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eb5d982c388a3ec04c712d659d5140730cead279
5
Commits
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eb5d982c38 |
fix(tiles): refresh fetches first, then resets in-stream and replays
A tile's refresh (a {t:'r'} or {t:'c'} frame, every reconnect) wiped the
pane with a synchronous xterm clear() at the load's turn, BEFORE its fetch,
and wrote live frames straight through the fetch and the replay. That is
the replay clear CLAUDE.md "Terminal resilience" forbids: bytes still
queued in xterm are parsed after a synchronous clear and fuse into the
snapshot, and clear() keeps the cursor's row, column, SGR and margins, so
the capture (raw rows, no home) started wherever the cursor sat. A failed
or empty fetch left the tile blank.
The refresh now runs in the primary pane's order (_onSessionNeedsRefresh,
_resetTerminalForReplay):
- fetch first, so the tile keeps its last frame through the round trip and
through a grid tile's wait in the load queue;
- from the response on, live frames are held in _liveQueue with their
arrival time, as _pullHistory already did, and the body read of a bounded
window (grid tile, shell) gets the pull's 10 s budget, while Pane B's
unbounded full=1 keeps the request's own budget;
- then the queued in-stream \x1bc immediately before the replay;
- then the held frames that arrived after the response (_flushLiveQueue,
now shared with _pullHistory), then the owed marker.
A failed, aborted or empty fetch writes nothing and resets nothing.
The _stampMarkerIfOwed guard for a pending trailing refresh stays (that
refresh settles the marker itself either way); only its rationale changed.
The fake xterm now treats an in-stream RIS like clear() in its row
emulation.
Tests: the ones that counted clear() calls on the refresh path now count
the in-stream reset instead, assert it sits right before the replay and
that clear() is never called (unit single-flight block, the marker
ordering tests, the reconnect test, the grid {t:'r'} and marker tests, and
the scroll test's server-clear overflow case, which now goes through a
refresh). New: the screen is untouched on a failed or empty fetch and on a
failed body read (held frames written in order), frames before the
response are written through and later ones held behind the replay, the
cutoff drops frames the capture covers, the body budgets, and a grid tile
keeps its last frame through its own capture's round trip.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
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312a8faa06 |
fix(tiles): wire the Android soft-keyboard controller into every tile (#541 parity)
#541 fixed Android autocorrect duplicating the typed line in the primary pane: xterm's keyCode-229 textarea diff is append-only, so an autocorrect on space (delete a word, insert the corrected one) sent the whole line again. The fix, an edit-based diff that sends one DEL per deleted code point and then the inserted text, lives in terminal-keycode229-recovery.js together with #441's next-keydown drain (a character committed in the same task as Enter goes out ahead of the \r) and the original orphaned-insertText recovery. Only the primary pane created that controller, so a grid tile or the split's Pane B still ran xterm's stock behaviour. Both are gated on width alone (1180 CSS px), which a wide Android tablet clears. TerminalTile now creates its own controller in connect(), after the xterm opens and before the first await, handed this tile's textarea, this tile's CompositionHelper and _onTerminalData as the send path, so recovered bytes go to the tile's own session through the exactly-once queue. As in the primary pane, handleKeyEvent runs first in the custom key handler, above the keyCode-229 early return, and notifyCanonicalData sits in the onData lambda, gated on the same two CodemanTerminalInput predicates, never in _onTerminalData, which the recovered bytes also take. destroy() tears the controller down before disposing the xterm, which restores xterm's own diff and removes the capture listeners. No mode or device gate, matching the primary. The module itself is unchanged apart from its header; terminal-ui.js gains only a comment naming the twin. Tests: test/terminal-tile-input.test.ts now loads the real module into its vm harness (with window timers, without which create() would silently throw and every test would run against no controller) and drives a fake CompositionHelper carrying xterm's own append-only diff. It covers install and restore on the tile's own helper and textarea, autocorrect sent as an edit (with a control reproducing the device-log duplicate), the last character and an autocorrect each followed by Enter in one task, a self-rescued 229 key delivered once, the onData gate ignoring query replies and focus reports, two refused inserts after one keydown both recovered, robustness when the controller throws, per-tile controllers, and a source pin keeping the call above the early return. Removing the create, the handleKeyEvent call, the notify, its gate, or the destroy each turns at least one of them red, as does moving the notify into _onTerminalData. The browser suite gains a TerminalTile block in test/terminal-keycode229-recovery.browser.test.ts (real xterm, trusted execCommand input, chunks asserted to address the tile's session, with a destroyed-controller control). Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com> |
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4fe843a94e |
fix(tiles): page a hollow tile's CLI transcript and report its clicks (#555 parity)
#555 made the primary pane page opencode's transcript with PageUp/PageDown from the wheel, because opencode draws in place on the alternate screen and leaves the browser's buffer with no scrollback. A TerminalTile (a grid tile, the split's Pane B) left every wheel to xterm, so in an opencode tile the wheel scrolled nothing, or only stale rows. The tile now runs the primary pane's own gates aimed at itself (its terminal, its session, never the active one): xterm's tracking mode, the Claude forwarding gate, then the hollow-buffer test. A wheel that passes them is consumed in the capture phase and turned into PageUp/PageDown through the shared pageKeysForTravel math, coalesced per tile (40 ms, 512 bytes, the twin of the primary pane's queue) and sent ephemeral on the tile's own socket. Every other wheel stays with xterm as before, the shell history pull included. The file names no CLI: the mode rules stay in terminal-ui.js, and terminal-tile.js joins the frontend no-id-branching guard. A plain port of the primary's baseY === 0 test would almost never fire in a grid. A tile's first capture is taken at the PTY's previous size (usually the taller primary pane's) and written into a shorter xterm, and its own row-shrinking fits (zoom-out, divider drags, tile count changes) push more rows above the screen. The tile counts those rows as its own overflow: all of them after a load whose capture held a single screen (the server's captureRows), plus whatever a local fit or a PTY geometry report pushes up, reset by a clear and clamped to baseY. The paging gate gets baseY minus that count. Output that scrolls real lines still counts as history, so the tile stops paging there. #555's other half, stripping opencode's mouse DECSETs so a drag selects text, is server-side and already reached tile sockets. It also left the tile's xterm unable to encode opencode's clicks, so the tile now installs the primary pane's desktop click report (bubble phase, gated on the session's cliMouseTracking, the tile's own link hover and selection). Both listeners, the flush timer and the page-key state are torn down in destroy(). Still out of scope, as the fileoverview now says: touch paging (tiles have no touch path) and SGR wheel forwarding to Claude's fullscreen renderer (tile-grid-plan follow-up 4), so a fullscreen Claude tile keeps leaving the wheel to xterm. Tests: test/terminal-tile-scroll.test.ts drives a real tile in the vm harness (session targeting, every no-page case, accumulation, the cap, coalescing, byte parity with the primary pane, the overflow discount through a load, a fit, a geometry report and a clear, the click report and destroy); the discount cases fail with it removed. The fake xterm gains opt-in row emulation. test/terminal-tile-scroll.browser.test.ts checks the same model against a real xterm with trusted wheel events (browser suite, not the gate). Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com> |
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218b03ceb7 |
test(tiles): the load-queue test drives TerminalTile on the shared fakes
tile-grid-load-queue carried its own FakeSocket, FakeFit and FakeTerminal, near-copies of terminal-tile-input's. It now imports test/mocks/terminal-tile-fakes.ts, which gains what only it used: FakeSocket.drop(code), the terminal's scrollToLine / scrollToTop, and the replay-pace extension (an opt-in `holdParse` that keeps write callbacks from running, as on a disposed xterm, and empty writes left out of `writes`, since the replay queues one only to hear it was parsed). One definition serves both files with no per-file switch: terminal-tile-input passes unchanged with the extension in place, the shared fit resizes to the default 80x24 the tile already has, and FakeSocket.OPEN is the real value. Every assertion is unchanged. Mutation-checked through the shared fakes: dropping destroy()'s replay settle fails the destroy-while-parsing case, a queue that runs two loads at once fails eleven cases, and a tile that never registers its input socket fails six in terminal-tile-input. Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com> |
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8ce2e5acbb |
test(split): TerminalTile's socket, xterm and fit fakes live in test/mocks
terminal-tile-input defined FakeSocket, FakeFit and FakeTerminal inline; they move unchanged to test/mocks/terminal-tile-fakes.ts so the grid's load-queue test can drive a real TerminalTile on the same fakes instead of its own near-copies. No assertion changed (a tile that never registers its input socket still fails six cases). Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com> |