* feat(agent-status): publish the lead agent's own state beside the combined row state
Every status producer folded the main agent's state together with live child
work into one `state`, so a lead that had finished while a subagent still ran
read `working` and its own state was lost. The row now also carries
`lead: { state, outcome?, stateStartedAt }`, admitted by the one payload
normalizer on the relay wire, IPC and disk, and published from the Claude hook
lane, the structured host ingest and renderer bridge, Grok (now on the shared
fold) and Codex (own combine kept). The persisted child-only boundary flag is
derived from `lead` plus child evidence and no longer written; old rows map
onto `lead` at hydrate. Combined `state` and `workingMode` are unchanged for
every reader; a cross-lane parity table pins that, with the cancelled-turn
watch-loop story recorded as a known divergence.
* fix(agent-status): make Orca's inferred interrupt the primary source of a Claude lead cancellation
Current Claude Code sends no hook at all on a cancel and no is_interrupt on
Stop, so the cancellation enters the lead record from the server's inferred
interrupt and rides into the next real Stop; is_interrupt on a turn boundary
stays as the secondary source for builds that send it. Comments, the store
reference and the parity table say so; no suppression changes.
* docs(agent-status): the child-only boundary comment now describes the persisted shell fact
The old sentence said a hydrated row no longer carries the shell fact, which is
the opposite of the mechanism: claudeRunningNonAgentTask is persisted precisely
so hydration can read it, and only a pre-lead row lacks it — reading as
shell-free, the same assertion its legacy flag made at write time.
* rename the lead fact to mainAgent: the main agent's own state
* docs(agent-status): the inferred cancel comes from Ctrl+C, not Esc
* fix(agent-status): an inferred interrupt keeps an already settled main agent, and the row verdict docs name its inferred source
* fix(agent-status): a child-induced wait publishes the main agent state it displaced
* fix(agent-status): decide child-held Claude rows from the saved main agent fact
Restart seeds the Claude main agent from the row's saved mainAgent whenever it
settled and no shell held the row, instead of re-deriving a child-only shape.
OSC cannot settle or repaint a row child agents hold open, including a row
waiting on a child's permission prompt. A sticky child permission prompt still
records the main agent's own progress, and OSC repaints and inferred answers
keep the shell fact beside the main agent they preserve.
* fix(agent-status): keep a finished turn's main agent verdict and clock with that turn
A Claude SessionStart restarts the main agent's clock instead of inheriting the
previous session's last Stop. A Grok idle prompt or session end, and a late
Codex root Stop after an inferred cancel, restate the same finished turn, so
they keep its recorded verdict; only a new turn clears it.
* test(agent-status): publish the Grok verdict restatement past the late-event window
* docs(agent-status): describe hydrate seeding and the OSC refusal from the saved main agent fact
* fix(agent-status): push a held child permission row when its main agent changes
* fix(agent-status): keep the shell fact on a held child permission row so restart does not settle it
* docs(agent-status): note the held child permission row carries the shell fact and is pushed
* fix(agent-status): pair the Claude shell fact with the main agent at the one row-build point
Every non-hook rewrite (terminal-title repaint, inferred answer, held child
permission) had to re-carry the shell fact beside `mainAgent`, and each one that
forgot let a restart settle a row while a shell still ran. The row builder now
pairs the fact once: a listener event restates it, any other write keeps it only
while `mainAgent` is unchanged. Restart seeds a settled main agent only when the
row says no shell ran, and legacy child-only rows map to that explicitly.
A held child permission now also accepts the main agent event's background
evidence, as it already accepts its `mainAgent`, so the child's drain no longer
settles a row a shell still holds. The renderer keeps a previous `mainAgent`
only for writers that never carry one, so a hook row without it matches the
host snapshot.
* test(agent-status): pin that restart never seeds a main agent from a row silent about its shell
* docs(agent-status): the row builder pairs the shell fact with the main agent, and restart seeds only on an explicit no-shell
* test(agent-status): name the legacy-row case parameter for what it holds
* docs(agent-status): name which rows carry the main agent fact
28 KiB
Agent status store
Status
The current boundary is PR 2A: structured sessions use the hook server's fully scoped canonical store; unbound PTY/relay evidence remains in an isolated legacy adapter. Do not remove the renderer bridge or its publication filters in this slice: they still carry native-chat child rows.
The sections below record the original 2026-09-09 rollout. Its PR 1a and PR 1b have landed; its proposed PR 2/3 sequence is superseded by that boundary:
- main-only: every producer writes into one store and
worktree psreads it, split into 1a (structured sessions join the store) and 1b (the runtime's duplicate retained store is deleted); - renderer: the sidebar becomes a subscriber and stops re-deriving rows;
- shared: one worktree-status rollup and one freshness rule for every reader.
The problem this solves
Orca shows "what is this agent doing" in four places: the desktop sidebar, the
orca worktree ps command, the mobile app, and the agent dashboard. Before
#19217 those readers did not even share their inputs. After #19217 they share
the structured-session mapping and nothing else.
An audit on 2026-09-09 found six producers and three consumers, and three separate copies of the same row inside the main process alone:
| Main-process copy | Keyed by | Owned by | Persisted | Evicted |
|---|---|---|---|---|
hook server lastStatusByPaneKey |
paneKey | src/main/agent-hooks/server.ts |
last-status.json |
tab close, pty exit, hydrate |
runtime RuntimeAgentRowStore |
paneKey | runtime-agent-row-store.ts (deleted in PR 1b) |
no | pty exit only |
structured feed published |
sessionId | src/main/native-chat/agent-session-wire/structured-agent-session-status-feed.ts |
no | never (a broadcast cache) |
The second copy is a duplicate write: the OSC status parsed in main is
forwarded to the hook server and retained in the runtime store from the same
call (orca-runtime-create-terminal-side-effect-command-code-detector.ts).
The third copy is keyed differently and never reaches the hook server at all,
which is why worktree ps grew its own adapter for it in #19217.
Each reader then applies its own precedence and freshness rules, so the same pane can legitimately read differently on the desktop, on the phone, and in the CLI.
The rule
The execution host owns agent status, in one store, and every reader
subscribes to it. This follows the boundary in
ssh-execution-boundary.md: the host that runs
the process is the only party that can observe it, and the client is never
authoritative for execution state.
Three consequences:
- One store per execution host. A remote host keeps its own store and the client mirrors it down, as the web-session mirror already does. Mirroring is not merging: a client never writes its observations back to a host.
- Precedence is decided once, at write time, with provenance recorded on the row. Readers never re-adjudicate hook versus terminal versus structured.
- Readers keep only presentation policy and user facts: the 30-minute display decay, acknowledgements, dismissals, unread. Those stay reader-side but become one shared implementation (PR 3).
The store already exists
The hook server's state is that store today for every PTY-based agent. The audit established:
- hook HTTP posts, the WSL and SSH relay receivers, and main's own OSC parse
all converge on the same
applyNormalizedStatuspath, stamped with the authority idmain-agent-hooks; - it alone holds pane authority: launch tokens and their hashed commitments, retired-pane fences, pane-key aliases, per-connection ordering watermarks, and the evidence-age map that must outlive a transport clear;
- it alone persists, with a seven-day hydrate window and the
restoredUnconfirmedstamp that keeps a hydrated row from ever reading as live truth; - it already fans out to both renderer windows over
agentStatus:setandagentStatus:clear, and servesagentStatus:getSnapshot.
Nothing else in main carries those guarantees, and building a second store with them would be the wrong direction. So the design is not "add a store". It is: route the two producers that bypass the hook server through it, then delete the copies.
PR 1a: structured sessions publish into the store
No renderer behavior changes. The sidebar keeps receiving the same IPC events it receives today, plus structured-session rows it currently derives itself.
Structured sessions publish into the hook server
The structured feed keeps its job of projecting a session's journal into a summary and streaming it to subscribers. On every publish it additionally ingests the summary into the hook server as a status row:
| Row field | From |
|---|---|
paneKey |
structuredAgentSessionPaneKey(tabId, sessionId), the key the renderer already uses; its leaf is UUID-shaped so pane-key validation accepts it |
tabId |
structuredAgentSessionTabId(sessionId) |
worktreeId |
summary.workspaceId (a folder workspace id is a valid value) |
state |
structuredAgentSessionAgentStatus(summary).state: the lead's own status folded with its live backgroundTasks, so a settled lead whose subagent still runs reads working |
workingMode |
'monitoring' from the same fold when watch loops are the only live child work; omitted otherwise, which clears it on the row |
mainAgent |
the main agent's own state before the fold, its last-turn verdict (summary.turnOutcome, present only while idle) and its own clock; see "The main agent fact" below |
structuredHost |
'owned' while summary.hostExecutionOwned is set, otherwise 'held'; worktree ps derives its row's structuredHostOwned from it |
| prompt, tool, last message, model, provider session | the summary's fields |
Sessions with no persisted turn (status === null) produce no row, matching
what the chat shows. When the host revokes live ownership the row is re-set
without the flag; when the host closes or evicts the session the row is
dropped. Both already exist as feed events (revokeLive and the roster
filter in liveSessionSummaries); PR 1 turns them into store writes.
Dropping the session from the host's map and dropping its row are one
operation, forgetStructuredAgentSession. The store keeps a row until told,
and a host-owned row bypasses the staleness check, so a deletion path that
forgot the row would strand a permanently working-looking agent.
Two rules the ingest must keep:
- Never persist a structured row. The journal is the durable truth for a
structured session and the host republishes on restore. A structured row in
last-status.jsonwould hydrate asrestoredUnconfirmedand then fight the live republish. The serializer skips rows carryingstructuredHost, and hydrate drops any such row found on disk. Applying one therefore also skips the persist schedule: the walk and stringify could only reproduce the file that is already on disk, once per debounce window for every streaming chat. - Never let it fight a hook row. A structured session has no PTY, so no hook or OSC event carries its pane key. The ingest still goes through the disposition gate so a retired pane key is refused like any other.
Applying one does still run both status fan-outs, and that is intended rather
than incidental. notifyStatusChangeListeners is what feeds
agentAwakeService's power-save blocker, and subscribeEnrichedStatus is what
feeds AgentSessionTransitionRecorder's stats, so joining the store enrolls
native chats in both. A working native chat is real work and should hold the
machine awake exactly like a PTY agent does.
The drop side routes through dropStatusEntry, not clearPaneState: a
pane-status-clear reaches the renderer, and until PR 2 the renderer's own feed
bridge is that pane key's writer. It also passes preserveResumeIdentity: false — the providerSessionOnly remnant a dismissed pane keeps exists so the
agent can be resumed in that pane, and a structured session has no pane and
keeps its resume identity in the record store. Like every other
dropStatusEntry caller, it emits no pane clear, so a session dropped
mid-working leaves AgentSessionTransitionRecorder holding an open stats
session until its LRU evicts it; that gap is shared with the user-dismissal
path and is not specific to structured rows.
The ingest lives in the feed, not in structured-agent-session-host.ts, which
sits at the file-length cap.
worktree ps becomes a reader
The structured adapter added in #19217 is deleted, and structured rows reach
worktree ps through the same snapshot as every other row. The
retained-versus-hook reconciliation in collectRuntimeWorktreePtyAgentSources
stayed until PR 1b removed the store that fed it. What this step settles is
the admission gate that decides which rows a worktree listing may show:
- a hook or OSC row needs its tab mirrored or a connected pty, as today, and SSH rows stay exempt because their tabs may exist only remotely;
- a row carrying
structuredHostis admitted while the host holds the session, and the host's drop on close is what removes it. No tab-mirror requirement: a structured session's tab lives in the renderer's own tab state, and a headless host has no renderer to mirror it from. That argument only holds if the headless host is itself wired to the store, which is a separate obligation per entry point: the Electron hosts (desktop andorca serve) sharemain-process-runtime-service.ts, andorcadconstructs its own runtime insrc/main/orcad/orcad-entry.ts. A host missing that wiring lists no agents at all, not just no structured ones, becauseworktree psreads the same snapshot for every row.
The freshness bypass for host-owned structured rows already exists in
isFreshNonDoneAgentStatus; with the flag now on the row it becomes the only
path, and the hand-rolled check in runtime-worktree-agent-rows.ts goes.
Wire compatibility
AgentStatusIpcPayload gains one optional field, structuredHost, and the
worktree ps row gains structuredHostOwned. Under rule 1 of
remote-wire-compatibility.md both are safe:
an old client ignores them. worktree ps rows keep their shape and vocabulary,
so the mobile app sees no change.
Until PR 2 the main process does not forward structured rows to the renderer
over agentStatus:set or agentStatus:getSnapshot. The renderer's feed
bridge still writes those rows itself, and forwarding them too would give one
pane key two writers. Removing that filter is the first step of PR 2.
The main agent fact
Claude, Codex and Grok hook rows and structured-session rows publish the combined
state and, beside it, the main agent's own state as payload.mainAgent. Other agents'
rows and terminal-title-only rows carry none, and readers fall back to state:
mainAgent?: { state: AgentStatusState; outcome?: AgentJournalTurnOutcome; stateStartedAt: number }
state still answers "what should the user see" and folds live child work in,
so a settled main agent whose subagent still runs reads working. mainAgent answers
"what is the main agent itself doing", which the fold used to destroy at publish
time; every guard that reconstructed a fragment of it (fromChildWork, the
persisted claudeLeadBoundaryChildOnly flag) now reads mainAgent instead of a
stored copy. A Claude row whose mainAgent is done while a child agent still
works (including a child's permission wait) refuses OSC, which carries no child
identity; the children's own lifecycle hooks settle it. outcome is the recorded verdict on
the main agent's most recent finished turn, present only while mainAgent.state is
done. It is reported by the provider, or is a cancellation Orca inferred
from the user's own interrupt keystroke (the journal's turn outcome, by
contrast, is never inferred). A plain end of turn carries none, because absent
means unknown and a provider that omits its interrupt flag must not turn a
cancel into a success.
In the Claude hook lane the cancellation comes primarily from Orca's own
inferred interrupt (markClaudeLeadTurnInterrupted), because current Claude
sends no hook at all on a cancel and no is_interrupt on Stop; that flag on a
turn boundary remains a secondary source for builds that send it, and
StopFailure maps to failure.
Admission is one function, normalizeAgentStatusPayload, on the relay wire,
IPC and disk. A malformed mainAgent drops the field and keeps the row. Old hosts
send none and readers fall back to state. Hook rows persist it inside the
payload; hydration maps an older row's claudeLeadBoundaryChildOnly: true
onto mainAgent: { state: 'done' } when the row has no mainAgent, and never writes the
flag again. Hydration seeds the Claude main agent record straight from a saved
mainAgent that is done, so the children's drain can still settle the row after
a restart. claudeRunningNonAgentTask is persisted alongside because it is the one
child-work fact mainAgent cannot express: a shell running beside the main agent,
whose liveness hydration does not restore. Hydration seeds only a row that says
false; a row silent about it stays unseeded. The row builder pairs the two facts in
one place: a listener event restates the shell fact, and any other write (an OSC
repaint, an inferred answer) keeps it only while mainAgent is unchanged. A child's
sticky permission prompt still records the main agent's own progress and background
evidence in the held row, and pushes the held row to subscribers when mainAgent changes.
Two combining rules remain outside the shared fold and are named so a reader does not mistake them for drift:
- Codex keeps
codexRosterEffectiveStatefor its combinedstate(a waiting child wins, a settled root with any live child readsworking, never monitoring) and publishesmainAgentfrom its root record; moving that combine onto the fold needs a waiting-child input the fold does not have yet. - A cancelled turn with a still-running shell reads
donein the hook lane andmonitoringin the structured lane. The parity table insrc/shared/main-agent-status-parity.test.tspins this as a known divergence; the cancel policy that removes it flips that row.
PR 1b: the runtime's retained row store is deleted
Landed. RuntimeAgentRowStore is gone, and with it the retained-versus-hook
reconciliation in collectRuntimeWorktreePtyAgentSources. The hook server's
store is now the only main-process copy of a PTY agent's row.
The five call sites
| Call site | Before | After |
|---|---|---|
orca-runtime-create-terminal-side-effect-command-code-detector.ts retain() |
second write of the OSC payload already sent to the hook server | deleted; the event now carries the pane's terminalHandle and the hook ingest keeps the only copy |
...command-code-detector.ts clearPty() |
drops rows on pty exit | deleted; pane teardown already clears the hook row |
orca-runtime-get-worktree-ps.ts values() |
fed retainedSnapshots |
deleted; the reader keeps only hookSnapshots |
orca-runtime-serialize-agent-prompt-submission.ts getFreshExplicit() |
retained row first, hook rows second | selectFreshExplicitAgentStatus, hook rows only |
orca-runtime-prune-mobile-session-tab-group-layout.ts getFreshForMobile() |
pane key, then pty id | selectFreshAgentRowForMobileTab: pane key, then terminalHandle |
Both readers moved into runtime-hook-agent-row-selection.ts, which also owns
RuntimeAgentRowSnapshot now that nothing retains one.
terminalHandle is the row's join back to its terminal
The retained store's only real extra was the pty id, and two readers used it.
The plan said to stamp the event's ptyId into terminalHandle; that was
wrong. A terminal handle (term_<uuid>) and a pty id are different
identifiers, and getFreshExplicit was already comparing hook rows against a
real handle. What landed instead:
AgentHookEventPayloadand the runtime's terminal-status event gained an optionalterminalHandle. The detector resolves it once per chunk throughgetAgentStatusTerminalHandleForPaneKey— the same lookup the renderer-facing IPC boundary already runs for every row, so the two surfaces cannot disagree about which terminal a pane is.applyNormalizedStatuscarries the handle forward when an incoming event resolves none. Only main's OSC parse can resolve one, so an HTTP hook post for the same pane would otherwise erase it.- It is never persisted. A handle belongs to the runtime that issued it, and a hydrated one could only rejoin a row to somebody else's terminal.
toAgentStatusIpcPayloadpublishes it, which also makesgetFreshExplicit's long-dead handle comparison live: the runtime reads raw snapshot rows, and before this nothing ever stamped the field on them.
worktree ps uses it too. ConnectedPtyEvidence traded its flat ptyIds set
for ptyIdByTerminalHandle, so a row still resolves the connected PTY behind
it — which is both the working-terminal rollup's match key and the last rescue
for a row whose pane binding was nulled by a controller incarnation change.
The change detector had to move with the store
retain() was not only a store: its boolean return was the signal that
republished session.tabs for a status-only transition, which no title change
covers (#7970). hook-status-session-tabs-invalidation.ts already mirrors that
projection change set, including restore provenance and terminal-handle joins,
so the replacement was to route the signal off the store rather than build a
second comparator.
installHookStatusSessionTabsRepublish now owns all three arms — enriched
status, pane clear, and the status-drop tap a dismissal emits — and both hosts
install it.
Both hosts, not just the desktop one
orcad constructed its runtime with no onTerminalAgentStatus, so main's OSC
parse never reached the store there and the retained copy was the only carrier.
Deleting it without wiring orcad would have made a headless host list no PTY
agents at all. orcad-entry.ts now binds the producer and installs the
republish signal, alongside the snapshot and structured sink it already had.
The intended behavior change
A row the user dismisses on the desktop leaves worktree ps and the phone at
once, instead of lingering until the pty exits. One store means one dismissal.
Legacy numeric pane keys remain a bounded compatibility case. Persisted layouts register aliases to their stable leaf owners; an in-process OSC observation may also retain a numeric key only when the runtime supplies the matching tab, PTY, and terminal handle. HTTP and relay ingress still require a stable key or a registered alias, and numeric rows are never persisted.
PR 2: the renderer subscribes
With structured rows arriving over agentStatus:set, the renderer's
StructuredAgentSessionStatusBridge no longer needs to write status; its
unmount cleanup becomes a tab-close signal to the host. The IPC applicator is
the single writer for observed status. The 2026-09-09 audit sorted the other
writers:
| Writer | Disposition |
|---|---|
| Command Code output seeds, parked-pane seeds, pty-exit removal | delete; main already emits the same facts |
| structured bridge status writes | delete; main now publishes the row |
| launch placeholder seeds (a user launched an agent with a prompt) | keep for now; main holds the launch config and can seed later |
| dismissal, acknowledgement, unmount | keep; user facts and component lifecycle |
| remote-runtime OSC parse (bytes never transit local main) | keep, fenced behind the host's published row once the host is new enough; rule 3 of the wire doc applies |
| web-session mirror receipt clock | keep; the decay rule needs both clocks from one machine |
The Command Code done-settle window is renderer policy with no main equivalent. PR 2 either moves it into main's detector or leaves it, and says which.
PR 3: one rollup, one clock
The worktree card status is derived three times: lib/worktree-status.ts in
the renderer, runtime-worktree-status-projection.ts in main, and
agent-row-display.ts in mobile, which hand-copies the 30-minute constant.
PR 3 moves the rollup and the decay into src/shared and makes all three
call it.
What does not change
- The hook scripts, the OSC 9999 wire format, and the relay protocol.
- The status vocabulary.
working / blocked / donefor rows,working / attention / idlefor structured summaries, mapped once. - The
live / unverifiable / exitedverdicts for remote work. Loss of contact clears nothing; the SSH exemptions in the admission gate stay. - Hydration honesty: a restored non-done row is
restoredUnconfirmedand is never fresh.
PR 1b reliability contract
- Invariant (
agent-session.status-host-ownership): each execution host has one agent-status store; OSC, hooks, and structured sessions write it, while desktop,worktree ps, and mobile only project it. Dismissal, certified PTY exit, and provider-generation replacement remove the same row everywhere; transport loss alone removes nothing. - Failure source: the deleted runtime row store duplicated OSC observations, keyed them by a different terminal identity, and outlived a dismissal from the hook store. Relay replay could also make old evidence look fresh when readers used its new delivery timestamp.
- Oracle: one OSC observation appears through the hook snapshot in
worktree psand mobile, and one store dismissal removes it from both without stopping the PTY. Focused tests also require leaf/incarnation-handle rejoin, legacy numeric-pane compatibility, certified-exit and provider-generation cleanup, evidence-age freshness, and exactly-once startup/stop teardown. - Gate:
terminal-performance.osc-status-scan-budgetcovers the unchanged bounded OSC parser and the runtime projection. There is not yet a dedicated blocking multi-surface status-store gate; the focused suites below are the accepted gap until they accumulate reliability-gate soak evidence. - Provider/platform coverage: local and daemon-backed PTYs are covered by runtime tests, and SSH relay loss/replay semantics by relay integration tests. The projection is shared by git worktrees and folder workspaces. WSL uses the same store and admission code but has no live run here; Linux and Windows runtime execution, native mobile clients, and mixed-version paired clients remain validation gaps.
- Performance budget: publication stays event-driven with no new polling or subprocesses. One mobile projection clones the status snapshot once, builds pane/handle indexes once, and has a deterministic call-count test; lifecycle cleanup is bounded by the existing status and handle inventories, and orcad tests prove listeners clean up once on failed startup and repeated stop.
- Diagnostics: existing hook-listener errors name the pane and PTY, while status-store tests pin delivery versus evidence clocks. No new telemetry or raw terminal data is emitted.
- Residual gaps: rendered Electron/mobile behavior, live SSH reconnect, and
Linux/Windows/WSL execution require the platform QA pass. The current
cross-version gate does not cover
session.tabscontent.
Verification
- Unit: ingest a structured summary and read it back through
getStatusSnapshot,worktree ps, and the mobile projection; assert the serializer never writes a row carryingstructuredHost; assert a hydrated file that somehow contains one is dropped. - Unit: the
worktree pssuites written against the retained store are rewired to a realAgentHookServer(agent-status-store-wiring.test-fixture.ts) rather than deleted, so each still asserts the listing behavior it named. The dismissal change is pinned end to end inorca-runtime-tests/worktree-ps-agent-row-dismissal.spec.ts, which fails with the retained store restored. - Live: the parity check from #19217 (working, done, close, reload) repeated against the merged store, with both surfaces read from the one row.
Retired OMP pane recovery
A desktop renderer retirement carries an optional UUID through the existing
agentStatus:retirePaneAuthority IPC message. The hook server retains it with
its bounded retirement fence. A validated live OMP new turn consumes that UUID
and echoes authorityRestartId only in the live notification. Cached rows,
persistence and startup replay never carry the acknowledgement. Older peers
omit or ignore it and retain explicit attach restoration.
The renderer keeps the UUID in its existing non-persisted retirement tombstone;
every re-retirement mints a new one. A matching acknowledgement may clear that
tombstone only with a successful status write for the existing pane and matching
workspace/connection. Closed tombstones remain true, including after the tab
LRU evicts its entry. Closing a retired physical alias revokes its whole group.
This is control-plane retirement correlation, not a second agent-status store.
Fallback restores the hook server's recorded status aliases through the existing attach-restoration path. The accepted renderer write restores the matching status alias routes too, preserving group membership for the next retirement. It does not restore orchestration or launch credentials. It is scoped to the requesting desktop renderer. A different window's retirement UUID cannot be cleared by the acknowledgement, and web mirrors keep their existing host-snapshot/attach behavior.