Fixes 1-3 deployed and verified live: fresh trivial Q&A sessions now reach done immediately, and a goal-bearing session that stalled was correctly nudged by the idle sweep. Fix 4 (backfill) was replaced with deletion after the operator's call — verified against the DB first that zero knowledge notes were linked to or written by any of the 53 removed sessions, so nothing was lost. Documents the pagination gap in listSessions (hardcoded LIMIT 50, no total count) that hid 6 of those sessions from the original audit. Also fixes relative links in this plan and in the UI-review plan that broke when both moved from plans/ to plans/done/ (one directory level deeper). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
14 KiB
Task completion safety net: every live task is stuck "Running"
Status: Done — 2026-07-12. Fixes 1-3 implemented, built, tested
(go build ./..., go test ./cmd/nomos/...), committed (3b9c75f),
deployed, and verified live (see Verification below — fresh trivial Q&A
sessions now reach done immediately; a goal-bearing session that went
idle was correctly nudged and auto-resolved by the existing resume-failure
path). Fix 4 (backfill) was replaced with deletion — see "Fix 4, revised"
below; the original backfill-with-a-fabricated-outcome approach was never
run.
Scope
Fix the root cause of a production-wide defect found while UI-testing
2026-07-11-ui-review-ia-usability.md:
every session on the live task board shows as "Running" forever. Traced
through cmd/nomos/ and confirmed against the running database — this is
not a frontend bug (the board correctly reflects real agent_sessions.status
values). It's an agent-behavior gap: the model almost never calls the
lifecycle tools (set_goal / propose_plan / complete_task) that the
task-board feature (shipped today,
done/2026-07-11-goal-oriented-chat-control-panel.md)
depends on to know a task is finished.
Evidence
Queried the live nomos API directly (curl localhost:8092/sessions and
per-session transcripts) against the running mac-mini stack:
- 50/50 live sessions: 49
active, 1planning. Zero have ever reachedexecuting,awaiting_input,done, orfailed. - Across all 50 sessions:
set_goalcalled once.propose_plancalled zero times.complete_taskcalled zero times. - The dominant pattern (43/50 sessions, 2-message transcripts) is a single
quick exchange: operator asks something narrow ("what's the hostname of
lxc:caddy?"), the model runs one read tool (
run hostname), answers in plain text, and the turn ends — no lifecycle tool call at all. This is exactly the casenomos/SOUL.md:105-109calls out by name ("a trivial read-only task... is a degenerate case... answer it andcomplete_taskwith a one-line summary") — the instruction exists and is explicit, and the model skips it anyway, consistently. - The one session that did call
set_goal(a fleet health check) did substantial real research (get_health_summary,get_state_snapshot,get_signal_history,list_lxcs), gave the operator a full structured answer, and then also just stopped — nopropose_plan, nocomplete_task. Status: stuck atplanningsince 2026-07-11T11:35, still showing "Running" on the board.
This means the board's "N Running / 0 Done / 0 Failed" isn't a fluke or an edge case — it's the default outcome for essentially every task the system has ever run. The feature as designed (terminal state is 100% dependent on the model remembering to call one specific tool) doesn't hold up against real model behavior, even with an explicit prompt instruction already in place.
Where this lives in the code
cmd/nomos/agent.go's chatWith has exactly one place a turn ends with a
plain-text answer and no tool calls:
// agent.go:359-368
if len(msg.ToolCalls) == 0 {
emit(agentEvent{Type: "text", Data: msg.Content, SessionID: sessionID})
emit(agentEvent{Type: "done", ...})
return
}
This is reached for the trivial-Q&A case (a turn that made zero or a few
read-only tool calls this iteration, then answered in text) and is where
43/50 of the stuck sessions are produced. There's a second, rarer exit at
the step-limit fallback (agent.go:487-494, finalSummary) with the same
gap.
Neither exit currently checks whether the session ever reached a terminal
state — the turn just ends, and agent_sessions.status is left wherever it
was (usually active, its creation-time default,
store.go:71,84).
Design
Two different failure shapes need two different fixes — collapsing them into one heuristic would either auto-close genuinely in-progress structured tasks or fail to catch the trivial-Q&A majority.
1. Trivial/no-lifecycle-tool sessions (the 43/50 case) — auto-complete
inline, same turn.
If a turn ends with a plain-text response (len(msg.ToolCalls) == 0, the
existing exit at agent.go:359) AND this session has never called
set_goal in its history, that's strong evidence this was never meant to
be a structured multi-step task — it's a one-shot question that got
answered. Call store.completeTask server-side right there, before the
return, with outcome="success" and a summary derived from the response
text (first ~120 chars, same truncation pattern
buildContinuationNote already uses at
continue.go:203-205). No LLM call needed
— this is a mechanical default, not a judgment call, matching the "trivial
task" case SOUL.md already describes.
If the session has called set_goal (meaning the model explicitly framed
this as a task, e.g. the fleet-health-check session), auto-completing on
the very next plain-text turn is riskier — the model may reasonably expect
to be asked something next. Skip the inline auto-complete for these; case 2
covers them.
2. Structured (goal/plan set) sessions that stall — idle sweep, not
inline.
Extend the existing runContinuationWorker ticker
(continue.go:41-57, already polling every
4s for a different purpose) with a second, coarser sweep — e.g. every 5
minutes — that finds sessions where:
statusisactive,planning, orexecuting(not already terminal orawaiting_input, which has its own resolution path), ANDset_goalwas called (this is a real task, not case 1), ANDlast_active_atis older than some idle threshold (start with 15 minutes — long enough that it's not still mid-turn, short enough that the board doesn't lie for hours).
First idle hit: inject a system note next time nothing else touches the
session ("[System: this task has been idle for N minutes with no
complete_task call. If the goal is done, call it now with a summary. If
you're genuinely still working, ignore this.]") the same way
buildContinuationNote already injects notes into resumed sessions — reuse
resumeSession's live-persist pattern
(continue.go:106-196) so the nudge and
the model's response show up in the transcript, not silently.
If a second idle sweep finds the same session still not completed (i.e.
the nudge didn't take), auto-complete it directly with
outcome="partial" and a summary noting it was auto-closed after an
unanswered nudge — same reasoning as resumeSession's existing
"give the task a real, operator-visible terminal state instead of leaving
it silently stuck forever" logic at
continue.go:179-193, which already does
exactly this for a different failure mode (a resume that produces no
response). This is the same architectural pattern, applied to a session
that produces responses but never a terminal tool call.
3. Leave ask_operator and gated-execution flows alone. Those already
have real terminal signals (awaiting_input status, the continuation
worker's assent-window logic) — this plan only targets sessions that fall
through with no lifecycle signal at all.
Fix plan
- Inline safety net (case 1) — in
chatWith's plain-text exit (agent.go:359), checkset_goalwas never called for this session (cheap: track a bool while replayinghistoryin the same function, no extra query — the loop atagent.go:209-226already walks every persisted message and could flagsawSetGoalwhile extracting tool calls). If not sawSetGoal, callcompleteTaskbefore returning. - Idle sweep (case 2) — new ticker in
continue.go(or extend the existing one with a slower secondary tick), a new store query (store.staleGoalSessions(ctx, idleThreshold)mirroringpendingContinuations's shape), and reuse ofresumeSession's live-persist injection for the nudge. - Second-strike auto-close (case 2, continued) — track nudge count (a
new
agent_sessionscolumn, e.g.completion_nudges int default 0, or reuse the existingsummary/attributes json instead of a schema change if that's preferable) so the sweep can tell "never nudged" from "nudged once already, still stuck." - Backfill — the 50 already-stuck live sessions won't get fixed by new code alone (they're historical). One-time cleanup: run the same case-1/case-2 classification against existing rows once the code ships, so the board doesn't show 50 permanently-orphaned "Running" cards on top of new correctly-terminating ones. This should be a script, not a manual UPDATE — the classification logic will already exist in Go.
Fix 4, revised: deletion instead of backfill
The plan as written proposed backfilling the 50 already-stuck sessions with
a mechanically-assigned outcome (success for case 1, partial for case
2). When it came time to execute that, the operator raised a better
question: these were overwhelmingly one-off test/smoke-test sessions
("hi", "what's the hostname of lxc:caddy?") with no lasting value —
assigning them a fabricated success outcome would make the task board
lie in the opposite direction (claiming verified success on things nobody
verified). The operator's call: delete them instead of backfilling a
guessed outcome, with one condition — don't lose any recorded knowledge.
Before deleting anything, verified directly against the database (not assumed from reading the code):
- Zero
documentsrelationship edges exist linking any of the candidate sessions to anyknowledge_entitiesrow. - Zero
upsert_knowledgecalls appear anywhere in the candidate sessions' transcripts. - Zero
knowledge_entitiesrows exist system-wide mentioning the one topic (typetype) the operator specifically asked to preserve.
deleteSession (store.go:293, already the live code path behind the
UI's "Delete task" button — reused as-is, not reimplemented) removes the
session, its messages, its own task entity, and that entity's relationship
edges — it never touches knowledge_entities rows or entities the task
merely referenced (e.g. lxc:typetype itself), only the provenance edges
back to the now-deleted task. Given the verification above, this was safe:
there was nothing to preserve because nothing had ever been recorded.
Executed in two batches, both via the same DELETE /sessions/:id route:
- 47 sessions — the original candidate set from
curl localhost:8092/sessions, all non-done/failedat the time. - 6 more sessions — found after the first batch, when they surfaced
on the task board:
listSessions(store.go:193) hardcodesORDER BY last_active_at DESC LIMIT 50with no pagination, so the original audit's "50 sessions total" was actually "the 50 most recently active" — it silently excluded 6 older stuck sessions from 2026-07-08 (predating the task-board feature entirely, same trivial "hi"/smoke-test pattern). Worth knowing aboutlistSessions's cap for any future audit of this table — acount(*)query directly against the database is the only way to get a true total.
Final state: agent_sessions holds exactly 3 rows — the two done and
one failed sessions produced during live verification of fixes 1-3.
Implementation order
- Fix 1 (inline safety net) first — it's the highest-leverage, lowest-risk change (self-contained, no schema change, covers 43/50 of the evidence).
- Fix 2+3 (idle sweep + second-strike) — needs the schema decision (new column vs. attribute) settled first; smaller blast radius than 1 but touches the ticker/worker machinery, deserves its own review pass.
- Fix 4 (backfill) last, once 1-3 are deployed and verified live — running it before the code ships would just recreate the same gap for new sessions created in between.
Verification
- After fix 1: start a few trivial one-shot chats against the live agent
(
hostname-style questions), confirm each session reachesstatus=doneimmediately after the answer, viacurl localhost:8092/sessions/:idor the task board. - After fix 2+3: manually let a goal-bearing session go idle past the threshold (or lower the threshold for a local test run), confirm the nudge appears in the transcript, then confirm second-strike auto-close fires if the nudge is ignored.
- Re-run the same audit query used to find this bug
(
curl localhost:8092/sessions→ status histogram) a day after deploy; the "stuck active/planning forever" count should track only genuinely in-flight tasks, not accumulate.
Open questions
- Outcome for case-1 auto-complete: always
"success", or worth a cheap heuristic (e.g. scan the final text for obvious failure language)? Recommend starting with always-"success"— SOUL.md's own trivial-task guidance doesn't distinguish, and a wrong "success" on a genuinely-failed one-shot lookup is low-stakes (the transcript still shows the real answer; nothing acts on the outcome besides the board's color). - Idle threshold (15 min) and nudge-to-close gap: arbitrary starting points, not measured against real task durations — worth revisiting after a week of the new sessions' real timing data exists.
- Schema change for nudge tracking: a new column is simpler to query than packing state into existing JSON, but adds a migration — worth confirming that's acceptable before starting fix 2+3 (this plan defers that call to whoever implements it, per Implementation order above).