Files
Codeman/test/split-pane-terminal-unit.test.ts
Codeman maintainer 299a21d5f5 fix(split-pane): merge-time fixes for split-pane sessions (#453)
The maintainer's promised merge-time fixes from the final review of #453:

1. closeSplitPane() tears down a divider drag still in progress, so a split
   that collapses mid-drag no longer leaves body.split-pane-resizing (the
   page-wide col-resize cursor and user-select lock) set until a reload.
2. openSplitPane() re-applies the picker's own exclusions (detached session,
   pid === null, no session record) for a row that went stale while the
   menu sat open, refusing silently like its neighbouring gates.
3. architecture-invariants: the hard-hide of .btn-split is the
   @media (max-width: 1179px) rule in styles.css, not mobile.css.
4. SplitTerminalPane.destroy() nulls onclose (and onerror) beside onopen
   and onmessage.
5. Picker rows drop the data-session-id attribute nothing read.
6. The Pane-A-ends branch collapses with skipPrimaryResize, so the closing
   resize is no longer aimed at the session the server just removed.
7. The {t:'r'} refresh path is single-flight across the fetch and the
   chunked write, coalescing a mid-replay refresh into one trailing re-run.

Tests: split-pane-auto-collapse-unit gains the drag-teardown, exclusion and
skip-resize cases; the new split-pane-terminal-unit covers destroy() and the
refresh single-flight. All were run against the pre-fix module to confirm
they fail there.

Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com>
(cherry picked from commit dbd39aed015ae5ae5870aba398bf4b4ab5118e47)
2026-09-21 04:53:19 +02:00

235 lines
8.5 KiB
TypeScript

// test/split-pane-terminal-unit.test.ts
// Port: N/A (no server/browser; SplitTerminalPane is loaded via `vm`, like
// split-pane-auto-collapse-unit.test.ts loads the CodemanApp patches).
//
// Unit coverage for the two SplitTerminalPane (terminal-split.js) fixes from
// the final review of #453 that need no browser: destroy() nulling EVERY socket
// handler (onclose used to survive it and fire its "disconnected" write into a
// pane already torn down), and the `{t:'r'}` server-refresh path being
// single-flight. Two refresh frames in a row used to start two concurrent
// replays, each clearing the terminal under the other's chunked write; a
// refresh arriving mid-replay is now coalesced into ONE trailing re-run rather
// than dropped, because the in-flight fetch may predate the drop the new frame
// reports and no further frame comes to correct stale content.
import { readFileSync } from 'node:fs';
import { resolve } from 'node:path';
import vm from 'node:vm';
import { beforeEach, describe, expect, it, vi } from 'vitest';
const TERMINAL_CHUNK_SIZE = 32 * 1024;
type FakeTerminal = {
write: ReturnType<typeof vi.fn>;
clear: ReturnType<typeof vi.fn>;
dispose: ReturnType<typeof vi.fn>;
};
type FakeSocket = {
onopen: unknown;
onmessage: unknown;
onclose: unknown;
onerror: unknown;
close: ReturnType<typeof vi.fn>;
};
type PaneUnderTest = {
ws: FakeSocket | null;
terminal: FakeTerminal | null;
_destroyed: boolean;
_bufferLoading: boolean;
_bufferRefreshPending: boolean;
destroy(): void;
_loadBuffer(): Promise<void>;
_refreshBuffer(): void;
};
const fetchMock = vi.fn();
/** requestAnimationFrame stand-in: chunked writes queue here and are drained by hand. */
const rafQueue: Array<() => void> = [];
function loadSplitTerminalPane() {
const dir = resolve(import.meta.dirname, '../src/web/public');
const src = readFileSync(resolve(dir, 'terminal-split.js'), 'utf8');
const context = vm.createContext({
console: { ...console, log: vi.fn(), warn: vi.fn(), error: vi.fn() },
window: {},
fetch: (...args: unknown[]) => fetchMock(...args),
requestAnimationFrame: (fn: () => void) => rafQueue.push(fn),
// The constants.js globals the module reads at call time.
TERMINAL_CHUNK_SIZE,
TERMINAL_TAIL_SIZE: 1024 * 1024,
});
// The module's tail patches CodemanApp.prototype; nothing on it runs here.
vm.runInContext(`class CodemanApp { _onSessionDeleted() {} selectSession() {} }\n${src}`, context);
return (context.window as { SplitTerminalPane: new (id: string, mount: unknown, opts?: object) => PaneUnderTest })
.SplitTerminalPane;
}
const SplitTerminalPane = loadSplitTerminalPane();
function makePane(mode = 'claude'): PaneUnderTest & { terminal: FakeTerminal } {
const pane = new SplitTerminalPane('s1', {}, { mode });
pane.terminal = { write: vi.fn(), clear: vi.fn(), dispose: vi.fn() };
return pane as PaneUnderTest & { terminal: FakeTerminal };
}
function jsonResponse(terminalBuffer: string) {
return { json: async () => ({ data: { terminalBuffer } }) };
}
function deferred<T>() {
let resolve!: (value: T) => void;
const promise = new Promise<T>((r) => {
resolve = r;
});
return { promise, resolve };
}
/** Lets every microtask the vm-side promise chain queued run. */
const settle = () => new Promise((r) => setTimeout(r, 0));
beforeEach(() => {
fetchMock.mockReset();
rafQueue.length = 0;
});
describe('SplitTerminalPane.destroy()', () => {
it('nulls every WebSocket handler, onclose included, before closing the socket', () => {
const pane = makePane();
const terminal = pane.terminal;
const ws: FakeSocket = { onopen: vi.fn(), onmessage: vi.fn(), onclose: vi.fn(), onerror: vi.fn(), close: vi.fn() };
pane.ws = ws;
pane.destroy();
// close() fires onclose asynchronously, so a handler left attached ran its
// "disconnected" write against a pane whose terminal was already disposed.
expect(ws.onopen).toBeNull();
expect(ws.onmessage).toBeNull();
expect(ws.onclose).toBeNull();
expect(ws.onerror).toBeNull();
expect(ws.close).toHaveBeenCalledTimes(1);
expect(pane.ws).toBeNull();
expect(terminal.dispose).toHaveBeenCalledTimes(1);
expect(pane.terminal).toBeNull();
expect(pane._destroyed).toBe(true);
});
});
describe('SplitTerminalPane server-refresh single-flight', () => {
it('a refresh with nothing in flight clears and fetches straight away', async () => {
const pane = makePane();
fetchMock.mockResolvedValueOnce(jsonResponse('one'));
pane._refreshBuffer();
await settle();
expect(pane.terminal.clear).toHaveBeenCalledTimes(1);
expect(fetchMock).toHaveBeenCalledWith('/api/sessions/s1/terminal?full=1');
expect(pane.terminal.write).toHaveBeenCalledWith('one');
expect(pane._bufferLoading).toBe(false);
});
it('a shell pane asks for the bounded tail, matching connect()', async () => {
const pane = makePane('shell');
fetchMock.mockResolvedValueOnce(jsonResponse('tail'));
pane._refreshBuffer();
await settle();
expect(fetchMock).toHaveBeenCalledWith(`/api/sessions/s1/terminal?tail=${1024 * 1024}`);
});
it('refreshes arriving mid-fetch neither clear nor fetch again, and run ONCE after the replay lands', async () => {
const pane = makePane();
const first = deferred<ReturnType<typeof jsonResponse>>();
const second = deferred<ReturnType<typeof jsonResponse>>();
fetchMock.mockReturnValueOnce(first.promise).mockReturnValueOnce(second.promise);
pane._refreshBuffer();
expect(pane.terminal.clear).toHaveBeenCalledTimes(1);
expect(fetchMock).toHaveBeenCalledTimes(1);
// Two more frames while the first replay is still in flight.
pane._refreshBuffer();
pane._refreshBuffer();
expect(pane.terminal.clear).toHaveBeenCalledTimes(1);
expect(fetchMock).toHaveBeenCalledTimes(1);
expect(pane._bufferRefreshPending).toBe(true);
first.resolve(jsonResponse('replay-1'));
await settle();
expect(pane.terminal.write).toHaveBeenCalledWith('replay-1');
// Exactly one trailing re-run for the two coalesced frames, not two.
expect(pane.terminal.clear).toHaveBeenCalledTimes(2);
expect(fetchMock).toHaveBeenCalledTimes(2);
second.resolve(jsonResponse('replay-2'));
await settle();
expect(pane.terminal.write).toHaveBeenLastCalledWith('replay-2');
expect(fetchMock).toHaveBeenCalledTimes(2);
expect(pane._bufferLoading).toBe(false);
expect(pane._bufferRefreshPending).toBe(false);
});
it('holds the flag across the chunked write, not just the fetch', async () => {
const pane = makePane();
// Three chunks: two full ones plus a tail, so the last two are queued on
// requestAnimationFrame and the replay is mid-write after the fetch lands.
const big = 'x'.repeat(TERMINAL_CHUNK_SIZE * 2 + 5);
fetchMock.mockResolvedValueOnce(jsonResponse(big));
pane._refreshBuffer();
await settle();
expect(pane.terminal.write).toHaveBeenCalledTimes(1);
expect(rafQueue).toHaveLength(1);
expect(pane._bufferLoading).toBe(true);
// A refresh mid-write must not clear the terminal under the chunks still
// to come, nor start a second fetch.
pane._refreshBuffer();
expect(pane.terminal.clear).toHaveBeenCalledTimes(1);
expect(fetchMock).toHaveBeenCalledTimes(1);
fetchMock.mockResolvedValueOnce(jsonResponse('after'));
rafQueue.shift()!();
rafQueue.shift()!();
await settle();
expect(pane.terminal.write).toHaveBeenCalledTimes(4);
expect(pane.terminal.write).toHaveBeenLastCalledWith('after');
expect(pane.terminal.clear).toHaveBeenCalledTimes(2);
expect(fetchMock).toHaveBeenCalledTimes(2);
expect(pane._bufferLoading).toBe(false);
});
it('a pending refresh is dropped once the pane is destroyed', async () => {
const pane = makePane();
const first = deferred<ReturnType<typeof jsonResponse>>();
fetchMock.mockReturnValueOnce(first.promise);
pane._refreshBuffer();
pane._refreshBuffer();
pane.destroy();
first.resolve(jsonResponse('late'));
await settle();
expect(fetchMock).toHaveBeenCalledTimes(1);
expect(pane._bufferLoading).toBe(false);
});
it('a failed fetch releases the flag so the next refresh can run', async () => {
const pane = makePane();
fetchMock.mockRejectedValueOnce(new Error('offline'));
pane._refreshBuffer();
await settle();
expect(pane._bufferLoading).toBe(false);
fetchMock.mockResolvedValueOnce(jsonResponse('back'));
pane._refreshBuffer();
await settle();
expect(pane.terminal.write).toHaveBeenCalledWith('back');
});
});