Files
Codeman/test/terminal-keycode229-recovery.browser.test.ts
T
DevvynandClaude Sonnet 5.5 0c71b753ef fix(terminal): stop Android autocorrect duplicating the typed line
xterm diffs the helper textarea with newValue.replace(oldValue, ''), which only works when the keyboard appended. SwiftKey/Gboard autocorrect on space deletes a word and inserts the corrected one, so xterm sent the whole value and then the inserted text again (testing the peompt + space became 'testing the peompttesting the prompt rompt '), and a multi-character delete was one DEL. The keyCode-229 controller now swaps in an edit-based diff against what was already sent.

Co-Authored-By: Claude Sonnet 5.5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01JrzFKEdBLwVfu6ev2ZscJS
2026-10-06 15:51:26 +08:00

312 lines
13 KiB
TypeScript

/**
* Wiring for the orphaned-input recovery controller, in a real browser.
*
* The controller's decision logic is unit-tested in
* test/terminal-keycode229-recovery.test.ts. What can only be proven with a
* real xterm instance is the wiring:
*
* - our `input` listener is registered AFTER xterm's, so xterm's `cancel()`
* (stopPropagation, not stopImmediatePropagation) does not silence it;
* - a `composed: true` insertText preceded by a keydown — the shape Chrome on
* Android delivers — is dropped by xterm and recovered by us, exactly once;
* - a keystroke xterm DOES handle is delivered exactly once, not twice;
* - a character committed in the SAME page task as Enter reaches the send
* path ahead of the `\r`, which is the ordering the zero-delay timer
* alone cannot produce.
*
* Browser-driven, so it is excluded from `npm run test:ci` like the other
* Playwright suites. Run locally:
* npm run test:browser -- test/terminal-keycode229-recovery.browser.test.ts
*
* Port: 3186 (per CLAUDE.md, ports 3150+ for tests)
*/
import { describe, it, expect, beforeAll, afterAll } from 'vitest';
import { chromium, type Browser, type Page } from 'playwright';
import { WebServer } from '../src/web/server.js';
const PORT = 3186;
const BASE_URL = `http://localhost:${PORT}`;
describe('orphaned terminal input recovery wiring', () => {
let server: WebServer;
let browser: Browser;
let page: Page;
beforeAll(async () => {
server = new WebServer(PORT, false, true);
await server.start();
browser = await chromium.launch({ headless: true });
page = await browser.newPage();
await page.goto(BASE_URL, { waitUntil: 'domcontentloaded' });
await page.waitForFunction(() => (window as any).app?.terminal, null, { timeout: 30000 });
await page.waitForFunction(() => (window as any).app?._keyCode229Recovery, null, { timeout: 30000 });
}, 90000);
afterAll(async () => {
if (browser) await browser.close();
if (server) await server.stop();
}, 60000);
/**
* Drive one keystroke through the real textarea and report what reached the
* PTY send path. `dispatchInput` mirrors GBoard: a keydown with no usable key
* identity, then a `composed: true` insertText that xterm refuses to forward.
*/
async function keystroke(options: { data: string; dispatchInput: boolean; keyCode: number }) {
return page.evaluate(async ({ data, dispatchInput, keyCode }) => {
const app = (window as any).app;
const textarea = document.querySelector('.xterm-helper-textarea') as HTMLTextAreaElement;
const originalSessionId = app.activeSessionId;
const originalLocalEcho = app._localEchoEnabled;
const originalSendInput = app._sendInputAsync;
const originalPendingInput = app._pendingInput;
const originalLastKeystrokeTime = app._lastKeystrokeTime;
const sent: string[] = [];
let xtermEmitted = 0;
const rec = app._keyCode229Recovery;
try {
app.activeSessionId = 'cod388-browser-regression';
app._localEchoEnabled = false;
app._pendingInput = '';
app._lastKeystrokeTime = 0;
app._sendInputAsync = (_sessionId: string, chunk: string) => sent.push(chunk);
// The controller object is Object.freeze()d, so count xterm's own
// canonical emissions by swapping the (writable) property on app.
app._keyCode229Recovery = {
handleKeyEvent: (e: any) => rec.handleKeyEvent(e),
notifyCanonicalData: () => {
xtermEmitted += 1;
return rec.notifyCanonicalData();
},
destroy: () => rec.destroy(),
};
textarea.focus();
const down = new KeyboardEvent('keydown', {
key: 'Unidentified',
bubbles: true,
cancelable: true,
composed: true,
});
Object.defineProperties(down, { keyCode: { value: keyCode }, which: { value: keyCode } });
textarea.dispatchEvent(down);
if (dispatchInput) {
textarea.value = data;
textarea.dispatchEvent(
new InputEvent('input', { data, inputType: 'insertText', bubbles: true, composed: true })
);
}
await new Promise((resolve) => setTimeout(resolve, 60));
return { sent, xtermEmitted };
} finally {
app.activeSessionId = originalSessionId;
app._localEchoEnabled = originalLocalEcho;
app._sendInputAsync = originalSendInput;
app._pendingInput = originalPendingInput;
app._lastKeystrokeTime = originalLastKeystrokeTime;
app._keyCode229Recovery = rec;
textarea.value = '';
}
}, options);
}
/**
* ⚠ The gap this controller actually fills is NARROWER than "keyCode 229",
* and that matters for what these tests can prove.
*
* xterm already self-recovers keyCode 229: `CompositionHelper.keydown()`
* calls `_handleAnyTextareaChanges()`, which snapshots `textarea.value` and
* diffs it on a 0 ms timer, emitting the difference itself. So for a 229
* keydown there is nothing orphaned to recover, and a test asserting "we
* recovered it" would pass while xterm did all the work — measured: xterm
* emits, our controller correctly stands down.
*
* The real gap is an `insertText` input event that xterm's `_inputEvent`
* refuses (`composed: true` with a keydown seen) where NO 229 diff was
* scheduled to rescue it. These tests therefore assert WHO delivered the
* byte, via `xtermEmitted`, not merely that a byte arrived.
*/
it('recovers a composed insertText that xterm dropped and did not self-rescue', async () => {
const { sent, xtermEmitted } = await keystroke({ data: 'x', dispatchInput: true, keyCode: 65 });
expect(xtermEmitted).toBe(0); // xterm delivered nothing: genuinely orphaned
expect(sent.join('')).toBe('x'); // ...so this byte is ours
});
it('does not duplicate a keystroke xterm self-rescued via its own 0 ms diff', async () => {
const { sent, xtermEmitted } = await keystroke({ data: 'y', dispatchInput: true, keyCode: 229 });
expect(xtermEmitted).toBe(1); // xterm's 229 textarea diff spoke
expect(sent.join('')).toBe('y'); // exactly once — we must not add a second copy
});
it('recovers the same character twice when both keystrokes are orphaned', async () => {
const first = await keystroke({ data: 'z', dispatchInput: true, keyCode: 65 });
const second = await keystroke({ data: 'z', dispatchInput: true, keyCode: 65 });
expect(first.sent.join('')).toBe('z');
expect(second.sent.join('')).toBe('z');
});
/**
* The batched shape an Android soft keyboard actually delivers when the user
* taps the last character and then Enter: the character's keydown, its
* `composed: true` insertText, and Enter's keydown all land in ONE page task,
* before any zero-delay timer can run.
*
* This is the ordering half of the fix, and the half the unit harness cannot
* reach: the unit tests prove WHICH candidate is forwarded, this proves WHEN.
* Resolving the pending candidate only on its 0 ms timer loses the character
* outright here, because by the time that timer runs xterm has already
* emitted the `\r` and bumped the canonical counter past the candidate's
* snapshot, so it stands down. Draining at the next keydown, from xterm's
* custom key handler (which runs before xterm processes that key), puts the
* character on the wire ahead of the `\r`.
*/
async function batchedCommitThenEnter(data: string) {
return page.evaluate(async (text) => {
const app = (window as any).app;
const textarea = document.querySelector('.xterm-helper-textarea') as HTMLTextAreaElement;
const originalSessionId = app.activeSessionId;
const originalLocalEcho = app._localEchoEnabled;
const originalSendInput = app._sendInputAsync;
const originalPendingInput = app._pendingInput;
const originalLastKeystrokeTime = app._lastKeystrokeTime;
const sent: string[] = [];
try {
app.activeSessionId = 'cod388-browser-batched';
app._localEchoEnabled = false;
app._pendingInput = '';
app._lastKeystrokeTime = 0;
app._sendInputAsync = (_sessionId: string, chunk: string) => sent.push(chunk);
textarea.focus();
// One task, no awaits between the three dispatches.
const charDown = new KeyboardEvent('keydown', {
key: 'Unidentified',
bubbles: true,
cancelable: true,
composed: true,
});
Object.defineProperties(charDown, { keyCode: { value: 65 }, which: { value: 65 } });
textarea.dispatchEvent(charDown);
textarea.value = text;
textarea.dispatchEvent(
new InputEvent('input', { data: text, inputType: 'insertText', bubbles: true, composed: true })
);
const enterDown = new KeyboardEvent('keydown', {
key: 'Enter',
code: 'Enter',
bubbles: true,
cancelable: true,
composed: true,
});
Object.defineProperties(enterDown, { keyCode: { value: 13 }, which: { value: 13 } });
textarea.dispatchEvent(enterDown);
await new Promise((resolve) => setTimeout(resolve, 80));
return { wire: sent.join('') };
} finally {
app.activeSessionId = originalSessionId;
app._localEchoEnabled = originalLocalEcho;
app._sendInputAsync = originalSendInput;
app._pendingInput = originalPendingInput;
app._lastKeystrokeTime = originalLastKeystrokeTime;
textarea.value = '';
}
}, data);
}
it('delivers a character committed in the same task as Enter BEFORE the carriage return', async () => {
const { wire } = await batchedCommitThenEnter('o');
// Not '\r' (character lost, the defect) and not '\ro' (recovered too late).
expect(wire).toBe('o\r');
});
it('sends nothing for a keydown that produces no input event', async () => {
const { sent } = await keystroke({ data: 'q', dispatchInput: false, keyCode: 65 });
expect(sent).toEqual([]);
});
/**
* The sequence a real Android device logged (SwiftKey in Edge) when autocorrect fired on
* space: every key is a keyCode-229 keydown plus a plain `insertText`, then ONE keydown that
* deletes five characters and a second that inserts `rompt `. Trusted events through the real
* textarea and the real xterm, so `execCommand` produces the same `beforeinput`/`input`
* pairs the keyboard does. The byte stream is replayed (DEL erases a character) to get the
* line the shell ends up with.
*/
async function autocorrectOnSpace() {
return page.evaluate(async () => {
const app = (window as any).app;
const textarea = document.querySelector('.xterm-helper-textarea') as HTMLTextAreaElement;
const originalSessionId = app.activeSessionId;
const originalLocalEcho = app._localEchoEnabled;
const originalSendInput = app._sendInputAsync;
const originalPendingInput = app._pendingInput;
const originalLastKeystrokeTime = app._lastKeystrokeTime;
const sent: string[] = [];
const key229 = () => {
const down = new KeyboardEvent('keydown', { key: 'Unidentified', bubbles: true, cancelable: true });
Object.defineProperties(down, { keyCode: { value: 229 }, which: { value: 229 } });
textarea.dispatchEvent(down);
};
const tick = () => new Promise((resolve) => setTimeout(resolve, 20));
try {
app.activeSessionId = 'cod388-browser-autocorrect';
app._localEchoEnabled = false;
app._pendingInput = '';
app._lastKeystrokeTime = 0;
app._sendInputAsync = (_sessionId: string, chunk: string) => sent.push(chunk);
textarea.value = '';
textarea.focus();
for (const ch of 'testing the peompt') {
key229();
document.execCommand('insertText', false, ch);
await tick();
}
// SwiftKey's autocorrect: both edits in one task, before any timer runs.
key229();
textarea.setSelectionRange(textarea.value.length - 5, textarea.value.length);
document.execCommand('delete');
key229();
document.execCommand('insertText', false, 'rompt ');
await new Promise((resolve) => setTimeout(resolve, 80));
const line: string[] = [];
for (const ch of sent.join('')) {
if (ch === '\x7f') line.pop();
else line.push(ch);
}
return { raw: sent.join(''), line: line.join(''), textarea: textarea.value };
} finally {
app.activeSessionId = originalSessionId;
app._localEchoEnabled = originalLocalEcho;
app._sendInputAsync = originalSendInput;
app._pendingInput = originalPendingInput;
app._lastKeystrokeTime = originalLastKeystrokeTime;
textarea.value = '';
}
});
}
it('an autocorrect that deletes a word and retypes it reaches the shell once, not duplicated', async () => {
const { line, textarea } = await autocorrectOnSpace();
expect(textarea).toBe('testing the prompt ');
expect(line).toBe('testing the prompt ');
});
it('control: without the edit sync, xterm alone reproduces the duplicated line', async () => {
// destroy() puts xterm's own handler back. Keep this LAST: it leaves the controller off.
await page.evaluate(() => (window as any).app._keyCode229Recovery.destroy());
const { line } = await autocorrectOnSpace();
// Byte for byte what the phone sent in the device log.
expect(line).toBe('testing the peompttesting the prompt rompt ');
});
});