave
cleanedTerminalSelection and copyTerminalSelection a `{ terminal, sessionId }`
target for exactly this, and nothing passed it. The tile now calls both with
its own terminal and session, and its copy code is gone.

Two things change for a tile, both to the primary pane's rule: a clipboard
write that fails keeps the selection (nothing was copied, so it stays for a
retry) instead of clearing it, and focus returns to the tile's xterm after
the copy, which matters when the execCommand fallback focused a temporary
textarea. Pinned in terminal-tile-input with the write failing and
succeeding, and the no-selection Ctrl+C / Ctrl+Shift+C split.

Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
2026-10-07 09:37:03 +02:00

798 lines
27 KiB
TypeScript

/**
* @fileoverview TerminalTile input rides the app's exactly-once queue, and only
* what a human typed is queued.
*
* Before, the split pane's second terminal sent every xterm `onData` chunk as a
* bare `{t:'i', d}` frame: no seq, no ACK, dropped while the socket was down,
* never acknowledged an idle alert. It now goes through `app._sendInputAsync`,
* over the pane's own socket registered in the app's input-socket map. That
* queue PERSISTS and REDELIVERS, so it must never hold what xterm generates on
* its own: a query reply (DA/CPR/OSC) is dropped, exactly as the primary pane
* drops it, and a focus or mouse report goes out once, ephemeral.
*
* The socket's lifecycle is pinned here too: a transient drop reconnects on the
* primary pane's backoff and refreshes the buffer without leaving a stale
* "disconnected" marker under a healthy pane; codes that cannot get better stop
* the pane once (`onExit`); a late close from a REPLACED socket is ignored; and
* destroy() cancels a pending reconnect.
*
* Real code under test: constants.js + app.js (the queue) + terminal-ui.js (the
* shared input predicates) + terminal-tile.js, in one `vm` context. xterm, the
* fit addon and WebSocket are fakes; `connect()` runs for real.
*/
import { readFileSync } from 'node:fs';
import { performance } from 'node:perf_hooks';
import { resolve } from 'node:path';
import vm from 'node:vm';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
type Frame = { t: string; d?: string; seq?: number; cid?: string; c?: number; r?: number };
class FakeSocket {
static OPEN = 1;
static instances: FakeSocket[] = [];
readyState = 0;
sent: Frame[] = [];
onopen: (() => void) | null = null;
onmessage: ((ev: { data: string }) => void) | null = null;
onclose: ((ev?: { code: number }) => void) | null = null;
onerror: (() => void) | null = null;
constructor(public url: string) {
FakeSocket.instances.push(this);
}
send(data: string) {
this.sent.push(JSON.parse(data) as Frame);
}
close = vi.fn(() => {
this.readyState = 3;
});
open() {
this.readyState = 1;
this.onopen?.();
}
receive(msg: object) {
this.onmessage?.({ data: JSON.stringify(msg) });
}
inputFrames() {
return this.sent.filter((f) => f.t === 'i');
}
}
/** The fit addon: proposes `FakeFit.proposed` and, like the real one, resizes to it (NaN = hidden pane). */
class FakeFit {
static proposed = { cols: 80, rows: 24 };
term: FakeTerminal | null = null;
fit() {
const { cols, rows } = FakeFit.proposed;
if (!Number.isFinite(cols) || !Number.isFinite(rows)) return;
this.term?.resize(cols, rows);
}
proposeDimensions() {
return { ...FakeFit.proposed };
}
}
class FakeTerminal {
static last: FakeTerminal | null = null;
options: Record<string, unknown>;
cols = 80;
rows = 24;
dataCb: ((data: string) => void) | null = null;
buffer = { active: { type: 'normal', viewportY: 0, length: 24 } };
constructor(options: Record<string, unknown>) {
this.options = { ...options };
FakeTerminal.last = this;
}
loadAddon(addon: FakeFit) {
addon.term = this;
}
open() {}
onData(cb: (data: string) => void) {
this.dataCb = cb;
}
keyHandler: ((ev: Record<string, unknown>) => boolean) | null = null;
focusListeners: Array<() => void> = [];
textarea = {
addEventListener: (type: string, fn: () => void) => {
if (type === 'focus') this.focusListeners.push(fn);
},
removeEventListener: (type: string, fn: () => void) => {
if (type === 'focus') this.focusListeners = this.focusListeners.filter((f) => f !== fn);
},
};
focusTextarea() {
for (const fn of this.focusListeners) fn();
}
attachCustomKeyEventHandler(fn: (ev: Record<string, unknown>) => boolean) {
this.keyHandler = fn;
}
registerLinkProvider() {}
writes: string[] = [];
write(data: string, cb?: () => void) {
this.writes.push(data);
cb?.();
}
clear() {
this.writes.push('<CLEAR>');
}
resizes: Array<[number, number]> = [];
resize(cols: number, rows: number) {
this.resizes.push([cols, rows]);
this.cols = cols;
this.rows = rows;
}
dispose() {}
type(data: string) {
this.dataCb?.(data);
}
/** What a drag selected; '' is no selection. */
selection = '';
hasSelection() {
return this.selection !== '';
}
getSelection() {
return this.selection;
}
clearSelection = vi.fn(() => {
this.selection = '';
});
focus = vi.fn();
}
const fetchMock = vi.fn();
function loadContext() {
const read = (f: string) => readFileSync(resolve(import.meta.dirname, `../src/web/public/${f}`), 'utf8');
const windowStub: Record<string, unknown> = {
addEventListener: vi.fn(),
removeEventListener: vi.fn(),
CodemanBase: { base: '' },
};
const context = vm.createContext({
console: { ...console, log: vi.fn(), debug: vi.fn() },
performance,
setInterval: vi.fn(),
clearInterval: vi.fn(),
// Late-bound, so vi.useFakeTimers() (which swaps the globals) reaches code
// running inside this context.
setTimeout: (fn: () => void, ms?: number) => globalThis.setTimeout(fn, ms),
clearTimeout: (id: ReturnType<typeof setTimeout>) => globalThis.clearTimeout(id),
requestAnimationFrame: vi.fn(),
HTMLCanvasElement: class HTMLCanvasElement {},
WebSocket: FakeSocket,
Terminal: FakeTerminal,
FitAddon: { FitAddon: FakeFit },
fetch: (...args: unknown[]) => fetchMock(...args),
location: { protocol: 'http:', host: 'codeman.test' },
document: { addEventListener: vi.fn(), documentElement: { dataset: {} } },
localStorage: { length: 0, key: vi.fn(), getItem: vi.fn(), setItem: vi.fn(), removeItem: vi.fn() },
window: windowStub,
MobileDetection: {
isTouchDevice: () => false,
isHandheldDevice: () => false,
getDeviceType: () => 'desktop',
},
});
vm.runInContext(
`${read('constants.js')}\n${read('app.js')}\n${read('terminal-ui.js')}\n${read('terminal-tile.js')}\n` +
'globalThis.__CodemanApp = CodemanApp;',
context
);
return {
CodemanApp: (context as unknown as { __CodemanApp: { prototype: object } }).__CodemanApp,
windowStub,
};
}
const { CodemanApp, windowStub } = loadContext();
type App = Record<string, unknown> & {
_pendingDeliveries: Map<string, Array<{ seq: number; data: string }>>;
markIdleAlertSeen: ReturnType<typeof vi.fn>;
};
function makeApp(): App {
const app = Object.create(CodemanApp.prototype) as App;
app._clientId = 'c-test';
app._wsTabNonce = 'nonce-1';
app._seqCounters = new Map();
app._pendingDeliveries = new Map();
app._postDraining = new Set();
app._extraInputSockets = new Map();
app._persistReliableState = vi.fn();
app._persistReliableNow = vi.fn();
app._updateConnectionIndicator = vi.fn();
app.markIdleAlertSeen = vi.fn();
app.showToast = vi.fn();
// The key handler's chord gates read the shortcut registry, which reads these.
app.loadAppSettingsFromStorage = () => ({});
app._ws = null;
app._wsSessionId = null;
app._estimateReplayRows = (text: string) => text.split('\n').length;
return app;
}
type Tile = {
connect(): Promise<void>;
destroy(): void;
reconnectNow(): void;
fit(opts?: { force?: boolean }): void;
detachedSessions?: Set<string>;
ws: FakeSocket | null;
_reconnectAttempts: number;
};
const TerminalTile = windowStub.TerminalTile as new (id: string, mount: unknown, opts?: object) => Tile;
/**
* Every tile a test creates, destroyed after it. A tile closed with real timers
* schedules a real reconnect, and one firing during a LATER test opens a socket
* there (FakeSocket.instances is shared), which flaked under full-suite load.
*/
const liveTiles: Tile[] = [];
async function connectTile(app: App, opts: Record<string, unknown> = {}) {
windowStub.app = app;
const tile = new TerminalTile(
's-tile',
{ addEventListener: vi.fn(), removeEventListener: vi.fn() },
{ mode: 'claude', ...opts }
);
liveTiles.push(tile);
await tile.connect();
const ws = FakeSocket.instances.at(-1)!;
return { tile, ws, term: FakeTerminal.last! };
}
afterEach(() => {
for (const tile of liveTiles.splice(0)) tile.destroy();
vi.useRealTimers();
});
beforeEach(() => {
FakeFit.proposed = { cols: 80, rows: 24 };
FakeSocket.instances = [];
fetchMock.mockReset();
fetchMock.mockImplementation(async () => ({
ok: true,
status: 200,
json: async () => ({ data: { terminalBuffer: '' } }),
}));
});
describe('TerminalTile socket identity', () => {
it('connects with the tab identity plus a :tile suffix, never the primary pane cid', async () => {
const { ws } = await connectTile(makeApp());
const cid = new URL(ws.url).searchParams.get('cid');
expect(cid).toBe('c-test:nonce-1:tile');
});
});
describe('TerminalTile input through the exactly-once queue', () => {
it('sends typed input as seq-tagged frames with the bare clientId once the socket opens', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
term.type('h');
term.type('i');
expect(ws.inputFrames().map((f) => [f.d, f.seq, f.cid])).toEqual([
['h', 1, 'c-test'],
['i', 2, 'c-test'],
]);
});
it('drops a record on its ACK and acknowledges the session idle alert', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
term.type('x');
expect(app._pendingDeliveries.get('s-tile')).toHaveLength(1);
ws.receive({ t: 'ia', seq: 1 });
expect(app._pendingDeliveries.get('s-tile')).toBeUndefined();
expect(app.markIdleAlertSeen).toHaveBeenCalledWith('s-tile');
});
it('flushes input typed before the socket opened, in order, once it does', async () => {
const app = makeApp();
// POSTs fail, as they would while the server restarts, so the input waits.
const { ws, term } = await connectTile(app);
fetchMock.mockImplementation(async () => ({ ok: false, status: 503, json: async () => ({}) }));
term.type('a');
term.type('b');
await new Promise((r) => setTimeout(r, 0));
expect(ws.inputFrames()).toEqual([]);
ws.open();
expect(ws.inputFrames().map((f) => [f.d, f.seq])).toEqual([
['a', 1],
['b', 2],
]);
});
it('keeps queuing after the socket closes (HTTP fallback), instead of dropping keystrokes', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
ws.readyState = 3;
ws.onclose?.({ code: 1006 });
const posts: Array<{ input: string; seq: number }> = [];
fetchMock.mockImplementation(async (_url: string, init?: { body?: string }) => {
if (init?.body) posts.push(JSON.parse(init.body));
return { ok: true, status: 200, json: async () => ({}) };
});
term.type('z');
await new Promise((r) => setTimeout(r, 0));
expect(posts.map((p) => [p.input, p.seq])).toEqual([['z', 1]]);
expect(ws.inputFrames()).toEqual([]);
});
});
describe('what xterm generates never enters the durable queue', () => {
it('drops a DA query reply entirely', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
term.type('\x1b[?1;2c');
expect(ws.inputFrames()).toEqual([]);
expect(app._pendingDeliveries.get('s-tile')).toBeUndefined();
});
it('sends a mouse report once, without a seq, and never persists it', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
term.type('\x1b[<0;10;5M');
expect(ws.inputFrames()).toEqual([{ t: 'i', d: '\x1b[<0;10;5M' }]);
expect(app._pendingDeliveries.get('s-tile')).toBeUndefined();
});
it('sends a focus report once, without a seq', async () => {
const app = makeApp();
const { ws, term } = await connectTile(app);
ws.open();
term.type('\x1b[I');
expect(ws.inputFrames()).toEqual([{ t: 'i', d: '\x1b[I' }]);
expect(app._pendingDeliveries.get('s-tile')).toBeUndefined();
});
});
describe('TerminalTile leaves the input-socket map', () => {
it('on close, so a later keystroke cannot be written into a dead socket', async () => {
const app = makeApp();
const { ws } = await connectTile(app);
ws.open();
expect((app._extraInputSockets as Map<string, unknown>).has('s-tile')).toBe(true);
ws.onclose?.({ code: 1006 });
expect((app._extraInputSockets as Map<string, unknown>).has('s-tile')).toBe(false);
});
it('on destroy, while pending input stays queued for the HTTP sweep', async () => {
const app = makeApp();
const { tile, ws, term } = await connectTile(app);
ws.open();
term.type('q');
tile.destroy();
expect((app._extraInputSockets as Map<string, unknown>).has('s-tile')).toBe(false);
expect(app._pendingDeliveries.get('s-tile')?.map((r) => r.data)).toEqual(['q']);
});
});
const isMarker = (data: string) => data.includes('[disconnected');
/**
* Lets the async buffer refresh settle: the fetch, the body read, the chunked
* write AND the load's finally block, which is where a stale marker would be
* stamped. Too few turns here and that assertion passes vacuously.
*/
async function settle() {
for (let i = 0; i < 50; i++) await Promise.resolve();
}
describe('TerminalTile reconnects after a transient drop', () => {
it('reopens on the backoff, refreshes the buffer, and leaves no stale marker', async () => {
vi.useFakeTimers();
const app = makeApp();
const { tile, ws, term } = await connectTile(app);
ws.open();
fetchMock.mockImplementation(async () => ({
ok: true,
status: 200,
json: async () => ({ data: { terminalBuffer: 'fresh screen' } }),
}));
ws.readyState = 3;
ws.onclose?.({ code: 1006 });
expect(term.writes.filter(isMarker)).toEqual([expect.stringContaining('[disconnected, reconnecting')]);
expect(FakeSocket.instances).toHaveLength(1);
await vi.advanceTimersByTimeAsync(300);
expect(FakeSocket.instances).toHaveLength(2);
const ws2 = FakeSocket.instances[1];
expect(ws2.url).toBe(ws.url);
ws2.open();
await settle();
// The refresh cleared the pane and replayed the current screen, and nothing
// after that clear is a marker: the pane is healthy again.
const lastClear = term.writes.lastIndexOf('<CLEAR>');
expect(lastClear).toBeGreaterThan(-1);
expect(term.writes.slice(lastClear)).toContain('fresh screen');
expect(term.writes.slice(lastClear).some(isMarker)).toBe(false);
expect(tile._reconnectAttempts).toBe(0);
expect(tile.ws).toBe(ws2);
});
it('counts failed attempts and resets the count only on a successful open', async () => {
vi.useFakeTimers();
const { tile, ws } = await connectTile(makeApp());
ws.open();
ws.onclose?.({ code: 1006 });
await vi.advanceTimersByTimeAsync(300);
FakeSocket.instances[1].onclose?.({ code: 1006 }); // the retry fails too
expect(tile._reconnectAttempts).toBe(2);
await vi.advanceTimersByTimeAsync(1000);
FakeSocket.instances[2].open();
expect(tile._reconnectAttempts).toBe(0);
});
it('reconnects after the redelivery sweep force-closes a silent socket (1005)', async () => {
vi.useFakeTimers();
const { ws } = await connectTile(makeApp());
ws.open();
ws.onclose?.({ code: 1005 });
await vi.advanceTimersByTimeAsync(300);
expect(FakeSocket.instances).toHaveLength(2);
});
it('reconnectNow() skips the backoff, but never replaces an open socket', async () => {
vi.useFakeTimers();
const { tile, ws } = await connectTile(makeApp());
ws.open();
tile.reconnectNow();
expect(FakeSocket.instances).toHaveLength(1);
ws.readyState = 3;
ws.onclose?.({ code: 1006 });
tile.reconnectNow();
expect(FakeSocket.instances).toHaveLength(2);
// The backoff timer it pre-empted must not open a third socket later.
await vi.advanceTimersByTimeAsync(20_000);
expect(FakeSocket.instances).toHaveLength(2);
});
});
describe('TerminalTile stops for good on codes that cannot get better', () => {
it.each([
[4004, 'the session ended'],
[4009, 'the session ended'],
[4003, 'the server refused this connection'],
[4010, 'another connection took over this pane'],
])('close %i: no reconnect, onExit once, marker says why', async (code, reason) => {
vi.useFakeTimers();
const onExit = vi.fn();
const { tile, ws, term } = await connectTile(makeApp(), { onExit });
ws.open();
ws.onclose?.({ code });
await vi.advanceTimersByTimeAsync(30_000);
tile.reconnectNow();
expect(FakeSocket.instances).toHaveLength(1);
expect(onExit).toHaveBeenCalledTimes(1);
expect(onExit).toHaveBeenCalledWith(code);
expect(term.writes.filter(isMarker)).toEqual([expect.stringContaining(reason)]);
});
});
describe('TerminalTile ignores a socket it already replaced', () => {
it('a late close (4010) from the old socket neither stops the pane nor unregisters its successor', async () => {
vi.useFakeTimers();
const onExit = vi.fn();
const app = makeApp();
const { ws, term } = await connectTile(app, { onExit });
ws.open();
const lateClose = ws.onclose!;
ws.onclose?.({ code: 1006 });
await vi.advanceTimersByTimeAsync(300);
const ws2 = FakeSocket.instances[1];
ws2.open();
// The server supersedes the old socket by cid; its close arrives late.
lateClose({ code: 4010 });
expect(onExit).not.toHaveBeenCalled();
term.type('still typing');
expect(ws2.inputFrames().map((f) => f.d)).toEqual(['still typing']);
});
});
describe('TerminalTile destroy()', () => {
it('cancels a pending reconnect and never reports an exit afterwards', async () => {
vi.useFakeTimers();
const onExit = vi.fn();
const { tile, ws } = await connectTile(makeApp(), { onExit });
ws.open();
ws.onclose?.({ code: 1006 });
tile.destroy();
await vi.advanceTimersByTimeAsync(30_000);
expect(FakeSocket.instances).toHaveLength(1);
expect(onExit).not.toHaveBeenCalled();
});
});
describe('TerminalTile geometry (#464: the pane and its PTY never disagree)', () => {
const resizeFrames = (ws: FakeSocket) => ws.sent.filter((f) => f.t === 'z');
it('announces its size as a desktop viewer when the socket opens', async () => {
const { ws } = await connectTile(makeApp());
ws.open();
expect(resizeFrames(ws)).toEqual([{ t: 'z', c: 80, r: 24, v: 'desktop' }]);
});
it('does not resend an unchanged size, sends a changed one, and force resends', async () => {
const { tile, ws } = await connectTile(makeApp());
ws.open();
tile.fit();
expect(resizeFrames(ws)).toHaveLength(1);
FakeFit.proposed = { cols: 100, rows: 30 };
tile.fit();
expect(resizeFrames(ws).at(-1)).toEqual({ t: 'z', c: 100, r: 30, v: 'desktop' });
tile.fit({ force: true });
expect(resizeFrames(ws)).toHaveLength(3);
});
it('re-announces an unchanged size on a reconnected socket', async () => {
vi.useFakeTimers();
const { ws } = await connectTile(makeApp());
ws.open();
ws.onclose?.({ code: 1006 });
await vi.advanceTimersByTimeAsync(300);
const ws2 = FakeSocket.instances[1];
ws2.open();
expect(resizeFrames(ws2)).toEqual([{ t: 'z', c: 80, r: 24, v: 'desktop' }]);
});
it('applies no 40-column floor: a pane at the divider clamp gets its real width on both sides', async () => {
const { tile, ws, term } = await connectTile(makeApp());
ws.open();
FakeFit.proposed = { cols: 28, rows: 30 };
tile.fit();
expect(term.cols).toBe(28);
expect(resizeFrames(ws).at(-1)).toEqual({ t: 'z', c: 28, r: 30, v: 'desktop' });
});
it('paneStarted() resends an unchanged size: the first one went out before there was a PTY', async () => {
const { tile, ws } = await connectTile(makeApp());
ws.open();
tile.paneStarted();
expect(resizeFrames(ws)).toEqual([
{ t: 'z', c: 80, r: 24, v: 'desktop' },
{ t: 'z', c: 80, r: 24, v: 'desktop' },
]);
// Only once: the size is recorded again, so a plain fit does not repeat it.
tile.fit();
expect(resizeFrames(ws)).toHaveLength(2);
});
it('paneStarted() on a hidden tile sends nothing, and its next fit sends the size', async () => {
const { tile, ws } = await connectTile(makeApp());
ws.open();
FakeFit.proposed = { cols: NaN, rows: NaN };
tile.paneStarted();
expect(resizeFrames(ws)).toHaveLength(1);
// Shown again (a zoom ends) at the same size it had: still sent.
FakeFit.proposed = { cols: 80, rows: 24 };
tile.fit();
expect(resizeFrames(ws)).toHaveLength(2);
});
it('paneStarted() before the socket opens sends nothing; the open sends the size once', async () => {
const { tile, ws } = await connectTile(makeApp());
tile.paneStarted();
expect(resizeFrames(ws)).toHaveLength(0);
ws.open();
expect(resizeFrames(ws)).toEqual([{ t: 'z', c: 80, r: 24, v: 'desktop' }]);
});
it('reports nothing while hidden (the fit addon measures NaN)', async () => {
const { tile, ws, term } = await connectTile(makeApp());
ws.open();
FakeFit.proposed = { cols: NaN, rows: NaN };
tile.fit();
expect(resizeFrames(ws)).toHaveLength(1);
expect([term.cols, term.rows]).toEqual([80, 24]);
});
it('stands aside for a session detached into its own window', async () => {
const { tile, ws } = await connectTile(makeApp(), { detachedSessions: new Set(['s-tile']) });
ws.open();
FakeFit.proposed = { cols: 120, rows: 40 };
tile.fit();
expect(resizeFrames(ws)).toEqual([]);
});
it('adopts the column count the PTY reports, keeping its own rows', async () => {
const { ws, term } = await connectTile(makeApp());
ws.open();
ws.receive({ t: 'zc', c: 132, r: 50 });
expect([term.cols, term.rows]).toEqual([132, 24]);
});
it('leaves the pane alone when the PTY agrees on width', async () => {
const { ws, term } = await connectTile(makeApp());
ws.open();
const before = term.resizes.length;
ws.receive({ t: 'zc', c: 80, r: 60 });
expect(term.resizes.length).toBe(before);
});
});
describe('TerminalTile links and paste follow THIS pane', () => {
it('registers the shared link provider on its own terminal, resolving its own session', async () => {
const app = makeApp();
const register = vi.fn();
app.registerFilePathLinkProvider = register;
const { term } = await connectTile(app);
expect(register).toHaveBeenCalledTimes(1);
const target = register.mock.calls[0][0] as { terminal: unknown; getSessionId: () => string };
expect(target.terminal).toBe(term);
expect(target.getSessionId()).toBe('s-tile');
});
it("routes Ctrl+V into the paste trap with this pane's terminal and session", async () => {
const app = makeApp();
const paste = vi.fn();
app._handleImagePaste = paste;
const { term } = await connectTile(app);
const handled = term.keyHandler!({ type: 'keydown', key: 'v', ctrlKey: true, code: 'KeyV' });
expect(handled).toBe(false);
expect(paste).toHaveBeenCalledWith({ terminal: term, sessionId: 's-tile' });
});
it('leaves Ctrl+Shift+V (voice input) out of the paste trap', async () => {
const app = makeApp();
const paste = vi.fn();
app._handleImagePaste = paste;
const { term } = await connectTile(app);
term.keyHandler!({ type: 'keydown', key: 'V', ctrlKey: true, shiftKey: true, code: 'KeyV' });
expect(paste).not.toHaveBeenCalled();
});
});
describe("TerminalTile Ctrl+C copies through the primary pane's copy helpers", () => {
const ctrlC = (extra: Record<string, unknown> = {}) => ({
type: 'keydown',
key: 'c',
code: 'KeyC',
ctrlKey: true,
preventDefault: vi.fn(),
...extra,
});
it("copies THIS pane's selection; a failed write keeps it and focus returns to this pane", async () => {
const app = makeApp();
const copyText = vi.fn(async () => false);
app._copyText = copyText;
const { term } = await connectTile(app);
term.selection = 'npm run build';
const ev = ctrlC();
expect(term.keyHandler!(ev)).toBe(false);
await new Promise((r) => setTimeout(r, 0));
expect(ev.preventDefault).toHaveBeenCalled();
expect(copyText).toHaveBeenCalledWith('npm run build');
expect(app.showToast).toHaveBeenCalledWith('Failed to copy', 'error');
// As in the primary pane: nothing was copied, so the selection stays for a retry.
expect(term.clearSelection).not.toHaveBeenCalled();
expect(term.selection).toBe('npm run build');
// The execCommand fallback focuses a temporary textarea; the keyboard comes back here.
expect(term.focus).toHaveBeenCalled();
});
it('a successful write clears the selection (a second Ctrl+C interrupts) and refocuses this pane', async () => {
const app = makeApp();
app._copyText = vi.fn(async () => true);
const { term } = await connectTile(app);
term.selection = 'npm run build';
expect(term.keyHandler!(ctrlC())).toBe(false);
await new Promise((r) => setTimeout(r, 0));
expect(app.showToast).toHaveBeenCalledWith('Copied to clipboard', 'success');
expect(term.clearSelection).toHaveBeenCalled();
expect(term.focus).toHaveBeenCalled();
});
it('with nothing selected, Ctrl+C reaches the PTY and Ctrl+Shift+C does not', async () => {
const app = makeApp();
const copyText = vi.fn(async () => true);
app._copyText = copyText;
const { term } = await connectTile(app);
const plain = ctrlC();
expect(term.keyHandler!(plain)).toBe(true);
expect(plain.preventDefault).not.toHaveBeenCalled();
const shifted = ctrlC({ key: 'C', shiftKey: true });
expect(term.keyHandler!(shifted)).toBe(false);
expect(shifted.preventDefault).toHaveBeenCalled();
expect(copyText).not.toHaveBeenCalled();
});
});
describe('TerminalTile claims the keyboard for the app-level shortcuts', () => {
it('focusing its terminal makes it the focused pane; destroy() hands the keyboard back', async () => {
const app = makeApp();
const { tile, term } = await connectTile(app);
expect(app._focusedTile ?? null).toBeNull();
term.focusTextarea();
expect(app._focusedTile).toBe(tile);
tile.destroy();
expect(app._focusedTile).toBeNull();
expect(term.focusListeners).toEqual([]);
});
});
describe('the server coming back kicks Pane B', () => {
it("handleInit's reconnect branch asks the split pane's tile to reconnect without waiting out its backoff", () => {
// handleInit needs a whole app to run, so the wiring is pinned by source;
// reconnectNow() itself is exercised above.
const appSource = readFileSync(resolve(import.meta.dirname, '../src/web/public/app.js'), 'utf8');
const start = appSource.indexOf('if (keepTerminal && restoreId === previousActiveId');
const branch = appSource.slice(start, appSource.indexOf('} else {', start));
expect(start).toBeGreaterThan(-1);
expect(branch).toContain('this._splitPane?.reconnectNow?.();');
});
});