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a4606ccae3ef84595e573448f80a624f2de0240f
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Commits
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a4606ccae3 |
fix(cli): orca file open no longer moves your view unless you pass --focus (#24244)
* docs(cli): file open/diff/open-changed say they switch the user's view and are for user requests only Refs #9944 * fix(cli): file open/diff/open-changed leave the user's view alone unless --focus `orca file open`, `file diff` and `file open-changed` always switched the desktop to the target worktree, selected the tab and revealed it in the sidebar. An agent skill that opens its answer pulled the user out of whatever they were typing in (#9944), and a phone opening a file moved the desktop too. The commands now add the tab in its worktree without changing anything on screen, including when that worktree is the one being viewed: the new tab is added to the tab bar but the active tab, tab type and focus stay put. In a worktree the user is not viewing, the tab becomes that worktree's selection so it is in front when they go there. `--focus` keeps today's behavior. files.open / files.openDiff take an optional `navigation` target (the existing RUNTIME_NAVIGATION_TARGETS vocabulary); the CLI sends 'all' for --focus, like `worktree create --activate`, and nothing otherwise. The renderer moves the host view only when the target reaches the host; a missing field (phones, older CLIs) leaves it still. Editor opens for a worktree other than the on-screen one no longer write the global activeFileId/activeTabType. Refs #9944 * test(cli): justify the window and runtime stubs in the file-open notification test * fix(cli): keep phone file opens switching the desktop; the CLI asks for 'caller' Phone opens send no `navigation` field, and the phone's diff-review "Open in session" relies on the desktop selecting the diff it opened. A missing field now keeps the original switch exactly; the CLI says what it wants instead: 'caller' (no host move) by default and 'all' for --focus. Older CLIs, which send nothing, keep switching as they always have. Refs #9944 * fix(cli): background file opens select the tab without counting as a visit A CLI open into a worktree the user is not viewing selected the new tab with the same activation a user click uses, which stamps lastFocusedAt and the group's recency list. The worktree jump palette sorts recent tabs by that time, so every agent `orca file open` into another worktree jumped to the top of the user's recent tabs. Editor opens now take a selection mode: 'focus' (default, unchanged), 'background' (select within its worktree without recording focus or recency) and 'none' (add only). createUnifiedTab and activateTab gain recordFocus:false for the background case. Also: tests for reopening an already-open file or diff without --focus, a comment that file opens move only the host window ('all' acts as 'host'), root help lines back under 100 columns, and an accurate remote test title. Refs #9944 * fix(tabs): a background-selected tab still joins its group's tab history recordFocus:false skipped both the focus-time stamp and the group's recentTabIds append while still making the tab the group's active tab. Ctrl+Tab looks the active tab up in that history, so after a background CLI open it did nothing (or went to the wrong tab) once the user switched to that worktree, and hydrate kept the broken history across a restart. Only the focus-time stamp is skipped now; the jump palette's recent rows sort by that alone, so the palette fix stands. Refs #9944 * fix(cli): file open/diff/open-changed --focus help says it brings the user to the file The three commands borrowed the shared --focus line written for terminal create ("Reveal the created terminal session in Orca"). They now use the per-command flag help table; terminal create's line is unchanged. Refs #9944 |
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12b8ef8c0b |
fix(worktree): update local main safely, once per branch, alongside the checkout (#23698)
* fix(worktree): retry local main refresh through git lock contention and skip false alarms * fix(worktree): overlap the local main refresh with the checkout and run one refresh per repo at a time * fix(worktree): skip the local base refresh when the create makes that branch itself Creating a workspace named feature-x from origin/feature-x runs `worktree add -b feature-x`, which now overlaps the refresh. The refresh's drift probe could see refs/heads/feature-x missing and its presence probe then see it (the add just wrote it), which reported "not fast-forward" and showed a sticky "Local feature-x was not refreshed" warning. `-b` refuses an existing branch, so there is nothing to refresh in that case: skip it on the local, prepared-checkout and SSH create paths. The SSH overlap tests move to their own file so the existing suite stays under the line limit. * fix(worktree): say plainly what happens after the local base refresh queue wait expires * test(worktree): prove SSH local base refreshes of one repo run one at a time * test(worktree): drop type assertions from the SSH refresh overlap test mocks * fix(worktree): fast-forward local main with one host-owned merge --ff-only per branch Moves the whole local base refresh into one shared routine that runs on the execution host (main process for local and WSL repos, the relay for SSH), so the app no longer keeps a second copy of the checks, queue and retry. A checked-out branch now moves with merge --ff-only (hooks, auto-gc and autostash off) instead of status-then-reset --hard, which silently overwrote an untracked file the new commit adds and could discard an edit or a commit made after the check. A free branch moves with a compare-and-swap update-ref that writes a reflog message. Status reads no longer take index.lock. Creates of one branch share one run plus at most one trailing run; a create waits at most 30 s and never starts a competing mutation. The failure toast is keyed by repo and branch because every create that joined a run reports the same fact. * fix(worktree): fast-forward local main even when the repo requires signed merges With merge.verifySignatures=true, the owner-checkout fast-forward refused an unsigned origin/main tip, so every create warned "Local main was not refreshed" where the old reset moved main. The new workspace is already created from that same unsigned commit, and a branch that is not checked out moves without a signature check, so the refusal protected nothing. Turn the setting off for this one merge, like the hooks, gc and autostash overrides. * fix(worktree): clear git read caches when a shared local main update lands late The update of local main can finish after a create stopped waiting for it, so the shared run now invalidates git read caches itself. The index.lock real-git test also no longer reads the developer's global git config. * fix(worktree): never overwrite an ignored file when fast-forwarding local main A plain `git merge --ff-only` silently replaces an ignored file (for example a local `.env`) at a path the new commit starts tracking. Pass `--no-overwrite-ignore` so git refuses instead and the create reports the checkout as having local changes. Supported on the fast-forward path since well before Git 2.25. Also make the relay test for one-refresh-per-branch hold the first merge until the second request has reached the relay, so it fails without the coalescing. * fix(worktree): keep the local main update a plain fast-forward whatever the user's merge settings say A per-branch mergeOptions such as '-s ours' or '--squash', or pull.twohead=ours, made the update create a merge commit that dropped upstream, or stage upstream without moving main, while reporting success. The command now clears the branch's mergeOptions and passes the strategy and signature choice on the command line, which beats any config. After the move Orca confirms local main is exactly the target before reporting it updated. The exact command also runs in the Git 2.25 compatibility suite. * fix(worktree): make the Git 2.25 fast-forward contract pass in CI and rerun on every change to it The new real-Git contract for the local main fast-forward wrote a post-merge hook into .git/hooks, which does not exist when the repo is created by the uninstalled Git 2.25.5 build CI uses (no templates), so the Git compatibility check failed. Create the directory first. The Git compatibility check also did not run when only the fast-forward module changed, so a later edit to its merge arguments (for example a flag Git 2.25 lacks) would skip the one check that tests them. Add the module to the check's paths. * fix(worktree): answer every create from a local main update toward its own base Creates from different remotes' main (origin/main and upstream/main) shared one queued update per repo and branch, which ran only the latest caller's target: a create could get no result for its own base, or a false "not refreshed" warning computed for another remote's main. The per-branch runner now queues one run per distinct target, still one at a time per branch, and only callers toward the same target share a queued run. Applied in the app and the relay. * test(worktree): record the third create's result in the mixed-remote burst tests and update the toast id rationale * chore(worktree): correct the toast id rationale |
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0b79720c2e |
feat(native-chat): the chat strip and the sidebar read the host's child records (#22614)
* feat(native-chat): publish the host's child records to the status summary and the chat strip
The status summary and the background-task channel now read a session's child
records from the host's canonical store, through the status sink its row
landed in, and derive the legacy task and subagent shapes from the same views.
The parent row folds its child-work liveness from those records at ingest,
not from the summary's task list. The adapters no longer push their task DTO
to clients: the onBackgroundTasksChanged path is gone, and a child-work ingest
is what republishes both the summary and the strip. Finished children stay
listed until the session's own next turn starts. A reader that predates child
views never receives a roster whose rows are all settled.
* feat(native-chat): the chat strip reads the host's child records with its parent's verdict
The strip's roster now renders from the child views its channel carries, and
passes the verdict the session's own status row gives its children, built the
way the sidebar builds it (the row's freshness and the status feed's
observation). So one child reads the same in the strip and the sidebar, live,
after the transport drops, and once the row goes stale. A roster of finished
children stays shown until the next turn but no longer animates the monitoring
indicator or blocks conversation commands.
Tests: an end-to-end run on a host with no renderer (a real hook server as the
status sink) shows the summary and the strip channel carrying the same records
at every step, the parent row folded from them, retention, and an older
client's task list holding live work only; a wired renderer test shows both
surfaces agree when live, lost and stale.
* test(native-chat): a newer host's view degrades, an older reader keeps its live roster, a finished roster holds nothing open
- The view decoder ignores unknown keys, degrades unknown kinds, states,
outcomes and memberships, and drops only rows it cannot identify.
- At the RPC boundary a reader that predates child views gets no strip for a
roster of finished children and never the views themselves; a stop-only
reader keeps rows whose host offers no targeted stop.
- The strip shows finished children without reading them as live work.
- The row keeps its child list's identity when a summary repeats it.
* refactor(native-chat): the summary's task list is the legacy projection's live rows, unfiltered
* test(native-chat): type the switch tests' mocks instead of asserting them
* test: remote clients advertise reading child views
* docs(agent-status): the structured row folds the store's child records
* fix(agent-status): keep the view reader's header from reading as a value import to the renderer boundary
The renderer node-builtin boundary test scans raw text, so a header comment
that said "imports" ahead of the import block turned the type-only import of
agent-status-child-work into a value edge that reaches node:crypto.
* refactor(native-chat): the status summary's broadcast equality gets its own module
The status feed crossed the file-size limit once the summary gained the main agent's turn
outcome beside the child views. Which summary changes reach every session list now lives in
structured-agent-session-status-summary-equality.ts.
* fix(native-chat): command admission reads the strip's child records
A conversation command was refused on the provider tracker's own roster
while the strip read the host's child records, so a drift between the two
rule sets could refuse /clear with a stop instruction the strip had no
button for. Admission now reads the same records through the same read as
the strip, uses the strip's liveness fold, and asks for a stop only when
the strip renders one. The adapter contract no longer exposes the tracker
roster, so no host decision can read it.
Also records when the legacy child shapes die, every earlier death of a
settled child, and the display-precision invariant behind the summary's
clock tolerance.
* refactor(native-chat): command admission takes only what it reads of a turn
* fix(native-chat): the session list drops a session's children when the store does
A session's end no longer removes its child records: a child still running
settles with an outcome nobody reported, and a finished one stays listed.
Records now leave only at the session's own next turn, at the cap on settled
records, or when the host lets go of the session and its row leaves the store.
The summary kept after the host lets go used to strip its children on close,
a rule of its own. It now re-reads them from the store when the row leaves,
through the same read every live summary uses, so the session list and the
chat strip list the same children at each step, including a forget with no
close. Closing only revokes ownership, as before the child records existed.
* test(native-chat): write the Codex frame script's parent row out step by step
Once every surface reads the child records, the provider tracker's roster is
no oracle: it and the records read the same child executions, so agreeing
with it cannot catch a defect in either. Each frame now states the child
liveness and the parent row it must fold to.
* fix(native-chat): the idle sweep and the restart snapshot read the host's child records
The idle sweep (keep an agent running while its subagents or commands run) and
the restart-resume snapshot (what a chat was doing when Orca stopped it) both
read the provider tracker's roster through the adapter interface, which no
longer carries it. Both now take the host's one child-record read, the same one
the status summary, the chat strip and command admission use.
The snapshot's working test also folded that roster through the shared fold's
old `backgroundTasks` input, which the fold no longer reads, so a settled lead
whose subagent was still running would have been offered nothing. It now hands
the fold the records.
* test(native-chat): the child-record tests follow the merged command lifecycle
A command is a live child record from its start and is removed, not settled,
when it stops, whatever Codex tagged it. The end-to-end switch now shows the
child's `npm test` as a live row beside its dev server, and both are gone once
they exit; only the finished subagent stays listed until the next turn. Letting
go of the session is its tab closing, since a closed conversation whose tab
remains keeps its row.
Command admission's finished row is a subagent, the one kind that settles, and
the failed-verdict row test admits its live subagent as a host record, the only
thing the row folds.
* refactor(native-chat): the status feed's journal projection cache gets its own module
The status feed crossed the file-size limit once the child records joined the
agent-start signal and the completion feed's status read. The per-journal
projection, cached per commit, now lives in
structured-agent-session-status-journal-projection.ts.
* test(native-chat): the admission test's compaction resolves with a real outcome
Main's compaction result is a tagged outcome; the host-level admission test
resolved its mock compaction with an empty object.
* feat(native-chat): the sidebar lists running subagents; the strip, running then the newest finished
The host keeps every child record; what each surface lists is picked from them on every read, so
nothing is stored twice. The status summary, which every session list reads, now carries only
running children (and a finished one whose shell still runs, which reads monitoring): a finished
or failed subagent leaves the sidebar and stays in the chat's strip. The strip lists every running
child, then the newest finished ones, 100 rows in all; more than 100 running all show.
This matches common practice: sidebars show live subagents, and finished ones stay in the chat's
panel, newest first. No wire field is added. An older client reads fewer rows: its legacy task
lists were already live-only in the summary, and the strip's settled tasks come from the same
bounded roster.
* fix(sidebar): one rule for what the worktree sidebar lists: running children, from every source
`worktreeSidebarListsChild` is the one definition: a child that runs, counting a finished one
whose own shell still runs (it reads monitoring). The sidebar's row builder applies it to every
child source it reads, a terminal agent's hook roster and a chat session's records alike, and the
host's status summary applies the same predicate, so the sidebar's payload stays small. The chat's
strip keeps finished children, newest first.
A terminal agent's hook roster already drops a child on its own stop, so nothing changes there:
a teammate between turns and a child gone quiet still run, and still show. The selection module
moves to `agent-child-work-listing.ts`, since it now covers every source, not only chat sessions.
* test(native-chat): the switch test passes the startup child key main's status bar takes
* fix(native-chat): a finished child stays until the user's next send, not a turn Claude opens on its own
Claude wakes the agent on its own when a background task ends, and that wake is a
new root turn. Keying retention on the newest root turn retired every finished
child about two seconds after a background agent or shell finished, so its
outcome never showed in the strip.
Retention now keys on the user's newest send the provider accepted (a message, a
steer or a command), with the journal epoch so a rewind still retires. A turn the
provider opens itself and a subagent's turn carry no send. Replayed captured wake
orders through the real adapter, hook server and status feed.
* fix(native-chat): a background Stop reaches the tasks the child records show
The strip draws a row's Stop, and /clear, /compact and rewind wait for background
work, from the host's child records, but the Claude adapter still resolved which
tasks a Stop reached from its own tracker's roster, and refused to stop at all
once that roster was empty. A task the records kept live after the roster dropped
it showed a Stop that sent nothing and blocked those commands until the chat tab
closed.
The host now resolves the provider ids a Stop sends from the records (the same
per-row rule the strip and admission use; every such row for stop-all), and the
adapter stops exactly those, with no tracker guard. An acknowledged stop ends the
record: a running task sends its own stopped frame first, and the CLI answers
success with no frame for a task it no longer knows. A refused stop leaves the
record live. No production code reads the tracker's roster any more.
* fix(native-chat): one rule for a finished child that still owns live work, at any depth
The listing kept a finished child whose work ran through any depth of ownership,
but retention at the user's next turn protected only the direct owner, so a
finished agent whose finished subagent still ran a shell was removed and that
subagent jumped to the top level. Both now read settledOwnersOfLiveWork.
* fix(native-chat): an older client sees a Codex child's shell as it did before views
Clients that predate child views read a flat task roster derived from the views.
It listed a Codex child agent's shell as an extra row beside the running agent,
then as a bare command once the agent finished. The derivation now hides a
running agent's commands and names a finished agent's as "<agent> — <command>",
as the Codex tracker did; the label rule moves to a shared module both use.
* fix(native-chat): the chat decodes a roster's child rows once, as the frame arrives
The client reducer compared raw wire rows, so a row shaped by a newer host could
throw there, and the strip decoded a new array on every render, which defeated its
grouped-rows memo while a turn streamed. Rows are now decoded where the frame
enters the reducer, an unchanged roster keeps its identity, and the strip's parent
context is rebuilt only when one of its values changes.
* fix(native-chat): the strip channel forgets a closed conversation's roster
It kept the last roster fingerprint of every conversation for the host's lifetime.
The conversation map now tells observers when one leaves it. Also corrects the
summary's children comment: it carries running children only.
* docs(native-chat): rewrap the retention comment
* fix(native-chat): a task's own ending replaces a Stop's, and a child finished after the user wrote stays
Two lifecycle gaps from the round-1 fixes.
A Stop acknowledged ahead of the task's own ending relabelled it. The SDK hands
Orca a control answer as soon as it reads it and queues other frames, so when a
task finished just as the user pressed Stop, the acknowledgement arrived before
the task's completion the CLI wrote first, and the task read "Stopped" with its
result lost. An acknowledged Stop now ends a record provisionally (outcome basis
`stop-acknowledged`); the task's own terminal frame replaces it, and nothing
replaces an ending the task reported itself.
A finished child still vanished with no new action from the user when the send
the provider took was written before the child finished: a steer Claude takes at
its next boundary, or a queued draft handed over at the end of the turn. The
user's next turn now carries when they acted (the send's written time, or the
draft's queued time, both on the host clock), and only children that finished at
or before it retire; a later one stays until the user's next send. A rewind
still retires every finished child.
Also: a Stop-all keeps stopping the remaining tasks after one request fails, then
reports the failure.
* fix(native-chat): the strip keeps one empty list for a roster that omits one
A roster with only running or only finished rows made a new empty array on every
render, so the strip regrouped its rows each time. One shared empty list keeps
its memo.
* fix(native-chat): a strip row whose owner the 100-row budget cut renders under the main agent
The budget can keep a finished child and cut its finished owner. The child still
named that owner, so it rendered nowhere. The selection now clears an owner it
did not keep, as the view contract says for an owner outside the projection.
* fix(native-chat): a stop-all that times out stops asking, and "no children" is sent once
A stop-all kept asking after a request timed out, so a Claude CLI that stopped
answering control requests cost one full deadline per task, while the chat's
sends, Stop and /compact waited behind it. A timeout now ends the loop; other
request failures still let the remaining tasks be stopped.
The chat strip channel never remembered that it had sent "no children", so
every change in a chat with none re-sent that frame to each subscriber. It now
remembers it, and forgets only when the conversation closes.
Also renames agent-child-work-stop.ts to agent-child-work-stop-targets.ts, which
says what it answers: the provider ids a background Stop reaches.
* fix(native-chat): the status feed reads a journal snapshot with no submissions, and e2e tests use the child-work reader
CI on
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24540300f0 |
fix(agent-status): preserve hook presence when process checks cannot answer (step 1 of 3) (#23947)
* fix(agent-status): admit hook process presence on the execution host * fix(agent-status): restrict process checks to real hook ingress * fix(agent-status): keep presence checks from causing false exits or losing real ones - Pin the macOS process start time to UTC on both the hook and the host so a shell TZ or a time-zone change cannot turn a live Claude into an exit. - An unanswered process check falls back to the foreground confirmation, so Codex, SSH and Windows panes still leave the agent state on a real exit and the Codex late-completion recovery still runs. - A nested agent that inherits the pane key cannot take over the pane's presence; a retired session is replaced by the next session even when its SessionStart was lost. - Drop the unused Windows process read (no Windows hook captures an identity yet) so shared code no longer imports main-process modules. - Skip the capture outside Orca panes, gate relay re-checks to real title changes, and list the capture module in the CLI project. * refactor(agent-status): own pane presence by the agent's process, not its session Presence now exists only when a hook carries the agent's process identity, and only that process's evidence changes it: its SessionEnd ends the pane, its /clear and /resume keep it, and hooks from any other process (a nested agent inheriting the pane key) update status without taking ownership. Hooks without an identity (Windows, sessions started before the capture) behave exactly as before, so a nested agent can no longer end a pane it does not own. An ended owner stops answering 'exited', and the host probes the owner only when another process reports in the pane. * fix(agent-status): close round-3 review gaps in presence handling - Relay retries and transcript polls schedule against the row the relay cached, and identity-less events pass through the transition unchanged, so SSH Grok replies and Codex transcript polls deliver again. - A live process check restores the runtime's agent status and releases queued orchestration mail, like a foreground read that finds the agent. - An answered foreground read naming a non-agent (wsl.exe, tmux) is still an exit; only silence is not. - A suspended (Ctrl-Z) agent is unverifiable, not live, so the foreground read decides as before. - An agent of another type started mid-turn cannot own or end the pane. - Replayed spool hooks check each pane once, and SessionEnd ends presence only for reasons that end the process. * refactor(agent-status): record the pane's owning agent even without a process id Ownership is now decided only by comparing the recorded owner with the sender, never from the row's agent type or turn state (which identity resolution rewrites). The first agent hook in an empty pane claims it; a live owner keeps it against any other agent (a nested claude -p, a Codex started inside Claude or the reverse); only the owner's own proven process can end it. An owner no hook identified never ends from a hook and is not probed, so those panes behave as before. * test(agent-status): read the optional process id in the relay presence test * fix(agent-status): other agents' SessionEnd hooks settle their status again Only an admitted exit (Claude's process-ending SessionEnd, or a host-proved exit) is marked ended on the event, and ownership keys on that marker, not the hook name. Devin, Qoder, CodeBuddy and Copilot SessionEnd hooks are ordinary status updates again, locally and through the relay. * test(agent-status): cover the owner's own SessionEnd through the relay * fix(agent-status): rows without a process identity keep today's command-finished cleanup The renderer's command-finished cleanup kept every row when its shell check could not answer, which left Codex, hookless-agent and old-relay rows over SSH showing done after a real exit. It now asks the host whether the pane's agent process can be checked: only a pane with an identified, running owner keeps its row on an unanswered check; every other pane drops it exactly as before. The drop stays armed while the host answers, so a new command still cancels it, and a missing or failing answer (web client, older host) keeps today's behaviour. * fix(agent-status): panes without an identified owner keep today's exit confirmation The title-driven exit confirmation applied 'silence is never an exit' to every pane. It now applies only when the pane has an identified owner whose process cannot be checked right now; a pane with no process identity (Codex, hookless agents, Windows, old relays, sessions started before the update, or an owner that already ended) confirms exits exactly as before. |
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3ab3c9239f |
fix(native-chat): the working line shows only what the agent is doing now (#24218)
* fix(native-chat): the working line shows only what the agent is doing now A chat's live "Working…" line could show an old notice, such as "Claude hit a temporary problem and is retrying.", long after the agent had moved on and was running new commands. When the host had no live activity for the turn, the line fell back to the newest status row in the turn, and any status row qualified: retry warnings, "Context compacted", "Cancellation requested.", and notification summaries. Those rows record the past and already appear in the transcript. The line now reads only the host's live, per-turn activity, which is never saved and is cleared at turn boundaries. Without it, the line says Thinking or Working…. Desktop and mobile share the selector, so both change. * test(codex): guard that a subagent's compaction never becomes the parent's live activity |
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6f2a7d05c9 |
fix(worktrees): let git delete removed checkouts so chat sends never wait behind them (#23837)
* fix(worktrees): delete removed checkouts in git, not in Orca's file pool Local worktree removal renamed the checkout into a sibling trash root and deleted it in the background with a recursive fs.rm in the main process. That queued one request per entry on libuv's shared 4-thread file pool, so for minutes every other async fs call in the main process (the agent-session store behind chat sends, file explorer reads) waited behind the delete. `git worktree remove` now deletes the checkout inline in git's own process again, so the card stays in its Deleting state for the length of the delete while Orca's file pool stays free. No timeout applies to the call, so a large delete is never killed halfway. If git reports success but the path still exists (Git for Windows leaves junctions and their parent directories in place), the leftover is deleted with the existing removeHostTree; WSL checkouts stay with the distro. Nothing creates trash any more: the scheduling queue, rename/restore helpers and the trash_rename span are gone. The startup sweep stays to drain entries older releases left behind, and now removes each emptied trash root so the obligation ends. * fix(worktrees): let Git delete Windows checkouts with long paths enabled Removal now always runs Git's own recursive delete, and worktree creation checks out with core.longpaths on Windows, so a deep checkout Orca created could fail to delete with "Filename too long" (#6433). The Windows recovery then finishes the delete but keeps the branch. Pass the same command-scoped core.longpaths option to `git worktree remove` so Git can delete what it created. Also point the CI shard timing entry at the renamed real-git removal suite. * fix(worktrees): keep an inherited GIT_ASK_YESNO out of the worktree delete Git for Windows asks $GIT_ASK_YESNO whether to retry when a file stays locked during a recursive delete. Orca's git env inherits the user's environment, so an inherited value would run an arbitrary prompt program in the middle of a removal. Drop it for the removal call only. * perf(worktrees): run worktree deletes under their own limit, outside git admission `git worktree remove` now deletes the whole checkout in Git's own process, which takes 20-35 s on a large tree. It took a general git admission slot at status tier for that whole time, and that cap is as small as two slots on a machine with six or fewer cores, so two deletes blocked every status read. Deletes now skip general admission and queue under their own limit of two per host instead: two concurrent deletes already saturate one disk, and more only slow each other down. Leftover cleanup runs inside the same slot. * fix(worktrees): delete removed checkouts in the background and mark them removing Since the checkout is deleted by `git worktree remove` in Git's own process, a large delete takes 20-35 s. Answering the request only after that made web and mobile (30 s), paired desktop (60/180 s) and the CLI (60 s) report a failure for a delete that was still going, and mobile silently re-showed the row. The request now does everything that can refuse (lock, cleanliness, archive hook, watcher/terminal gate, terminal stop, shared-link unlink), records the removal in an in-memory table on the host and answers `removing: true`. The delete, branch cleanup and metadata purge run after it in the same order as before, and the watcher/terminal gate stays held until they finish. - Listings mark rows in the table `removing` for clients that advertise `worktree.background-removal.v1` (the desktop renderer, paired desktop and web), and leave them out for everyone else (older clients, mobile, the CLI), which already dropped the row when the request answered. - The outcome (removed, with any preserved branch, or the error) rides the existing worktrees-changed event as an optional field, sent after the row has left the table. - A repeat delete while Git runs joins it. A create at the same path or with the same branch is refused with "Cleanup is pending; try again shortly"; create's name search skips the path, so generated names move on. - Nothing is persisted: after a quit or crash Git still lists the checkout and it can be deleted again. WSL checkouts still delete inline. - `orca worktree rm` says the checkout is still being deleted. * fix(worktrees): keep the existing Deleting card until the host's Git finishes The host now answers a local worktree delete on acceptance and deletes in the background. The renderer keeps the existing delete state set until the host publishes how it ended: - The delete that asked waits for the outcome on the worktrees-changed event (local IPC or the paired runtime's client event), then runs the same teardown, preserved-branch toast and card error an inline delete did. If that event is lost to a dropped connection, a listing that shows the row gone after it was marked removing finishes the wait, and one that shows it back without the marker fails it. - Any other renderer (a reload, a paired desktop, web) sets the same delete state from the host's `removing` marker and clears it when the marker goes. A failure the host publishes lands on that card's existing error. - Web advertises `worktree.background-removal.v1` so the host sends it the marker; paired desktop does through the Electron capability list. No new component, style or state: the card reads the delete state it always did. A host that predates this answers when done without `removing`, and the renderer takes that as finished, as before. * test(worktrees): type the removal harness and projection for the node typecheck * fix(worktrees): don't fail a delete retry with an earlier attempt's buffered failure A background removal's outcome that reached this renderer with no waiter (another client's delete, a host-marked card, or one already settled from listings) was buffered for 60 s and consumed by the next delete of the same workspace, so retrying a failed delete failed at once with the old error while the host was deleting. Drop the buffered outcome before sending the request; only an outcome that arrives after it can belong to it. * fix(worktrees): let only a gap in host events settle a background delete from listings Git unlists the checkout before the host deletes the branch, cleans the push target and purges metadata, and the worktree-directory watcher refetches within 250 ms. The renderer read the missing row as a finished delete, so the waiter resolved without the preserved branch (no toast) and a failure in those last steps showed as success; the real outcome was then dropped. The listing fallback exists only for a lost outcome event, so it now applies only after this host's event stream had a gap: a new subscription or a replay after reconnect. * perf(worktrees): let a bulk delete start each same-repo checkout delete once the host accepts the last A bulk delete ran one worktree at a time per repo (#2259, for packed-refs and ref-lock races in branch cleanup). With Git now deleting each checkout for 20-35 s before the request settles, N worktrees in one repo took N times that. The renderer now queues same-repo deletes only until the host accepts each one; a parent still waits for its nested children to finish. The host serializes the branch cleanup step per repo itself, which also covers removals started by different clients. * test(worktrees): pin the host platform in the mocked removal suites so they pass on Windows Removal now passes -c core.longpaths=true on Windows, so the exact-argv assertions and command-keyed mocks never matched there (17 failures on a Windows host). Pin darwin as the add-worktree suites already do, and drive the one Windows-specific case through the same spy. * test(worktrees): type the blocked git remove result instead of a broad object The anti-slop static-analysis gate rejects `object` parameters. * test(worktrees): clear the changed-code quality gate in the removal suites Merge the duplicate node:fs import, build the mock child without a cast, read worktrees:list rows through one typed helper, and give the remaining casts a SAFETY line. * fix(worktrees): record each background delete durably and finish it after a quit or crash A quit mid-delete left git to finish the checkout on its own while the branch delete and metadata purge never ran; a crash left a normal-looking row. Each accepted local removal now writes a record beside the profile state before git starts, clears it on success or failure, and the host runs the same delete again for any record left at startup, re-deriving what remains from git and disk. An orderly quit stops the checkout delete without waiting for it. * test(worktrees): type the interrupted-removal assertions for the node typecheck * fix(worktrees): finish an interrupted delete that already removed the checkout's .git file Quit stops git worktree remove mid-delete, and Git deletes the checkout's .git file wherever it falls in directory order. Git then refuses the checkout ("validation failed ... .git does not exist") on every retry, so the startup finish failed and the row could never be deleted from Orca. A registered checkout this record owns that has lost its .git file now finishes like an unregistered one: leftover files, prune, then the branch. * fix(worktrees): let Git finish an interrupted delete, and never take a different checkout A quit or crash that stops `git worktree remove` after it deleted the checkout's .git file left a registered checkout Git refuses to remove. The previous fix deleted that leftover inside Orca's process, which is the bulk delete this change exists to avoid (and on Windows the leftover can be most of the checkout). The startup finish now rewrites the missing .git file from Git's own admin entry for that path and lets `git worktree remove --force` delete it. `git worktree repair` is not used: it also re-points every other registered path, including a checkout another repository now owns there. Orca deletes the leftover itself only when no admin entry claims the path. The startup finish forces, so it now leaves the path alone when the checkout there is not the one recorded: a registered worktree on a different branch or head, or a `.git` at a path Git already unregistered. The record is dropped and the card shows why. The record write before Git starts is now bounded (2 s, logged when exceeded) so a stalled disk cannot hold the delete, and the outcome is published before the record's clear reaches disk. * test(worktrees): compare worktree paths by value and tear down with Windows lock retries Git prints forward slashes in `git worktree list` on Windows, so the real-Git removal suites never found a joined path there: positive checks failed and negative ones passed without proving anything. They now compare Git's parsed rows by value. Teardown uses the shared retrying removeTree, since Windows can hold the deleted checkout busy for a moment after Git exits. Adds a relative-path worktree case for the .git restore (skipped before Git 2.48). * fix(worktrees): reply to a worktree delete when it has finished, not on a broadcast event A current client's delete request now waits for the host's background delete and gets its real result (removed, a preserved branch, or the error) as the reply, the way it did before the delete moved off the request. A request that arrives while the delete runs joins it and gets the same result. Every other view keeps reading the host's `removing` marker: the row leaving means the delete finished, and the row listed again without the marker shows "The delete did not finish. Try again." on a card that view had marked Deleting. A request whose reply is lost (a timeout or a dropped connection) settles the same way from a fresh listing instead of reporting a failure. Clients without the background-removal capability (mobile, the CLI, older desktops) are still answered on acceptance and have rows under removal left out of their listings. This removes the outcome on worktreesChanged and everything it needed: the renderer's outcome waiters, early-outcome buffer and TTL, per-host event-gap generations, the request pre-registration, and the accept callback bulk delete used. Bulk delete runs same-repo deletes in parallel only on this machine, whose host serializes branch cleanup per repo; SSH and paired hosts stay serialized. * test(worktrees): type the pending-removal host id in the background-removal suite * fix(worktrees): answer a delete request even when a concurrent removal of the same worktree replaced its record The desktop app's removal and the runtime removal (CLI, paired clients) coalesce separately, so both can be accepted for one worktree. The second replaced the first's record, and the first delete then finished without resolving the request waiting on it, leaving the desktop card on Deleting indefinitely. Each delete now settles the request it was started for. * fix(worktrees): run same-repo removal archive hooks and teardown one at a time on the host Local bulk delete now sends same-repo removals in parallel, so their archive hooks, terminal teardown and preflight ran at once; a hook that writes refs can race the repo's ref locks (#2259). The host now serializes each local removal up to acceptance per repo, for every client; Git's checkout delete still runs in parallel under the delete limit. * fix(runtime): keep waiting worktree deletes out of a host's foreground call slots worktree.rm now replies only after Git deletes the checkout (up to minutes), so on paired desktop and web each waiting delete held one of the host's 8 foreground call slots, and a bulk delete queued listing refreshes and every other foreground call behind it. Deletes now run in their own lane with the same bound; the 2-slot background lane stays for status polls. * fix(worktrees): join a same-worktree delete accepted while a removal waited its repo turn The desktop app and the runtime (CLI, paired clients, web) check for a running delete before they queue for the repo's acceptance turn. A delete of the same worktree from the other path, accepted while this one queued, was missed: this request re-ran the archive hook, stopped the terminals again and started a second `git worktree remove` on the directory Git was deleting. The queued acceptance now re-checks and joins the running delete. * fix(worktrees): fence a resumed delete's checkout from startup, and drop rows a listing read before the delete finished A delete a quit or crash interrupted took its terminal and file-watcher gate only when the resume job ran, after the first window was shown; session restore could open a shell or watcher inside the half-deleted checkout first, and on Windows that handle can fail the resumed git delete. Loading the records now fences each recorded path, and the resumed job takes the fence over in the same tick it takes its own gate. A listing that read git's registration before a delete finished, and replied after the removal record cleared, returned the row unmarked, so other views briefly showed "The delete did not finish". Listings now capture the pending removals before reading git and leave out a row whose delete finished successfully since; a row whose delete failed stays listed as before. * test(worktrees): keep git's auto-maintenance out of the real-git removal suite CI's Git 2.55 failed the file-pool test in teardown with ENOTEMPTY on the scratch repo's objects/pack after the test body passed: the 3,000-file commit's detached auto-maintenance was still writing a pack. The scratch repo now disables auto-maintenance and auto-gc. * fix(worktrees): one archive-hook approval covers a same-repo bulk delete again Local same-repo deletes now start together, so each queued its trust prompt with a state snapshot taken before the first prompt was answered; approving the first still showed the same prompt once per remaining worktree. The queued check now reads the store when its turn comes. |
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3727100cc9 |
fix(opencode): report OpenCode 2 status from each pane's own TUI (#23722)
* fix(opencode): report OpenCode 2 status from each pane's TUI OpenCode 2 serves every pane from one shared server whose env names only the pane that started it, so every same-folder pane's work showed on that pane, and the plugin's single aggregate swallowed the Idle of a pane whose turn ended while another pane was busy. Install the status plugin a second time as an OpenCode 2 TUI plugin (plugins/<name>-tui/tui.js, written only when its bytes differ, locally, in overlays and in the SSH/WSL relay installs). In a TUI process setup() runs the same engine, fed through the same event translation as the server, but only for root sessions this pane owns: the route's session from when it starts (or when the route reaches it while running, hydrated from the TUI's session status) until it settles, is deleted, or the TUI exits. The server plugin stands down in any serve process when the TUI copy is installed beside it; a relay that predates the TUI copy keeps the old behavior. OpenCode 1 loads no plugin directories and is unchanged. Delete the session-to-pane binder, registry, client sweep and ingest reattribution: with every post stamped by its own pane nothing is left for them to correct. Known gap: OpenCode 2 `opencode run` in a pane has no TUI, so it reports no pane status. * fix(opencode): settle missed OpenCode 2 turn ends and order TUI installs - The TUI copy now settles an owned root whose run the TUI's session data reports ended, with no pending permission or form, when the engine still holds it busy. An execution end missed across a service restart or reconnect no longer leaves the pane Working until the TUI exits. - The TUI copy stays idle without ORCA_PANE_KEY. post() cannot report without it, so OpenCode 2 TUIs outside Orca no longer run the route poll and engine. - Installers write the TUI copy before the server plugin file. The server decides at load whether to stand down, so a reload between the two writes now finds the TUI copy. * fix(opencode): reconcile OpenCode 2 TUI status only once queued events drain The TUI's session data applies each event before this plugin's queued handling reaches it, so settling against it mid-backlog published a false Done before a fast turn's later steps (Working, Done, Working, Done). Reconcile only when no event is queued; a mismatch then is a start or end missed across a reconnect, and both directions are now re-derived (a missed start left the pane on Done). Also install the TUI copy beside the server plugin in the retired shared hooks dir, so a TUI or service still loading that dir reports per pane instead of leaving the service reporting under its starter pane. * fix(opencode): keep OpenCode 2 TUI panes silent on plugin dispose A TUI plugin hot reload disposes the plugin while the pane's turn keeps running. The server path already passes sessionsOutliveDispose so dispose publishes nothing; the TUI adapter now does the same, or every TUI reload would still show a false Done. Also refreshes the generated-bytes digest after rebasing onto the write-if-changed installers. * fix(opencode): refresh installed OpenCode status plugins at app start After an Orca upgrade, an OpenCode 2 service that was already running kept the previous plugin, and with it the old wrong-pane status, until any new terminal pane rewrote the file. OpenCode 2 reloads a plugin whose file changes, so Orca now refreshes its existing installs once after the first window shows: the global config dir, source overlays and the retired shared dir, TUI copy first. It reuses the per-pane writers, which skip unchanged files, never creates an install the user did not have, and honours the status-hook and per-agent switches. An SSH relay does the same for its canonical install when Orca connects and ships the plugin sources. The plugin source assembly moves to its own module (re-exported unchanged) to keep hook-service.ts under the line limit. * fix(opencode): derive each OpenCode 2 pane's status from its TUI session data The TUI copy of the status plugin translated OpenCode events into the server-side engine and then patched the engine's latches back toward the TUI's own session data: a settle on every tick, a queued-event counter, a re-assert, synthetic Busy and Idle. Each review found another place where the two copies disagreed: a missed end left the pane Working, a backlog of slow posts flickered Done, a missed start showed Done mid-turn, a turn held only by a subagent never settled, and a request answered while disconnected pinned Needs input. The TUI reporter now reads the pane's level straight from the session data OpenCode keeps current (and re-hydrates on reconnect) on every event and on a 100 ms tick: for each root session this pane owns, Needs input (an open permission, else form, anywhere in its family while it runs) outranks Working (any family member running) outranks Done. It posts one status per level change through the plugin's existing delivery functions (retry, dedupe, message-part throttle, ordering), so the wire and Orca's ingest are unchanged. Ownership is kept in OpenCode's storage.memory, which survives a plugin hot reload, so a turn that ends during a reload still shows Done; dispose publishes nothing, and a level the old generation could not deliver is re-posted by the next. On reconnect it re-syncs blockers for the owned sessions OpenCode would not re-sync itself, ignoring requests already answered. Events are handled synchronously, so a slow post can no longer hold up event processing. The server path, OpenCode 1 and mimo are unchanged. * fix(opencode): keep an OpenCode 2 pane on Needs input while its root streams text Orca treats every OpenCode MessagePart as Working. While a background subagent waits on a permission or form, the root session can keep streaming reply text, and the TUI reporter forwarded that text as a MessagePart. The pane then flipped from Needs input to Working, and nothing restored it until the level changed, so the user could miss the open request. Skip reply text while the pane's level is Needs input, as the reporter already does for queued prompts. * fix(opencode): leave OpenCode 2 step events to the server path's own change The shared-server translation re-derived Working from session.step.started. The pane reporter no longer uses it, so it only changed the server path and duplicated a separate open change. Drop it; server behaviour matches main. * fix(opencode): reset an OpenCode 2 pane to idle when its TUI starts Before this change, a pane could keep a status an earlier process left on it. The case that matters is an upgrade mid-turn: the old shared-service plugin posted pane B's turn under pane A's key, then stood down, and pane A's TUI loaded the new reporter owning nothing, so it never posted and A showed a wrong Working until its own next turn. A freshly started reporter that owns no running turn now posts the host's existing session-start boundary once, which the host shows as connected idle: no completion, no notification, and an unseen Done it lands on stays unread. A plugin hot reload keeps its memory and skips it, and where OpenCode keeps no plugin memory it is never sent. * fix(opencode): keep OpenCode 1 serve + attach sessions on the attaching pane OpenCode 1 `opencode serve` in one pane plus `opencode attach` in others reports every session from the serve process, whose environment names only the serve pane. Before this branch the session-to-pane binder moved those posts to the attaching pane; deleting it for OpenCode 2 put them back on the serve pane. Restore the binder, registry, correlation and client sweep for OpenCode 1 (and mimo-code, which it also served), gated so OpenCode 2 never uses it: - The status plugin now sends `opencodeMajor: 2` on every post from a process whose loader called setup(), which only OpenCode 2 does. The host skips the binder (no rewrite, no kicked round) for any post that carries it. OpenCode 1 and older plugins send nothing and keep the previous behaviour. - The binder reads only OpenCode 1's `session` table. OpenCode 2 writes `session_v2`, so its sessions never bind; on a database both versions wrote, OpenCode 1 sessions are no longer hidden behind the v2 table. OpenCode-1-only; it goes when OpenCode 1 support is removed. * fix(opencode): show OpenCode 2 `opencode run` as Working, then Done, on its own pane OpenCode 2's `opencode run` loads no plugin, and the shared service that runs its session cannot tell which pane it belongs to, so a pane running it showed nothing. The runtime now reports it from the pane's own process lifetime. On the pane's OSC 133 command start (main already parses 133 for every local PTY; the start callback was never wired), after the pane tracker's 350 ms settle it reads the foreground process name through the existing foreground reader, and only when that name is OpenCode, the foreground command line from one fresh shell-foreground process-table capture. An `opencode run` posts Working through the existing terminal-status path into the hook server's store; the pane's 133;D (or the daemon's background fact) posts Done, marked interrupted on Ctrl-C. No polling. Exclusive with plugin reporting: each write carries the command's start time, and the store drops it once a hook has written the pane since then, so an OpenCode 1 `run` (in-process plugin) or a server plugin without the TUI copy owns its command alone and there is never a second Done. Local macOS and Linux panes only; SSH, WSL and Windows panes stay silent because their foreground cannot be read on this host. * fixup! fix(opencode): show OpenCode 2 `opencode run` as Working, then Done, on its own pane Type the selected descendants as process-table rows; ReturnType of the generic collector widened them to bare identity rows. * fix(opencode): keep an `opencode run` pane's Done after the command exits The run's Done was published inside the chunk that carried its OSC 133;D, before the chunk's command-finished fact. The renderer drops an exited agent's row on command-finished when the row has not changed since that fact arrived, so it took the Done as the stale row and dropped it, in the renderer and in main. Publish the run's Done after the chunk's side-effect facts are emitted (and after the daemon's background fact). The renderer then sees command-finished while the row is still Working, and the Done that follows counts as a change, so it stays, the same way a hook Done that lands after exit already does. * fix(opencode): let an `opencode run` revive a pane Orca retired When an agent Orca launched exits, command completion retires the pane, and only a hook new-turn event revived it. A later `opencode run` in that pane posts no hook, so its process-lifetime Working was refused and the pane stayed silent. A process-lifetime Working is posted only after a fresh OSC 133;C and the pane's own foreground argv prove a new OpenCode run, which is at least as strong as a hook new turn. The store now revives the retired pane on it the same way: it clears the retirement, drops the launch-token fence, and rebinds the observation. OSC status and a lone process Done still cannot write a retired pane, and a closed tab stays closed. * fix(opencode): report `opencode run` on local Windows panes too The run producer skipped every Windows pane, although Orca already resolves a Windows pane's foreground agent from the native process table. On main an OpenCode 2 `run` showed there (on the service's pane); on this branch it was silent. The argv read now has a Windows branch: one fresh native table read (windows-process-table, no interpreter spawn), the same foreground identity the Windows resolver already computes, and the command line of the process that identity names. It runs only after the name read says OpenCode. Local Windows panes whose shell prints OSC 133 C/D (PowerShell with PSReadLine, Git Bash with Orca's wrapper) now go Working, then Done; cmd.exe prints no markers and stays silent. SSH and WSL panes stay silent. * fix(opencode): re-read an `opencode run` foreground on the pane tracker's ladder The producer read the pane's foreground once, 350 ms after the command started. A wrapper, a shim or `sleep 1; opencode run` execs OpenCode later, so those runs stayed silent. The renderer's pane tracker already re-reads a command's foreground at 350, then 1200, then 6000 ms for exactly this. Move those delays to one shared module and use it from both. The producer re-reads only while the foreground is a non-shell process that is not OpenCode, and at most on those three rungs; no new polling. * fix(opencode): end an armed `opencode run` when the next command starts A new OSC 133;C in a pane whose `opencode run` was still armed dropped the armed state without a Done, so a run whose 133;D never arrived left the pane on Working. A new command start proves the previous command ended, so it now posts that run's Done (not marked interrupted: no exit code is known) before the new command is inspected. * fix(opencode): skip the session-start row inside an OpenCode 1 `run` process OpenCode 1 `run` loads the status plugin in its own process, and the plugin posts SessionStart when the run's session is created. The host lands that as an idle session boundary, so a pane the run producer had already shown as Working blinked idle before the plugin's Busy. The plugin now skips SessionStart when its own process is a `run`, read from its argv the same way isOpenCodeRunCommand reads a pane's foreground (first positional after global options, past the compiled binary's entry path). A `run` session goes Busy at once, and its first prompt part still revives a retired pane and resets the turn caches. The TUI and `serve` still post it, and OpenCode 2's `run` loads no plugin. * chore(opencode): say where the plugin's opencodeMajor comes from The field is set when OpenCode's loader calls setup(), which only OpenCode 2 does; the plugin never reads OpenCode's version. Say so at the field. Comment only; the generated plugin is unchanged. * test(opencode): type the late-Done pane fixture without bare casts The new renderer test passed its fixtures with `as never`; use the checked fixture-tuple cast with a SAFETY note, like the sibling pty-connection tests. * fix(opencode): keep `opencode run` silent when OpenCode status is turned off The run producer ignored the status-hooks switch, so a user who turned status off globally or for OpenCode (#23667) still got a run's Working and Done. It now checks isAgentStatusHooksEnabledForAgent for the run's agent (opencode or opencode2), the same predicate the plugin install honours, before reading argv or posting anything. * test(opencode): read the late-Done row without an untyped property access The mock store types agentStatusByPaneKey values as unknown, so reading `.state` failed tc:web. Assert the row with toMatchObject instead. * perf(opencode): read a command's foreground only while it could become `opencode run` Two costs the run producer paid on every command in every local pane: - The retry ladder re-read the foreground (a process-table capture on the local provider) for any non-shell program still running, including other agents, editors and dev servers, up to three times. It now re-reads only while the foreground is still the shell (the command has not exec'd yet) or an unrecognised launcher that may still exec OpenCode (node, bun, bunx, npx, npm, pnpm, pnpx, yarn). Any other program is read once. - With OpenCode status turned off for both opencode and opencode2, it still set the timer and read the foreground only to discard the result. It now returns before any timer or read. The per-agent check after the name read stays for the case where only one of them is off. * fix(opencode): let a new hook turn end a pane's process-exit completion A confirmed agent process exit records a pane-wide completion identity that names only the agent. Hook Dones are matched against it by agent alone, and only a working title cleared it, so in a pane whose agent paints no working title (OpenCode) every later hook-reported Done was treated as already notified: no notification and no unread mark. An unreported exit (a status-off `opencode run`, or quitting an idle client) was enough to set it. A fresh hook Working now clears a process-exit identity, since a new turn cannot be a duplicate of an earlier exit. Hook identities stay, so same-turn and replay dedupe is unchanged. * refactor(opencode): share the foreground read schedule as one value The pane tracker's import of the two shared foreground-read delays took four lines where its old local constants took three, which put the file one line over max-lines once merged with main. Export the settle delay and retry ladder as one object so each consumer imports a single name. No behaviour change: same 350 ms settle and 1200/6000 ms retries. |
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b4b708c2c4 |
fix(native-chat): a Codex stream retry is one warning row that updates in place (#23684)
* fix(native-chat): a provider's own retry progress is quoted in its retry row A retry row whose fact carries a detail the provider wrote for a person now quotes it, the same way a rejected message or failed compaction does, so the row says how the retry is going. A log detail still stays out of the sentence. * fix(native-chat): a Codex stream retry is one warning row that updates in place An error Codex says it will retry used to fall through to the generic frame row: red, and a new row for every attempt. It now writes one providerRetrying row per retry run, warning-toned, revised by each attempt with Codex's own progress sentence. A run is the retry frames of one turn with nothing else the thread journals between them; every attempt still publishes, so the idle sweep keeps seeing activity. Errors Codex will not retry are unchanged. * fix(native-chat): a Codex retry row says it is retrying and keeps the frame behind Details The quoted retry sentence leads with "is retrying", which holds for any provider's progress text. The Codex retry row also keeps the whole bounded frame behind the row's Details, as the generic row did, so Codex's additionalDetails stays available to diagnose a retry. * test(native-chat): a Codex retry re-handled after backpressure keeps its one row Pins the run being opened before the write: a first attempt whose publish is refused and is handed back must revise the row it already wrote, not open a second run. Also stops the fixture claiming Codex sends an idle thread status beside each retry, which the app server does not do. * perf(native-chat): a Codex frame with no retry run open is not classified Ending a retry run classified every non-retry frame, and classifying walks the whole payload: every streaming delta, and every large item/completed, paid a walk about as costly as parsing the frame. Only a thread with a run open needs the answer, so the classification now runs only there. * fix(native-chat): each Codex retry attempt is its own warning row, with what failed on its second line A stream error Codex says it will retry is written as its own warning row with a providerRetrying fact, under the same per-frame identity every Codex frame row gets. The host no longer tracks retry runs or rewrites one row in place, so there is no run state to open, end or clear, and no frame has to be classified to end a run. Every attempt publishes, which keeps renewing the idle clock while Codex retries. Codex's additionalDetails, which its own UI shows under the progress message, is kept on the fact as the retry's cause and printed on the row's second line. Errors Codex will not retry are unchanged. * fix(native-chat): a transcript draws only the latest row of a provider retry run The shared structured message projection, which both the desktop and the mobile transcript read, collapses a run of retry rows into its latest row. A run is retry rows from the same agent with no other drawn row between them; a row that draws nothing, or a queued send drawn after the conversation, does not split it. The earlier attempts stay in the journal. * test(native-chat): the retry-run render test uses the message list's current props * fix(native-chat): a Codex frame row is named for its connection, so a later one never revises it Frame rows were named provider-frame:codex:<n> from a counter that starts over with every connection, so the first frame row after a reconnect in the same session revised an earlier connection's row in place, at its old spot. Each connection's frame rows now carry the acquisition generation, minted once before the translator is built: provider-frame:codex:<generation>:<n>. Rows already written keep their identities. * fix(native-chat): agents retrying at once each keep one row, read from the row's own agent * test(native-chat): a reconnect's Codex rows are named for the acquisition that received them * fix(native-chat): a retry run is one agent's, so another agent's row never splits it Each agent's rows are drawn apart: the session's own rows are the conversation, and a subagent's rows open in that subagent's section. Splitting a run on any other row in the flat list left two adjacent retry rows on screen whenever another agent wrote between two attempts: a subagent finishing a command while the session reconnected, or the session working while a subagent reconnected. A run is now per agent: an agent's retry rows with none of its own other rows between them, drawn as its latest. * test(native-chat): a subagent's retry run is checked in its own section, and the run rule's words say same agent * test(mobile): the retry-rows test typechecks, so the test ratchet keeps checking it |
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24edf0f64b |
fix(agent-status): a turn a crash cut off reads Interrupted, an unproven end Couldn't confirm (#23467)
* refactor(native-chat): remove the unused terminal handoff
No client ever called agentSession.requestHandoff or mounted the handoff
chrome. Delete the handoff coordinator, the terminal-owner runtime, the
proof write path and the unmounted UI. Keep agentSession.handoffStatus,
which released desktop clients read for worktree activation, and let
records an older build left mid handoff reconcile through the ordinary
restart and recovery paths.
* fix(native-chat): never let the pre-stop snapshot hold a chat's stop
Eviction now drains delivered events before quit's resume-offer snapshot. An
unbounded wait there sits ahead of the provider stop, so a sink whose journal
write stalls kept the child running until the step deadline aborted the
eviction. The offer is advisory: bound the drain and stop the child regardless.
Co-Authored-By: Claude <noreply@anthropic.com>
* refactor(native-chat): drop helpers only the terminal handoff called
`claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and
`queryWindowsProcessRowsFresh` lost their last caller with the handoff. The
fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`,
the teardown path that still depends on that contract.
Co-Authored-By: Claude <noreply@anthropic.com>
* docs(native-chat): stop citing the removed handoff in lifecycle comments
Six comments still named the handoff coordinator, a handoff suspend, or a
terminal-owned session as live participants in the flows they describe.
Co-Authored-By: Claude <noreply@anthropic.com>
* test(native-chat): type the stalled snapshot drain without a cast
Co-Authored-By: Claude <noreply@anthropic.com>
* test(native-chat): pin that a start dead before proving owes no settlement
The removed restart handoff test pinned this branch; nothing else did.
Co-Authored-By: Claude <noreply@anthropic.com>
* fix(native-chat): keep the owner-status read behind an in-flight attach
The handoff removal dropped the per-session queue from `handoffStatus`, so a
read landing mid-start reported the reservation (no owner) instead of the
settled chat owner, and shipped desktop clients blocked worktree activation on
it. The read is queued again, as it was before the removal.
Co-Authored-By: Claude <noreply@anthropic.com>
* refactor(terminal): remove the agent-session PTY write gate
The gate only refused a write when a PTY had been bound to a chat session, and the
only code that ever bound one was the terminal handoff this branch removes. With it
gone, every admit/readmit returned "admitted" unconditionally, so the checks on the
renderer write path, the runtime controller backstop, terminal.send, agent prompts,
preview input and orchestration pointers, the refusal fields on terminal.send and
worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane
orchestration routing could no longer run. Ordinary writes take the same path in
the same order as before.
Co-Authored-By: Claude <noreply@anthropic.com>
* refactor(native-chat): drop the transcript helpers only the handoff called
appendLegacyTranscriptMessages fed the terminal transcript catch-up and
proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost
their last caller with the handoff. Their tests now go through the live entry
points instead: the roster bounds through the legacy import, the pinned-read and
growth tests through the ancestry replay the history window uses, and the marker
rules through the string proof in their own file rather than the session-file
resolver's.
Co-Authored-By: Claude <noreply@anthropic.com>
* fix(native-chat): stop calling a starting chat "mid-handoff"
A send refused because the chat's owner is not settled showed "The session is
mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that
reach it are a chat that is still starting, or one whose previous agent process
has not yet been confirmed stopped. The message now says which of the two it is.
The refusal code is unchanged.
Co-Authored-By: Claude <noreply@anthropic.com>
* test(native-chat): type the stand-in roster decoder without a cast
Co-Authored-By: Claude <noreply@anthropic.com>
* refactor(codex): name the pinned rollout lookup for what it does
With the terminal handoff gone, the module named codex-tui-rollout-proof holds
only the pinned rollout lookup that structured Codex launches use to resume a
thread, so the name described code that no longer exists. Rename the module and
its options type. Also drop a mobile allowlist assertion that pinned the
removed agentSession.requestHandoff method, which no longer exists to allow.
* refactor(native-chat): type the owner-status reply as the host sends it
The handoffStatus reply type still listed the terminal handoff's fields and
states (terminal placement, host label, proof retry, queued and waiting phases,
the to-terminal direction). No host writes them any more and the only client
reader parses the reply as unknown, so they described nothing. The reply on the
wire is unchanged.
* refactor(native-chat): normalize terminal-handoff lease values once at decode
Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the
handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types
still admitted them, so readers across the host kept branches for values no
path produces and the compiler could not point at them.
The store now validates the on-disk shape, which still accepts those values so
an older record is not quarantined, and maps them once while parsing:
- `preparing` and `old-owner-stopped` become `recovering`
- a `tui` lease becomes `native`; when it records a process it also becomes
`conflicted`, the claim every build probes but never stops. A plain native
owner would be stopped by restart recovery, here and in older builds.
Revisions are taken over the normalized state on both sides of every compare,
and the mapped record reaches disk with the store's first transaction, the
same way the tab-id backfill does.
The in-memory types narrow to what this build writes, and the branches that
existed only for the removed values go. Structured-worker identity keeps its
verdict for a former terminal owner by refusing a conflicted claim rather
than a non-native kind.
* refactor(native-chat): stop threading the owner kind through a reservation
A reservation only ever names a native owner now, so the request no longer
carries a kind and the reserved lease records `native` directly. The attach
params keep `runtimeKind`: agentSession.ensure and create accept it, and the
operation fingerprint stored in the ledger covers it.
* test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else
Hiding a tab also committed the visibility index, so the no-op transaction
wrote the file even when its open-time revision was wrong. Committing the index
first leaves the pending rewrite as the only reason to write.
* fix(native-chat): name a chat write by its target, not the owner generation
A write carried the fence of the last frame the pane read, and the host refused it
unless that fence was still current. An idle release and the restart after it each
move the fence, and the release publishes nothing, so a send after a release was
refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a
cold start was refused as stale.
Every write already names what it acts on: a send its conversation, a cancel its
turn, a prompt answer its item revision, a rewind its epoch; an option is
last-writer-wins. So admission stops comparing the client's fence, and the rebase
that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it.
The writer-lease check stays, and so does the attach's compare-and-swap.
Frames now stamp the fence read when each frame is sent instead of a copy each
subscriber kept, which went stale on the same release.
* fix(native-chat): every journal append reaches the chats that are open
A journal write and its delivery to open readers were two calls, and some
writers made only the first. A failed start whose lease could not be handed
back, a provider revision with no frame behind it, and eviction's settlement
were all journaled without reaching an open chat.
A journal handle now reports every durable change, and the host's session map
binds that report to the session's readers when the handle is set. Writers no
longer publish what they append; the per-writer publish calls are deleted.
* test(native-chat): an epoch replacement reaches the open chat
* test(native-chat): each row reaches an open chat once, and a live handle enters only through the map
* test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite
The seeded record had no surface tab id, so the next open backfilled one and
that rewrite alone made the no-op transaction write. The test passed with the
legacy-lease rewrite signal removed.
* test(worktree-activation): restore the OMP surfaced-agent resume test
The handoff removal deleted it alongside the terminal-owner tests, but it
covers the surfaced-PTY block that still guards resume, including an agent
whose ownership is unknown.
* perf(native-chat): a publish behind a delivered commit reads nothing
Each commit now delivers itself, so the publish a provider frame still sends
afterwards found every reader caught up but still read rows and rebuilt the
timeline for each one. A caught-up reader now skips the read.
* test(native-chat): state why the teardown test's fake journal is safe to cast
* docs(native-chat): say mutation admission checks only the writer lease
* docs(native-chat): drop the send rebase from comments that still described it
* fix(native-chat): a message is accepted, then delivered
A send to a chat with no running agent restarted the agent inside the send
call, before the message was recorded, so the client waited for the whole
start and a failed restart refused the message. Claude held prompts sent
during startup, and those could settle as "unconfirmed".
A send is now accepted inside the session's serialized queue: one ledger row
and one submission row marked handoverRecorded, published, answered pending.
A per-session delivery loop exists while a message is queued. It starts the
agent through the same serialized attach a hold uses, waits outside the queue
for a Claude child to prove its start, and hands the oldest queued message
over as its own serialized step, writing dispatch{pending} before the adapter
call. A start it needed and did not get writes one error-tone row and rejects
every queued message with the same words; a start Stop cancelled writes none.
Settlement follows from the rows. A queued message is provably unwritten, so a
close, an eviction or an exit rejects it. A handed-over message stays in doubt.
A queued row at or below the sequence a handle found when it opened was left
by an earlier process and is rejected at open, with no latch. Stop withdraws
queued messages with no writer lease and no fence. An attach failure keeps the
conversation open, and the attach adopts its journal. Owed work counts the
loop and queued rows.
A compaction or rewind found prepared when a conversation opens was started
under a child this process no longer has, so the open settles it rather than
leaving it to refuse every send until a view attaches. The open cursor is
scoped to its epoch, because sequences restart when an epoch is replaced.
Deleted: restart-before-admission, recordFailedRestart, the fence rebase,
Claude's startup gate, the attach's forget on failure and its own crash
boundary. Clients without agent-session.accepted-send.v1 get their reply held
until the handover; the desktop and paired desktop lists advertise it.
* fix(native-chat): settle queued messages only for the child that ended
A child that proved its start and then exited before its message was handed
over left the message queued: the exit settlement returned early when nothing
else was in flight. Delivery then started another child for it, and a child
that died the same way started another, without end and without a row.
A retried settlement for an earlier generation, run by the attach that
delivery started, did the opposite: with that generation's turn unfinished it
rejected the message queued for the child being attached.
The settlement now takes the rejection for queued messages from its caller.
The unexpected exit and the eviction pass one, and it applies even with no
other work in flight; the retry for an earlier generation passes none.
* fix(native-chat): an adoption that fails to import keeps the conversation open
The attach now writes into the conversation's own open journal, but a failed
transcript import still closed it as if it were the attach's provisional one.
The conversation stayed indexed with a closed journal, so every later send
answered "could not be recorded" and every attach failed again until the app
restarted. The import now closes only a journal the attach opened for itself.
* perf(native-chat): the recovering open reads the journal once
Every conversation open now goes through the recovering open, including the
read restore of every chat at startup, which used to replay its journal once.
The recovering open replayed it twice: once to probe it and again inside the
open. The probe is now handed to the open as its load.
* fix(native-chat): an attach that fails after indexing its child leaves no child behind
A failed attach now keeps the conversation open, but a failure after
`onAttached` indexed the child (the rewind or compaction recovery, or the
attach's own success record) left that entry claiming a child the failure
path had already released. The next send found the phantom, skipped the start,
and wrote at a fence the journal had moved past, so the message stayed queued
for good. The entry now drops the released child and its event sink, and
follows the record's fence, as a failure before indexing already did.
* fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer
The error strip for a message the host accepted and then did not deliver matched the entry before
the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not
send your message" with nothing to retry. It now reads the reconciled entry.
A rejection the journal records before the send's own pending answer lands is final as well:
that answer no longer puts the entry back to dispatching with no Retry.
* fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down
The preamble waits for its submission to be delivered while the worker's agent starts. When that
wait ran out it threw operation_unknown, and the failed-start teardown then closed the session,
which rejected the very preamble the host was about to deliver. It now reports a turn start
nobody observed yet: the worker is start-unknown with its session kept, the host delivers the
preamble when the agent starts, and the worker's report settles the dispatch as for any
unobserved start. The receipt no longer suggests reading a screen a structured worker lacks.
* fix(native-chat): a message rejected while its chat was closed reads as not sent
A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it
meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked
every later message behind a Retry and no reason, and the delivery probe, seeing the journal
already answered, never ran. The reconcile now settles it as rejected like a dispatching one.
* test(orchestration): name why the readiness settlement fakes are cast
* fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent
* docs(native-chat): drop the fence from the admission the send effects run behind
* docs(native-chat): give the fence move on release the reason that still holds
* docs(native-chat): stop citing a write fence check in launch and mailbox comments
Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease.
* refactor(native-chat): the provider child is its own record
A conversation now outlives any number of provider children, so the child is one record on the
conversation's entry instead of five loose fields beside its journal. It is written in one place:
indexed only once an attach has fully succeeded, and ended through one function that an exit, a
failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence.
- A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence
patch after it are gone.
- Conversation writes read the record's fence, the way mutation admission already does; a child's
own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of
the conversation's fence, are gone.
- The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer
dropped when an attach replaced the whole entry.
- Stop on a child still proving its start stops only the child: its lease goes back and the chat
is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus
the conversation's close.
- The settlement retry uses the conversation's own journal, opened through the host's one open.
* fix(native-chat): the delivery loop alone settles a message its start or child failed
A queued message was settled by whichever path happened to end the child first: the loop, the
unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that
rejected every pending row. That gave two failure rows with different tones for one start, a loop
that could hand over to a different child than the one it waited on, and a Claude start that died
while starting reading unlike every other failed start.
- The loop remembers the child it waited on. At handover, if that child is gone or replaced, it
reads how it ended: a Stop continues; anything else writes one failure row and rejects every
queued message with the same words, then stops. A child still starting whose start the adapter
says did not land fails the same way. The exit, eviction and the settlement retry only settle
the handed-over and legacy rows of the child that ended.
- One failure row, always an error, keyed by the start. A start a view began that dies with
nothing queued writes the same row through the same builder, so a second report revises it.
- The open no longer rejects leftovers; the loop's first step does, and the open wakes it.
- `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the
failure before the exit is processed.
- Quit closes every conversation the way closing a chat does: what is still queued is rejected as
closed, with or without a child, and a start the loop already has in flight is waited for so the
child it produces is stopped rather than left behind.
* refactor(native-chat): a stopped child ends on the one reading of its stop
The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that
verdict to the child's ending, so the host never forms a second view of whether the root is gone.
Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition,
and a failed re-attach passes what its release saw. The end-of-child record can therefore also
carry a stop whose root was not seen to go, which nothing ends on yet.
* feat(native-chat): the host says it accepts a send before any agent has it
The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same
string capable clients already send. A client can then tell a host that answers a send at
acceptance, and admits a Stop with no writer before a turn starts, from an older one that still
restarts the agent inside the send. Additive: an older client ignores a capability it does not
know.
* refactor(native-chat): an attach never opens a journal of its own
The attach adopts the conversation's open journal, which outlives it, so it no longer opens one
for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag
that told the two cases apart is gone. Tests that attach without a host open the conversation the
way a host does.
* fix(native-chat): a moved fence resends nothing on a host that accepts first
The outbox treated any fence change as a new owner: it dropped the answer of a send in flight,
queued that send to go out again under the same id, and unblocked a refused head. On an older
host that is how a send the restart refused, unrecorded, gets another try. On a host that records
every send before it starts an agent, a fence moves because that start ran, so the same rule
resent into every failed start. With a fence stamped on every frame, that became a loop.
The outbox now reacts to a fence change only when the host has not advertised that it accepts a
send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed
start reaches the client as a rejected message it keeps with its Retry. Against an older host, or
before one has answered, the outbox behaves as it did. Desktop and paired web share this hook.
* refactor(native-chat): a child's end says whether the user or the host stopped it
The end-of-child record's cause now tells a user's Stop from the host stopping the child for a
cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a
user's Stop, as before, and fails the start it was waiting on after a host stop, with the one
error row and every queued message rejected, in the stop's reason when it gave one. The reason
stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet.
* fix(native-chat): a chat whose only work is a queued message is not offered for resume
A message accepted while the agent was starting counts as working in the chat, and quit rejects it
as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a
chat whose agent never had the message. The snapshot now reads only what was handed over.
* test(native-chat): type the queued-message fixtures in the resume-offer tests
* fix(native-chat): a start that dies while a message waits on it is that message's failed start
Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When
that start died, its exit wrote the start's error row and left the message queued, so the delivery
loop started a second agent into the same failure and wrote a second row. A child's end now records
where the conversation's journal stood, and the loop settles a message accepted before a failed
start ended with that start: one row, under its key, and no second start. A message sent after the
failure still gets a fresh start.
* fix(native-chat): a request that failed reads as failed
A structured chat whose only message the agent's start refused read as a
green finish, and a cancelled structured turn did too: the host published a
verdict only for turn records, and structured rows carried no `interrupted`.
The host projection now reads the session's latest request: its turn's
outcome, or `failure` for a send the agent or its start refused. A send
that was withdrawn, or left undelivered by a restart or a close, fails
nobody and makes nothing listable. The ingest publishes `interrupted` as the
hook lanes do, and every reader decodes the verdict through one accessor, so
a failure reads Failed on the dot, the rollups, history and `worktree ps`,
behaves like a cancellation in every clean-finish policy, and notifies as
"failed".
* docs(native-chat): say what an attach's open conversation and unconfirmed ids are now
* test(native-chat): a verdict change republishes the mobile status projection
* refactor(native-chat): the store's retention trigger keeps its flag compare
A verdict change always moves the completion clock the same check already
reads, so a second verdict compare there caught nothing new.
* test(native-chat): a user message the provider journaled keeps its session listed
* test(native-chat): pin what a failed start settles, and what a resume offer names
A view's child that dies while a sent message waits settles that message only when it died starting
and no child has taken its place: a proven child's crash, or a second start since, gets the message
delivered. The resume offer names the handed-over message, never a newer one still queued.
* test(native-chat): the failed-start pins fail on what the message became, not on a timeout
* fix(native-chat): a late provider-session update keeps a failed recovery record failed
A provider-session heartbeat that rewrites a completed recovery record kept
its interrupted flag but dropped the outcome it was copied with, so a live
failed checkpoint read as a clean finish until the next status write.
* test(orchestration): the preamble's host stub is typed, not cast
The preamble send now takes only what it reads of the host, the send, the settlement wait and the
record's fence, so its test builds that host with real types instead of `as never`.
* test(native-chat): the terminal-bell check asserts the renamed verdict field
The bell notification test still checked for agentInterrupted, which no
longer exists, so it could not catch a verdict leaking into a bell dispatch.
* fix(native-chat): a failed turn ranks like a completion for attention
Attention readers (completion time, Smart Sort, sticky retention, Cmd+J
Recent) now demote only a turn the user stopped. A failure is news the
user has not seen, so it keeps its completion time, ranks in the Done
class, stays retained after its pane goes away, and a retained failure
reads failed in the worktree rollup instead of done. Clean-finish
policy (hibernation, pane ownership, the value moment) still treats a
failure like a stop.
The retention trigger compares verdicts again: success -> failure no
longer moves the completion clock.
* fix(native-chat): a failed main agent reads failed while its subagents still work
The verdict is now read from the main agent's own state, not the folded
row: a main agent that is done and failed has a verdict even while its
subagents keep the row working. Without mainAgent (history, worktree ps,
older hosts) the old combined-done rule stands.
Display marks the verdict through agentVerdictDisplayMark: a failure
outranks every combined state on the agent's dot, label, tab badge,
dashboard and activity rows; a stop marks only a done row, so a
successful or stopped main agent with live subagents still reads
working. Subagent rows keep their own state. The worktree card, terminal
tab and Cmd+J rollups share one pane fold and rank a pending question,
then failed, then working, monitoring, interrupted and done.
worktree ps publishes the main agent's outcome on a working row, and the
mobile mirror reads it. The store's change check, the paired-client
mirror's equality and its epoch now see a verdict change on a working
row, which otherwise moves no state or clock and left the worktree card
reading working. Clean-finish policy is unchanged: a working row is never
hibernated and has no completion time.
* docs(native-chat): the worktree ps outcome comment no longer claims old hosts send it
The field is new: an old host sends no outcome at all, so a reader falls
back to interrupted. The removed clause said old hosts send it on done
rows, which never shipped.
* docs(native-chat): the status-store listing rule names provider-journaled user messages
* fix(native-chat): a refused send notifies failed through the completion feed
The host's completion feed followed only the newest turn, so a send the
agent or its start refused, which creates no turn, read Failed on its row
but sent no notification. The feed now follows the session's latest
request, read from the projection the status feed already makes for the
commit: a turn keeps its id, a refused send is named by its journal item
key. It announces only while the session is idle, as the row reports a
verdict, so queued sends refused one commit at a time notify once, and a
withdrawn send falls back to a request already announced.
* fix(native-chat): every copy of a row carries the main agent's own status
History entries, sleep records and `worktree ps` rows carried a flattened
top-level `outcome`, copied under different gates and without the main agent's
clock. They now carry `mainAgent` (state, outcome, stateStartedAt), the type
the live row already persists and sends, and every copy site takes it with
`interrupted` through one function, `agentVerdictFields`.
- The accessor reads `mainAgent` then the legacy flag; the mobile mirror
matches it line for line.
- Sleep records admit `mainAgent` with `normalizeMainAgentStatusField`, so a
malformed value drops the field, never the record.
- Mobile dates a main agent that failed under live subagents by its own clock,
as desktop does, and its row equality compares `mainAgent`.
- The activity feed reads a history entry's own `mainAgent` instead of
rebuilding one; the sync key and history equality compare it.
* test(native-chat): pin the worktree ps verdict across host and phone versions
Pairs the real v1.4.212 host and phone row reader with this build: an old phone
reads a new host's rows by `interrupted`, a new phone reads an old host's rows
(no `mainAgent`) the same way, and a new phone reads a failure under live
subagents as Failed, dated by `mainAgent.stateStartedAt`. The release checkout
now carries the phone's self-contained row reader, and the lane runs when the
`worktree ps` row producers change.
* test(mobile): name the parity table's row for its role
* fix(native-chat): a request that settles while the user is asked something notifies once
The completion edge waited for an idle session, and a pending prompt (including a
subagent's approval) is not idle. Structured chat has no other attention producer,
so a main turn that finished while a subagent waited on the user sent nothing
until the prompt was answered.
The edge now waits only on owed work (a running turn or an unanswered send), which
the projection reports even beneath a pending prompt. A request that settles with
a prompt pending announces once; the renderer words it "needs input" from the
host status mirror's `attention`, and answering the prompt keeps the same request
identity, so it does not announce again. The wire shape is unchanged.
* fix(native-chat): the completion says when the user is being asked
A request that settles while a prompt waits on the user was worded "needs input"
from the renderer's status-feed mirror. Remote clients receive the status and
completion streams over separate sockets, so they can arrive in either order and
the wording could be wrong both ways.
The host already knows at emit time, so the completion now carries an optional
`awaitingUser: true` in that case and omits it otherwise. The renderer words the
notification from that field alone and no longer reads the status mirror. Old
clients ignore the field and word by outcome; old hosts never send it.
* fix(worktree-status): a departed agent's failure yields to live work on the worktree card
A retained failed agent has no expiry, so ranking it with a live failure pinned the card to Failed over other panes' live work. It now ranks below working, monitoring and permission, and above every finished outcome.
* docs(agent-status): a departed agent's failure ranks below live work on the worktree card
* fix(native-chat): a view never restarts a chat whose last start failed
A Claude chat whose CLI exits during startup left one red row per start, and
every time a view bound to it (the chat opening right after its create died,
or the user switching back to it) the hold started the CLI again, so the same
launch-failure row repeated. Only a send retries a failed start now, the same
rule provider-exit recovery already applied; the rule lives in one predicate
the hold, exit recovery and the delivery loop share.
* test(native-chat): start the child the loop waits on with an attach, not a second view
A view no longer starts a child whose last start failed, so the R2 case that
waits on a child started since the failure now gets that child from a client
attach, the one non-send starter left.
* fix(native-chat): settle a gone generation's turn wherever a conversation opens
A send that opens a chat this process had not read yet (after a crash, from a
phone or the CLI) went through the delivery open, which never settled what the
dead generation left running; only the read restore and a successful acquire
did. When the send's start then failed, the turn stayed running for every
reader. The settlement now runs in the one journal open, at the crash boundary,
for every opener except an acquisition, which settles from the evidence it read
before its reserve; the read restore's separate step is gone.
* test(native-chat): prove the next child's start settles the turn an earlier child left
The R1 case lost its only settlement assertion when the latch it checked was
deleted. It now seeds the running turn the earlier child left and asserts it
ends at the exit's receipt, with the exit's row, before the message is handed
to the new child.
* test(native-chat): count a failed start's rows by row, not by text
Comparing the set of texts passed when two different rows carried the same
words, which is the duplicate the test exists to catch.
* test(cross-version): load the phone row readers without mobile's toolchain
Vite transforms a file against its nearest tsconfig, and mobile/tsconfig.json
extends expo/tsconfig.base.json, which the root-only cross-version lane never
installs. The worktree ps verdict suite imported the current phone row reader
from mobile/ directly, so CI failed with TSConfckParseError before any test ran.
The harness now imports a copy of the working-tree reader placed under the
checkout cache, where the root tsconfig applies, as it already does for the
release checkout's copy. Both readers are still the real files.
* test(cross-version): keep the checkout path-guard message and justify the copy import's cast
* test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget
* test(native-chat): pin the open's and the send's start and row counts, however the view binds
Opening a fresh chat whose starts fail makes one start and one row, with two
views bound before or after the create's child died; one send makes one more
of each.
* fix(agent-status): a turn a crash cut off reads Interrupted, an unproven end Couldn't confirm
When the provider gave no verdict, the structured status projection now derives
one from the newest turn's lifecycle: interrupted -> interruption, unverifiable ->
unconfirmed. Nothing new is journaled, the completion feed stays provider-only, and
the legacy interrupted flag stays a user stop only. Every verdict reader handles
both arms explicitly.
* fix(native-chat): settle a gone generation's turn at every open but an acquisition's
The journal open skipped the settlement whenever the lease read reserved or
live, to leave an acquisition's own open to the acquisition. But a lease a
crashed process left in recovery also reads live, until the next acquire
resolves it. A send that opened such a chat, from a phone or the CLI after a
crash on a host that could not prove the old owner gone, skipped the
settlement; when its start then failed, the dead turn stayed running for every
reader. The acquisition now says it is the opener, and every other open
settles, whatever the lease still claims.
* fix(native-chat): a folded turn a crash cut off reads Interrupted after N
The settled-turn timing now carries the turn's verdict, derived by the same
agentTurnVerdict the status row uses. A turn that ended interrupted with no
provider verdict heads its fold 'Interrupted after N'; a user's stop keeps
'Worked for N'.
* test(native-chat): hold the create's start open until the views bind
The "view binds while the create is still starting" case gave the create a
300 ms head start and asserted the views bound before it died. On a loaded
runner the holds took longer, the create's exit landed first, and the case
failed its own precondition. The create's initialize now waits on a gate the
test releases once the views are bound.
* fix(native-chat): the user's close of a chat records the turn it cuts short as their cancellation
The expected-close settle writes outcome cancellation when the user aimed the
stop at this chat: a Stop while the agent starts, the chat's tab closed (the
agentSession.close RPC, or session.tabs.close with a user reason), or /clear.
A quit, an idle eviction, a worktree teardown or an orchestration stop leaves the
turn with no verdict, so it still reads Interrupted.
* test(native-chat): a Claude turn a newer send superseded reads Interrupted
The supersede fires for any send Orca dispatched, the user's or another agent's,
and nothing at that site records the sender, so the turn keeps no verdict and
folds as Interrupted after N.
* fix(native-chat): the user's close records cancellation on the turn the provider settled on its way out
The Codex and Claude adapters settle their open turn as interrupted, with no
verdict, while the host stops them. The expected-close settle then found no
running turn, so a user's close of a mid-turn chat read Interrupted. The stop
now reads the running turns before it reaches the provider and records the
user's cancellation on each one it cut short, unless the provider gave a
verdict of its own. The close-verdict test's adapter now settles its turn on
close the way the real adapters do.
* test(native-chat): update the close and settled-turn expectations for the host-observed verdict
agentSession.close now passes the user's word to the host, and a settled
interrupted turn with no provider verdict carries `interruption`. Also merge a
duplicate import the code-quality gate rejects.
* refactor(native-chat): drop the composer's second error formatter
After the merge with main, every chat write in the composer path reports its
failure as a typed outcome worded by the refusal-notice table, so the send's
catch sees only a local throw. The {code, message} formatter this branch added
for it has no payload left to format, and its claim to be the one way a chat
words a failure is no longer true. The composer send is main's again.
* test(native-chat): pin the reason on a message rejected while its chat was closed
The reopen test checked only that the message reads as not sent; it now also
checks the Retry row carries the host's reason.
* fix(native-chat): the user's close cancels a turn whose start landed as the provider stopped
The close read which turns were running before the stop. A turn whose start was
still in flight (a send echo not yet journaled) was absent from that read, so the
provider's verdict-less settle on the way out left it Interrupted. The close now
reads which turns were already over instead, and records the user's cancellation
on every other turn the stop left running or interrupted with no verdict. A turn
cut off earlier, or finished during the stop, keeps its end.
* fix(native-chat): a send the provider never received after a restart has no verdict
Restart reconciliation rejects a crash-stranded send that is absent from a
trustworthy provider history with reason 'not_delivered'. Nobody failed that
send, but the verdict allowlist did not name it, so after a crash the chat
read Failed, was listed, and could notify "failed". Give the reason a shared
constant (persisted value unchanged), add it to the no-verdict set, and treat
it as an internal marker so the Retry row no longer shows the raw string.
* refactor(native-chat): the adapter settles the turn a stop cuts with the stop's typed cause
The host hands its stop's cause to the adapter's close. Each adapter settles its own
open turn on 'ended' through one mapping, turnVerdictForChildEnd, and the host's
dead-generation fallback uses the same mapping for any turn no adapter settled. A
user's close or stop of this chat is their cancellation; a quit, eviction, teardown
or an exit the adapter saw first is news.
Deletes the snapshot-and-diff reconstruction (endedTurnItemIds,
userStoppedTurnRevisions, settleUserStoppedTurns) and the requestedByUser flag.
host.close now takes a required cause.
* test(native-chat): a user's close drops the chat's status row like an eviction
* test(native-chat): expect the eviction cause on the host closes of idle release, worker stop and worker discard
The stop's typed cause now travels into host.close and the adapter's close, so these
three non-user closes assert the 'evict' they pass.
* refactor(native-chat): every stop names its cause, so none defaults to the user's cancellation
stopStructuredAgentSessionAgentUnderSerialize defaulted its ending to 'user-stop', which now
settles the cut turn as the user's cancellation. Every caller already passes a cause; the
parameter is now required, and a type-level test fails to compile if the default returns.
* test(native-chat): pin who a chat's session.tabs.close speaks for, older clients' reasonless close included
The mapping lived inline in a type-unchecked file, and only the explicit user reason had a test: an older client's reasonless close, or a lifecycle echo read as the user's, stayed green. It is now one exhaustive, type-checked function with a case per reason.
* style(mobile): draw the unconfirmed dot in the theme's status amber, not an inline hex
* docs(agent-status): the main agent's outcome also carries the host-observed end, interruption or unconfirmed
* fix(native-chat): a chat the user closed while its agent started is not a failed start
A still-starting child the user's close cut counted as a failed start, since only 'user-stop' was excluded: a start-failure row, and queued messages rejected as a provider failure. Whether an ending fails its start is now one exhaustive switch, shared by the failed-start read and the delivery loop's handover: a user's stop or close never does; an exit, a failed attach and the host's own stops still do.
* fix(native-chat): a chat the user closed closes its queued messages, and starts no agent for them
After
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5cda0f4508 |
refactor(native-chat): keep agent-session records in the chat journal database (#24006)
* fix(native-chat): report a failed startup chat reconcile instead of failing app startup At startup the chat host re-checks every saved chat's lease and writes the result to agent-sessions.json. If that write failed (the file lock gave up, the file could not be written, or the file was written by a newer Orca and is read-only here), reconcileRestartLeases rejected, the startup IPC call rejected, and the renderer fell into its degraded "Session restore failed. Changes won't be saved until restart" mode. The reconcile is bookkeeping: a lease left unreconciled grants no writer, and every attach, send and read of a chat reconciles its own lease again. So the startup reconcile now reports its failure through a new optional host dependency, onStartupReconcileFailure, and resolves. The runtime routes it to its onError sink under the scope structured-agent-session-startup-reconcile, or logs it when no sink is installed (the desktop installs none). * fix(native-chat): read restored chats without waiting on lease bookkeeping With native chat on and a chat tab open at quit, the renderer's startup also awaits the chat tab restore (session.tabs.listAll). That restore re-ran the lease reconcile before reading each chat and rethrew its store failure, then recorded each restored tab as visible through a store transaction that throws on a held lock or a read-only store. Either one failed the restore, so startup still fell into "Session restore failed". Reading a chat grants no writer, so the reconcile startup and the restore run is now a reader's: createReaderReconcile never throws, answers whether every lease is settled (recovery is resolved only then; the journal opens either way), and reports each distinct failure once until a reconcile settles. Attach and agent start keep the strict reconcile. The restore's tab republish logs a failed visibility write and still publishes the tab, since a client drops every unpublished chat tab; user-driven publishes still refuse. The host dependency is renamed onLeaseReconcileFailure (scope structured-agent-session-lease-reconcile), since it now also reports for reads. * fix(native-chat): keep every record-store write off the startup chat read path Round-2 review found two more writes on the startup chat restore that could still fail it and put the app into "Session restore failed": republishing a /clear replacement recorded its tab visibility strictly, and resolving a chat's recovery rethrew its store error. The restore also paid one lock wait per tab and per batch of chats while the lock stayed held. The restore now derives tabs from state it already holds: - publishStructuredAgentSessionTab splits into the strict write and projectStructuredAgentSessionTab, which only updates the runtime's snapshot. The restore and /clear replacements only project: a saved tab index already lists every restored chat, and a /clear moves the tab in the same write that commits it. visibilityWriteMayFail is gone. - Chats a legacy profile restores that the index does not list are recorded in one best-effort transaction (store.showSessionTabs), so a failure leaves the index absent to seed again rather than partial. - The read restore's recovery resolution is caught and reported through onLeaseReconcileFailure, deduplicated with the reconcile's reports. - Once lease bookkeeping fails in a restore pass, the rest of that pass skips it, so a held lock costs one wait for the startup reconcile and one for the restore, however many chats are open. User actions (create, reveal, attach, send, the /clear commit) keep their strict writes. * test: open, seed and read the agent-session record store through one harness Tests that open the durable agent-session record store, seed it, or read back what it persisted now go through agent-session-record-store-test-harness.ts instead of calling AgentSessionRecordStore.open or touching agent-sessions.json themselves. A later change that moves the store into the chat database then changes the harness instead of every test. No production code changes. Tests whose subject is the JSON file itself (its .bak recovery, salvage, schema versions, permissions, and what older builds read back) keep reading and writing the file directly; the storage move rewrites or deletes them. * fix(native-chat): start each restore pass from one lease check and stop its bookkeeping at the first failure The restore now runs one reader lease check for the pass and lets each chat re-check and resolve recovery only while the pass is still settled. The first refusal or failed write clears it for the rest of the pass, and every chat is still opened for reading. With another process holding the lock, startup waits on it once in prepare and once in the restore, however many chats are open; a legacy profile waits once more for its tab-index seed. * docs(native-chat): correct restore comments and a test name to match the final design * test: address the record-store harness by the host's state directory The harness took the store's own folder, so each caller picked one (join(root, 'store'), or 'agent-sessions' where a test read the store the runtime owns). A later change that moves the store into the state directory's journal database could not tell those apart, and would have had to edit every caller again. Every harness function now takes the state directory, the one the test's journal database and recovery capsule already live in, and keeps the store in the same subfolder the runtime uses. Callers pass that directory; store-only tests pass their temp directory unchanged. Format tests that share a directory with harness calls take the file path from testAgentSessionStoreFilePath. The folder name moves from a private constant in the runtime to AGENT_SESSION_STORE_DIR_NAME beside the store's file name, so the harness shares it without importing the runtime. Its value and every path built from it are unchanged. * refactor(native-chat): keep agent-session records in the chat journal database The record store's records, operation ledger, retired claim keys and chat tab index become tables in agent-session-journal.db (user_version 4). The version-4 migration copies agent-sessions.json in its own transaction and never writes, renames or deletes that file or its .bak. Each store write is one journal transaction over exactly the rows it changed, checked with the load rules; the file lock, the external-change refresh and its hash, the .bak rotation, salvage and the hot-path recovery fence are gone from the store. * wip: importer tests * test(native-chat): cover the records migration, the import, row writes and read-only records * docs(native-chat): retire comments that describe the records file as the live store * test(native-chat): drop the record-store harness's leftover file path and type the import fixture * test(native-chat): let the host harness cleanup wait out a recovery-offer read's lock * fix(native-chat): let Stop reach the agent when its ledger row cannot be written Stop's operation-ledger row now shares the database with the chat history, so damage, a full disk or a stranded transaction on that write refused the Stop before the interrupt. A cancel plan now takes its decision from the committed ledger in memory, runs without settling, and warns that the row was skipped. Other mutations answer proven damage with the typed "Unable to load this chat." refusal instead of the raw SQLite error. * fix(native-chat): answer whether a profile holds chats from the database's rows Every host install creates agent-session-journal.db, chats or not, and the version probe created it too, so its mere existence made every profile that ever installed the host wait on host install and reconcile at startup. The check now opens the database read-only and looks for a record or tab row, lets the records file answer while its import is still owed, and counts an unreadable database as present. The version probe no longer creates the file. * fix(native-chat): open a chat from history when its tab index cannot be written Over records a newer Orca wrote, every write is refused, so opening a closed chat from Agent Session History failed on the tab-visibility write and the chat read as unreachable. Like closing a tab, opening one now reports a failed restore-index write and still publishes the tab. * fix(native-chat): keep the records import owed when the backup read fails transiently A torn records file whose .bak could not be read (EACCES, EIO) was reported as unusable, so the migration completed with nothing copied and never retried. A non-ENOENT read failure of either copy now carries its cause, which the importer classifies as a read that can clear. * test(native-chat): pin that an unreadable records file never falls back to its backup * fix(native-chat): restore imported chats' tabs when the records file had no tab index A chat created while the import was owed recorded a tab index holding only itself. When the file it later imported had no index, that index still read as recorded, so the imported chats' tabs never came back. The import now clears the recorded marker in that case, and restore falls back to the profile's tabs. * refactor(native-chat): drop the unused in-transaction store write Nothing called it, and it bypassed the write queue and the read-only refusal. * docs(native-chat): say that an unusable records file is left untouched but never re-imported * refactor(native-chat): keep the provider handle chain check as main has it The chain-validation refactor has no measured need in this change. * docs(native-chat): retire lease-renewer comments that describe the records file as the live store * fix(native-chat): keep a throwing failure sink from failing the startup chat read The lease bookkeeping failure reporter called the host's failure sink directly, so a sink that threw turned a reported, recoverable store failure back into a rejected startup reconcile or read restore. The reporter now catches a sink throw and logs both the original failure and the sink error with console.warn. * test(native-chat): wait for a replaced host's restart-offer writes before cleanup A restart test replaces the host without tearing the old one down, so the old host's fire-and-forget restart-offer withdrawal could still hold the recovery capsule's lock directory when cleanup removed the test directory (ENOTEMPTY). The harness now hands hosts a capsule that tracks running operations and waits for them before removing the directory, replacing the rm retries. * docs(native-chat): retire the abandon helper's note that the store re-creates its directory * fix(native-chat): restore a chat opened while the import was owed beside the profile's chats When the imported records file had no tab index, restore fell back to the profile's saved tabs, which never list a Claude chat, and the seed then rewrote the tab table without the chat opened while the import was owed. The tab rows that chat left are now loaded as unrecorded, restore takes them together with the profile's chats, and the seed keeps their tab ids. * test(native-chat): pin that a create whose tab index write fails still opens the chat * docs(native-chat): say why restore puts chats opened while the import was owed first * test(native-chat): replace a ledger row rather than change it in place in the Send-now rerun test The record store freezes published rows in tests, so setting a row's outcome in place threw; the test now swaps in a changed copy, as its sibling cases do. |
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cfa43e7eab |
fix(codex): opening a terminal no longer strips Codex hooks from the real ~/.codex (#23552)
* fix(codex): a real-home restore leaves a file alone once someone else changed it Orca writes ~/.codex/hooks.json (and a trust rebase writes config.toml), then runs a Codex trust session for up to 10 s, then restores the original bytes if the session fails. The restore wrote unconditionally, so a save that landed during the session, from the user or another Orca, was silently reverted. Each restore now compares first: it writes the original back only while the file still holds the generation Orca's mutation left, and otherwise logs and leaves it alone. This covers the real-home install and opt-out sweep (restoreRealHomeHooksJson), the legacy sweep's hooks restore, and config.toml rollback (restoreCodexTrustConfig). For hooks.json the generation is the exact bytes Orca wrote. For a config.toml that a trust rebase changed it is the file as the rebase left it. When Codex itself wrote config.toml inside the session that just failed, Orca never knew those bytes, so that rollback compares against the file as the session settled. The next commit keeps other Orca instances out of that window; a user edit made during such a session can still be rolled back. * fix(codex): serialize real-home Codex writes across Orca instances Every Orca on one HOME (a dev and a packaged app, or an offline CLI) writes the same ~/.codex/hooks.json, config.toml and ~/.orca/agent-hooks/codex-hook.sh. The per-file lane that orders capture, mutate and restore was in-process only, so another instance could write inside this one's restore window, or undo it. The lane for the user's real config.toml now also holds the existing crash-safe managed-hook install lock (~/.orca/managed-hook-install.lock, the one relay installers take for the same home). It is taken only by the outermost acquire, because the lock file is not reentrant and grants and trust rebases nest inside an install. Managed-home installs, the real-home install and opt-out sweep, and the legacy sweep all enter through it. Compare-and-swap on restore stays as the backstop. A lock that cannot be taken within its 10 s wait fails that install, which is already best effort: launch prep logs it, and the real-home lane falls back to the managed lane until its retry. * fix(codex): opening a terminal no longer strips the shared Codex entry from ~/.codex Every Orca instance on one HOME writes the same status-hook entry into the user's ~/.codex/hooks.json, with its trust in config.toml. Launch prep runs on every pane spawn, and under a managed Codex account it ran the legacy system sweep. That sweep matched Orca entries by script file name, so it removed the current shared entry and the trust blocks the grant ledger recorded. On a live laptop hooks.json went 4139 -> 18 bytes about 150 ms before a new pane opened. With hooks off, the real-home lane's launch prep swept the same way. Now nothing automatic removes the current entry or its trust: - The legacy sweep removes only an enumerated list of retired command forms that no build writes any more (#1019's double-quoted form, #1536's exec-guarded form, and Windows' per-userData bare path), plus their trust. - ensureRealHomeCodexHookState with hooks off writes nothing; that covers launch prep, session resume and startup. - Only the user's explicit opt-out (codexHookService.remove()) strips the entry and its ledger-recorded trust from the real home. - The sweep-suppression gate existed only to stop the sweep from deleting the current entry, so it is deleted with its main-process wiring. Startup with hooks off already skipped the real-home install; with this change the first pane's launch prep with hooks off also leaves ~/.codex untouched. * fix(codex): a pane's prepare-codex only repairs a home its own HOME's app installed On macOS a pane starts through login(1), so it gets the user's real HOME even when its Orca app runs with another one. The pane's `codex()` preflight installed hooks in the CLI process with that real HOME: it rewrote ~/.orca/agent-hooks/codex-hook.sh, promoted trust into the real config.toml, and wrote the real HOME's script path into the app's managed home. The preflight now acts only when the managed home's hooks already run this process's own shared script, which proves the app that installed them shares its HOME. Otherwise it writes nothing; the app installed the home at spawn. Why not a no-op: the preflight was added (#14326) because trust can go stale between opening a pane and typing `codex`, for example in a pane that survives an app update, and Codex then stops in hook review. For a same-HOME pane it still repairs that. Why keep promotion: the install drops runtime trust the system config does not back, so skipping promotion would delete approvals the user gave inside Orca-launched Codex. * test(agent-hooks): await every installer in the refresher coverage test The test fired each managed installer without awaiting it and read ~/.orca/agent-hooks straight after. Codex's install now takes the cross-process real-home lock before it writes its script, so the script landed after the read. Await the installers, and stub Codex's trust sessions so the awaited install cannot start a real `codex app-server`. * fix(codex): retire the two real-home command forms the list missed The real-home lane wrote two Codex hook forms into ~/.codex that no build writes any more and that the enumerated retired list did not name: - POSIX, #9501 until #10885: the file-guarded form draining with a bare `cat`. - Windows, #9501 until #10221 took Windows off the real-home lane: the encoded PowerShell launcher for a non-cmd-safe script path. The file-name sweep removed both before; the enumerated sweep left them in place, trusted, still passing the script's exit status to Codex. Both now match as frozen literals. Also corrects the startup ordering comment: the real-home install runs first so its in-slot upgrade lands before the managed install's sweep retires the prior command; nothing re-arms a legacy sweep any more. * fix(codex): take the real-home lock only when a write is needed The previous commit made every entry to the real-home config lane take the cross-process lock. That lane runs on every pane spawn and every typed `codex` preflight, so the steady state paid an owner probe (a `ps` spawn on macOS) and could wait up to 10 s behind another instance's trust session, even though it wrote nothing. Each real-home writer now compares the desired state with the files on disk first, without the lock. Only when a write is needed does it take the lock, re-read and recheck, then write: - real-home install: the planned hooks.json, the shared script and the ledger-recorded grant are compared; the locked path re-plans from disk. - legacy sweep: locks only when a retired entry is present; the sweep re-reads. - approval promotion: locks only when there is something to promote; the promotions are recomputed under the lock. - the shared ~/.orca/agent-hooks script: locks only when its bytes differ. The explicit opt-out always takes the lock. The lock is reentrant through async context, since grants and rebases nest inside an install, so the config-lane option the previous commit added is removed. * fix(codex): a shared script without its exec bit is not the steady state The compare-first check matched the shared ~/.orca/agent-hooks script on bytes alone. writeManagedScript also restores 0755 on every call, and the POSIX hook guard skips a script that is not executable, so a script whose mode was lost (a dotfiles restore, a plain copy) now stayed that way: every Codex hook drained stdin and reported nothing until an app restart refreshed the script. The check now also requires the mode the writer sets, so that case takes the lock and the write path repairs it. * test(codex): the retired encoded launcher never matches today's shared one The shared encoded Windows launcher is still current for other agents, so the comment claiming today's launcher is never encoded was wrong. What keeps the retired matcher off it is the exact payload: since #14825 the shared launcher prefixes its payload and drops -ExecutionPolicy Bypass. Pin that with a case. * fix(codex): the pane step recognises its own script under a home path with an apostrophe The same-HOME check looked for the script path wrapped in bare single quotes, but both hook writers escape an apostrophe inside the quotes. A home such as C:\Users\O'Brien never matched, so the pane-step repair never ran there. * fix(codex): the trust-RPC escape hatch still keeps the real home off its lane The no-write check reported a recorded grant as current, so with ORCA_DISABLE_CODEX_TRUST_RPC set the real-home lane stayed in use. The grant itself refuses before reading its ledger; the check now does the same. * fix(codex): the shared script write no longer waits on the real-home lock The write is atomic and skips identical bytes; waiting behind another instance's trust session could only fail a pane's managed-home install. * fix(codex): an in-Orca approval survives a launch that cannot get the real-home lock The install drops runtime trust the system config does not back, so a promotion skipped for want of the lock lost the approval for good. It now writes unlocked, as it did before the lock existed. * refactor(codex): take the cross-process real-home lock back out The lock fixed no observed failure. The three that were observed each have their own fix in this series: the legacy sweep matches only frozen retired command forms, hooks-off launch prep writes nothing, and a pane's prepare-codex repairs only a home its own HOME's app installed. The lock instead brought its own defects: a steady-state spawn waiting behind another instance's trust session, a compare-first split to avoid that, a script write and an approval promotion that could fail for want of the lock. Removed, with their tests: the real-home write lock and its async-context reentrancy, the plan/compare split that kept it off steady-state spawns, the compare-first legacy sweep, the locked approval promotion and its unlocked fallback, the compare-first shared script write (writeManagedScript already skips identical bytes and restores the exec bit), and the CLI tsconfig entries the lock pulled in. Kept: the retired-forms matcher, the hooks-off no-op, removal only on an explicit opt-out, the pane own-script check, and the compare-and-swap rollbacks. Every instance now writes identical bytes idempotently. * fix(codex): an opt-out that cannot read hooks.json keeps Orca's trust and ledger The opt-out swept the real-home entry, then dropped Orca's ledger-proven trust whenever a ledger existed, even when the sweep could not read hooks.json. The entry could still be there, now untrusted, and the ledger that proves ownership was gone for the retry. Drop that trust only after a sweep that read the file. * refactor(agent-hooks): one predicate for whether an agent's status hooks are on "Global switch on and this agent not turned off" was spelled out separately in the startup controls, the settings reconcile, the retained-home reconcile, the WSL preflight RPC, the CLI preflight and the OpenCode plugin selection. They now share one function, in a module light enough for the CLI's per-launch Codex preflight to load. The PTY spawn env derives the Codex flag from the switch and opt-out list it already carries, the same way it does for OpenCode and Pi, instead of receiving a second copy. * fix(codex): launch and resume prep honour Codex's per-agent hook opt-out Turning Codex off in the per-agent hook settings removes Orca's Codex hook entry, but launch prep and session resume read only the global hooks switch, so the next Codex launch or resume wrote the entry straight back into the real ~/.codex or the account's home. Both now read the per-agent predicate, which the PTY spawn env and startup already honoured. * fix(codex): turning Codex off per agent clears the real ~/.codex entry While the real-home lane owns ~/.codex/hooks.json, the legacy system-home sweep stands down. That gate read only the global switch, so turning Codex off per agent ran remove() with the sweep still suppressed and left Orca's entry in the real ~/.codex. The gate now reads the per-agent predicate, the same as turning every hook off. * test(codex): cover the system ~/.codex sweep gate for Codex turned off The gate that lets the legacy system-home sweep run was an inline closure in startup, so reverting it to the global switch left CI green. It is now a pure function beside the gate it feeds, with a table test and a remove() test on a seeded ~/.codex: turning Codex off strips Orca's entry and keeps user hooks; with Codex on the entry stays. * fix(cli): keep the agent-status hooks predicate loadable by the packaged CLI The CLI's prepare-codex handler imported the predicate from src/main, but the Electron build rebuilds out/main from its declared entries only, so the packaged `orca agent hooks` commands could not load it (package jobs and the CLI bundle-parity test were red). The predicate reads only settings, so it now lives in src/shared, which the CLI compiles itself. * feat(codex): every Orca build writes one frozen Codex hook command The Codex hook command was built from this build's wrapper, so two builds on one HOME disagreed about the bytes of the shared ~/.codex entry and kept rewriting it, with a Codex trust session each time. The command is now fixed per form and carries its form number: - POSIX: one command with no path in it. It runs the shared script only in an Orca pane with hooks on (pane key and hook port set), drains stdin everywhere else, and always exits 0. A branch for a per-build script root is written now and stays dormant until Orca sets ORCA_AGENT_HOOK_ROOT, so that change will not move these bytes. - Windows: the bare forward-slash path to the shared .cmd, which runs under PowerShell 7 and 5.1, Codex's hook hosts. A profile path that is not one PowerShell token gets a plain PowerShell form with the same branches. The literals live in the form module, so a change to the shared hook constants cannot move them; goldens pin the bytes. Every form keeps `agent-hooks/codex-hook.*` in plain text, so older builds still recognize it. * fix(codex): one main-process owner adds the real-home entry; nothing restores files Each Orca writer of ~/.codex decided what Orca's entry must be from its own build and instance, then removed or reverted whatever differed: launch prep rewrote any Orca-shaped entry to this build's command and stripped Orca entries from events this build does not use, and a failed trust session restored hooks.json and config.toml from snapshots. With several instances and builds on one HOME, every disagreement became a deletion or a revert. The main process is now the one writer, and its writes are add-only: - A launch or resume adds Orca's frozen entry to an event that has none and leaves every Orca entry it finds, so a running older build is never fought. - App start also converts an older Orca form to the frozen command, once, in its own slot: one hooks.json write (one .bak) and one trust grant per home. - A newer form is never rewritten or appended beside, and Orca entries in events this build does not use are kept. - After a failed trust grant, only an entry this call wrote that is still untrusted is withdrawn, putting back the handler it replaced. Both files are re-read, so a concurrent edit, or the identical entry another Orca trusted meanwhile, survives. Deleted: the compare-and-swap hooks.json restore, the config.toml snapshot restore after a grant session and after a user-trust re-key, and the rollback module. A grant session writes trust only at Orca's own keys, and every caller settles those keys itself. A failed re-key of moved user hooks now keeps the write and reports it; Codex lists those hooks for review. * fix(codex): the pane CLI asks the app to prepare its Codex home `orca agent hooks prepare-codex` ran Codex's install inside the pane. That process can have the real HOME (login(1)) and runs outside the app's in-process queues, so it was a second writer of ~/.codex and ~/.orca beside the app. A check that the home ran "its own script" guarded it. The pane step now only asks the app, over the same kind of local RPC the WSL pane step already uses (agentHooks.prepareCodexForPane). The app checks that the pane's CODEX_HOME is one its own userData owns, reads its own hooks setting, and installs on its own queue. An app that is not running, or is too old to know the method, makes the step a no-op, as it is on WSL. The own-script check and the CLI's settings read are gone, and the preflight module leaves the CLI bundle. * fix(codex): delete the pane step on native hosts The previous commit had `orca agent hooks prepare-codex` ask the app to prepare the pane's Codex home. The case it existed for (#14326, a pane that survives an app update with stale hook trust) did not reproduce, and no other desktop agent host writes agent config from a terminal or launch wrapper. - Deleted: the agentHooks.prepareCodexForPane RPC method, its params and catalog entry, and prepareManagedCodexHomeBeforeShellLaunch with its module, tests and CLI build entry. - `agent hooks prepare-codex` is a no-op on native hosts. It stays for one release so shell wrappers from older builds, which still call it, exit 0. - WSL panes are unchanged: they still ask the app over agentHooks.prepareCodexForWslPane. The shell wrappers and ORCA_CODEX_LAUNCH_PREFLIGHT stay, because WSL panes use the same wrappers and variable (forwarded through WSLENV). A native pane still starts the CLI once per `codex` it runs; skipping that is a follow-up. * test(codex): a failed trust session keeps concurrent edits to both files QA case 9 at host level, on a real file system in a temp HOME: Codex's trust session fails after another writer saved hooks.json and config.toml. - Both saves survive, and no Orca entry is left that Codex would list for review: this call's entry is withdrawn. - A failed one-time conversion puts the older Orca entry back in its slot and keeps both saves. Both tests fail on the previous head, which restored config.toml from a snapshot and left the untrusted entries in hooks.json. Removing the withdrawal turns both red. * feat(codex): read whether an Orca entry's stored trust is still current A Codex release that changes how it hashes a hook leaves Orca's stored trust stale: the entry is present, but Codex lists it as modified. Checking only whether the entry is missing cannot see that. readOrcaEntryTrust sorts a present entry into four states: - trusted: the stored hash is the current one; - untrusted: there is no stored hash; - stale: the stored hash is not the current one; - disabled: the user turned the entry off. The caller can pass Codex's current hash, for example one a grant recorded. The failed-grant withdrawal now uses it, and also keeps an entry the user turned off. Nothing re-grants on 'stale' yet. * fix(codex): a slow Codex start retries on the next launch, never for minutes On a loaded Mac a cold `codex app-server` took over 10 s (QA case 4). The grant timed out, the entry was withdrawn, and a 5-minute cooldown in both the grant and the real-home install then refused every retry. - The native session deadline is 30 s, the same as WSL's. - A timeout starts no cooldown in the grant or in the real-home install. The next launch retries. Other failures keep their cooldown. - Launches that queue behind a slow session share one follow-up run, so a launch waits for at most two sessions, not one per earlier launch. Tests: a 15 s cold start still grants and keeps the entry; after a timeout, the next launch runs a session at once; four queued launches run two sessions. Each is red on the previous head, and each mechanism was removed in turn to confirm its test turns red. * fix(codex): Orca's automatic writes never move a user hook Codex keys a hook's trust by its position in hooks.json. App start's collapse of Orca duplicates removed every Orca entry and appended one at the end. That moved any user hook that followed a removed entry, so the write waited on a session to re-key the moved hook's trust. App start now: - converts the first Orca entry that sits in a plain slot to the frozen command, in place; - drops any other Orca entry only when that moves no user hook; - keeps a duplicate that a user hook follows, and trusts every frozen copy, so none is listed for review; - appends only when no frozen entry is left. Tests check user positions and user trust blocks byte-for-byte for each automatic write: add-missing (append), the one-time conversion (in place), a trailing duplicate, a duplicate before a user hook, and older duplicates normalized to one entry. The three collapse cases fail on the previous head. Removing the position check, or the in-place conversion, turns its tests red. Only the explicit opt-out still removes an entry that user hooks follow. * fix(codex): removing an Orca entry never waits on a Codex session Removing an Orca entry from ~/.codex/hooks.json moves every user hook behind it up a slot, and Codex keys trust by slot. The retired-form sweep, the opt-out and a failed-grant withdrawal all asked a `codex app-server` session to list the old trust before writing, and to re-key it afterwards. A timeout there threw before the write and latched a 5-minute cooldown, so a slow cold start blocked the retired-form sweep at boot (QA case 4). Each moved hook's [hooks.state] block now moves to its new key, body bytes unchanged, straight after the hooks.json write. Codex hashes a hook's content, not its position or its file path, so the moved block stays exactly as valid as it was: a trusted hook stays trusted, an untrusted one stays untrusted, and one the user turned off stays off. No removal waits on or depends on a session. A failed config.toml write keeps the hooks write and logs. Deleted: the inspect and repair sessions, their client, and their cooldown. The generation guards on the hooks.json writes stay, for other processes. Tests: the retired sweep removes the retired entry and carries the trust of the user hook behind it while every Codex session times out (red on the previous head); the opt-out carries an appended user hook's trust; the move carries trusted, disabled and untrusted states byte for byte. Removing the move turns all of them red. * fix(codex): a Codex launch never waits on Codex's approval of Orca's entry A launch on the real-home lane awaited Codex's trust grant for the entry it had just added. A cold `codex app-server` on a loaded Mac took over 10 s, so the launch could wait that long, and a failure then latched a 5-minute cooldown. - Codex's approval runs in the background, with a 30 s cold-start budget. - A launch uses the real home only when the ledger shows trust is already current. Otherwise it goes to the managed home at once, and the next launch picks up the finished grant. - A launch that arrives while a grant runs does no work and does not queue behind it. - A resume into the real home has no managed home to fall back to. It waits for the grant, but no longer than the 10 s a launch always could. - A background grant that times out starts no cooldown; the next launch retries. Any other failure backs off for 10 s instead of 5 minutes. Success is what the ledger remembers. - A failed grant still withdraws only what that install added and is still unapproved. The log now says how many entries it took back and when the next try comes. Managed-home grants keep their 10 s deadline and stay on launch prep, as before; they fall back to Orca-computed trust. Tests: - A 15 s start: the launch returns in under a second on the managed home, a second launch starts no session, the grant lands in the background, and the next launch uses the real home. - A timeout sets no cooldown, withdraws its adds and logs it. - Another failure retries after 10 s, not before. - A resume waits only as long as allowed. - Case 9 checks the log line and the retry. Making the launch await the grant, a 10 s budget, either timeout cooldown, and a 5-minute backoff were each tried, and each turns its test red. * fix(codex): move a hook's trust only when every stored key has the known shape Orca now edits Codex's trust store directly when a removal moves a user hook. Three safeguards keep that honest: - Fail safe. If any [hooks.state] key in config.toml does not have the shape `<path>:<event>:<group>:<handler>`, nothing moves and Codex asks the user to review. That shape was checked unchanged from Codex 0.141 to 0.158. - Targeted. The file is read immediately before the atomic rename, and only the moved keys' blocks change. Every other byte stays, and no snapshot is restored. - Verbatim. Each block's body moves as Codex wrote it, including fields Orca does not know. No hash is ever computed, and a hook with no block gets none. Tests: - An unknown key shape stops every move. - Everything except the moved block survives byte for byte, and the moved body keeps an unknown field. - In case 9, a hook the user approved during the failed session keeps its approval when the withdrawal moves it, beside the concurrent project edit. Removing the shape check, or writing a computed block instead of the stored body, turns these tests red. * refactor(codex): keep only the trust read the failed-grant withdrawal uses A capture across Codex 0.141, 0.150 and 0.158, switching in all six directions, showed Orca's entry keeps the same hash and stays trusted. A Codex upgrade does not make its trust stale, so nothing needs to re-grant on staleness. readOrcaEntryTrust keeps the four states the withdrawal needs, but loses the parameter that let a caller pass a different current hash, and the test for a Codex that hashes differently. * fix(codex): native panes no longer start the Orca CLI before each codex The pane step is a no-op on native hosts, but native panes still carried ORCA_CODEX_LAUNCH_PREFLIGHT, so every `codex` typed in a pane started the Orca CLI for nothing. Only a packaged Windows build's WSL pane now gets the variable; the app prepares every native Codex home itself. The resolver loses the dev-launcher path and its userDataPath option, which only native panes used. Tests: a native macOS, Linux and Windows pane gets no preflight, packaged or not, even with the bundled CLI present; a WSL pane still gets the verified absolute launcher. Letting native panes through again turns them red. * chore(cli): say when the native prepare-codex no-op can go Native pane wrappers from builds up to v1.4.216 still call it. It can be deleted once no supported build's wrapper does. * test(codex): check the WSL launcher path instead of asserting it * fix(codex): a launch no longer waits behind the background real-home approval The background grant ran its whole codex app-server session inside the shared ~/.codex/config.toml lane, and on a cold host its session was also the shared capability probe. A launch sent to the managed home then waited on both: the managed install and the project-trust write queue on that lane, and the managed install's own grant waited for the probe. On a cold app-server that was up to 30 s per launch. The lane was held across the session only to protect the retired capture-and-restore. Codex writes its own records, so the lane is now taken only around Orca's own pre-grant write. The background grant runs its session without publishing it as the shared probe, and the whole grant is bounded by its deadline, so a hang outside the session cannot leave the lane 'granting'. * fix(codex): a failed re-grant no longer strips Codex's own approval of Orca's entries Before each trust session, the grant deleted every Orca record whose hash matched the one Orca computes. That exists because a managed home's fallback writes Orca-computed trust under both Windows path-separator spellings, and Codex rewrites only its own spelling, so the other copy would linger. On failure the managed and WSL fallbacks write that trust back, and before this fold a snapshot restore covered it. The real ~/.codex has neither: Orca never writes computed trust there (the real-home lane does not run on Windows at all), so a matching record there is Codex's own approval. After a ledger miss (another Orca profile, a Codex update, a lost ledger) and a failed session, nothing put it back, and every Orca entry showed "Hooks need review". The clear now runs only for homes whose fallback writes that trust. * fix(codex): a real-home resume spawns only once Orca's entry is approved or withdrawn A resume that must run in ~/.codex waited at most 10 s for the background approval, then spawned anyway. On a cold app-server that left Codex beside an unapproved Orca entry, so the resumed pane showed hook review. The resume now waits for the grant to settle. Settled means Codex approved the entry, or the grant failed and withdrew its own unapproved write; the grant's deadline bounds the wait (30 s, the cold-start budget), and a failed approval never fails the resume. Why this over the alternatives: - Spawning at 10 s keeps the review prompt this fold exists to remove. - Withdrawing at 10 s from the resume races the still-running session: Codex can write the frozen entry's hash after the withdrawal, and for a converted entry that marks the older command Orca put back as modified. - A resume cannot use the managed home: the session lives in ~/.codex. So the only states that cannot race Codex are the grant's own settle. The cost is a longer worst case on a cold app-server (up to the 30 s deadline, plus any managed-home install that holds the config.toml lane); a warm approval takes seconds, and an approved entry costs no wait. * fix(codex): keep the 5-minute trust cooldown for launch-path grants The fold shortened the host's trust-grant cooldown from 5 minutes to 10 seconds for every grant. That was meant for the background ~/.codex approval, which blocks no launch. The managed-home and WSL grants run inline on the launch path, so with a hung app-server every launch more than 10 s after the last failure paid the full inline timeout again (10 s native, 30 s WSL). Cooldowns are now kept per lane: inline grants keep 5 minutes, the background grant retries after 10 s, and neither lane's failure cools the other down. A success, or a proven-missing surface, still clears both. The real-home install's own retries (an unreadable hooks.json, unknown keys) are back on the 5-minute interval they had before the fold. The cooldown moves to its own module so the grant stays within the file limit. * fix(codex): a failed grant withdraws the exact copy it wrote The withdrawal re-found "this call's" entry by command, taking the first frozen handler in the event. When app start converted a later slot while an earlier frozen copy sat in a matcher group (which conversion skips), a failed grant acted on that earlier copy: it put the older command into it, or skipped it, and left the converted, unapproved copy in place. Each write now records where its handler landed, after any duplicate drops, and the withdrawal acts only on that slot. A copy that has since moved is left alone; the next launch's grant retries it. * fix(codex): the failed-grant withdrawal checks hooks.json is unchanged before writing The install and the retired-form sweep both refuse to replace ~/.codex/hooks.json if it changed since they read it. The withdrawal did not: a save landing between its read and its atomic replace was lost. The window is small, since the withdrawal is synchronous, but it now carries the same guard. * refactor(codex): drop rationale left over from the snapshot restore; name the trust-move module for what it does Comments on the config.toml lanes still justified them by a grant's capture-and-restore window, which the fold deleted, and the trust-write deadline still counted a grant session holding the lane. They now give the reason that remains: Orca's own multi-step reads and writes, and managed-home installs that hold the lane across their inline grant. codex-user-hook-trust-rebase no longer rebases through Codex; it moves stored trust records, so it is now codex-user-hook-trust-moves. The grant test that pinned two sessions on one config.toml to run one at a time is removed: its reason was an interleaved capture and restore. Callers that write config.toml around a grant hold their own lane, which the nested installer test still covers. * build(cli): list the trust-grant cooldown module in the CLI program The CLI's agent-hooks handler loads the hook controls, which reach the Codex trust grant; the CLI project is composite, so every module in that graph must be listed. * docs(codex): say which Windows hosts each hook command form runs under Codex runs a hook under the turn's shell (PowerShell 7 or 5.1 in every captured session) and, with no single local turn shell, under %COMSPEC% /C. The bare forward-slash path ran under all three in the Windows host census. The PowerShell form used for a profile path with a space does not parse under cmd.exe; no form valid in all three hosts has been run for such a path, so the form stays and the gap is stated here and in the PR. * test(codex): type the withdrawal seam without an assertion * fix(codex): a real-home resume starts at once, trusting Orca's entries for that process A resume that must run in ~/.codex waited for Codex's background approval of Orca's newly written hook entry: up to 30-40 s on a cold app-server. That made the user's resume wait on bookkeeping, and the alternatives (start at 10 s with Codex's hook review showing, or withdraw the entry and race Codex's own write) were worse. Codex reads hook trust from its session-flag config layer as well as the user's config.toml, merged per key, and has since hook trust shipped. So the resume no longer waits. When Orca's own frozen entries in ~/.codex are untrusted (or hold a stale hash), the resume command carries `-c hooks.state={'<key>'={trusted_hash='<hash>'},...}` for exactly those entries: the key under both the logical and the real path of ~/.codex (Codex keys an explicit CODEX_HOME by its real path), and the hash of that entry's content, so it can trust nothing else at that slot. The user's hooks are never included, nothing is written, and the background approval still runs for later plain `codex` launches. An approved entry adds nothing; a Codex known to lack hook trust gets nothing. One inline table, because Codex splits a `-c` key on every `.` and the key holds `.codex/hooks.json`. TOML literal strings keep `"` out of Windows native-argument quoting. The flag goes before `resume <id>`, quoted for the pane's shell (portable Unix, PowerShell or cmd), in the launch command and in the setup-sequenced copy of it; a cmd line whose path cmd would expand, or a key with an apostrophe, is left unchanged. SSH and WSL resumes get no preparation, so no local path reaches them. * Revert "fix(codex): a real-home resume starts at once, trusting Orca's entries for that process" This reverts commit |
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fix(native-chat): chat failure messages appear in the app's language (#23674)
* fix(native-chat): a read whose history will not open is refused with its reason
History, subscribe, snapshot and options reads reach a chat through one accessor, whose open had no
catch: a journal that would not open reached every client as a runtime error carrying the storage's
own text (a path, "file is not a database"). The accessor, and the options read's own open, now throw
the classified journal refusal: journalCorrupt when SQLite reports damage, journalUnavailable
otherwise. The storage text goes to the log only.
The wire code stays runtime_error and the message becomes the bare code, as for every thrown
refusal; the reason rides in the error's data.
* refactor(native-chat): the idle sweep's stop of a hung start carries no hand-written reason
The sweep passed an English sentence as the stop's reason. It lived only in memory and nothing read
it: the delivery loop words the error row and the rejection from the hostStopped fact. Dropped, with
the display-name lookup that built it.
* fix(native-chat): a refusal the host throws is worded from its data, never its message
A thrown agent-session refusal reaches the client as runtime_error with the bare code as its message
and the typed refusal in error.data. Stop, answers, options and goals, a launch's held option pick,
the option picker's failure toast, and the Retry line of a chat that could not start now word it
from that refusal through the shared notice table. What each caller decides about the outcome is
unchanged: only the words move.
The Retry line of a failed start no longer prints the host's message or a thrown error's text; it
keeps the refusal as a fact and says the cause and step its reason names, or only that the chat
could not be started. The option toast keeps a local option surface's own sentence.
* fix(native-chat): an unreadable history is worded from its refusal, and damage stops the retry
The structured chat's read failure showed the host's text on the status line, and the pane always
said Orca keeps trying. The read transport now takes the refusal from the error's data (a stream
payload or a thrown RPC error), the reducer keeps it beside the failure text, and the pane and the
status line word it through the notice table, once: on the pane when the failure took it, else
beside the transcript that stays.
A damaged journal says "Unable to load this chat." and the read stops reconnecting for that run;
reopening the chat reads again. An open that can clear names its cause without "Try again", since
the pane retries on its own. A failure that names no reason keeps today's generic line. Finality
comes from the refusal's reason, never its message, which is the bare code for both.
* fix(native-chat): a rejected message is worded from its stored fact
A message the host recorded and then rejected keeps the host's typed fact beside its reason, but
the Retry words re-read the reason alone. Now the fact decides: a hand-over failure says Orca
couldn't reach the agent, a kind whose reason may be a legacy marker gets its fact's own sentence
(a full queue now says so instead of only "not sent"), and any other kind shows the sentence the
host wrote for it, which carries the agent's name and any words the provider wrote for a person. A
row with no fact reads as before.
* fix(native-chat): each message that did not go through says why on its own row
The structured chat showed one Retry strip under the transcript for whichever single entry it
picked, so a second failed message had no reason and no Retry of its own. The terminal-backed
chat's existing per-row delivery marker now carries a notice and an optional Retry, and the
structured pane derives one per message from the outbox on each render: every rejected message,
and the one the queue stopped on (read through the drain's own rule, so a Retry never names a
message waiting behind it). Each is worded from that message's stored failure. The single strip is
deleted. Nothing new is stored, and the shared message projection is untouched.
* fix(native-chat): say each chat failure's words where its own control already acts
Three wording rules for the desktop chat:
- A chat that could not start shows Retry beside its reason, so the reason stops at its cause
where the Retry is the step: a reason whose action is to retry, and a start failure's "send
your message again". Any other step stays (quit the terminal agent, start a new chat). The
start-failure sentences take a retryControl context for this; what the host writes is unchanged.
- A history that couldn't open right now still reconnects, so the pane keeps "Orca keeps trying
to load it" under its cause. Only a damaged history, which no retry reads past, drops it.
- A read failure that names no reason while the transcript is shown is only the pane
reconnecting: the status line says "Reconnecting to this chat…" in muted text, not an error.
New key components.native-chat.state.reconnecting, hand-translated for es/fr/ja/ko/zh.
* fix(native-chat): a rejected message offers Retry only once the queue is moving
Each rejected message's row offered its own Retry even while the queue was stopped on another
message. Any Retry clears the stopped queue, so pressing a rejected message's Retry also sent the
message the queue was holding, which the user had not retried; behind a message whose delivery is
unconfirmed, the retried one instead went back into the queue with no notice and waited there.
While the queue is stopped, only the message it stopped on offers Retry, as the single Retry strip
this replaced did. A rejected message keeps its words on its row and gets its Retry back once the
queue moves.
* fix(native-chat): a chat whose history will not open logs once, not on every reconnect
A reader reconnects every 750 ms while a journal open can clear, and each attempt logged the
failure with its full stack. The read door now logs a session's failure once until that session
opens, closes, or fails differently; every attempt is still refused with its reason.
* fix(native-chat): a message's own Retry is its resend step, so its notice stops at the cause
A rejected message offering Retry read "Claude stopped before it finished starting. Send your
message to try again." beside that button. Its row now takes the rule the launch strip already
follows: beside its own Retry the words leave out sending or trying again, worded from the stored
fact with the chat's agent name. The stored fact keeps less than the host wrote from (a refusal,
the provider's words), so a reason it cannot rebuild exactly is kept as written. A rejected
message without a Retry, while the queue is held, keeps the step. What the host writes and the
phone's notice are unchanged.
* fix(native-chat): a message's Retry sends only that message, never the one the queue is held on
Retry released the queue's refusal hold whichever message it was pressed on. While a queued message waited ahead of a held one, every rejected message offered Retry, and pressing it also sent the held message the person had not retried. Retrying an unconfirmed message ahead of a held one did the same. Retry now releases the hold only for its own message.
* fix(native-chat): a not-signed-in failure beside Retry still says to sign in first
Beside a Retry the notice dropped the whole next step, so a chat that could not start because the agent was not signed in read only the cause. Pressing Retry without signing in fails the same way again. The words now keep the sign-in step and leave out only the resend, which the Retry button is.
* test(native-chat): a rejected message's hidden Retry only avoids waiting unseen
* fix(native-chat): every Retry beside a notice leaves out the retry step the same way
A message the queue stopped on worded its refusal with no agent name and with its retry step, beside its own Retry, while a rejected message next to it named the agent and left the step to the button. The launch strip and the history pane each had their own copy of the same rule. One wording context now goes through the one notice table for every surface: a Retry beside the words, or a pane that reconnects on its own, is the step for a reason whose action is to retry, and every other step stays. What the phone and the host write is unchanged.
* test(native-chat): read the sent message id without a type assertion
* fix(native-chat): a rejected message is worded from the journal's own fact, never by comparing sentences
A message the host recorded and then rejected kept only the rejection's kind on the message, so its notice was reworded from that smaller copy only when it rebuilt the host's sentence word for word. A different agent name, an older host's wording, or anything the copy dropped (why a start failed, the provider's own words) left the host's sentence in place, beside a Retry that repeated its resend step. The notice now reads the journal's own rejection for that message, found by id, with the pane's agent name and Retry, and shows the provider's words only when they were written for a person. The message's smaller copy words it only when that journal row is not loaded. Nothing new is stored.
* fix(native-chat): a message rejected before a restart retries under a new id the first time
Whether a Retry needed a new message id was remembered in memory for one message, or read from the journal row when it was loaded. After a restart, or for an older message whose row was not loaded, the first Retry resent under the old id, the host answered with the same settled rejection, and nothing visibly happened. The message now says so itself: one the host recorded and rejected always retries under a new id, including after a restart. A refusal that already gave the message a fresh id, and a message whose delivery is unconfirmed or in flight, keep their id as before.
* fix(native-chat): a rejected message older than the loaded history keeps the provider's words
When the journal row that rejected a message is not loaded, the message's own copy of the
fact has no provider detail or start refusal. For the kinds worded from those, the row now
shows the sentence the host wrote for the person instead of a thinner rebuilt one.
* test(native-chat): the chat pane words a rejected message from its loaded journal row
Nothing covered the pane handing the journal's rows to the per-message notices, so a pane that stopped passing them would quietly fall back to the message's smaller copy of the rejection and show the host's sentence, resend step and all. The new case renders the pane with a rejected message whose journal row is loaded and checks that it reads that row's refusal in the chat's own agent name.
* fix(native-chat): a chat whose history won't load says why in one line
A read the host refused for a named reason put its sentence under the generic
"Could not load conversation" title, so a damaged history read as two lines
saying the same thing. The pane's own sentence now takes the title's place; a
history that can come back keeps its line saying Orca keeps trying. A failure
that names nothing keeps the generic title.
* fix(native-chat): a message a failed start rejected says only that it was not sent
When an agent stopped before it finished starting, the chat showed the start's
red row ("Claude stopped before it finished starting. Send your message to try
again.") and then repeated that cause under every message the start rejected.
Each of those messages now reads "Your message was not sent." beside its Retry.
The match is made on typed facts, not on the words: the host writes the start's
row and the rejection of its queued messages from the same failure fact, and the
row is keyed by the start. The pane finds the loaded start-failure rows by that
key and shortens a message's notice only when its loaded journal submission was
rejected with the same fact. Any other rejection, or one whose submission or row
is not loaded, keeps its full notice. The row key moves to a shared module so the
host that writes it and the pane that reads it use one definition.
* fix(native-chat): a chat whose history keeps failing to open retries less often
A read the host kept refusing (its history store could not be opened right now)
reopened every 750 ms for as long as the chat stayed open, about 40 opens every
30 seconds. Each reconnect now waits twice as long as the last, from 750 ms up
to 30 seconds, and never gives up; the first read that delivers anything starts
the wait over at 750 ms. A damaged history still stops reconnecting at once.
Reset happens on a delivered read, not on connect: a local subscribe resolves
before the host's open refuses, so resetting there would keep the 750 ms loop.
* test(native-chat): the pane harness types its journal rows without a cast
* test(native-chat): the admission test passes no start-failure rows to the notices
* test(native-chat): import the journal types once
* fix(native-chat): a remote chat reads again as soon as its host is back
The read retry doubles its wait up to 30 s during an outage, and nothing
reset it when the remote runtime reconnected, so the transcript could
lag the reconnect by up to 30 s. The read now watches the runtime
status store's contact-regained edges (hostContactEpoch for a
same-runtime return, connectionGeneration for a new runtime session)
and, when one lands, runs a waiting retry immediately with the wait
reset to its base.
* refactor(native-chat): build each failure sentence from whole pieces
Every sentence agentSessionFailureWords writes is now assembled from a
table of whole English pieces, so a reader can supply its own words for
each piece. The host still fills them in English, byte for byte as
before.
* fix(native-chat): translate the failure sentences desktop notices show
A refused start and a rejected message now carry their failure fact to
the notice instead of its English sentence, and desktop words that fact
through translate keys whose English defaults are the host's own
pieces. The host keeps writing English into rows and reasons, and a
host sentence with no fact beside it still shows as written.
* fix(native-chat): the history pane says only that Orca keeps trying
When the pane's title already says Orca couldn't open this chat's
history right now, the line under it no longer repeats that the
transcript could not be read; it says only that Orca keeps trying to
load it. The pane with no named reason keeps its two-part line.
* test(native-chat): type the failure pieces a refusal notice shares
* test(native-chat): the Chinese failure words use no Japanese-only characters
* fix(native-chat): every history pane that says it didn't load says only that Orca keeps trying
A pane whose title is a code's own words ("This chat's history couldn't
be loaded.") now gets the short retrying line too. Only the pane with no
named reason keeps the two-part line.
* test(native-chat): a provider's words with nesting and markup stay as written in a translated notice
* fix(native-chat): French and Spanish say a withdrawn message was withdrawn before the agent began working on it
* fix(native-chat): Japanese and Chinese notices run their sentences on without a space
A notice joined its sentences with a space in every language, so Japanese and
Chinese read "Claude 无法启动。 请重新发送消息。" with a stray gap after the full
stop. The failure-sentence builder now takes the joiner alongside its words, and
desktop joins in the UI language: no space in Japanese and Chinese (including a
plugin pack that declares either), one space elsewhere. The host and the phone
keep English, joined with a space as before.
* fix(native-chat): a failed /clear or /compact says why in the app's language
The line under the composer printed the host's English sentence although the
result carries the typed failure beside it. It now words that failure the way
the host does (the chat's agent and /clear for a failed /clear, nothing for
/compact), in the app's language; an older host that sends no failure keeps
its sentence.
* fix(native-chat): Spanish says a rate limit, and Korean says a withdrawn message was never processed
The Spanish retry notice said the agent hit a usage limit, a different thing
from the rate limit the English names. The Korean withdrawn-message notice
said the agent had not started, which reads as the agent not launching; it now
says the agent had not begun processing the message, as the other languages do.
* refactor(native-chat): one rule says which words already say the history didn't load
* fix(native-chat): an image size limit says its unit the way the reader's language does
* test(native-chat): the option picker's i18n stand-in knows the reader's locale, which a refusal notice now reads
* fix(native-chat): a sentence a language pack left in English keeps its space
Sentences were joined by the UI language: no space in Japanese and Chinese,
one elsewhere. A plugin pack for a Chinese or Japanese variant that predates
the failure words falls back to English for them, so a notice read
"您的訊息未傳送。Claude couldn't start.Send your message to try again."
Each gap now follows the sentence before it: none after a full-width 。!?,
one space after anything else. The built-in Japanese and Chinese catalogs end
every sentence in 。, so they read as before, and English is unchanged. Since
the rule no longer needs the language, one joiner serves every surface and
the failure-sentence builder no longer takes one alongside its words.
* fix(native-chat): a failed /clear this build only partly understands shows the host's own sentence
The line under the composer words a failed /clear or /compact from the fact
the host sends beside its sentence. The reader drops any part this build
cannot place, such as a refusal code a newer host added, and the rest of the
fact can then give different advice: "Run /clear again." where the host said
"Start a new chat to continue."
When any part the host sent did not survive the read, the line now shows the
host's sentence as written, the same as for a host that sends no fact. A fact
this build reads whole is still worded in the app's language.
* fix(native-chat): a failure fact this build reads only in part shows the host's sentence everywhere
The previous check compared only a fact's top-level parts, so a known refusal
code carrying a reason a newer host added still counted as read: the reader
dropped the reason and the notice re-worded what was left, which can advise
differently from the host ("Run /clear again." against "Start a new chat to
continue.").
One shared reader now answers whether this build read the whole fact: it reads
the fact and keeps it only when the read equals what arrived, at every depth.
Every place that chooses between wording a fact and showing the host's text
uses it: the line under the composer after /clear or /compact, a rejected
message's notice from the journal's fact, and the smaller copy a rejected
message keeps for when its journal row is not loaded. Matching a rejected
message to the start row that already says why still uses what this build can
read, since that is identity, not wording. Facts this build reads whole are
worded as before.
* fix(native-chat): a failed /compact names /compact as its next step on desktop too
The host names the command a failed start was waiting on, for /clear and /compact alike.
The line under the composer re-worded only /clear with it, so a /compact whose start failed
read "The agent couldn't restart. Send your message to try again." in the reader's
language. It now words every command the host answers with the agent and the command the
host used, so desktop English matches the host and French or Japanese keep /compact.
* fix(native-chat): a /compact whose start failed no longer says the operation was not confirmed
A /compact on a chat whose agent is not running starts it first, and that start takes a new
lease, so the chat's fence moves before the command's reply arrives. The write settles as one
for a fence this pane no longer shows, and the composer line read that as "Conversation
operation was not confirmed." Such a write now says nothing there, as every other write
already does: the chat's own start-failure row says why, and the command's message is
rejected in the journal. The sentence it printed is gone from the catalogs.
* fix(native-chat): keep the message outbox within its line limit after main's growth
* fix(native-chat): a command's own reply is kept when its start moved the fence
A /clear or /compact on a chat whose agent is at rest starts the agent first, and that start
moves the chat's fence before the command's reply arrives. Every reply from an earlier fence was
discarded, so a /clear whose new chat failed to start said nothing at all, and a /compact that
started left "/compact" in the composer.
A conversation command's reply is now kept while the pane still shows the chat it was sent for;
a closed pane or another chat still drops it, and every other write keeps the fence rule. The
line under the composer says nothing only when the failure is the chat's own start and that
start's loaded row already says why, the rule a message that start rejected already follows.
* fix(native-chat): a returned queued message shows the host's sentence for a fact read in part
The caption under a returned queued message re-worded its failure from whatever this build could
read of the fact. A newer host's fact with a refusal code or reason this build drops read as a
shorter sentence with different advice. It now re-words only a fact read whole, and otherwise
shows the host's own sentence, as every other surface that re-words a fact does.
* test(native-chat): a command reply after any fence move, for /clear and /compact
The fence-move tests now state the rule as the code has it: a conversation command's reply is kept
whenever the pane still shows its chat, whatever moved the fence. They cover a /clear that
completed, and a failed start for each command in French with the fact that command really meets
(a /clear's new chat fails to start; a /compact's chat fails to restart).
* fix(native-chat): only the reply a pane still waits on outlives a fence move
A conversation command's reply was kept across a fence move whenever the pane still showed the
same chat. A reply the pane had stopped waiting on, because it left the chat and came back or a
newer command replaced it, was applied as if it answered the current one.
The pane now remembers the one command request it waits on; only that request's reply is kept
after the fence moves, and closing the pane or showing another chat forgets it. Tests now drive the
fence move during the request itself rather than through /clear starting an agent, and cover a
/clear that stops a running agent.
* fix(native-chat): a newer-Orca history error keeps a whole retry line, and the phone shows the host's words for a fact it reads in part
When a chat's history was saved by a newer Orca, the pane's title reads "Chats were saved by a newer
Orca. Update Orca to keep using them." and the line under it said only "Orca keeps trying to load
it.", with nothing for "it" to mean (in French and Spanish the pronoun also disagreed with "chats").
That title names every chat rather than this one, so the pane keeps the full line: "The transcript
could not be read. Orca keeps trying to load it."
On the phone, a returned queued message whose failure fact this build reads only in part was
re-worded from what it could read, dropping advice the host gave; it now shows the host's own
sentence, as the desktop card already does.
The comment on the reply the pane waits on now says what forgets it: a newer command, or disabling
the pane.
* fix(native-chat): a command reply this build can't place shows the host's own words
A newer host can answer a conversation command with a command name this build doesn't know. This
build re-worded that reply from its failure fact as if it were a command it knew, naming the
command in its own words, or said nothing when a loaded start row matched the fact. It now shows
the host's sentence as written, as it already does for a fact it can read only in part.
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2caa79e097 |
fix(source-control): drop reasoning model think blocks from generated messages (#24005)
* fix(source-control): drop reasoning model think blocks from generated messages Custom commit-message commands that run a reasoning model print the reasoning before the answer, either as a <think>...</think> block or, when the chat template prefills <think>, as text ending in a lone </think>. The cleaner kept all of it, so the first reasoning line became the commit subject. Strip everything through the first </think> when the output starts with <think> or has no <think> before the close tag. Output that quotes both tags is left unchanged. Fixes #24004 Signed-off-by: FenjuFu <fufenjupku@gmail.com> * fix(source-control): scope lone </think> stripping to custom commands and add Kimi-VL tags A lone closing tag is only stripped for custom commands, so a built-in agent's message that mentions </think> is kept. PR fields parse the raw JSON first and strip reasoning only when that fails, so a body quoting the tag still parses. Adds Kimi-VL-Thinking's ◁think▷ tags. --------- Signed-off-by: FenjuFu <fufenjupku@gmail.com> Co-authored-by: Jinjing <6427696+AmethystLiang@users.noreply.github.com> |
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cb363444f3 |
feat(native-chat): register Codex default-mode helpers as subagents (#22619)
* feat(native-chat): register Codex default-mode helpers as subagents Codex's default multi-agent mode announces a helper only as the collabAgentToolCall that spawned it; it sends no subAgentActivity. The roster and the background-task tracker registered children only from subAgentActivity, so such a helper had no record, no strip row and no roster row, and its commands read as the session's own. One announcement reader now yields a child from either wire shape, and both the journal roster and the tracker register through it into the same executions, so a session sending both keeps one child per thread. A finished closeAgent ends the helper's running turn as stopped through the executions, beside the child's own turn and thread frames. Each collab call renders as a tool row (spawn_agent, wait_agent, close_agent, ...) naming the helper the way the roster does, with what the helper said back as its output, instead of the raw provider row. * fix(native-chat): name a spawn row by its prompt until the roster holds its helper Also pin that the roster row appears when the helper's first turn arrives before the spawn call finishes. * test(native-chat): a spawn call keeps its own row beside the roster row it starts * fix(native-chat): pair a structured tool row's output with its own call A run paired results to calls by position alone, so once one call finished with no output (a Codex spawn_agent row) every later output drew under the call before its own. A structured row carries its call and output together, so the projected result now names its call id and pairing honors it, falling back to position for results that name none. * fix(native-chat): the Codex roster row follows the executions, so every child ending settles it The subagent-group row was rewritten only on a child's turn/started and turn/completed. A child turn ended any other way — a fatal error, its thread closing, its caller closing it — settled the strip and the host record through the executions but left the transcript row reading working until the session ended. The executions now say when a child's execution changes, and the roster revises its row from that, whichever frame changed it. handleTurn still re-derives to hand back its write admission; the revision is idempotent. * fix(native-chat): a restored Codex call row names its helper, not its thread id History replay never runs the live item router, so the roster never learned the helpers a restored thread had spawned, and a restored wait_agent, close_agent or send_input row labelled its helper with the raw thread id. Replay now registers each announced helper for its name and membership only: register starts no execution, so no strip entry, record or roster row claims the helper runs until a live turn of its own says so. The replayed-item handling moves into the restore module beside the replay that calls it. Also name the roster's render contract in handleItem, and say why the collab tool-name map is not a spelling fix. * fix(native-chat): register a Codex helper whose spawn call failed but created its thread Codex reports a spawn as failed when the helper it created errored at birth, yet the call still names the thread it created, and that thread can run. The spawn was registered only when the call completed, so such a helper existed nowhere and its shell read as the session's own bare command: the original default-mode bug. A spawn now registers whenever it names a receiver; one in progress, or one that created nothing, names none. A failed closeAgent still ends nothing, because the helper was not closed. * refactor(native-chat): each Codex thread's latest token total gets its own home Every thread's running total, member or not, with the rule that the newest frame replaces the last and the recency-ordered cap, moves out of the roster into codex-thread-token-totals.ts. The roster still selects its children's totals at write time. With the producer linkage the roster now builds, it was past the size limit. * refactor(native-chat): the messages a session list quotes get their own module The readers of a session's newest own prompt and own assistant prose move from the status projection into structured-agent-session-latest-messages.ts, and are re-exported so their consumers keep one import site. With the status clock the projection now carries, a tool result naming its call put it past the size limit. * test(native-chat): a Codex helper's command is a live record until its process reports its exit A helper's in-turn shell is a live command record owned by the helper and is also its open Bash operation; its exit removes the record. A caller's closeAgent kills the helper's processes, and each still reports its exit on the helper's thread, so the close leaves the command to that exit rather than ending it itself. * fix(native-chat): every reader of a tool run pairs a result with the call it names The folded desktop run now pairs a result with the call it names, but mobile's tool run, the desktop edit cards and the task lists still paired by position through `pairToolBlocks`. In a Codex default-mode session the new `spawn_agent` row finishes with no output, so on mobile the helper's reply drew under `spawn_agent` and `wait_agent` showed none, and a desktop edit card could take the next command's output as its own. `pairToolBlocks` now follows the same rule as `pairNativeChatToolResults`: a result that names its call answers that call, and one that names none answers the oldest unanswered call as before. * fix(native-chat): a Codex helper's turn ends on its own frames, not on its caller's closeAgent A finished `closeAgent` call ended the helper's running turn as `stopped`. But the call's status is not the close's outcome: Codex sets it from the helper's own agent status, so a close that errors on a running helper still reports `completed`. Orca then marked a helper that was still running as cancelled in the strip, the host record and the roster row, and because the first ending a turn gets stands, its real ending could never correct it. A close that works does not need the edge either. Codex's shutdown of the helper aborts its running turn, and the app-server reports that as the helper's own `turn/completed` with status `interrupted`, which Orca already maps to `stopped`. So a helper's turn now ends only on its own frames (its `turn/completed`, a fatal `error`, `thread/closed`) or the session ending, and the close is only its call row. This also drops the child-work evidence re-keying that existed only for the close: every remaining frame names the thread that sent it. * fix(native-chat): a tool result that names a call is never given to a different call A result that named a call id with no unanswered match fell back to the oldest unanswered call. On mobile, a run shows at most six calls, so a command past that window whose output named its own call gave that output to an earlier call that finished with none, such as `spawn_agent`. A result that names its call now answers only that call and otherwise stays unpaired. A result that names no call still answers the oldest unanswered one. Both pairing readers share the one rule through `answeredToolCallIndex`. * test(native-chat): name the Codex default-mode test file after the subagents it covers * fix(native-chat): a Codex helper is known from any call that names it, not only its spawn A helper whose spawn Orca never saw (history replay after compaction dropped the spawn, or a resume or message to a helper from earlier) stayed unregistered, so its shell read as the session's own command: the bug this PR fixes, in another shape. Every collab call now announces each helper it names, skipping a receiver the finished call reports notFound. The spawn's prompt still labels a helper when it was seen; otherwise the helper has no label and reads as any unnamed subagent does. A send_input, like the spawn, names the parent turn the helper's next run belongs to. The session's own thread is excluded once, in the reader, instead of at each of its three callers. * fix(native-chat): every finished Codex collab call row carries what the call reports A client that predates result call ids (an older mobile app, or an older desktop reading a newer host) projects the journal itself and pairs each tool result with the oldest unanswered call. This PR publishes collab calls as tool rows, and a finished spawn_agent, send_input, close_agent or resume_agent on a running helper had no output, so such a client drew each later output in the run under the call before its own (the parent's shell output under spawn_agent, the helper's reply under the shell). Every finished call now has an output taken from the item: a wait's reply from each helper that finished (an errored helper's error), and for every other call the helper's reported status in Codex's own words (Pending init, Running, Completed, ...). A close or resume no longer shows the helper's last reply as if the call returned it. A wait whose end names no helper (it timed out, or v2) reads Finished waiting; any other call with no state reads its own status. A call also keeps naming the helpers its started item named: Codex ends a timed-out wait with no receivers, so its row lost the helper's name when it finished. * refactor(native-chat): the desktop run's tool pairing is a view of pairToolBlocks Desktop runs and every other reader (mobile, edit cards, task lists, the ask row) each had their own pairing loop sharing one index rule. The desktop's pairNativeChatToolResults now reads the pairs pairToolBlocks makes, so a run is paired by one loop and a new reader cannot add a third. No behaviour change. * test(native-chat): type the positional-client pairs without assertions * fix(native-chat): a finished Codex collab call row says what the call did, in Codex's own words A close_agent row read `Running` and a spawn_agent row `Pending init`: each showed the helper's status snapshot from before the call took effect, so a close that stopped its helper read as though it had not worked. Each finished call's output now follows Codex's own client: spawn reads `Spawned` (or `Agent spawn failed` when no helper was created), send_input `Sent input`, close `Closed`, and resume the helper's status summary. A wait keeps each finished helper's reply, with other statuses in Codex's summary wording (`Error - <message>`). The row label already names the helper, so the output does not repeat it. * docs(native-chat): the collab call reader says which calls show the helper's snapshot as output Since spawn, send_input and close rows say what the call did, the reader's header was wrong to claim every call row shows the reported snapshot as its output: only a wait or resume does. * fix(native-chat): a Codex spawn call no longer claims it ran an agent Codex's spawn_agent call ends as soon as the helper starts, so counting it as running an agent drew "Ran 1 agent" directly above "Kicked off 1 subagent · working" while the helper was still working, and "Ran 1 agent · 1 failed" when Stop cancelled a spawn before any helper existed. Claude's Task call lasts as long as its subagent, so it keeps the agent category; the Codex spawn row is now a plain tool call and the roster row alone stands for the helper. * test(native-chat): a Codex helper's row settles on the failed completion that follows a fatal error Codex follows every turn-ending `error` with the turn's failed `turn/completed`, on a helper's thread as on the primary, and only that completion ends the turn. The roster test now sends both and checks the row, strip and record stay working through the error and settle on the completion. * fix(native-chat): a Codex helper's section opens while the parent spawns, waits on or messages it A running chat holds a subagent's section open while the parent's newest row delegates to that subagent. For Codex that rule only knew the raw collab status row; this PR writes each collab call as a tool row (spawn_agent, wait_agent, send_input, close_agent, ...) naming its helpers in `input.agents`, so a default-mode helper's section stayed shut for its whole run while Claude's opened. The delegation reader now reads a Codex collab tool row as a delegation to the first helper it names, the same rule the raw row keeps for journals written before this change; a call naming no helper stays ordinary output. The row names and the `agents` key live in one shared module the host writes from and the reader reads, instead of a second list. The new test drives the real adapter's rows through the transcript projection to the delegation; the collab frame harness moves to a fixture shared with the positional-clients test. * fix(native-chat): a Codex collab call with a long prompt still names its helper A collab call row bounded its whole input as one value, so a spawn or send_input whose prompt passed the 16 KB journal limit was stored as a clipped wrapper: the row lost the helper's name and thread ids, and with them the label and the delegation that opens the helper's section. The prompt is now clipped on its own with the journal's inline-text bound, marker included; the helper's name, ids, model and effort are bounded as before and always survive. |
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db73d28e51 |
test: retire backlog cases that assert a shim, a literal, or an unread branch (#24120)
Deep-reads the 596 files earlier auditors explicitly disclosed as reviewed at
title-and-import level only, never against production. Six ~100-file chunks, chosen so
depth was achievable rather than optional. 27 case declarations removed across 19 files,
1 test file deleted, 522 lines gone. No production code touched.
Two chunks found nothing, and that is reported as the result rather than padded:
`src/main/agent-hooks` (89 files, 50 read case-by-case in full) returned zero deletions;
`src/main/claude` (90 files, 44 read in full) found three near-identical pairs via a
normalized case-body hash and kept all three after reading them.
What went:
- Identity copiers with a type-level title. `ui-new-workspace-draft.test.ts` (deleted, 3
cases) tested `setNewWorkspaceDraft: (draft) => set({ newWorkspaceDraft: draft })` — a
bare pass-through — by passing a literal in and asserting a subset of that literal back.
Its titles named field-shape facts that the typed parameter at
`ui-slice-contract-core.ts:197` already enforces in production, so the annotation that
does the work lives in production, not the test.
- A test that asserted its own mock. `destroyRemovedBrowserWebview(id)` is literally
`destroyPersistentWebview(id)`, and the case mocked `destroyPersistentWebview` — so it
checked that the mock received the argument the shim passed through.
- Replays across a bare re-export. `pane-tree-ops.ts:18` is
`export { equalizePaneSplitSizes, findPaneChildren } from './pane-tree-equalization'`;
two cases used `MockHTMLElement` with no dividers while the owner asserts concrete flex
values on real happy-dom elements and runs a 400-seed differential against an
independently reimplemented weight walk.
- Table rows varying a value production never branches on.
`mergeCurrentOrchestrationContext` tests only `dispatchStatus !== undefined`, so
`it.each(['failed','circuit_broken'])` ran the path the surviving `'completed'` case
already proves. Per-value behavior is owned by the one consumer that reads those
literals.
- Duplicate invocations whose surviving sibling asserts strictly more, including a push
error case differing from its neighbour only in which verb produced the same error
string.
Kept deliberately: bound and cap guards (a 50-entry nav-history cap, a skill-cache
eviction pinned to size 2 after 512 retired runtimes, a cleanup-concurrency ceiling);
`buildDefaultTerminalOptions` cases restating declared constants, because each records a
cross-cutting UX decision whose comment preserves the v1.4.51 ZWJ table-corruption history
that once forced scrollbar width 0; three per-grammar `tokenizer.root` invariants for
astro, svelte and vue, which are separate grammars rather than replays; and a test reading
`@xterm/{headless,xterm}/package.json` out of node_modules to prove both were built from
the same upstream commit, which is legitimate because the installed package is the shipped
contract.
Six `src/shared` files were trimmed, and each was checked against the risk that matters
there: `src/shared` is the OWNER four earlier waves deferred to when deleting
main/renderer/mobile tests, so hollowing one out would orphan several callers at once.
Each retains 9 to 46 cases after removing 1 or 2.
Coverage is partial and stated as such. Read case-by-case: pane-manager 81 of 81, slices-a
96 of 121, slices-b 94 of 121, agent-hooks 50 of 89, claude 44 of 90. Every auditor listed
the paths it did not reach.
Verified: 1,294 test files / 14,257 cases pass across the touched areas, plus one
pre-existing `it.fails` marker; `check-reliability-gates.mjs` 140 gates; the deleted file
is absent from the gate manifest, `cloud/package.json` and
`mobile/tests-typecheck-baseline.txt`.
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a781a602a8 |
test: retire duplicate cases that replay an owner across a re-export or provider shim (#24114)
Resolves 208 candidate pairs where the same case title appears verbatim in two or more
files, produced by a repo-wide scan calibrated against a known positive. 46 case
declarations removed across 32 files, 798 lines gone. No file deleted whole, no
production code touched.
The headline result is the measurement, not the deletions: across the three buckets that
reported in detail, the signal ran roughly 86% false-positive (3/42, 9/42, and the rest).
It has good recall and poor precision, and it reorders a reading queue rather than
replacing one. Calibrating a detector against a known positive proves recall, not
precision.
What the deletions were:
- Duplicate invocation through a re-export shim. `native-chat-tool-summary.ts` is a
ten-line `export {...} from '../../../../shared/native-chat-tool-summary'`, and
`agent-status.ts:161` is `export { isExplicitAgentStatusFresh } from
'./pane-agent-evidence'`. Cases on the shim side were byte-equivalent to the owner's
with no rendering or transport hop.
- Provider-local replays of a shared helper: three `repository-ref` providers that are
each `createRemoteRefProbeCache(parseXRef)` and contribute nothing to transient
handling; two `local-pty` and `daemon/session` tables replaying
`shell-startup-output-scanner`, whose owner additionally checks every split point.
- A reader-side replay of store policy. `runtime-worktree-agent-rows-structured.test.ts`
asserted an attention-to-blocked mapping; the reader contains zero `attention` or
`blocked` tokens and copies `state` through. The mapping lives in
`structuredAgentSessionAgentStatus`. Consistent with
`docs/reference/agent-status-store.md`: readers keep only presentation policy.
- Constructor-only subclass duplication: the shared capability-cache case is covered by
`codex-app-server-capability-cache.test.ts`, whose ten cases include the identical
title plus all four risks `docs/reference/git-compatibility.md` names — first fallback,
later cached call, concurrent probes, per-host isolation.
- A private predicate duplicated at a real boundary, varying only a path passed straight
into the shared predicate.
Why most pairs were KEPT, because the false positives are principled rather than noise:
- Two independent execution hosts. `src/relay/git-handler-*` and `src/main/git/*` are
separate Git implementations that cannot import each other and hold separate capability
caches, exactly as the compatibility doc requires; the repo already ships
`status-branch-line-total-relay-parity.test.ts` to pin the duality deliberately. Neither
side's argv, timeout or cache regression is visible to the other.
- Deliberately duplicated production siblings: Codex vs Claude (different account fields,
different CLIs, different wire protocols), gitea vs bitbucket (`/pulls/42` vs
`/pullrequests/42`), gl-utils vs gh-utils (separate in-flight maps). Same contract
shape, different implementations — an identical title is the correct naming.
- Shared-predicate consumers: one side tests the predicate, the other tests a caller's
wiring to it. A caller that forgot to call the predicate passes the shared test.
In a codebase with intentional provider and host symmetry, identical test titles are
expected, and the signal cannot distinguish "copied" from "parallel by design" because
both produce the same prose. Only reading both bodies separates them.
Verified: 6,968 desktop test files pass; the three modified mobile files pass (39 cases);
`check-reliability-gates.mjs` 140 gates; nothing under
`mobile/src/test-support/rpc-recording/` or `mobile/rpc-foundation/goldens/` touched.
62 local failures across 12 files were each accounted for and none is caused by this
change: `browser-manager-tab-identity`, `browser-manager-viewport-ownership`,
`session-scanner-codex-workers` and `managed-hook-script-refresh` all fail identically in
a pristine `origin/main` worktree; five `mobile-web-app-*-render` tests need Playwright
browsers this machine lacks; `structured-agent-session-restart-ownership` and
`ssh-remote-commands` pass in isolation and fail only under concurrent load.
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cef66fbab8 |
test: retire long-tail cases whose input cannot reach the behavior they name (#24101)
Sweeps the triage-only backlog: 2,269 files that earlier waves saw and skipped for size, reconstructed from the unread lists five waves of auditors disclosed. 35 case declarations removed across 15 files, 2 test files deleted, 487 lines gone. No production file touched. These are large integration suites, so the junk here is individual cases buried among real coverage rather than whole bad files. The dominant defect was again a case whose input cannot reach the behavior its title names: - `resume-sleeping-agent-session-remote-compat.test.ts` (deleted) — two cases titled for "transport-level host authority on a capable host" and "host authority is not known". `resume-sleeping-agent-session.ts` has no host-authority or capability concept at all, and its only read of `origin` is `if (!record.origin && record.state === 'done')`, unreachable for both rows. Both executed one identical path. The surviving contract is owned by `resume-sleeping-agent-session-execution-host-scope.test.ts`, which drives a real host catalog. - `project-group-header-drag.test.ts` (deleted) — four cases setting `data-project-group-header-id`, which the predicate never reads. Its subject, `isProjectGroupHeaderActionTarget`, is byte-identical to `isRepoHeaderActionTarget` apart from the function name and imports the same `REPO_HEADER_ACTION_SELECTOR`, so all four cases were a strict subset of `project-header-drag.test.ts` using identical `data-repo-header-*` fixtures. - `remote-worktree-history-cleanup.test.ts` — "repeats idempotent cleanup through the PTY owner" against a six-line best-effort forward with zero dedupe state. The case called it twice and asserted the mock recorded two calls, which is arithmetic over the test's own loop; nothing about idempotence was established. Also removed: - Runtime assertions of type-level facts, where production already makes the check at a stronger boundary: `const adapterSatisfiesPort: AdapterIsPort = true` followed by `expect(...).toBe(true)` — unconditionally true, while `createExpoGenerationFileSystem(): GenerationFileSystem` is explicitly annotated and passed into `createGenerationStore` at a typed call site. And a case named "does not typecheck" whose runtime assertion is a length check on its own literal, declaring its own local annotation so it could never notice the production annotation weakening. - Private predicate tests duplicated at a real boundary: four `repo-slug-cache` cases delivered by `repo-slug-index.test.ts`, which drives the same resolution through the hook, the real store and the preload bridge, while the cache-level versions hand-seed the internal map and break on a cache-key format change. - Duplicate invocations owned at the shared boundary, including commit and push recovery cases owned by `src/shared/source-control-recovery-agent-command.test.ts`. Kept deliberately, verified rather than assumed: the production duplication behind the deleted drag test was left alone, because `REPO_HEADER_ACTION_SELECTOR` ends in generic `button, a, input, textarea, select`, so genuine action targets inside a group header still match — it is an unspecialised copy-paste, not a live bug, and collapsing two functions is a refactor. Reported instead. Auditors' probes produced 20, 11 and 13 candidate hits for the signature-versus-title shape across their chunks; every one was inspected and every one was genuine coverage. No deletion in this wave rests on a probe alone. Coverage is partial and stated as such: of 2,269 files, roughly 100 were read case-by-case and the remainder reviewed at title-plus-import level. Each auditor listed its own unread set. The largest remaining surfaces are `src/main/agent-hooks` (95), `src/main/claude` (100), `src/renderer/src/lib/pane-manager` (62) and the 20 largest sidebar suites. Verified: 2,583 desktop test files / 25,636 cases pass, plus one pre-existing `it.fails` marker; the two modified mobile files pass (57 cases); `check-reliability-gates.mjs` 140 gates; `check:code-quality:changed` 0 new findings. Both deleted files confirmed absent from the gate manifest, `cloud/package.json` and `mobile/tests-typecheck-baseline.txt`. |
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5fa290fa50 |
feat(secrets): warn in Settings when a credential is stored unencrypted (#24048)
* feat(secrets): warn in Settings when a credential is stored unencrypted When no OS keyring is usable, the MiniMax stores write the credential as a plaintext envelope and say so with a console.warn nobody reads. The users this affects are exactly the ones who never see a main-process log, so in practice they were told nothing (#21827). Report it where the credential is managed instead. Each store gains a protection reader, the status IPC carries it, and Settings renders a warning next to the credential it applies to. Keyed on the stored bytes, not isEncryptionAvailable(): a credential saved before a keyring existed stays plaintext until it is saved again, so reporting current capability would call it protected while the file says otherwise. The readers parse the envelope kind without decrypting, so opening Settings cannot provoke a keychain prompt. The console.warn stays. It carries no secret material, and it is still the only signal on a headless host with no Settings window. * feat(secrets): extend the unsealed-credential warning to every affected store The speech key, Linear tokens, Jira tokens and the Bitbucket credential have the same plaintext fallback the MiniMax stores do, and the same console-only warning nobody reads. Add a shared `readCredentialFileProtection` for the four stores that write bare ciphertext with no envelope, classifying with the same printable-UTF-8 test `readStoredCredentialToken` already uses — so the reporter cannot drift into disagreeing with the reader about the same bytes. Linear and Jira report across every stored workspace/site rather than the active one: sealing is a host-wide property, so a second workspace stored while the keyring was missing is exposed even when the active one is sealed. Both fields are optional, so an older remote host that omits them reads as unknown rather than as sealed. Bitbucket reports null for env-supplied auth, where Orca stores nothing and has no claim to make. Also fixes the credential-connection test double, whose identity-function `encryptString` wrote a readable token — faithful enough for a round-trip assertion, but it made the suite assert that a sealed credential was exposed. * chore(i18n): extract the unsealed-credential notice strings CI's localization-extraction gate requires every translate() key to exist in the primary catalog. Inserted in place rather than re-sorting the file, which is not fully sorted and would have produced a 17k-line diff. * test(web): pin the null protection fields on the desktop-only MiniMax bridge The web bridge reports no protection because it stores nothing; the shape assertions had to move with it. |
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f4092c06d6 |
fix(runtime): treat Hermes session start as idle, not a running turn (#24064)
Hermes fires `on_session_start` when a session is opened, switched or reset; its payload carries no turn. Orca mapped it to `working`, so a freshly launched Hermes held a fresh first-party `working` row for the whole 30-minute staleness window: `terminal wait --for tui-idle` never settled against an idle composer, and the sidebar span a phantom spinner. Map it to `done` with `sessionBoundary`, matching what Claude and the compatible-lifecycle providers already do for SessionStart, and let the tui-idle evidence lane settle on a fresh boundary row. A boundary row claims a new session owns the pane and awaits its first input, which cannot arrive mid-turn, so it carries none of the #6011 risk that scoped that lane to DSH; a turn-end `done` still does not settle. Fixes #13653. Co-authored-by: Brian Grablin <5216789+bgrablin@users.noreply.github.com> |
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59c05d32b0 |
fix(rate-limits): stop driving a hidden Codex TUI to read usage (#23806)
* fix(rate-limits): stop driving a hidden Codex TUI to read usage When the headless Codex usage call failed, Orca opened a hidden interactive Codex, typed /status and pressed Enter without reading the screen, then killed it after 15 s. If Codex showed its "Update available" prompt, that Enter picked "Update now", Codex started its installer, and the 15 s kill interrupted it, leaving the global install broken. Drop the hidden-terminal fallback. When the headless call fails with a non-sign-in error, read the same usage from the HTTP endpoint Orca already calls on WSL and for the 5-hour window, so a usage check can no longer answer any Codex startup screen. Fixes #17415 * test(rate-limits): pin the RPC error when the Codex HTTP fallback fails Also drop comments that still described the removed hidden-terminal fallback. * test(rate-limits): use real Response objects in Codex fetcher tests The changed-code gate rejects the new type assertions this PR added. |
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707d3dc96b |
fix(chat): decode Claude pastes and report terminal delivery uncertainty (#23788)
* fix(chat): decode Claude pastes and track terminal delivery uncertainty Keep queued prompts pending while the existing agent status reports work, and check fresh history after a later idle fact. Preserve draft text and distinguish write rejection from unconfirmed delivery. Co-authored-by: Harshul Rathod <harshulrathod1640@gmail.com> * fix(native-chat): break the observed-send import cycle and keep renderer tests out of main The observed-send path imported the clear helpers from native-chat-runtime-send, which imports it back. Move the input-clear layer into its own module both use. The Claude paste decoder test imported the renderer pending module from src/main, which the node typecheck project cannot see; the echo-retirement assertions now live in a renderer test. * fix(native-chat): still submit a Claude chat send whose write acknowledgment was lost A remote write whose acknowledgment is lost (timeout, dropped link) is not a refusal, but the observed path stopped there and never sent Enter, leaving a body that did land sitting unsubmitted in Claude's input line until the next send's clear wiped it. Continue to the next write without re-sending the bytes, as the unobserved path always did. * perf(native-chat): keep terminal Chat pending delivery from re-rendering every row The delivery notices were merged into a new Map on every render, which invalidated the transcript row context and re-rendered every memoized row on each stream update. The pending hook also wrote a fresh array on every status ping and prune pass even when nothing changed, and the phone mapped its pending list on every render, rebuilding the chat list data. Memoize the merged notices, skip no-op pending writes, and memoize the phone's rendered pending list. The phone also skips a transcript read when no send is due. * fix(native-chat): never flag a queued Claude send, and flag one an idle Claude never starts Two gaps in when terminal Chat calls a Claude send "Delivery unconfirmed": A prompt sent while Claude is mid-turn is queued, and Claude folds it into the running turn as a queued-command record. The transcript reader drops those records, so once the turn ended the prompt Claude did run read as unconfirmed, inviting a duplicate resend. A send made while the agent is busy is now never checked; it keeps the pending behaviour it had before. A prompt sent to an idle Claude that never starts a turn (Claude exited to the shell, or the paste went nowhere) left the status at the same idle fact forever, so the check never ran and the bubble stayed pending. An idle agent starts a turn on a delivered prompt at once, so a send whose idle status is unchanged after the existing 20 s bound is now checked against a fresh transcript read. * fix(native-chat): add the delivery notice strings to the English catalog The Dismiss action's translate key was missing from en.json, which fails the localization catalog and extraction gates. The desktop "Message not sent" and "Delivery unconfirmed" notices were hard-coded English; route them through translate with the same wording. * fix(mobile): sync the held-send refs after commit instead of during render Moving the acknowledgment-loss hold into its own hook made its render-time ref writes new lines, which the React Doctor changed-lines gate blocks. Held sends report after commit, so syncing those refs in a layout effect keeps them current where they are read. * fix(native-chat): report only definite terminal Chat send outcomes The delivery rule inferred "Delivery unconfirmed" from "the turn ended and the transcript has no matching row". Claude records a prompt sent mid-turn only as a queued-command attachment, which the transcript reader drops, so that rule flagged prompts Claude had answered. It also never fired for an idle Claude that lost the write, because no newer turn arrives. Keep only facts the transport reports: - a refused write reads "Message not sent", keeps its text, and can be dismissed; - a lost write acknowledgment holds the echo for 20 s, the phone's existing rule, then reads "Delivery unconfirmed" unless its row has landed. An ordinary send, including one Claude queues mid-turn, stays pending as before. Remove the agent-status subscription, the status-epoch origin, the fresh 500-row transcript read, the confirmed state and the no-status clock. The phone already implements this rule, so its changes revert to main; only a test for old-host paste envelopes remains. * fix(i18n): translate the terminal Chat delivery notices Add the Dismiss, "Message not sent" and "Delivery unconfirmed" strings to the es, fr, ja, ko and zh catalogs, reusing each catalog's existing Dismiss wording. * fix(native-chat): let a resend replace its failed terminal Chat echo A "Message not sent" or "Delivery unconfirmed" echo kept its transcript occurrence, so resending the same text numbered the resend as the second copy: the one landed row retired the failed echo and pinned the resend below the reply forever. Appending a send now drops a failed echo with the same content first. * fix(native-chat): unwrap a Claude paste that quotes pasted_content tags The envelope parser refused any body containing a pasted_content tag, so a pasted prompt that itself quotes one (a transcript excerpt, or code that handles these tags) kept its wrapper and its echo stayed pinned below the reply. Claude's per-paste id exists to disambiguate exactly that; only a same-id tag inside the body is now ambiguous. Wrappers without an id keep the strict rule. * test(native-chat): pin which terminal Chat sends observe write outcomes Only a Claude chat send (text or images) reports a refused or unacknowledged write to its pending echo; other agents and slash commands keep the unobserved write path exactly as before. * fix(native-chat): keep failed terminal Chat sends through Stop Stop cleared every optimistic echo, including a "Message not sent" or "Delivery unconfirmed" bubble whose send had already settled. Stop cannot affect that send, and the bubble is the only place its text stays copyable, so it now survives until the user dismisses or resends it. Also moves the observed-send import below the file header comment. --------- Co-authored-by: Harshul Rathod <harshulrathod1640@gmail.com> |
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5b93c6216a |
Fix Chat UI paste intake and pane routing (#23784)
* fix(chat): separate text paste from attachments and route by pane Keep composer text independent of image checks and saving, and route pastes caught underneath chat to the originating pane's mounted input. Preserve native event data, selection replacement, undo, and target lifetime checks. Co-authored-by: Wooseong Kim <innocarpe@gmail.com> Co-authored-by: lurunzi <lurunzi@gmail.com> * fix(chat): keep focus and quiet text paste after routing it to chat - A paste inserted into the composer now moves focus there, as the old menu-paste insert did; otherwise a paste routed from the hidden terminal left the next keystrokes going to that terminal. - With a remote-server or not-ready workspace, pasted text no longer shows the "Local attachments are not available" refusal because the clipboard also held an image rendition (common for Office copies). The menu path probes for an image only when the text read is empty, so a paired browser does one permission-gated clipboard read for a text paste, not two. - Latest-value refs update in a layout effect instead of during render. * perf(clipboard): answer "is there an image?" from the format list The chat composer asks the main process whether the clipboard holds an image before explaining an image-only paste on a remote-server workspace. That probe decoded the whole image (readImage().isEmpty()) on the main thread just to return a boolean. Read clipboard.availableFormats() instead, and share the MIME check with the paired-web probe. * fix(chat): a chat cover owns focus, so input never reaches the hidden terminal When a Chat UI tab opened over its terminal, the terminal's xterm kept keyboard focus until the composer claimed it a frame later, and forever if the composer never became ready (still starting, a question card, a phone holding input). The previous commits rerouted paste from that hidden terminal to the chat, but typing and Enter still went to the terminal, an image-only or refused paste left focus there, and about twenty terminal.focus() call sites could put it back. Make "a covered terminal cannot hold focus" structural instead: - The chat cover takes focus in the commit that mounts it and marks the covered xterm inert, so every terminal.focus() path is refused by the browser. Split siblings are untouched. When the chat goes away the xterm is un-inerted, and gets focus back only if focus was inside that chat. - Terminal paste listeners skip anything inside a chat cover (previously only inside a mounted chat root). The reroute from terminal to chat is gone; terminal-only paste is back to main's code. - A paste that finds no chat input (before the chat mounts, or an approval card with no text field) gets a visible refusal from the cover. A disabled composer shows the same notice inline instead of dropping the paste. New copy: "Can't paste — this chat isn't accepting input right now." (the old "Worktree not ready" toast was wrong for a chat that is still starting). - The terminal context menu, which names its pane, keeps a small request event to that pane's chat, now without a clipboard payload and using the existing covered-pane check. - Cmd/Ctrl+V or Shift+Insert on a non-input part of the chat focuses the composer (or question answer) first, so the paste lands there. - The composer-scope check used to decide whether a text field inside the chat keeps its own paste matched the whole pane (the file-drop surface carries the same attribute). It now asks the composer whether the target is inside its input. * fix(chat): don't paste a copied file's name next to the file Copying a file in Finder or another file manager puts its name on the clipboard as text/plain beside the file itself. Since text and images are now pasted independently, pasting such a copy into a local or SSH chat inserted the file name into the prompt as well as attaching the image. On the paste-event path, text/plain that is exactly the names of the pasted files (one per line) is the file's label, not prompt text, so it is dropped when an image from that paste is being attached. Rich-text copies (text plus an image rendition) still insert their text, and a copied non-image file, which is not attached, still pastes its name as before. * fix(chat): don't type a Finder file's name on Cmd+V either On macOS, Cmd+V in the chat goes through the app-menu paste, which reads the clipboard text and saves the clipboard image separately. A file copied in Finder also puts its name on the clipboard as text, so the composer typed the name next to the attachment. On main the menu path never read text once an image saved. The main process now reports the paths of the files a file manager copied (macOS filenames plist or file URL, Explorer's FileNameW, a Linux uri-list). Text that only labels those files waits for the image outcome: dropped when an image is attached (or refused on a remote owner), typed when none came. The same label rule now also accepts a path or file URL per line, which is how Linux file managers label copied files on the paste-event path. * fix(chat): pane focus aimed at a chat lands on the chat Since the covered terminal became inert, focusing a pane that shows a chat (keyboard pane navigation, focus-follows-mouse, split activation) was refused and focus stayed on the pane the user left, so typing went to that visible sibling terminal. The one place a pane's focus is requested now puts it on the pane's chat cover, which hands it to the composer when the pane is revealed. Focus already inside the chat is left alone. * test(terminal): give fake panes the container pane focus now reads Pane focus checks the pane's container for a chat cover, and these two fixtures built panes with only a terminal, so four tests threw. * refactor(native-chat): move composer paste handle and chat-root key routing into their own modules Brings NativeChatComposer.tsx and NativeChatResolvedView.tsx back under the 400-line limit after merging main. No behavior change. --------- Co-authored-by: Wooseong Kim <innocarpe@gmail.com> Co-authored-by: lurunzi <lurunzi@gmail.com> |
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ca7c14db08 |
fix(mobile): start + menu, quick command and diff-note agents through agent.launch (#22954)
* fix(mobile): start + menu, quick command and diff-note agents through agent.launch
The session screen's + menu, agent quick commands and diff notes' New agent
session now ask the host to start the agent with agent.launchReplay, so the
host picks chat or terminal from the desktop's default and delivers any
prompt. Hosts without the launch capabilities keep today's paths.
The phone's pending tab choice is one value (a tab, a terminal by handle, or a
launched surface) instead of two refs, and a launched chat is found by its
session id in the next snapshot rather than a predicted tab id. A launched
surface waits a bounded number of snapshots for its tab.
* test(mobile): add the + menu and diff-note launch scenarios to the recording corpus
* test(mobile): repin bridged-parity tallies for the four launch goldens; drop test casts
The corpus grows from 790 to 794 goldens; all four new ones replay identically.
* fix(mobile): show a refused agent launch as a toast beside open tabs
The inline create error renders only in an empty session, so a host refusal
(for example a disabled agent) from the + menu in a session with tabs showed
nothing. Always toast the failure: the caller's own copy when it gave one,
otherwise the host's reason.
* test(mobile): type the launch reply helper with the shared launch outcome types
* fix(mobile): record a launched agent's tab as this device's pick on the host
A launch carries no navigation, so the phone selected the new tab only
locally while the host kept this device on the tab it had before. Leaving
the session and coming back, or a reconnect that reset the screen, reopened
that old tab. The "+" terminal path this replaced asked the host to select
the tab for the caller.
When a launched surface's tab lands in a snapshot, activate it for the
caller exactly as a tap does. The resolver now names the landed tab in
place of the unused `missed` flag. Route parity re-pinned for the new
activation body, identity payload and strings.
* fix(mobile): land on a launched agent's tab without a 500 ms wait or a blank pane
The host publishes a launched tab before it replies, so the tab list the
phone already holds usually has it by the time the reply arrives. The
launch paths still waited for a refetch 500 ms later, leaving the phone on
the old tab for that long after every launch. Read the tab list at once.
On hosts without agent.launch, the chat path also unsubscribed the open
terminal and cleared its handle before the chat's tab landed, while the old
terminal tab stayed selected: a blank pane until the next tab list. Leave the
open tab live until the chat lands, as the launch path does; applying that
tab list tears the old terminal down.
Route parity re-pinned for the two bodies.
* fix(mobile): keep a tab the user picked while a prompted launch was still replying
A quick command or review-notes launch now waits for the host to deliver the prompt, which can take up to a minute. The launched tab shows up in the tab row well before that, so a user who tapped another tab meanwhile was pulled back onto the launched one when the reply arrived, and that pick was recorded on the host.
The launch now remembers which tab the phone was on when it started and only takes focus if the phone is still there when the reply lands. Any move made in between, by a tap or by the computer navigating this phone, wins. Session route parity re-pinned for the handleCreateTerminal body only.
* fix(mobile): name a launched agent's tab before asking, and land on it when it is listed
A "+" menu, quick-command or review-notes launch now reserves its tab before it asks the host: a fresh pane key (tab and leaf UUIDs) and, for an agent the host may start as a chat, a session id. Both are minted once per launch and sent unchanged on every replay, since the host's replay fingerprint covers them.
The phone arms its pending selection with that reservation before sending, so it lands on the terminal (matched by pane halves) or chat (matched by session id) as soon as the tab is listed. For an agent whose prompt is pasted after start, that is long before the reply, which waits for delivery. Landing also frees the "+" lock; the lock holds the create's id, so an older launch's reply cannot free a newer one's. The reply now only adds its own handle or session id (an older host ignores the reservation), starts the fallback countdown, and reports prompt delivery.
A tab the user picks mid-launch replaces the pending selection, so the launch-start tab check is gone. A reservation the host refuses as already taken reads "Couldn't start the agent. Try again." on the first send, and as unconfirmed after a replay. The mobile UUID fallback now yields a v4 UUID, because a pane key's leaf must be one. The host launch path moved to new-tab-agent-host-launch.ts; session route parity re-pinned for that move and the landing's lock release.
* test(mobile): expect the launch reservation in the four launch scenarios
The four launch scenarios now expect the pane key and session id the phone sends (the scripted ids come first, so the operation id moves from ...001 to ...004).
* fix(mobile): don't say an agent may not have started while the user is looking at it
When a launch's reply was lost after its tab had already landed, the phone said "Couldn't confirm the agent started", although the listed tab proves it did. Now a listed tab narrows the doubt to the prompt or notes ("The agent started, but couldn't confirm the notes were sent."), the notes stay unsent, and a bare launch says nothing. Only the nested-function parity pin moves, for handleCreateTerminal passing the tab list to the launch.
* test(mobile): read the launch's sent reservation through the host's params schema
The anti-slop audit rejects Reflect.get; parsing with AgentLaunchReplay also
asserts the host accepts the params the phone sent.
* test(mobile): check the launch reservation against the host without importing its schema
Mobile code may import the params contract only as types. The phone's tests
now read the sent reservation by narrowing, a chat reservation is checked
through the real host dispatcher, and the older-host drop is pinned host-side.
* fix(mobile): don't send the same review notes to a second new agent
The "+" lock is now freed when the launched tab lands, but review notes are
only cleared when the launch's reply confirms delivery, which for a prompted
launch can take up to a minute. In that window "Send review notes to AI" still
offered the same notes, and choosing a new agent session started a second
agent with them.
The notes a new agent session is being started with are now held from the tap
until that launch settles: the Send button no longer counts them, the sheet no
longer offers them, and a stale tap on the old sheet starts nothing. Notes the
host did not deliver become sendable again once the reply arrives.
* test(mobile): record the + menu and diff-note launch goldens
4 added (+ as a terminal, + as a chat, notes delivered, notes not delivered). 10 existing create-terminal goldens move only because the recorded state now shows one pending selection instead of two refs; their requests are unchanged.
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fceca5cece |
fix(sidebar): an agent's row stays while it runs, whatever its tab title (#23948)
* fix(sidebar): keep hook-less agent rows while the agent runs, whatever its title Codex retitles its pane to the project name, so the sidebar's title-derived row (which required the title to name an agent) vanished while Codex kept running (#23767). Rows now take identity from the canonical pane resolver over the pane's foreground-process read and launch record, then the title; the title only decides idle/working/needs-input. The row still goes away when the PTY exits, the process tracker proves the shell is back, or the title is a shell or default title. * test(dashboard): justify the partial store fixture's type assertion * fix(sidebar): only a live process read keeps a plain-title agent row Review of the previous commit found ghost rows: the tab launch record is a latch nothing clears on WSL, after an SSH exit, or for a launch that never started, and a parked pane's process read went stale because only the mounted tracker re-derives it. - The launch record returns to main's role: a fallback only for titles that show activity, ranked below a title naming another agent (pane reuse), matching the tab icon's order. - A parked pane's command boundary retires its unconfirmable process read, like the mounted ladder's unavailable path; reveal re-reads it. * fix(sidebar): confirm before a parked marker retires an agent; read Git Bash prompt titles as the shell - A parked pane's end-of-command marker can be a nested shell's leak under a still-running full-screen agent, so confirm the foreground first (as the mounted ladder does) and retire the process read only on a shell or no answer. SSH/remote parked panes hold no incarnation to fence a host read with, so they still retire. - Git Bash emits no command marks; its `$MSYSTEM:$PWD` prompt title (MINGW64:/c/repo) is now shell evidence, so a stale Codex read there no longer keeps a ghost row after Codex exits. * fix(sidebar): trust only process-read agents for plain-title rows; per-worktree foreground selector groups by tab A daemon reattach seeds the pane's foreground entry with its launch agent, which can outlive the process while Orca is closed. The entry now records where its agent came from (agentEvidence), and the sidebar/dashboard title-derived rows only keep a plain-title row on an actual process read. Routing and the tab icon are unchanged. selectPaneForegroundAgentsForWorktree grouped every pane key per worktree; it now groups by tab once per map identity and skips worktrees with no tabs. * fix(sidebar): a parked pane's reattach keeps its own process read of the same agent The reattach seed marked a returning parked Codex pane as launch-record evidence, over the process read this session already took, so its row blinked out on reveal and stayed hidden if the user left the tab before the visible read landed. Keep the read when it names the same agent; the seed still drops byte-routing trust. * test(terminal): foreground confirmation publishes process-read evidence * fix(sidebar): a cleared pane title retires the agent's process read Codex clears its title when it exits, and the tab then shows its default title. A pane without shell command marks never re-reads its foreground process, so the retained read kept a "Codex · Idle" row after /quit (permanently for a hand-typed Codex; about 15 s while the marked-pane confirm ladder ran). Treat a blank title like the default title it shows. * fix(sidebar): the pane's process monitor retires an exited agent's process read A hook-less pane keeps its sidebar row from the tracker's foreground-process read, but nothing re-derived that read in a pane without OSC 133 command marks. After Codex exited there, a "Codex · Idle" row stayed: permanently when the shell titles its prompt, or when a killed Codex leaves its last title. The pane's agent-completion process monitor already confirms an agent's exit (no agent and no child processes, held past its settle window). It now reports that exit to the tracker, which retires its own process read and runs the confirmed-shell path the visible-pty read uses. A tracker read that names an agent seeds the monitor, so hidden panes and panes the monitor had not polled yet are watched too. A command read in flight still decides the pane, and launch records or other agents' reads are left alone. * fix(sidebar): a monitor-confirmed exit leaves the next agent in an unmarked pane identifiable The process-exit retire published shellForeground:true and left the one-shot visible sample settled; a pane without command marks has no command start to lift either, so a Codex typed again after quitting was never read and lost its row on retitle. Publish shellForeground:false and reopen the sample. * test(terminal): justify the pane binding cast in the process-exit relaunch test |
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f4068747ac |
fix(claude): a restarted provider continues the subagent roster earlier runs journaled (#23758)
* fix(claude): a subagent resumed after a restart keeps its canonical id
A backgrounded Claude subagent resumed by a message after its session's provider
restarted parents its frames to its ORIGINAL spawn call, while the announcement the
new provider sees names only the resuming call. The spawn call's alias lived only
in the old provider's memory, so every row the resumed child wrote fell through to
its raw call id: one child shown as two, a named roster entry with no rows and an
unnamed section holding them.
The alias table now also recalls what an earlier run of the session resolved,
re-derived from the agent rows it journaled (canonical id beside the call its frames
arrived under), read once per bound journal epoch. Nothing new is persisted.
* fix(claude): a restarted provider continues the subagent roster earlier runs journaled
The roster's state lived in one provider process while everything it writes is
the session's. After a restart a resumed child was re-rostered in a second group
row with its attempts restarted, its resumed frames lost the alias they still
carry, and the one group row no turn owns was rewritten from empty, erasing the
children an earlier run had listed there.
A run now reads what earlier runs journaled, once per bound journal epoch: group
rows give each child's entry and group, agent rows give the spawn-call aliases
and the latest attempt. A group is inherited only when this run's own events
reach it, and inheriting writes nothing. An inherited child is reopened by an
announcement exactly as an in-process resume reopens it, and by nothing else.
The alias recall is one facet of that read. Nothing new is persisted.
* fix(claude): an earlier run's subagent takes Claude's restart verdict in one row
At restart Claude reports each agent the previous session left running as
stopped ("didn't finish before the previous session ended"). The roster ignored
it, leaving the entry unverifiable, while the background-task lane, which never
saw that agent announced, opened a second, unnamed row for the same agent.
The roster now records the verdict on the inherited entry, keeping the time the
earlier run lost contact, and still reopens the entry on an announcement. The
background-task lane leaves any agent an earlier run rostered to the roster,
from the same journal-derived reading.
* fix(claude): a restart verdict on a child whose host died invents no stop time
A journal reopened after its host died leaves a child unverifiable with no stop
time. Stamping Claude's later restart verdict with the current time would show
the whole outage as how long the child ran, so the earlier run's stamp, or its
absence, is kept. The journal-liveness comment no longer describes the roster as
unable to continue from the journal.
* fix(claude): a child two journaled rows list stays live in one of them
An older build could re-roster a resumed child in a later turn's row, so two
group rows list it (67 children in 39 local sessions). Inheriting the second
row re-pointed the child to that row's copy, so the copy the resume had
reopened was left at working and swept to unverifiable, while the outcome
landed on the stale copy. The first row reached keeps the child.
* fix(native-chat): no run length for a settled child with no stop time
A subagent whose host died without sweeping it has no stop time. After a
restart, Claude's own verdict on it ("stopped") is now recorded, but the rule
that hides the group's duration only covered `unverifiable`, so a mixed group
showed the sibling's duration as the whole group's. The rule now keys on the
missing stop time, whatever the settled state.
* fix(claude): a twice-listed child resumes in the row the journal reading chose
A child an older build listed in two rows was placed in whichever row this
run's frames reached first, so a sibling's frame reaching the older row made
the resumed child reopen there. Placement now follows the reading's one
tie-break, and evicting a row drops only placements that point at it.
* fix(native-chat): a resumed subagent's clock never counts the idle gap
A reopened Claude child now starts a new run: its startedAt is reset to the
reopening frame's time on every reopen path (resume after a restart and a
same-process reactivation). The group clock reads the union of the children's
latest runs, so an idle gap between runs is never counted; an ordinary
overlapping fan-out reads the same as before.
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21124db4d5 |
refactor(native-chat): a subagent's rows live in its own section, not in the parent's conversation (#23752)
* refactor(native-chat): a subagent's rows live with that subagent, not in the conversation
A subagent's rows were drawn in its parent's conversation, each captioned with
the subagent's name. They now belong to the subagent: the transcript projection
keeps the session's own rows as the conversation and each subagent's rows apart,
keyed by the agent id its roster entry already carries, folded on their own.
Desktop: a subagent's rows open in a section under the roster row that names it,
from that agent's roster entry, and are windowed like any other rows. A subagent
no loaded roster names opens where its first row happened, inside the section of
the agent that spawned it or in the conversation. Its edits still count in the
turn they were made, and revealing one opens the sections around it.
Mobile shows the conversation, with each spawn's roster line. Worker reads and
structured terminal reads serve the worker's own rows.
Removes what the move makes redundant: the per-row caption and its copy, the
producer check in the tool fold and the turn answer, the per-agent frontier
interleaved in the conversation, worker-text subagent tags, and the agent id on
worker-read messages.
* refactor(native-chat): a diff target names the sections its row sits in
Revealing a subagent's edit opens the sections around it from the target the
rollup already holds, instead of looking the row up at click time. The section
head keeps to the agent's name and dot; its state in words stays on the roster
entry. The worker page test stubs the host through its module rather than a cast.
* fix(native-chat): a working subagent's section is open; a worker page windows its own rows
A subagent's section is open while its agent works and closes once it settles,
the way the turn's own live run does; a section the reader opened or closed by
hand keeps that choice. A subagent another subagent spawned opens inside that
one's section, so a working grandchild shows inside its working parent. Openness
is derived from the roster's state and the reader's choices; nothing stores an
automatic open.
A worker page is now the newest page of the worker's own rows. The host windows
the read over them before the limit, so a subagent's burst can no longer crowd
the worker's rows off the page, and "older" still means older worker rows. The
scope is an in-process argument of the host's history read; no wire request
carries it.
* fix(native-chat): a subagent section head names the turn it sits in, for the outline rail
* fix(native-chat): a subagent section's rows sit in the turn the section is shown in, for the outline rail
A background subagent's rows written during a later turn carried that later
turn onto their slots, so scrolling through its section lit the later turn's
rail tick and then snapped back. The rollup still counts each edit in the turn
it was made; only the slot, which the rail reads, takes the shown turn.
* fix(mobile): Load earlier reads past pages that hold only a subagent's rows
Mobile draws only the session's own rows, so an older page made entirely of a
subagent's rows landed as nothing: the reader tapped Load earlier, saw the
spinner, and got the same transcript back. One load now reads on (up to 8 pages)
until a page holds a row of the session's own, then applies the pages in order.
* test(mobile): stub the RPC client the way the other structured-session hook tests do
* perf(native-chat): order subagent rows for the changed-files rollup once per change to them
The rollup flattened and re-sorted every subagent row on each update, including
every token the parent streamed. The ordering now keys on the projection's
subagent rows, which keep their identity while only the conversation changes.
* refactor(native-chat): order subagent rows in the sections hook, keeping the list under its line limit
* fix(mobile): a transcript whose newest page is only a subagent's rows reads back on its own
Opened while a subagent is busy, the newest page can hold nothing but that
subagent's rows. Mobile draws none of them, so the reader saw an empty chat with
a Load earlier button, and an empty list cannot be scrolled to page. The hook now
reads back once from each such head, and the read runs on to the session's own rows.
* fix(native-chat): count the live window in the session's own rows, so a subagent's burst keeps its roster
The live window kept the newest 1,024 rows of every agent. A subagent writing
more than that trimmed its own spawn's roster row and the prompt, and its
section fell back to a closed, unnamed header. The window now keeps the newest
1,024 of the session's own rows and everything after, with an 8,192-row cap on
every agent's rows as the memory backstop. A transcript with no subagent rows
trims exactly as before.
* fix(agent-session): window history pages by the session's own rows, with a subagent's rows riding along
A history page held the newest 200 rows of every agent, so a subagent's burst
could fill a page on its own: the phone opened on an empty chat and "Load
earlier" landed nothing. A page now starts at the oldest of the newest `limit`
rows of the session's own and serves every row from there, so the subagent's
rows come with the conversation they happened in. The page stays contiguous,
the cursor still names its first row, and the byte bound still applies. A
transcript with no subagent rows gets the same pages as before.
Clients already take a page larger than its limit: both reducers raise their
retained window to the page's size. The mobile read-on and read-back stay for
older hosts.
* test(agent-session): a page reaches back to the start rather than leaving a subagent-only page
* fix(native-chat): an own-row trim takes a trimmed roster's subagent rows with it
The live window trimmed to just after the own row it dropped, so a subagent
whose roster row went kept its rows at the top as an unnamed section until
the parent wrote again. Trim to the oldest own row kept instead; it still
fires only once an own row passes the limit, so a paged-in run of subagent
rows at the head stays until then. With no subagent rows nothing changes.
* perf(native-chat): cap the live window at 4,096 rows, bounding each delta's re-derivation
Every live batch re-derives the transcript over every retained row. On the
largest real window (7,374 rows) that cost 7-8 ms a delta on desktop against
0.6 ms at the old 1,024-row window, and held about 26 MB of row content.
4,096 halves both. The most rows any local journal puts between a roster and
its subagent's last row, with the parent inside its own-row limit, is 3,005,
so no observed subagent loses its roster to the lower cap.
* fix(native-chat): a subagent section opens only while its roster is the running scope's live frontier
A section used to open whenever its roster said the subagent was working, anywhere
in the transcript and whether or not the session was running, so a background
subagent's section stayed open and grew mid-transcript while the parent moved on.
It now opens by default only while the session runs and the roster row naming the
subagent is the newest thing the parent produced, user rows aside. Newer parent
output closes it even while the subagent still works; the roster row keeps
showing that live state. A subagent still working is a running scope of its own
for the sections it spawned; a settled one closes its scope. Derived every
render, no latch; the reader's own open or close still wins.
* fix(native-chat): name a subagent's section from a client roster the window never trims
A section took its name and state from a roster row in the loaded window. Once a
burst trimmed that row, or the row sat on an older page, the section fell back to
an unnamed, closed "Subagent" header.
The shared reducer now keeps a roster keyed by agent id, folded from every roster
row and revision the client receives: pages, older pages and live batches,
including revisions of roster rows outside the window, which live batches already
carry. The first roster naming an agent wins and its revisions update it; a
removed roster row drops its entries; it is rebuilt on every page that replaces
the window and bounded to 512 agents. Sections take their name, state and
live-frontier place from it; placement stays under the loaded roster row, else
at the section's first loaded row. Only a subagent no roster ever named stays
unnamed.
* feat(agent-session): a history page names the subagents whose roster row is older than it
A page is a contiguous run of the journal whose older-page cursor is its first
item, so it cannot pull an older roster row in without skipping the rows between.
When a page held a subagent's rows but not the roster row naming it (about 11% of
the moments a reader could open a session on local journals), that subagent drew
as an unnamed "Subagent" header.
History and hydration pages now carry an optional `subagentRoster`: the first
roster entry naming each subagent whose rows are on the page and whose roster row
is not, with the row's id, sequence and revision; bounded to 64 entries and
16 KB. Items and cursor are unchanged. The client seeds its roster from it.
Rule 1 in docs/reference/remote-wire-compatibility.md: an optional field on an
existing frame, no capability gate. An older client ignores it (the released
reducer reads a page with it exactly as one without); against an older host the
field is absent and the section falls back to an unnamed header.
* Revert "fix(native-chat): an own-row trim takes a trimmed roster's subagent rows with it"
This reverts commit
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dcaef9dee5 |
test: retire relay, preload and shared cases that re-prove an owned contract (#24007)
Audit sweep over `src/relay`, `src/preload` and `src/shared` (1,087 test files reviewed). 101 case declarations removed across 40 files, 6 test files deleted outright, 1,143 lines gone. Executed-case count falls further, since several removals were `it.each` tables. Dominant patterns, by frequency: - Self-comparisons that cannot fail: `expect(f(x)).toBe(f(x))`, `JSON.parse(JSON.stringify(literal))` deep-equalling the literal for a type with no codec, and `normalizeKeyToken(t) === normalizeKeyToken(t)` presented as proof of memoization. - Object literals asserting their own fields back, where the guarantee comes from the type annotation and the runtime assertion cannot fail. - Copied inventories: constants compared to their own initializers, and a function returning a copy of an exported constant checked against that constant's literal contents. - Duplicate invocations of a contract owned at a stronger boundary, including provider-local replays of a shared helper. - Table rows varying a field production never reads, so every row runs one path. - Names promising more than the input exercises: a "Windows launch" case in a module with no platform input, and a case whose named branch is never entered. Two production symbols go with them, each a test-only export whose sole caller was a deleted case: - `getGitHubProjectRefInputByteLength` — a one-line forward to `getClipboardTextByteLength`. The real bound (`GITHUB_PROJECT_REF_INPUT_MAX_BYTES`) and its guard stay. - `GRAB_STYLE_PROPERTIES` — an intended shared source of truth that nothing ever consulted; the property set is hand-enumerated at three independent sites. One case was deliberately restored and strengthened rather than dropped. The relay integration suite is the only place the real `SshChannelMultiplexer` is wired to `RelayDispatcher`, so it reaches transport behavior the handler suites cannot (they use `createMockDispatcher`). Its `fs.writeFile` roundtrip is the one case producing a void result, and `JSON.stringify` drops an absent `result` member — a shape no other surviving case exercises. Restored with an assertion pinning what the client actually observes: `null`, not `undefined`. That assertion failed on first run, so the fact was previously unasserted anywhere. One deletion was reverted mid-audit. A case asserting that optional fields stay invisible to "old attach and ready decoders" builds those decoders from `z.object` schemas declared in the test file, so it demonstrates zod's unknown-key stripping rather than anything shipped. It is nonetheless the only forward-compatibility coverage these envelopes have, and `reliability-gates.jsonc:6232` names it as evidence verbatim, so it stays. Note that `check-reliability-gates.mjs` passed both with and without it: the script resolves manifest paths and commands, and does not check that a named assertion still corresponds to a live case. Kept deliberately: everything a reliability gate cites as evidence; the three `registers all expected handlers` RPC manifests (a dropped registration is a silent wire break no type checker catches, and one carries the STA-4571 `pty.ackData` ratchet); the `child-process` direct-import ratchet; and prototype-spy cases paired with a `.repeat(10_000)` input, which assert a real memory bound rather than merely forbidding a technique. Verified: `pnpm test src/shared src/relay src/preload` (1073 files, 11996 passed, 1 pre-existing `it.fails`, 131 skipped), `pnpm tc` after clearing `.tsbuildinfo`, `check-reliability-gates.mjs` (140 gates), `check:code-quality:changed` (0 new findings). |
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b7209b5ae9 |
perf(git): relist only the repo whose worktrees changed, and stop blocking main on sync git (#23998)
* perf(git): stop blocking main on the open-on-remote git cascade
`getRemoteFileUrl` ran up to 6 sequential `gitExecFileSync` calls on the Electron
main thread — `remote get-url`, then `getDefaultBaseRef`'s `symbolic-ref` plus up
to four `rev-parse --verify` probes — each with its own 15s timeout and no yield
between them.
A complete async twin already existed (`getDefaultBaseRefAsync` ->
`resolveDefaultBaseRefViaExec`, sharing DEFAULT_BASE_REF_PROBES), so the sync
cascade is deleted rather than converted. `getRemoteUrl`, `getRemoteFileUrl` and
`getRemoteCommitUrl` become async; all four downstream callers were already async
(`filesystem-git-url-handlers` inside `ipcMain.handle`, `runtime-git-diff-commands`
async methods) and the provider contract already typed both wrappers
`Promise<string | null>`, so no new async plumbing was needed.
Removes 3 of the 10 `gitExecFileSync` sites and the confusing name collision with
the unrelated async `getDefaultBaseRef` in hosted-review-creation-git-state.
The base-ref regression tests keep their coverage, repointed at the public async
`getBaseRefDefault`.
* perf(git): resolve the repo root in one sync spawn instead of two
getGitRepoRoot ran `rev-parse --is-inside-work-tree` and then `rev-parse
--show-toplevel` as separate blocking spawns. Each sync git call holds the main
thread for up to its whole 15s timeout, so the spawn count is the cost — and this
function is called twice per "Add Project" on a linked worktree, once directly and
once through getLinkedWorktreeMainRepoRoot's self-recursion.
Combined into one invocation. Safe only here: in a bare repo the combined form
exits non-zero, and both that throw and the plain `false` already land on the same
marker-scan fallback. probeGitRepo deliberately does NOT combine — it has to read
`false` cleanly to go on and detect a bare repo, which the combined form's exit 128
would misread as indeterminate.
* perf(git): rebuild only the repos whose authorized roots actually changed
One worktree create called `invalidateAuthorizedRootsCache()`, which dirties every
registered owner. The next authorization-requiring IPC then rebuilt by listing EVERY
repo — and the rebuild never consulted `dirty` when choosing what to list, so `dirty`
gated only whether a rebuild ran, not its scope. At 58 repos that is 58
`git worktree list` spawns, roughly ten seconds of git wall-clock through an
admission budget of four, to rediscover roots one repo changed.
Both halves were needed; scoping the invalidation alone changed nothing.
- `markAuthorizedRootsOwnerDirty` dirties a single owner, reusing the per-owner
primitives `registerWorktreeRootsForRepo` already used. It leaves `baseRevision`
and the per-repo revision map alone — that pair is the global side-effect-token
fence, and bumping it would retire in-flight tokens for untouched repos.
- `rebuildAuthorizedRootsCache(store, onlyDirty)` re-lists only owners that are
dirty, have no listing yet, or still hold recovered roots (those are retired by
comparison against a fresh listing, so skipping them would strand them as
authorized). Only `ensureAuthorizedRootsCache` passes `onlyDirty`; an explicit
rebuild keeps re-listing everything because callers use it to force a refresh —
`filesystem-auth.test.ts` pins that contract.
`invalidateAuthorizedRootsCacheForRepo` wraps the primitive and falls back to the
global form for an unknown owner or a missing store, rather than silently skipping an
invalidation and leaving a stale allowlist. Applied to the worktree-create path.
Changes that can alter the owner SET (store swap, host/WSL re-routing, nested-repo
import, folder->git upgrade) stay global. Removal paths are not converted yet.
The allowlist contents are unchanged and the failure direction is a false denial
rather than a false allow. The relist predicate is split into its own module so it is
testable alone and the cache file stays inside its line budget without a suppression.
* test(perf): measure what git orchestration actually costs the main thread
The existing churn probe (ORCA_MAIN_THREAD_DIAGNOSTICS=1) reported spawn-initiation
cost for git/gh/glab only — its 7 call sites all sit inside git/command-runner — so
it was blind to `spawnProcess`/`runProcess`, the repo's own mandated wrapper, and to
the blocking `execFileSync('ps')` per PTY resize. That understated total churn across
115 main call sites.
- `spawn-observer.ts`: a settable seam, since shared code cannot import src/main.
Unregistered in the daemon/relay/CLI, where it costs one boolean check.
- `spawnProcess` brackets `nodeSpawn` and reports; exec-file-capture's own report is
removed because it routes through runProcess and would double-count.
- `posix-pty-foreground-group` now reports its full blocking duration. Note this
lands on the daemon, not main, whenever the daemon hosts the PTY.
- `ORCA_UNMINIFIED_MAIN=1` build flag, because a minified main bundle cannot
attribute CPU-profile self time to real function names. Defaults unchanged.
- `main-thread-git-cost.spec.ts` + `analyze-main-cpuprofile.mjs`: sweeps concurrency
against real registered repos, captures the churn lines and a V8 CPU profile of
main per phase.
What it found, which is why this is worth keeping: at the width-4 admission ceiling
(~90 git:status/s) main sees ZERO event-loop gaps over 50ms and a worst gap of 23ms,
and is 85% idle. Git orchestration does not stall the main thread. Of the cost it
does incur, spawn-init is 58%, parse 5%, stdout drain 4%.
* test(perf): name the inspector params type the anti-slop gate requires
The broad `object` parameter trips anti-slop(no-object-parameters); the only
Profiler call that passes params sends `{ interval }`.
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80786ddccb |
fix(onboarding): build the agent step around skills, not CLI registration (#22720)
* fix(onboarding): build the agent step around skills, not CLI registration The checklist step "Enable Orca CLI" was marked done once the agent skills were installed, while Settings -> Browser still showed CLI registration as a pending step. Orca terminals already put the bundled CLI on PATH, so registration only matters for shells Orca did not launch, plus WSL, where `orca-ide` exists only once registered. - Rename the step to "Give agents Orca skills"; setup registers the CLI only for WSL (isOrcaCliRegistrationRequired), via onboarding-cli-registration.ts. - Settings -> Browser drops the CLI step outside WSL (2 steps instead of 3). - Skills panel: "All skills installed" + "Update skills" replaces the disabled button; status pills sit top-right; no "Installed" beside "Unavailable". - Full Disk Access moves to the "Start work in multiple repos" step. Fixes STA-8306 / #22524. * refactor(onboarding): simplify agent-skill step state after review - One done rule: isAgentCapabilitiesDone in feature-wall-setup-progress.ts, reused by the skills panel instead of a mirrored copy. - 'unavailable' is an install-status tone instead of a second boolean; pill/note rendering moves to AgentCapabilityStatusBadges.tsx. - "Update skills" skips Computer Use when it can't run (no warning toast); setup takes an explicit selection. - The WSL gate lives in registerOnboardingCliIfRequired; onboarding deps drop the now-unreachable host CLI branches. - BrowserUsePane: one cliRequired/cliReady pair, no host CLI status fetch, WSL-only enable path, single "Finish the steps below." string. - Full Disk Access placement goes through a SelectedStepFooter switch. - Prune orphaned locale keys (and their boot-bundle entries); fix a stale comment. * fix(skills): require CLI registration only for WSL setup * fix(skills): retain CLI install labels for WSL * docs(skills): clarify remaining WSL registration fallback * fix(skills): skip WSL registration when the host confirms managed CLI access * fix(wsl): prepare managed shell wrappers before onboarding probes * test: update daemon capability and terminal hook expectations * refactor(onboarding): remove CLI registration checks from skill setup * refactor(setup): remove redundant state and obsolete registration scaffolding * fix(settings): stop registering the CLI before installing the CLI skill The General > Orca CLI skill panel still registered `orca` on PATH before opening the install terminal, contradicting the rest of skill setup. Orca terminals already provide the CLI, so the shell command toggle now says it is only for terminals outside Orca. * style(onboarding): polish the setup checklist and first-run steps Make onboarding monochrome: completion is a neutral check, selection a neutral outline, and color only flags real problems. Tighten the checklist rail and header, single-line agent cards with a grid that scrolls only when it runs out of room, a labeled permission switch under the grid, calmer notification and skill cards, sentence-case copy, and a labeled "Hide checklist from sidebar" action. Workspace setup leads with "Add project" when no git project exists. * fix(emulator): drop the Enable Orca CLI step from agent control setup Agents that drive the emulator run in Orca terminals, which already provide the `orca` command. Agent control setup in the emulator card and Settings is now a single step: install the Orca CLI skill. * fix(onboarding): hide the Full Disk Access card once access is granted A granted card has no remaining action and only takes space on the add projects step. It also no longer flashes a "Checking" state before the first status arrives. * fix(onboarding): address review on permission warning, hide button, and translations - Name the permission switch "Yolo mode" (matching Settings > Agents) and state the risk: agents act without asking and some bypass their sandbox. - Hide the modal's "Hide checklist from sidebar" button below sm, where the header centers its title under it; the sidebar entry keeps its own control. - Translate every string this PR adds into es, fr, ja, ko, and zh. |
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fb52c0602a |
fix(terminal): release xterm's DEC 2026 render hold instead of waiting out its 1s timeout (#23920)
* fix(terminal): release xterm's DEC 2026 render hold instead of waiting out its 1s timeout
xterm paints nothing while DEC mode 2026 (synchronized output) is open and only
force-flushes after 1000ms. Codex wraps every draw in mode 2026, so any byte gap
or chunk split that loses the closing \x1b[?2026l freezes the pane for a full
second and then repaints in one burst.
Orca never emitted \x1b[?2026l anywhere, and three paths could destroy a TUI's:
the per-PTY pending cap drops buffered output wholesale (mode 2031 was already
salvaged there, 2026 was not), main sliced pending data at a blind 16KB offset
that can land inside an open frame or sever the 8-byte marker, and the renderer's
backlog warnings replace a queued tail that may hold the close.
- salvage the 2026 latch across dropped output, mirroring the existing 2031
salvage, and append the release on both delivery sites
- ground 2026 in RESET_AFTER_BYTE_GAP and the replay baseline, and in both
backlog warnings, so every drop path is self-healing
- make main's 16KB flush split frame-aware instead of a blind byte offset
- lift the synchronized-output scanner into shared/ so main and the renderer
use one implementation
Closing a frame early costs one premature repaint; leaving it open costs a
second of blank screen, so the asymmetry favours always closing.
Also adds the reproduction this needed: the pre-existing typing bench observes
the xterm BUFFER, which the parser fills while rendering is held, so it scored
these freezes as fast echoes.
* fix(terminal): stop the renderer's queue drain cutting inside an open DEC 2026 frame
takeQueuedChunk sliced a queued chunk at a blind byte offset to fit the 16KB
coalescing budget, which can strand a frame's closing \x1b[?2026l in the residual
until a later drain. Same defect as main's flush split, same fix: reuse the
frame-aware split helper.
Usually masked because the drain coalesces adjacent chunks and reassembles what
main split, but not when the budget boundary falls inside a frame.
* fix(relay): keep the SSH path's bounded slice outside an open DEC 2026 frame
pty-handler split pending output at a byte offset with a surrogate-pair guard but
no synchronized-output awareness, so a frame straddling the 16KB wire slice had
its closing \x1b[?2026l stranded in the remainder — the same defect just fixed on
the local path, on the path AGENTS.md requires us to consider.
Placed before the surrogate guard so that guard keeps the final say, and floored
at 2 so frame alignment can never walk a healthy slice into the guard's
decrement and then into the chunkChars <= 0 pause-and-retry path.
Also drops a dead `splitAt === 0` branch in takeQueuedChunk: both callers pass a
positive limit and the helper never returns 0 for one.
The two new split tests were each confirmed to fail without their fix.
* test(terminal): sweep the DEC 2026 split helper over escape-sequence shapes and every limit
Covers OSC 52, DCS, repeated open/close markers and limits 1..len+3, asserting the
result never exceeds the limit, never reaches 0, and stays byte-exact. Also pins
that a buffer beginning inside an open frame degrades to the blind offset rather
than doing something worse, and documents that callers do not thread latch state.
* fix(terminal): ground DEC 2026 on the daemon slice, the recovery replays, and the process boundary
Four more sites could strand the latch, found by sweeping every path that drops,
splits, or replays terminal bytes.
- daemon-stream-data-batcher: the 64KB bulk-write slice used a surrogate-only
clamp, and its remainder is HELD until 'drain' — "seconds for multi-MB
backlogs" per the file's own note. A frame straddling that boundary parked its
\x1b[?2026l behind the hold, blanking the pane past xterm's 1s timeout once per
frame for as long as the backlog lasted. This is the default daemon-backed pane
path, so it is the one users actually hit. The new
clampToSafeBulkWriteSplitIndex frame-aligns first and surrogate-clamps last,
and lives in daemon-stream-data-split alongside the policy it belongs to.
- replay-data-drain and remote-runtime-terminal-binary-snapshots wrote a bare
\x1b[2J\x1b[3J\x1b[H, which does not clear mode 2026 — so on the SSH/remote
reconnect path, the very event most likely to sever a frame, the whole replay
could paint nothing.
- ipc-pty-attach: trimIncompleteTerminalControlTail can cut a half-written
\x1b[?2026l while its opening marker survives in the replayed prefix.
- PROCESS_BOUNDARY_GROUND: the "process that armed these modes is gone" ground
omitted 2026, the last unexplained gap in that file. A disable, so it still
satisfies the recovery barrier's ownership scan (only ?25h may be an enable).
Recovery-path expectations updated where they pin the emitted bytes. Deliberately
NOT touched: apply-reattach-payload and ssh-snapshot-prepaint already ground via
buildSnapshotReplayPrologue.
Still unfixed, deferred with reason: terminal-output-frame-chunks.ts splits the
remote wire on accumulated UTF-8 byte width and needs a different shape than the
char-index helper; desktop clients reassemble in main's pending buffer, so the
exposure is mobile/web only.
* fix(terminal): emit the DEC 2026 release before the mode-2031 tail, and stop claiming the drop path writes it
Two corrections from adversarial review of the earlier commits.
1. Ordering bug I introduced. getDroppedMode2031RendererData ends with
`state.tail`, which extractPrivateModeScanTail deliberately retains as an
INCOMPLETE private-mode sequence so the next chunk can resolve it. Appending the
2026 release after it put an ESC behind a dangling CSI, aborting it and silently
losing whatever mode spanned the drop boundary. The release now goes first.
2. The drop-path release does not reach xterm in the dominant case, and the comment
now says so instead of implying otherwise. live-data-callback's droppedOutput
branch discards `data` and salvages only queries
(salvageRendererQueriesFromDiscardedRestoreData handles CPR/DA1/OSC colour;
\x1b[?2026l is not a query), so for hidden panes and visible panes outside
foreground-restore backpressure the synthesized release was dropped. The grounded
snapshot replay releases the latch instead.
I tried writing it through writePtyOutputToXterm there and reverted: it consumes
the pending hidden-output snapshot and broke
pty-connection-hidden-snapshot-resize-signals ("re-restores a skipped alt frame"),
so the release rides the restore rather than perturbing that state machine.
Residual gap, documented: a cap-dropped pane whose restore never arrives.
The salvage is still load-bearing on the fall-through path, so it stays.
* fix(terminal): release DEC 2026 on the reattach clears, floor the split, and correct the freeze framing
Remaining findings from adversarial review.
- apply-reattach-payload's three bare-clear branches (:63 daemon snapshot, :229
relay replay, :269 cold restore) had no release anywhere in their sequence: I
checked all seven POST_REPLAY_* profiles reachable via chooseReattachReplayReset
and none contains \x1b[?2026l. Only the buildMainModelSnapshotReplayWrites branch
was grounded, so covering the streamed replay path and not the main reattach path
was inconsistent. Verified no production code matches these clear strings — the
three test updates are mock equality, and each was confirmed to fail without the
source change.
- clampToSafeBulkWriteSplitIndex could return 0 (('\u{1F600}aaaa', 1) — alignment
returns 1, the surrogate clamp decrements to 0), which would leave a zero-length
slice that never shifts the batcher's queue entry and spin its drain loop.
Unreachable from today's only caller, but it is exported with an unstated
precondition. Floored at 1.
- Frame alignment could halve per-PTY flush throughput: main re-queues the
remainder with eligibleRound = round + 1, so the shortfall cannot be refilled in
the same round, and aligned size is floor(W/F)*F — 50% worst case in the 8-16KB
band, which is exactly the full-screen redraw burst that reaches the pending cap.
Alignment is now rejected below half the window, preferring throughput and
letting the reset profiles release the latch.
Framing corrected throughout: bufferRows records a row range and clears nothing, so
the pane freezes on its last painted frame — it does not go blank. The real trade is
"stale but coherent for <=1s" versus "immediate partial frame", and
RESET_AFTER_BYTE_GAP (written alone, with no repaint behind it in the same write) is
the one site that can newly flash a partial frame. Said so at the constant instead
of implying the release is free.
* fix(terminal): rename the shape-flagged symbols the anti-slop audit rejects
CI's anti-slop gate rejects "shape" in symbol names as structural rather than
domain language: `shapes` -> `outputSamples`, and
`writeCodexShapedEchoProbeScript`/`codexShapedEchoProbeScript` ->
`writeCodexEchoProbeScript`/`codexEchoProbeScript`.
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ad2e1b5efa |
fix(terminal): restore the mouse format with mouse tracking, so phone swipes don't type into Codex (#23946)
* fix(terminal): restore the mouse encoding with mouse tracking in every snapshot Swiping to scroll Codex from the phone on a Windows host typed legacy `ESC [ M` mouse reports into the Codex composer (#23818). SerializeAddon re-arms mouse tracking (?1000h/?1002h/?1003h) but never the SGR encoding (?1006h/?1016h). Any snapshot taken from a desktop pane's xterm (the runtime seeds its headless model from it after a reattach, and serves it to remote viewers when no model exists) therefore restored "tracking on, legacy encoding", and the phone encoded wheel events as X10 bytes, which ConPTY hands to Codex as keystrokes. serializeWithAbsoluteCursor, the one wrapper every Orca snapshot producer uses, now appends the encoding xterm itself parsed, read from xterm's mouse state service. The daemon/runtime headless model reads tracking and encoding from xterm too, so its regex mirror of the DECSET stream is deleted (one source of truth; one less regex pass per PTY chunk). Mixed versions: no wire field changes. A new host's snapshot carries an extra DECSET that old desktop and phone clients already parse; an old host's snapshot restores exactly as before. With tracking off the encoding alone sends no reports, so the wheel still scrolls scrollback. * test(terminal): pin the mouse-encoding read against the renderer xterm build * fix(terminal): type the xterm mouse-state read behind named shapes |
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6b36a2c3fb |
feat(native-chat): mid-turn messages wait as editable cards above the composer (#23731)
* refactor(native-chat): remove the unused terminal handoff No client ever called agentSession.requestHandoff or mounted the handoff chrome. Delete the handoff coordinator, the terminal-owner runtime, the proof write path and the unmounted UI. Keep agentSession.handoffStatus, which released desktop clients read for worktree activation, and let records an older build left mid handoff reconcile through the ordinary restart and recovery paths. * fix(native-chat): never let the pre-stop snapshot hold a chat's stop Eviction now drains delivered events before quit's resume-offer snapshot. An unbounded wait there sits ahead of the provider stop, so a sink whose journal write stalls kept the child running until the step deadline aborted the eviction. The offer is advisory: bound the drain and stop the child regardless. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop helpers only the terminal handoff called `claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and `queryWindowsProcessRowsFresh` lost their last caller with the handoff. The fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`, the teardown path that still depends on that contract. Co-Authored-By: Claude <noreply@anthropic.com> * docs(native-chat): stop citing the removed handoff in lifecycle comments Six comments still named the handoff coordinator, a handoff suspend, or a terminal-owned session as live participants in the flows they describe. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stalled snapshot drain without a cast Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): pin that a start dead before proving owes no settlement The removed restart handoff test pinned this branch; nothing else did. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): keep the owner-status read behind an in-flight attach The handoff removal dropped the per-session queue from `handoffStatus`, so a read landing mid-start reported the reservation (no owner) instead of the settled chat owner, and shipped desktop clients blocked worktree activation on it. The read is queued again, as it was before the removal. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(terminal): remove the agent-session PTY write gate The gate only refused a write when a PTY had been bound to a chat session, and the only code that ever bound one was the terminal handoff this branch removes. With it gone, every admit/readmit returned "admitted" unconditionally, so the checks on the renderer write path, the runtime controller backstop, terminal.send, agent prompts, preview input and orchestration pointers, the refusal fields on terminal.send and worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane orchestration routing could no longer run. Ordinary writes take the same path in the same order as before. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop the transcript helpers only the handoff called appendLegacyTranscriptMessages fed the terminal transcript catch-up and proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost their last caller with the handoff. Their tests now go through the live entry points instead: the roster bounds through the legacy import, the pinned-read and growth tests through the ancestry replay the history window uses, and the marker rules through the string proof in their own file rather than the session-file resolver's. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): stop calling a starting chat "mid-handoff" A send refused because the chat's owner is not settled showed "The session is mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that reach it are a chat that is still starting, or one whose previous agent process has not yet been confirmed stopped. The message now says which of the two it is. The refusal code is unchanged. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stand-in roster decoder without a cast Co-Authored-By: Claude <noreply@anthropic.com> * refactor(codex): name the pinned rollout lookup for what it does With the terminal handoff gone, the module named codex-tui-rollout-proof holds only the pinned rollout lookup that structured Codex launches use to resume a thread, so the name described code that no longer exists. Rename the module and its options type. Also drop a mobile allowlist assertion that pinned the removed agentSession.requestHandoff method, which no longer exists to allow. * refactor(native-chat): type the owner-status reply as the host sends it The handoffStatus reply type still listed the terminal handoff's fields and states (terminal placement, host label, proof retry, queued and waiting phases, the to-terminal direction). No host writes them any more and the only client reader parses the reply as unknown, so they described nothing. The reply on the wire is unchanged. * refactor(native-chat): normalize terminal-handoff lease values once at decode Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types still admitted them, so readers across the host kept branches for values no path produces and the compiler could not point at them. The store now validates the on-disk shape, which still accepts those values so an older record is not quarantined, and maps them once while parsing: - `preparing` and `old-owner-stopped` become `recovering` - a `tui` lease becomes `native`; when it records a process it also becomes `conflicted`, the claim every build probes but never stops. A plain native owner would be stopped by restart recovery, here and in older builds. Revisions are taken over the normalized state on both sides of every compare, and the mapped record reaches disk with the store's first transaction, the same way the tab-id backfill does. The in-memory types narrow to what this build writes, and the branches that existed only for the removed values go. Structured-worker identity keeps its verdict for a former terminal owner by refusing a conflicted claim rather than a non-native kind. * refactor(native-chat): stop threading the owner kind through a reservation A reservation only ever names a native owner now, so the request no longer carries a kind and the reserved lease records `native` directly. The attach params keep `runtimeKind`: agentSession.ensure and create accept it, and the operation fingerprint stored in the ledger covers it. * test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else Hiding a tab also committed the visibility index, so the no-op transaction wrote the file even when its open-time revision was wrong. Committing the index first leaves the pending rewrite as the only reason to write. * fix(native-chat): name a chat write by its target, not the owner generation A write carried the fence of the last frame the pane read, and the host refused it unless that fence was still current. An idle release and the restart after it each move the fence, and the release publishes nothing, so a send after a release was refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a cold start was refused as stale. Every write already names what it acts on: a send its conversation, a cancel its turn, a prompt answer its item revision, a rewind its epoch; an option is last-writer-wins. So admission stops comparing the client's fence, and the rebase that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it. The writer-lease check stays, and so does the attach's compare-and-swap. Frames now stamp the fence read when each frame is sent instead of a copy each subscriber kept, which went stale on the same release. * fix(native-chat): every journal append reaches the chats that are open A journal write and its delivery to open readers were two calls, and some writers made only the first. A failed start whose lease could not be handed back, a provider revision with no frame behind it, and eviction's settlement were all journaled without reaching an open chat. A journal handle now reports every durable change, and the host's session map binds that report to the session's readers when the handle is set. Writers no longer publish what they append; the per-writer publish calls are deleted. * test(native-chat): an epoch replacement reaches the open chat * test(native-chat): each row reaches an open chat once, and a live handle enters only through the map * test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite The seeded record had no surface tab id, so the next open backfilled one and that rewrite alone made the no-op transaction write. The test passed with the legacy-lease rewrite signal removed. * test(worktree-activation): restore the OMP surfaced-agent resume test The handoff removal deleted it alongside the terminal-owner tests, but it covers the surfaced-PTY block that still guards resume, including an agent whose ownership is unknown. * perf(native-chat): a publish behind a delivered commit reads nothing Each commit now delivers itself, so the publish a provider frame still sends afterwards found every reader caught up but still read rows and rebuilt the timeline for each one. A caught-up reader now skips the read. * test(native-chat): state why the teardown test's fake journal is safe to cast * docs(native-chat): say mutation admission checks only the writer lease * docs(native-chat): drop the send rebase from comments that still described it * fix(native-chat): a message is accepted, then delivered A send to a chat with no running agent restarted the agent inside the send call, before the message was recorded, so the client waited for the whole start and a failed restart refused the message. Claude held prompts sent during startup, and those could settle as "unconfirmed". A send is now accepted inside the session's serialized queue: one ledger row and one submission row marked handoverRecorded, published, answered pending. A per-session delivery loop exists while a message is queued. It starts the agent through the same serialized attach a hold uses, waits outside the queue for a Claude child to prove its start, and hands the oldest queued message over as its own serialized step, writing dispatch{pending} before the adapter call. A start it needed and did not get writes one error-tone row and rejects every queued message with the same words; a start Stop cancelled writes none. Settlement follows from the rows. A queued message is provably unwritten, so a close, an eviction or an exit rejects it. A handed-over message stays in doubt. A queued row at or below the sequence a handle found when it opened was left by an earlier process and is rejected at open, with no latch. Stop withdraws queued messages with no writer lease and no fence. An attach failure keeps the conversation open, and the attach adopts its journal. Owed work counts the loop and queued rows. A compaction or rewind found prepared when a conversation opens was started under a child this process no longer has, so the open settles it rather than leaving it to refuse every send until a view attaches. The open cursor is scoped to its epoch, because sequences restart when an epoch is replaced. Deleted: restart-before-admission, recordFailedRestart, the fence rebase, Claude's startup gate, the attach's forget on failure and its own crash boundary. Clients without agent-session.accepted-send.v1 get their reply held until the handover; the desktop and paired desktop lists advertise it. * fix(native-chat): settle queued messages only for the child that ended A child that proved its start and then exited before its message was handed over left the message queued: the exit settlement returned early when nothing else was in flight. Delivery then started another child for it, and a child that died the same way started another, without end and without a row. A retried settlement for an earlier generation, run by the attach that delivery started, did the opposite: with that generation's turn unfinished it rejected the message queued for the child being attached. The settlement now takes the rejection for queued messages from its caller. The unexpected exit and the eviction pass one, and it applies even with no other work in flight; the retry for an earlier generation passes none. * fix(native-chat): an adoption that fails to import keeps the conversation open The attach now writes into the conversation's own open journal, but a failed transcript import still closed it as if it were the attach's provisional one. The conversation stayed indexed with a closed journal, so every later send answered "could not be recorded" and every attach failed again until the app restarted. The import now closes only a journal the attach opened for itself. * perf(native-chat): the recovering open reads the journal once Every conversation open now goes through the recovering open, including the read restore of every chat at startup, which used to replay its journal once. The recovering open replayed it twice: once to probe it and again inside the open. The probe is now handed to the open as its load. * fix(native-chat): an attach that fails after indexing its child leaves no child behind A failed attach now keeps the conversation open, but a failure after `onAttached` indexed the child (the rewind or compaction recovery, or the attach's own success record) left that entry claiming a child the failure path had already released. The next send found the phantom, skipped the start, and wrote at a fence the journal had moved past, so the message stayed queued for good. The entry now drops the released child and its event sink, and follows the record's fence, as a failure before indexing already did. * fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer The error strip for a message the host accepted and then did not deliver matched the entry before the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not send your message" with nothing to retry. It now reads the reconciled entry. A rejection the journal records before the send's own pending answer lands is final as well: that answer no longer puts the entry back to dispatching with no Retry. * fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down The preamble waits for its submission to be delivered while the worker's agent starts. When that wait ran out it threw operation_unknown, and the failed-start teardown then closed the session, which rejected the very preamble the host was about to deliver. It now reports a turn start nobody observed yet: the worker is start-unknown with its session kept, the host delivers the preamble when the agent starts, and the worker's report settles the dispatch as for any unobserved start. The receipt no longer suggests reading a screen a structured worker lacks. * fix(native-chat): a message rejected while its chat was closed reads as not sent A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked every later message behind a Retry and no reason, and the delivery probe, seeing the journal already answered, never ran. The reconcile now settles it as rejected like a dispatching one. * test(orchestration): name why the readiness settlement fakes are cast * fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent * docs(native-chat): drop the fence from the admission the send effects run behind * docs(native-chat): give the fence move on release the reason that still holds * docs(native-chat): stop citing a write fence check in launch and mailbox comments Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease. * refactor(native-chat): the provider child is its own record A conversation now outlives any number of provider children, so the child is one record on the conversation's entry instead of five loose fields beside its journal. It is written in one place: indexed only once an attach has fully succeeded, and ended through one function that an exit, a failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence. - A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence patch after it are gone. - Conversation writes read the record's fence, the way mutation admission already does; a child's own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of the conversation's fence, are gone. - The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer dropped when an attach replaced the whole entry. - Stop on a child still proving its start stops only the child: its lease goes back and the chat is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus the conversation's close. - The settlement retry uses the conversation's own journal, opened through the host's one open. * fix(native-chat): the delivery loop alone settles a message its start or child failed A queued message was settled by whichever path happened to end the child first: the loop, the unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that rejected every pending row. That gave two failure rows with different tones for one start, a loop that could hand over to a different child than the one it waited on, and a Claude start that died while starting reading unlike every other failed start. - The loop remembers the child it waited on. At handover, if that child is gone or replaced, it reads how it ended: a Stop continues; anything else writes one failure row and rejects every queued message with the same words, then stops. A child still starting whose start the adapter says did not land fails the same way. The exit, eviction and the settlement retry only settle the handed-over and legacy rows of the child that ended. - One failure row, always an error, keyed by the start. A start a view began that dies with nothing queued writes the same row through the same builder, so a second report revises it. - The open no longer rejects leftovers; the loop's first step does, and the open wakes it. - `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the failure before the exit is processed. - Quit closes every conversation the way closing a chat does: what is still queued is rejected as closed, with or without a child, and a start the loop already has in flight is waited for so the child it produces is stopped rather than left behind. * refactor(native-chat): a stopped child ends on the one reading of its stop The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that verdict to the child's ending, so the host never forms a second view of whether the root is gone. Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition, and a failed re-attach passes what its release saw. The end-of-child record can therefore also carry a stop whose root was not seen to go, which nothing ends on yet. * feat(native-chat): the host says it accepts a send before any agent has it The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same string capable clients already send. A client can then tell a host that answers a send at acceptance, and admits a Stop with no writer before a turn starts, from an older one that still restarts the agent inside the send. Additive: an older client ignores a capability it does not know. * refactor(native-chat): an attach never opens a journal of its own The attach adopts the conversation's open journal, which outlives it, so it no longer opens one for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag that told the two cases apart is gone. Tests that attach without a host open the conversation the way a host does. * fix(native-chat): a moved fence resends nothing on a host that accepts first The outbox treated any fence change as a new owner: it dropped the answer of a send in flight, queued that send to go out again under the same id, and unblocked a refused head. On an older host that is how a send the restart refused, unrecorded, gets another try. On a host that records every send before it starts an agent, a fence moves because that start ran, so the same rule resent into every failed start. With a fence stamped on every frame, that became a loop. The outbox now reacts to a fence change only when the host has not advertised that it accepts a send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed start reaches the client as a rejected message it keeps with its Retry. Against an older host, or before one has answered, the outbox behaves as it did. Desktop and paired web share this hook. * refactor(native-chat): a child's end says whether the user or the host stopped it The end-of-child record's cause now tells a user's Stop from the host stopping the child for a cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a user's Stop, as before, and fails the start it was waiting on after a host stop, with the one error row and every queued message rejected, in the stop's reason when it gave one. The reason stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet. * fix(native-chat): a chat whose only work is a queued message is not offered for resume A message accepted while the agent was starting counts as working in the chat, and quit rejects it as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a chat whose agent never had the message. The snapshot now reads only what was handed over. * test(native-chat): type the queued-message fixtures in the resume-offer tests * fix(native-chat): a start that dies while a message waits on it is that message's failed start Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When that start died, its exit wrote the start's error row and left the message queued, so the delivery loop started a second agent into the same failure and wrote a second row. A child's end now records where the conversation's journal stood, and the loop settles a message accepted before a failed start ended with that start: one row, under its key, and no second start. A message sent after the failure still gets a fresh start. * docs(native-chat): say what an attach's open conversation and unconfirmed ids are now * test(native-chat): pin what a failed start settles, and what a resume offer names A view's child that dies while a sent message waits settles that message only when it died starting and no child has taken its place: a proven child's crash, or a second start since, gets the message delivered. The resume offer names the handed-over message, never a newer one still queued. * test(native-chat): the failed-start pins fail on what the message became, not on a timeout * test(orchestration): the preamble's host stub is typed, not cast The preamble send now takes only what it reads of the host, the send, the settlement wait and the record's fence, so its test builds that host with real types instead of `as never`. * fix(native-chat): a Stop that names no turn stops what the conversation has in flight Between handing a message to the agent and the agent opening its turn, there is no turn id a client could name, so a Stop in that gap was refused as "already finished" while the agent went on to answer. A cancel's turn id is now an optional precondition instead of its target: with none, the host withdraws what is queued and, when the journal still reads working, asks the adapter to stop whatever the child has in flight. Claude's interrupt is session-scoped, so it is guarded by fence and acquisition generation rather than a turn identity. Codex interrupts the turn its latest turn/start answered with until the journal shows one. A cancel that names its turn behaves exactly as before. * fix(native-chat): Stop is there from the moment a message is sent The composer showed Stop only once the agent had opened a turn, so for the second or two after a send the chat read "thinking" with no way to stop it. Against a host that takes a Stop naming no turn, Stop now shows whenever the chat reads working (a turn, a queued message, or a handed-over one still unanswered) or this client still has a message on its way. Pressing it, or Escape, first drops every outbox entry the journal does not hold yet, so nothing goes out after the Stop, then sends the conversation-wide cancel. A send already on its way reaches the host ahead of the cancel, which withdraws it there. Against an older host Stop still needs a running turn. The unconfirmed-send probe moves into its own hook so the outbox hook stays in budget. * fix(native-chat): Stop before a turn is gated on its own host capability A host that accepts sends first (agent-session.accepted-send.v1) can still predate the cancel that names no turn and would refuse it as invalid, since clients and hosts ship independently. Hosts that take that cancel now advertise agent-session.conversation-stop.v1, and the renderer shows Stop before a turn opens, and sends the no-turn cancel, only to a host advertising it. Every other host keeps a Stop that needs, and names, a running turn. The host capability probe the accepted-send hook used is generalized so both read one path. * test(native-chat): a build advertises conversation stop exactly where its cancel may name no turn * fix(native-chat): a view never restarts a chat whose last start failed A Claude chat whose CLI exits during startup left one red row per start, and every time a view bound to it (the chat opening right after its create died, or the user switching back to it) the hold started the CLI again, so the same launch-failure row repeated. Only a send retries a failed start now, the same rule provider-exit recovery already applied; the rule lives in one predicate the hold, exit recovery and the delivery loop share. * test(native-chat): start the child the loop waits on with an attach, not a second view A view no longer starts a child whose last start failed, so the R2 case that waits on a child started since the failure now gets that child from a client attach, the one non-send starter left. * fix(native-chat): settle a gone generation's turn wherever a conversation opens A send that opens a chat this process had not read yet (after a crash, from a phone or the CLI) went through the delivery open, which never settled what the dead generation left running; only the read restore and a successful acquire did. When the send's start then failed, the turn stayed running for every reader. The settlement now runs in the one journal open, at the crash boundary, for every opener except an acquisition, which settles from the evidence it read before its reserve; the read restore's separate step is gone. * test(native-chat): prove the next child's start settles the turn an earlier child left The R1 case lost its only settlement assertion when the latch it checked was deleted. It now seeds the running turn the earlier child left and asserts it ends at the exit's receipt, with the exit's row, before the message is handed to the new child. * test(native-chat): count a failed start's rows by row, not by text Comparing the set of texts passed when two different rows carried the same words, which is the duplicate the test exists to catch. * test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget * test(native-chat): pin the open's and the send's start and row counts, however the view binds Opening a fresh chat whose starts fail makes one start and one row, with two views bound before or after the create's child died; one send makes one more of each. * fix(native-chat): settle a gone generation's turn at every open but an acquisition's The journal open skipped the settlement whenever the lease read reserved or live, to leave an acquisition's own open to the acquisition. But a lease a crashed process left in recovery also reads live, until the next acquire resolves it. A send that opened such a chat, from a phone or the CLI after a crash on a host that could not prove the old owner gone, skipped the settlement; when its start then failed, the dead turn stayed running for every reader. The acquisition now says it is the opener, and every other open settles, whatever the lease still claims. * test(native-chat): hold the create's start open until the views bind The "view binds while the create is still starting" case gave the create a 300 ms head start and asserted the views bound before it died. On a loaded runner the holds took longer, the create's exit landed first, and the case failed its own precondition. The create's initialize now waits on a gate the test releases once the views are bound. * fix(native-chat): Stop reads the one working rule every session list reads While Claude retries a rate-limited request it never echoes the message, so no turn opens: the sidebar read Working from the unanswered send while the composer showed Send. The chat's working state, the host's session-list status and the host's no-turn Stop check now call one shared rule instead of three copies. * test(native-chat): a rate-limit retry pins only that no turn opens, not how its rows are kept * fix(native-chat): Stop leaves a message waiting on its Retry, and does not show for one A send that failed holds the queue until the user retries it, and one the host restarted under is parked the same way. Stop counted both as still on their way, so it showed in an idle chat and could never go away, and pressing it dropped the failed message along with its Retry. * test(native-chat): the chat's Stop and a session list read the main agent alike over their own copies The chat reduces its stream and a list reads the status feed. Driven through the real host for a rate-limit retry with no turn, a subagent still running after the main turn, and the handed-over child exiting. * refactor(mobile): the chat reads the main agent's working state through the shared rule Behaviour is unchanged: the same two terms, now from the one function the host projection and the desktop chat read. * fix(codex): a Stop naming no turn never interrupts an earlier turn It fell back to the id an earlier turn/start answered with when the latest start went unanswered, or when the journal showed a compaction Codex had not started, and reported that as stopped. * fix(native-chat): a Stop naming no turn never says a turn had already finished When the provider found nothing left to stop, for instance a turn that ended between the host's check and the interrupt, the chat got "The provider had already finished this turn." for a turn the Stop never named. It now ends quietly, as a Stop with nothing in flight does. * fix(native-chat): one Stop the host could not settle no longer refuses every later one A Stop naming no turn has one operation key per session. When the host could not settle one, it answered every later Stop under the same id as unknown until the id expired. Once the host says so, the next press is a new Stop; transport doubt still replays the same id. * refactor(native-chat): drop the composer's second error formatter After the merge with main, every chat write in the composer path reports its failure as a typed outcome worded by the refusal-notice table, so the send's catch sees only a local throw. The {code, message} formatter this branch added for it has no payload left to format, and its claim to be the one way a chat words a failure is no longer true. The composer send is main's again. * test(native-chat): pin the reason on a message rejected while its chat was closed The reopen test checked only that the message reads as not sent; it now also checks the Retry row carries the host's reason. * test(native-chat): read Stop operation ids without a cast * fix(native-chat): a Stop whose answer was lost no longer swallows the next one A Stop that names no turn has one operation key per chat. When its answer was lost in transit, the chat kept the id, so every later Stop replayed it; the host answers a replay as already handled, so for up to a day Stop stopped nothing. The id is now dropped once the call settles, however it settles. A second press while the first is still on its way still shares its id. * refactor(native-chat): a Stop naming no target keeps its operation id only for its own call The chat kept each write's operation id per payload across calls, and dropped it only on some settle paths. That is right for a write naming what it acts on, but a Stop naming no turn, and a stop of every background task, share one payload with every later one, so any path that kept the id made the next Stop replay as already handled and stop nothing. One path was still open: an answer that arrived after the chat moved to a new fence. Whether a write names its target is now decided once, before its id is picked. One that names none keeps its id only while its call is in flight, so a press made meanwhile joins it, and releases it when the call settles, however it settles. The release runs only while the key still holds that call's id, so a joined call settling late cannot drop a newer one's. This replaces the per-path exceptions for a thrown call. * test(native-chat): read the Stop fences without a cast * test(native-chat): pin the new id for a named cancel the host could not settle After the Stop naming no turn moved to a per-call id, the only test of the unknown-refusal release was gone, and the half that stays, for a cancel naming its turn, could be removed with every test green. * fix(native-chat): a Stop pressed after a new message stops it, even while the last Stop is unanswered A Stop naming no turn shared its operation id with any press made while it was still in flight. The host runs a chat's writes in order, so a message sent between two presses was accepted after the first Stop ran, and the second press replayed that Stop as already handled and left the message running, although the chat had already withdrawn it from the outbox. A write naming no target now gets a new id on every press and is never kept, so each Stop acts on whatever is running when the host reaches it. A write naming its target keeps its id exactly as before. A double press can ask the provider to stop the same turn twice, which it tolerates. * fix(native-chat): Stop no longer blinks off as Claude opens the turn for a message Claude's echo of a sent message both answers the send and opens its turn. The echo settled the send first, so the host published the message as answered one frame before the turn it opened, and for that frame the chat read nothing running: Stop turned back into Send, and Working blinked off in every session list, for tens of milliseconds on each turn. The echo now settles the send after the turn it opens has been emitted, so the running turn is published first. * fix(native-chat): a message a Stop withdrew comes back to its sender's composer A Stop withdraws every message the host holds but has not run, and S also drops the ones this client had not handed over yet. Either way the message left the chat and its text survived only in a hidden journal row and the in-memory ArrowUp history. The sending client now puts the withdrawn text and images back in that pane's composer, after whatever is typed there. Withdrawn is read from the rejection reason through one shared check, which the outbox reconcile now uses too. The composer is written before the entry leaves storage, so a failure between the two repeats the text instead of losing it, and an entry storage no longer holds is never given back again, so a replay, a second view or a remount restores it once. Only this client's outbox holds the entry, so other viewers still see the message disappear. A failed Stop withdraws nothing on the host and gives nothing back. * fix(native-chat): withdrawn text put back during an IME composition is not lost While the IME owns the field, the composer ignores a programmatic draft, and the next composed keystroke wrote the draft without the restored text, after its outbox entry had already been dropped. The composer now holds text appended mid-composition, keeps it in the cache after each composed write, and shows it once the composition settles, the way attachments that land mid-composition already wait for it. * test(native-chat): pin that only a withdrawn message comes back to the composer * test(native-chat): set up the composer's window API for every describe in the composition-race file * docs(native-chat): note that the withdrawn check reads the legacy reason until a typed category lands * test(native-chat): pin that text put back mid-composition shows once, even beside a mid-composition clear * feat(native-chat): host-owned queued-message draft store in the session journal A queued mid-turn message is a draft row in the session's journal.db, created idempotently at every writable open with no user_version bump so a downgrade stays writable. Consume converts one draft into an ordinary submission inside the journal writer's own transaction (exactly-once), and a standing writer hook returns a consumed draft only when a committed row newly settles its current consumed submission to a non-withdrawn rejection — the same decision the reducer folds rows through. Open-time repair re-derives returned state behind the stored fact; retention never prunes a row whose refusal could still return it. * feat(native-chat): queued-messages wire contract, dark capability, and send classifiers The send result becomes a union: today's submission arm unchanged, plus a capability-gated queued arm only clients that sent delivery:'queue-if-active' ever receive. Whole-list queuedMessages fields ride the subscribe events and history pages; Stop gains withdrawQueued with the withdrawn bodies in its result; clear's result carries withdrawn drafts too. Both classifiers treat queued as accepted/spent. agent-session.queued-messages.v1 is defined but deliberately NOT advertised: the rollout prerequisites (Claude fold receipt, integrated Codex steer matrix) are not in this host. * feat(native-chat): queue a capable mid-turn send as a draft, drain it at turn end, and let Stop and clear return its text A send carrying delivery:'queue-if-active' while the session owes work — or behind an actionable backlog — becomes a host-held draft instead of a submission. A serialized drain woken by journal commits, draft mutations and conversation opens re-derives its gates from live facts (streamed-event barrier first, backlog never a gate) and converts the oldest actionable draft through the exactly-once consume; from that instant today's delivery pipeline runs unchanged. Stop pauses the withdrawable frontier at the stop step (a process-level pause set that survives handle eviction and, via the per-process host instance, restarts), then withdraws it with the text in the result for capable clients; /clear does the same for the superseded source. The draft list publishes whole per emit with identity dedup, rides only the final catch-up page, and attaches to history pages. queuedMessageSend overrides queue policy only; queuedMessageDelete hands the body back. Replays for all of it answer from op-stamped tombstone receipts. * test(native-chat): pin mid-turn queueing against the real host Accept (working/backlog/text-only/budget/replay), the one-per-settle drain, returned cards with N1 overtake and the N4 re-send loop, Stop withdraw with tombstone replays, the process-level pause across evict/reopen, Delete receipts, /clear returning the withdrawn text, and publication (hydration, unchanged-cursor insert, same-frame consume, identity dedup). * test(native-chat): read the queued receipt ids before the wait closures * chore(native-chat): SAFETY rationales on the sqlite row casts and a cast-free mobile narrowing * fix(native-chat): queued-draft bookkeeping never costs a publish, an open, a clear or a history read - Cache the draft list per draft-table revision. The drain re-checks on every journal publish, so each streamed delta was running a SELECT and parsing every draft body the handle had ever written (tombstones included). - Open-time repair/prune failures are reported and skipped; they no longer fail opening the chat. - /clear on a source with no drafts answers exactly as before: no empty `withdrawnQueued`, no empty write transaction, no extra publish. A draft read failure after the committed clear no longer turns it into a refusal. - History pages read drafts through the same guarded reader as subscribers. - Publication moves to its own module; the held-draft rule lives with the pause state; one pending-prompt check; drop an export nothing calls. - Tests: restart-held drafts, pre-consume failure pause + Send retry, failed open repair, clear with no drafts. * fix(native-chat): a Stop that withdraws a consumed draft's send gives its text back A queued draft converted into a submission leaves the sender's outbox, so when a Stop withdrew that submission before the agent received it, the text had no holder: the draft stayed `dispatched` forever and nothing restored it. - The returned-card rule now follows every effective `rejected` settlement of a consumed draft's submission, a Stop's withdrawal included, with the withdrawal reason stored as the fact (`dispatchWasWithdrawn`). The writer hook and the open-time repair share the rule, so no rejected submission can leave its draft `dispatched`. - A capable Stop withdraws the cards it returned itself along with its frontier, stamped with its caller-scoped key: the text comes back once in `withdrawnQueued` and replays from the tombstone. An old client's Stop leaves a returned card. - Stop's draft steps move to structured-agent-session-queued-stop.ts. - Tests: Stop between consume and the agent's receipt for both client kinds, its replay, a crash after the withdrawal, restart in the window, and the repair of a hookless withdrawal. * perf(native-chat): the queued-draft drain takes no serialized step while the agent works The drain was woken by every journal publish and, with a draft waiting, queued a serialized step (streamed-event flush included) per publish, only to find the session still working. During a streamed turn that is one step per delta, contending with Stop and every other mutation for the session's queue. The pre-check now also skips while the session is working. Whatever ends the work is itself a commit that schedules again, and the step still re-reads every gate after its flush, so no wake is lost. - Test: queued sends during a turn take no drain step; settling the turn drains. * fix(native-chat): a clear withdraws queued text only for a caller that can take it back; paused reasons are markers An older client running /clear had its source's waiting and returned drafts withdrawn and their text returned in a `withdrawnQueued` field it does not read, so the text was lost. Clear now mirrors Stop: `withdrawQueued: true` on `agentSession.conversationCommand` (strict params, sent only when the queued-messages capability is advertised) withdraws the drafts and returns their text once, replaying from the tombstones. Without it the source keeps its cards: the supersession fence already blocks the drain, and Delete still hands the text back. A paused card's reason was host-authored English on the wire. It is now a typed marker (`send_failed`) the client localizes, like `returnedReason`; a client treats an unknown marker as a plain pause. - Tests: an old client's clear leaves the cards and its replay stays field-free, then Delete returns the text; a capable clear returns the text once and replays it; the paused marker. * fix(native-chat): a draft pause that commits no journal row still reaches live subscribers A pause writes no journal row, so it reaches subscribers only on the next publish. Two pauses had none behind them: the drain's pre-consume failure (the session is idle by then, so nothing else commits) and an old client's Stop that interrupted nothing. A live card kept reading as waiting, with no failure marker, until some unrelated commit arrived. The drain now publishes after pausing a draft it failed to convert, and an old client's Stop publishes when it paused a frontier. - Tests: a failed conversion and an idle old-client Stop each reach a live subscriber as a paused card; both fail without the fix. * fix(native-chat): a failed clear wakes the queued drain, a failed Stop withdrawal still publishes its pause A conversation command can settle on the record alone (a retried clear that fails), so drafts held behind its prepared phase waited for an unrelated journal commit; the command controller now re-derives the drain when any command finishes. A capable Stop whose withdrawal write failed never published the pause it set, and a publish failure after a committed withdrawal (Stop or clear) dropped the bodies from the answer; publishing now happens outside the withdrawal and can no longer discard its result. Tests reset the process-level pause set between cases: operation ids repeat per test, so a shuffled order held later tests' drafts. * refactor(native-chat): the draft store notifies through the journal's commit listener, the hold is a stored row fact, and one typed gate decides every queue hold R1: every standalone draft-table transaction that changed rows (insert, withdraw, hold, open-time repair) fires the journal's own commit listener after COMMIT, so a draft or hold change publishes and wakes the drain through the same path a journal row does — no call site can forget. All hand-written publish/wake plumbing for draft changes is deleted; wakeQueuedDrain survives only as the record-input wake (a conversation command can settle on the record alone). R2: the process-level pause set becomes a hold_reason column on the draft row (pre-ship, so no migration): holds survive eviction and restart, keep their send-failed marker across restarts, die with the session's journal, and are cleared by consume and withdraw in their own UPDATE. The host-instance derivation stays the one restart mechanism. R3: one typed structuredQueueHold (blocked | command | prompt | working) consumed by admission, the drain step and Send-now, with each caller's override set written beside it. A capable send during a late-result /compact now queues instead of being refused (PLAN §3.1); the dead prepared-command branches and the drain's duplicated gate list are gone. prompt outranks working so Send-now's one override cannot swallow it. R4: one isUnsettledQueuedMessage predicate for the withdrawable/budget filters. Loop 4: a replayed send whose draft was refused answers with the returned card, never the rejected submission, so the text cannot render twice. Rewind completion was verified to publish after the record clears (the rewind path's own publish; the open path's recovery precedes the open snapshot). * fix(native-chat): a Stop with no drafts writes nothing, and a failed hold still lets a capable Stop withdraw The stored hold turned Stop's in-memory pause into a draft-table write, so every Stop (drafts or not, capability advertised or not) opened a BEGIN IMMEDIATE/COMMIT. An empty hold now returns before the serialized write. A hold that threw also emptied the frontier, so a capable Stop withdrew only returned cards and left the waiting drafts unheld to auto-send after the interrupt. The frontier is read once and survives a failed hold. * fix(native-chat): a capable Stop with no drafts writes nothing The empty-hold guard from the previous fix did not reach withdraw, so every capable Stop still opened a write transaction after the interrupt, and a closed handle turned its empty answer into a missing field. The draft store now answers an empty withdraw without a transaction, for every caller. * refactor(native-chat): Stop and /clear never withdraw queued drafts; no text rides the wire back Adopt the host-owned-queue model end to end: a Stop holds the waiting frontier ('stopped') for EVERY client and interrupts — the cards stay published as paused, Send-now overrides per card, and the pause dies when the user next starts a turn (an ordinary dispatched send lifts 'stopped' holds in the same serialized step; 'send_failed' holds still need their explicit Send). /clear carries the source's unsettled drafts to the replacement session as born-held rows — identical for every client version — then tombstones the source. Delete answers with no body: the card leaving the published list is the outcome. Removed (never shipped; the capability was dark and unadvertised, so no wire compatibility is affected): CancelParams.withdrawQueued and its refine, ConversationCommandParams.withdrawQueued, CancelResult.withdrawnQueued, ConversationCommandResult.withdrawnQueued, AgentSessionWithdrawnQueuedMessage, the Delete result body, settleStopQueuedWithdrawal and the cancel finisher, withdrawClearedSourceQueuedMessages, replayWithdrawnQueuedMessages, and cancelPlan's tombstone replay. This also removes the defect where a withdrawal took every row regardless of which client sent it (a phone Stop pulled desktop-typed text): nothing moves text anymore, so a Stop from one client can never relocate another client's drafts. Hold and carry writes are bookkeeping: a failure is logged and never gates the interrupt or the clear. * feat(native-chat): a restart hold lifts like a Stop's, and paused cards say why The user's next dispatched send lifts every stop-shaped hold in one UPDATE: stored 'stopped' rows, and restart-held rows (host_instance mismatch), which are adopted into the running instance — the same fact the derivation reads, so no second copy of the hold exists. 'send_failed' still requires its explicit Send. Publication now marks stop/restart holds with pausedReason 'stopped' (an additive optional value on a dark capability), so clients can caption them "sends after your next message" and keep "couldn't send" for 'send_failed'. * fix(native-chat): only a client's own send lifts a Stop's queue pause The lift ran for every accepted host send, so orchestration mail, a restart continuation and a launch prompt released drafts the user had stopped (and adopted restart-held rows into the running instance). The client-facing agentSession.send RPC now marks its sends as the user's own; host-internal senders leave the pause alone. Also drops comments still describing the withdrawn return-text rule. * fix(native-chat): a Stop's queue pause lifts when the user's send starts its turn The pause lifted as soon as the host accepted a user send, so a send the provider then refused (a failed child start, a refused turn/start) had already released the stopped drafts into the same failure. The host now remembers a client's own send, in memory, until the provider answers it: acceptance lifts the stop-shaped holds, a refusal forgets it with the holds intact, and a later Stop supersedes it. Nothing is persisted, so a restart between the send and its turn start leaves the cards held for the user's next send rather than sending them unasked. * fix(native-chat): a consumed draft's turn starting lifts a Stop's queue pause Drafts are only ever a client's own sends, so a drained draft or a Send-now is a user send for the pause: its submission joins the same in-memory set a direct send uses, and the provider accepting it lifts the stop-shaped holds. Before, a message typed while a stopped turn wound down drained as a draft and left the older stopped cards held, so their "sends after your next message" caption was false. A refused consumption lifts nothing, a later Stop still clears the set, and orchestration mail and restart continuations still never lift. * fix(native-chat): queue a capable send behind a /compact and re-scope /clear's carried drafts - A text send with queue-if-active during a /compact in flight is admitted on the compact's side lane as a held draft instead of being refused; it may only become a draft, so one the gate no longer holds is refused rather than dispatched. - Drafts /clear carries to the replacement are fingerprinted for the replacement session, so the provider's echo folds into the sent bubble. - The in-memory set of user sends awaiting their turn is capped; sends settling unknown no longer grow it without bound. - Correct the userSend comment: the renderer's launch prompt goes through the client RPC and does set it. * feat(native-chat): queued mid-turn drafts become editable cards above the composer Against a host advertising agent-session.queued-messages.v1, Enter stamps the send 'delivery: queue-if-active' (chat-wide 'Queue follow-ups' setting, on by default) and the host's published drafts render as compact cards between the transcript and the composer — never as transcript bubbles — with Steer (send-now, Cmd/Ctrl+Enter for the newest), Delete, and a menu with Edit message and Turn off queueing. Returned cards show the stored effective rejection with the same words a rejected submission gets (a Stop-withdrawn one says so); paused cards localize the host's typed marker, and an unknown marker reads as a plain pause. Hold captions are derived client-side; the wire carries none. Restore is write-ahead: Stop, Edit and a capable /clear (withdrawQueued on conversationCommand, fingerprint-matched to the host's digest) persist their operation identity before the RPC and append the withdrawn bodies to the composer draft exactly once — replays answer from the durable restored record, and a /clear's text lands in the replacement session's pane. A marker left by a crash is RELEASED, never replayed: an unadmitted operation-id replay would execute the command, so a reopened chat can never be cleared, nor new work stopped, by a press from before a crash; unwithdrawn drafts stay visible as cards. Text never duplicates: an outbox entry the host visibly holds as a draft (same id) or answers for in withdrawnQueued retires without a local restore, and Stop's host-side restore skips ids the outbox withdrawal already put back. The renderer carries the list everywhere frames flow: reducer (live over stale history, omitted means unchanged) and the frame coalescer (latest wins, like commands). Everything is capability-gated: an older host sees byte-for-byte today's requests — no delivery key, no withdrawQueued, no queuedMessage RPCs. The capability stays dark; nothing here advertises it. * fix(native-chat): queued-draft restore survives a lost answer and an unconfirmed /clear - A capable /clear reuses the operation id write keeps for an unconfirmed clear, so the next press replays it; a fresh id each press was refused by the host for as long as the first stayed unconfirmed. - Edit, Stop and a capable /clear replay a lost answer (the call threw) under the same operation id, bounded and in-session, so withdrawn text still comes back after the card has gone. A refusal or fence move stays final; a crash marker is still only released on remount. - Restored-id bookkeeping lives in memory beside the draft cache it guards; storage holds only in-flight markers, validated per element, removed when empty. The /clear marker is written only when the clear actually sends. - A mid-turn queue send awaiting its answer, or already held as a draft, no longer paints as a transcript bubble next to its card. - One action per card at a time; Edit/Delete hand focus to the composer. - Revert unrelated en.json reflow. * fix(native-chat): a lost Stop never lands on newer work; the steer chord never skips typed text - A Stop whose answer was lost is replayed only while the turn and sends it was aimed at are still what is in flight; once another turn opens or a newer send lands (e.g. a queued message drained), the Stop is reported unconfirmed instead of interrupting work begun after the press. - Cmd/Ctrl+Enter steers the newest queued card only from an empty composer; with text or an image in the composer it stays a plain send. - A mid-turn queue send hides from the transcript only while it is on its way: from the entry the drain is stopped on (read through the drain's own rule), sends stay visible as bubbles beside the Retry row. A rejected entry holds nothing up, so what follows it still becomes a card. * fix(native-chat): a send the host visibly holds as a draft frees the outbox's single flight The published draft list is the host answering the send, exactly as a journal row is: retiring the in-flight entry now also releases single-flight and voids the unsettled reply. Before, a slow or lost reply kept the next mid-turn message waiting, hidden (neither card nor bubble), until the RPC timed out. * fix(native-chat): Steer hands focus to the composer like Edit and Delete A steered card leaves the list once the host sends it; focus on its Steer button fell to the document body, so the next keystroke went nowhere. * fix(native-chat): a lost /clear stops replaying within seconds, so sends never wait on bookkeeping Sends are refused while a clear settles. Each clear call can run for its full 195 s timeout, so three lost-answer replays could hold the composer for about 13 minutes. Replays now start only within 10 s of the press: a slow first call is never followed by more, and at most one replay can outlast the window. * refactor(native-chat): queued drafts stay paused cards; no draft text ever rides a wire answer Stop and /clear go back to main's plain writes: the host pauses its drafts and carries them across a clear, so nothing needs restoring and cards stay visible on every device. Edit copies the text the card already shows into the composer before a plain Delete, so no RPC outcome can lose it. The write-ahead restore journal, replay loops, the Stop wrong-turn guard, and the clear replay window are deleted with the contract that needed them. Stop's local outbox step keeps an issued queue send whose answer is still out — the host may already hold it as a card, and its answer settles it — so the same text can never appear twice. * test(native-chat): drop the removed tabId option from the queued gating test * fix(native-chat): paused cards caption per published reason; first card reaches the live region A Stop's hold ('stopped') says it sends after your next message, a failed consume ('send_failed') asks for Send, and an absent or unknown marker reads as a plain "Paused" instead of promising a resume the host may not do. The live region now stays mounted while empty so the first queued card is announced. * fix(native-chat): a paused or returned card's Send tooltip no longer promises to skip a turn * fix(native-chat): show the queue follow-ups switch only when the host queues messages The switch rendered whenever structured chat was on, even though a host that does not advertise agent-session.queued-messages.v1 ignores the preference. It now reads the local host's capability through the existing structured host-capability hook and stays hidden until the host says it queues. The copy now also says that messages with images send right away, since image messages never queue. Updated in all six catalogs. * fix(settings): find the Queue follow-ups switch when searching "queue" The switch renders inside the Chat UI settings entry, whose search keywords never included "queue", so settings search hid it. Add a localized "queue" keyword to that entry in every locale catalog. * fix(native-chat): a returned queued card carries the typed rejection fact, like a rejected submission A consumed draft the agent never ran comes back as a returned card. The card kept only the rejection's sentence, while its submission now also records the typed fact a client classifies from. A host-restart rejection's sentence carries no legacy marker, so such a card could not be told apart from a provider's refusal. The draft table stores the submission's fact next to its reason (`returned_rejection`, written by the same settlement that sets the reason, and read back with the reducer's own fact reader), and the card publishes it as `returnedRejection`. Both are overwritten on every return, so a re-sent card never keeps an earlier refusal's fact, and a /clear carry inserts a plain held draft with neither. Retention moves to queued-message-retention.ts to keep the table module within max-lines. * fix(native-chat): say why Stop keeps a dispatching queue send that is not the in-flight one A pending answer frees single-flight but leaves the entry dispatching until its journal row lands. * fix(native-chat): word a returned queued card from its typed rejection fact A returned card is classified and worded exactly as a rejected submission: returnedRejection decides, returnedReason is the fallback. A host-restart card now says Orca restarted instead of the generic not-sent line. * fix(native-chat): fit the queue to main's typed rejections and compaction result Main (#23026) dropped the disposition's fresh-id retry field, gives a rejected dispatch a typed sentence plus fact, and types /compact's result. The queued-draft disposition and the queue tests now use those shapes. * fix(native-chat): a returned queued card's words leave out sending again The card offers its own Send, so its caption is worded with the retry control present, as the delivery notices are. * fix(native-chat): a queued send in doubt that survives a Stop waits for the user's Retry The unconfirmed probe resent it onto the session the user had just stopped, starting a new turn when the host never got the first attempt. A Stop now parks it the way a recovered unknown is parked. * fix(native-chat): a withdrawn send the host returns as a card is not also put back in the composer When the withdrawn submission and the returned card arrived in one frame, the journal reconcile restored the text before the card retired the entry, so it showed twice. * fix(native-chat): a send stops asking the host to queue it once the host no longer can delivery was fixed at enqueue, so after a host rollback every Retry of a queued send was refused on the same strict field. It is now decided per attempt: an id already sent keeps it while the host can read it, an id never sent takes the current choice, and a host without the capability never sees it. * fix(native-chat): draft bookkeeping can never roll back the journal row it rides The queued-draft returned transition runs inside every journal append's transaction. A throw there (a draft table an earlier build created without the returned_rejection column) rolled back the journal's own rejection row, so a Stop, a failed start or a provider refusal could not be recorded. The standing hook now runs in its own savepoint: its failure is logged and rolls back alone, and the open-time repair re-derives the missed transition from the committed row. The draft table also gains any missing nullable column at open. * fix(native-chat): a draft a Stop or restart took back waits again instead of blocking the queue Cards A, B and C wait; the turn ends and the drain consumes A, but the agent has not taken it yet. A Stop then pauses B and C and withdraws A's submission, which made A a returned card. The user's next send lifted B and C, yet a returned card blocks everything behind it, so B and C never sent although they read "sends after your next message". A restart or close before hand-over did the same. Nobody failed the user there, so the draft now goes back to waiting at its own position, under the hold that same event put on the drafts behind it: a Stop's 'stopped', or no stored hold after a restart, whose hold derives from the host instance. It carries no refusal, and records its spent submission id in consumed_as, so its next consume (the drain, or Send on the card) mints a fresh id through the same path a returned card's re-send uses. Provider refusals and other failures still return the card. The live settlement hook and the open-time repair share one decision. After a Stop and the user's next turn, A drains first, then B, then C, one per turn. * fix(native-chat): Delete and Send on a queued card answer at once during a /compact A /compact holds the chat's serialized lane for its whole provider call, and the queued-card Delete and Send ran on that lane, so both hung until the compaction finished. They now run on the side lane a draft-only send already uses while a compaction is in flight: Delete completes at once, and Send reaches its readable "wait for the conversation operation" refusal at once. The drain stays on the main lane and keeps its command hold, so nothing sends until the compaction settles. * fix(native-chat): a re-sent returned card drops the refusal it came back with Re-consuming a returned card left returned_reason and returned_rejection on the now-dispatched row, so the row described a refusal that no longer applied. The consume clears both in the same update that moves the card to dispatched. * perf(native-chat): the queue gate reads pending prompts without rendering the journal The prompt check ran on every send admission and drain step, and read journal.snapshot(), which copies and sorts every item in the chat. It now walks the reduced items in place with journal.visitItems; the answer is the same, since the snapshot only sorts those items. * fix(native-chat): a Stop that fails leaves the queued cards as it found them Stop holds the waiting cards before it withdraws queued sends and interrupts the agent. When a later step threw or the Stop was refused, the cards stayed paused ("sends after your next message") although a failed Stop is meant to change nothing. A failed Stop now undoes exactly what it added: each card it held gets back the hold it replaced, a consumed card its withdrawal sent back to waiting is released, and the user sends it had set aside can again lift the pause. Holds an earlier Stop or a restart put on the cards stay. The hold SQL moves to its own module, and the draft store's standalone transactions share one helper. * docs(native-chat): confirmed cancellation is no longer a queue rollout prerequisite Stop withdrawing queued sends with a typed cancellation landed on main with #23026. The comment gating the queued-messages capability now lists only what remains: the Codex steer matrix (#21062), the Claude fold receipt, turn-owner bars, and the desktop and phone clients. * docs(native-chat): the Claude fold receipt and turn-owner bars have landed; Codex steer and the clients remain * test(native-chat): type the returned-card restore test's hook props * fix(native-chat): a draft a Stop put back stays visible as a card The card list hid a waiting draft whose id already had a submission. A Stop that withdraws a consumed draft requeues it under the same id while the first submission stays rejected, so the draft vanished from both the cards and the transcript. Only a submission that was not rejected now hides its card. * fix(native-chat): Send on a queued card during a /compact is refused before it takes a lane Send-now chose its lane once, at entry. During a /compact it took the side lane, where it could wait behind a Stop, then run after the compaction had settled and append a real submission unserialized against the main lane. While a compaction is in flight, Send-now is now answered with the "wait for the conversation operation" refusal before entering any lane, and otherwise it runs on the main lane. Only Delete keeps the side lane, whose compare-and-set withdrawal is safe on either. * fix(native-chat): a Stop that fails after reaching the agent keeps the queue paused A failed Stop undid its queue holds whenever it threw, including after the interrupt had already gone to the provider (a status-note write failing after cancelTurn, or after stopping a starting agent). The turn could be stopped while the cards drained as if no Stop was pressed. The Stop now marks the step that reaches the provider, and undoes its holds only when it failed before that. A Stop the agent refused answers ok and keeps its holds; the comment no longer claims otherwise. * fix(native-chat): an unanswered capability probe no longer rewrites a queued send The per-attempt delivery decision was stored on the entry, so a replay during the window before the host's queued-messages probe answered, or after it failed, was saved without delivery; the host's ledger then refused every later replay of that id. The entry now keeps the user's intent, the wire field is decided per request, a queue send waits while the capability is unknown, and a failed probe is asked again when contact with a remote host is regained. * fix(native-chat): a skipped draft settlement heals on the next drain step, not only at reopen The draft settlement rides each journal append as bookkeeping, and a failure there is logged and skipped. Only the open-time repair re-derived it, so a consumed draft whose submission was rejected stayed dispatched (invisible, and blocking nothing it should) until the chat reopened. The re-derivation is now its own function, shared by the open-time repair and the drain: whenever a dispatched draft's submission is already rejected, the drain step applies the owed settlement first. * fix(native-chat): a queued send in flight when Stop lands is never resent by the probe Stop parked only sends already unconfirmed; one still dispatching whose answer later came back unknown was left to the unconfirmed probe, which resent it onto the stopped session. The entry now records that a Stop outlived it, the probe skips it, and only the user's Retry, which clears the mark, sends it again. This replaces the retryAfterUnknownSubmittedAt parking for the unconfirmed case. * fix(native-chat): one id is never recorded as a submission twice A second submission row under an id the journal already holds replaces the submission with a fresh pending one, so a rejected message could be handed over again under its own id. Send on a queued card could do exactly that: if the host died after it consumed the card under the operation's id but before its answer settled, the rerun consumed again under the same id. The journal now refuses a submission under an id it already records, so no id is delivered twice whatever the caller does. And a Send-now rerun that finds the card consumed under its own operation id answers with that submission instead of consuming again. * fix(native-chat): a waiting draft whose first send the agent echoed is withdrawn, never resent A consumed draft goes back to waiting when its submission is rejected as never delivered (a Stop's withdrawal, a restart, a close), and then sends again automatically. That rests on the "never delivered" claim. If the provider then echoes that message, the first delivery happened, and the automatic resend would give the agent the same message twice. The reducer already keeps such an echo apart, since a rejected submission may not claim it, so the draft store reads it from the appended row itself: a provider echo of a user message that no live submission claims, matching a waiting draft whose spent submission is rejected, withdraws that draft the way a Delete would. The echo-claiming rule is split out of the reducer's aliasing so both read the same decision, and the per-row draft hook moves beside the settlement re-derivation. * feat(native-chat): a submission names the queued draft it hands off Clients told a queued card's hand-off apart from other sends by comparing the draft's id with the submission's id. That holds only for a draft's first hand-off: a re-send, or a draft that goes back to waiting and drains again, goes out under a fresh id, and the clients showed the card and the sent message together, or restored text the host still held. Every submission the host creates by handing off a draft now carries queuedMessageId, the draft's id. It is written on the submission's journal row as an optional key (older readers keep it and ignore it), carried by the reducer, listed in the published submission schema (which otherwise strips it), and stamped where the row is built from the consume itself, so no hand-off path can leave it off; a caller naming a different draft is refused. A direct send names none. The queued-messages capability comment makes the link part of v1. * refactor(native-chat): every queued draft goes out under a fresh submission id A draft's first hand-off reused the draft's own id as the submission id, so comparing a draft id with a submission id looked right in every first-send test and failed only on a re-send or a requeued draft. Every hand-off now uses a fresh id (the drain mints one; Send on a card uses its operation's id), so id equality is never true and a reader must use the submission's queuedMessageId. The host gets simpler: queuedMessageNeedsFreshSubmissionId is gone, consumed_as is set on every dispatched row and cleared when a withdrawal sends the draft back to waiting (its spent submissions stay findable by their link), the consume refuses the draft's own id, and the consumedAs ?? messageId fallbacks collapse. The delivered-echo check finds spent hand-offs by link. A send this host queued, asked again (a lost answer's replay, or a rerun the operation ledger no longer covers), answers from its draft and then from the hand-off that names it, through one function. The rerun path used to be kept from sending twice only because a submission sat under the send's own id; with fresh ids that guard is now explicit. A Send-now rerun recognises its own consume by the link instead of consumed_as. * refactor(native-chat): a queued send is matched to its hand-off by queuedMessageId, never by id The host now hands every queued draft off under a fresh submission id and names the draft on the submission. The card list hides a waiting card only for a live hand-off linked to it; an outbox entry a submission links to belongs to the host in any state (one rule, in a queue-aware reconcile both readers use); a withdrawn hand-off is never restored to the composer; a send answered with the hand-off settles as held; and the Stop and in-flight checks read the same link. This replaces the rejected-submission filter and the published-id restore skip. * test(native-chat): read the outbox only after the replayed send's answer lands * fix(native-chat): an echo withdraws a draft only if its rejected hand-off reached the agent The delivered-echo rule withdrew a waiting draft when a provider echo matched any rejected hand-off of it, including one a Stop rejected before it was ever handed over. That hand-off is provably unwritten, so a matching unclaimed echo is some other message, and the rule silently deleted the card. Only a hand-off that was handed over and then rejected as never delivered can be disproved by an echo now. * fix(native-chat): a skipped echo withdrawal is re-derived before the draft can send again The delivered-echo withdrawal rides each journal append as bookkeeping, and a skipped hook left the draft waiting, so it later sent the same message a second time. Nothing re-derived it. The draft store now also withdraws, in its owed-settlement pass, each waiting draft that an echo already in the journal proves delivered: an unclaimed provider user message (still stored under its own id), carrying the draft's payload, appended after a hand-off that was handed over and rejected. The live hook and the re-derivation share one predicate. The pass runs at open and in the drain step, right before a draft would send; it reads every item, so it never runs per streamed row. * fix(native-chat): a rolled-back journal append leaves no draft state cached The draft store caches its row list by revision. The per-row hook read that list eagerly inside the append's transaction, after the consume in the same transaction had already written and bumped the revision, so a failed COMMIT left the cache showing a hand-off that never happened. The hook now reads the drafts only once a row holds an unclaimed echo, and any rollback of a journal append or of its bookkeeping savepoint invalidates the cache, so no other read inside the transaction can leave it stale either. * fix(native-chat): a replay of a deleted queued card answers withdrawn, not refused Once a deleted card's tombstone is pruned, a replay of the send that queued it found the draft through its last hand-off. When that hand-off had been rejected (the card came back, and the user then deleted it), the replay answered with the rejected submission, which clients show as a failed send with a Retry. Only a withdrawn row is pruned while its last hand-off stands rejected, so the replay now answers queued, withdrawn. * fix(native-chat): a queued send records what it sent instead of waiting on the capability The round-two hold kept a queue send back while the host's capability was unknown, which hid its text, wedged every later send, made Retry a no-op and let Stop restore text the host held. There is no hold now: the entry records what its first attempt sent and every replay sends exactly that (dropping it only for a host known not to read it); a first attempt asks to be queued only of a host known to queue with the setting on, and otherwise goes out plain as before; the transcript hides only a send whose request asks to be queued; Stop keeps any queue send that has gone out and parks it, unconfirmed, for the user's Retry, which the drain and an owner change now respect too. * test(native-chat): a replayed send of a deleted card is spent, with no restore and no Retry * refactor(native-chat): name the queue's pause-lift for what it releases * chore(native-chat): one import of the mutation helpers * fix(native-chat): a Stop marks a queue send without rewriting its state; the entry stores only what it sent Stop set an in-flight queue send to unconfirmed, so a settled refusal answering its first attempt kept the old id, and every Retry replayed into the same recorded refusal. Stop now only marks the entry, and the drain never admits a marked queued entry, so its state and refusal notice stay what its answer made them. The stored delivery intent is gone: an entry keeps only sentDelivery, recorded by its first attempt; a never-attempted send decides at attempt time. * docs(native-chat): no send waits on an unknown queued-messages capability * test(native-chat): one import of the outbox module in the owner-change test * test(native-chat): read a stale outbox entry without a JSON round-trip * fix(native-chat): keep a first attempt's recorded delivery a literal * fix(native-chat): an interrupted send attempted before a Stop reads as unconfirmed, never as not sent * feat(native-chat): a Stop pauses the whole queue, derived from the journal, with an explicit Resume After a Stop, each waiting card was held on its own row ('stopped'), lifted when the host saw, in memory, that a user send made after the Stop had its turn accepted. The cards read "sends after your next message" one by one, there was no way to resume the queue without sending something, and the in-memory record of user sends was lost on a restart or eviction. The pause is now the queue's, and derived rather than stored as a flag: - 'stopped': the user's last Stop took effect at a recorded journal position and no turn a person asked for has started since. "A person asked for it" is the new `origin: 'client'` on the submission row (a send over the client send RPC, or a card they sent now); orchestration mail, a restart continuation, a host-sent launch prompt and the queue's own drain record `host` and never lift it. - 'restarted': a waiting card was written by another host process and no person's turn has started since this conversation opened. Resume (`agentSession.queuedMessagesResume`) lifts either. Send-now sends one card; the rest stay paused until that card's turn starts, which is a person's turn like any other. The journal's row kinds are closed (an older build truncates a journal at a row kind it does not know), so the one event the journal cannot carry, where the Stop took effect, is recorded beside the drafts in `queued_message_pauses`; everything after it is read from the journal. A Stop records it only once it takes effect (after withdrawing queued sends, as it reaches the agent), so a Stop that fails first leaves nothing to undo, and the per-row hold, its undo and `userSendsAwaitingTurn` are gone. A card keeps a hold of its own only when its conversion failed ('send_failed'). The pause is published once, as `queuePause` beside `queuedMessages`, on live frames, catch-up and history. A /clear starts its replacement paused, as after a Stop, since the carried cards were written for the context it discarded. * feat(native-chat): a /clear's replacement queue reads paused because of the clear, not an interrupt The replacement's pause was recorded as 'stopped', which clients show as "Queue paused because you interrupted" although the user cleared the chat. It is now its own reason, 'cleared', on queuePause.reason ('stopped' | 'restarted' | 'cleared'). It lifts and resumes exactly like a Stop's: through Resume, or the user's next turn starting on the replacement. * feat(native-chat): a paused queue shows one header row with Resume; cards keep Steer The host now publishes the queue's pause once (queuePause: stopped, restarted or cleared) beside the list, and per-card holds mean only a failed send. The card list shows a header row above the cards naming why the queue is paused, with a Resume button that calls agentSession.queuedMessagesResume (a failure is the usual toast). Cards keep Steer, Delete and More actions while the queue is paused; the old per-card paused caption is gone. Steer's tooltip now reads Submit without interrupting the model. * test(native-chat): the coalescer keeps the pause of the latest list * test(native-chat): fit the queue tests to the queue-level pause types * fix(native-chat): a queue pause covers only the cards it paused A Stop recorded its pause fact even when the queue had no cards, and the fact outlived the cards it did pause. The published list hid a pause over no cards, but the drain still treated the queue as paused, so a card typed much later — during an orchestration-mail turn, or a correction typed before the stopped turn ended — sat under "paused because you interrupted" with no Stop of its own. A Stop now records its pause only if the queue holds a card when the Stop takes effect (the hand-offs its withdrawal sent back included). The fact is retired in the same transaction as the Delete, consume or withdrawal that empties the queue, never from an async publish. A /clear's carry now lands each card with its 'cleared' pause in one transaction, so a failed insert leaves no pause over an empty replacement. * perf(native-chat): the queue's pause reads the latest person's turn in O(1) The pause is derived on every publish, per subscriber, and each derivation copied and scanned every submission to find a person's accepted turn after the Stop. The reducer now keeps that fact as it folds rows: the submission row of the latest accepted turn whose origin is `client`. The Stop's and the restart's lift both read it directly. * fix(native-chat): each Resume press is its own operation, and a pause-only frame updates state Resume names no target, so reusing its operation id after a failed press replayed a stale answer or the same refusal. The reducer's no-change check also ignored the queue pause, dropping a frame that changed only the pause. * fix(native-chat): a card handed off after a restart belongs to the process that sent it A draft's host_instance was only ever the process that first wrote it (or adopted it while waiting). A returned card from before a restart, sent again in this process and then withdrawn back to waiting, still carried the old process, so it raised a 'restarted' pause although no restart happened since it was sent. Every hand-off (the drain, Send on a card) now stamps the handing-off process on the draft in the consume's own update. * fix(native-chat): the paused-queue row shows only over cards Resume can send, and matches the queue's icons The header row appears only when a card waits on nothing but the queue's pause; Resume shows it is pending, hands focus back to the composer like the card actions, and the truncated line keeps its full text as a title. A paused queue outranks a pending prompt in the card's hold, as on the phone. Steer carries the corner-down-right arrow, a queued card leads with the list-end glyph, and a card whose send failed leads with the alert, as a returned one does. * test(native-chat): Resume reports itself in flight until it settles * fix(native-chat): a queue pause shows only while Resume would send something After a Stop whose only remaining card was a returned one, or after a restart with only a card held by its own failed send, the queue published a pause with a Resume that could send nothing: a returned card waits for the user anyway, and a held one for its own Send. The pause is now published, recorded by a Stop, and kept only over a card it can hold back — waiting, with no hold of its own. The fact is retired in the same transaction as the write that removes the last such card, a hold or a refusal included. The publication's dedup also compared only the pause's reason, so a pause appearing or clearing with no readable reason could read as unchanged; it now compares presence first. * fix(native-chat): a queue pause counts only cards Resume would actually send A waiting card behind a returned one is blocked until the user acts on the returned card — the drain never sends past it — so a pause over only such cards still offered a Resume that sent nothing. The rule for "a card Resume would send" is now one function: waiting, no hold of its own, and not behind a returned card. The publication, a Stop's record and the fact's retirement all read it; retirement reads the rows in position order inside the same transaction as the write that took the last such card. * fix(native-chat): a returned card that blocks the paused cards hides the pause but keeps it The last change retired a Stop's pause as soon as a returned card blocked every paused card. Deleting that returned card then sent the cards behind it at once, with no Resume — not what the user asked for. The two rules are now separate. The pause is KEPT (recorded by a Stop, retired in the same transaction as the write that takes the last one) while any waiting card with no hold of its own exists, wherever it sits. It is PUBLISHED only while such a card is not behind a returned one, so the header never offers a Resume that sends nothing. Deleting the blocking card shows the pause again, and the cards behind it wait for Resume or the user's next turn. * test(native-chat): build the pause-only batch through the typed helper * fix(native-chat): a Stop pauses a card its withdrawal sent back even when that settlement was skipped The Stop checked the draft table for a card to pause. When the per-row hook that settles a withdrawn hand-off was skipped, that card was still 'dispatched', so the Stop recorded no pause; the drain later healed it back to waiting and sent it, although the user had pressed Stop. Retirement had the same blind spot and could drop a pause while such a card was owed. What a pause holds back is now one predicate, judged inside the transaction that records or retires it: a waiting card with no hold of its own (one SQL EXISTS), or a dispatched card whose consumed submission was rejected with a settlement back to waiting (read against the journal's submissions). The Stop first runs the owed settlement, as the drain does; if that fails, the owed card still counts, so the pause is recorded rather than skipped. recordPause now checks inside its own transaction and returns whether it recorded, and any draft-table write (and the per-row hook, the consume and the open-time repair) retires a pause that no longer holds anything back. * test(native-chat): pin the per-row hook's pause retirement; skip the judgement when no pause exists The retirement test recorded its second pause over a queue with nothing to hold back, so the recording returned false and the "retired" assertion proved nothing; ablating the per-row hook's retirement passed every test. The hold case now asserts the pause was recorded, and a new test has a delivered echo, through the per-row hook, withdraw the last card a recorded pause holds back. Retirement runs on every appended journal row, so it now checks the pause row by key first and judges nothing when no pause is recorded. Two comments were brought in line with the owed-hand-off rule and rewrapped. * fix(native-chat): the queued area is one bordered box, and the Steer tooltip spaces its shortcut The pause row, when shown, is the box's first row and each card a row below it, divided rather than individually bordered. The Steer tooltip groups its hint and the shortcut chips with the house gap, so the chips no longer touch the text. * test(native-chat): match main's append and dispatch shapes in the queue tests * fix(native-chat): read a compaction's settled submission through the send-result union * test(native-chat): a queued card Steered into a turn joins it under the opener's bar A Steer hands the draft over under a fresh submission id, linked by queuedMessageId, and the host scopes its row to the running turn; the transcript keeps it inside that turn with no bar of its own, settled or running. * fix(native-chat): queued messages sit above running shells and agents, which stay next to the composer --------- Co-authored-by: Claude <noreply@anthropic.com> |
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59ef74876f |
fix(terminal): the terminal's owner answers colour queries for the terminal's whole life (#23925)
* fix(terminal): the PTY owner answers OSC 10/11 for the terminal's whole life Codex and Claude's `theme: auto` ask the terminal for its foreground and background colours (OSC 10/11) and pick their colours from the reply. Orca answered in the process that owns the PTY only for agent launches and only for 5 s; after that the query was handed to whichever viewer was attached. On Windows ConPTY the owner kept swallowing the query but stopped answering it, so a Codex started from an older shell tab lost its message shading (#22332). On a headless `orca serve` host no viewer existed yet, so a Codex started before anyone attached got no reply at all (#22500). The owner (in-process provider, terminal daemon, SSH relay) now answers every OSC 10/11 query for the PTY's whole life and strips it, so no downstream view ever sees one to answer twice. It answers from, in order: the host-wide viewer theme pushed to that process, the creating viewer's colours sent at spawn (now for every PTY, not only agents), and Orca's default dark theme. The desktop pushes its renderer theme to every owner on change and on (re)connect: a daemon request gated on protocol v38, and an SSH relay notification that older relays ignore. The answer-once rule, the 5 s colour window and the colour-authority handoff are removed; Kitty keyboard queries keep their startup window. Viewer-side answerers (renderer xterm, main's hidden-pane model responder, the mobile webview) stay as the fallback for older owners, which still hand queries off; they are never reached for a new owner. * fix(terminal): answer OSC 10/11 with the colours the pane is really painted with Review follow-ups to the lifetime PTY-owner colour answerer. - The theme catalog moves to src/shared so the renderer and the PTY owners read one source; the owner's last-resort default is derived from it rather than copied. - Main seeds every owner from the host's saved theme settings (light or dark, custom themes, colour overrides) at startup, so a headless host and a desktop pane that queries before the renderer's first push are not told dark to a light-theme user. The renderer's push replaces it. - Colours an app sets with OSC 10/11, and clears with OSC 110/111, are tracked per terminal and reported back, as a viewer paints them; a theme change drops them, as a viewer's theme apply does. - A terminal a paired client created with its own colours answers with those, not the host's theme (`colorSource: 'remote-viewer'` on the spawn intent), so a light client on a dark host is told light. - After the 5 s startup window a reply's echo is watched for 512 bytes instead of 256 KB, and a torn query candidate is released after 500 ms rather than held indefinitely. * fix(terminal): keep the long echo watch for relayed replies; one theme lookup The 512-byte post-startup echo watch now applies only to replies the PTY owner produced itself. A viewer's reply relayed through answerLiveQueryReply keeps the 256 KB watch, because a cooked-mode app can keep printing after it queries and the echo then trails that output. The renderer's getTerminalTheme now calls the shared lookupTerminalTheme, so the custom-vs-built-in theme lookup exists once. * perf(terminal): scan colour overrides in one pass over each PTY chunk Two indexOf searches per OSC went quadratic on long runs of ST-terminated hyperlinks, and the tracker now sees every chunk of every terminal. * fix(terminal): one host viewer colour value, set by whichever viewer acted last A paired client's colours reached the host only as frozen spawn colours on terminal.create, tagged remote-viewer. UI-started agent sessions on a headless host answered OSC 10/11 with the host's saved theme, and a client's theme flip never reached panes it had created. The host now holds one viewer colour value that every PTY owner answers with. The desktop renderer's push, a window focus on the host, the new terminal.setViewerColors RPC, and terminal.create colours from older clients all set it; equal values do not re-notify daemons or relays. The remote-viewer tag (colorSource / terminalColorQuerySource / spawnFromRemoteViewer) is gone; it never shipped in a release. * fix(terminal): paired clients push their terminal colours on connect, change and focus The renderer publisher now hands each published fg/bg to subscribers. A new remote-runtime-terminal-color-push module calls terminal.setViewerColors on every host this client is connected to when it connects (or the host restarts), when the colours change, and when the window gains focus. A host that answers method_not_found or forbidden is not asked again until it reconnects. The app shell also republishes terminal view attributes on settings and system theme changes, so a theme change reaches main and paired hosts with no terminal pane open. * fix(terminal): a host with its own window answers OSC 10/11 with its own theme Round 1 kept one host-wide viewer colour value set by whichever viewer acted last, so a paired client's push (reconnect after sleep, a dusk theme flip) took over the host desktop's own panes until its window regained focus. The value is now derived: this host's renderer colours when a local window has pushed, otherwise the last paired client's push (terminal.setViewerColors or terminal.create colours), otherwise the saved theme. Only a headless host takes a client's theme. The window-focus reassert and the identical-re-push takeover are gone; owners are notified only when the derived value changes. * perf(terminal): scan only OSC starts for colour queries once the Kitty window closes The PTY owner answers OSC 10/11 for the terminal's whole life, and it tried every ESC as a query start: a 240 KB SGR-heavy read cost about 2 ms and 256 KB of bare ESC about 15 ms, long after startup. Once the Kitty query window closes only an OSC colour query can match, so the scan jumps between ESC ] starts, plus a trailing lone ESC so a query torn right after its ESC still resolves on the next read. Output and replies are unchanged. |
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a0abcb6818 |
feat(settings): let Codex terminals opt back into Codex's shared server (#23929)
* feat(settings): add a setting to run Codex terminals on Codex's shared server Off injects ORCA_CODEX_ISOLATE=0 into new terminals on every host (local, daemon, SSH relay, WSL), which the codex shell wrapper from #23900 reads to skip --no-daemon. On (the default) injects nothing. * feat(terminal): announce per-terminal Codex servers once Shows a one-time toast the first time a Codex terminal starts, with an Open Settings action that lands on the new Codex server setting. The seen flag persists in UI state and is set when the toast is shown. * fix(settings): drop the status warning from the Codex server setting * fix(terminal): simplify the Codex shared-server notice * fix(terminal): say agent status in the Codex notice * fix(settings): hide the Codex server setting from paired web search Gives its search entry an id and gates it with includeCodexTerminalServerIsolation, as the other host-only rows are, so a paired web client cannot find a row it never renders. Its search keywords now use catalogued agents-search keys instead of missing ones; CODEX_ISOLATE_ENV is no longer exported; the toast id comment names the case it guards. * test(settings): assert the Codex server search gate through the metadata builder Calling getAgentsPaneSearchEntries directly stayed green with the web gate deleted; the metadata builder test fails without it. |
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26bb7c23f1 |
fix(terminal): run Orca's cmd.exe, path-named and setup-gated Codex launches without the shared server (#23933)
* fix(terminal): give plain shells and cmd.exe Codex launches --no-daemon Plain bash, zsh and fish tabs were never wrapped, so a typed codex skipped the shell function that adds --no-daemon. Wrap them (bash keeps its prompt and DEBUG trap untouched unless Orca asked for command markers), add --no-daemon host-side where no function can run (cmd.exe, path-named binaries), and move new tabs to a v38 terminal daemon so they get the new wrappers. * fix(terminal): keep plain bash a login shell and give the setup gate the codex function Plain bash and Git Bash tabs launch exactly as before again: the rcfile wrapper would have made every one a non-login shell. Plain tabs on the user's configured shell args stay unwrapped on both transports. The wait-for-setup gate's bash -lc now defines the codex function, so a sequenced Codex launch gets --no-daemon from the binary it actually runs. * fix(terminal): define the setup gate's codex function after setup finishes Setup can be what puts codex on PATH, so defining the function before the marker wait found no binary and skipped --no-daemon. * refactor(terminal): fold the SSH/WSL guard into the Codex launch planner and bound the gate test * fix(terminal): honour the pane's env deletions in the Codex opt-out check Also pin the setup-gate test's fake codex ahead of path_helper's PATH. * revert(terminal): launch plain zsh and fish tabs exactly as on main Drops the always-wrap for plain zsh and fish, the configured-args guard that only served it, and the v38 daemon bump: the daemon's launch configs and generated wrappers are byte-identical to main again. Keeps the host-side --no-daemon for cmd.exe and path-named launches and the setup gate's codex function. |
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7f8ca49e3d |
fix(codex): start short-lived Codex app-servers on Windows without cmd.exe (#23830)
* fix(codex): start short-lived Codex app-servers on Windows without cmd.exe Orca's short-lived Codex app-server launches (history index passes, the state-DB recovery claimant, hook trust grants, and the rate-limit and model catalog probes) wrapped npm's codex.cmd in `cmd.exe /d /c` before handing it to spawnProcess. That hid the shim from spawnProcess's resolver, so every one of these launches went through cmd.exe instead of straight to node. Hand the bare CLI path to the spawn chokepoint like the chat session already does. The rate-limit probe and the recovery claimant also move off direct node:child_process imports, shrinking that allowlist by two. * chore(codex): drop stale cmd.exe premises from the probe kill and CLI pairing comments Short-lived Codex app-servers now reach spawnProcess as the bare shim, so the direct child is node for a resolved npm shim and cmd.exe only as the fallback. * test(child-process): delist the rate-limit probe from the hidden-console ratchet The probe now spawns through spawnProcess, which always hides the console. |
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fed1eca486 |
test: stop restating internal tuning constants, keep the ones that are contracts (#23950)
Removes ~74 assertions of the form `expect(SOME_CONSTANT).toBe(<literal>)` where the literal is an internal tuning value — a timeout, retry count, debounce interval, cache TTL, circuit-breaker window, Tailwind class string. Those cannot fail for any reason a user would notice: they fail only when someone deliberately changes the number, and then the test is simply updated. They are copies of the declaration. The same pattern is NOT junk when the exact value is observable outside this process, so those were deliberately kept: - terminal byte contracts: `\r`, `\x03` ETX, Kitty escapes, `\x1b[?1;2c`; - wire and capability values: `agent.launch.v2`, protocol 3 / min-compatible 2, daemon per-feature boundary versions (a daemon survives app updates, so those pin what an old field daemon may be trusted with), relay header tokens; - security invariants: the `127.0.0.1` bind default, an empty iframe `sandbox`; - values external processes read: exit code 78 (EX_CONFIG) and exit code 3 (systemd `RestartPreventExitStatus`), `ORCA_AGENT_SESSION_SPAWN_TOKEN`, `npx skills …` commands users paste, on-disk journal schema versions, the `orca_<hash>` filename prefix the fish sweeper matches; - third-party names: expo-router's `unstable_settings` / `ErrorBoundary`, iOS Safari's 16px zoom threshold. Where a case asserted a relation rather than a literal — `A < B`, a sum of parts, a cap compared against a sibling budget — the relation stays and only the literal went. Test-only changes: no production file is touched and no test file is deleted. |
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bb667a33bd |
test: retire the last private-predicate duplicates in the leaked-internals sweep (#23949)
Sixth and final wave over the modules that export symbols only tests import.
Deletes private-predicate cases whose behavior is already asserted through the
module's real entry point, then makes the symbol private again.
Also removes three distinct junk shapes the earlier detectors missed:
- a self-comparison whose expected empty row was produced by the helper under
test (`worktree-palette-search`), now a literal;
- expected values computed by a sibling helper rather than asserted
(`terminal-theme`), now read through the production `getBuiltinTheme`;
- a negative control that cannot fail — `expect('json' in jsonlMonarchLanguage)
.toBe(false)`, where `IMonarchLanguage` has no such key, so it guarded nothing
while appearing to guard "does not attach the JSON language service".
Dead production code removed where tests were its only callers:
`refreshWindowsTerminalCapabilities` (a one-line alias for
`loadWindowsTerminalCapabilities({force: true})`), `readSpoolRecords`,
`buildAgentPromptSubmitBytes`, and `getCommitMessageModelCapability`.
About 70% of everything this detector flagged across the whole vein was a false
positive, so most modules were left untouched. Bounds consumed as test input,
`*ForTests` seams, non-hook cores of `useSyncExternalStore` hooks, and
value-position registrations all look identical to a leaked internal from the
outside and are not.
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59b746ff3c |
feat(native-chat): one structured-chat journal database per host, owned by one process (#23613)
* feat(native-chat): one structured-chat journal database per host, owned by one process
Every structured chat on a state directory now lives in one SQLite file,
agent-session-journal.db, opened once by the process holding
agent-session-journal.owner: an empty SQLite file whose held BEGIN EXCLUSIVE is a
kernel byte-range lock, refused while another process holds it and released when
the holder dies.
- Stores own no connection: the per-chat handle, its close contract and the
close-retry registry are gone; closing a conversation drains its writes, and the
one connection closes last at teardown.
- The owner lock is taken at runtime start, before orca-runtime.json is written;
a process that does not own the chats is not published and refuses every
structured request with journalUnavailable and words that say what to do. It
retries the lock with backoff and runs the full install once it holds it.
- A journal that will not open fails the host install: every chat says "Unable
to load this chat." (journalCorrupt), and nothing is renamed, deleted or
rebuilt. A newer build's database is refused and left byte-identical.
- An append is one INSERT. The listing status is a column, written after the
rows it describes and keyed by (epoch, sequence).
- A per-chat journal from an earlier build is copied in verbatim (epoch UUID and
every sequence) on that chat's first open, and its directory is retired only
after the copy commits.
- auto_vacuum = INCREMENTAL, with freed pages handed back in bounded steps after
every delete.
* perf(native-chat): key journal rows by block so one chat's rows sit together
Each chat's live epoch owns a block of row ids, block * 2^32 + seq, so a chat's
rows share leaf pages with nobody else's, a replay is one range scan, and
replacing or rewinding a chat deletes one contiguous range. Measured on the
largest real chat (61 MB) beside 19 interleaved peers: 39 ms and 7.5 MB of WAL,
against 214 ms and 102 MB for a (session_id, epoch, seq) key.
- Ids are computed in Number arithmetic, never bitwise. A sequence is refused
outside [1, 2^32) and a block at 2^21, which keeps every id below 2^53.
- A replace, roll or import allocates a fresh block, moves the chat's pointer,
and deletes the old block in the same transaction, so no orphan block exists.
- The listing status write moves into its own writer beside the column.
* feat(native-chat): copy a chat's per-chat journal again when an older Orca wrote it after a downgrade
A per-chat journal.db that reappears after its chat was copied in is the newer
history: an older build, run after a downgrade, attached the chat and wrote it.
- journal_imports records the (epoch, tip) each chat was copied from, in the
copy's own transaction. A file already copied is never copied again, across
any number of restarts after a failed rename; a file that differs always is.
- Newest writer wins, per chat, with a row saying the chat was continued in an
older version of Orca. When both builds wrote past the recorded tip under one
epoch, the copy takes a fresh epoch, so readers reset instead of skipping rows.
- Each copied directory retires to its own .imported-<epoch8>-<ms> name, so a
second downgrade and re-upgrade never collides with the first.
* test(native-chat): fixture deps match the host journal database shape
Attach-flow and reconcile-attach fixtures stop passing a journal database those inputs do not take, and host and restore fixtures pass the one they now require instead of the removed journal root.
* test(native-chat): state why the runtime-state fixtures' existing casts are safe
* fix(native-chat): start up normally when this process cannot open the chat journal
A process refused the chat journal, because another Orca owns it or because its own journal will not open, failed startup restoration: the window booted in degraded no-save mode and a paired phone could not list any tabs. Startup restoration now treats the refusal structured requests are getting as having no structured host; terminals, tabs and saving go on, structured requests are still refused by the gate, and the install is retried on the next one. Any other install error fails startup as before.
* test(native-chat): name the owner-lock sweep test after the two sweeps it runs
* fix(native-chat): session history and terminal resume work while chats are refused
Session history (listing and preparing a resume) and a terminal typing a resume command only check whether a structured chat owns a provider session. In a process refused the chat journal they failed outright. They now take the refusal chats are getting as having no structured host, the same treatment startup restoration gets, through one shared helper; any other install failure still fails them. Chat requests keep the gate's refusal.
* test(native-chat): the first-work rename's fake journal saves the listing status
* fix(native-chat): open a chat whose per-chat journal file never got its schema
A crash between creating a chat's journal.db and creating its tables left an empty or schema-less file. Each chat used to open that file as an empty chat; the importer instead refused the open as "try again" forever. A file with no journal_sessions table is now read as never written, the same as one with no rows. A file that is not a database, or whose read fails, is still refused.
* fix(native-chat): let the event loop run between chats during startup restore
Opening a chat's journal is synchronous SQLite now that no per-chat directory
is created first, so the restore of every visible chat ran as one main-thread
task. Each chat now waits for a macrotask before it opens.
* fix(native-chat): import a per-chat journal in bounded batches
The one-time copy of an earlier build's per-chat journal ran as one
transaction, which blocked the main thread for 650 ms on the largest chat.
Rows now copy 512 at a time, each batch its own transaction, yielding to the
event loop between batches. The rows go into a block journal_import_blocks
reserves, which no reader follows and no other chat is allocated; the last
batch publishes the chat's pointer, repair marker and import marker together
and releases the reservation. A copy that stops midway leaves only that
block, which the next open clears and copies again. Two opens of one chat
import one after the other.
* fix(native-chat): refuse chats when the owner lock file cannot be opened
A lock file that is not a database, or cannot be opened, made the claim throw
before any refusal was recorded, so startup restoration failed on every
launch. The claim now sits in the same try as the database open and records
the same typed refusal.
* fix(native-chat): finish reclaiming pages a delete frees during a running pass
A reclaim pass ended as soon as the freelist stopped shrinking between steps,
so a second delete that freed more than one step's worth mid-pass ended it
early and left those pages on the freelist. A pass now ends only when a step
itself frees nothing, or the freelist is empty.
* test(native-chat): desktop session history is served while chats are refused
* fix(native-chat): a send to a chat holding a newer Orca's rows says to update
A chat opened read-only because a newer Orca wrote rows to it answered a send
with the generic write failure. It now refuses the way a database a newer Orca
wrote does, with the same reason and words.
* fix(native-chat): keep chat tabs while this process cannot list its chats
A process whose chats another Orca owns, or whose chat journal will not
open, has no structured host. Its session-tabs inventory still answered,
with no chat rows, and the renderer read that as "every chat was closed":
it removed the restored chat tabs and the next session save persisted
their placement away.
The inventory now says `agentSessionsUnverifiable` when the last tab
restore ran with chats on disk but no host to list them. The flag is set
and cleared at the per-client projection point beside the client-hosted
page hold, and the restore is memoised only once a host answered, so a
later lock takeover or journal open republishes the chats and clears it.
The renderer keeps agent-session tabs, and keeps cancellation tombstones,
against an inventory that does not affirm its chat set.
* fix(native-chat): say chats are open in another Orca, with this process's way past it
A process refused because another Orca owns the profile's chats sent the
generic `journalUnavailable` reason, so current desktop and phone surfaces
said "couldn't open this chat's history right now. Try again." — a step
that never helps while the other Orca runs.
The refusal now names its own reason, `journalOwnedElsewhere`, with the
refused process's kind (dev desktop, packaged, orcad) as a fact. Each kind
gets its own step: quit the other Orca, or give this one its own profile
(ORCA_DEV_USER_DATA_PATH) or data folder (ORCA_USER_DATA). The sentences
are added to the shared notice copy, the desktop catalogs in all six
locales, and the boot catalog.
A client that predates the reason reads it as none and keeps the code's
words; an unknown kind reads as the packaged app's step. The `message`
released clients print is unchanged. Which requests refuse does not change.
* fix(native-chat): restore chats on taking ownership, without a list to ask
A refused startup kept its hostless result, so after the owner quit this
process never installed a host, never reconciled restart leases, and kept
telling clients it could not list its chats until a desktop chat request.
Taking the lock now reruns startup restoration once and pushes the chats.
* test(native-chat): a navigation reply says chats are unverifiable while refused
* fix(native-chat): retry a refused owner lock at most every 5 seconds
The lock frees as its holder exits, but a refused process only learns that
on its next retry, and the 30 s cap left a second Orca refusing chats for up
to half a minute after the owner quit. One retry is an open and BEGIN
EXCLUSIVE on an empty file.
* fix(native-chat): install before deciding whether a takeover must republish chats
A list that landed on the refused startup after the lock was taken finished
after the takeover had already checked, so nothing republished. The takeover
now installs first, waits for any restore in flight, and restores only then;
the restore that clears "cannot tell" pushes the frames itself, so a list
that heals the inventory first reaches subscribers too.
* fix(native-chat): no takeover lands a host after the runtime stop
Quitting cancelled a refused claim's retry only at its end, so a retry firing
during the stop's awaits took the lock and installed a host the stop never
tore down, and the lock was then released under an open journal. The stop
now cancels the retry first, keeping the refusal, and repeats its teardown
while an install that began during it (a takeover already under way) is
pending, so no journal connection outlives the lock.
* fix(native-chat): show a thrown refusal in its own words, not its code
A refusal the host throws reaches the client as an RPC error whose message is
the bare code; its reason and facts ride only in the error's data, which no
client read. The chat pane's status line therefore printed
agent_session_journal_unreadable, a send took the bare "not sent" path, and
other writes said the outcome was unconfirmed.
One shared reader, agentSessionThrownRefusal, now reads the refusal from the
error data. A failed history read shows the refusal's read-history words, a
send keeps the refusal behind its Retry exactly as a returned refusal does, and
the other writes (desktop and phone) name the refusal instead of doubting the
outcome. The phone's read failure goes through the same reader.
* fix(native-chat): log a failed journal open once per distinct failure
Every chat request retries a journal open that failed, which is intended, but
each retry also logged the failure with its full stack: a junk database file
logged the same "file is not a database" error 189 times in a minute. The open
now logs a failure only when its code and message differ from the last one
logged, and forgets it once an open succeeds. The retry is unchanged.
The open moves to its own module beside the runtime, which had no room left.
* fix(native-chat): restore lists a chat from its per-chat file and copies it on first use
Startup restore opened every restored chat, and that open copied the chat's
per-chat file into the host database, so the first boot after an upgrade paid
the whole one-time copy before the chat list appeared.
A restore open now reads a chat that is still in its per-chat file straight
from that file, read-only, with the importer's own reader, and closes the file
before moving on. That read drives the listing, the status row and the
restart offer, as it did when every chat had its own file. The copy becomes
owed work on the chat's write queue: it runs before the chat's first write,
and a reader that reaches the chat awaits it. A chat the host already holds,
or that was copied before, still opens through the import and its reimport
rules, and so does a file whose read needs a repair written.
* fix(native-chat): no host stays registered after a stop an install spanned
Each teardown pass clears the registered host before it awaits an install in
flight, and that install registers its host when it finishes. The pass then
tore the host down but left it registered, so a request after the stop was
served by a host whose journal was closed. The stop now clears the slot once
its passes are done.
* fix(native-chat): checkpoint the journal with a full flush on macOS
synchronous = FULL fsyncs each commit, but macOS fsync leaves the drive cache
unflushed, so FULL alone does not survive a power loss there. With
checkpoint_fullfsync, each checkpoint uses F_FULLFSYNC; elsewhere it is a no-op.
The comment that said FULL alone was enough is corrected.
* fix(native-chat): delete a per-chat journal once its copy verifies
An imported chat's per-chat file was kept under an `.imported-*` name, which
doubled the disk its history takes. The copy now reads back from the host
database before it is published: its items, submissions, epoch and tip must
match the file's. Only then does one transaction publish the chat with its
import marker, and the file and its WAL files are deleted, the directory too
when nothing else is in it (a pre-SQLite transcript there is kept).
A copy that does not match is never published: the file stays, the chat is
refused as unreadable ("Unable to load this chat."), and the mismatch is logged
once. A file left behind by a failed delete or a crash matches the marker, so
the next open deletes it rather than copying it again; a file an older build
wrote after a downgrade still differs, and is still copied again.
* fix(native-chat): verify an imported chat a batch at a time
The check that a copied chat reads back as its per-chat file folded both whole,
each in one synchronous task: over half a second on the largest chat. Both
reads now go a batch at a time between turns of the event loop, like the copy
itself, and count rows as well, so a copy that lost a row with no item in it
is caught too.
* fix(native-chat): restore reads a chat's per-chat file a batch at a time
Restore folded a chat still in its per-chat file in one task, so the largest
chat's file held the main thread for about half a second at startup. The fold
now takes the file a batch of rows per turn of the event loop, into the same
fold a replay uses, and nothing reads it before it is done. The file is still
closed before restore moves on.
* fix(native-chat): end a per-chat copy on a turn of its own
A chat's first open ran the copy's last steps (the verified publish and the
per-chat file delete) and the replay of what was copied in one task. The copy
now yields before it returns, so the replay, which every open runs, is a task
of its own.
* fix(native-chat): commit a per-chat copy's batches without an fsync each
Each 512-row batch of a chat's first-use copy committed under synchronous =
FULL, so a large chat paid one fsync per batch, about a quarter of its first
open. The batches now commit under NORMAL, set and restored in the batch's own
task so no other chat's commit runs under it. The publish that makes the copy
visible still commits under FULL, and under WAL that sync makes every earlier
batch durable with it. A crash before it leaves only the unpublished block,
which the next open clears and copies again.
* fix(native-chat): roll back a chat journal transaction whose COMMIT fails
The shared connection's transaction rolled back only when its body threw. A
COMMIT that failed left the transaction open, so every later write, for any
chat, failed with "cannot start a transaction within a transaction", and reads
saw rows that never committed. Under the unsynced copy the failure also tried
to restore the sync level inside the open transaction, which SQLite refuses,
so the caller got that error instead of the COMMIT's.
One transaction helper now covers the body and the COMMIT, rolls back whatever
transaction survives, and rethrows the original error. Schema creation uses it
too. If that ROLLBACK fails as well, the connection is marked stranded: each
later use retries the ROLLBACK, and until one goes through every chat gets the
same "history unavailable, try again" refusal a journal that will not open
gives. The rollback that frees it also restores the FULL sync level.
* fix(native-chat): keep the chat journal connection until its close succeeds
Closing the journal dropped its connection handle before closing it. A close
that failed left the database reporting itself closed with the connection still
open, so the stop that retried the teardown found nothing to close and released
the owner lock over a live connection.
The handle is now dropped only once the close succeeds. A failed close keeps
the runtime pending and the lock held, and the next stop closes that same
connection before it releases the lock.
* fix(native-chat): publish the runtime only once it holds the chat journal lock
When this process could not open the owner lock file at all (a permission
error, or a file that is not a database), the runtime counted that as owning
the chats and wrote orca-runtime.json. That overwrote the real owner's entry,
so the CLI was sent to a process that cannot serve its chats.
A claim that throws is now refused like one another process holds: the runtime
starts but does not publish, the claim's existing retry keeps asking for the
lock, and discovery publishes once the retry takes it. Chats still get the
refusal for the failure itself, and startup restoration reruns on the takeover
the same way it does after another owner quits. A sole process whose lock file
never opens is not found by the CLI until it does.
* fix(native-chat): keep a chat's history when an older build started it over
The first copy deletes a chat's per-chat file, so an older build run after a
downgrade finds no file and starts the chat from nothing. On the re-upgrade that
fresh file was copied in as the newer history, replacing everything the shared
database held for the chat, and then deleted.
A file whose epoch is not the one last copied and that opens with
`session_created` is now kept: neither copied nor deleted, and the chat keeps
the history it has. A file that carried the copied epoch on is still copied
again, as before.
* test(native-chat): pin which chats startup restore copies
Restore copies a chat still in its per-chat file only when restore itself has
to write to it: settling what the last run left open, here a running tool call
or a send handed over and never answered. Every other restored chat stays in
its file until its first use.
* test(native-chat): pin the copy wait on a read that opens a chat restore opened
A read queued behind restore's open of the same chat reaches the conversation
through its own open rather than the listing. It must still wait for the
owed copy, or it reads the chat before its history is in the one database.
* fix(native-chat): record a set-aside per-chat file so no later open reads it
Setting aside a file an older build started over is decided once and kept in
the new `journal_set_aside` table (schema 2, additive), with the file's epoch
and tip as they were. Every later open of the chat skips the file without
opening it, across restarts and after the older build writes more to it:
anything written there grows from that build's own start, never from this
build's history.
The best-effort delete moves beside the per-chat file reader.
* fix(native-chat): set aside any per-chat file at an epoch this build never copied
A chat's per-chat file is deleted once its copy verifies, so a file that
reappears at another epoch was never this build's history, whatever its first
row says: an older build started the chat over, possibly rewinding it after
(`handle_forked`), or rolled the epoch of a file whose delete had failed.
Copying any of them would replace everything the chat holds, so each is set
aside. Only a file still at the copied epoch is copied again (it grew) or
deleted (it did not). The first-row check is gone.
* fix(native-chat): copy a reappearing per-chat file again only while this build has not written past the copy
A per-chat file that an older build carried on under the copied epoch was
copied again even when this build had also written to the chat since the
copy, or had rolled its epoch. The second copy replaced the chat's block,
so what was sent in this build after the copy was gone for good.
Now the file is copied again only when the chat still stands exactly as it
was copied: the same epoch and tip the import marker recorded. Otherwise it
is set aside like any other file that is not this build's history, left on
disk untouched and recorded so no later open reads it. A second copy
therefore never replaces rows this build wrote, keeps the file's own epoch,
and the fresh-epoch rewrite goes away. The row it adds now says the history
includes what the older version recorded, not that anything was replaced.
* test(native-chat): pin that a chat founded here keeps its history, and the v1 schema upgrade
A chat this build founded has a pointer and no import marker, so a per-chat
file an older build later starts for it is set aside. Nothing pinned that
half of the rule: letting such a chat be copied again replaced its history
and every test still passed. A second test pins that a database written at
schema version 1 upgrades in place, gaining the set-aside table and keeping
its import markers.
* test(native-chat): drop a lost copied row by patching the source, not wrapping it
* chore(mobile): restore the mobile lockfile to main's
* fix(native-chat): pass a classified journal refusal through a send or Stop unchanged
* fix(native-chat): refuse a read whose owed copy fails as a failed open does
* test(native-chat): measure only the replace's WAL in the block-key case
Opening the chats starts a free-page pass that waits one event-loop turn,
and the seed never yields one, so that pass was still pending when the
replace committed. It woke during the async stat and reclaimed the pages
the replace freed, adding ~500 KB of WAL whenever the stat lost the race
(Linux CI). Drain that pass before measuring and stub the replace's own.
* test(native-chat): the RPC fixture's status journal can save its listing status
The status feed now hands every projection to the journal, which decides whether it is worth saving.
* test(native-chat): state why the RPC fixture's status journal cast is safe
* fix(native-chat): refuse a per-chat copy whose rows differ from the file, not only its counts
* fix(bench): build the replay benchmark's baseline arm from the base tree and release its handles on failure
* fix(native-chat): retry a failed listing status save on the next read of a cached status
* refactor(native-chat): drop the chat journal owner lock; the process instance lock already guards the profile
The journal carried its own exclusive lock, with a retry loop, an in-process
takeover, lock-gated runtime discovery and a "chats are open in another Orca"
refusal. Every shipped process kind (packaged desktop, serve mode, orcad)
already refuses a second instance on one profile before the journal opens, so
the lock only ever mattered for dev desktops, which the next commit covers at
the process level instead.
The host now opens its one journal connection at install with no lock. What a
sole process whose journal will not open needs stays: the install refusal
recorded for the gate, the no-host startup path, and the unverifiable chat
inventory, now in structured-agent-session-host-refusal.ts. The unreleased
journalOwnedElsewhere reason, its processKind fact and their copy are removed.
* fix(startup): dev desktops take the single-instance lock, and a second one says why it quit
Dev skipped Electron's single-instance lock so parallel `pnpm dev` runs from
several worktrees would not quit silently, but two dev processes on the
default orca-dev profile then write the same stores at once. Dev now takes
the lock like packaged builds: a second launch on the same profile focuses
the first window and exits with code 3, printing one stderr line that names
the taken profile and how to run another copy (ORCA_DEV_USER_DATA_PATH).
Serve mode, the macOS diagnostic bypass and the E2E harness are unchanged:
an E2E launch still skips the lock unless it sets
ORCA_E2E_ENFORCE_SINGLE_INSTANCE_LOCK=1.
* refactor(native-chat): key journal rows by chat, epoch and sequence
Rows in the host's journal database are now addressed by the chat's own
identity, with `(session_id, epoch, seq)` as the primary key, the same
shape each per-chat file already used. The block-keyed layout goes with
everything built on it: the block column and its allocator, the 2^21
block ceiling, and the import's reserved block table.
A first-use copy writes its rows under the file's epoch, which the chat's
pointer does not name until the verified copy publishes it, so no reader
sees a half-copied chat. A try that stopped midway leaves only rows no
pointer names, and the next try deletes them before it copies again.
Replace, rollover and repair delete by (chat, epoch).
This build's history always wins: once a chat was copied or founded here,
any per-chat file that reappears is set aside, and the same-epoch copy
again after a downgrade is removed.
The bounded free-page reclaim after every delete is dropped;
`auto_vacuum = INCREMENTAL` stays at file creation, so a later periodic
reclaim can still be added. Session search keeps its own step.
The schema moves to version 3. Versions 1 and 2 were written only by
unreleased builds of this change and are refused as found, not migrated.
* fix(native-chat): open a chat journal a newer Orca wrote read-only instead of refusing it
After a downgrade, the host's journal database carries a newer user_version. It was refused
outright, so every chat's history disappeared. It now opens on a read-only connection, as the
per-chat journals did: each chat shows what this build can read, from the database or a per-chat
file never copied in, and every write is refused with "Chats were saved by a newer Orca. Update
Orca to keep using them." Nothing is written, copied, repaired or founded, and the file stays
byte-identical. A table the newer schema changed reads as the same read-only refusal, not damage.
* refactor(native-chat): leave the saved listing status to the change that reads it
Nothing in this change reads the per-chat listing status column: it was a stored copy of a fact
the status feed derives, written after every turn end and cleared on every epoch change. The
status_json / status_seq columns, their writer, the saved-status type, the status feed's save and
its retry on a cached projection all go, with their tests. The change that lists chats from a
saved status adds the column back beside its reader.
* fix(native-chat): a chat saved by a newer Orca says to update Orca, not to try again
When a newer Orca wrote the chat journal, this build opens it read-only. A send or a Stop was
refused with the reason `journalUnavailable`, so today's desktop and phone clients chose the
words for an open that can clear: "Orca couldn't open this chat's history right now. Try again."
Retrying never cleared it; only updating Orca does.
The refusal now names its own reason, `journalWrittenByNewerOrca`, whose words are "Chats were
saved by a newer Orca. Update Orca to keep using them." A read refused the same way names it
too. An older client does not know the reason, drops it, and falls back to the code's words
("Orca couldn't read this chat's saved history."), and released clients still print the message.
* fix(native-chat): a chat journal from an unreleased build reads as unusable, not as retryable
A chat journal database stamped with schema 1 or 2 was written only by unreleased development
builds of this change. Opening it threw a plain error, which every chat reported as "Orca couldn't
open this chat's history right now. Try again." Retrying never cleared it.
It now throws a named error that is classified as unusable, so every chat says "Unable to load
this chat." The one log line names the file, says an unreleased development build wrote it, and
says to move it aside. Nothing migrates or renames it.
* docs(native-chat): drop the second-Orca-owns-the-chats case from three comments
The chat-only owner lock is gone, so only a chat journal that will not open leaves a runtime
unable to list its chats.
* docs(native-chat): correct three chat-journal comments the redesign left behind
A per-chat file left without its WAL is set aside, not copied again; nothing runs an incremental
vacuum yet, so the auto_vacuum mode is kept for a later pass; and the idle sweep drops a chat's
in-memory fold, since a chat holds no journal connection.
* refactor(native-chat): stop exporting chat-journal names nothing imports
Each is used only inside its own module now; the teardown's export served a deleted test.
* test(native-chat): name the version-0 test for what it covers, and check every journal table
The test named 'migrates an older user_version forward' covers only a version-0 file that already
has its tables; versions 1 and 2 are refused. The table test now also checks journal_imports and
journal_set_aside.
* fix(startup): a second dev launch's exit line no longer claims it focused a window
The running dev instance may be a background launch or a server, which show no window. The line
now says only that this launch passed its request to that instance.
* fix(native-chat): a failed structured-chat install closes the journal connection it opened
The install opened the chat journal database and closed it only if the record store then failed
to open. A later failure, such as the model catalog wiring or the host constructor, left the
connection open, and the next install opened a second one in the same process. Every failure
after the open now closes it.
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2a001b43e5 |
fix(mobile): stop a closing phone stream from ending the terminal or chat feed that replaced it (#22939)
* fix(mobile): don't unsubscribe a terminal stream that already ended * fix(mobile): keep the stream registry under the line cap and expect no error after a streamed end The streamed `end` now closes a direct stream, so a later reply for that id is unrouted instead of reaching the listener as an error; the subscription recording test expected the old error. Inline the error wrapper so the registry fits the 300-line cap, and shorten the comments. * fix(mobile): reopen a native chat stream the host ended while the screen still shows it * fix(mobile): only the focused screen takes back a host-ended chat feed, and a reopen keeps loaded history * fix(mobile): give each native chat subscription its own token, and reopen with the first page * test(mobile): pin the reopened chat subscribe params without a cast * fix(mobile): show a host-ended chat feed as an error instead of reopening it With a token per subscription, the desktop ends a phone chat feed only when the phone closes it or the socket drops: no client sends the connection-wide chat unsubscribe, a socket close delivers no end, and every desktop with mobile chat keys feeds by the client's token. The reopen-with-backoff layer and the history-keeping reopen merge guarded a trigger that no longer exists, so they are removed. An end that still reaches the screen settles the feed as an error, so a dead feed is never shown as live; leaving and re-entering the chat subscribes again with a fresh token. * test(mobile): re-record the RPC goldens for the per-subscription chat token Each nativeChat.subscribe now sends its own token, so the native chat scenarios expect `claude:session-1:<id>` in the subscribe params, and the four native chat recordings (native-chat-page-earlier and the session.native-chat-page matrix) record that token in their subscribe and unsubscribe payloads. Every other golden moved only its `baseline` header, repinned to the commit recorded from. * test(mobile): repin RPC recordings to the merge with main and re-record Merging main moved the product tree the recordings are pinned to, so the baseline is repinned to the merge commit and the whole corpus re-recorded. Only the four native chat recordings change content, because each nativeChat.subscribe now carries a per-subscription token; every other recording moves only its baseline header. * test(mobile): repin RPC recordings to the merge with main and re-record Merging main brought #22762's recordings, #23757's repin and #23720's recorder change, so the corpus is repinned to the merge commit, the last commit to touch a recorded path, and re-recorded whole. Against main, 786 recordings move only their baseline header and 4 native chat recordings change content: their nativeChat.subscribe and nativeChat.unsubscribe carry the per-subscription token instead of claude:session-1, which also moves their scenarioSha256. |
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21d4ae9448 |
feat(agents): pre-trust the folder wherever Orca starts an agent (#23744)
* feat(claude): pre-trust worktrees Orca creates Claude Code asks "Do you trust this folder?" on first launch in any folder it has not seen, which blocks unattended launches in worktrees Orca itself made. Orca now records where a worktree's content came from when it creates it, and before each Claude launch writes Claude's own folder-trust entry for that worktree's root (never the main checkout) when the new setting is on and the content is the user's repository. Forks, bare commits, folder workspaces and external checkouts keep Claude's prompt. The write takes Claude's lock, never creates or breaks the file, runs on the SSH host itself, and is revoked when the worktree is removed or the setting is turned off. Launches that already pass --dangerously-skip-permissions also skip the trust prompt for that one process only, via CLAUDE_CODE_SANDBOXED=1 on the command. * fix(claude): parse the relay trust request with a schema and ship its search keys * fix(claude): never write a WSL guest's trust into the Windows config A WSL worktree's Claude reads the guest's own config. Two paths still wrote its trust into the Windows host's ~/.claude.json instead: the Claude auth prep's fallback (runtime 'wsl' but the host config dir, when the WSL home cannot be resolved), which wrote a Linux-path key the removal revoke can never delete; and the Agent Teams leader, which passes no auth or distro and wrote a UNC key. Require the guest's own config dir, and treat any WSL worktree path as guest-only. * revert(claude): drop the skip-permissions trust shortcut Pre-trust stays limited to worktrees Orca creates from the user's own repository. The per-launch CLAUDE_CODE_SANDBOXED prefix skipped Claude's trust question in every folder for launches carrying the skip-permissions flag (Orca's default Claude args), including the user's own folders and fork PR worktrees, and the setting could not turn it off. Remove the prefix, the inherited-variable strip that existed only for it, and the Agent Teams leader-to-teammate propagation; restore the tests that pinned the prefixed launch string. * fix(claude): revoke SSH trust in the config file the grant used At spawn the relay resolves Claude's config from the launch env, which carries a CLAUDE_CONFIG_DIR set in Orca's Claude default env. claudeTrust.converge had only the relay's own process env, so removing the worktree or turning the setting off revoked in the default file and the grant outlived the worktree. Send the config-file keys with the request, as the local revoke already uses. * i18n(settings): translate the Claude worktree trust setting * fix(settings): say Claude trust applies when Orca starts Claude The description said Claude skips its trust prompt in any worktree Orca created. Trust is written only when Orca itself starts Claude there, so a `claude` typed by hand in a fresh worktree still asks. Say that, and bring the es/fr/ja/ko/zh translations in line with the new text. * fix(worktrees): treat a base on an Orca-added fork remote as fork content A worktree based on a named ref was always stamped as the repository's own content, so picking the fork remote Orca adds for a pull request (or a local branch tracking it) as the base made a fork's code eligible for Claude trust. At create time, read the repo's `remote.<name>.orca-created` markers and each branch's tracked remote in one `git config` call; a base on such a remote is stamped as a fork's content, and a read failure is not vouched for. Remotes the user added, such as `upstream`, stay first-party. * perf(claude): revoke worktree trust once per config file, not per worktree Turning "Trust worktrees Orca creates for Claude" off read and parsed the whole Claude config once per Orca worktree on the main process. Group the revocations by config file locally and by SSH connection, and make claudeTrust.converge take a batch of requests. * feat(settings): one agent-wide "trust the folder" setting in Settings > Agents Replace the Claude-only worktree trust toggle with a single setting, agentWorkspaceTrustEnabled (on by default; unreleased, so no migration). The row says what it does for every agent: agents Orca starts skip their "trust this folder?" prompt in that worktree or folder, turning it off stops new trust while existing trust stays, and while it is off unattended launches (orchestration workers, automations, the phone) stop at the agent's trust question until someone answers. Translations for es/fr/ja/ko/zh. Also restores the `awaitingUnnamed` chat catalog keys an earlier merge of main dropped from this branch. * feat(agent-trust): pre-trust the workspace for every preset agent at PTY spawn Every Orca-started agent PTY passes through one of the two spawn builders with its declared launchAgent, which survives setup-script wrapping. The builders now call one hook that, for a fresh launch (never a reattach or restored pane) with the setting on, applies the agent's trust preset to the worktree, folder workspace or main checkout it starts in. - One dispatcher, applyAgentWorkspaceTrust(preset, workspacePath, launch context), carries what a writer needs: the final spawn env, the Claude managed-account auth prep, the WSL distro and the SSH connection. - Claude joins the presets on both the claude and claude-agent-teams entries. Its writer stays grant-only in claude-folder-trust-file.ts: the file Claude reads (CLAUDE_CONFIG_DIR / custom-OAuth suffix / legacy .config.json / a WSL guest's own file), Claude's <file>.lock never broken and taken only when a write is due, atomic temp+rename keeping mode and symlinks, never creating the file, NFC + realpath keys. - SSH Claude launches forward the optional claudeFolderTrust spawn field so the relay grants with its own spawn env; old relays ignore it and Claude asks. Other presets keep the SFTP writer. A WSL launch never writes the Windows home: non-Claude presets skip it, Claude writes the guest's file or nothing. - Codex keeps the 20 s deadline its shared config lane needs; every other preset gets 1.5 s. A miss means the agent asks; trust bookkeeping never fails or blocks a launch. Removes the Claude-only machinery this replaces: the eligibility/host/ lifecycle/spawn modules, the persisted creation content-origin field and its classification, revoke-on-removal, the setting-off sweep, the claudeTrust.converge relay method and the Agent Teams leader special case (the leader pane now spawns through the hook with the claude preset). The agent config types move to tui-agent-config-types.ts so the config table stays under the line budget. * refactor(agent-trust): delete the pre-spawn trust writes the spawn hook replaces The spawn hook is now the only owner of agent folder trust, so remove every other writer: - the agentTrust:markTrusted IPC channel, its preload bridge and types, and all renderer callers (agent-trust-preflight and its callers in the background session, work-item direct launch, session continuation, worktree creation, folder workspace composer and session fork); - the main pre-spawn sites: the createdWithAgent preflight in worktree-remote.ts, markLocalWorktreeTrusted/markRemoteWorktreeTrusted and the runtime's markWorkspaceTrustedForAgent family with the markTrusted ports of the runtime create flows; - Codex's own launch-prep and resume-prep trust writes. Each of those launches reaches a spawn builder with launchAgent set, so the hook covers it. This also fixes a live gap: the worktree-remote.ts copy of the preset switch omitted Antigravity, so an agy agent started from a desktop worktree create still asked; the single dispatcher covers it. Trust is also written on the host the PTY actually spawns on, which removes the #11163 class of writing the wrong host's config. * test(agent-trust): type the spawn-builder trust fixtures and prove the spawn waits for trust The builder test passed untyped args (a string launchAgent) and cast its deps, which failed tc:node. It now builds both spawn states from a fully typed deps fixture and a typed restored pane, with no casts. Adds a case that holds the trust write pending and checks the builder does not finish until it settles, the ordering the deleted renderer and launch-prep tests used to cover. * fix(agent-trust): give SSH trust writes the 20 s deadline again The dispatcher gave every non-Codex preset a 1.5 s budget, including the SSH writers for Cursor, Copilot and Qoder, which make several round trips over the link. Before this PR those writes had 20 s (desktop) or no limit (runtime), so on a slow link an unattended SSH worker would now stop at the agent's trust question. SSH writes get the 20 s deadline back; local non-Codex writers keep the short budget, and Codex keeps 20 s. The relay's Claude grant keeps the short budget: it writes the relay host's own disk and does not cross the link. * fix(agent-trust): never pre-trust a home folder or a filesystem root A folder workspace can be the user's home folder or a disk root. Claude and Copilot let a trusted folder cover every folder under it, so pre-trusting one of those would silently trust everything on the machine for those agents. One check, isHomeOrFilesystemRoot, now refuses them for every preset: the dispatcher checks roots and this machine's homes (including the spawn env's HOME and a cached WSL guest home), the SSH writer checks the remote home it already resolves, and the relay checks its own home. The agent then asks, as it would without Orca. * refactor(agent-trust): drop the Codex launch plumbing that only carried trust The spawn hook replaced the trust writes in Codex launch prep and resume prep, which left the fields that fed them unread: CodexHomeLaunchContext.workspacePath and .launchAgent, the resume prep's workspacePath, and the structured Codex launch input's workspacePath (plus the extra target lookup that produced it). Remove them and their plumbing; unavailableManagedHomePath stays. Also removes test stubs of runtime trust methods this PR deleted, whose not-called assertions could no longer fail, and two comments that still described the old trust preflight. * chore(reliability-gates): point the trust gate at the spawn-time trust tests The agent-session trust gate still listed three test files this PR deleted (the renderer preflight, the Codex launch-prep deadline and the e2e trust completion suites), so check:reliability-gates, which runs in PR CI and in pnpm lint, failed on missing files. Its invariant also described the deleted IPC handler and pre-spawn writers. The gate now covers what replaced them: the spawn builders holding the spawn until trust settles, the fresh-launch and setting gates, the per-preset deadlines, and the home and root refusal. * fix(agent-trust): skip the relay Claude grant for a WSL shell On a Windows SSH host whose pane shell is wsl.exe, Claude runs inside the WSL guest and reads the guest's config. The relay still granted trust in the Windows host's own .claude.json, writing the Windows home for a WSL launch, which the local path never does. The relay now skips the grant there, so that Claude asks, as a local WSL launch does when Orca cannot reach the guest file. * perf(agent-trust): only agent launches wait on the trust hook Both spawn builders awaited the trust hook on every spawn, including plain shells, reattaches and agents without a preset. Awaiting even a resolved promise adds microtask ticks ahead of the pane-spawn reservation check, and this handler already keeps non-Codex spawns off an await because an extra tick reorders those reservation races. The hook now returns null when there is nothing to write, and the builders await only a real trust write. * test(agent-trust): keep the home and root cases off any real Claude config The home and root cases ran the real Claude writer with the test process's env, so a regression in the guard would have written trust for the home folder and / into whatever Claude config that env named. They now point CLAUDE_CONFIG_DIR at a folder that does not exist, and the writer never creates a config. * test(runtime): drop needless casts from the launch-host test The renamed launch-host test kept three `as never` casts on launch options that already match launchAgentTerminal's parameter type. The changed-lines casting gate reads the renamed file as new and failed on them. * test(agent-trust): type the Claude grant mock with the real writer's signature The mock took an unknown target, so installing the real writer as its implementation would not typecheck under strict function types. * fix(codex): drop the launch context the trust move left unread in local spawn env * fix(agent-trust): queue Claude grants per config file so a launch burst keeps them all Concurrent grants in one process retried Claude's file lock in lockstep, so each retry round admitted about one winner. Starting 12 Claude agents at once left 6 of them at the trust question with nothing logged. Grants for one config file now queue in-process; only Claude's own writes contend for the lock. The relay shares the writer, so bursts of SSH launches are covered too. * fix(agent-trust): never pre-trust a folder above a home either The guard refused only an exact home or a filesystem root. A folder workspace at /Users, /home or C:\Users was still pre-trusted, and Claude walks up parent folders for a non-git folder, so every non-git folder in the user's home became trusted. The guard now also refuses any folder that contains a home, on every host, and is renamed to say what it decides. * perf(agent-trust): skip the SSH round trips for Antigravity, which has no remote writer Every Antigravity launch over SSH now reaches the remote trust writer, which resolved the remote home and realpath'd the workspace over the link before writing nothing (the known remote gap). That delayed each launch by two SSH round trips, and up to the 20 s deadline on a stalled link. It now returns first. * fix(settings): keep the hidden folder trust row out of web-client settings search The paired web client hides the host-only "Trust the folder" row, but settings search still listed it, so searching "trust" opened the Agents pane with no matching row. Its search entry is now filtered the same way as Agent Awake. * fix(agent-trust): a failing breadth guard skips trust instead of failing the spawn * docs(qoder): New Tab now pre-trusts through the agent-wide spawn hook * fix(agent-trust): never pre-trust a home reached through a symlink Every trust writer stores the workspace's resolved path, but the breadth guard compared only the path as given. A folder workspace that is a symlink to the home folder (or a real home picked while HOME names a symlinked one, as on distros that link /home to /var/home) passed the guard, and Claude, Copilot and Cursor then trusted the home itself. The local dispatcher and the relay now compare given and resolved forms of both the workspace and each home. The SSH writer resolves the remote home alongside the workspace, in parallel, so it adds no round trip. Local non-Claude WSL launches still skip before any filesystem call. * fix(relay): a failing breadth guard skips Claude trust instead of failing the SSH spawn The relay ran its home/root guard and homedir() before its catch, so a throw there rejected the relay's terminal spawn. Same fix as the main dispatcher's: the whole grant, guard included, is best-effort. * fix(agent-trust): guard the path each writer stores, not the path Orca was asked to trust The breadth guard checked the launch's workspace while each writer stored a transformed path, so every new transformation opened a hole. Codex stores a linked worktree's main checkout: with a git repo rooted at the home, a Codex launch in one of its worktrees wrote trust for the whole home. One relay-safe host module now computes the stored path (Codex's main-checkout hop, then given and resolved forms of it and of each home), refuses a root, a home or a folder above one, and only then writes. Main uses it for local and WSL launches and the relay for Claude. An unknown home writes nothing, and the WSL home cache is keyed case-insensitively by distro. * fix(ssh): the relay writes every preset's trust on the SSH host itself Codex, Cursor, Copilot and Qoder trust over SSH was written from the desktop over SFTP: four or five round trips per launch, so it needed a 20 s deadline that outlasted the 8 s draft paste, the 10 s phone wait and the 15 s web-client create. It also skipped Claude's atomic rename, ignored CODEX_HOME, and stored the worktree where local Codex stores the main checkout. The unreleased `claudeFolderTrust` spawn field becomes `agentWorkspaceTrust`, sent for every preset. The relay derives the preset from the `launchAgent` it already receives and runs the same host writer main uses, on its own disk, within 1.5 s and with no extra round trip. Antigravity still returns early on the relay (its writer is unverified on SSH hosts), a WSL shell still skips, and any throw means the agent asks. Deleted: the SFTP preset writer, the remote Qoder writer, the SSH deadline clause and the desktop-side SSH root pre-check. * test(e2e): keep CLAUDE_CONFIG_DIR out of isolated Electron launches The spawn hook now writes Claude folder trust into the config CLAUDE_CONFIG_DIR names, so an e2e run started from a shell that sets it could add trust entries to the developer's real Claude config. Also drops a stale comment that still named Codex launch prep as the trust owner. * fix(agent-trust): guard Claude's resolve() form of the workspace too Claude's writer stores both resolve(path) and the realpath. The breadth guard compared only the given path and its realpath, so a workspace path that does not exist and climbs back with `..` (for example <home>/missing/..) passed the guard while Claude stored a key for the home itself. The guard now also compares resolve(path), so it sees every form a writer stores. * test(relay): pty.spawn writes agent trust before the agent's process starts Nothing exercised the relay handler's call into the trust writer, so removing that call, or no longer awaiting it, left every suite green while SSH launches silently stopped pre-trusting. The new case holds the trust call pending and checks the spawn waits for it, and that the call gets the request, the declared agent and the final spawn env. The reliability gate lists the new suite and records the resolve() form the breadth guard now compares. * fix(agent-trust): refuse a home only for agents that inherit trust from it The home and root refusal applied to every preset, so Codex, Cursor and Antigravity started asking in a home folder workspace, where they did not before. Only Claude, Copilot and Qoder let trust on a folder cover the folders below it; Codex matches its start folder or that folder's repo root, Antigravity the exact folder, and Cursor itself never inherits from a home, a folder above one or a shallow path. The refusal now reads a per-preset table in the host module, so the local and relay writers share the rule. * fix(agent-trust): trust Codex at the folder it starts in, as before Before this PR, Codex launch prep trusted the spawn's start folder. The spawn hook trusted only the workspace root and skipped terminals with no workspace, so Codex began asking in a floating terminal and in a subfolder of a non-git folder workspace: its lookup checks the start folder, then that folder's repo root, and a plain folder above it is neither. The hook now passes the resolved start folder for presets marked as keyed by it (Codex only), falling back to the workspace root. * fix(agent-trust): pre-trust a structured Codex chat's folder, as before Before this PR, creating a structured (native) Codex chat pre-wrote Codex trust for its folder through launch preparation. The PR removed that write and routed trust through the PTY spawn builders, which a structured chat never passes. Codex's app-server trusts the folder itself only when the chat's permissions can write it, so a read-only chat started running untrusted and ignored the project's .codex config. Creating the chat now calls the same dispatcher, behind the same setting, before launch prep. * fix(settings): plainer folder trust setting text |
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70475e0228 |
test: stop testing private internals through exports no caller needs (#23829)
Third audit wave. The detector looked for production modules exporting three
or more symbols that no production file imports — only tests do. That shape is
the authoring gate's fourth question failing: a test needing a production seam
no caller needs belongs at the real boundary instead.
Most hits were detector false positives and were left alone; the scanner misses
re-export barrels and dynamic imports, so every module was re-verified with rg
before any edit. Where a private predicate's behavior was already covered
through the module's real entry point, the duplicate cases are gone and the
symbol is module-private again. Where it was NOT covered anywhere else, the test
stays — this audit removes tests, it does not author replacements.
Production code deleted where tests were its only callers: the superseded
`filesystem-directory-listing-limit` module, the unused
`format{Hourly,Daily,Adhoc}Version` helpers and their orphaned prerelease
identifiers, the dead `filterByAutomationListSearch*` family superseded by
`matchAutomationListSearchRowKeys`, and the dead
`getAiVaultResumeWorktreeTargetStatus` copy of the live workspace branch.
Also drops two call-shape source greps in `relay-sweep-schedule.test.ts` that
asserted `index.ts` spells `jitteredSweepIntervalMs(30_000)`; the jitter math
has a behavioral owner at the top of the same file. The structural census that
counts role-gated vs total `setInterval(` calls stays — an ungated sweep runs in
every cell, and nothing else can catch that.
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29c49aec31 |
feat(native-chat): hold mid-turn messages in a host-owned queue (#23726)
* refactor(native-chat): remove the unused terminal handoff No client ever called agentSession.requestHandoff or mounted the handoff chrome. Delete the handoff coordinator, the terminal-owner runtime, the proof write path and the unmounted UI. Keep agentSession.handoffStatus, which released desktop clients read for worktree activation, and let records an older build left mid handoff reconcile through the ordinary restart and recovery paths. * fix(native-chat): never let the pre-stop snapshot hold a chat's stop Eviction now drains delivered events before quit's resume-offer snapshot. An unbounded wait there sits ahead of the provider stop, so a sink whose journal write stalls kept the child running until the step deadline aborted the eviction. The offer is advisory: bound the drain and stop the child regardless. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop helpers only the terminal handoff called `claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and `queryWindowsProcessRowsFresh` lost their last caller with the handoff. The fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`, the teardown path that still depends on that contract. Co-Authored-By: Claude <noreply@anthropic.com> * docs(native-chat): stop citing the removed handoff in lifecycle comments Six comments still named the handoff coordinator, a handoff suspend, or a terminal-owned session as live participants in the flows they describe. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stalled snapshot drain without a cast Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): pin that a start dead before proving owes no settlement The removed restart handoff test pinned this branch; nothing else did. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): keep the owner-status read behind an in-flight attach The handoff removal dropped the per-session queue from `handoffStatus`, so a read landing mid-start reported the reservation (no owner) instead of the settled chat owner, and shipped desktop clients blocked worktree activation on it. The read is queued again, as it was before the removal. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(terminal): remove the agent-session PTY write gate The gate only refused a write when a PTY had been bound to a chat session, and the only code that ever bound one was the terminal handoff this branch removes. With it gone, every admit/readmit returned "admitted" unconditionally, so the checks on the renderer write path, the runtime controller backstop, terminal.send, agent prompts, preview input and orchestration pointers, the refusal fields on terminal.send and worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane orchestration routing could no longer run. Ordinary writes take the same path in the same order as before. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop the transcript helpers only the handoff called appendLegacyTranscriptMessages fed the terminal transcript catch-up and proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost their last caller with the handoff. Their tests now go through the live entry points instead: the roster bounds through the legacy import, the pinned-read and growth tests through the ancestry replay the history window uses, and the marker rules through the string proof in their own file rather than the session-file resolver's. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): stop calling a starting chat "mid-handoff" A send refused because the chat's owner is not settled showed "The session is mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that reach it are a chat that is still starting, or one whose previous agent process has not yet been confirmed stopped. The message now says which of the two it is. The refusal code is unchanged. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stand-in roster decoder without a cast Co-Authored-By: Claude <noreply@anthropic.com> * refactor(codex): name the pinned rollout lookup for what it does With the terminal handoff gone, the module named codex-tui-rollout-proof holds only the pinned rollout lookup that structured Codex launches use to resume a thread, so the name described code that no longer exists. Rename the module and its options type. Also drop a mobile allowlist assertion that pinned the removed agentSession.requestHandoff method, which no longer exists to allow. * refactor(native-chat): type the owner-status reply as the host sends it The handoffStatus reply type still listed the terminal handoff's fields and states (terminal placement, host label, proof retry, queued and waiting phases, the to-terminal direction). No host writes them any more and the only client reader parses the reply as unknown, so they described nothing. The reply on the wire is unchanged. * refactor(native-chat): normalize terminal-handoff lease values once at decode Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types still admitted them, so readers across the host kept branches for values no path produces and the compiler could not point at them. The store now validates the on-disk shape, which still accepts those values so an older record is not quarantined, and maps them once while parsing: - `preparing` and `old-owner-stopped` become `recovering` - a `tui` lease becomes `native`; when it records a process it also becomes `conflicted`, the claim every build probes but never stops. A plain native owner would be stopped by restart recovery, here and in older builds. Revisions are taken over the normalized state on both sides of every compare, and the mapped record reaches disk with the store's first transaction, the same way the tab-id backfill does. The in-memory types narrow to what this build writes, and the branches that existed only for the removed values go. Structured-worker identity keeps its verdict for a former terminal owner by refusing a conflicted claim rather than a non-native kind. * refactor(native-chat): stop threading the owner kind through a reservation A reservation only ever names a native owner now, so the request no longer carries a kind and the reserved lease records `native` directly. The attach params keep `runtimeKind`: agentSession.ensure and create accept it, and the operation fingerprint stored in the ledger covers it. * test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else Hiding a tab also committed the visibility index, so the no-op transaction wrote the file even when its open-time revision was wrong. Committing the index first leaves the pending rewrite as the only reason to write. * fix(native-chat): name a chat write by its target, not the owner generation A write carried the fence of the last frame the pane read, and the host refused it unless that fence was still current. An idle release and the restart after it each move the fence, and the release publishes nothing, so a send after a release was refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a cold start was refused as stale. Every write already names what it acts on: a send its conversation, a cancel its turn, a prompt answer its item revision, a rewind its epoch; an option is last-writer-wins. So admission stops comparing the client's fence, and the rebase that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it. The writer-lease check stays, and so does the attach's compare-and-swap. Frames now stamp the fence read when each frame is sent instead of a copy each subscriber kept, which went stale on the same release. * fix(native-chat): every journal append reaches the chats that are open A journal write and its delivery to open readers were two calls, and some writers made only the first. A failed start whose lease could not be handed back, a provider revision with no frame behind it, and eviction's settlement were all journaled without reaching an open chat. A journal handle now reports every durable change, and the host's session map binds that report to the session's readers when the handle is set. Writers no longer publish what they append; the per-writer publish calls are deleted. * test(native-chat): an epoch replacement reaches the open chat * test(native-chat): each row reaches an open chat once, and a live handle enters only through the map * test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite The seeded record had no surface tab id, so the next open backfilled one and that rewrite alone made the no-op transaction write. The test passed with the legacy-lease rewrite signal removed. * test(worktree-activation): restore the OMP surfaced-agent resume test The handoff removal deleted it alongside the terminal-owner tests, but it covers the surfaced-PTY block that still guards resume, including an agent whose ownership is unknown. * perf(native-chat): a publish behind a delivered commit reads nothing Each commit now delivers itself, so the publish a provider frame still sends afterwards found every reader caught up but still read rows and rebuilt the timeline for each one. A caught-up reader now skips the read. * test(native-chat): state why the teardown test's fake journal is safe to cast * docs(native-chat): say mutation admission checks only the writer lease * docs(native-chat): drop the send rebase from comments that still described it * fix(native-chat): a message is accepted, then delivered A send to a chat with no running agent restarted the agent inside the send call, before the message was recorded, so the client waited for the whole start and a failed restart refused the message. Claude held prompts sent during startup, and those could settle as "unconfirmed". A send is now accepted inside the session's serialized queue: one ledger row and one submission row marked handoverRecorded, published, answered pending. A per-session delivery loop exists while a message is queued. It starts the agent through the same serialized attach a hold uses, waits outside the queue for a Claude child to prove its start, and hands the oldest queued message over as its own serialized step, writing dispatch{pending} before the adapter call. A start it needed and did not get writes one error-tone row and rejects every queued message with the same words; a start Stop cancelled writes none. Settlement follows from the rows. A queued message is provably unwritten, so a close, an eviction or an exit rejects it. A handed-over message stays in doubt. A queued row at or below the sequence a handle found when it opened was left by an earlier process and is rejected at open, with no latch. Stop withdraws queued messages with no writer lease and no fence. An attach failure keeps the conversation open, and the attach adopts its journal. Owed work counts the loop and queued rows. A compaction or rewind found prepared when a conversation opens was started under a child this process no longer has, so the open settles it rather than leaving it to refuse every send until a view attaches. The open cursor is scoped to its epoch, because sequences restart when an epoch is replaced. Deleted: restart-before-admission, recordFailedRestart, the fence rebase, Claude's startup gate, the attach's forget on failure and its own crash boundary. Clients without agent-session.accepted-send.v1 get their reply held until the handover; the desktop and paired desktop lists advertise it. * fix(native-chat): settle queued messages only for the child that ended A child that proved its start and then exited before its message was handed over left the message queued: the exit settlement returned early when nothing else was in flight. Delivery then started another child for it, and a child that died the same way started another, without end and without a row. A retried settlement for an earlier generation, run by the attach that delivery started, did the opposite: with that generation's turn unfinished it rejected the message queued for the child being attached. The settlement now takes the rejection for queued messages from its caller. The unexpected exit and the eviction pass one, and it applies even with no other work in flight; the retry for an earlier generation passes none. * fix(native-chat): an adoption that fails to import keeps the conversation open The attach now writes into the conversation's own open journal, but a failed transcript import still closed it as if it were the attach's provisional one. The conversation stayed indexed with a closed journal, so every later send answered "could not be recorded" and every attach failed again until the app restarted. The import now closes only a journal the attach opened for itself. * perf(native-chat): the recovering open reads the journal once Every conversation open now goes through the recovering open, including the read restore of every chat at startup, which used to replay its journal once. The recovering open replayed it twice: once to probe it and again inside the open. The probe is now handed to the open as its load. * fix(native-chat): an attach that fails after indexing its child leaves no child behind A failed attach now keeps the conversation open, but a failure after `onAttached` indexed the child (the rewind or compaction recovery, or the attach's own success record) left that entry claiming a child the failure path had already released. The next send found the phantom, skipped the start, and wrote at a fence the journal had moved past, so the message stayed queued for good. The entry now drops the released child and its event sink, and follows the record's fence, as a failure before indexing already did. * fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer The error strip for a message the host accepted and then did not deliver matched the entry before the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not send your message" with nothing to retry. It now reads the reconciled entry. A rejection the journal records before the send's own pending answer lands is final as well: that answer no longer puts the entry back to dispatching with no Retry. * fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down The preamble waits for its submission to be delivered while the worker's agent starts. When that wait ran out it threw operation_unknown, and the failed-start teardown then closed the session, which rejected the very preamble the host was about to deliver. It now reports a turn start nobody observed yet: the worker is start-unknown with its session kept, the host delivers the preamble when the agent starts, and the worker's report settles the dispatch as for any unobserved start. The receipt no longer suggests reading a screen a structured worker lacks. * fix(native-chat): a message rejected while its chat was closed reads as not sent A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked every later message behind a Retry and no reason, and the delivery probe, seeing the journal already answered, never ran. The reconcile now settles it as rejected like a dispatching one. * test(orchestration): name why the readiness settlement fakes are cast * fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent * docs(native-chat): drop the fence from the admission the send effects run behind * docs(native-chat): give the fence move on release the reason that still holds * docs(native-chat): stop citing a write fence check in launch and mailbox comments Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease. * refactor(native-chat): the provider child is its own record A conversation now outlives any number of provider children, so the child is one record on the conversation's entry instead of five loose fields beside its journal. It is written in one place: indexed only once an attach has fully succeeded, and ended through one function that an exit, a failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence. - A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence patch after it are gone. - Conversation writes read the record's fence, the way mutation admission already does; a child's own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of the conversation's fence, are gone. - The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer dropped when an attach replaced the whole entry. - Stop on a child still proving its start stops only the child: its lease goes back and the chat is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus the conversation's close. - The settlement retry uses the conversation's own journal, opened through the host's one open. * fix(native-chat): the delivery loop alone settles a message its start or child failed A queued message was settled by whichever path happened to end the child first: the loop, the unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that rejected every pending row. That gave two failure rows with different tones for one start, a loop that could hand over to a different child than the one it waited on, and a Claude start that died while starting reading unlike every other failed start. - The loop remembers the child it waited on. At handover, if that child is gone or replaced, it reads how it ended: a Stop continues; anything else writes one failure row and rejects every queued message with the same words, then stops. A child still starting whose start the adapter says did not land fails the same way. The exit, eviction and the settlement retry only settle the handed-over and legacy rows of the child that ended. - One failure row, always an error, keyed by the start. A start a view began that dies with nothing queued writes the same row through the same builder, so a second report revises it. - The open no longer rejects leftovers; the loop's first step does, and the open wakes it. - `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the failure before the exit is processed. - Quit closes every conversation the way closing a chat does: what is still queued is rejected as closed, with or without a child, and a start the loop already has in flight is waited for so the child it produces is stopped rather than left behind. * refactor(native-chat): a stopped child ends on the one reading of its stop The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that verdict to the child's ending, so the host never forms a second view of whether the root is gone. Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition, and a failed re-attach passes what its release saw. The end-of-child record can therefore also carry a stop whose root was not seen to go, which nothing ends on yet. * feat(native-chat): the host says it accepts a send before any agent has it The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same string capable clients already send. A client can then tell a host that answers a send at acceptance, and admits a Stop with no writer before a turn starts, from an older one that still restarts the agent inside the send. Additive: an older client ignores a capability it does not know. * refactor(native-chat): an attach never opens a journal of its own The attach adopts the conversation's open journal, which outlives it, so it no longer opens one for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag that told the two cases apart is gone. Tests that attach without a host open the conversation the way a host does. * fix(native-chat): a moved fence resends nothing on a host that accepts first The outbox treated any fence change as a new owner: it dropped the answer of a send in flight, queued that send to go out again under the same id, and unblocked a refused head. On an older host that is how a send the restart refused, unrecorded, gets another try. On a host that records every send before it starts an agent, a fence moves because that start ran, so the same rule resent into every failed start. With a fence stamped on every frame, that became a loop. The outbox now reacts to a fence change only when the host has not advertised that it accepts a send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed start reaches the client as a rejected message it keeps with its Retry. Against an older host, or before one has answered, the outbox behaves as it did. Desktop and paired web share this hook. * refactor(native-chat): a child's end says whether the user or the host stopped it The end-of-child record's cause now tells a user's Stop from the host stopping the child for a cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a user's Stop, as before, and fails the start it was waiting on after a host stop, with the one error row and every queued message rejected, in the stop's reason when it gave one. The reason stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet. * fix(native-chat): a chat whose only work is a queued message is not offered for resume A message accepted while the agent was starting counts as working in the chat, and quit rejects it as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a chat whose agent never had the message. The snapshot now reads only what was handed over. * test(native-chat): type the queued-message fixtures in the resume-offer tests * fix(native-chat): a start that dies while a message waits on it is that message's failed start Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When that start died, its exit wrote the start's error row and left the message queued, so the delivery loop started a second agent into the same failure and wrote a second row. A child's end now records where the conversation's journal stood, and the loop settles a message accepted before a failed start ended with that start: one row, under its key, and no second start. A message sent after the failure still gets a fresh start. * docs(native-chat): say what an attach's open conversation and unconfirmed ids are now * test(native-chat): pin what a failed start settles, and what a resume offer names A view's child that dies while a sent message waits settles that message only when it died starting and no child has taken its place: a proven child's crash, or a second start since, gets the message delivered. The resume offer names the handed-over message, never a newer one still queued. * test(native-chat): the failed-start pins fail on what the message became, not on a timeout * test(orchestration): the preamble's host stub is typed, not cast The preamble send now takes only what it reads of the host, the send, the settlement wait and the record's fence, so its test builds that host with real types instead of `as never`. * fix(native-chat): a Stop that names no turn stops what the conversation has in flight Between handing a message to the agent and the agent opening its turn, there is no turn id a client could name, so a Stop in that gap was refused as "already finished" while the agent went on to answer. A cancel's turn id is now an optional precondition instead of its target: with none, the host withdraws what is queued and, when the journal still reads working, asks the adapter to stop whatever the child has in flight. Claude's interrupt is session-scoped, so it is guarded by fence and acquisition generation rather than a turn identity. Codex interrupts the turn its latest turn/start answered with until the journal shows one. A cancel that names its turn behaves exactly as before. * fix(native-chat): Stop is there from the moment a message is sent The composer showed Stop only once the agent had opened a turn, so for the second or two after a send the chat read "thinking" with no way to stop it. Against a host that takes a Stop naming no turn, Stop now shows whenever the chat reads working (a turn, a queued message, or a handed-over one still unanswered) or this client still has a message on its way. Pressing it, or Escape, first drops every outbox entry the journal does not hold yet, so nothing goes out after the Stop, then sends the conversation-wide cancel. A send already on its way reaches the host ahead of the cancel, which withdraws it there. Against an older host Stop still needs a running turn. The unconfirmed-send probe moves into its own hook so the outbox hook stays in budget. * fix(native-chat): Stop before a turn is gated on its own host capability A host that accepts sends first (agent-session.accepted-send.v1) can still predate the cancel that names no turn and would refuse it as invalid, since clients and hosts ship independently. Hosts that take that cancel now advertise agent-session.conversation-stop.v1, and the renderer shows Stop before a turn opens, and sends the no-turn cancel, only to a host advertising it. Every other host keeps a Stop that needs, and names, a running turn. The host capability probe the accepted-send hook used is generalized so both read one path. * test(native-chat): a build advertises conversation stop exactly where its cancel may name no turn * fix(native-chat): a view never restarts a chat whose last start failed A Claude chat whose CLI exits during startup left one red row per start, and every time a view bound to it (the chat opening right after its create died, or the user switching back to it) the hold started the CLI again, so the same launch-failure row repeated. Only a send retries a failed start now, the same rule provider-exit recovery already applied; the rule lives in one predicate the hold, exit recovery and the delivery loop share. * test(native-chat): start the child the loop waits on with an attach, not a second view A view no longer starts a child whose last start failed, so the R2 case that waits on a child started since the failure now gets that child from a client attach, the one non-send starter left. * fix(native-chat): settle a gone generation's turn wherever a conversation opens A send that opens a chat this process had not read yet (after a crash, from a phone or the CLI) went through the delivery open, which never settled what the dead generation left running; only the read restore and a successful acquire did. When the send's start then failed, the turn stayed running for every reader. The settlement now runs in the one journal open, at the crash boundary, for every opener except an acquisition, which settles from the evidence it read before its reserve; the read restore's separate step is gone. * test(native-chat): prove the next child's start settles the turn an earlier child left The R1 case lost its only settlement assertion when the latch it checked was deleted. It now seeds the running turn the earlier child left and asserts it ends at the exit's receipt, with the exit's row, before the message is handed to the new child. * test(native-chat): count a failed start's rows by row, not by text Comparing the set of texts passed when two different rows carried the same words, which is the duplicate the test exists to catch. * test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget * test(native-chat): pin the open's and the send's start and row counts, however the view binds Opening a fresh chat whose starts fail makes one start and one row, with two views bound before or after the create's child died; one send makes one more of each. * fix(native-chat): settle a gone generation's turn at every open but an acquisition's The journal open skipped the settlement whenever the lease read reserved or live, to leave an acquisition's own open to the acquisition. But a lease a crashed process left in recovery also reads live, until the next acquire resolves it. A send that opened such a chat, from a phone or the CLI after a crash on a host that could not prove the old owner gone, skipped the settlement; when its start then failed, the dead turn stayed running for every reader. The acquisition now says it is the opener, and every other open settles, whatever the lease still claims. * test(native-chat): hold the create's start open until the views bind The "view binds while the create is still starting" case gave the create a 300 ms head start and asserted the views bound before it died. On a loaded runner the holds took longer, the create's exit landed first, and the case failed its own precondition. The create's initialize now waits on a gate the test releases once the views are bound. * fix(native-chat): Stop reads the one working rule every session list reads While Claude retries a rate-limited request it never echoes the message, so no turn opens: the sidebar read Working from the unanswered send while the composer showed Send. The chat's working state, the host's session-list status and the host's no-turn Stop check now call one shared rule instead of three copies. * test(native-chat): a rate-limit retry pins only that no turn opens, not how its rows are kept * fix(native-chat): Stop leaves a message waiting on its Retry, and does not show for one A send that failed holds the queue until the user retries it, and one the host restarted under is parked the same way. Stop counted both as still on their way, so it showed in an idle chat and could never go away, and pressing it dropped the failed message along with its Retry. * test(native-chat): the chat's Stop and a session list read the main agent alike over their own copies The chat reduces its stream and a list reads the status feed. Driven through the real host for a rate-limit retry with no turn, a subagent still running after the main turn, and the handed-over child exiting. * refactor(mobile): the chat reads the main agent's working state through the shared rule Behaviour is unchanged: the same two terms, now from the one function the host projection and the desktop chat read. * fix(codex): a Stop naming no turn never interrupts an earlier turn It fell back to the id an earlier turn/start answered with when the latest start went unanswered, or when the journal showed a compaction Codex had not started, and reported that as stopped. * fix(native-chat): a Stop naming no turn never says a turn had already finished When the provider found nothing left to stop, for instance a turn that ended between the host's check and the interrupt, the chat got "The provider had already finished this turn." for a turn the Stop never named. It now ends quietly, as a Stop with nothing in flight does. * fix(native-chat): one Stop the host could not settle no longer refuses every later one A Stop naming no turn has one operation key per session. When the host could not settle one, it answered every later Stop under the same id as unknown until the id expired. Once the host says so, the next press is a new Stop; transport doubt still replays the same id. * refactor(native-chat): drop the composer's second error formatter After the merge with main, every chat write in the composer path reports its failure as a typed outcome worded by the refusal-notice table, so the send's catch sees only a local throw. The {code, message} formatter this branch added for it has no payload left to format, and its claim to be the one way a chat words a failure is no longer true. The composer send is main's again. * test(native-chat): pin the reason on a message rejected while its chat was closed The reopen test checked only that the message reads as not sent; it now also checks the Retry row carries the host's reason. * test(native-chat): read Stop operation ids without a cast * fix(native-chat): a Stop whose answer was lost no longer swallows the next one A Stop that names no turn has one operation key per chat. When its answer was lost in transit, the chat kept the id, so every later Stop replayed it; the host answers a replay as already handled, so for up to a day Stop stopped nothing. The id is now dropped once the call settles, however it settles. A second press while the first is still on its way still shares its id. * refactor(native-chat): a Stop naming no target keeps its operation id only for its own call The chat kept each write's operation id per payload across calls, and dropped it only on some settle paths. That is right for a write naming what it acts on, but a Stop naming no turn, and a stop of every background task, share one payload with every later one, so any path that kept the id made the next Stop replay as already handled and stop nothing. One path was still open: an answer that arrived after the chat moved to a new fence. Whether a write names its target is now decided once, before its id is picked. One that names none keeps its id only while its call is in flight, so a press made meanwhile joins it, and releases it when the call settles, however it settles. The release runs only while the key still holds that call's id, so a joined call settling late cannot drop a newer one's. This replaces the per-path exceptions for a thrown call. * test(native-chat): read the Stop fences without a cast * test(native-chat): pin the new id for a named cancel the host could not settle After the Stop naming no turn moved to a per-call id, the only test of the unknown-refusal release was gone, and the half that stays, for a cancel naming its turn, could be removed with every test green. * fix(native-chat): a Stop pressed after a new message stops it, even while the last Stop is unanswered A Stop naming no turn shared its operation id with any press made while it was still in flight. The host runs a chat's writes in order, so a message sent between two presses was accepted after the first Stop ran, and the second press replayed that Stop as already handled and left the message running, although the chat had already withdrawn it from the outbox. A write naming no target now gets a new id on every press and is never kept, so each Stop acts on whatever is running when the host reaches it. A write naming its target keeps its id exactly as before. A double press can ask the provider to stop the same turn twice, which it tolerates. * fix(native-chat): Stop no longer blinks off as Claude opens the turn for a message Claude's echo of a sent message both answers the send and opens its turn. The echo settled the send first, so the host published the message as answered one frame before the turn it opened, and for that frame the chat read nothing running: Stop turned back into Send, and Working blinked off in every session list, for tens of milliseconds on each turn. The echo now settles the send after the turn it opens has been emitted, so the running turn is published first. * fix(native-chat): a message a Stop withdrew comes back to its sender's composer A Stop withdraws every message the host holds but has not run, and S also drops the ones this client had not handed over yet. Either way the message left the chat and its text survived only in a hidden journal row and the in-memory ArrowUp history. The sending client now puts the withdrawn text and images back in that pane's composer, after whatever is typed there. Withdrawn is read from the rejection reason through one shared check, which the outbox reconcile now uses too. The composer is written before the entry leaves storage, so a failure between the two repeats the text instead of losing it, and an entry storage no longer holds is never given back again, so a replay, a second view or a remount restores it once. Only this client's outbox holds the entry, so other viewers still see the message disappear. A failed Stop withdraws nothing on the host and gives nothing back. * fix(native-chat): withdrawn text put back during an IME composition is not lost While the IME owns the field, the composer ignores a programmatic draft, and the next composed keystroke wrote the draft without the restored text, after its outbox entry had already been dropped. The composer now holds text appended mid-composition, keeps it in the cache after each composed write, and shows it once the composition settles, the way attachments that land mid-composition already wait for it. * test(native-chat): pin that only a withdrawn message comes back to the composer * test(native-chat): set up the composer's window API for every describe in the composition-race file * docs(native-chat): note that the withdrawn check reads the legacy reason until a typed category lands * test(native-chat): pin that text put back mid-composition shows once, even beside a mid-composition clear * feat(native-chat): host-owned queued-message draft store in the session journal A queued mid-turn message is a draft row in the session's journal.db, created idempotently at every writable open with no user_version bump so a downgrade stays writable. Consume converts one draft into an ordinary submission inside the journal writer's own transaction (exactly-once), and a standing writer hook returns a consumed draft only when a committed row newly settles its current consumed submission to a non-withdrawn rejection — the same decision the reducer folds rows through. Open-time repair re-derives returned state behind the stored fact; retention never prunes a row whose refusal could still return it. * feat(native-chat): queued-messages wire contract, dark capability, and send classifiers The send result becomes a union: today's submission arm unchanged, plus a capability-gated queued arm only clients that sent delivery:'queue-if-active' ever receive. Whole-list queuedMessages fields ride the subscribe events and history pages; Stop gains withdrawQueued with the withdrawn bodies in its result; clear's result carries withdrawn drafts too. Both classifiers treat queued as accepted/spent. agent-session.queued-messages.v1 is defined but deliberately NOT advertised: the rollout prerequisites (Claude fold receipt, integrated Codex steer matrix) are not in this host. * feat(native-chat): queue a capable mid-turn send as a draft, drain it at turn end, and let Stop and clear return its text A send carrying delivery:'queue-if-active' while the session owes work — or behind an actionable backlog — becomes a host-held draft instead of a submission. A serialized drain woken by journal commits, draft mutations and conversation opens re-derives its gates from live facts (streamed-event barrier first, backlog never a gate) and converts the oldest actionable draft through the exactly-once consume; from that instant today's delivery pipeline runs unchanged. Stop pauses the withdrawable frontier at the stop step (a process-level pause set that survives handle eviction and, via the per-process host instance, restarts), then withdraws it with the text in the result for capable clients; /clear does the same for the superseded source. The draft list publishes whole per emit with identity dedup, rides only the final catch-up page, and attaches to history pages. queuedMessageSend overrides queue policy only; queuedMessageDelete hands the body back. Replays for all of it answer from op-stamped tombstone receipts. * test(native-chat): pin mid-turn queueing against the real host Accept (working/backlog/text-only/budget/replay), the one-per-settle drain, returned cards with N1 overtake and the N4 re-send loop, Stop withdraw with tombstone replays, the process-level pause across evict/reopen, Delete receipts, /clear returning the withdrawn text, and publication (hydration, unchanged-cursor insert, same-frame consume, identity dedup). * test(native-chat): read the queued receipt ids before the wait closures * chore(native-chat): SAFETY rationales on the sqlite row casts and a cast-free mobile narrowing * fix(native-chat): queued-draft bookkeeping never costs a publish, an open, a clear or a history read - Cache the draft list per draft-table revision. The drain re-checks on every journal publish, so each streamed delta was running a SELECT and parsing every draft body the handle had ever written (tombstones included). - Open-time repair/prune failures are reported and skipped; they no longer fail opening the chat. - /clear on a source with no drafts answers exactly as before: no empty `withdrawnQueued`, no empty write transaction, no extra publish. A draft read failure after the committed clear no longer turns it into a refusal. - History pages read drafts through the same guarded reader as subscribers. - Publication moves to its own module; the held-draft rule lives with the pause state; one pending-prompt check; drop an export nothing calls. - Tests: restart-held drafts, pre-consume failure pause + Send retry, failed open repair, clear with no drafts. * fix(native-chat): a Stop that withdraws a consumed draft's send gives its text back A queued draft converted into a submission leaves the sender's outbox, so when a Stop withdrew that submission before the agent received it, the text had no holder: the draft stayed `dispatched` forever and nothing restored it. - The returned-card rule now follows every effective `rejected` settlement of a consumed draft's submission, a Stop's withdrawal included, with the withdrawal reason stored as the fact (`dispatchWasWithdrawn`). The writer hook and the open-time repair share the rule, so no rejected submission can leave its draft `dispatched`. - A capable Stop withdraws the cards it returned itself along with its frontier, stamped with its caller-scoped key: the text comes back once in `withdrawnQueued` and replays from the tombstone. An old client's Stop leaves a returned card. - Stop's draft steps move to structured-agent-session-queued-stop.ts. - Tests: Stop between consume and the agent's receipt for both client kinds, its replay, a crash after the withdrawal, restart in the window, and the repair of a hookless withdrawal. * perf(native-chat): the queued-draft drain takes no serialized step while the agent works The drain was woken by every journal publish and, with a draft waiting, queued a serialized step (streamed-event flush included) per publish, only to find the session still working. During a streamed turn that is one step per delta, contending with Stop and every other mutation for the session's queue. The pre-check now also skips while the session is working. Whatever ends the work is itself a commit that schedules again, and the step still re-reads every gate after its flush, so no wake is lost. - Test: queued sends during a turn take no drain step; settling the turn drains. * fix(native-chat): a clear withdraws queued text only for a caller that can take it back; paused reasons are markers An older client running /clear had its source's waiting and returned drafts withdrawn and their text returned in a `withdrawnQueued` field it does not read, so the text was lost. Clear now mirrors Stop: `withdrawQueued: true` on `agentSession.conversationCommand` (strict params, sent only when the queued-messages capability is advertised) withdraws the drafts and returns their text once, replaying from the tombstones. Without it the source keeps its cards: the supersession fence already blocks the drain, and Delete still hands the text back. A paused card's reason was host-authored English on the wire. It is now a typed marker (`send_failed`) the client localizes, like `returnedReason`; a client treats an unknown marker as a plain pause. - Tests: an old client's clear leaves the cards and its replay stays field-free, then Delete returns the text; a capable clear returns the text once and replays it; the paused marker. * fix(native-chat): a draft pause that commits no journal row still reaches live subscribers A pause writes no journal row, so it reaches subscribers only on the next publish. Two pauses had none behind them: the drain's pre-consume failure (the session is idle by then, so nothing else commits) and an old client's Stop that interrupted nothing. A live card kept reading as waiting, with no failure marker, until some unrelated commit arrived. The drain now publishes after pausing a draft it failed to convert, and an old client's Stop publishes when it paused a frontier. - Tests: a failed conversion and an idle old-client Stop each reach a live subscriber as a paused card; both fail without the fix. * fix(native-chat): a failed clear wakes the queued drain, a failed Stop withdrawal still publishes its pause A conversation command can settle on the record alone (a retried clear that fails), so drafts held behind its prepared phase waited for an unrelated journal commit; the command controller now re-derives the drain when any command finishes. A capable Stop whose withdrawal write failed never published the pause it set, and a publish failure after a committed withdrawal (Stop or clear) dropped the bodies from the answer; publishing now happens outside the withdrawal and can no longer discard its result. Tests reset the process-level pause set between cases: operation ids repeat per test, so a shuffled order held later tests' drafts. * refactor(native-chat): the draft store notifies through the journal's commit listener, the hold is a stored row fact, and one typed gate decides every queue hold R1: every standalone draft-table transaction that changed rows (insert, withdraw, hold, open-time repair) fires the journal's own commit listener after COMMIT, so a draft or hold change publishes and wakes the drain through the same path a journal row does — no call site can forget. All hand-written publish/wake plumbing for draft changes is deleted; wakeQueuedDrain survives only as the record-input wake (a conversation command can settle on the record alone). R2: the process-level pause set becomes a hold_reason column on the draft row (pre-ship, so no migration): holds survive eviction and restart, keep their send-failed marker across restarts, die with the session's journal, and are cleared by consume and withdraw in their own UPDATE. The host-instance derivation stays the one restart mechanism. R3: one typed structuredQueueHold (blocked | command | prompt | working) consumed by admission, the drain step and Send-now, with each caller's override set written beside it. A capable send during a late-result /compact now queues instead of being refused (PLAN §3.1); the dead prepared-command branches and the drain's duplicated gate list are gone. prompt outranks working so Send-now's one override cannot swallow it. R4: one isUnsettledQueuedMessage predicate for the withdrawable/budget filters. Loop 4: a replayed send whose draft was refused answers with the returned card, never the rejected submission, so the text cannot render twice. Rewind completion was verified to publish after the record clears (the rewind path's own publish; the open path's recovery precedes the open snapshot). * fix(native-chat): a Stop with no drafts writes nothing, and a failed hold still lets a capable Stop withdraw The stored hold turned Stop's in-memory pause into a draft-table write, so every Stop (drafts or not, capability advertised or not) opened a BEGIN IMMEDIATE/COMMIT. An empty hold now returns before the serialized write. A hold that threw also emptied the frontier, so a capable Stop withdrew only returned cards and left the waiting drafts unheld to auto-send after the interrupt. The frontier is read once and survives a failed hold. * fix(native-chat): a capable Stop with no drafts writes nothing The empty-hold guard from the previous fix did not reach withdraw, so every capable Stop still opened a write transaction after the interrupt, and a closed handle turned its empty answer into a missing field. The draft store now answers an empty withdraw without a transaction, for every caller. * refactor(native-chat): Stop and /clear never withdraw queued drafts; no text rides the wire back Adopt the host-owned-queue model end to end: a Stop holds the waiting frontier ('stopped') for EVERY client and interrupts — the cards stay published as paused, Send-now overrides per card, and the pause dies when the user next starts a turn (an ordinary dispatched send lifts 'stopped' holds in the same serialized step; 'send_failed' holds still need their explicit Send). /clear carries the source's unsettled drafts to the replacement session as born-held rows — identical for every client version — then tombstones the source. Delete answers with no body: the card leaving the published list is the outcome. Removed (never shipped; the capability was dark and unadvertised, so no wire compatibility is affected): CancelParams.withdrawQueued and its refine, ConversationCommandParams.withdrawQueued, CancelResult.withdrawnQueued, ConversationCommandResult.withdrawnQueued, AgentSessionWithdrawnQueuedMessage, the Delete result body, settleStopQueuedWithdrawal and the cancel finisher, withdrawClearedSourceQueuedMessages, replayWithdrawnQueuedMessages, and cancelPlan's tombstone replay. This also removes the defect where a withdrawal took every row regardless of which client sent it (a phone Stop pulled desktop-typed text): nothing moves text anymore, so a Stop from one client can never relocate another client's drafts. Hold and carry writes are bookkeeping: a failure is logged and never gates the interrupt or the clear. * feat(native-chat): a restart hold lifts like a Stop's, and paused cards say why The user's next dispatched send lifts every stop-shaped hold in one UPDATE: stored 'stopped' rows, and restart-held rows (host_instance mismatch), which are adopted into the running instance — the same fact the derivation reads, so no second copy of the hold exists. 'send_failed' still requires its explicit Send. Publication now marks stop/restart holds with pausedReason 'stopped' (an additive optional value on a dark capability), so clients can caption them "sends after your next message" and keep "couldn't send" for 'send_failed'. * fix(native-chat): only a client's own send lifts a Stop's queue pause The lift ran for every accepted host send, so orchestration mail, a restart continuation and a launch prompt released drafts the user had stopped (and adopted restart-held rows into the running instance). The client-facing agentSession.send RPC now marks its sends as the user's own; host-internal senders leave the pause alone. Also drops comments still describing the withdrawn return-text rule. * fix(native-chat): a Stop's queue pause lifts when the user's send starts its turn The pause lifted as soon as the host accepted a user send, so a send the provider then refused (a failed child start, a refused turn/start) had already released the stopped drafts into the same failure. The host now remembers a client's own send, in memory, until the provider answers it: acceptance lifts the stop-shaped holds, a refusal forgets it with the holds intact, and a later Stop supersedes it. Nothing is persisted, so a restart between the send and its turn start leaves the cards held for the user's next send rather than sending them unasked. * fix(native-chat): a consumed draft's turn starting lifts a Stop's queue pause Drafts are only ever a client's own sends, so a drained draft or a Send-now is a user send for the pause: its submission joins the same in-memory set a direct send uses, and the provider accepting it lifts the stop-shaped holds. Before, a message typed while a stopped turn wound down drained as a draft and left the older stopped cards held, so their "sends after your next message" caption was false. A refused consumption lifts nothing, a later Stop still clears the set, and orchestration mail and restart continuations still never lift. * fix(native-chat): queue a capable send behind a /compact and re-scope /clear's carried drafts - A text send with queue-if-active during a /compact in flight is admitted on the compact's side lane as a held draft instead of being refused; it may only become a draft, so one the gate no longer holds is refused rather than dispatched. - Drafts /clear carries to the replacement are fingerprinted for the replacement session, so the provider's echo folds into the sent bubble. - The in-memory set of user sends awaiting their turn is capped; sends settling unknown no longer grow it without bound. - Correct the userSend comment: the renderer's launch prompt goes through the client RPC and does set it. * fix(native-chat): a returned queued card carries the typed rejection fact, like a rejected submission A consumed draft the agent never ran comes back as a returned card. The card kept only the rejection's sentence, while its submission now also records the typed fact a client classifies from. A host-restart rejection's sentence carries no legacy marker, so such a card could not be told apart from a provider's refusal. The draft table stores the submission's fact next to its reason (`returned_rejection`, written by the same settlement that sets the reason, and read back with the reducer's own fact reader), and the card publishes it as `returnedRejection`. Both are overwritten on every return, so a re-sent card never keeps an earlier refusal's fact, and a /clear carry inserts a plain held draft with neither. Retention moves to queued-message-retention.ts to keep the table module within max-lines. * fix(native-chat): fit the queue to main's typed rejections and compaction result Main (#23026) dropped the disposition's fresh-id retry field, gives a rejected dispatch a typed sentence plus fact, and types /compact's result. The queued-draft disposition and the queue tests now use those shapes. * fix(native-chat): draft bookkeeping can never roll back the journal row it rides The queued-draft returned transition runs inside every journal append's transaction. A throw there (a draft table an earlier build created without the returned_rejection column) rolled back the journal's own rejection row, so a Stop, a failed start or a provider refusal could not be recorded. The standing hook now runs in its own savepoint: its failure is logged and rolls back alone, and the open-time repair re-derives the missed transition from the committed row. The draft table also gains any missing nullable column at open. * fix(native-chat): a draft a Stop or restart took back waits again instead of blocking the queue Cards A, B and C wait; the turn ends and the drain consumes A, but the agent has not taken it yet. A Stop then pauses B and C and withdraws A's submission, which made A a returned card. The user's next send lifted B and C, yet a returned card blocks everything behind it, so B and C never sent although they read "sends after your next message". A restart or close before hand-over did the same. Nobody failed the user there, so the draft now goes back to waiting at its own position, under the hold that same event put on the drafts behind it: a Stop's 'stopped', or no stored hold after a restart, whose hold derives from the host instance. It carries no refusal, and records its spent submission id in consumed_as, so its next consume (the drain, or Send on the card) mints a fresh id through the same path a returned card's re-send uses. Provider refusals and other failures still return the card. The live settlement hook and the open-time repair share one decision. After a Stop and the user's next turn, A drains first, then B, then C, one per turn. * fix(native-chat): Delete and Send on a queued card answer at once during a /compact A /compact holds the chat's serialized lane for its whole provider call, and the queued-card Delete and Send ran on that lane, so both hung until the compaction finished. They now run on the side lane a draft-only send already uses while a compaction is in flight: Delete completes at once, and Send reaches its readable "wait for the conversation operation" refusal at once. The drain stays on the main lane and keeps its command hold, so nothing sends until the compaction settles. * fix(native-chat): a re-sent returned card drops the refusal it came back with Re-consuming a returned card left returned_reason and returned_rejection on the now-dispatched row, so the row described a refusal that no longer applied. The consume clears both in the same update that moves the card to dispatched. * perf(native-chat): the queue gate reads pending prompts without rendering the journal The prompt check ran on every send admission and drain step, and read journal.snapshot(), which copies and sorts every item in the chat. It now walks the reduced items in place with journal.visitItems; the answer is the same, since the snapshot only sorts those items. * fix(native-chat): a Stop that fails leaves the queued cards as it found them Stop holds the waiting cards before it withdraws queued sends and interrupts the agent. When a later step threw or the Stop was refused, the cards stayed paused ("sends after your next message") although a failed Stop is meant to change nothing. A failed Stop now undoes exactly what it added: each card it held gets back the hold it replaced, a consumed card its withdrawal sent back to waiting is released, and the user sends it had set aside can again lift the pause. Holds an earlier Stop or a restart put on the cards stay. The hold SQL moves to its own module, and the draft store's standalone transactions share one helper. * docs(native-chat): confirmed cancellation is no longer a queue rollout prerequisite Stop withdrawing queued sends with a typed cancellation landed on main with #23026. The comment gating the queued-messages capability now lists only what remains: the Codex steer matrix (#21062), the Claude fold receipt, turn-owner bars, and the desktop and phone clients. * docs(native-chat): the Claude fold receipt and turn-owner bars have landed; Codex steer and the clients remain * fix(native-chat): Send on a queued card during a /compact is refused before it takes a lane Send-now chose its lane once, at entry. During a /compact it took the side lane, where it could wait behind a Stop, then run after the compaction had settled and append a real submission unserialized against the main lane. While a compaction is in flight, Send-now is now answered with the "wait for the conversation operation" refusal before entering any lane, and otherwise it runs on the main lane. Only Delete keeps the side lane, whose compare-and-set withdrawal is safe on either. * fix(native-chat): a Stop that fails after reaching the agent keeps the queue paused A failed Stop undid its queue holds whenever it threw, including after the interrupt had already gone to the provider (a status-note write failing after cancelTurn, or after stopping a starting agent). The turn could be stopped while the cards drained as if no Stop was pressed. The Stop now marks the step that reaches the provider, and undoes its holds only when it failed before that. A Stop the agent refused answers ok and keeps its holds; the comment no longer claims otherwise. * fix(native-chat): a skipped draft settlement heals on the next drain step, not only at reopen The draft settlement rides each journal append as bookkeeping, and a failure there is logged and skipped. Only the open-time repair re-derived it, so a consumed draft whose submission was rejected stayed dispatched (invisible, and blocking nothing it should) until the chat reopened. The re-derivation is now its own function, shared by the open-time repair and the drain: whenever a dispatched draft's submission is already rejected, the drain step applies the owed settlement first. * fix(native-chat): one id is never recorded as a submission twice A second submission row under an id the journal already holds replaces the submission with a fresh pending one, so a rejected message could be handed over again under its own id. Send on a queued card could do exactly that: if the host died after it consumed the card under the operation's id but before its answer settled, the rerun consumed again under the same id. The journal now refuses a submission under an id it already records, so no id is delivered twice whatever the caller does. And a Send-now rerun that finds the card consumed under its own operation id answers with that submission instead of consuming again. * fix(native-chat): a waiting draft whose first send the agent echoed is withdrawn, never resent A consumed draft goes back to waiting when its submission is rejected as never delivered (a Stop's withdrawal, a restart, a close), and then sends again automatically. That rests on the "never delivered" claim. If the provider then echoes that message, the first delivery happened, and the automatic resend would give the agent the same message twice. The reducer already keeps such an echo apart, since a rejected submission may not claim it, so the draft store reads it from the appended row itself: a provider echo of a user message that no live submission claims, matching a waiting draft whose spent submission is rejected, withdraws that draft the way a Delete would. The echo-claiming rule is split out of the reducer's aliasing so both read the same decision, and the per-row draft hook moves beside the settlement re-derivation. * feat(native-chat): a submission names the queued draft it hands off Clients told a queued card's hand-off apart from other sends by comparing the draft's id with the submission's id. That holds only for a draft's first hand-off: a re-send, or a draft that goes back to waiting and drains again, goes out under a fresh id, and the clients showed the card and the sent message together, or restored text the host still held. Every submission the host creates by handing off a draft now carries queuedMessageId, the draft's id. It is written on the submission's journal row as an optional key (older readers keep it and ignore it), carried by the reducer, listed in the published submission schema (which otherwise strips it), and stamped where the row is built from the consume itself, so no hand-off path can leave it off; a caller naming a different draft is refused. A direct send names none. The queued-messages capability comment makes the link part of v1. * refactor(native-chat): every queued draft goes out under a fresh submission id A draft's first hand-off reused the draft's own id as the submission id, so comparing a draft id with a submission id looked right in every first-send test and failed only on a re-send or a requeued draft. Every hand-off now uses a fresh id (the drain mints one; Send on a card uses its operation's id), so id equality is never true and a reader must use the submission's queuedMessageId. The host gets simpler: queuedMessageNeedsFreshSubmissionId is gone, consumed_as is set on every dispatched row and cleared when a withdrawal sends the draft back to waiting (its spent submissions stay findable by their link), the consume refuses the draft's own id, and the consumedAs ?? messageId fallbacks collapse. The delivered-echo check finds spent hand-offs by link. A send this host queued, asked again (a lost answer's replay, or a rerun the operation ledger no longer covers), answers from its draft and then from the hand-off that names it, through one function. The rerun path used to be kept from sending twice only because a submission sat under the send's own id; with fresh ids that guard is now explicit. A Send-now rerun recognises its own consume by the link instead of consumed_as. * fix(native-chat): an echo withdraws a draft only if its rejected hand-off reached the agent The delivered-echo rule withdrew a waiting draft when a provider echo matched any rejected hand-off of it, including one a Stop rejected before it was ever handed over. That hand-off is provably unwritten, so a matching unclaimed echo is some other message, and the rule silently deleted the card. Only a hand-off that was handed over and then rejected as never delivered can be disproved by an echo now. * fix(native-chat): a skipped echo withdrawal is re-derived before the draft can send again The delivered-echo withdrawal rides each journal append as bookkeeping, and a skipped hook left the draft waiting, so it later sent the same message a second time. Nothing re-derived it. The draft store now also withdraws, in its owed-settlement pass, each waiting draft that an echo already in the journal proves delivered: an unclaimed provider user message (still stored under its own id), carrying the draft's payload, appended after a hand-off that was handed over and rejected. The live hook and the re-derivation share one predicate. The pass runs at open and in the drain step, right before a draft would send; it reads every item, so it never runs per streamed row. * fix(native-chat): a rolled-back journal append leaves no draft state cached The draft store caches its row list by revision. The per-row hook read that list eagerly inside the append's transaction, after the consume in the same transaction had already written and bumped the revision, so a failed COMMIT left the cache showing a hand-off that never happened. The hook now reads the drafts only once a row holds an unclaimed echo, and any rollback of a journal append or of its bookkeeping savepoint invalidates the cache, so no other read inside the transaction can leave it stale either. * fix(native-chat): a replay of a deleted queued card answers withdrawn, not refused Once a deleted card's tombstone is pruned, a replay of the send that queued it found the draft through its last hand-off. When that hand-off had been rejected (the card came back, and the user then deleted it), the replay answered with the rejected submission, which clients show as a failed send with a Retry. Only a withdrawn row is pruned while its last hand-off stands rejected, so the replay now answers queued, withdrawn. * refactor(native-chat): name the queue's pause-lift for what it releases * chore(native-chat): one import of the mutation helpers * feat(native-chat): a Stop pauses the whole queue, derived from the journal, with an explicit Resume After a Stop, each waiting card was held on its own row ('stopped'), lifted when the host saw, in memory, that a user send made after the Stop had its turn accepted. The cards read "sends after your next message" one by one, there was no way to resume the queue without sending something, and the in-memory record of user sends was lost on a restart or eviction. The pause is now the queue's, and derived rather than stored as a flag: - 'stopped': the user's last Stop took effect at a recorded journal position and no turn a person asked for has started since. "A person asked for it" is the new `origin: 'client'` on the submission row (a send over the client send RPC, or a card they sent now); orchestration mail, a restart continuation, a host-sent launch prompt and the queue's own drain record `host` and never lift it. - 'restarted': a waiting card was written by another host process and no person's turn has started since this conversation opened. Resume (`agentSession.queuedMessagesResume`) lifts either. Send-now sends one card; the rest stay paused until that card's turn starts, which is a person's turn like any other. The journal's row kinds are closed (an older build truncates a journal at a row kind it does not know), so the one event the journal cannot carry, where the Stop took effect, is recorded beside the drafts in `queued_message_pauses`; everything after it is read from the journal. A Stop records it only once it takes effect (after withdrawing queued sends, as it reaches the agent), so a Stop that fails first leaves nothing to undo, and the per-row hold, its undo and `userSendsAwaitingTurn` are gone. A card keeps a hold of its own only when its conversion failed ('send_failed'). The pause is published once, as `queuePause` beside `queuedMessages`, on live frames, catch-up and history. A /clear starts its replacement paused, as after a Stop, since the carried cards were written for the context it discarded. * feat(native-chat): a /clear's replacement queue reads paused because of the clear, not an interrupt The replacement's pause was recorded as 'stopped', which clients show as "Queue paused because you interrupted" although the user cleared the chat. It is now its own reason, 'cleared', on queuePause.reason ('stopped' | 'restarted' | 'cleared'). It lifts and resumes exactly like a Stop's: through Resume, or the user's next turn starting on the replacement. * fix(native-chat): a queue pause covers only the cards it paused A Stop recorded its pause fact even when the queue had no cards, and the fact outlived the cards it did pause. The published list hid a pause over no cards, but the drain still treated the queue as paused, so a card typed much later — during an orchestration-mail turn, or a correction typed before the stopped turn ended — sat under "paused because you interrupted" with no Stop of its own. A Stop now records its pause only if the queue holds a card when the Stop takes effect (the hand-offs its withdrawal sent back included). The fact is retired in the same transaction as the Delete, consume or withdrawal that empties the queue, never from an async publish. A /clear's carry now lands each card with its 'cleared' pause in one transaction, so a failed insert leaves no pause over an empty replacement. * perf(native-chat): the queue's pause reads the latest person's turn in O(1) The pause is derived on every publish, per subscriber, and each derivation copied and scanned every submission to find a person's accepted turn after the Stop. The reducer now keeps that fact as it folds rows: the submission row of the latest accepted turn whose origin is `client`. The Stop's and the restart's lift both read it directly. * fix(native-chat): a card handed off after a restart belongs to the process that sent it A draft's host_instance was only ever the process that first wrote it (or adopted it while waiting). A returned card from before a restart, sent again in this process and then withdrawn back to waiting, still carried the old process, so it raised a 'restarted' pause although no restart happened since it was sent. Every hand-off (the drain, Send on a card) now stamps the handing-off process on the draft in the consume's own update. * fix(native-chat): a queue pause shows only while Resume would send something After a Stop whose only remaining card was a returned one, or after a restart with only a card held by its own failed send, the queue published a pause with a Resume that could send nothing: a returned card waits for the user anyway, and a held one for its own Send. The pause is now published, recorded by a Stop, and kept only over a card it can hold back — waiting, with no hold of its own. The fact is retired in the same transaction as the write that removes the last such card, a hold or a refusal included. The publication's dedup also compared only the pause's reason, so a pause appearing or clearing with no readable reason could read as unchanged; it now compares presence first. * fix(native-chat): a queue pause counts only cards Resume would actually send A waiting card behind a returned one is blocked until the user acts on the returned card — the drain never sends past it — so a pause over only such cards still offered a Resume that sent nothing. The rule for "a card Resume would send" is now one function: waiting, no hold of its own, and not behind a returned card. The publication, a Stop's record and the fact's retirement all read it; retirement reads the rows in position order inside the same transaction as the write that took the last such card. * fix(native-chat): a returned card that blocks the paused cards hides the pause but keeps it The last change retired a Stop's pause as soon as a returned card blocked every paused card. Deleting that returned card then sent the cards behind it at once, with no Resume — not what the user asked for. The two rules are now separate. The pause is KEPT (recorded by a Stop, retired in the same transaction as the write that takes the last one) while any waiting card with no hold of its own exists, wherever it sits. It is PUBLISHED only while such a card is not behind a returned one, so the header never offers a Resume that sends nothing. Deleting the blocking card shows the pause again, and the cards behind it wait for Resume or the user's next turn. * fix(native-chat): a Stop pauses a card its withdrawal sent back even when that settlement was skipped The Stop checked the draft table for a card to pause. When the per-row hook that settles a withdrawn hand-off was skipped, that card was still 'dispatched', so the Stop recorded no pause; the drain later healed it back to waiting and sent it, although the user had pressed Stop. Retirement had the same blind spot and could drop a pause while such a card was owed. What a pause holds back is now one predicate, judged inside the transaction that records or retires it: a waiting card with no hold of its own (one SQL EXISTS), or a dispatched card whose consumed submission was rejected with a settlement back to waiting (read against the journal's submissions). The Stop first runs the owed settlement, as the drain does; if that fails, the owed card still counts, so the pause is recorded rather than skipped. recordPause now checks inside its own transaction and returns whether it recorded, and any draft-table write (and the per-row hook, the consume and the open-time repair) retires a pause that no longer holds anything back. * test(native-chat): pin the per-row hook's pause retirement; skip the judgement when no pause exists The retirement test recorded its second pause over a queue with nothing to hold back, so the recording returned false and the "retired" assertion proved nothing; ablating the per-row hook's retirement passed every test. The hold case now asserts the pause was recorded, and a new test has a delivered echo, through the per-row hook, withdraw the last card a recorded pause holds back. Retirement runs on every appended journal row, so it now checks the pause row by key first and judges nothing when no pause is recorded. Two comments were brought in line with the owed-hand-off rule and rewrapped. * test(native-chat): match main's append and dispatch shapes in the queue tests * fix(native-chat): read a compaction's settled submission through the send-result union --------- Co-authored-by: Claude <noreply@anthropic.com> |
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fix(native-chat): an unfinished /clear or refused Codex rewind no longer locks the chat (#23524)
* refactor(native-chat): remove the unused terminal handoff No client ever called agentSession.requestHandoff or mounted the handoff chrome. Delete the handoff coordinator, the terminal-owner runtime, the proof write path and the unmounted UI. Keep agentSession.handoffStatus, which released desktop clients read for worktree activation, and let records an older build left mid handoff reconcile through the ordinary restart and recovery paths. * fix(native-chat): never let the pre-stop snapshot hold a chat's stop Eviction now drains delivered events before quit's resume-offer snapshot. An unbounded wait there sits ahead of the provider stop, so a sink whose journal write stalls kept the child running until the step deadline aborted the eviction. The offer is advisory: bound the drain and stop the child regardless. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop helpers only the terminal handoff called `claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and `queryWindowsProcessRowsFresh` lost their last caller with the handoff. The fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`, the teardown path that still depends on that contract. Co-Authored-By: Claude <noreply@anthropic.com> * docs(native-chat): stop citing the removed handoff in lifecycle comments Six comments still named the handoff coordinator, a handoff suspend, or a terminal-owned session as live participants in the flows they describe. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stalled snapshot drain without a cast Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): pin that a start dead before proving owes no settlement The removed restart handoff test pinned this branch; nothing else did. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): keep the owner-status read behind an in-flight attach The handoff removal dropped the per-session queue from `handoffStatus`, so a read landing mid-start reported the reservation (no owner) instead of the settled chat owner, and shipped desktop clients blocked worktree activation on it. The read is queued again, as it was before the removal. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(terminal): remove the agent-session PTY write gate The gate only refused a write when a PTY had been bound to a chat session, and the only code that ever bound one was the terminal handoff this branch removes. With it gone, every admit/readmit returned "admitted" unconditionally, so the checks on the renderer write path, the runtime controller backstop, terminal.send, agent prompts, preview input and orchestration pointers, the refusal fields on terminal.send and worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane orchestration routing could no longer run. Ordinary writes take the same path in the same order as before. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop the transcript helpers only the handoff called appendLegacyTranscriptMessages fed the terminal transcript catch-up and proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost their last caller with the handoff. Their tests now go through the live entry points instead: the roster bounds through the legacy import, the pinned-read and growth tests through the ancestry replay the history window uses, and the marker rules through the string proof in their own file rather than the session-file resolver's. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): stop calling a starting chat "mid-handoff" A send refused because the chat's owner is not settled showed "The session is mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that reach it are a chat that is still starting, or one whose previous agent process has not yet been confirmed stopped. The message now says which of the two it is. The refusal code is unchanged. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stand-in roster decoder without a cast Co-Authored-By: Claude <noreply@anthropic.com> * refactor(codex): name the pinned rollout lookup for what it does With the terminal handoff gone, the module named codex-tui-rollout-proof holds only the pinned rollout lookup that structured Codex launches use to resume a thread, so the name described code that no longer exists. Rename the module and its options type. Also drop a mobile allowlist assertion that pinned the removed agentSession.requestHandoff method, which no longer exists to allow. * refactor(native-chat): type the owner-status reply as the host sends it The handoffStatus reply type still listed the terminal handoff's fields and states (terminal placement, host label, proof retry, queued and waiting phases, the to-terminal direction). No host writes them any more and the only client reader parses the reply as unknown, so they described nothing. The reply on the wire is unchanged. * refactor(native-chat): normalize terminal-handoff lease values once at decode Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types still admitted them, so readers across the host kept branches for values no path produces and the compiler could not point at them. The store now validates the on-disk shape, which still accepts those values so an older record is not quarantined, and maps them once while parsing: - `preparing` and `old-owner-stopped` become `recovering` - a `tui` lease becomes `native`; when it records a process it also becomes `conflicted`, the claim every build probes but never stops. A plain native owner would be stopped by restart recovery, here and in older builds. Revisions are taken over the normalized state on both sides of every compare, and the mapped record reaches disk with the store's first transaction, the same way the tab-id backfill does. The in-memory types narrow to what this build writes, and the branches that existed only for the removed values go. Structured-worker identity keeps its verdict for a former terminal owner by refusing a conflicted claim rather than a non-native kind. * refactor(native-chat): stop threading the owner kind through a reservation A reservation only ever names a native owner now, so the request no longer carries a kind and the reserved lease records `native` directly. The attach params keep `runtimeKind`: agentSession.ensure and create accept it, and the operation fingerprint stored in the ledger covers it. * test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else Hiding a tab also committed the visibility index, so the no-op transaction wrote the file even when its open-time revision was wrong. Committing the index first leaves the pending rewrite as the only reason to write. * fix(native-chat): name a chat write by its target, not the owner generation A write carried the fence of the last frame the pane read, and the host refused it unless that fence was still current. An idle release and the restart after it each move the fence, and the release publishes nothing, so a send after a release was refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a cold start was refused as stale. Every write already names what it acts on: a send its conversation, a cancel its turn, a prompt answer its item revision, a rewind its epoch; an option is last-writer-wins. So admission stops comparing the client's fence, and the rebase that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it. The writer-lease check stays, and so does the attach's compare-and-swap. Frames now stamp the fence read when each frame is sent instead of a copy each subscriber kept, which went stale on the same release. * fix(native-chat): every journal append reaches the chats that are open A journal write and its delivery to open readers were two calls, and some writers made only the first. A failed start whose lease could not be handed back, a provider revision with no frame behind it, and eviction's settlement were all journaled without reaching an open chat. A journal handle now reports every durable change, and the host's session map binds that report to the session's readers when the handle is set. Writers no longer publish what they append; the per-writer publish calls are deleted. * test(native-chat): an epoch replacement reaches the open chat * test(native-chat): each row reaches an open chat once, and a live handle enters only through the map * test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite The seeded record had no surface tab id, so the next open backfilled one and that rewrite alone made the no-op transaction write. The test passed with the legacy-lease rewrite signal removed. * test(worktree-activation): restore the OMP surfaced-agent resume test The handoff removal deleted it alongside the terminal-owner tests, but it covers the surfaced-PTY block that still guards resume, including an agent whose ownership is unknown. * perf(native-chat): a publish behind a delivered commit reads nothing Each commit now delivers itself, so the publish a provider frame still sends afterwards found every reader caught up but still read rows and rebuilt the timeline for each one. A caught-up reader now skips the read. * test(native-chat): state why the teardown test's fake journal is safe to cast * docs(native-chat): say mutation admission checks only the writer lease * docs(native-chat): drop the send rebase from comments that still described it * fix(native-chat): a message is accepted, then delivered A send to a chat with no running agent restarted the agent inside the send call, before the message was recorded, so the client waited for the whole start and a failed restart refused the message. Claude held prompts sent during startup, and those could settle as "unconfirmed". A send is now accepted inside the session's serialized queue: one ledger row and one submission row marked handoverRecorded, published, answered pending. A per-session delivery loop exists while a message is queued. It starts the agent through the same serialized attach a hold uses, waits outside the queue for a Claude child to prove its start, and hands the oldest queued message over as its own serialized step, writing dispatch{pending} before the adapter call. A start it needed and did not get writes one error-tone row and rejects every queued message with the same words; a start Stop cancelled writes none. Settlement follows from the rows. A queued message is provably unwritten, so a close, an eviction or an exit rejects it. A handed-over message stays in doubt. A queued row at or below the sequence a handle found when it opened was left by an earlier process and is rejected at open, with no latch. Stop withdraws queued messages with no writer lease and no fence. An attach failure keeps the conversation open, and the attach adopts its journal. Owed work counts the loop and queued rows. A compaction or rewind found prepared when a conversation opens was started under a child this process no longer has, so the open settles it rather than leaving it to refuse every send until a view attaches. The open cursor is scoped to its epoch, because sequences restart when an epoch is replaced. Deleted: restart-before-admission, recordFailedRestart, the fence rebase, Claude's startup gate, the attach's forget on failure and its own crash boundary. Clients without agent-session.accepted-send.v1 get their reply held until the handover; the desktop and paired desktop lists advertise it. * fix(native-chat): settle queued messages only for the child that ended A child that proved its start and then exited before its message was handed over left the message queued: the exit settlement returned early when nothing else was in flight. Delivery then started another child for it, and a child that died the same way started another, without end and without a row. A retried settlement for an earlier generation, run by the attach that delivery started, did the opposite: with that generation's turn unfinished it rejected the message queued for the child being attached. The settlement now takes the rejection for queued messages from its caller. The unexpected exit and the eviction pass one, and it applies even with no other work in flight; the retry for an earlier generation passes none. * fix(native-chat): an adoption that fails to import keeps the conversation open The attach now writes into the conversation's own open journal, but a failed transcript import still closed it as if it were the attach's provisional one. The conversation stayed indexed with a closed journal, so every later send answered "could not be recorded" and every attach failed again until the app restarted. The import now closes only a journal the attach opened for itself. * perf(native-chat): the recovering open reads the journal once Every conversation open now goes through the recovering open, including the read restore of every chat at startup, which used to replay its journal once. The recovering open replayed it twice: once to probe it and again inside the open. The probe is now handed to the open as its load. * fix(native-chat): an attach that fails after indexing its child leaves no child behind A failed attach now keeps the conversation open, but a failure after `onAttached` indexed the child (the rewind or compaction recovery, or the attach's own success record) left that entry claiming a child the failure path had already released. The next send found the phantom, skipped the start, and wrote at a fence the journal had moved past, so the message stayed queued for good. The entry now drops the released child and its event sink, and follows the record's fence, as a failure before indexing already did. * fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer The error strip for a message the host accepted and then did not deliver matched the entry before the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not send your message" with nothing to retry. It now reads the reconciled entry. A rejection the journal records before the send's own pending answer lands is final as well: that answer no longer puts the entry back to dispatching with no Retry. * fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down The preamble waits for its submission to be delivered while the worker's agent starts. When that wait ran out it threw operation_unknown, and the failed-start teardown then closed the session, which rejected the very preamble the host was about to deliver. It now reports a turn start nobody observed yet: the worker is start-unknown with its session kept, the host delivers the preamble when the agent starts, and the worker's report settles the dispatch as for any unobserved start. The receipt no longer suggests reading a screen a structured worker lacks. * fix(native-chat): a message rejected while its chat was closed reads as not sent A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked every later message behind a Retry and no reason, and the delivery probe, seeing the journal already answered, never ran. The reconcile now settles it as rejected like a dispatching one. * test(orchestration): name why the readiness settlement fakes are cast * fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent * docs(native-chat): drop the fence from the admission the send effects run behind * docs(native-chat): give the fence move on release the reason that still holds * docs(native-chat): stop citing a write fence check in launch and mailbox comments Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease. * refactor(native-chat): the provider child is its own record A conversation now outlives any number of provider children, so the child is one record on the conversation's entry instead of five loose fields beside its journal. It is written in one place: indexed only once an attach has fully succeeded, and ended through one function that an exit, a failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence. - A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence patch after it are gone. - Conversation writes read the record's fence, the way mutation admission already does; a child's own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of the conversation's fence, are gone. - The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer dropped when an attach replaced the whole entry. - Stop on a child still proving its start stops only the child: its lease goes back and the chat is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus the conversation's close. - The settlement retry uses the conversation's own journal, opened through the host's one open. * fix(native-chat): the delivery loop alone settles a message its start or child failed A queued message was settled by whichever path happened to end the child first: the loop, the unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that rejected every pending row. That gave two failure rows with different tones for one start, a loop that could hand over to a different child than the one it waited on, and a Claude start that died while starting reading unlike every other failed start. - The loop remembers the child it waited on. At handover, if that child is gone or replaced, it reads how it ended: a Stop continues; anything else writes one failure row and rejects every queued message with the same words, then stops. A child still starting whose start the adapter says did not land fails the same way. The exit, eviction and the settlement retry only settle the handed-over and legacy rows of the child that ended. - One failure row, always an error, keyed by the start. A start a view began that dies with nothing queued writes the same row through the same builder, so a second report revises it. - The open no longer rejects leftovers; the loop's first step does, and the open wakes it. - `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the failure before the exit is processed. - Quit closes every conversation the way closing a chat does: what is still queued is rejected as closed, with or without a child, and a start the loop already has in flight is waited for so the child it produces is stopped rather than left behind. * refactor(native-chat): a stopped child ends on the one reading of its stop The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that verdict to the child's ending, so the host never forms a second view of whether the root is gone. Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition, and a failed re-attach passes what its release saw. The end-of-child record can therefore also carry a stop whose root was not seen to go, which nothing ends on yet. * feat(native-chat): the host says it accepts a send before any agent has it The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same string capable clients already send. A client can then tell a host that answers a send at acceptance, and admits a Stop with no writer before a turn starts, from an older one that still restarts the agent inside the send. Additive: an older client ignores a capability it does not know. * refactor(native-chat): an attach never opens a journal of its own The attach adopts the conversation's open journal, which outlives it, so it no longer opens one for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag that told the two cases apart is gone. Tests that attach without a host open the conversation the way a host does. * fix(native-chat): a moved fence resends nothing on a host that accepts first The outbox treated any fence change as a new owner: it dropped the answer of a send in flight, queued that send to go out again under the same id, and unblocked a refused head. On an older host that is how a send the restart refused, unrecorded, gets another try. On a host that records every send before it starts an agent, a fence moves because that start ran, so the same rule resent into every failed start. With a fence stamped on every frame, that became a loop. The outbox now reacts to a fence change only when the host has not advertised that it accepts a send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed start reaches the client as a rejected message it keeps with its Retry. Against an older host, or before one has answered, the outbox behaves as it did. Desktop and paired web share this hook. * refactor(native-chat): a child's end says whether the user or the host stopped it The end-of-child record's cause now tells a user's Stop from the host stopping the child for a cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a user's Stop, as before, and fails the start it was waiting on after a host stop, with the one error row and every queued message rejected, in the stop's reason when it gave one. The reason stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet. * fix(native-chat): a chat whose only work is a queued message is not offered for resume A message accepted while the agent was starting counts as working in the chat, and quit rejects it as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a chat whose agent never had the message. The snapshot now reads only what was handed over. * fix(native-chat): the conversation outlives its agent Opening a chat no longer starts its agent. A conversation is reached through one host accessor that opens its journal at rest, and a send is what starts the agent, through the delivery loop. One idle sweep, every five minutes, stops an agent that has been quiet for thirty minutes and owes no work, then drops an open journal handle that is only a cache. Its record, tab, status row and readers stay. - hold and release are no-ops; hold still builds the host for shipped mobile builds. - The holders, the holds, the release clock and the exit respawn are deleted. - Options, the model list, the goal and the context meter answer at rest; a model pick at rest is recorded as intent for the next start. - Compact, rewind, clear and goal changes start the agent first. A send does too when a rewind is still in doubt after the conversation opens. - Orchestration routes mail and group addresses on ownership (the record plus the chat tab), not on whether the process runs. An open dispatch keeps its worker running. - The restart continuation is a send; Resume all holds each slot until the message is handed over or rejected. - A read error never replaces a loaded transcript, and shows the host's own words. * test(native-chat): type the queued-message fixtures in the resume-offer tests * fix(native-chat): a start that dies while a message waits on it is that message's failed start Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When that start died, its exit wrote the start's error row and left the message queued, so the delivery loop started a second agent into the same failure and wrote a second row. A child's end now records where the conversation's journal stood, and the loop settles a message accepted before a failed start ended with that start: one row, under its key, and no second start. A message sent after the failure still gets a fresh start. * fix(native-chat): a request that failed reads as failed A structured chat whose only message the agent's start refused read as a green finish, and a cancelled structured turn did too: the host published a verdict only for turn records, and structured rows carried no `interrupted`. The host projection now reads the session's latest request: its turn's outcome, or `failure` for a send the agent or its start refused. A send that was withdrawn, or left undelivered by a restart or a close, fails nobody and makes nothing listable. The ingest publishes `interrupted` as the hook lanes do, and every reader decodes the verdict through one accessor, so a failure reads Failed on the dot, the rollups, history and `worktree ps`, behaves like a cancellation in every clean-finish policy, and notifies as "failed". * docs(native-chat): say what an attach's open conversation and unconfirmed ids are now * test(native-chat): a verdict change republishes the mobile status projection * refactor(native-chat): the store's retention trigger keeps its flag compare A verdict change always moves the completion clock the same check already reads, so a second verdict compare there caught nothing new. * test(native-chat): a user message the provider journaled keeps its session listed * test(native-chat): pin what a failed start settles, and what a resume offer names A view's child that dies while a sent message waits settles that message only when it died starting and no child has taken its place: a proven child's crash, or a second start since, gets the message delivered. The resume offer names the handed-over message, never a newer one still queued. * test(native-chat): the failed-start pins fail on what the message became, not on a timeout * fix(native-chat): a restart offer ends when the chat's agent starts again The offer used to end only when the chat's newest user message changed, because opening a chat started its agent and that start could not be told apart from real activity. Opening a chat starts nothing now, so the host reads the fact it already publishes: a chat's status row goes from not host-owned to host-owned exactly when its agent is started. At that edge the offer and any failure record for the chat are withdrawn, unless the start is a resume action's own (its continuation is the oldest undelivered message). A continuation and a message racing to be first are decided at acceptance: the continuation is refused, quietly and with nothing filed, when any other message was accepted since the restart. A failed continuation start leaves the offer retryable, and each resume action sends its own message id. Deleted: the newest-user-message comparison, its journal reader, the continuation filter, and the failure ledger's own "answered by the chat" check. The marker still carries its message id for one release, so the previous build can read it. * fix(runtime): end a transcript stream when its client unsubscribes Desktop: the IPC subscription controller was dropped as soon as the streaming handler returned, which for most streams is right after it binds. A later runtime:unsubscribe then found nothing to abort, so the host kept the subscriber and derived and sent every publish to a channel no one listened to. The controller now lives until the renderer unsubscribes, resubscribes the same id, or goes away. Mobile: disposing an agentSession.subscribe stream now sends agentSession.unsubscribe with the stream's frame id, so the host ends that subscriber and leaves a sibling stream on the same socket running. The direct path now passes the frame id the relay path already passed. * fix(native-chat): a late provider-session update keeps a failed recovery record failed A provider-session heartbeat that rewrites a completed recovery record kept its interrupted flag but dropped the outcome it was copied with, so a live failed checkpoint read as a clean finish until the next status write. * test(orchestration): the preamble's host stub is typed, not cast The preamble send now takes only what it reads of the host, the send, the settlement wait and the record's fence, so its test builds that host with real types instead of `as never`. * test(native-chat): the terminal-bell check asserts the renamed verdict field The bell notification test still checked for agentInterrupted, which no longer exists, so it could not catch a verdict leaking into a bell dispatch. * fix(native-chat): a failed turn ranks like a completion for attention Attention readers (completion time, Smart Sort, sticky retention, Cmd+J Recent) now demote only a turn the user stopped. A failure is news the user has not seen, so it keeps its completion time, ranks in the Done class, stays retained after its pane goes away, and a retained failure reads failed in the worktree rollup instead of done. Clean-finish policy (hibernation, pane ownership, the value moment) still treats a failure like a stop. The retention trigger compares verdicts again: success -> failure no longer moves the completion clock. * fix(native-chat): one fact ends a restart offer: the chat moved on since the restart The offer is live while no other message has been accepted in the chat since the restart and its agent has not proved a start since. The offer list, the resume's reservation check and the continuation's acceptance check all read that one fact, so a message whose start then failed withdraws the offer too, and a stale click finds nothing to act on. The fact is read off the conversation's open handle, which the restart closed, so it is retired durably whenever it may have changed: a message accepted, a start proven. A close and reopen within the same run therefore cannot bring the offer back. A continuation rejected before it reached the agent does not count, so a retry after a failed start still runs. Deleted: the quit-time gate on withdrawal, which changed nothing because the withdrawal and the quit's own offer write share one queue; the per-action "withdrawn" flag and the separate acceptance check it paired with. * test(native-chat): an older build reads the restart offer this build records The offer lives in a file the previous release reads after a downgrade. Pin that against the pinned release's own capsule, and run the lane when the marker or the capsule changes. * fix(native-chat): read a restart offer against where the journal stood when it was taken "Since the restart" was read off the conversation's open handle, which the idle sweep closes: after a reopen, a message the user had already sent looked older than the handle and the withdrawn offer came back. The offer now records the journal position (epoch and sequence) at the moment it is taken, and a message accepted after that position, or a journal on another epoch, means the chat moved on. That is derived from the journal, so it holds across any number of closes and reopens. An older build's offer has no position; only a start withdraws it. Because the message half is now durable, the offer is no longer rewritten in the recovery file on every accepted message; a proven start still writes it, since only the host that saw the start knows of it. * test(native-chat): wait for the listing's retire write before reading the recovery file * refactor(native-chat): every journal row states which turn it belongs to Rows gain a turn scope stated by the write that creates them: the open root turn, or the conversation. A queued message takes its scope from its handover. Rows stored before scopes existed are placed on replay by the root turn open when they were created, so no persisted state is needed for them. Rewind keeps each retained row's scope and producer, so a subagent's row stays its own. * fix(native-chat): keep the terminal-backed chat's read error over its local echoes Messages winning over a read error is right for the structured chat, whose read retries and whose messages came from the transcript. The terminal-backed view assembles its list from local echoes too (a launch prompt, a pending send), so a failed read there showed only those bubbles and no error. Only the structured pane now keeps messages over an error. * fix(native-chat): a start retries the exit settlement a failed journal write left owed An agent exit whose journal settlement write failed releases the lease latched until a retry lands. Reopening the chat used to be that retry; with reveal now only opening the journal, nothing retried it before the next app launch, and every send was refused. The start the send needs now runs the retry first, where the attach would. * fix(native-chat): a failed main agent reads failed while its subagents still work The verdict is now read from the main agent's own state, not the folded row: a main agent that is done and failed has a verdict even while its subagents keep the row working. Without mainAgent (history, worktree ps, older hosts) the old combined-done rule stands. Display marks the verdict through agentVerdictDisplayMark: a failure outranks every combined state on the agent's dot, label, tab badge, dashboard and activity rows; a stop marks only a done row, so a successful or stopped main agent with live subagents still reads working. Subagent rows keep their own state. The worktree card, terminal tab and Cmd+J rollups share one pane fold and rank a pending question, then failed, then working, monitoring, interrupted and done. worktree ps publishes the main agent's outcome on a working row, and the mobile mirror reads it. The store's change check, the paired-client mirror's equality and its epoch now see a verdict change on a working row, which otherwise moves no state or clock and left the worktree card reading working. Clean-finish policy is unchanged: a working row is never hibernated and has no completion time. * perf(native-chat): answer the owner check without opening the chat Worktree activation calls agentSession.handoffStatus for every chat tab in the worktree, and the answer comes from the session record alone. Reaching it through the accessor opened each resting chat's journal (a full read, the crash-boundary write and a restored status publish), then kept it open for the idle window. It now checks the record and the adapter's support, as before this series, and opens nothing. * fix(native-chat): a read waiting on the session lock opens nothing once quit began The accessor checked for quit before queueing the open, so a read queued behind a session task ran its open after teardown had begun and indexed a journal no teardown step would close. The check now runs at the open itself. * test(native-chat): pin stated turn scopes, the upcast of unscoped rows, and rewind attribution * fix(native-chat): /compact is a message the chat sends, run as a turn of its own The conversation command RPC now accepts /compact into the queue like any send and answers once it is handed over. The delivery loop opens the command's own turn, starts the provider on it, and waits for the provider's end off the session's queue, so messages typed meanwhile are held and delivered after it, even when it fails. It settles by re-reading the journal: a child that died meanwhile already wrote the verdict. Stop ends the command at once. The 180 s completion window, the unconfirmed row and the recovery of an older build's compaction record are gone; that record no longer gates anything. On Codex the provider turn the command opens is claimed into the command's turn. * fix(native-chat): read a failed resume's chat before calling it retryable Whether a failed resume is retryable is the offer's own rule: the chat has not moved on since the restart, read from its journal. The failure list read it only for a chat already open, so once the idle sweep closed a chat the user had moved on in, its failure showed Retry again, and the click did nothing. The list now opens the failed chats first, as the offer list does. * test(native-chat): type the provider event sink the settlement test reaches for * docs(native-chat): the worktree ps outcome comment no longer claims old hosts send it The field is new: an old host sends no outcome at all, so a reader falls back to interrupted. The removed clause said old hosts send it on done rows, which never shipped. * fix(native-chat): say the structured read keeps trying only where it does The structured pane's "Orca keeps trying to load it" line never showed: the view state filled in an untranslated fallback whenever the read error had no text, and the empty state prefers any message. The view state now leaves the message out, so the structured pane shows that line and the terminal-backed pane its own translated one. Mobile's structured lane does not resubscribe after an error frame, so it no longer makes the claim. * fix(native-chat): rows group under the turn their record names, not the one above them Each row's turn is the turn its stated scope names, anchored on the entry that opened it, or on the turn itself when the provider opened it unasked. So /compact groups its own rows and the previous turn is untouched, a message typed into a running turn joins it, and a provider-resumed turn folds under its own Worked-for. A row reporting how a turn ended, an error or the compaction separator, never folds. Desktop and mobile read the same keys; a host that states no scope keeps today's positional grouping. * test(native-chat): await the send's settlement instead of polling for the start The at-rest send tests polled for the provider start with vi.waitFor's one-second default, which a loaded machine outran. They now await the host's own settlement of the message. * docs(native-chat): the status-store listing rule names provider-journaled user messages * fix(native-chat): a restart offer resumes any time after the quit, and knows its own continuations The continuation's message id was dated by the quit, and the ledger refuses a new id dated more than a day back, so Resume or Retry a day after quitting was always refused (on main too). It is now dated by the resume action. Telling a rejected continuation from the user's own message read the operation ledger, whose rows expire after about a day; after that a failed resume stopped being retryable. The offer now records the continuation each action sends on its own capsule entry, bounded to the newest 16, so the ids end with the offer. The ledger read is deleted. * fix(native-chat): a /compact is not a request the sidebar, notifications or restart resume report The sidebar's prompt, preview, verdict and instant, the turn-completion feed, and the restart-resume marker read past a conversation command and its turn to the last real request, so a /compact neither notifies nor re-dates the row, and a command in flight is never offered as work to resume. An older client shown a command's turn in the legacy form names the session's own agent. * fix(orchestration): route no mail to a structured worker its orchestration released A structured worker is routed on ownership, and a resting worker's lease is released, so ownership held while its chat tab stayed listed. A worker the coordinator abandoned and then released, found at rest by the release, therefore still took peer mail and @worktree: broadcasts, and each one restarted its agent. Routing now also reads the orchestration's own resource row: once it is released, direct mail, group addressing and worker-show's addressable answer drop the worker, as they would a terminal worker whose terminal closed. The chat tab stays, and nothing new is stored. * fix(native-chat): a failed retry names the user's prompt, not Orca's continuation A resume's continuation is written to the chat before its start, so after a failed attempt the chat's newest user message is that rejected continuation. A second failure then showed Orca's own restart text as the chat's prompt. A retry now keeps the prompt its first failure named. * test(native-chat): pin what a conversation command's admission refuses at rest and at handover * test(native-chat): tests merged from the base state which turn their rows belong to * fix(native-chat): a refused send notifies failed through the completion feed The host's completion feed followed only the newest turn, so a send the agent or its start refused, which creates no turn, read Failed on its row but sent no notification. The feed now follows the session's latest request, read from the projection the status feed already makes for the commit: a turn keeps its id, a refused send is named by its journal item key. It announces only while the session is idle, as the row reports a verdict, so queued sends refused one commit at a time notify once, and a withdrawn send falls back to a request already announced. * fix(orchestration): read the released row optionally, as the authority does worker-show's observation called the row lookup directly, which a runtime double without it threw on and failed the structured tab-retirement release. * chore(native-chat): one import per module and no unexplained casts in the turn-scope changes * test(claude): pin which turn a Claude row joins, including a subagent's after the turn ends * fix(native-chat): the status bar drops a restart offer the chat moved on from The renderer re-read the host's restart offer only when a failed chat showed activity, so after a message withdrew a pending offer the host answered no chats while the status bar kept counting one, and clicking it opened nothing. The same watch now covers pending offers: a status change in an offered chat asks the host again, once. * fix(native-chat): a refused steer is read from the turn its handover named The latest-request reader decided whether a refused send had joined a running turn by comparing host clocks: its handover time against the previous turn's end. The handover row now states the turn it delivered into, so the reader reads that instead and the clock comparison goes. A journal written before handover rows stated a turn is scoped on replay from the turn open when each row was written, which can differ from the clock reading only when a send and a turn's end share a millisecond. * fix(mobile): the native-chat controller contract carries the turn journal The controller and overlay already pass nativeChatTurnJournal, but the contract type never declared it, so mobile failed to typecheck. * fix(native-chat): the live turn is the running turn, not the newest user row A turn the provider opened on its own (a background wake, a resumed turn) anchors on its own record, but the list still treated the newest user row as the live turn. While such a turn ran, the settled user turn before it lost its duration and the running turn's own rows were drawn as settled, so its tool calls lost their live state. nativeChatTurnMembership now answers both questions from the turn record: each row's turn, and the live turn (the running root turn's anchor, else the newest user row, which is also all an unscoped host has). Desktop and mobile key liveness, the timing clock and the live status's row on it. * test(native-chat): a turn the provider opened keeps its own clock Pins that the local turn clock follows the live turn, so a wake after a settled turn does not restart that turn's clock when no host durations are recorded. * fix(native-chat): a running turn no message opened draws its status on no row Its live status belongs to the transcript-tail indicator alone. Once it settles, its duration draws at its first row as before; a running turn a message opened still draws on that message. * fix(native-chat): every copy of a row carries the main agent's own status History entries, sleep records and `worktree ps` rows carried a flattened top-level `outcome`, copied under different gates and without the main agent's clock. They now carry `mainAgent` (state, outcome, stateStartedAt), the type the live row already persists and sends, and every copy site takes it with `interrupted` through one function, `agentVerdictFields`. - The accessor reads `mainAgent` then the legacy flag; the mobile mirror matches it line for line. - Sleep records admit `mainAgent` with `normalizeMainAgentStatusField`, so a malformed value drops the field, never the record. - Mobile dates a main agent that failed under live subagents by its own clock, as desktop does, and its row equality compares `mainAgent`. - The activity feed reads a history entry's own `mainAgent` instead of rebuilding one; the sync key and history equality compare it. * test(native-chat): pin the worktree ps verdict across host and phone versions Pairs the real v1.4.212 host and phone row reader with this build: an old phone reads a new host's rows by `interrupted`, a new phone reads an old host's rows (no `mainAgent`) the same way, and a new phone reads a failure under live subagents as Failed, dated by `mainAgent.stateStartedAt`. The release checkout now carries the phone's self-contained row reader, and the lane runs when the `worktree ps` row producers change. * test(mobile): name the parity table's row for its role * test(native-chat): a roster of idle or finished children does not keep an agent awake The sweep reads owed background work through the shared child-work liveness that upstream's release clock adopted; a child that went idle or finished is not work the agent still owes. * fix(native-chat): a request that settles while the user is asked something notifies once The completion edge waited for an idle session, and a pending prompt (including a subagent's approval) is not idle. Structured chat has no other attention producer, so a main turn that finished while a subagent waited on the user sent nothing until the prompt was answered. The edge now waits only on owed work (a running turn or an unanswered send), which the projection reports even beneath a pending prompt. A request that settles with a prompt pending announces once; the renderer words it "needs input" from the host status mirror's `attention`, and answering the prompt keeps the same request identity, so it does not announce again. The wire shape is unchanged. * fix(orchestration): a task dispatched into a resting structured worker keeps it running The sweep's open-dispatch check read only the worker-start dispatch that owns the worker's terminal resource, so a task later dispatched to the same worker (orchestration dispatch --to, which writes a dispatch with no worker row) did not count: after thirty quiet minutes the worker was stopped while that task was open, and its coordinator read exited. Any unsettled dispatch addressed to the worker's process incarnation now counts, derived from the existing rows. * fix(native-chat): a command's wait ends when its child does The delivery loop waited for a /compact only on the adapter's compaction tracker, which learns of the child's end only on some exit paths: a Codex exit or close, and a Claude close, never reach it. The wait then never ended, so nothing queued behind the command was delivered again, Stop had no child to answer through, and the tracker's leftover entry refused the next /compact. Every way a child ends passes endProviderChild, so the host now offers a per-child end signal there. The loop races the tracker against it (the dead-generation settlement has already written the command's verdict), and on that end asks every adapter to release the command, so a later command runs and no later provider turn is claimed into the dead one. The adapters' own exit-time releases were unreachable (Codex) or covered one path of several (Claude), and are removed. The Codex RPC test harness moves to its own module so the exit can be driven through the real adapter's connection callback. * fix(native-chat): keep refusing sends during a command on an older host An older host's controller still refuses a send while a conversation command runs, so dropping the client's block turned every message typed during /compact into a 'not sent' row with Retry there. The block stays for hosts that do not run the command as a send-path turn, and goes only for those that do. The signal is one the client already holds: a host that runs /compact on the send path states a turn scope on every journal row it writes, the same fact turn membership uses to tell it from an older host. Both now read it from one predicate. On an empty conversation, or one whose rows all predate the upgrade, the signal is absent until the command's own entry streams in, so that brief window keeps the old local refusal; no capability or wire field is added. * docs(native-chat): comments stop describing the hold this PR removed Eight comments still justified orderings and teardown choices by a viewer or dispatch hold that pinned the provider child. Nothing holds any more; the orderings stand for the binding's redrive subscription and parked mail, and a chat's agent runs from a send until the idle sweep rests it. Comment-only. * fix(native-chat): the completion says when the user is being asked A request that settles while a prompt waits on the user was worded "needs input" from the renderer's status-feed mirror. Remote clients receive the status and completion streams over separate sockets, so they can arrive in either order and the wording could be wrong both ways. The host already knows at emit time, so the completion now carries an optional `awaitingUser: true` in that case and omits it otherwise. The renderer words the notification from that field alone and no longer reads the status mirror. Old clients ignore the field and word by outcome; old hosts never send it. * fix(native-chat): a restart offer keeps the start its own continuation made Whose start ended an offer was decided at read time, from whether the offer's continuation was still the queued message. Once the provider refused that continuation, the child it had started read as someone else's start, so the offer ended and its failure showed no Retry. The delivery loop now records which queued message a start is for on the in-memory child, and the child's end carries it; the offer counts a start as its own when that message is one of its continuations. * fix(native-chat): a rewound turn still names the message that opened it A Codex rewind rebuilds the epoch without submissions, so each sent message survives only under its provider key. The kept turn records still named the submission key, so each turn anchored on itself and its rows grouped apart from the message that opened it. The rewind now renames the turn's opener along with the message. * fix(native-chat): Stop ends only the command it names Stop on a command turn abandoned whatever compaction the session had pending, so a late Stop for an earlier /compact cancelled the one running now. The tracker now ends a command only when the Stop names its turn, and the cancel reply reports whether it did. * fix(native-chat): an agent gets a full idle window after its owed work ends The sweep measured quiet only from the last journal row, so once a subagent, command, monitor or dispatch that had outlived the window ended, the agent was stopped at the next tick. A child can read done before the lead's wake-up turn writes anything, and stopping in that gap loses the wake-up. The sweep now counts owed work it observes as activity, which gives the agent the full window afterwards, as the release clock it replaced did. * test(claude): the options-read fixture runs a live child The fixture marked its conversation running with a hasProviderChild field the session type does not have, so the read took the at-rest path and refused a session with no record. It now carries a child, which is what the read checks. * test(native-chat): host tests reach its collaborators through a typed seam The rest-test rig and three test files read the host's private members with Reflect.get and cast the result. The host now exposes one test-only accessor, collaboratorsForTests(), and the subscribers class a subscriberCountForTests() beside its existing retainedActivityCountForTests(), so the tests are checked against the real types and the casts are gone. * fix(worktree-status): a departed agent's failure yields to live work on the worktree card A retained failed agent has no expiry, so ranking it with a live failure pinned the card to Failed over other panes' live work. It now ranks below working, monitoring and permission, and above every finished outcome. * refactor(orchestration): one owner answers a structured worker's custody Routing, group addressing, worker-show and the idle sweep each composed their own reading of whether orchestration still holds a structured worker, so each new obligation or retirement state had to be added to every reader. structured-worker-custody now derives both answers from the worker-terminal list state coordinators see in worker-list: addressable is owned and not released, and owed work is an active custody or an unsettled task dispatched to the same incarnation. The owner's state is read through the remote dispatch attachment too, as the terminal transfer lookup already does. Behaviour is unchanged; a settled worker awaiting its coordinator still rests. * refactor(orchestration): owed work is an open dispatch on the worker's incarnation A supervised worker's own dispatch context stays open exactly while the worker is active, so the separate active-custody branch only repeated it. Owed work is now one fact, which also states the policy that a worker awaiting its coordinator's decision may rest, and both custody decisions are written once at the top of the module. * docs(agent-status): a departed agent's failure ranks below live work on the worktree card * fix(native-chat): a restart offer knows its continuations by a tag in their id The offer recorded each continuation id in a list on its capsule entry, capped at 16, and a running action's id in memory. Both could disagree with the journal: past the cap an old rejected continuation read as the chat moving on, and a crash during a retry restored the failure's older entry, which lacked the retry's id. Each continuation id now carries a tag derived from the offer (its teardown and chat), then the action's own part, so any continuation of this offer, queued or rejected, is recognised from the journal row and the marker alone. The persisted list, its cap and the in-memory action map are deleted; the agent-start withdrawal keeps an offer whose own continuation the start was for, read against the stored marker. * test(runtime): the legacy-worker reveal test judges its stale snapshot inside the wait The tui-idle probe reads through readTerminal, which now awaits the structured worker check before the PTY read, so the probe's snapshot request starts a microtask later. vi.waitFor missed it on its first check and polled again at 50 ms, the same moment the wait's own 50 ms timeout fired. The stale snapshot then resolved after the wait had already timed out, so the test passed without judging it, and the rejection landed before any handler was attached. Vitest reported that as an unhandled error and failed the shard. Polling every 1 ms sees the request within a few ms, so the snapshot is judged while the wait is still pending. * fix(native-chat): a message held behind /compact is drawn where it was handed over A message typed while /compact runs was drawn above the compaction's result, between itself and its own answer. The reducer kept every item at the sequence and timestamp of the row that created it, and a queued message is created at acceptance, long before the command it waits behind writes its result. The phone orders by that sequence and the desktop by that timestamp, so both put the message first. A queued message now takes its position from its handover row, the same row that already states its turn scope. Everything the agent did before the handover, a command it waited behind included, draws above it. This holds for every held message, not only /compact's, and needs no client change: every client, older builds included, reads the position the host publishes. A live batch already carries the item when its dispatch row lands, and history pages cut the reduced timeline by sequence, so paging stays contiguous. * fix(native-chat): a phone's send during /compact answers without waiting out the compaction A client that predates accepted-send replies, which is every phone build, has its send reply held until the host hands the message over. A message sent during /compact is not handed over until the compaction ends, so the phone's 15 s request timeout fired first and showed the message as unconfirmed. That wait now also ends once the message is queued behind a running command. This is read from the journal's running turn and needs no new state. Every other wait still ends at the handover: behind a starting child or an ordinary turn, and for restart resume, the command front door and orchestration, which keep the plain handover point. * perf(native-chat): a rewind places provider items with one pass over the merged rows A Codex rewind gives each provider item the old epoch never held the turn record for its provider turn. It found that record by scanning every merged row, restoring each row's body, once per provider item. That is quadratic, and it runs on the host's main thread up to the journal's 10,000-row cap, twice per rewind. A rewind record written before rows carried their scope holds no scope for any provider item, so it paid the full cost. The merge now indexes turn records by provider turn id once, keeping the first match as the scan did, and each provider item looks its record up. * fix(native-chat): a view never restarts a chat whose last start failed A Claude chat whose CLI exits during startup left one red row per start, and every time a view bound to it (the chat opening right after its create died, or the user switching back to it) the hold started the CLI again, so the same launch-failure row repeated. Only a send retries a failed start now, the same rule provider-exit recovery already applied; the rule lives in one predicate the hold, exit recovery and the delivery loop share. * fix(native-chat): a message waiting behind /compact is drawn after it until it is sent A message sent while /compact runs is placed where it was handed over. It was still drawn where it was accepted until then. /compact writes its result one step before the handover, so for that step the waiting message sat above the compaction's separator. A message the host accepted but has not handed over is not part of the conversation yet, so both clients now draw it after everything the agent has done. The shared projection moves it to the end, which is the order the phone draws. The desktop ranks it with the other not-yet-sent rows, after the streaming preview. At handover it takes its place from its handover row, which is also after the separator, so it never appears above the compaction it waited for. * fix(native-chat): the idle sweep reads owed work every tick Owed work counted as activity, but the sweep read it only once the idle window had elapsed, so it refreshed the clock at most once a window. Work that ended just before the next read left the agent to be stopped at that read, moments after the work ended, which is the gap the refresh was meant to cover. The sweep now reads owed work on every tick for a started agent, so the window always runs from the last tick that saw work owed. * fix(native-chat): a continuation handed to the agent stays sent The offer read its own continuation as not reaching the agent while its dispatch was pending, which also covered one already handed over and still unanswered. When the wait for that answer ended first, the failure it filed read as retryable, and a retry sent a second continuation to an agent that may have acted on the first. Only a continuation still queued, or rejected, is now read as unsent. * test(native-chat): start the child the loop waits on with an attach, not a second view A view no longer starts a child whose last start failed, so the R2 case that waits on a child started since the failure now gets that child from a client attach, the one non-send starter left. * fix(native-chat): settle a gone generation's turn wherever a conversation opens A send that opens a chat this process had not read yet (after a crash, from a phone or the CLI) went through the delivery open, which never settled what the dead generation left running; only the read restore and a successful acquire did. When the send's start then failed, the turn stayed running for every reader. The settlement now runs in the one journal open, at the crash boundary, for every opener except an acquisition, which settles from the evidence it read before its reserve; the read restore's separate step is gone. * test(native-chat): prove the next child's start settles the turn an earlier child left The R1 case lost its only settlement assertion when the latch it checked was deleted. It now seeds the running turn the earlier child left and asserts it ends at the exit's receipt, with the exit's row, before the message is handed to the new child. * test(native-chat): count a failed start's rows by row, not by text Comparing the set of texts passed when two different rows carried the same words, which is the duplicate the test exists to catch. * test(cross-version): load the phone row readers without mobile's toolchain Vite transforms a file against its nearest tsconfig, and mobile/tsconfig.json extends expo/tsconfig.base.json, which the root-only cross-version lane never installs. The worktree ps verdict suite imported the current phone row reader from mobile/ directly, so CI failed with TSConfckParseError before any test ran. The harness now imports a copy of the working-tree reader placed under the checkout cache, where the root tsconfig applies, as it already does for the release checkout's copy. Both readers are still the real files. * test(cross-version): keep the checkout path-guard message and justify the copy import's cast * fix(native-chat): a command ends only by its own provider answer or its child's end Stop no longer settles a conversation command. It interrupts it like any turn, and when the provider cannot take that (Codex has not opened the command's turn yet, or Claude refuses the interrupt) it stops the child, whose dead-generation settlement writes the verdict. The pending command now lives on the provider child's own session instead of an adapter-wide map keyed by session, so it dies with the child and nothing has to release it. Claude's /compact is sent under a uuid the slot records, and only a root result naming that input (or naming none) ends it; its outcome is read with the ordinary result reading, so a stopped /compact is a cancellation. * fix(native-chat): a command's settle answers its message before ending its turn The two writes are not one batch. Writing the message's answer first means a crash between them leaves a running command turn, which the stale-turn sweep already settles, instead of an ended turn whose message reads as in flight forever. The settle now writes only while the command turn is still running. * fix(native-chat): "Worked for" counts from the handover, not the send A message held behind /compact, or behind a cold start, used to count the wait as the agent's work, although its row is drawn at the handover. Every handed-over submission's turn, the command's own included, now starts at the handover row's instant, falling back to the send time for a host that recorded none. * test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget * test(native-chat): the interrupted create's own retry continues again The merge of main's lease-latch fix replaced that test's retry of the interrupted create, under its own operation id, with a fresh start whose result nothing read. That fresh start passes with the released-reservation continuation deleted, so the case the fix exists for went untested. The retry and its assertion are main's again. * docs(native-chat): three comments that still had views starting agents A start with nothing queued now comes from a command, goal change or rewind; an interrupted compaction left alone would refuse every send, so no agent would ever start to finish it; and a current host raises the unattached read refusal only once quit began, with the attach window belonging to an older host. * test(native-chat): pin the open's and the send's start and row counts, however the view binds Opening a fresh chat whose starts fail makes one start and one row, with two views bound before or after the create's child died; one send makes one more of each. * fix(native-chat): a second Stop on a command ends its child; one compaction verdict for every provider A Stop's note now names itself in its key, so a later Stop on a command still running reads, from the journal, that the provider was already asked and never answered, and stops the child instead of interrupting again. Nothing is held in memory for it. Adds the rule both translators will read a compaction's end by: only a compaction the provider reported is a success; none after Orca's interrupt is a cancellation; anything else is a failure. A real Claude capture, pinned as a fixture, is why: a stopped /compact ends in the same success result as a finished one. * test(native-chat): a reader's open settles the turn a failed exit settlement left running An exit whose settlement write failed leaves its turn running in the open journal. PR 1's open now settles it, and this pins the two reads that reach it here: a reader reopening a chat the idle sweep closed, and a read that opens the chat before the restart restore reaches it. * test(native-chat): the view-start test's starting window outlasts two subscriptions on a loaded runner A subscription reads the conversation before it returns, so under load the two views took longer than the create child's 300 ms start, which then exited before the test checked that it had not. The child now takes a second to fail. * fix(native-chat): settle a gone generation's turn at every open but an acquisition's The journal open skipped the settlement whenever the lease read reserved or live, to leave an acquisition's own open to the acquisition. But a lease a crashed process left in recovery also reads live, until the next acquire resolves it. A send that opened such a chat, from a phone or the CLI after a crash on a host that could not prove the old owner gone, skipped the settlement; when its start then failed, the dead turn stayed running for every reader. The acquisition now says it is the opener, and every other open settles, whatever the lease still claims. * test(native-chat): hold the create's start open until the views bind The "view binds while the create is still starting" case gave the create a 300 ms head start and asserted the views bound before it died. On a loaded runner the holds took longer, the create's exit landed first, and the case failed its own precondition. The create's initialize now waits on a gate the test releases once the views are bound. * refactor(native-chat): the provider's translator ends a command's turn; the loop holds no command state A conversation command is now a turn of the provider child's own journal pipeline. The adapter-wide tracker, its promise and the loop's settle step are gone. - Codex: the translator claims the provider turn that carries the command, scopes its rows to the command's turn, and writes the command's end in the same batch that settles that turn. Codex's own compaction marker is the success row. - Claude: the command's turn is the translator's open turn until the result that answers the /compact input ends it. The command's own frames, such as the continuation summary, its echo and "Compaction canceled.", draw nothing. - Both read the end with the one compaction rule: success needs the provider's report of the compaction; none after Orca's interrupt is a cancellation. - The message resolves at the provider's receipt, as any send does: the Codex ack, or the Claude slash-command waiter on its result. The host writes a command's end only when the provider never took it. - The delivery loop stops while a command's turn runs, and every journal commit re-wakes it through the session's serialize, so an end that lands while a step decides to stop is never lost. A child that ends first is settled with it. * test(native-chat): pin a command's end to real /compact frames and to each path it threads The captured /compact frames drive the Claude translator's command turn: a finished compaction ends as a success with only the separator drawn; a stopped one ends as a cancellation with no failure row, and the next send answers in its own turn; a result naming another input ends nothing. The command's end is checked at each point the ordinary result path threads through: the reopen latch after a failure, the settling of a child still working, the context facts the result reports, and the provider's own error row. On the host: a message held behind a command is handed over when the command ends just as the loop stops for it, a refused command settles as a failure and the loop moves on, and a Claude child that exits mid-command settles the command and hands what waited to a fresh child. * test(native-chat): tests merged from the base state which turn their rows belong to * refactor(native-chat): drop the child-end waiter nothing waits on A command no longer waits for its child here: its turn ends from the provider's frames or from that child's settlement, and the delivery loop is woken by the commit. The waiter and its test were left from the earlier shape. * fix(native-chat): a command holds the queue only while its child runs it The delivery loop stopped whenever the journal showed a command's turn running. When the command's child ended and its settlement could not be written, that turn stayed running with no child to end it, and the loop's gate kept it from ever starting the next child, which is what settles a gone generation's leftovers. Every later send was held for good, and Stop had no child to end. The gate now holds only while the conversation has a child: with none, the command belongs to a gone generation, and the loop's start settles it like any turn a dead child left running. * fix(native-chat): a Claude /compact succeeds only on its compaction boundary The command's evidence counted Claude's `compact_result: 'success'` status as the compaction done. That status comes before the boundary that replaces the history, so a Stop landing between the two read as a finished compaction even though no boundary was ever written. Only the boundary now counts, as the rule for both providers states; the capture's finished compaction carries one, so it still reads as a success. * fix(native-chat): a Claude child's exit says why the turn it ended stopped When a Claude child exited mid-/compact, the command showed "Worked for 0s" and no reason. The child's translator ends its open turn the moment the exit is reported, stamped with the exit's instant, so by the time the exit settlement ran nothing was running. The settlement recognises a turn the exit already ended by that same instant, but the Claude lifecycle event dropped it on the way to the host, which then used its own clock, matched nothing, and wrote no row. When the clocks did agree, the row was scoped to the running turn, of which there was none, so it landed outside the turn it explained. The exit's instant now reaches the host, and the exit row belongs to the turn the exit ended: still running, or ended by the translator at that instant. * fix(native-chat): a message waiting behind /compact draws below its live activity A message sent while /compact runs waits on the host until the command ends. Both clients moved it to the end of the transcript rows, but the running turn's live activity line ("Compacting the conversation") draws after every row, so the waiting message sat between the command and its own live status. A row that is queued, and not what the live turn is for, now draws after that live activity: on desktop outside the transcript window, below the activity line; on the phone in the list footer, below the live status. A message whose own start is pending still draws above the activity that start reports. * fix(native-chat): only a running command holds a message below its live activity A message is accepted, then handed over a moment later, and in between it reads as waiting. Every message waiting behind a live turn drew below that turn's activity line, so an ordinary message sent while the agent was working crossed below "Thinking" and jumped back up once it was handed over, on desktop and phone. Only a conversation command's turn holds the queue on the host. A message now waits below the live activity only while the running turn is one a command opened, read from the entry that opened it. The phone test also typechecks, which the mobile test ratchet requires. * test(codex): the claim test names its notification params as a record * test(native-chat): a read that reaches a crashed chat before the startup reconcile settles its turn On desktop the chat on screen at relaunch reads before startup reconciles the leases, while the dead process's lease still reads live. The open settles the turn it left running anyway, and the restore that follows finds it settled. * refactor(native-chat): drop the composer's second error formatter After the merge with main, every chat write in the composer path reports its failure as a typed outcome worded by the refusal-notice table, so the send's catch sees only a local throw. The {code, message} formatter this branch added for it has no payload left to format, and its claim to be the one way a chat words a failure is no longer true. The composer send is main's again. * test(native-chat): pin the reason on a message rejected while its chat was closed The reopen test checked only that the message reads as not sent; it now also checks the Retry row carries the host's reason. * docs(native-chat): drop the removed dispatch hold from six comments A worker's session no longer takes a dispatch hold, and no release clock rests a chat by visibility; the agent-launch comments, the abandon test, the teardown test and the refusal census still said so. * test(native-chat): rest the owner-status chat through the idle sweep, not a hold The activation-gate test from #22808 put its chat at rest by holding and releasing it, and passed the release-clock grace. This branch deleted both, so the case threw before it reached its assertions. It now moves the host's clock past the idle window and lets the sweep stop the agent and close the conversation, then asserts the same owner answer and activation gate. * fix(native-chat): show the structured pane's retrying line when a read fails The read transport always hands the pane the host's words, so the error state's "Orca keeps trying to load it" line, which showed only when there were none, was never seen: the pane showed the host's text twice, as its subtitle and on the status line under it. The structured pane now always says its read keeps retrying, and the host's text stays on the status line. The terminal-backed chat is unchanged. * fix(native-chat): a send the provider never received after a restart has no verdict Restart reconciliation rejects a crash-stranded send that is absent from a trustworthy provider history with reason 'not_delivered'. Nobody failed that send, but the verdict allowlist did not name it, so after a crash the chat read Failed, was listed, and could notify "failed". Give the reason a shared constant (persisted value unchanged), add it to the no-verdict set, and treat it as an internal marker so the Retry row no longer shows the raw string. * fix(native-chat): a failed Codex compaction's late completion writes no turn of its own Codex ends a failed turn with an error and then still completes it as failed. The error settled the compaction and released its claim on the provider turn, so the completion read that turn as an ordinary one and wrote a stray record. The claim now lasts until the completion, which adds nothing to a command the error already ended. * test(native-chat): the mid-command exit case resumes its next child as a real one does The case's fake started every child as a newly created thread with the same generation. The store refuses a created link once the conversation has a thread, so the next child's start failed and wrote its own error row, which landed before or after the case read the journal. The next child now resumes the thread under its own generation, and the case reads the journal once the waiting message is delivered, which also proves the loop moved on. * fix(native-chat): a /clear that never committed no longer locks the chat A /clear wrote a durable "prepared, outcome unknown" record before starting the replacement conversation. When that start was refused without a definite answer (or Orca died), the record stayed forever, and while it did the chat refused every send, /compact, a new /clear and rewind. Its only exit was a rerun under the same operation id, which only the renderer held. The record guarded nothing the process does not already know: a clear in flight holds the session's serialize for its whole run and the command controller refuses sends meanwhile, and the replacement's id and start operation are pure functions of the clear's operation id. So the clear now writes nothing durable before its commit, the gates refuse only a committed clear (an older build's prepared record is inert), and a clear with no committed answer reruns: a same-op retry re-attaches the same replacement, a new op id runs a fresh clear. A crash between the replacement's start and the commit leaves a replacement record nothing points at. Verified: it has no tab, is not in the replacement list, and a restart opens and starts nothing for it (restore reads only the visible tab index); restart reconciliation releases its lease like any dead owner's. In a live process its agent is stopped by the idle sweep like any quiet agent. Session History lists provider transcripts and only annotates them with an owner, so it can list this only if the provider wrote a transcript for a thread that never got a message. Its record stays on disk, as every closed chat's does; the store deletes none. * fix(native-chat): a Codex rewind the provider did not keep no longer fails every attach When Codex acknowledged a revert and Orca stopped before proving it, the rewind stayed prepared with providerApplied set. On the next attach, recovery read the provider's history, found the target turn still there (provider-refused), and threw, because that settlement was limited to reverts never sent. The throw ran inside the attach, so every attach, and every send that needs one, failed for good. The journal is replaced only once the provider proves the revert, so both the provider and the journal still hold the target turn: settling the rewind refused is consistent whether or not the provider acknowledged it. * test(native-chat): a clear retried after a crash starts no second replacement The replacement's id is the only thing that keeps a retried clear from leaving a second one, and no test held it across a restart. * chore(native-chat): the clear rerun comment claims only the stable replacement id * test(native-chat): wait for a send's background start before the refusal oracle removes its store An accepted send wakes the delivery loop, which starts the agent in the background. The oracle's teardown disposed the loop but did not wait for that start, so its lease write could create a temp file in the store directory while the directory was being removed, failing the test with ENOTEMPTY about one run in four. The teardown now drains tracked starts before it closes the journals. * fix(native-chat): a start a message waited on gets one failure row, the delivery loop's When a queued message's start failed, two writers could report it under the same row: the delivery loop, when the adapter settled the start without proving it, and the exit settlement, when the child's exit landed. The last one won, so the chat's row could name a different cause than the one the message was rejected with, or be written twice. The exit settlement now writes the start's row only when no message is queued and the loop has not already recorded that start. A start for a command, goal change or rewind, with nothing queued, still gets its row from the exit. * fix(native-chat): a /compact whose start failed says to run /compact again The failure-words context named only /clear as a command to retry, so a /compact whose agent failed to start read "Send your message to try again." on its row, its rejected message and the command reply. The context now carries any conversation command; the host derives it from the oldest message still waiting on the provider, which is the one a failed start fails first, and the /compact reply names it directly. * fix(native-chat): a Codex /compact ends only on its turn's completion, below Codex's own error row Since only turn/completed ends a Codex turn, Codex's turn-ending `error` is a row inside the still-open command turn, and the failed completion that follows it is the command's end: completed, outcome failure, at the completion's receipt time. The command's own "Compaction failed" row was written on that completion too, so a failed /compact read its reason twice. The command turn now notes when Codex's turn-ending error for the turn it carries was written as a row, and its end then adds no second row. A retried stream error ends nothing and is not counted. The flag that let the error end the command and kept the claim until the completion is gone with the error-driven end. A test replays the captured failed compaction from the real app-server through a claimed command turn. * test(native-chat): main's crash-turn test states its row's turn, and a dead /compact settles on its recorded exit Two tests the main merge brought together: - The crash-turn test from #23456 writes a turn record through the event sink without options; every row here states its turn scope, and a turn record's is the thread. - The /compact whose exit settlement could not be written no longer stays running until the next start: main now settles an open chat from the exit it recorded, so the command reads interrupted before the next message, which is then delivered. * test(native-chat): main's new journal tests state each row's turn The crash-turn, stale-turn and sink-queue tests main added wrote rows without a turn scope, which every item write now states. Rows written inside a running turn name that turn; the sink-queue batch and a send handed over with no live turn name the thread. * fix(native-chat): draw a queued turn's message after the earlier turn's rows A message sent while A runs is written to the journal when it is sent. When the provider queues it (Claude answers it after A), A's remaining rows - its last tool run and its answer - are written after that message, and the message's own turn opens only after them. Grouping put those rows in A's turn, but the transcript still drew them in journal order, below B's bubble and bar, where A's answer read as B's reply. This is the residual #23671 left open. A message that opened a turn now draws after the earlier turns' rows the journal wrote after it, just before its own turn's rows (nativeChatTurnDrawOrder, returned by nativeChatTurnMembership as drawOrder). Desktop and mobile both draw in that order. A steer, and a message that has opened no turn yet, stay where they were written. It applies on hosts that state turn scopes and, through journal order, on older ones. * test(native-chat): run #23026's Stop tests against #23059's command turns Two of #23026's tests call APIs #23059 changed, and failed after the merge: - codex-structured-conversation-stop: a compaction now goes through adapter.compact with the command run the host wrote (#23059), not a bare turn id, and answers with the provider's receipt. With the command claimed, a Stop that names no turn while the compaction's provider turn has not opened still interrupts nothing. - main-agent-working-agreement: a provider row states its turn scope (#23059's appendItem contract); the retry and subagent rows are conversation-scoped. * fix(native-chat): typecheck main's Stop and restore-grouping code against #23059 A Stop's compaction interrupt reads the narrowed requested turn, and the restore-grouping test states whether each row reports its turn's outcome. * fix(native-chat): say a /clear cut off by a restart left the chat unchanged A /clear retried under the same operation after Orca restarted could not reuse the new conversation its first try started, and its row said "Codex couldn't start. Run /clear again." The agent did not fail to start: the earlier try was cut off. The row now reads "This /clear didn't finish, so the chat is unchanged. Run /clear again to start fresh.", from a new clearUnfinished failure fact written through agentSessionFailureWords. The clearUnconfirmed and conversationCommandUnconfirmed reasons stay, with their words, for older hosts that still send them. * fix(native-chat): a retried /clear finishes onto the conversation its earlier try started When an earlier try of the same /clear started its replacement conversation and a restart or the idle sweep has since stopped it, the retry could not replay that settled start and reported the chat unchanged. That replacement is a fresh conversation at rest, so the retry now commits onto it and its first message starts its agent. A replacement whose start definitely failed still reads that failure, and one Orca can't prove stopped still commits nothing. The clearUnfinished failure kind this made unnecessary is removed. * refactor(native-chat): stop recording that Codex acknowledged a rewind A refused rewind recovery now settles as refused whether or not Codex acknowledged the revert, so nothing reads providerApplied any more. Stop writing it and drop the hook that wrote it. Records that still carry the field load as before; the schema ignores the extra key. * fix(native-chat): a /clear retried under a new operation id finishes the same replacement A /clear's replacement id came from the client's operation id, so a retry the client sent under a fresh id started a second replacement and orphaned the first. The host now derives it from this caller's oldest /clear since its last commit whose replacement start reached the operation ledger, so any retry from that caller finishes the same replacement, including after a restart. A /clear after a committed one starts a new replacement. Another caller's /clear is refused only while such a replacement is running or not proven stopped. An older client that resends the same operation id still lands on the same replacement. * fix(native-chat): a /clear retry never repeats a failed start or waits on an unproven stop A retry under a new operation id could pick an earlier try whose replacement start had already failed, replay that failure and commit it again, so a user who had since signed in was told they were still signed out. Such a try is now skipped, and the retry starts afresh. Another window's /clear was refused while the first window's leftover replacement was merely not proven stopped. Nothing but the first window's own retry would settle that, so the refusal could last until its ledger row expired a day later. It now waits only on a replacement whose agent is running. * fix(native-chat): a /clear retry finishes only a replacement that started A retry picked an earlier try whose replacement start never answered, because a crash left that start unsettled. Replaying it could only repeat "couldn't start" or, with the old agent unproven, refuse every /clear from that window. Only a start that succeeded left a conversation to finish; any other try is skipped and the retry starts afresh. --------- Co-authored-by: Claude <noreply@anthropic.com> |
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2807332735 |
refactor(shared): bring constants.ts back under the max-lines limit (#23923)
* refactor(shared): move onboarding, notification and terminal platform defaults out of constants.ts * chore(lint): keep the shapedSidebar naming exemption on the file that now holds it * chore(i18n): regenerate the runtime catalog so it covers main's shipped keys |
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5c59a2dfec |
fix(native-chat): a failed turn ends on its error instead of folding it (#23679)
* refactor(native-chat): remove the unused terminal handoff No client ever called agentSession.requestHandoff or mounted the handoff chrome. Delete the handoff coordinator, the terminal-owner runtime, the proof write path and the unmounted UI. Keep agentSession.handoffStatus, which released desktop clients read for worktree activation, and let records an older build left mid handoff reconcile through the ordinary restart and recovery paths. * fix(native-chat): never let the pre-stop snapshot hold a chat's stop Eviction now drains delivered events before quit's resume-offer snapshot. An unbounded wait there sits ahead of the provider stop, so a sink whose journal write stalls kept the child running until the step deadline aborted the eviction. The offer is advisory: bound the drain and stop the child regardless. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop helpers only the terminal handoff called `claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and `queryWindowsProcessRowsFresh` lost their last caller with the handoff. The fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`, the teardown path that still depends on that contract. Co-Authored-By: Claude <noreply@anthropic.com> * docs(native-chat): stop citing the removed handoff in lifecycle comments Six comments still named the handoff coordinator, a handoff suspend, or a terminal-owned session as live participants in the flows they describe. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stalled snapshot drain without a cast Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): pin that a start dead before proving owes no settlement The removed restart handoff test pinned this branch; nothing else did. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): keep the owner-status read behind an in-flight attach The handoff removal dropped the per-session queue from `handoffStatus`, so a read landing mid-start reported the reservation (no owner) instead of the settled chat owner, and shipped desktop clients blocked worktree activation on it. The read is queued again, as it was before the removal. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(terminal): remove the agent-session PTY write gate The gate only refused a write when a PTY had been bound to a chat session, and the only code that ever bound one was the terminal handoff this branch removes. With it gone, every admit/readmit returned "admitted" unconditionally, so the checks on the renderer write path, the runtime controller backstop, terminal.send, agent prompts, preview input and orchestration pointers, the refusal fields on terminal.send and worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane orchestration routing could no longer run. Ordinary writes take the same path in the same order as before. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop the transcript helpers only the handoff called appendLegacyTranscriptMessages fed the terminal transcript catch-up and proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost their last caller with the handoff. Their tests now go through the live entry points instead: the roster bounds through the legacy import, the pinned-read and growth tests through the ancestry replay the history window uses, and the marker rules through the string proof in their own file rather than the session-file resolver's. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): stop calling a starting chat "mid-handoff" A send refused because the chat's owner is not settled showed "The session is mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that reach it are a chat that is still starting, or one whose previous agent process has not yet been confirmed stopped. The message now says which of the two it is. The refusal code is unchanged. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stand-in roster decoder without a cast Co-Authored-By: Claude <noreply@anthropic.com> * refactor(codex): name the pinned rollout lookup for what it does With the terminal handoff gone, the module named codex-tui-rollout-proof holds only the pinned rollout lookup that structured Codex launches use to resume a thread, so the name described code that no longer exists. Rename the module and its options type. Also drop a mobile allowlist assertion that pinned the removed agentSession.requestHandoff method, which no longer exists to allow. * refactor(native-chat): type the owner-status reply as the host sends it The handoffStatus reply type still listed the terminal handoff's fields and states (terminal placement, host label, proof retry, queued and waiting phases, the to-terminal direction). No host writes them any more and the only client reader parses the reply as unknown, so they described nothing. The reply on the wire is unchanged. * refactor(native-chat): normalize terminal-handoff lease values once at decode Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types still admitted them, so readers across the host kept branches for values no path produces and the compiler could not point at them. The store now validates the on-disk shape, which still accepts those values so an older record is not quarantined, and maps them once while parsing: - `preparing` and `old-owner-stopped` become `recovering` - a `tui` lease becomes `native`; when it records a process it also becomes `conflicted`, the claim every build probes but never stops. A plain native owner would be stopped by restart recovery, here and in older builds. Revisions are taken over the normalized state on both sides of every compare, and the mapped record reaches disk with the store's first transaction, the same way the tab-id backfill does. The in-memory types narrow to what this build writes, and the branches that existed only for the removed values go. Structured-worker identity keeps its verdict for a former terminal owner by refusing a conflicted claim rather than a non-native kind. * refactor(native-chat): stop threading the owner kind through a reservation A reservation only ever names a native owner now, so the request no longer carries a kind and the reserved lease records `native` directly. The attach params keep `runtimeKind`: agentSession.ensure and create accept it, and the operation fingerprint stored in the ledger covers it. * test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else Hiding a tab also committed the visibility index, so the no-op transaction wrote the file even when its open-time revision was wrong. Committing the index first leaves the pending rewrite as the only reason to write. * fix(native-chat): name a chat write by its target, not the owner generation A write carried the fence of the last frame the pane read, and the host refused it unless that fence was still current. An idle release and the restart after it each move the fence, and the release publishes nothing, so a send after a release was refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a cold start was refused as stale. Every write already names what it acts on: a send its conversation, a cancel its turn, a prompt answer its item revision, a rewind its epoch; an option is last-writer-wins. So admission stops comparing the client's fence, and the rebase that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it. The writer-lease check stays, and so does the attach's compare-and-swap. Frames now stamp the fence read when each frame is sent instead of a copy each subscriber kept, which went stale on the same release. * fix(native-chat): every journal append reaches the chats that are open A journal write and its delivery to open readers were two calls, and some writers made only the first. A failed start whose lease could not be handed back, a provider revision with no frame behind it, and eviction's settlement were all journaled without reaching an open chat. A journal handle now reports every durable change, and the host's session map binds that report to the session's readers when the handle is set. Writers no longer publish what they append; the per-writer publish calls are deleted. * test(native-chat): an epoch replacement reaches the open chat * test(native-chat): each row reaches an open chat once, and a live handle enters only through the map * test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite The seeded record had no surface tab id, so the next open backfilled one and that rewrite alone made the no-op transaction write. The test passed with the legacy-lease rewrite signal removed. * test(worktree-activation): restore the OMP surfaced-agent resume test The handoff removal deleted it alongside the terminal-owner tests, but it covers the surfaced-PTY block that still guards resume, including an agent whose ownership is unknown. * perf(native-chat): a publish behind a delivered commit reads nothing Each commit now delivers itself, so the publish a provider frame still sends afterwards found every reader caught up but still read rows and rebuilt the timeline for each one. A caught-up reader now skips the read. * test(native-chat): state why the teardown test's fake journal is safe to cast * docs(native-chat): say mutation admission checks only the writer lease * docs(native-chat): drop the send rebase from comments that still described it * fix(native-chat): a message is accepted, then delivered A send to a chat with no running agent restarted the agent inside the send call, before the message was recorded, so the client waited for the whole start and a failed restart refused the message. Claude held prompts sent during startup, and those could settle as "unconfirmed". A send is now accepted inside the session's serialized queue: one ledger row and one submission row marked handoverRecorded, published, answered pending. A per-session delivery loop exists while a message is queued. It starts the agent through the same serialized attach a hold uses, waits outside the queue for a Claude child to prove its start, and hands the oldest queued message over as its own serialized step, writing dispatch{pending} before the adapter call. A start it needed and did not get writes one error-tone row and rejects every queued message with the same words; a start Stop cancelled writes none. Settlement follows from the rows. A queued message is provably unwritten, so a close, an eviction or an exit rejects it. A handed-over message stays in doubt. A queued row at or below the sequence a handle found when it opened was left by an earlier process and is rejected at open, with no latch. Stop withdraws queued messages with no writer lease and no fence. An attach failure keeps the conversation open, and the attach adopts its journal. Owed work counts the loop and queued rows. A compaction or rewind found prepared when a conversation opens was started under a child this process no longer has, so the open settles it rather than leaving it to refuse every send until a view attaches. The open cursor is scoped to its epoch, because sequences restart when an epoch is replaced. Deleted: restart-before-admission, recordFailedRestart, the fence rebase, Claude's startup gate, the attach's forget on failure and its own crash boundary. Clients without agent-session.accepted-send.v1 get their reply held until the handover; the desktop and paired desktop lists advertise it. * fix(native-chat): settle queued messages only for the child that ended A child that proved its start and then exited before its message was handed over left the message queued: the exit settlement returned early when nothing else was in flight. Delivery then started another child for it, and a child that died the same way started another, without end and without a row. A retried settlement for an earlier generation, run by the attach that delivery started, did the opposite: with that generation's turn unfinished it rejected the message queued for the child being attached. The settlement now takes the rejection for queued messages from its caller. The unexpected exit and the eviction pass one, and it applies even with no other work in flight; the retry for an earlier generation passes none. * fix(native-chat): an adoption that fails to import keeps the conversation open The attach now writes into the conversation's own open journal, but a failed transcript import still closed it as if it were the attach's provisional one. The conversation stayed indexed with a closed journal, so every later send answered "could not be recorded" and every attach failed again until the app restarted. The import now closes only a journal the attach opened for itself. * perf(native-chat): the recovering open reads the journal once Every conversation open now goes through the recovering open, including the read restore of every chat at startup, which used to replay its journal once. The recovering open replayed it twice: once to probe it and again inside the open. The probe is now handed to the open as its load. * fix(native-chat): an attach that fails after indexing its child leaves no child behind A failed attach now keeps the conversation open, but a failure after `onAttached` indexed the child (the rewind or compaction recovery, or the attach's own success record) left that entry claiming a child the failure path had already released. The next send found the phantom, skipped the start, and wrote at a fence the journal had moved past, so the message stayed queued for good. The entry now drops the released child and its event sink, and follows the record's fence, as a failure before indexing already did. * fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer The error strip for a message the host accepted and then did not deliver matched the entry before the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not send your message" with nothing to retry. It now reads the reconciled entry. A rejection the journal records before the send's own pending answer lands is final as well: that answer no longer puts the entry back to dispatching with no Retry. * fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down The preamble waits for its submission to be delivered while the worker's agent starts. When that wait ran out it threw operation_unknown, and the failed-start teardown then closed the session, which rejected the very preamble the host was about to deliver. It now reports a turn start nobody observed yet: the worker is start-unknown with its session kept, the host delivers the preamble when the agent starts, and the worker's report settles the dispatch as for any unobserved start. The receipt no longer suggests reading a screen a structured worker lacks. * fix(native-chat): a message rejected while its chat was closed reads as not sent A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked every later message behind a Retry and no reason, and the delivery probe, seeing the journal already answered, never ran. The reconcile now settles it as rejected like a dispatching one. * test(orchestration): name why the readiness settlement fakes are cast * fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent * docs(native-chat): drop the fence from the admission the send effects run behind * docs(native-chat): give the fence move on release the reason that still holds * docs(native-chat): stop citing a write fence check in launch and mailbox comments Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease. * refactor(native-chat): the provider child is its own record A conversation now outlives any number of provider children, so the child is one record on the conversation's entry instead of five loose fields beside its journal. It is written in one place: indexed only once an attach has fully succeeded, and ended through one function that an exit, a failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence. - A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence patch after it are gone. - Conversation writes read the record's fence, the way mutation admission already does; a child's own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of the conversation's fence, are gone. - The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer dropped when an attach replaced the whole entry. - Stop on a child still proving its start stops only the child: its lease goes back and the chat is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus the conversation's close. - The settlement retry uses the conversation's own journal, opened through the host's one open. * fix(native-chat): the delivery loop alone settles a message its start or child failed A queued message was settled by whichever path happened to end the child first: the loop, the unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that rejected every pending row. That gave two failure rows with different tones for one start, a loop that could hand over to a different child than the one it waited on, and a Claude start that died while starting reading unlike every other failed start. - The loop remembers the child it waited on. At handover, if that child is gone or replaced, it reads how it ended: a Stop continues; anything else writes one failure row and rejects every queued message with the same words, then stops. A child still starting whose start the adapter says did not land fails the same way. The exit, eviction and the settlement retry only settle the handed-over and legacy rows of the child that ended. - One failure row, always an error, keyed by the start. A start a view began that dies with nothing queued writes the same row through the same builder, so a second report revises it. - The open no longer rejects leftovers; the loop's first step does, and the open wakes it. - `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the failure before the exit is processed. - Quit closes every conversation the way closing a chat does: what is still queued is rejected as closed, with or without a child, and a start the loop already has in flight is waited for so the child it produces is stopped rather than left behind. * refactor(native-chat): a stopped child ends on the one reading of its stop The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that verdict to the child's ending, so the host never forms a second view of whether the root is gone. Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition, and a failed re-attach passes what its release saw. The end-of-child record can therefore also carry a stop whose root was not seen to go, which nothing ends on yet. * feat(native-chat): the host says it accepts a send before any agent has it The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same string capable clients already send. A client can then tell a host that answers a send at acceptance, and admits a Stop with no writer before a turn starts, from an older one that still restarts the agent inside the send. Additive: an older client ignores a capability it does not know. * refactor(native-chat): an attach never opens a journal of its own The attach adopts the conversation's open journal, which outlives it, so it no longer opens one for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag that told the two cases apart is gone. Tests that attach without a host open the conversation the way a host does. * fix(native-chat): a moved fence resends nothing on a host that accepts first The outbox treated any fence change as a new owner: it dropped the answer of a send in flight, queued that send to go out again under the same id, and unblocked a refused head. On an older host that is how a send the restart refused, unrecorded, gets another try. On a host that records every send before it starts an agent, a fence moves because that start ran, so the same rule resent into every failed start. With a fence stamped on every frame, that became a loop. The outbox now reacts to a fence change only when the host has not advertised that it accepts a send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed start reaches the client as a rejected message it keeps with its Retry. Against an older host, or before one has answered, the outbox behaves as it did. Desktop and paired web share this hook. * refactor(native-chat): a child's end says whether the user or the host stopped it The end-of-child record's cause now tells a user's Stop from the host stopping the child for a cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a user's Stop, as before, and fails the start it was waiting on after a host stop, with the one error row and every queued message rejected, in the stop's reason when it gave one. The reason stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet. * fix(native-chat): a chat whose only work is a queued message is not offered for resume A message accepted while the agent was starting counts as working in the chat, and quit rejects it as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a chat whose agent never had the message. The snapshot now reads only what was handed over. * fix(native-chat): the conversation outlives its agent Opening a chat no longer starts its agent. A conversation is reached through one host accessor that opens its journal at rest, and a send is what starts the agent, through the delivery loop. One idle sweep, every five minutes, stops an agent that has been quiet for thirty minutes and owes no work, then drops an open journal handle that is only a cache. Its record, tab, status row and readers stay. - hold and release are no-ops; hold still builds the host for shipped mobile builds. - The holders, the holds, the release clock and the exit respawn are deleted. - Options, the model list, the goal and the context meter answer at rest; a model pick at rest is recorded as intent for the next start. - Compact, rewind, clear and goal changes start the agent first. A send does too when a rewind is still in doubt after the conversation opens. - Orchestration routes mail and group addresses on ownership (the record plus the chat tab), not on whether the process runs. An open dispatch keeps its worker running. - The restart continuation is a send; Resume all holds each slot until the message is handed over or rejected. - A read error never replaces a loaded transcript, and shows the host's own words. * test(native-chat): type the queued-message fixtures in the resume-offer tests * fix(native-chat): a start that dies while a message waits on it is that message's failed start Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When that start died, its exit wrote the start's error row and left the message queued, so the delivery loop started a second agent into the same failure and wrote a second row. A child's end now records where the conversation's journal stood, and the loop settles a message accepted before a failed start ended with that start: one row, under its key, and no second start. A message sent after the failure still gets a fresh start. * fix(native-chat): a request that failed reads as failed A structured chat whose only message the agent's start refused read as a green finish, and a cancelled structured turn did too: the host published a verdict only for turn records, and structured rows carried no `interrupted`. The host projection now reads the session's latest request: its turn's outcome, or `failure` for a send the agent or its start refused. A send that was withdrawn, or left undelivered by a restart or a close, fails nobody and makes nothing listable. The ingest publishes `interrupted` as the hook lanes do, and every reader decodes the verdict through one accessor, so a failure reads Failed on the dot, the rollups, history and `worktree ps`, behaves like a cancellation in every clean-finish policy, and notifies as "failed". * docs(native-chat): say what an attach's open conversation and unconfirmed ids are now * test(native-chat): a verdict change republishes the mobile status projection * refactor(native-chat): the store's retention trigger keeps its flag compare A verdict change always moves the completion clock the same check already reads, so a second verdict compare there caught nothing new. * test(native-chat): a user message the provider journaled keeps its session listed * test(native-chat): pin what a failed start settles, and what a resume offer names A view's child that dies while a sent message waits settles that message only when it died starting and no child has taken its place: a proven child's crash, or a second start since, gets the message delivered. The resume offer names the handed-over message, never a newer one still queued. * test(native-chat): the failed-start pins fail on what the message became, not on a timeout * fix(native-chat): a restart offer ends when the chat's agent starts again The offer used to end only when the chat's newest user message changed, because opening a chat started its agent and that start could not be told apart from real activity. Opening a chat starts nothing now, so the host reads the fact it already publishes: a chat's status row goes from not host-owned to host-owned exactly when its agent is started. At that edge the offer and any failure record for the chat are withdrawn, unless the start is a resume action's own (its continuation is the oldest undelivered message). A continuation and a message racing to be first are decided at acceptance: the continuation is refused, quietly and with nothing filed, when any other message was accepted since the restart. A failed continuation start leaves the offer retryable, and each resume action sends its own message id. Deleted: the newest-user-message comparison, its journal reader, the continuation filter, and the failure ledger's own "answered by the chat" check. The marker still carries its message id for one release, so the previous build can read it. * fix(runtime): end a transcript stream when its client unsubscribes Desktop: the IPC subscription controller was dropped as soon as the streaming handler returned, which for most streams is right after it binds. A later runtime:unsubscribe then found nothing to abort, so the host kept the subscriber and derived and sent every publish to a channel no one listened to. The controller now lives until the renderer unsubscribes, resubscribes the same id, or goes away. Mobile: disposing an agentSession.subscribe stream now sends agentSession.unsubscribe with the stream's frame id, so the host ends that subscriber and leaves a sibling stream on the same socket running. The direct path now passes the frame id the relay path already passed. * fix(native-chat): a late provider-session update keeps a failed recovery record failed A provider-session heartbeat that rewrites a completed recovery record kept its interrupted flag but dropped the outcome it was copied with, so a live failed checkpoint read as a clean finish until the next status write. * test(orchestration): the preamble's host stub is typed, not cast The preamble send now takes only what it reads of the host, the send, the settlement wait and the record's fence, so its test builds that host with real types instead of `as never`. * test(native-chat): the terminal-bell check asserts the renamed verdict field The bell notification test still checked for agentInterrupted, which no longer exists, so it could not catch a verdict leaking into a bell dispatch. * fix(native-chat): a failed turn ranks like a completion for attention Attention readers (completion time, Smart Sort, sticky retention, Cmd+J Recent) now demote only a turn the user stopped. A failure is news the user has not seen, so it keeps its completion time, ranks in the Done class, stays retained after its pane goes away, and a retained failure reads failed in the worktree rollup instead of done. Clean-finish policy (hibernation, pane ownership, the value moment) still treats a failure like a stop. The retention trigger compares verdicts again: success -> failure no longer moves the completion clock. * fix(native-chat): one fact ends a restart offer: the chat moved on since the restart The offer is live while no other message has been accepted in the chat since the restart and its agent has not proved a start since. The offer list, the resume's reservation check and the continuation's acceptance check all read that one fact, so a message whose start then failed withdraws the offer too, and a stale click finds nothing to act on. The fact is read off the conversation's open handle, which the restart closed, so it is retired durably whenever it may have changed: a message accepted, a start proven. A close and reopen within the same run therefore cannot bring the offer back. A continuation rejected before it reached the agent does not count, so a retry after a failed start still runs. Deleted: the quit-time gate on withdrawal, which changed nothing because the withdrawal and the quit's own offer write share one queue; the per-action "withdrawn" flag and the separate acceptance check it paired with. * test(native-chat): an older build reads the restart offer this build records The offer lives in a file the previous release reads after a downgrade. Pin that against the pinned release's own capsule, and run the lane when the marker or the capsule changes. * fix(native-chat): read a restart offer against where the journal stood when it was taken "Since the restart" was read off the conversation's open handle, which the idle sweep closes: after a reopen, a message the user had already sent looked older than the handle and the withdrawn offer came back. The offer now records the journal position (epoch and sequence) at the moment it is taken, and a message accepted after that position, or a journal on another epoch, means the chat moved on. That is derived from the journal, so it holds across any number of closes and reopens. An older build's offer has no position; only a start withdraws it. Because the message half is now durable, the offer is no longer rewritten in the recovery file on every accepted message; a proven start still writes it, since only the host that saw the start knows of it. * test(native-chat): wait for the listing's retire write before reading the recovery file * refactor(native-chat): every journal row states which turn it belongs to Rows gain a turn scope stated by the write that creates them: the open root turn, or the conversation. A queued message takes its scope from its handover. Rows stored before scopes existed are placed on replay by the root turn open when they were created, so no persisted state is needed for them. Rewind keeps each retained row's scope and producer, so a subagent's row stays its own. * fix(native-chat): keep the terminal-backed chat's read error over its local echoes Messages winning over a read error is right for the structured chat, whose read retries and whose messages came from the transcript. The terminal-backed view assembles its list from local echoes too (a launch prompt, a pending send), so a failed read there showed only those bubbles and no error. Only the structured pane now keeps messages over an error. * fix(native-chat): a start retries the exit settlement a failed journal write left owed An agent exit whose journal settlement write failed releases the lease latched until a retry lands. Reopening the chat used to be that retry; with reveal now only opening the journal, nothing retried it before the next app launch, and every send was refused. The start the send needs now runs the retry first, where the attach would. * fix(native-chat): a failed main agent reads failed while its subagents still work The verdict is now read from the main agent's own state, not the folded row: a main agent that is done and failed has a verdict even while its subagents keep the row working. Without mainAgent (history, worktree ps, older hosts) the old combined-done rule stands. Display marks the verdict through agentVerdictDisplayMark: a failure outranks every combined state on the agent's dot, label, tab badge, dashboard and activity rows; a stop marks only a done row, so a successful or stopped main agent with live subagents still reads working. Subagent rows keep their own state. The worktree card, terminal tab and Cmd+J rollups share one pane fold and rank a pending question, then failed, then working, monitoring, interrupted and done. worktree ps publishes the main agent's outcome on a working row, and the mobile mirror reads it. The store's change check, the paired-client mirror's equality and its epoch now see a verdict change on a working row, which otherwise moves no state or clock and left the worktree card reading working. Clean-finish policy is unchanged: a working row is never hibernated and has no completion time. * perf(native-chat): answer the owner check without opening the chat Worktree activation calls agentSession.handoffStatus for every chat tab in the worktree, and the answer comes from the session record alone. Reaching it through the accessor opened each resting chat's journal (a full read, the crash-boundary write and a restored status publish), then kept it open for the idle window. It now checks the record and the adapter's support, as before this series, and opens nothing. * fix(native-chat): a read waiting on the session lock opens nothing once quit began The accessor checked for quit before queueing the open, so a read queued behind a session task ran its open after teardown had begun and indexed a journal no teardown step would close. The check now runs at the open itself. * test(native-chat): pin stated turn scopes, the upcast of unscoped rows, and rewind attribution * fix(native-chat): /compact is a message the chat sends, run as a turn of its own The conversation command RPC now accepts /compact into the queue like any send and answers once it is handed over. The delivery loop opens the command's own turn, starts the provider on it, and waits for the provider's end off the session's queue, so messages typed meanwhile are held and delivered after it, even when it fails. It settles by re-reading the journal: a child that died meanwhile already wrote the verdict. Stop ends the command at once. The 180 s completion window, the unconfirmed row and the recovery of an older build's compaction record are gone; that record no longer gates anything. On Codex the provider turn the command opens is claimed into the command's turn. * fix(native-chat): read a failed resume's chat before calling it retryable Whether a failed resume is retryable is the offer's own rule: the chat has not moved on since the restart, read from its journal. The failure list read it only for a chat already open, so once the idle sweep closed a chat the user had moved on in, its failure showed Retry again, and the click did nothing. The list now opens the failed chats first, as the offer list does. * test(native-chat): type the provider event sink the settlement test reaches for * docs(native-chat): the worktree ps outcome comment no longer claims old hosts send it The field is new: an old host sends no outcome at all, so a reader falls back to interrupted. The removed clause said old hosts send it on done rows, which never shipped. * fix(native-chat): say the structured read keeps trying only where it does The structured pane's "Orca keeps trying to load it" line never showed: the view state filled in an untranslated fallback whenever the read error had no text, and the empty state prefers any message. The view state now leaves the message out, so the structured pane shows that line and the terminal-backed pane its own translated one. Mobile's structured lane does not resubscribe after an error frame, so it no longer makes the claim. * fix(native-chat): rows group under the turn their record names, not the one above them Each row's turn is the turn its stated scope names, anchored on the entry that opened it, or on the turn itself when the provider opened it unasked. So /compact groups its own rows and the previous turn is untouched, a message typed into a running turn joins it, and a provider-resumed turn folds under its own Worked-for. A row reporting how a turn ended, an error or the compaction separator, never folds. Desktop and mobile read the same keys; a host that states no scope keeps today's positional grouping. * test(native-chat): await the send's settlement instead of polling for the start The at-rest send tests polled for the provider start with vi.waitFor's one-second default, which a loaded machine outran. They now await the host's own settlement of the message. * docs(native-chat): the status-store listing rule names provider-journaled user messages * fix(native-chat): a restart offer resumes any time after the quit, and knows its own continuations The continuation's message id was dated by the quit, and the ledger refuses a new id dated more than a day back, so Resume or Retry a day after quitting was always refused (on main too). It is now dated by the resume action. Telling a rejected continuation from the user's own message read the operation ledger, whose rows expire after about a day; after that a failed resume stopped being retryable. The offer now records the continuation each action sends on its own capsule entry, bounded to the newest 16, so the ids end with the offer. The ledger read is deleted. * fix(native-chat): a /compact is not a request the sidebar, notifications or restart resume report The sidebar's prompt, preview, verdict and instant, the turn-completion feed, and the restart-resume marker read past a conversation command and its turn to the last real request, so a /compact neither notifies nor re-dates the row, and a command in flight is never offered as work to resume. An older client shown a command's turn in the legacy form names the session's own agent. * fix(orchestration): route no mail to a structured worker its orchestration released A structured worker is routed on ownership, and a resting worker's lease is released, so ownership held while its chat tab stayed listed. A worker the coordinator abandoned and then released, found at rest by the release, therefore still took peer mail and @worktree: broadcasts, and each one restarted its agent. Routing now also reads the orchestration's own resource row: once it is released, direct mail, group addressing and worker-show's addressable answer drop the worker, as they would a terminal worker whose terminal closed. The chat tab stays, and nothing new is stored. * fix(native-chat): a failed retry names the user's prompt, not Orca's continuation A resume's continuation is written to the chat before its start, so after a failed attempt the chat's newest user message is that rejected continuation. A second failure then showed Orca's own restart text as the chat's prompt. A retry now keeps the prompt its first failure named. * test(native-chat): pin what a conversation command's admission refuses at rest and at handover * test(native-chat): tests merged from the base state which turn their rows belong to * fix(native-chat): a refused send notifies failed through the completion feed The host's completion feed followed only the newest turn, so a send the agent or its start refused, which creates no turn, read Failed on its row but sent no notification. The feed now follows the session's latest request, read from the projection the status feed already makes for the commit: a turn keeps its id, a refused send is named by its journal item key. It announces only while the session is idle, as the row reports a verdict, so queued sends refused one commit at a time notify once, and a withdrawn send falls back to a request already announced. * fix(orchestration): read the released row optionally, as the authority does worker-show's observation called the row lookup directly, which a runtime double without it threw on and failed the structured tab-retirement release. * chore(native-chat): one import per module and no unexplained casts in the turn-scope changes * test(claude): pin which turn a Claude row joins, including a subagent's after the turn ends * fix(native-chat): the status bar drops a restart offer the chat moved on from The renderer re-read the host's restart offer only when a failed chat showed activity, so after a message withdrew a pending offer the host answered no chats while the status bar kept counting one, and clicking it opened nothing. The same watch now covers pending offers: a status change in an offered chat asks the host again, once. * fix(native-chat): a refused steer is read from the turn its handover named The latest-request reader decided whether a refused send had joined a running turn by comparing host clocks: its handover time against the previous turn's end. The handover row now states the turn it delivered into, so the reader reads that instead and the clock comparison goes. A journal written before handover rows stated a turn is scoped on replay from the turn open when each row was written, which can differ from the clock reading only when a send and a turn's end share a millisecond. * fix(mobile): the native-chat controller contract carries the turn journal The controller and overlay already pass nativeChatTurnJournal, but the contract type never declared it, so mobile failed to typecheck. * fix(native-chat): the live turn is the running turn, not the newest user row A turn the provider opened on its own (a background wake, a resumed turn) anchors on its own record, but the list still treated the newest user row as the live turn. While such a turn ran, the settled user turn before it lost its duration and the running turn's own rows were drawn as settled, so its tool calls lost their live state. nativeChatTurnMembership now answers both questions from the turn record: each row's turn, and the live turn (the running root turn's anchor, else the newest user row, which is also all an unscoped host has). Desktop and mobile key liveness, the timing clock and the live status's row on it. * test(native-chat): a turn the provider opened keeps its own clock Pins that the local turn clock follows the live turn, so a wake after a settled turn does not restart that turn's clock when no host durations are recorded. * fix(native-chat): a running turn no message opened draws its status on no row Its live status belongs to the transcript-tail indicator alone. Once it settles, its duration draws at its first row as before; a running turn a message opened still draws on that message. * fix(native-chat): every copy of a row carries the main agent's own status History entries, sleep records and `worktree ps` rows carried a flattened top-level `outcome`, copied under different gates and without the main agent's clock. They now carry `mainAgent` (state, outcome, stateStartedAt), the type the live row already persists and sends, and every copy site takes it with `interrupted` through one function, `agentVerdictFields`. - The accessor reads `mainAgent` then the legacy flag; the mobile mirror matches it line for line. - Sleep records admit `mainAgent` with `normalizeMainAgentStatusField`, so a malformed value drops the field, never the record. - Mobile dates a main agent that failed under live subagents by its own clock, as desktop does, and its row equality compares `mainAgent`. - The activity feed reads a history entry's own `mainAgent` instead of rebuilding one; the sync key and history equality compare it. * test(native-chat): pin the worktree ps verdict across host and phone versions Pairs the real v1.4.212 host and phone row reader with this build: an old phone reads a new host's rows by `interrupted`, a new phone reads an old host's rows (no `mainAgent`) the same way, and a new phone reads a failure under live subagents as Failed, dated by `mainAgent.stateStartedAt`. The release checkout now carries the phone's self-contained row reader, and the lane runs when the `worktree ps` row producers change. * test(mobile): name the parity table's row for its role * test(native-chat): a roster of idle or finished children does not keep an agent awake The sweep reads owed background work through the shared child-work liveness that upstream's release clock adopted; a child that went idle or finished is not work the agent still owes. * fix(native-chat): a request that settles while the user is asked something notifies once The completion edge waited for an idle session, and a pending prompt (including a subagent's approval) is not idle. Structured chat has no other attention producer, so a main turn that finished while a subagent waited on the user sent nothing until the prompt was answered. The edge now waits only on owed work (a running turn or an unanswered send), which the projection reports even beneath a pending prompt. A request that settles with a prompt pending announces once; the renderer words it "needs input" from the host status mirror's `attention`, and answering the prompt keeps the same request identity, so it does not announce again. The wire shape is unchanged. * fix(orchestration): a task dispatched into a resting structured worker keeps it running The sweep's open-dispatch check read only the worker-start dispatch that owns the worker's terminal resource, so a task later dispatched to the same worker (orchestration dispatch --to, which writes a dispatch with no worker row) did not count: after thirty quiet minutes the worker was stopped while that task was open, and its coordinator read exited. Any unsettled dispatch addressed to the worker's process incarnation now counts, derived from the existing rows. * fix(native-chat): a command's wait ends when its child does The delivery loop waited for a /compact only on the adapter's compaction tracker, which learns of the child's end only on some exit paths: a Codex exit or close, and a Claude close, never reach it. The wait then never ended, so nothing queued behind the command was delivered again, Stop had no child to answer through, and the tracker's leftover entry refused the next /compact. Every way a child ends passes endProviderChild, so the host now offers a per-child end signal there. The loop races the tracker against it (the dead-generation settlement has already written the command's verdict), and on that end asks every adapter to release the command, so a later command runs and no later provider turn is claimed into the dead one. The adapters' own exit-time releases were unreachable (Codex) or covered one path of several (Claude), and are removed. The Codex RPC test harness moves to its own module so the exit can be driven through the real adapter's connection callback. * fix(native-chat): keep refusing sends during a command on an older host An older host's controller still refuses a send while a conversation command runs, so dropping the client's block turned every message typed during /compact into a 'not sent' row with Retry there. The block stays for hosts that do not run the command as a send-path turn, and goes only for those that do. The signal is one the client already holds: a host that runs /compact on the send path states a turn scope on every journal row it writes, the same fact turn membership uses to tell it from an older host. Both now read it from one predicate. On an empty conversation, or one whose rows all predate the upgrade, the signal is absent until the command's own entry streams in, so that brief window keeps the old local refusal; no capability or wire field is added. * docs(native-chat): comments stop describing the hold this PR removed Eight comments still justified orderings and teardown choices by a viewer or dispatch hold that pinned the provider child. Nothing holds any more; the orderings stand for the binding's redrive subscription and parked mail, and a chat's agent runs from a send until the idle sweep rests it. Comment-only. * fix(native-chat): the completion says when the user is being asked A request that settles while a prompt waits on the user was worded "needs input" from the renderer's status-feed mirror. Remote clients receive the status and completion streams over separate sockets, so they can arrive in either order and the wording could be wrong both ways. The host already knows at emit time, so the completion now carries an optional `awaitingUser: true` in that case and omits it otherwise. The renderer words the notification from that field alone and no longer reads the status mirror. Old clients ignore the field and word by outcome; old hosts never send it. * fix(native-chat): a restart offer keeps the start its own continuation made Whose start ended an offer was decided at read time, from whether the offer's continuation was still the queued message. Once the provider refused that continuation, the child it had started read as someone else's start, so the offer ended and its failure showed no Retry. The delivery loop now records which queued message a start is for on the in-memory child, and the child's end carries it; the offer counts a start as its own when that message is one of its continuations. * fix(native-chat): a rewound turn still names the message that opened it A Codex rewind rebuilds the epoch without submissions, so each sent message survives only under its provider key. The kept turn records still named the submission key, so each turn anchored on itself and its rows grouped apart from the message that opened it. The rewind now renames the turn's opener along with the message. * fix(native-chat): Stop ends only the command it names Stop on a command turn abandoned whatever compaction the session had pending, so a late Stop for an earlier /compact cancelled the one running now. The tracker now ends a command only when the Stop names its turn, and the cancel reply reports whether it did. * fix(native-chat): an agent gets a full idle window after its owed work ends The sweep measured quiet only from the last journal row, so once a subagent, command, monitor or dispatch that had outlived the window ended, the agent was stopped at the next tick. A child can read done before the lead's wake-up turn writes anything, and stopping in that gap loses the wake-up. The sweep now counts owed work it observes as activity, which gives the agent the full window afterwards, as the release clock it replaced did. * test(claude): the options-read fixture runs a live child The fixture marked its conversation running with a hasProviderChild field the session type does not have, so the read took the at-rest path and refused a session with no record. It now carries a child, which is what the read checks. * test(native-chat): host tests reach its collaborators through a typed seam The rest-test rig and three test files read the host's private members with Reflect.get and cast the result. The host now exposes one test-only accessor, collaboratorsForTests(), and the subscribers class a subscriberCountForTests() beside its existing retainedActivityCountForTests(), so the tests are checked against the real types and the casts are gone. * fix(worktree-status): a departed agent's failure yields to live work on the worktree card A retained failed agent has no expiry, so ranking it with a live failure pinned the card to Failed over other panes' live work. It now ranks below working, monitoring and permission, and above every finished outcome. * refactor(orchestration): one owner answers a structured worker's custody Routing, group addressing, worker-show and the idle sweep each composed their own reading of whether orchestration still holds a structured worker, so each new obligation or retirement state had to be added to every reader. structured-worker-custody now derives both answers from the worker-terminal list state coordinators see in worker-list: addressable is owned and not released, and owed work is an active custody or an unsettled task dispatched to the same incarnation. The owner's state is read through the remote dispatch attachment too, as the terminal transfer lookup already does. Behaviour is unchanged; a settled worker awaiting its coordinator still rests. * refactor(orchestration): owed work is an open dispatch on the worker's incarnation A supervised worker's own dispatch context stays open exactly while the worker is active, so the separate active-custody branch only repeated it. Owed work is now one fact, which also states the policy that a worker awaiting its coordinator's decision may rest, and both custody decisions are written once at the top of the module. * docs(agent-status): a departed agent's failure ranks below live work on the worktree card * fix(native-chat): a restart offer knows its continuations by a tag in their id The offer recorded each continuation id in a list on its capsule entry, capped at 16, and a running action's id in memory. Both could disagree with the journal: past the cap an old rejected continuation read as the chat moving on, and a crash during a retry restored the failure's older entry, which lacked the retry's id. Each continuation id now carries a tag derived from the offer (its teardown and chat), then the action's own part, so any continuation of this offer, queued or rejected, is recognised from the journal row and the marker alone. The persisted list, its cap and the in-memory action map are deleted; the agent-start withdrawal keeps an offer whose own continuation the start was for, read against the stored marker. * test(runtime): the legacy-worker reveal test judges its stale snapshot inside the wait The tui-idle probe reads through readTerminal, which now awaits the structured worker check before the PTY read, so the probe's snapshot request starts a microtask later. vi.waitFor missed it on its first check and polled again at 50 ms, the same moment the wait's own 50 ms timeout fired. The stale snapshot then resolved after the wait had already timed out, so the test passed without judging it, and the rejection landed before any handler was attached. Vitest reported that as an unhandled error and failed the shard. Polling every 1 ms sees the request within a few ms, so the snapshot is judged while the wait is still pending. * fix(native-chat): a message held behind /compact is drawn where it was handed over A message typed while /compact runs was drawn above the compaction's result, between itself and its own answer. The reducer kept every item at the sequence and timestamp of the row that created it, and a queued message is created at acceptance, long before the command it waits behind writes its result. The phone orders by that sequence and the desktop by that timestamp, so both put the message first. A queued message now takes its position from its handover row, the same row that already states its turn scope. Everything the agent did before the handover, a command it waited behind included, draws above it. This holds for every held message, not only /compact's, and needs no client change: every client, older builds included, reads the position the host publishes. A live batch already carries the item when its dispatch row lands, and history pages cut the reduced timeline by sequence, so paging stays contiguous. * fix(native-chat): a phone's send during /compact answers without waiting out the compaction A client that predates accepted-send replies, which is every phone build, has its send reply held until the host hands the message over. A message sent during /compact is not handed over until the compaction ends, so the phone's 15 s request timeout fired first and showed the message as unconfirmed. That wait now also ends once the message is queued behind a running command. This is read from the journal's running turn and needs no new state. Every other wait still ends at the handover: behind a starting child or an ordinary turn, and for restart resume, the command front door and orchestration, which keep the plain handover point. * perf(native-chat): a rewind places provider items with one pass over the merged rows A Codex rewind gives each provider item the old epoch never held the turn record for its provider turn. It found that record by scanning every merged row, restoring each row's body, once per provider item. That is quadratic, and it runs on the host's main thread up to the journal's 10,000-row cap, twice per rewind. A rewind record written before rows carried their scope holds no scope for any provider item, so it paid the full cost. The merge now indexes turn records by provider turn id once, keeping the first match as the scan did, and each provider item looks its record up. * fix(native-chat): a view never restarts a chat whose last start failed A Claude chat whose CLI exits during startup left one red row per start, and every time a view bound to it (the chat opening right after its create died, or the user switching back to it) the hold started the CLI again, so the same launch-failure row repeated. Only a send retries a failed start now, the same rule provider-exit recovery already applied; the rule lives in one predicate the hold, exit recovery and the delivery loop share. * fix(native-chat): a message waiting behind /compact is drawn after it until it is sent A message sent while /compact runs is placed where it was handed over. It was still drawn where it was accepted until then. /compact writes its result one step before the handover, so for that step the waiting message sat above the compaction's separator. A message the host accepted but has not handed over is not part of the conversation yet, so both clients now draw it after everything the agent has done. The shared projection moves it to the end, which is the order the phone draws. The desktop ranks it with the other not-yet-sent rows, after the streaming preview. At handover it takes its place from its handover row, which is also after the separator, so it never appears above the compaction it waited for. * fix(native-chat): the idle sweep reads owed work every tick Owed work counted as activity, but the sweep read it only once the idle window had elapsed, so it refreshed the clock at most once a window. Work that ended just before the next read left the agent to be stopped at that read, moments after the work ended, which is the gap the refresh was meant to cover. The sweep now reads owed work on every tick for a started agent, so the window always runs from the last tick that saw work owed. * fix(native-chat): a continuation handed to the agent stays sent The offer read its own continuation as not reaching the agent while its dispatch was pending, which also covered one already handed over and still unanswered. When the wait for that answer ended first, the failure it filed read as retryable, and a retry sent a second continuation to an agent that may have acted on the first. Only a continuation still queued, or rejected, is now read as unsent. * test(native-chat): start the child the loop waits on with an attach, not a second view A view no longer starts a child whose last start failed, so the R2 case that waits on a child started since the failure now gets that child from a client attach, the one non-send starter left. * fix(native-chat): settle a gone generation's turn wherever a conversation opens A send that opens a chat this process had not read yet (after a crash, from a phone or the CLI) went through the delivery open, which never settled what the dead generation left running; only the read restore and a successful acquire did. When the send's start then failed, the turn stayed running for every reader. The settlement now runs in the one journal open, at the crash boundary, for every opener except an acquisition, which settles from the evidence it read before its reserve; the read restore's separate step is gone. * test(native-chat): prove the next child's start settles the turn an earlier child left The R1 case lost its only settlement assertion when the latch it checked was deleted. It now seeds the running turn the earlier child left and asserts it ends at the exit's receipt, with the exit's row, before the message is handed to the new child. * test(native-chat): count a failed start's rows by row, not by text Comparing the set of texts passed when two different rows carried the same words, which is the duplicate the test exists to catch. * test(cross-version): load the phone row readers without mobile's toolchain Vite transforms a file against its nearest tsconfig, and mobile/tsconfig.json extends expo/tsconfig.base.json, which the root-only cross-version lane never installs. The worktree ps verdict suite imported the current phone row reader from mobile/ directly, so CI failed with TSConfckParseError before any test ran. The harness now imports a copy of the working-tree reader placed under the checkout cache, where the root tsconfig applies, as it already does for the release checkout's copy. Both readers are still the real files. * test(cross-version): keep the checkout path-guard message and justify the copy import's cast * fix(native-chat): a command ends only by its own provider answer or its child's end Stop no longer settles a conversation command. It interrupts it like any turn, and when the provider cannot take that (Codex has not opened the command's turn yet, or Claude refuses the interrupt) it stops the child, whose dead-generation settlement writes the verdict. The pending command now lives on the provider child's own session instead of an adapter-wide map keyed by session, so it dies with the child and nothing has to release it. Claude's /compact is sent under a uuid the slot records, and only a root result naming that input (or naming none) ends it; its outcome is read with the ordinary result reading, so a stopped /compact is a cancellation. * fix(native-chat): a command's settle answers its message before ending its turn The two writes are not one batch. Writing the message's answer first means a crash between them leaves a running command turn, which the stale-turn sweep already settles, instead of an ended turn whose message reads as in flight forever. The settle now writes only while the command turn is still running. * fix(native-chat): "Worked for" counts from the handover, not the send A message held behind /compact, or behind a cold start, used to count the wait as the agent's work, although its row is drawn at the handover. Every handed-over submission's turn, the command's own included, now starts at the handover row's instant, falling back to the send time for a host that recorded none. * test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget * test(native-chat): the interrupted create's own retry continues again The merge of main's lease-latch fix replaced that test's retry of the interrupted create, under its own operation id, with a fresh start whose result nothing read. That fresh start passes with the released-reservation continuation deleted, so the case the fix exists for went untested. The retry and its assertion are main's again. * docs(native-chat): three comments that still had views starting agents A start with nothing queued now comes from a command, goal change or rewind; an interrupted compaction left alone would refuse every send, so no agent would ever start to finish it; and a current host raises the unattached read refusal only once quit began, with the attach window belonging to an older host. * test(native-chat): pin the open's and the send's start and row counts, however the view binds Opening a fresh chat whose starts fail makes one start and one row, with two views bound before or after the create's child died; one send makes one more of each. * fix(native-chat): a second Stop on a command ends its child; one compaction verdict for every provider A Stop's note now names itself in its key, so a later Stop on a command still running reads, from the journal, that the provider was already asked and never answered, and stops the child instead of interrupting again. Nothing is held in memory for it. Adds the rule both translators will read a compaction's end by: only a compaction the provider reported is a success; none after Orca's interrupt is a cancellation; anything else is a failure. A real Claude capture, pinned as a fixture, is why: a stopped /compact ends in the same success result as a finished one. * test(native-chat): a reader's open settles the turn a failed exit settlement left running An exit whose settlement write failed leaves its turn running in the open journal. PR 1's open now settles it, and this pins the two reads that reach it here: a reader reopening a chat the idle sweep closed, and a read that opens the chat before the restart restore reaches it. * test(native-chat): the view-start test's starting window outlasts two subscriptions on a loaded runner A subscription reads the conversation before it returns, so under load the two views took longer than the create child's 300 ms start, which then exited before the test checked that it had not. The child now takes a second to fail. * fix(native-chat): settle a gone generation's turn at every open but an acquisition's The journal open skipped the settlement whenever the lease read reserved or live, to leave an acquisition's own open to the acquisition. But a lease a crashed process left in recovery also reads live, until the next acquire resolves it. A send that opened such a chat, from a phone or the CLI after a crash on a host that could not prove the old owner gone, skipped the settlement; when its start then failed, the dead turn stayed running for every reader. The acquisition now says it is the opener, and every other open settles, whatever the lease still claims. * test(native-chat): hold the create's start open until the views bind The "view binds while the create is still starting" case gave the create a 300 ms head start and asserted the views bound before it died. On a loaded runner the holds took longer, the create's exit landed first, and the case failed its own precondition. The create's initialize now waits on a gate the test releases once the views are bound. * refactor(native-chat): the provider's translator ends a command's turn; the loop holds no command state A conversation command is now a turn of the provider child's own journal pipeline. The adapter-wide tracker, its promise and the loop's settle step are gone. - Codex: the translator claims the provider turn that carries the command, scopes its rows to the command's turn, and writes the command's end in the same batch that settles that turn. Codex's own compaction marker is the success row. - Claude: the command's turn is the translator's open turn until the result that answers the /compact input ends it. The command's own frames, such as the continuation summary, its echo and "Compaction canceled.", draw nothing. - Both read the end with the one compaction rule: success needs the provider's report of the compaction; none after Orca's interrupt is a cancellation. - The message resolves at the provider's receipt, as any send does: the Codex ack, or the Claude slash-command waiter on its result. The host writes a command's end only when the provider never took it. - The delivery loop stops while a command's turn runs, and every journal commit re-wakes it through the session's serialize, so an end that lands while a step decides to stop is never lost. A child that ends first is settled with it. * test(native-chat): pin a command's end to real /compact frames and to each path it threads The captured /compact frames drive the Claude translator's command turn: a finished compaction ends as a success with only the separator drawn; a stopped one ends as a cancellation with no failure row, and the next send answers in its own turn; a result naming another input ends nothing. The command's end is checked at each point the ordinary result path threads through: the reopen latch after a failure, the settling of a child still working, the context facts the result reports, and the provider's own error row. On the host: a message held behind a command is handed over when the command ends just as the loop stops for it, a refused command settles as a failure and the loop moves on, and a Claude child that exits mid-command settles the command and hands what waited to a fresh child. * test(native-chat): tests merged from the base state which turn their rows belong to * refactor(native-chat): drop the child-end waiter nothing waits on A command no longer waits for its child here: its turn ends from the provider's frames or from that child's settlement, and the delivery loop is woken by the commit. The waiter and its test were left from the earlier shape. * fix(native-chat): a command holds the queue only while its child runs it The delivery loop stopped whenever the journal showed a command's turn running. When the command's child ended and its settlement could not be written, that turn stayed running with no child to end it, and the loop's gate kept it from ever starting the next child, which is what settles a gone generation's leftovers. Every later send was held for good, and Stop had no child to end. The gate now holds only while the conversation has a child: with none, the command belongs to a gone generation, and the loop's start settles it like any turn a dead child left running. * fix(native-chat): a Claude /compact succeeds only on its compaction boundary The command's evidence counted Claude's `compact_result: 'success'` status as the compaction done. That status comes before the boundary that replaces the history, so a Stop landing between the two read as a finished compaction even though no boundary was ever written. Only the boundary now counts, as the rule for both providers states; the capture's finished compaction carries one, so it still reads as a success. * fix(native-chat): a Claude child's exit says why the turn it ended stopped When a Claude child exited mid-/compact, the command showed "Worked for 0s" and no reason. The child's translator ends its open turn the moment the exit is reported, stamped with the exit's instant, so by the time the exit settlement ran nothing was running. The settlement recognises a turn the exit already ended by that same instant, but the Claude lifecycle event dropped it on the way to the host, which then used its own clock, matched nothing, and wrote no row. When the clocks did agree, the row was scoped to the running turn, of which there was none, so it landed outside the turn it explained. The exit's instant now reaches the host, and the exit row belongs to the turn the exit ended: still running, or ended by the translator at that instant. * fix(native-chat): a message waiting behind /compact draws below its live activity A message sent while /compact runs waits on the host until the command ends. Both clients moved it to the end of the transcript rows, but the running turn's live activity line ("Compacting the conversation") draws after every row, so the waiting message sat between the command and its own live status. A row that is queued, and not what the live turn is for, now draws after that live activity: on desktop outside the transcript window, below the activity line; on the phone in the list footer, below the live status. A message whose own start is pending still draws above the activity that start reports. * fix(native-chat): only a running command holds a message below its live activity A message is accepted, then handed over a moment later, and in between it reads as waiting. Every message waiting behind a live turn drew below that turn's activity line, so an ordinary message sent while the agent was working crossed below "Thinking" and jumped back up once it was handed over, on desktop and phone. Only a conversation command's turn holds the queue on the host. A message now waits below the live activity only while the running turn is one a command opened, read from the entry that opened it. The phone test also typechecks, which the mobile test ratchet requires. * test(codex): the claim test names its notification params as a record * test(native-chat): a read that reaches a crashed chat before the startup reconcile settles its turn On desktop the chat on screen at relaunch reads before startup reconciles the leases, while the dead process's lease still reads live. The open settles the turn it left running anyway, and the restore that follows finds it settled. * refactor(native-chat): drop the composer's second error formatter After the merge with main, every chat write in the composer path reports its failure as a typed outcome worded by the refusal-notice table, so the send's catch sees only a local throw. The {code, message} formatter this branch added for it has no payload left to format, and its claim to be the one way a chat words a failure is no longer true. The composer send is main's again. * test(native-chat): pin the reason on a message rejected while its chat was closed The reopen test checked only that the message reads as not sent; it now also checks the Retry row carries the host's reason. * docs(native-chat): drop the removed dispatch hold from six comments A worker's session no longer takes a dispatch hold, and no release clock rests a chat by visibility; the agent-launch comments, the abandon test, the teardown test and the refusal census still said so. * test(native-chat): rest the owner-status chat through the idle sweep, not a hold The activation-gate test from #22808 put its chat at rest by holding and releasing it, and passed the release-clock grace. This branch deleted both, so the case threw before it reached its assertions. It now moves the host's clock past the idle window and lets the sweep stop the agent and close the conversation, then asserts the same owner answer and activation gate. * fix(native-chat): show the structured pane's retrying line when a read fails The read transport always hands the pane the host's words, so the error state's "Orca keeps trying to load it" line, which showed only when there were none, was never seen: the pane showed the host's text twice, as its subtitle and on the status line under it. The structured pane now always says its read keeps retrying, and the host's text stays on the status line. The terminal-backed chat is unchanged. * fix(native-chat): a send the provider never received after a restart has no verdict Restart reconciliation rejects a crash-stranded send that is absent from a trustworthy provider history with reason 'not_delivered'. Nobody failed that send, but the verdict allowlist did not name it, so after a crash the chat read Failed, was listed, and could notify "failed". Give the reason a shared constant (persisted value unchanged), add it to the no-verdict set, and treat it as an internal marker so the Retry row no longer shows the raw string. * fix(native-chat): a failed Codex compaction's late completion writes no turn of its own Codex ends a failed turn with an error and then still completes it as failed. The error settled the compaction and released its claim on the provider turn, so the completion read that turn as an ordinary one and wrote a stray record. The claim now lasts until the completion, which adds nothing to a command the error already ended. * test(native-chat): the mid-command exit case resumes its next child as a real one does The case's fake started every child as a newly created thread with the same generation. The store refuses a created link once the conversation has a thread, so the next child's start failed and wrote its own error row, which landed before or after the case read the journal. The next child now resumes the thread under its own generation, and the case reads the journal once the waiting message is delivered, which also proves the loop moved on. * test(native-chat): wait for a send's background start before the refusal oracle removes its store An accepted send wakes the delivery loop, which starts the agent in the background. The oracle's teardown disposed the loop but did not wait for that start, so its lease write could create a temp file in the store directory while the directory was being removed, failing the test with ENOTEMPTY about one run in four. The teardown now drains tracked starts before it closes the journals. * fix(native-chat): a start a message waited on gets one failure row, the delivery loop's When a queued message's start failed, two writers could report it under the same row: the delivery loop, when the adapter settled the start without proving it, and the exit settlement, when the child's exit landed. The last one won, so the chat's row could name a different cause than the one the message was rejected with, or be written twice. The exit settlement now writes the start's row only when no message is queued and the loop has not already recorded that start. A start for a command, goal change or rewind, with nothing queued, still gets its row from the exit. * fix(native-chat): a /compact whose start failed says to run /compact again The failure-words context named only /clear as a command to retry, so a /compact whose agent failed to start read "Send your message to try again." on its row, its rejected message and the command reply. The context now carries any conversation command; the host derives it from the oldest message still waiting on the provider, which is the one a failed start fails first, and the /compact reply names it directly. * fix(native-chat): a failed turn ends on its error instead of folding it A settled turn folds to its answer: its last assistant prose row. Every error-toned row was held outside the fold, so an error the agent recovered from stayed on screen after the answer that followed it. An error-toned system row now competes with prose to be the turn's answer, last one wins: a turn that failed shows the error as its visible end with earlier prose folded, and an error followed by an answer folds behind it. Compaction reports keep never folding. * fix(native-chat): a Codex /compact ends only on its turn's completion, below Codex's own error row Since only turn/completed ends a Codex turn, Codex's turn-ending `error` is a row inside the still-open command turn, and the failed completion that follows it is the command's end: completed, outcome failure, at the completion's receipt time. The command's own "Compaction failed" row was written on that completion too, so a failed /compact read its reason twice. The command turn now notes when Codex's turn-ending error for the turn it carries was written as a row, and its end then adds no second row. A retried stream error ends nothing and is not counted. The flag that let the error end the command and kept the claim until the completion is gone with the error-driven end. A test replays the captured failed compaction from the real app-server through a claimed command turn. * test(native-chat): main's crash-turn test states its row's turn, and a dead /compact settles on its recorded exit Two tests the main merge brought together: - The crash-turn test from #23456 writes a turn record through the event sink without options; every row here states its turn scope, and a turn record's is the thread. - The /compact whose exit settlement could not be written no longer stays running until the next start: main now settles an open chat from the exit it recorded, so the command reads interrupted before the next message, which is then delivered. * test(native-chat): main's new journal tests state each row's turn The crash-turn, stale-turn and sink-queue tests main added wrote rows without a turn scope, which every item write now states. Rows written inside a running turn name that turn; the sink-queue batch and a send handed over with no live turn name the thread. * fix(native-chat): draw a queued turn's message after the earlier turn's rows A message sent while A runs is written to the journal when it is sent. When the provider queues it (Claude answers it after A), A's remaining rows - its last tool run and its answer - are written after that message, and the message's own turn opens only after them. Grouping put those rows in A's turn, but the transcript still drew them in journal order, below B's bubble and bar, where A's answer read as B's reply. This is the residual #23671 left open. A message that opened a turn now draws after the earlier turns' rows the journal wrote after it, just before its own turn's rows (nativeChatTurnDrawOrder, returned by nativeChatTurnMembership as drawOrder). Desktop and mobile both draw in that order. A steer, and a message that has opened no turn yet, stay where they were written. It applies on hosts that state turn scopes and, through journal order, on older ones. * test(native-chat): run #23026's Stop tests against #23059's command turns Two of #23026's tests call APIs #23059 changed, and failed after the merge: - codex-structured-conversation-stop: a compaction now goes through adapter.compact with the command run the host wrote (#23059), not a bare turn id, and answers with the provider's receipt. With the command claimed, a Stop that names no turn while the compaction's provider turn has not opened still interrupts nothing. - main-agent-working-agreement: a provider row states its turn scope (#23059's appendItem contract); the retry and subagent rows are conversation-scoped. * fix(native-chat): typecheck main's Stop and restore-grouping code against #23059 A Stop's compaction interrupt reads the narrowed requested turn, and the restore-grouping test states whether each row reports its turn's outcome. * test(native-chat): the Codex restore grouping test builds fold rows with the failure and compaction flags --------- Co-authored-by: Claude <noreply@anthropic.com> |
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c2517a4ea9 |
fix(terminal): removing a workspace prunes that workspace's close records (#23683)
* fix(terminal): a confirmed workspace removal prunes that workspace's close records * refactor(terminal): a confirmed removal passes its host once, with or without one Both branches now made the same call; the split only existed to keep the old two-argument arity. * refactor(terminal): removal callers state why a workspace is going, and the store derives what goes with it Replaces the pruneCloseRecords boolean with a required cause: removed, forgotten or unlisted. Only the scan path is unlisted, and it keeps close records; every other cause drops them. Also pins that removing one host's copy of a same-id worktree leaves the other host's records. * refactor(terminal): a runtime orphan forget states it forgot, not that the workspace is gone The runtime removal wrapper hard-coded 'removed' for every caller, including the orphan path that leaves the directory and its git registration in place. Callers now pass their cause, as the desktop wrapper's callers already do, and the orphan path says 'forgotten' like the desktop Forget it mirrors. Pruning is unchanged: both causes drop the close records. * test(terminal): the runtime removal specs reach the wrapper through one typed helper Adding the cause argument touched seven calls that each cast their fixture store; one helper now carries the single justified cast. * test(terminal): the close-record removal spec states that Forget takes the records too * refactor(terminal): removing a workspace's session rows always takes its close records Every caller of the owner-removal chokepoint is an explicit removal, and the only host-driven one runs after a successful git scan, so the removal cause threaded through the removal paths decided nothing. Drop it, prune unconditionally, and seed the deregistered-repo sweep from close records so a project moved to another profile does not leave them behind. * refactor(terminal): the owner scan drops close records beside the other worktree-named records The standalone pruner and its shared helper only existed to be skipped for one removal cause; with the cause gone they are a second scan beside the one that already walks every record naming a worktree. |
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d60f999f94 |
fix(native-chat): turn facts come from the turn record, and /compact is a message the chat sends (#23059)
* refactor(native-chat): remove the unused terminal handoff No client ever called agentSession.requestHandoff or mounted the handoff chrome. Delete the handoff coordinator, the terminal-owner runtime, the proof write path and the unmounted UI. Keep agentSession.handoffStatus, which released desktop clients read for worktree activation, and let records an older build left mid handoff reconcile through the ordinary restart and recovery paths. * fix(native-chat): never let the pre-stop snapshot hold a chat's stop Eviction now drains delivered events before quit's resume-offer snapshot. An unbounded wait there sits ahead of the provider stop, so a sink whose journal write stalls kept the child running until the step deadline aborted the eviction. The offer is advisory: bound the drain and stop the child regardless. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop helpers only the terminal handoff called `claudeAuthEnvCarriedForward`, `isPathWithinDirectory` and `queryWindowsProcessRowsFresh` lost their last caller with the handoff. The fresh-scan tests now go through `queryWindowsProcessDescendants({ fresh: true })`, the teardown path that still depends on that contract. Co-Authored-By: Claude <noreply@anthropic.com> * docs(native-chat): stop citing the removed handoff in lifecycle comments Six comments still named the handoff coordinator, a handoff suspend, or a terminal-owned session as live participants in the flows they describe. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stalled snapshot drain without a cast Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): pin that a start dead before proving owes no settlement The removed restart handoff test pinned this branch; nothing else did. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): keep the owner-status read behind an in-flight attach The handoff removal dropped the per-session queue from `handoffStatus`, so a read landing mid-start reported the reservation (no owner) instead of the settled chat owner, and shipped desktop clients blocked worktree activation on it. The read is queued again, as it was before the removal. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(terminal): remove the agent-session PTY write gate The gate only refused a write when a PTY had been bound to a chat session, and the only code that ever bound one was the terminal handoff this branch removes. With it gone, every admit/readmit returned "admitted" unconditionally, so the checks on the renderer write path, the runtime controller backstop, terminal.send, agent prompts, preview input and orchestration pointers, the refusal fields on terminal.send and worker-start receipts, the plugin and CLI refusal copy, and the adopted-pane orchestration routing could no longer run. Ordinary writes take the same path in the same order as before. Co-Authored-By: Claude <noreply@anthropic.com> * refactor(native-chat): drop the transcript helpers only the handoff called appendLegacyTranscriptMessages fed the terminal transcript catch-up and proveClaudeTranscriptBranch backed the terminal owner's exit proof. Both lost their last caller with the handoff. Their tests now go through the live entry points instead: the roster bounds through the legacy import, the pinned-read and growth tests through the ancestry replay the history window uses, and the marker rules through the string proof in their own file rather than the session-file resolver's. Co-Authored-By: Claude <noreply@anthropic.com> * fix(native-chat): stop calling a starting chat "mid-handoff" A send refused because the chat's owner is not settled showed "The session is mid-handoff (<stage>)." in the composer. With the handoff gone, the stages that reach it are a chat that is still starting, or one whose previous agent process has not yet been confirmed stopped. The message now says which of the two it is. The refusal code is unchanged. Co-Authored-By: Claude <noreply@anthropic.com> * test(native-chat): type the stand-in roster decoder without a cast Co-Authored-By: Claude <noreply@anthropic.com> * refactor(codex): name the pinned rollout lookup for what it does With the terminal handoff gone, the module named codex-tui-rollout-proof holds only the pinned rollout lookup that structured Codex launches use to resume a thread, so the name described code that no longer exists. Rename the module and its options type. Also drop a mobile allowlist assertion that pinned the removed agentSession.requestHandoff method, which no longer exists to allow. * refactor(native-chat): type the owner-status reply as the host sends it The handoffStatus reply type still listed the terminal handoff's fields and states (terminal placement, host label, proof retry, queued and waiting phases, the to-terminal direction). No host writes them any more and the only client reader parses the reply as unknown, so they described nothing. The reply on the wire is unchanged. * refactor(native-chat): normalize terminal-handoff lease values once at decode Nothing in this build writes a terminal owner (`runtimeKind: 'tui'`) or the handoff's `preparing` / `old-owner-stopped` stages, but the in-memory types still admitted them, so readers across the host kept branches for values no path produces and the compiler could not point at them. The store now validates the on-disk shape, which still accepts those values so an older record is not quarantined, and maps them once while parsing: - `preparing` and `old-owner-stopped` become `recovering` - a `tui` lease becomes `native`; when it records a process it also becomes `conflicted`, the claim every build probes but never stops. A plain native owner would be stopped by restart recovery, here and in older builds. Revisions are taken over the normalized state on both sides of every compare, and the mapped record reaches disk with the store's first transaction, the same way the tab-id backfill does. The in-memory types narrow to what this build writes, and the branches that existed only for the removed values go. Structured-worker identity keeps its verdict for a former terminal owner by refusing a conflicted claim rather than a non-native kind. * refactor(native-chat): stop threading the owner kind through a reservation A reservation only ever names a native owner now, so the request no longer carries a kind and the reserved lease records `native` directly. The attach params keep `runtimeKind`: agentSession.ensure and create accept it, and the operation fingerprint stored in the ledger covers it. * test(native-chat): pin the legacy-lease rewrite with a transaction that changes nothing else Hiding a tab also committed the visibility index, so the no-op transaction wrote the file even when its open-time revision was wrong. Committing the index first leaves the pending rewrite as the only reason to write. * fix(native-chat): name a chat write by its target, not the owner generation A write carried the fence of the last frame the pane read, and the host refused it unless that fence was still current. An idle release and the restart after it each move the fence, and the release publishes nothing, so a send after a release was refused "Expected runtime fence 1; the session is at 3", and a Stop queued behind a cold start was refused as stale. Every write already names what it acts on: a send its conversation, a cancel its turn, a prompt answer its item revision, a rewind its epoch; an option is last-writer-wins. So admission stops comparing the client's fence, and the rebase that papered over one restart (admitAtResumedFence, resumedFromFence) goes with it. The writer-lease check stays, and so does the attach's compare-and-swap. Frames now stamp the fence read when each frame is sent instead of a copy each subscriber kept, which went stale on the same release. * fix(native-chat): every journal append reaches the chats that are open A journal write and its delivery to open readers were two calls, and some writers made only the first. A failed start whose lease could not be handed back, a provider revision with no frame behind it, and eviction's settlement were all journaled without reaching an open chat. A journal handle now reports every durable change, and the host's session map binds that report to the session's readers when the handle is set. Writers no longer publish what they append; the per-writer publish calls are deleted. * test(native-chat): an epoch replacement reaches the open chat * test(native-chat): each row reaches an open chat once, and a live handle enters only through the map * test(native-chat): give the legacy-lease store test a tab id so the backfill cannot supply its rewrite The seeded record had no surface tab id, so the next open backfilled one and that rewrite alone made the no-op transaction write. The test passed with the legacy-lease rewrite signal removed. * test(worktree-activation): restore the OMP surfaced-agent resume test The handoff removal deleted it alongside the terminal-owner tests, but it covers the surfaced-PTY block that still guards resume, including an agent whose ownership is unknown. * perf(native-chat): a publish behind a delivered commit reads nothing Each commit now delivers itself, so the publish a provider frame still sends afterwards found every reader caught up but still read rows and rebuilt the timeline for each one. A caught-up reader now skips the read. * test(native-chat): state why the teardown test's fake journal is safe to cast * docs(native-chat): say mutation admission checks only the writer lease * docs(native-chat): drop the send rebase from comments that still described it * fix(native-chat): a message is accepted, then delivered A send to a chat with no running agent restarted the agent inside the send call, before the message was recorded, so the client waited for the whole start and a failed restart refused the message. Claude held prompts sent during startup, and those could settle as "unconfirmed". A send is now accepted inside the session's serialized queue: one ledger row and one submission row marked handoverRecorded, published, answered pending. A per-session delivery loop exists while a message is queued. It starts the agent through the same serialized attach a hold uses, waits outside the queue for a Claude child to prove its start, and hands the oldest queued message over as its own serialized step, writing dispatch{pending} before the adapter call. A start it needed and did not get writes one error-tone row and rejects every queued message with the same words; a start Stop cancelled writes none. Settlement follows from the rows. A queued message is provably unwritten, so a close, an eviction or an exit rejects it. A handed-over message stays in doubt. A queued row at or below the sequence a handle found when it opened was left by an earlier process and is rejected at open, with no latch. Stop withdraws queued messages with no writer lease and no fence. An attach failure keeps the conversation open, and the attach adopts its journal. Owed work counts the loop and queued rows. A compaction or rewind found prepared when a conversation opens was started under a child this process no longer has, so the open settles it rather than leaving it to refuse every send until a view attaches. The open cursor is scoped to its epoch, because sequences restart when an epoch is replaced. Deleted: restart-before-admission, recordFailedRestart, the fence rebase, Claude's startup gate, the attach's forget on failure and its own crash boundary. Clients without agent-session.accepted-send.v1 get their reply held until the handover; the desktop and paired desktop lists advertise it. * fix(native-chat): settle queued messages only for the child that ended A child that proved its start and then exited before its message was handed over left the message queued: the exit settlement returned early when nothing else was in flight. Delivery then started another child for it, and a child that died the same way started another, without end and without a row. A retried settlement for an earlier generation, run by the attach that delivery started, did the opposite: with that generation's turn unfinished it rejected the message queued for the child being attached. The settlement now takes the rejection for queued messages from its caller. The unexpected exit and the eviction pass one, and it applies even with no other work in flight; the retry for an earlier generation passes none. * fix(native-chat): an adoption that fails to import keeps the conversation open The attach now writes into the conversation's own open journal, but a failed transcript import still closed it as if it were the attach's provisional one. The conversation stayed indexed with a closed journal, so every later send answered "could not be recorded" and every attach failed again until the app restarted. The import now closes only a journal the attach opened for itself. * perf(native-chat): the recovering open reads the journal once Every conversation open now goes through the recovering open, including the read restore of every chat at startup, which used to replay its journal once. The recovering open replayed it twice: once to probe it and again inside the open. The probe is now handed to the open as its load. * fix(native-chat): an attach that fails after indexing its child leaves no child behind A failed attach now keeps the conversation open, but a failure after `onAttached` indexed the child (the rewind or compaction recovery, or the attach's own success record) left that entry claiming a child the failure path had already released. The next send found the phantom, skipped the start, and wrote at a fence the journal had moved past, so the message stayed queued for good. The entry now drops the released child and its event sink, and follows the record's fence, as a failure before indexing already did. * fix(native-chat): a withdrawn message shows no error, and a rejection outlasts the send's answer The error strip for a message the host accepted and then did not deliver matched the entry before the outbox reconciled, so a Stop's withdrawal, which the reconcile drops, showed "Orca could not send your message" with nothing to retry. It now reads the reconciled entry. A rejection the journal records before the send's own pending answer lands is final as well: that answer no longer puts the entry back to dispatching with no Retry. * fix(orchestration): a structured worker whose agent outlasts the preamble wait is left unknown, not torn down The preamble waits for its submission to be delivered while the worker's agent starts. When that wait ran out it threw operation_unknown, and the failed-start teardown then closed the session, which rejected the very preamble the host was about to deliver. It now reports a turn start nobody observed yet: the worker is start-unknown with its session kept, the host delivers the preamble when the agent starts, and the worker's report settles the dispatch as for any unobserved start. The receipt no longer suggests reading a screen a structured worker lacks. * fix(native-chat): a message rejected while its chat was closed reads as not sent A remount reads an entry it left dispatching as unconfirmed. When the journal had rejected it meanwhile, as a failed start or a quit now does, the reconcile left it unconfirmed: it blocked every later message behind a Retry and no reason, and the delivery probe, seeing the journal already answered, never ran. The reconcile now settles it as rejected like a dispatching one. * test(orchestration): name why the readiness settlement fakes are cast * fix(native-chat): keep each pane's own fence on frames so a failed restart is not resent * docs(native-chat): drop the fence from the admission the send effects run behind * docs(native-chat): give the fence move on release the reason that still holds * docs(native-chat): stop citing a write fence check in launch and mailbox comments Three places still gave the removed fence check as a reason: the launch replay said admission puts the ledger ahead of the fence, the launch surface said a send must name the lease it was admitted against, and the direct-mailbox path said the lease fence decides whether delivery is safe. Admission now checks only the writer lease. * refactor(native-chat): the provider child is its own record A conversation now outlives any number of provider children, so the child is one record on the conversation's entry instead of five loose fields beside its journal. It is written in one place: indexed only once an attach has fully succeeded, and ended through one function that an exit, a failed re-attach, a Stop and an eviction all share, matched on the child's generation and fence. - A failed attach writes no child, so there is nothing to unwind: the field unwind and the fence patch after it are gone. - Conversation writes read the record's fence, the way mutation admission already does; a child's own writes use its fence. The four stored-fence patches, and the settlement retry's overwrite of the conversation's fence, are gone. - The owed wind-down is its own tombstone, carrying the child it is owed for, and is no longer dropped when an attach replaced the whole entry. - Stop on a child still proving its start stops only the child: its lease goes back and the chat is told it is idle, but the journal, the holders and the readers stay. Close is that stop plus the conversation's close. - The settlement retry uses the conversation's own journal, opened through the host's one open. * fix(native-chat): the delivery loop alone settles a message its start or child failed A queued message was settled by whichever path happened to end the child first: the loop, the unexpected exit, eviction's work settlement, the open's leftover rule, and the startup branch that rejected every pending row. That gave two failure rows with different tones for one start, a loop that could hand over to a different child than the one it waited on, and a Claude start that died while starting reading unlike every other failed start. - The loop remembers the child it waited on. At handover, if that child is gone or replaced, it reads how it ended: a Stop continues; anything else writes one failure row and rejects every queued message with the same words, then stops. A child still starting whose start the adapter says did not land fails the same way. The exit, eviction and the settlement retry only settle the handed-over and legacy rows of the child that ended. - One failure row, always an error, keyed by the start. A start a view began that dies with nothing queued writes the same row through the same builder, so a second report revises it. - The open no longer rejects leftovers; the loop's first step does, and the open wakes it. - `awaitStarted` answers why a start did not land, so the row says it even when the loop sees the failure before the exit is processed. - Quit closes every conversation the way closing a chat does: what is still queued is rejected as closed, with or without a child, and a start the loop already has in flight is waited for so the child it produces is stopped rather than left behind. * refactor(native-chat): a stopped child ends on the one reading of its stop The eviction step reads a stop's result through `stopAgentSessionProviderRoot` and hands that verdict to the child's ending, so the host never forms a second view of whether the root is gone. Every ending carries it: a stop's comes from that reading, an exit's root is gone by definition, and a failed re-attach passes what its release saw. The end-of-child record can therefore also carry a stop whose root was not seen to go, which nothing ends on yet. * feat(native-chat): the host says it accepts a send before any agent has it The host now lists agent-session.accepted-send.v1 among its own runtime capabilities, the same string capable clients already send. A client can then tell a host that answers a send at acceptance, and admits a Stop with no writer before a turn starts, from an older one that still restarts the agent inside the send. Additive: an older client ignores a capability it does not know. * refactor(native-chat): an attach never opens a journal of its own The attach adopts the conversation's open journal, which outlives it, so it no longer opens one for a direct caller either. That leaves nothing for a failed adopted import to close, and the flag that told the two cases apart is gone. Tests that attach without a host open the conversation the way a host does. * fix(native-chat): a moved fence resends nothing on a host that accepts first The outbox treated any fence change as a new owner: it dropped the answer of a send in flight, queued that send to go out again under the same id, and unblocked a refused head. On an older host that is how a send the restart refused, unrecorded, gets another try. On a host that records every send before it starts an agent, a fence moves because that start ran, so the same rule resent into every failed start. With a fence stamped on every frame, that became a loop. The outbox now reacts to a fence change only when the host has not advertised that it accepts a send before any agent has it. On such a host, only a Retry or a new send goes out, and a failed start reaches the client as a rejected message it keeps with its Retry. Against an older host, or before one has answered, the outbox behaves as it did. Desktop and paired web share this hook. * refactor(native-chat): a child's end says whether the user or the host stopped it The end-of-child record's cause now tells a user's Stop from the host stopping the child for a cause of its own: `user-stop` and `host-stop` replace `stop`. The delivery loop goes on after a user's Stop, as before, and fails the start it was waiting on after a host stop, with the one error row and every queued message rejected, in the stop's reason when it gave one. The reason stays description only. Stop passes `user-stop`; nothing passes `host-stop` yet. * fix(native-chat): a chat whose only work is a queued message is not offered for resume A message accepted while the agent was starting counts as working in the chat, and quit rejects it as never sent. The teardown snapshot read the same working rule, so a relaunch offered to resume a chat whose agent never had the message. The snapshot now reads only what was handed over. * fix(native-chat): the conversation outlives its agent Opening a chat no longer starts its agent. A conversation is reached through one host accessor that opens its journal at rest, and a send is what starts the agent, through the delivery loop. One idle sweep, every five minutes, stops an agent that has been quiet for thirty minutes and owes no work, then drops an open journal handle that is only a cache. Its record, tab, status row and readers stay. - hold and release are no-ops; hold still builds the host for shipped mobile builds. - The holders, the holds, the release clock and the exit respawn are deleted. - Options, the model list, the goal and the context meter answer at rest; a model pick at rest is recorded as intent for the next start. - Compact, rewind, clear and goal changes start the agent first. A send does too when a rewind is still in doubt after the conversation opens. - Orchestration routes mail and group addresses on ownership (the record plus the chat tab), not on whether the process runs. An open dispatch keeps its worker running. - The restart continuation is a send; Resume all holds each slot until the message is handed over or rejected. - A read error never replaces a loaded transcript, and shows the host's own words. * test(native-chat): type the queued-message fixtures in the resume-offer tests * fix(native-chat): a start that dies while a message waits on it is that message's failed start Opening a chat's tab starts an agent for the view, and a send accepted meanwhile waits on it. When that start died, its exit wrote the start's error row and left the message queued, so the delivery loop started a second agent into the same failure and wrote a second row. A child's end now records where the conversation's journal stood, and the loop settles a message accepted before a failed start ended with that start: one row, under its key, and no second start. A message sent after the failure still gets a fresh start. * fix(native-chat): a request that failed reads as failed A structured chat whose only message the agent's start refused read as a green finish, and a cancelled structured turn did too: the host published a verdict only for turn records, and structured rows carried no `interrupted`. The host projection now reads the session's latest request: its turn's outcome, or `failure` for a send the agent or its start refused. A send that was withdrawn, or left undelivered by a restart or a close, fails nobody and makes nothing listable. The ingest publishes `interrupted` as the hook lanes do, and every reader decodes the verdict through one accessor, so a failure reads Failed on the dot, the rollups, history and `worktree ps`, behaves like a cancellation in every clean-finish policy, and notifies as "failed". * docs(native-chat): say what an attach's open conversation and unconfirmed ids are now * test(native-chat): a verdict change republishes the mobile status projection * refactor(native-chat): the store's retention trigger keeps its flag compare A verdict change always moves the completion clock the same check already reads, so a second verdict compare there caught nothing new. * test(native-chat): a user message the provider journaled keeps its session listed * test(native-chat): pin what a failed start settles, and what a resume offer names A view's child that dies while a sent message waits settles that message only when it died starting and no child has taken its place: a proven child's crash, or a second start since, gets the message delivered. The resume offer names the handed-over message, never a newer one still queued. * test(native-chat): the failed-start pins fail on what the message became, not on a timeout * fix(native-chat): a restart offer ends when the chat's agent starts again The offer used to end only when the chat's newest user message changed, because opening a chat started its agent and that start could not be told apart from real activity. Opening a chat starts nothing now, so the host reads the fact it already publishes: a chat's status row goes from not host-owned to host-owned exactly when its agent is started. At that edge the offer and any failure record for the chat are withdrawn, unless the start is a resume action's own (its continuation is the oldest undelivered message). A continuation and a message racing to be first are decided at acceptance: the continuation is refused, quietly and with nothing filed, when any other message was accepted since the restart. A failed continuation start leaves the offer retryable, and each resume action sends its own message id. Deleted: the newest-user-message comparison, its journal reader, the continuation filter, and the failure ledger's own "answered by the chat" check. The marker still carries its message id for one release, so the previous build can read it. * fix(runtime): end a transcript stream when its client unsubscribes Desktop: the IPC subscription controller was dropped as soon as the streaming handler returned, which for most streams is right after it binds. A later runtime:unsubscribe then found nothing to abort, so the host kept the subscriber and derived and sent every publish to a channel no one listened to. The controller now lives until the renderer unsubscribes, resubscribes the same id, or goes away. Mobile: disposing an agentSession.subscribe stream now sends agentSession.unsubscribe with the stream's frame id, so the host ends that subscriber and leaves a sibling stream on the same socket running. The direct path now passes the frame id the relay path already passed. * fix(native-chat): a late provider-session update keeps a failed recovery record failed A provider-session heartbeat that rewrites a completed recovery record kept its interrupted flag but dropped the outcome it was copied with, so a live failed checkpoint read as a clean finish until the next status write. * test(orchestration): the preamble's host stub is typed, not cast The preamble send now takes only what it reads of the host, the send, the settlement wait and the record's fence, so its test builds that host with real types instead of `as never`. * test(native-chat): the terminal-bell check asserts the renamed verdict field The bell notification test still checked for agentInterrupted, which no longer exists, so it could not catch a verdict leaking into a bell dispatch. * fix(native-chat): a failed turn ranks like a completion for attention Attention readers (completion time, Smart Sort, sticky retention, Cmd+J Recent) now demote only a turn the user stopped. A failure is news the user has not seen, so it keeps its completion time, ranks in the Done class, stays retained after its pane goes away, and a retained failure reads failed in the worktree rollup instead of done. Clean-finish policy (hibernation, pane ownership, the value moment) still treats a failure like a stop. The retention trigger compares verdicts again: success -> failure no longer moves the completion clock. * fix(native-chat): one fact ends a restart offer: the chat moved on since the restart The offer is live while no other message has been accepted in the chat since the restart and its agent has not proved a start since. The offer list, the resume's reservation check and the continuation's acceptance check all read that one fact, so a message whose start then failed withdraws the offer too, and a stale click finds nothing to act on. The fact is read off the conversation's open handle, which the restart closed, so it is retired durably whenever it may have changed: a message accepted, a start proven. A close and reopen within the same run therefore cannot bring the offer back. A continuation rejected before it reached the agent does not count, so a retry after a failed start still runs. Deleted: the quit-time gate on withdrawal, which changed nothing because the withdrawal and the quit's own offer write share one queue; the per-action "withdrawn" flag and the separate acceptance check it paired with. * test(native-chat): an older build reads the restart offer this build records The offer lives in a file the previous release reads after a downgrade. Pin that against the pinned release's own capsule, and run the lane when the marker or the capsule changes. * fix(native-chat): read a restart offer against where the journal stood when it was taken "Since the restart" was read off the conversation's open handle, which the idle sweep closes: after a reopen, a message the user had already sent looked older than the handle and the withdrawn offer came back. The offer now records the journal position (epoch and sequence) at the moment it is taken, and a message accepted after that position, or a journal on another epoch, means the chat moved on. That is derived from the journal, so it holds across any number of closes and reopens. An older build's offer has no position; only a start withdraws it. Because the message half is now durable, the offer is no longer rewritten in the recovery file on every accepted message; a proven start still writes it, since only the host that saw the start knows of it. * test(native-chat): wait for the listing's retire write before reading the recovery file * refactor(native-chat): every journal row states which turn it belongs to Rows gain a turn scope stated by the write that creates them: the open root turn, or the conversation. A queued message takes its scope from its handover. Rows stored before scopes existed are placed on replay by the root turn open when they were created, so no persisted state is needed for them. Rewind keeps each retained row's scope and producer, so a subagent's row stays its own. * fix(native-chat): keep the terminal-backed chat's read error over its local echoes Messages winning over a read error is right for the structured chat, whose read retries and whose messages came from the transcript. The terminal-backed view assembles its list from local echoes too (a launch prompt, a pending send), so a failed read there showed only those bubbles and no error. Only the structured pane now keeps messages over an error. * fix(native-chat): a start retries the exit settlement a failed journal write left owed An agent exit whose journal settlement write failed releases the lease latched until a retry lands. Reopening the chat used to be that retry; with reveal now only opening the journal, nothing retried it before the next app launch, and every send was refused. The start the send needs now runs the retry first, where the attach would. * fix(native-chat): a failed main agent reads failed while its subagents still work The verdict is now read from the main agent's own state, not the folded row: a main agent that is done and failed has a verdict even while its subagents keep the row working. Without mainAgent (history, worktree ps, older hosts) the old combined-done rule stands. Display marks the verdict through agentVerdictDisplayMark: a failure outranks every combined state on the agent's dot, label, tab badge, dashboard and activity rows; a stop marks only a done row, so a successful or stopped main agent with live subagents still reads working. Subagent rows keep their own state. The worktree card, terminal tab and Cmd+J rollups share one pane fold and rank a pending question, then failed, then working, monitoring, interrupted and done. worktree ps publishes the main agent's outcome on a working row, and the mobile mirror reads it. The store's change check, the paired-client mirror's equality and its epoch now see a verdict change on a working row, which otherwise moves no state or clock and left the worktree card reading working. Clean-finish policy is unchanged: a working row is never hibernated and has no completion time. * perf(native-chat): answer the owner check without opening the chat Worktree activation calls agentSession.handoffStatus for every chat tab in the worktree, and the answer comes from the session record alone. Reaching it through the accessor opened each resting chat's journal (a full read, the crash-boundary write and a restored status publish), then kept it open for the idle window. It now checks the record and the adapter's support, as before this series, and opens nothing. * fix(native-chat): a read waiting on the session lock opens nothing once quit began The accessor checked for quit before queueing the open, so a read queued behind a session task ran its open after teardown had begun and indexed a journal no teardown step would close. The check now runs at the open itself. * test(native-chat): pin stated turn scopes, the upcast of unscoped rows, and rewind attribution * fix(native-chat): /compact is a message the chat sends, run as a turn of its own The conversation command RPC now accepts /compact into the queue like any send and answers once it is handed over. The delivery loop opens the command's own turn, starts the provider on it, and waits for the provider's end off the session's queue, so messages typed meanwhile are held and delivered after it, even when it fails. It settles by re-reading the journal: a child that died meanwhile already wrote the verdict. Stop ends the command at once. The 180 s completion window, the unconfirmed row and the recovery of an older build's compaction record are gone; that record no longer gates anything. On Codex the provider turn the command opens is claimed into the command's turn. * fix(native-chat): read a failed resume's chat before calling it retryable Whether a failed resume is retryable is the offer's own rule: the chat has not moved on since the restart, read from its journal. The failure list read it only for a chat already open, so once the idle sweep closed a chat the user had moved on in, its failure showed Retry again, and the click did nothing. The list now opens the failed chats first, as the offer list does. * test(native-chat): type the provider event sink the settlement test reaches for * docs(native-chat): the worktree ps outcome comment no longer claims old hosts send it The field is new: an old host sends no outcome at all, so a reader falls back to interrupted. The removed clause said old hosts send it on done rows, which never shipped. * fix(native-chat): say the structured read keeps trying only where it does The structured pane's "Orca keeps trying to load it" line never showed: the view state filled in an untranslated fallback whenever the read error had no text, and the empty state prefers any message. The view state now leaves the message out, so the structured pane shows that line and the terminal-backed pane its own translated one. Mobile's structured lane does not resubscribe after an error frame, so it no longer makes the claim. * fix(native-chat): rows group under the turn their record names, not the one above them Each row's turn is the turn its stated scope names, anchored on the entry that opened it, or on the turn itself when the provider opened it unasked. So /compact groups its own rows and the previous turn is untouched, a message typed into a running turn joins it, and a provider-resumed turn folds under its own Worked-for. A row reporting how a turn ended, an error or the compaction separator, never folds. Desktop and mobile read the same keys; a host that states no scope keeps today's positional grouping. * test(native-chat): await the send's settlement instead of polling for the start The at-rest send tests polled for the provider start with vi.waitFor's one-second default, which a loaded machine outran. They now await the host's own settlement of the message. * docs(native-chat): the status-store listing rule names provider-journaled user messages * fix(native-chat): a restart offer resumes any time after the quit, and knows its own continuations The continuation's message id was dated by the quit, and the ledger refuses a new id dated more than a day back, so Resume or Retry a day after quitting was always refused (on main too). It is now dated by the resume action. Telling a rejected continuation from the user's own message read the operation ledger, whose rows expire after about a day; after that a failed resume stopped being retryable. The offer now records the continuation each action sends on its own capsule entry, bounded to the newest 16, so the ids end with the offer. The ledger read is deleted. * fix(native-chat): a /compact is not a request the sidebar, notifications or restart resume report The sidebar's prompt, preview, verdict and instant, the turn-completion feed, and the restart-resume marker read past a conversation command and its turn to the last real request, so a /compact neither notifies nor re-dates the row, and a command in flight is never offered as work to resume. An older client shown a command's turn in the legacy form names the session's own agent. * fix(orchestration): route no mail to a structured worker its orchestration released A structured worker is routed on ownership, and a resting worker's lease is released, so ownership held while its chat tab stayed listed. A worker the coordinator abandoned and then released, found at rest by the release, therefore still took peer mail and @worktree: broadcasts, and each one restarted its agent. Routing now also reads the orchestration's own resource row: once it is released, direct mail, group addressing and worker-show's addressable answer drop the worker, as they would a terminal worker whose terminal closed. The chat tab stays, and nothing new is stored. * fix(native-chat): a failed retry names the user's prompt, not Orca's continuation A resume's continuation is written to the chat before its start, so after a failed attempt the chat's newest user message is that rejected continuation. A second failure then showed Orca's own restart text as the chat's prompt. A retry now keeps the prompt its first failure named. * test(native-chat): pin what a conversation command's admission refuses at rest and at handover * test(native-chat): tests merged from the base state which turn their rows belong to * fix(native-chat): a refused send notifies failed through the completion feed The host's completion feed followed only the newest turn, so a send the agent or its start refused, which creates no turn, read Failed on its row but sent no notification. The feed now follows the session's latest request, read from the projection the status feed already makes for the commit: a turn keeps its id, a refused send is named by its journal item key. It announces only while the session is idle, as the row reports a verdict, so queued sends refused one commit at a time notify once, and a withdrawn send falls back to a request already announced. * fix(orchestration): read the released row optionally, as the authority does worker-show's observation called the row lookup directly, which a runtime double without it threw on and failed the structured tab-retirement release. * chore(native-chat): one import per module and no unexplained casts in the turn-scope changes * test(claude): pin which turn a Claude row joins, including a subagent's after the turn ends * fix(native-chat): the status bar drops a restart offer the chat moved on from The renderer re-read the host's restart offer only when a failed chat showed activity, so after a message withdrew a pending offer the host answered no chats while the status bar kept counting one, and clicking it opened nothing. The same watch now covers pending offers: a status change in an offered chat asks the host again, once. * fix(native-chat): a refused steer is read from the turn its handover named The latest-request reader decided whether a refused send had joined a running turn by comparing host clocks: its handover time against the previous turn's end. The handover row now states the turn it delivered into, so the reader reads that instead and the clock comparison goes. A journal written before handover rows stated a turn is scoped on replay from the turn open when each row was written, which can differ from the clock reading only when a send and a turn's end share a millisecond. * fix(mobile): the native-chat controller contract carries the turn journal The controller and overlay already pass nativeChatTurnJournal, but the contract type never declared it, so mobile failed to typecheck. * fix(native-chat): the live turn is the running turn, not the newest user row A turn the provider opened on its own (a background wake, a resumed turn) anchors on its own record, but the list still treated the newest user row as the live turn. While such a turn ran, the settled user turn before it lost its duration and the running turn's own rows were drawn as settled, so its tool calls lost their live state. nativeChatTurnMembership now answers both questions from the turn record: each row's turn, and the live turn (the running root turn's anchor, else the newest user row, which is also all an unscoped host has). Desktop and mobile key liveness, the timing clock and the live status's row on it. * test(native-chat): a turn the provider opened keeps its own clock Pins that the local turn clock follows the live turn, so a wake after a settled turn does not restart that turn's clock when no host durations are recorded. * fix(native-chat): a running turn no message opened draws its status on no row Its live status belongs to the transcript-tail indicator alone. Once it settles, its duration draws at its first row as before; a running turn a message opened still draws on that message. * fix(native-chat): every copy of a row carries the main agent's own status History entries, sleep records and `worktree ps` rows carried a flattened top-level `outcome`, copied under different gates and without the main agent's clock. They now carry `mainAgent` (state, outcome, stateStartedAt), the type the live row already persists and sends, and every copy site takes it with `interrupted` through one function, `agentVerdictFields`. - The accessor reads `mainAgent` then the legacy flag; the mobile mirror matches it line for line. - Sleep records admit `mainAgent` with `normalizeMainAgentStatusField`, so a malformed value drops the field, never the record. - Mobile dates a main agent that failed under live subagents by its own clock, as desktop does, and its row equality compares `mainAgent`. - The activity feed reads a history entry's own `mainAgent` instead of rebuilding one; the sync key and history equality compare it. * test(native-chat): pin the worktree ps verdict across host and phone versions Pairs the real v1.4.212 host and phone row reader with this build: an old phone reads a new host's rows by `interrupted`, a new phone reads an old host's rows (no `mainAgent`) the same way, and a new phone reads a failure under live subagents as Failed, dated by `mainAgent.stateStartedAt`. The release checkout now carries the phone's self-contained row reader, and the lane runs when the `worktree ps` row producers change. * test(mobile): name the parity table's row for its role * test(native-chat): a roster of idle or finished children does not keep an agent awake The sweep reads owed background work through the shared child-work liveness that upstream's release clock adopted; a child that went idle or finished is not work the agent still owes. * fix(native-chat): a request that settles while the user is asked something notifies once The completion edge waited for an idle session, and a pending prompt (including a subagent's approval) is not idle. Structured chat has no other attention producer, so a main turn that finished while a subagent waited on the user sent nothing until the prompt was answered. The edge now waits only on owed work (a running turn or an unanswered send), which the projection reports even beneath a pending prompt. A request that settles with a prompt pending announces once; the renderer words it "needs input" from the host status mirror's `attention`, and answering the prompt keeps the same request identity, so it does not announce again. The wire shape is unchanged. * fix(orchestration): a task dispatched into a resting structured worker keeps it running The sweep's open-dispatch check read only the worker-start dispatch that owns the worker's terminal resource, so a task later dispatched to the same worker (orchestration dispatch --to, which writes a dispatch with no worker row) did not count: after thirty quiet minutes the worker was stopped while that task was open, and its coordinator read exited. Any unsettled dispatch addressed to the worker's process incarnation now counts, derived from the existing rows. * fix(native-chat): a command's wait ends when its child does The delivery loop waited for a /compact only on the adapter's compaction tracker, which learns of the child's end only on some exit paths: a Codex exit or close, and a Claude close, never reach it. The wait then never ended, so nothing queued behind the command was delivered again, Stop had no child to answer through, and the tracker's leftover entry refused the next /compact. Every way a child ends passes endProviderChild, so the host now offers a per-child end signal there. The loop races the tracker against it (the dead-generation settlement has already written the command's verdict), and on that end asks every adapter to release the command, so a later command runs and no later provider turn is claimed into the dead one. The adapters' own exit-time releases were unreachable (Codex) or covered one path of several (Claude), and are removed. The Codex RPC test harness moves to its own module so the exit can be driven through the real adapter's connection callback. * fix(native-chat): keep refusing sends during a command on an older host An older host's controller still refuses a send while a conversation command runs, so dropping the client's block turned every message typed during /compact into a 'not sent' row with Retry there. The block stays for hosts that do not run the command as a send-path turn, and goes only for those that do. The signal is one the client already holds: a host that runs /compact on the send path states a turn scope on every journal row it writes, the same fact turn membership uses to tell it from an older host. Both now read it from one predicate. On an empty conversation, or one whose rows all predate the upgrade, the signal is absent until the command's own entry streams in, so that brief window keeps the old local refusal; no capability or wire field is added. * docs(native-chat): comments stop describing the hold this PR removed Eight comments still justified orderings and teardown choices by a viewer or dispatch hold that pinned the provider child. Nothing holds any more; the orderings stand for the binding's redrive subscription and parked mail, and a chat's agent runs from a send until the idle sweep rests it. Comment-only. * fix(native-chat): the completion says when the user is being asked A request that settles while a prompt waits on the user was worded "needs input" from the renderer's status-feed mirror. Remote clients receive the status and completion streams over separate sockets, so they can arrive in either order and the wording could be wrong both ways. The host already knows at emit time, so the completion now carries an optional `awaitingUser: true` in that case and omits it otherwise. The renderer words the notification from that field alone and no longer reads the status mirror. Old clients ignore the field and word by outcome; old hosts never send it. * fix(native-chat): a restart offer keeps the start its own continuation made Whose start ended an offer was decided at read time, from whether the offer's continuation was still the queued message. Once the provider refused that continuation, the child it had started read as someone else's start, so the offer ended and its failure showed no Retry. The delivery loop now records which queued message a start is for on the in-memory child, and the child's end carries it; the offer counts a start as its own when that message is one of its continuations. * fix(native-chat): a rewound turn still names the message that opened it A Codex rewind rebuilds the epoch without submissions, so each sent message survives only under its provider key. The kept turn records still named the submission key, so each turn anchored on itself and its rows grouped apart from the message that opened it. The rewind now renames the turn's opener along with the message. * fix(native-chat): Stop ends only the command it names Stop on a command turn abandoned whatever compaction the session had pending, so a late Stop for an earlier /compact cancelled the one running now. The tracker now ends a command only when the Stop names its turn, and the cancel reply reports whether it did. * fix(native-chat): an agent gets a full idle window after its owed work ends The sweep measured quiet only from the last journal row, so once a subagent, command, monitor or dispatch that had outlived the window ended, the agent was stopped at the next tick. A child can read done before the lead's wake-up turn writes anything, and stopping in that gap loses the wake-up. The sweep now counts owed work it observes as activity, which gives the agent the full window afterwards, as the release clock it replaced did. * test(claude): the options-read fixture runs a live child The fixture marked its conversation running with a hasProviderChild field the session type does not have, so the read took the at-rest path and refused a session with no record. It now carries a child, which is what the read checks. * test(native-chat): host tests reach its collaborators through a typed seam The rest-test rig and three test files read the host's private members with Reflect.get and cast the result. The host now exposes one test-only accessor, collaboratorsForTests(), and the subscribers class a subscriberCountForTests() beside its existing retainedActivityCountForTests(), so the tests are checked against the real types and the casts are gone. * fix(worktree-status): a departed agent's failure yields to live work on the worktree card A retained failed agent has no expiry, so ranking it with a live failure pinned the card to Failed over other panes' live work. It now ranks below working, monitoring and permission, and above every finished outcome. * refactor(orchestration): one owner answers a structured worker's custody Routing, group addressing, worker-show and the idle sweep each composed their own reading of whether orchestration still holds a structured worker, so each new obligation or retirement state had to be added to every reader. structured-worker-custody now derives both answers from the worker-terminal list state coordinators see in worker-list: addressable is owned and not released, and owed work is an active custody or an unsettled task dispatched to the same incarnation. The owner's state is read through the remote dispatch attachment too, as the terminal transfer lookup already does. Behaviour is unchanged; a settled worker awaiting its coordinator still rests. * refactor(orchestration): owed work is an open dispatch on the worker's incarnation A supervised worker's own dispatch context stays open exactly while the worker is active, so the separate active-custody branch only repeated it. Owed work is now one fact, which also states the policy that a worker awaiting its coordinator's decision may rest, and both custody decisions are written once at the top of the module. * docs(agent-status): a departed agent's failure ranks below live work on the worktree card * fix(native-chat): a restart offer knows its continuations by a tag in their id The offer recorded each continuation id in a list on its capsule entry, capped at 16, and a running action's id in memory. Both could disagree with the journal: past the cap an old rejected continuation read as the chat moving on, and a crash during a retry restored the failure's older entry, which lacked the retry's id. Each continuation id now carries a tag derived from the offer (its teardown and chat), then the action's own part, so any continuation of this offer, queued or rejected, is recognised from the journal row and the marker alone. The persisted list, its cap and the in-memory action map are deleted; the agent-start withdrawal keeps an offer whose own continuation the start was for, read against the stored marker. * test(runtime): the legacy-worker reveal test judges its stale snapshot inside the wait The tui-idle probe reads through readTerminal, which now awaits the structured worker check before the PTY read, so the probe's snapshot request starts a microtask later. vi.waitFor missed it on its first check and polled again at 50 ms, the same moment the wait's own 50 ms timeout fired. The stale snapshot then resolved after the wait had already timed out, so the test passed without judging it, and the rejection landed before any handler was attached. Vitest reported that as an unhandled error and failed the shard. Polling every 1 ms sees the request within a few ms, so the snapshot is judged while the wait is still pending. * fix(native-chat): a message held behind /compact is drawn where it was handed over A message typed while /compact runs was drawn above the compaction's result, between itself and its own answer. The reducer kept every item at the sequence and timestamp of the row that created it, and a queued message is created at acceptance, long before the command it waits behind writes its result. The phone orders by that sequence and the desktop by that timestamp, so both put the message first. A queued message now takes its position from its handover row, the same row that already states its turn scope. Everything the agent did before the handover, a command it waited behind included, draws above it. This holds for every held message, not only /compact's, and needs no client change: every client, older builds included, reads the position the host publishes. A live batch already carries the item when its dispatch row lands, and history pages cut the reduced timeline by sequence, so paging stays contiguous. * fix(native-chat): a phone's send during /compact answers without waiting out the compaction A client that predates accepted-send replies, which is every phone build, has its send reply held until the host hands the message over. A message sent during /compact is not handed over until the compaction ends, so the phone's 15 s request timeout fired first and showed the message as unconfirmed. That wait now also ends once the message is queued behind a running command. This is read from the journal's running turn and needs no new state. Every other wait still ends at the handover: behind a starting child or an ordinary turn, and for restart resume, the command front door and orchestration, which keep the plain handover point. * perf(native-chat): a rewind places provider items with one pass over the merged rows A Codex rewind gives each provider item the old epoch never held the turn record for its provider turn. It found that record by scanning every merged row, restoring each row's body, once per provider item. That is quadratic, and it runs on the host's main thread up to the journal's 10,000-row cap, twice per rewind. A rewind record written before rows carried their scope holds no scope for any provider item, so it paid the full cost. The merge now indexes turn records by provider turn id once, keeping the first match as the scan did, and each provider item looks its record up. * fix(native-chat): a view never restarts a chat whose last start failed A Claude chat whose CLI exits during startup left one red row per start, and every time a view bound to it (the chat opening right after its create died, or the user switching back to it) the hold started the CLI again, so the same launch-failure row repeated. Only a send retries a failed start now, the same rule provider-exit recovery already applied; the rule lives in one predicate the hold, exit recovery and the delivery loop share. * fix(native-chat): a message waiting behind /compact is drawn after it until it is sent A message sent while /compact runs is placed where it was handed over. It was still drawn where it was accepted until then. /compact writes its result one step before the handover, so for that step the waiting message sat above the compaction's separator. A message the host accepted but has not handed over is not part of the conversation yet, so both clients now draw it after everything the agent has done. The shared projection moves it to the end, which is the order the phone draws. The desktop ranks it with the other not-yet-sent rows, after the streaming preview. At handover it takes its place from its handover row, which is also after the separator, so it never appears above the compaction it waited for. * fix(native-chat): the idle sweep reads owed work every tick Owed work counted as activity, but the sweep read it only once the idle window had elapsed, so it refreshed the clock at most once a window. Work that ended just before the next read left the agent to be stopped at that read, moments after the work ended, which is the gap the refresh was meant to cover. The sweep now reads owed work on every tick for a started agent, so the window always runs from the last tick that saw work owed. * fix(native-chat): a continuation handed to the agent stays sent The offer read its own continuation as not reaching the agent while its dispatch was pending, which also covered one already handed over and still unanswered. When the wait for that answer ended first, the failure it filed read as retryable, and a retry sent a second continuation to an agent that may have acted on the first. Only a continuation still queued, or rejected, is now read as unsent. * test(native-chat): start the child the loop waits on with an attach, not a second view A view no longer starts a child whose last start failed, so the R2 case that waits on a child started since the failure now gets that child from a client attach, the one non-send starter left. * fix(native-chat): settle a gone generation's turn wherever a conversation opens A send that opens a chat this process had not read yet (after a crash, from a phone or the CLI) went through the delivery open, which never settled what the dead generation left running; only the read restore and a successful acquire did. When the send's start then failed, the turn stayed running for every reader. The settlement now runs in the one journal open, at the crash boundary, for every opener except an acquisition, which settles from the evidence it read before its reserve; the read restore's separate step is gone. * test(native-chat): prove the next child's start settles the turn an earlier child left The R1 case lost its only settlement assertion when the latch it checked was deleted. It now seeds the running turn the earlier child left and asserts it ends at the exit's receipt, with the exit's row, before the message is handed to the new child. * test(native-chat): count a failed start's rows by row, not by text Comparing the set of texts passed when two different rows carried the same words, which is the duplicate the test exists to catch. * test(cross-version): load the phone row readers without mobile's toolchain Vite transforms a file against its nearest tsconfig, and mobile/tsconfig.json extends expo/tsconfig.base.json, which the root-only cross-version lane never installs. The worktree ps verdict suite imported the current phone row reader from mobile/ directly, so CI failed with TSConfckParseError before any test ran. The harness now imports a copy of the working-tree reader placed under the checkout cache, where the root tsconfig applies, as it already does for the release checkout's copy. Both readers are still the real files. * test(cross-version): keep the checkout path-guard message and justify the copy import's cast * fix(native-chat): a command ends only by its own provider answer or its child's end Stop no longer settles a conversation command. It interrupts it like any turn, and when the provider cannot take that (Codex has not opened the command's turn yet, or Claude refuses the interrupt) it stops the child, whose dead-generation settlement writes the verdict. The pending command now lives on the provider child's own session instead of an adapter-wide map keyed by session, so it dies with the child and nothing has to release it. Claude's /compact is sent under a uuid the slot records, and only a root result naming that input (or naming none) ends it; its outcome is read with the ordinary result reading, so a stopped /compact is a cancellation. * fix(native-chat): a command's settle answers its message before ending its turn The two writes are not one batch. Writing the message's answer first means a crash between them leaves a running command turn, which the stale-turn sweep already settles, instead of an ended turn whose message reads as in flight forever. The settle now writes only while the command turn is still running. * fix(native-chat): "Worked for" counts from the handover, not the send A message held behind /compact, or behind a cold start, used to count the wait as the agent's work, although its row is drawn at the handover. Every handed-over submission's turn, the command's own included, now starts at the handover row's instant, falling back to the send time for a host that recorded none. * test(native-chat): give the failed-start and stale-turn waits a loaded runner's budget * test(native-chat): the interrupted create's own retry continues again The merge of main's lease-latch fix replaced that test's retry of the interrupted create, under its own operation id, with a fresh start whose result nothing read. That fresh start passes with the released-reservation continuation deleted, so the case the fix exists for went untested. The retry and its assertion are main's again. * docs(native-chat): three comments that still had views starting agents A start with nothing queued now comes from a command, goal change or rewind; an interrupted compaction left alone would refuse every send, so no agent would ever start to finish it; and a current host raises the unattached read refusal only once quit began, with the attach window belonging to an older host. * test(native-chat): pin the open's and the send's start and row counts, however the view binds Opening a fresh chat whose starts fail makes one start and one row, with two views bound before or after the create's child died; one send makes one more of each. * fix(native-chat): a second Stop on a command ends its child; one compaction verdict for every provider A Stop's note now names itself in its key, so a later Stop on a command still running reads, from the journal, that the provider was already asked and never answered, and stops the child instead of interrupting again. Nothing is held in memory for it. Adds the rule both translators will read a compaction's end by: only a compaction the provider reported is a success; none after Orca's interrupt is a cancellation; anything else is a failure. A real Claude capture, pinned as a fixture, is why: a stopped /compact ends in the same success result as a finished one. * test(native-chat): a reader's open settles the turn a failed exit settlement left running An exit whose settlement write failed leaves its turn running in the open journal. PR 1's open now settles it, and this pins the two reads that reach it here: a reader reopening a chat the idle sweep closed, and a read that opens the chat before the restart restore reaches it. * test(native-chat): the view-start test's starting window outlasts two subscriptions on a loaded runner A subscription reads the conversation before it returns, so under load the two views took longer than the create child's 300 ms start, which then exited before the test checked that it had not. The child now takes a second to fail. * fix(native-chat): settle a gone generation's turn at every open but an acquisition's The journal open skipped the settlement whenever the lease read reserved or live, to leave an acquisition's own open to the acquisition. But a lease a crashed process left in recovery also reads live, until the next acquire resolves it. A send that opened such a chat, from a phone or the CLI after a crash on a host that could not prove the old owner gone, skipped the settlement; when its start then failed, the dead turn stayed running for every reader. The acquisition now says it is the opener, and every other open settles, whatever the lease still claims. * test(native-chat): hold the create's start open until the views bind The "view binds while the create is still starting" case gave the create a 300 ms head start and asserted the views bound before it died. On a loaded runner the holds took longer, the create's exit landed first, and the case failed its own precondition. The create's initialize now waits on a gate the test releases once the views are bound. * refactor(native-chat): the provider's translator ends a command's turn; the loop holds no command state A conversation command is now a turn of the provider child's own journal pipeline. The adapter-wide tracker, its promise and the loop's settle step are gone. - Codex: the translator claims the provider turn that carries the command, scopes its rows to the command's turn, and writes the command's end in the same batch that settles that turn. Codex's own compaction marker is the success row. - Claude: the command's turn is the translator's open turn until the result that answers the /compact input ends it. The command's own frames, such as the continuation summary, its echo and "Compaction canceled.", draw nothing. - Both read the end with the one compaction rule: success needs the provider's report of the compaction; none after Orca's interrupt is a cancellation. - The message resolves at the provider's receipt, as any send does: the Codex ack, or the Claude slash-command waiter on its result. The host writes a command's end only when the provider never took it. - The delivery loop stops while a command's turn runs, and every journal commit re-wakes it through the session's serialize, so an end that lands while a step decides to stop is never lost. A child that ends first is settled with it. * test(native-chat): pin a command's end to real /compact frames and to each path it threads The captured /compact frames drive the Claude translator's command turn: a finished compaction ends as a success with only the separator drawn; a stopped one ends as a cancellation with no failure row, and the next send answers in its own turn; a result naming another input ends nothing. The command's end is checked at each point the ordinary result path threads through: the reopen latch after a failure, the settling of a child still working, the context facts the result reports, and the provider's own error row. On the host: a message held behind a command is handed over when the command ends just as the loop stops for it, a refused command settles as a failure and the loop moves on, and a Claude child that exits mid-command settles the command and hands what waited to a fresh child. * test(native-chat): tests merged from the base state which turn their rows belong to * refactor(native-chat): drop the child-end waiter nothing waits on A command no longer waits for its child here: its turn ends from the provider's frames or from that child's settlement, and the delivery loop is woken by the commit. The waiter and its test were left from the earlier shape. * fix(native-chat): a command holds the queue only while its child runs it The delivery loop stopped whenever the journal showed a command's turn running. When the command's child ended and its settlement could not be written, that turn stayed running with no child to end it, and the loop's gate kept it from ever starting the next child, which is what settles a gone generation's leftovers. Every later send was held for good, and Stop had no child to end. The gate now holds only while the conversation has a child: with none, the command belongs to a gone generation, and the loop's start settles it like any turn a dead child left running. * fix(native-chat): a Claude /compact succeeds only on its compaction boundary The command's evidence counted Claude's `compact_result: 'success'` status as the compaction done. That status comes before the boundary that replaces the history, so a Stop landing between the two read as a finished compaction even though no boundary was ever written. Only the boundary now counts, as the rule for both providers states; the capture's finished compaction carries one, so it still reads as a success. * fix(native-chat): a Claude child's exit says why the turn it ended stopped When a Claude child exited mid-/compact, the command showed "Worked for 0s" and no reason. The child's translator ends its open turn the moment the exit is reported, stamped with the exit's instant, so by the time the exit settlement ran nothing was running. The settlement recognises a turn the exit already ended by that same instant, but the Claude lifecycle event dropped it on the way to the host, which then used its own clock, matched nothing, and wrote no row. When the clocks did agree, the row was scoped to the running turn, of which there was none, so it landed outside the turn it explained. The exit's instant now reaches the host, and the exit row belongs to the turn the exit ended: still running, or ended by the translator at that instant. * fix(native-chat): a message waiting behind /compact draws below its live activity A message sent while /compact runs waits on the host until the command ends. Both clients moved it to the end of the transcript rows, but the running turn's live activity line ("Compacting the conversation") draws after every row, so the waiting message sat between the command and its own live status. A row that is queued, and not what the live turn is for, now draws after that live activity: on desktop outside the transcript window, below the activity line; on the phone in the list footer, below the live status. A message whose own start is pending still draws above the activity that start reports. * fix(native-chat): only a running command holds a message below its live activity A message is accepted, then handed over a moment later, and in between it reads as waiting. Every message waiting behind a live turn drew below that turn's activity line, so an ordinary message sent while the agent was working crossed below "Thinking" and jumped back up once it was handed over, on desktop and phone. Only a conversation command's turn holds the queue on the host. A message now waits below the live activity only while the running turn is one a command opened, read from the entry that opened it. The phone test also typechecks, which the mobile test ratchet requires. * test(codex): the claim test names its notification params as a record * test(native-chat): a read that reaches a crashed chat before the startup reconcile settles its turn On desktop the chat on screen at relaunch reads before startup reconciles the leases, while the dead process's lease still reads live. The open settles the turn it left running anyway, and the restore that follows finds it settled. * refactor(native-chat): drop the composer's second error formatter After the merge with main, every chat write in the composer path reports its failure as a typed outcome worded by the refusal-notice table, so the send's catch sees only a local throw. The {code, message} formatter this branch added for it has no payload left to format, and its claim to be the one way a chat words a failure is no longer true. The composer send is main's again. * test(native-chat): pin the reason on a message rejected while its chat was closed The reopen test checked only that the message reads as not sent; it now also checks the Retry row carries the host's reason. * docs(native-chat): drop the removed dispatch hold from six comments A worker's session no longer takes a dispatch hold, and no release clock rests a chat by visibility; the agent-launch comments, the abandon test, the teardown test and the refusal census still said so. * test(native-chat): rest the owner-status chat through the idle sweep, not a hold The activation-gate test from #22808 put its chat at rest by holding and releasing it, and passed the release-clock grace. This branch deleted both, so the case threw before it reached its assertions. It now moves the host's clock past the idle window and lets the sweep stop the agent and close the conversation, then asserts the same owner answer and activation gate. * fix(native-chat): show the structured pane's retrying line when a read fails The read transport always hands the pane the host's words, so the error state's "Orca keeps trying to load it" line, which showed only when there were none, was never seen: the pane showed the host's text twice, as its subtitle and on the status line under it. The structured pane now always says its read keeps retrying, and the host's text stays on the status line. The terminal-backed chat is unchanged. * fix(native-chat): a send the provider never received after a restart has no verdict Restart reconciliation rejects a crash-stranded send that is absent from a trustworthy provider history with reason 'not_delivered'. Nobody failed that send, but the verdict allowlist did not name it, so after a crash the chat read Failed, was listed, and could notify "failed". Give the reason a shared constant (persisted value unchanged), add it to the no-verdict set, and treat it as an internal marker so the Retry row no longer shows the raw string. * fix(native-chat): a failed Codex compaction's late completion writes no turn of its own Codex ends a failed turn with an error and then still completes it as failed. The error settled the compaction and released its claim on the provider turn, so the completion read that turn as an ordinary one and wrote a stray record. The claim now lasts until the completion, which adds nothing to a command the error already ended. * test(native-chat): the mid-command exit case resumes its next child as a real one does The case's fake started every child as a newly created thread with the same generation. The store refuses a created link once the conversation has a thread, so the next child's start failed and wrote its own error row, which landed before or after the case read the journal. The next child now resumes the thread under its own generation, and the case reads the journal once the waiting message is delivered, which also proves the loop moved on. * test(native-chat): wait for a send's background start before the refusal oracle removes its store An accepted send wakes the delivery loop, which starts the agent in the background. The oracle's teardown disposed the loop but did not wait for that start, so its lease write could create a temp file in the store directory while the directory was being removed, failing the test with ENOTEMPTY about one run in four. The teardown now drains tracked starts before it closes the journals. * fix(native-chat): a start a message waited on gets one failure row, the delivery loop's When a queued message's start failed, two writers could report it under the same row: the delivery loop, when the adapter settled the start without proving it, and the exit settlement, when the child's exit landed. The last one won, so the chat's row could name a different cause than the one the message was rejected with, or be written twice. The exit settlement now writes the start's row only when no message is queued and the loop has not already recorded that start. A start for a command, goal change or rewind, with nothing queued, still gets its row from the exit. * fix(native-chat): a /compact whose start failed says to run /compact again The failure-words context named only /clear as a command to retry, so a /compact whose agent failed to start read "Send your message to try again." on its row, its rejected message and the command reply. The context now carries any conversation command; the host derives it from the oldest message still waiting on the provider, which is the one a failed start fails first, and the /compact reply names it directly. * fix(native-chat): a Codex /compact ends only on its turn's completion, below Codex's own error row Since only turn/completed ends a Codex turn, Codex's turn-ending `error` is a row inside the still-open command turn, and the failed completion that follows it is the command's end: completed, outcome failure, at the completion's receipt time. The command's own "Compaction failed" row was written on that completion too, so a failed /compact read its reason twice. The command turn now notes when Codex's turn-ending error for the turn it carries was written as a row, and its end then adds no second row. A retried stream error ends nothing and is not counted. The flag that let the error end the command and kept the claim until the completion is gone with the error-driven end. A test replays the captured failed compaction from the real app-server through a claimed command turn. * test(native-chat): main's crash-turn test states its row's turn, and a dead /compact settles on its recorded exit Two tests the main merge brought together: - The crash-turn test from #23456 writes a turn record through the event sink without options; every row here states its turn scope, and a turn record's is the thread. - The /compact whose exit settlement could not be written no longer stays running until the next start: main now settles an open chat from the exit it recorded, so the command reads interrupted before the next message, which is then delivered. * test(native-chat): main's new journal tests state each row's turn The crash-turn, stale-turn and sink-queue tests main added wrote rows without a turn scope, which every item write now states. Rows written inside a running turn name that turn; the sink-queue batch and a send handed over with no live turn name the thread. * fix(native-chat): draw a queued turn's message after the earlier turn's rows A message sent while A runs is written to the journal when it is sent. When the provider queues it (Claude answers it after A), A's remaining rows - its last tool run and its answer - are written after that message, and the message's own turn opens only after them. Grouping put those rows in A's turn, but the transcript still drew them in journal order, below B's bubble and bar, where A's answer read as B's reply. This is the residual #23671 left open. A message that opened a turn now draws after the earlier turns' rows the journal wrote after it, just before its own turn's rows (nativeChatTurnDrawOrder, returned by nativeChatTurnMembership as drawOrder). Desktop and mobile both draw in that order. A steer, and a message that has opened no turn yet, stay where they were written. It applies on hosts that state turn scopes and, through journal order, on older ones. * test(native-chat): run #23026's Stop tests against #23059's command turns Two of #23026's tests call APIs #23059 changed, and failed after the merge: - codex-structured-conversation-stop: a compaction now goes through adapter.compact with the command run the host wrote (#23059), not a bare turn id, and answers with the provider's receipt. With the command claimed, a Stop that names no turn while the compaction's provider turn has not opened still interrupts nothing. - main-agent-working-agreement: a provider row states its turn scope (#23059's appendItem contract); the retry and subagent rows are conversation-scoped. * fix(native-chat): typecheck main's Stop and restore-grouping code against #23059 A Stop's compaction interrupt reads the narrowed requested turn, and the restore-grouping test states whether each row reports its turn's outcome. --------- Co-authored-by: Claude <noreply@anthropic.com> |
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b18434b5f5 |
feat(explorer): scope file trees to sparse checkout directories (#18750)
Co-authored-by: Neil <neil@stably.ai> |
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62e3a5a9a2 |
fix(codex): turning Codex off per agent keeps its hook entry off (#23667)
* refactor(agent-hooks): one predicate for whether an agent's status hooks are on "Global switch on and this agent not turned off" was spelled out separately in the startup controls, the settings reconcile, the retained-home reconcile, the WSL preflight RPC, the CLI preflight and the OpenCode plugin selection. They now share one function, in a module light enough for the CLI's per-launch Codex preflight to load. The PTY spawn env derives the Codex flag from the switch and opt-out list it already carries, the same way it does for OpenCode and Pi, instead of receiving a second copy. * fix(codex): launch and resume prep honour Codex's per-agent hook opt-out Turning Codex off in the per-agent hook settings removes Orca's Codex hook entry, but launch prep and session resume read only the global hooks switch, so the next Codex launch or resume wrote the entry straight back into the real ~/.codex or the account's home. Both now read the per-agent predicate, which the PTY spawn env and startup already honoured. * fix(codex): turning Codex off per agent clears the real ~/.codex entry While the real-home lane owns ~/.codex/hooks.json, the legacy system-home sweep stands down. That gate read only the global switch, so turning Codex off per agent ran remove() with the sweep still suppressed and left Orca's entry in the real ~/.codex. The gate now reads the per-agent predicate, the same as turning every hook off. * test(codex): cover the system ~/.codex sweep gate for Codex turned off The gate that lets the legacy system-home sweep run was an inline closure in startup, so reverting it to the global switch left CI green. It is now a pure function beside the gate it feeds, with a table test and a remove() test on a seeded ~/.codex: turning Codex off strips Orca's entry and keeps user hooks; with Codex on the entry stays. * fix(cli): keep the agent-status hooks predicate loadable by the packaged CLI The CLI's prepare-codex handler imported the predicate from src/main, but the Electron build rebuilds out/main from its declared entries only, so the packaged `orca agent hooks` commands could not load it (package jobs and the CLI bundle-parity test were red). The predicate reads only settings, so it now lives in src/shared, which the CLI compiles itself. |