Files
Codeman/test/terminal-keycode229-recovery.test.ts
T
Aamer Akhter e8a93ada1f fix(terminal): forward the orphaned input event instead of replaying a guessed key
The previous shape guessed the character from `event.key` on keydown, re-emitted
it, and then tried to suppress a late canonical copy with a 250 ms
character-keyed dedupe. Review found three defects in that, all reproducible:
the dedupe matched on the character alone with nothing scoping a candidate to
the keydown that created it, so the same character typed twice inside the window
had its second, real byte swallowed; anything whose committed text differed from
`event.key` (Enter, IME punctuation) was delivered twice, because the dedupe
could never match it; and the trigger ignored `key === 'Unidentified'`, which is
what a soft keyboard reports, so it may never have fired where it was needed.

The input event already carries the committed text in `ev.data` — exactly what
xterm itself would have forwarded — so nothing has to be guessed. The controller
now only decides WHETHER to forward, by asking whether xterm produced canonical
data since the keydown that began the keystroke. No character-keyed matching
survives, so the first two defects are structurally impossible rather than
defended against, and nothing reads `key`/`keyCode`, so the third cannot recur.

Three details are load-bearing and each has a test that fails without it:

- The "did xterm speak?" snapshot is taken at KEYDOWN, not at the input event.
  `_keyPress` emits and sets `_keyPressHandled` before `input` fires, so a
  snapshot read at input time already contains that emission, reads it as
  silence, and delivers the character twice.
- Our `input` listener is registered with `capture: true`. The target is visited
  twice in the event path, so a capture listener calling `stopPropagation()`
  stops later BUBBLE listeners on that same target; xterm's `cancel()` runs
  exactly in the branch where it handled the input, so on bubble we would never
  observe handled events, and whether we observed them at all would hang off
  `options.cancelEvents`. Measured in jsdom and headless chromium; the table is
  in the module header.
- Enter is deliberately no longer special-cased. That mapping is what made the
  committed text differ from the re-emitted value in the first place.

The scope is also narrower than the old name suggests, and the browser test now
proves it rather than assuming it. For a keydown that reports keyCode 229 xterm
ALREADY self-rescues, via `CompositionHelper._handleAnyTextareaChanges()`
diffing the helper textarea on a 0 ms timer. A test asserting "we recovered it"
there passes while xterm does all the work, so the browser tests assert WHO
delivered the byte: zero canonical emissions for the genuinely orphaned case,
exactly one delivery for the case xterm rescues itself.

Also addresses review notes: the module gains an `@fileoverview` with
`@dependency`/`@loadorder` and an entry in the load-order list and module
inventory, and the wiring test moves out of the Ctrl+C smart-copy file into its
own. The keydown hook deliberately still runs for every key event rather than
moving behind the 229 gate: gating it would reinstate exactly the blindness
described above, and it is now a single counter assignment.
2026-09-07 19:11:20 -04:00

279 lines
9.5 KiB
TypeScript

/**
* Orphaned-input recovery for xterm's helper textarea (PR #388 / COD-27).
*
* xterm's CoreBrowserTerminal._inputEvent only forwards an `insertText` input
* event when `(!ev.composed || !this._keyDownSeen)`. Chrome-on-Android's soft
* keyboard produces `composed: true` input events preceded by a keydown, so
* that guard is false and the committed character is silently dropped.
*
* The controller under test forwards the event's own `data` when — and only
* when — xterm produced no canonical data for that keystroke. These tests
* drive it with synthetic events and an injected timer; no browser is needed.
*/
import { readFileSync } from 'node:fs';
import vm from 'node:vm';
import { describe, expect, it } from 'vitest';
type Listener = (event: Record<string, unknown>) => void;
function makeTextarea() {
const listeners = new Map<string, Set<Listener>>();
const registrations: Array<{ type: string; capture: unknown }> = [];
return {
addEventListener(type: string, listener: Listener, capture?: unknown) {
const bucket = listeners.get(type) ?? new Set<Listener>();
bucket.add(listener);
listeners.set(type, bucket);
registrations.push({ type, capture });
},
removeEventListener(type: string, listener: Listener) {
listeners.get(type)?.delete(listener);
},
fire(type: string, event: Record<string, unknown> = {}) {
for (const listener of [...(listeners.get(type) ?? [])]) listener({ type, ...event });
},
listenerCount() {
return [...listeners.values()].reduce((total, bucket) => total + bucket.size, 0);
},
registrations() {
return [...registrations];
},
};
}
/** A committed-text `input` event of the shape Chrome-on-Android delivers. */
function inputEvent(data: string, overrides: Record<string, unknown> = {}) {
return { data, inputType: 'insertText', isComposing: false, ...overrides };
}
function harness({ screenReader = false } = {}) {
const source = readFileSync(new URL('../src/web/public/terminal-keycode229-recovery.js', import.meta.url), 'utf8');
const exposed: Record<string, any> = {};
vm.runInNewContext(source, { window: exposed, globalThis: exposed }, { filename: 'terminal-keycode229-recovery.js' });
const textarea = makeTextarea();
const emitted: string[] = [];
const timers = new Map<number, () => void>();
let timerId = 0;
const controller = exposed.CodemanKeyCode229Recovery.create({
textarea,
emitRecovered: (data: string) => emitted.push(data),
isScreenReaderMode: () => screenReader,
setTimer: (callback: () => void) => {
const id = ++timerId;
timers.set(id, callback);
return id;
},
clearTimer: (id: number) => timers.delete(id),
});
return {
controller,
emitted,
textarea,
/** A keydown that carries NO usable key identity, exactly like GBoard's. */
keydown(overrides: Record<string, unknown> = {}) {
controller.handleKeyEvent({ type: 'keydown', key: 'Unidentified', keyCode: 229, ...overrides });
},
input(data: string, overrides: Record<string, unknown> = {}) {
textarea.fire('input', inputEvent(data, overrides));
},
flushTimers() {
for (const [id, callback] of [...timers]) {
timers.delete(id);
callback();
}
},
pendingTimers: () => timers.size,
};
}
describe('orphaned terminal input recovery', () => {
it('forwards the committed text when xterm stayed silent', () => {
const h = harness();
h.keydown();
h.input('x');
expect(h.emitted).toEqual([]);
h.flushTimers();
expect(h.emitted).toEqual(['x']);
});
it('forwards nothing when xterm emitted canonical data after the keydown', () => {
// The "xterm handled it" case is decided by the COUNTER, never by assuming
// the input event does not reach us. On capture it always does (xterm's
// cancel() only stops later BUBBLE listeners), so this test dispatches the
// real input event AND has xterm emit canonical data for that keystroke.
const h = harness();
h.keydown();
h.input('x');
h.controller.notifyCanonicalData();
h.flushTimers();
expect(h.emitted).toEqual([]);
});
it('registers the input listener in the CAPTURE phase', () => {
// Measured in jsdom and headless chromium: a capture-phase listener on the
// TARGET calling stopPropagation() (which is what xterm's cancel() does in
// the branch where it handled the input) stops later BUBBLE listeners on
// that same target, because the target is visited twice in the event path.
//
// capture-then-BUBBLE, stopPropagation: ours NEVER fires
// capture-then-CAPTURE, stopPropagation: ours still fires
//
// So this must not be "tidied" to bubble: on bubble we would silently stop
// seeing exactly the events xterm handled, and whether we saw them at all
// would depend on xterm's `options.cancelEvents`, which Codeman never sets.
const h = harness();
const input = h.textarea.registrations().filter((entry) => entry.type === 'input');
expect(input).toHaveLength(1);
expect(input[0].capture).toBe(true);
for (const entry of h.textarea.registrations()) expect(entry.capture).toBe(true);
});
it('forwards nothing on the keypress path, where canonical data precedes the input event', () => {
// xterm's _keyPress calls triggerDataEvent() and sets _keyPressHandled
// BEFORE the input event fires. The "did xterm speak?" snapshot therefore
// has to be taken at keydown; taken at input time it would already include
// this emission and the character would be delivered twice.
const h = harness();
h.keydown();
h.controller.notifyCanonicalData();
h.input('x');
h.flushTimers();
expect(h.emitted).toEqual([]);
});
it('does not let a stale candidate swallow a later identical keystroke (defect 1)', () => {
const h = harness();
// First keystroke: orphaned, recovered.
h.keydown();
h.input('x');
h.flushTimers();
expect(h.emitted).toEqual(['x']);
// Second identical keystroke, handled by xterm itself.
h.keydown();
h.input('x');
h.controller.notifyCanonicalData();
h.flushTimers();
// Exactly one recovery total, and the second keystroke's canonical byte was
// never claimed or suppressed by the first one.
expect(h.emitted).toEqual(['x']);
});
it('forwards committed text that no keydown key could describe, exactly once (defect 2)', () => {
const h = harness();
h.keydown({ key: 'Enter' });
h.input('a longer commit');
h.flushTimers();
h.flushTimers();
expect(h.emitted).toEqual(['a longer commit']);
});
it('recovers a GBoard keydown and never reads key or keyCode (defect 3)', () => {
const h = harness();
const reads: string[] = [];
h.controller.handleKeyEvent({
type: 'keydown',
get key() {
reads.push('key');
return 'Unidentified';
},
get keyCode() {
reads.push('keyCode');
return 229;
},
get which() {
reads.push('which');
return 229;
},
});
h.input('x');
h.flushTimers();
expect(h.emitted).toEqual(['x']);
expect(reads).toEqual([]);
});
it('ignores input events that are not committed text', () => {
const h = harness();
for (const inputType of ['insertCompositionText', 'deleteContentBackward', 'insertLineBreak', 'insertFromPaste']) {
h.keydown();
h.input('x', { inputType });
}
h.keydown();
h.input('');
h.keydown();
h.textarea.fire('input', { data: null, inputType: 'insertText' });
h.flushTimers();
expect(h.emitted).toEqual([]);
});
it('ignores composition and cancels pending candidates on compositionstart', () => {
const composing = harness();
composing.keydown();
composing.input('x', { isComposing: true });
composing.flushTimers();
expect(composing.emitted).toEqual([]);
const lifecycle = harness();
lifecycle.textarea.fire('compositionstart');
lifecycle.keydown();
lifecycle.input('中');
lifecycle.flushTimers();
expect(lifecycle.emitted).toEqual([]);
// compositionstart arriving after a candidate is queued must cancel it.
const cancelled = harness();
cancelled.keydown();
cancelled.input('x');
cancelled.textarea.fire('compositionstart');
cancelled.flushTimers();
expect(cancelled.emitted).toEqual([]);
// compositionend releases the gate again.
cancelled.textarea.fire('compositionend');
cancelled.keydown();
cancelled.input('y');
cancelled.flushTimers();
expect(cancelled.emitted).toEqual(['y']);
});
it('stays out of the way in screen reader mode', () => {
const h = harness({ screenReader: true });
h.keydown();
h.input('x');
h.flushTimers();
expect(h.emitted).toEqual([]);
});
it('recovers an input event that arrives with no preceding keydown', () => {
const h = harness();
h.input('x');
h.flushTimers();
expect(h.emitted).toEqual(['x']);
});
it('clears timers and listeners on destroy', () => {
const h = harness();
expect(h.textarea.listenerCount()).toBeGreaterThan(0);
h.keydown();
h.input('x');
expect(h.pendingTimers()).toBe(1);
h.controller.destroy();
expect(h.pendingTimers()).toBe(0);
expect(h.textarea.listenerCount()).toBe(0);
h.flushTimers();
expect(h.emitted).toEqual([]);
// Nothing fires after destroy, even if a stray event is delivered.
h.textarea.fire('input', inputEvent('y'));
h.flushTimers();
expect(h.emitted).toEqual([]);
});
});