- tests/agent/test_session_activity.py asserts against
ACTIVITY_DESCRIPTION_MAX instead of the literal 120.
- The session-stall WARNING log line names its config knob
(agent.session_stall_timeout) so operators can find the setting.
- hermes_state.py: collapse the triple blank line near line 191.
- hermes_cli/status.py no longer imports the private
hermes_cli.main._relative_time: the helper moved to a public home
(hermes_cli.timefmt.relative_time); main._relative_time stays as a
thin back-compat wrapper (sessions_cmd and external patchers keep
working).
test_progress_extends_idle_budget_until_success raced wall-clock: the
0.1s-idle/0.04s-tick shape left ~60ms of slack per tick, so one slow
scheduler pass on a loaded CI box lapsed the idle budget mid-loop.
Widened to 0.5s idle / 0.1s ticks (5x per-tick margin, total runtime
still <1s) per the FLAKY policy's minimum-margin guidance.
- website/docs/user-guide/configuration.md (en) and the zh-Hans
translation gain a 'Session Stall Watchdog' section: default 300,
0=disabled, notify-only semantics (never kills the turn — contrast
gateway_timeout), one notification per stall episode, and the exact
stall message text so it is greppable.
- cli-config.yaml.example: the two in-agent compression timeout keys
(compression.context_timeout_seconds /
compression.context_total_ceiling_seconds) are shown as commented
lines next to session_stall_timeout's example for discoverability.
The fail-fast admission path (bounded compress pool, F6) only logged a
WARNING; in the compression-attempt telemetry stream a wedged pool
looked like compression simply stopped being attempted. Emit the
existing attempt telemetry with failure_class='pool_saturated'
(commit_status=aborted, split_status=aborted) on refusal, following
_emit_compression_attempt_telemetry's existing call shape. Regression
extends the F6 saturation test (sabotage-verified).
The fence-cancel poll loops (sync host wait in conversation_compression,
async hygiene wait in gateway/run) spun at 1kHz while the worker held
the fence through its lock-setup window — which rides SessionDB write
patience and can last seconds. 25ms keeps sub-tick cancel latency
without the spin.
The compression heartbeat's terminal 'context compression completed'
stamp force-persists against the PARENT session id (agent.session_id at
stamp time). After the out-of-place rotation the parent is archived but
kept advertising a fresh last_activity_at + terminal label forever.
Clear the parent row's activity labels best-effort after a committed
rotation (keeps last_activity_at so idle clocks stay continuous; the
child carries live labels). Regression asserts the archived parent's
labels are cleared while the child's lineage is intact
(sabotage-verified).
The last_activity_at/description/provenance columns already live in
SCHEMA_SQL and the column reconciler; existing DBs heal via the
reconciler, but the version stamp must advance so downgrade/upgrade
tooling sees the new layout. No version-literal test assertions exist
(tests compare against the imported constant).
A wedged adapter transport (network hang, dead websocket) previously
blocked _check_session_stalls forever: sibling candidates in the same
pass were never evaluated and the watcher stopped ticking. Wrap the
send in asyncio.wait_for (15s); on timeout log a WARNING and do NOT
latch, so the next tick retries. Regression uses a never-resolving fake
adapter and proves the pass completes, a healthy sibling candidate is
still notified in the same pass, and the watcher ticks again
(sabotage-verified against the unbounded send).
revoke_commit_admission() used to invoke the holder-qualified lease
release unconditionally — including while an admitted commit was still
mutating SessionDB — letting a second compressor acquire the durable
lock mid-commit and interleave with the first commit's writes.
The admission_revoked flag store stays lock-free, but the lease-release
decision now coordinates with the fence lock:
- revoke acquires the fence lock non-blocking; on success no commit can
be in flight (an admitted commit retains the lock until finish_commit)
and the release runs immediately, still under the lock so a racing
begin_commit cannot slip between the check and the release.
- on failure the release is deferred: finish_commit() re-checks
_admission_revoked and performs it AFTER the commit completes (prompt
even if the worker thread is later parked), and the begin_commit
refusal path does the same for a revoke that lost the race to a
transient lock-setup/cancel boundary. All paths are idempotent with
the worker's own outer cleanup (DB release is holder-qualified).
Invariant encoded + tested: no second compressor can acquire the durable
lock while an admitted commit is still mutating; after a post-revoke
commit finishes the lease is released promptly. Both regressions
(revoke-during-commit deferral, revoke-before-commit immediate release +
refused begin_commit) are sabotage-verified.
Rebase onto origin/main brought in 'let explicit interrupts cancel safely',
which predates this branch's pooled progress-timeout + F1-F6 fence rework.
Reconcile the two:
- begin_commit(cancel_event) re-checks the hard-cancel Event under the
fence lock again (lost in the mechanical rebase).
- compress_context: restore aux_interrupt_protection around the summary
call, the post-return frozen-cause AuxiliaryExplicitCancellation check,
and the full rollback/telemetry handler for explicit interrupts.
- run_agent._compress_context: recreate the per-attempt fence registration
(_active_compression_commit_fence) that hard_interrupt() uses to
serialize cancel admission, and thread that exact fence through both
the direct and pooled paths (run_compress_context_with_progress_timeout
now accepts an external fence).
- test: the pooled worker isolates the live transcript (F3), so the
hard-interrupt rollback regression mutates the engine's input snapshot
rather than reaching around it to the caller's list.
Same hermetic-CI trap the concurrent-fork suite already guards against:
without credentials the one-time feasibility probe aborts compression
before the stubbed engine starts, so the F3/F4 blocked-state assertions
went vacuous-false in CI while passing on credentialed dev machines.
- Config docs now describe session_stall_timeout precisely: a RECOVERY
notifier for an in-process AIAgent with an adapter-queued follow-up —
not a general gateway/session stall detector — with a per-AIAgent scan
cadence (not globally coordinated per durable session).
- import_sessions documents the deliberate export-includes /
import-resets asymmetry for the activity fields (no resurrected
'working' labels on machines where no agent runs), with a regression
pinning both halves.
- Strip trailing whitespace in contributors/emails/fangliquan@qq.com
(git diff --check housekeeping).
PR #76354 review, scope/contract items + housekeeping.
The stall watchdog gathered pending/activity candidates and later sent
the recovery notification from that aging snapshot — an agent that made
progress (or drained its queue) between the scan and the send received a
false stall notice mid-recovery.
Re-read the adapter pending slot, the overflow queue, and the live
activity snapshot immediately before delivery; abort the send and re-arm
the latch (pop it) when the candidate is no longer stale, so a future
genuine episode still notifies.
Race regressions: progress between scan and send aborts delivery;
pending-drained between scan and send aborts delivery; a genuinely
still-stale candidate is still delivered exactly once.
PR #76354 review, 'watchdog can send /new using a stale snapshot' /
merge gate 8.
Activity heartbeat writes and turn-end label clears ran synchronously on
the response-critical path with the full ~20s routine write-patience
budget — under contention an otherwise-finished reply could stall for
seconds just to update observation labels, mimicking the very stall the
watchdog detects.
touch_session_activity and clear_session_activity_labels now use a
dedicated 0.5s patience budget (they are observation-only; the next
heartbeat window retries naturally), and a no-op label clear (labels
already empty) skips the write transaction entirely.
Regressions: with another connection holding BEGIN IMMEDIATE, both writes
give up well under the routine budget; the no-op clear performs zero
write transactions.
PR #76354 review, 'activity writes are synchronous on critical paths' /
merge gate 9.
Both progress-aware waits (sync compress wrapper and gateway session
hygiene) slept a FULL idle interval and only then compared progress, so
progress early in an interval let silence approach 2x the configured
idle timeout before the waiter noticed. Compute each wait slice as
idle_timeout - elapsed_since_last_progress instead.
Regression: a worker that reports progress early and then goes silent is
timed out in ~1x the idle budget, not ~2x.
PR #76354 review, 'idle timeout can allow nearly twice that silence'.
The process-wide 4-worker pool retained the stdlib executor's unbounded
queue: four hung summaries wedged every slot, a fifth compression queued
silently, waited out its whole budget without starting, and remained
eligible to run later as an expensive stale job whose fence was already
cancelled (the first fence check used to sit AFTER the summary call).
- Bounded admission: submission fails fast (messages returned unchanged,
loud warning) when all pool slots are occupied; slots are freed by a
future done-callback. Recovery contract documented at the constant: new
work fails fast while wedged, wedged workers are fence-cancelled and
restore service when they return; a worker that never returns costs its
slot — bounded, observable degradation instead of unbounded queueing.
- Not-yet-started futures are cancel()ed on timeout.
- The cancelled fence is checked BEFORE any expensive summary work, both
in the pooled wrapper (stale queued job) and inside compress_context
(pre-summary gate), so a stale job never burns an LLM call or acquires
session state.
Saturation regression: 4 event-blocked summaries wedge the pool, a 5th
submission fails fast (asserted while the four are provably still
blocked), the refused job never runs after worker recovery, and a fresh
submission after recovery succeeds.
PR #76354 review, blocking finding 6 / merge gate 7.
Session rotation runs on the pooled worker thread, whose copied context
gets the child id — the CALLER's ContextVar still holds the parent, and
get_session_env() prefers a bound ContextVar over os.environ. Tools and
subprocesses invoked on the caller thread after a compression.in_place=false
rotation therefore saw the STALE parent HERMES_SESSION_ID.
After the pooled wrapper returns, rebind the session id in the caller's
own context (set_current_session_id) alongside the existing logging
repair; idempotent when no rotation happened.
Behavioral regression: with the gateway-style bound session context, a
post-compression get_session_env("HERMES_SESSION_ID") read on the caller
thread now returns the child id.
PR #76354 review, blocking finding 5 / merge gate 6.
A host timeout previously left the timed-out worker holding the durable
per-session compression lock AND refreshing its lease indefinitely, so a
truly hung summary blocked every later compression attempt; and a LATE
successful summary could clear the failure cooldown the host had just
recorded.
Transplant the lease-cancellation invariants from PR #71569
(@ciabata-git): the worker publishes an idempotent, holder-scoped release
hook on the fence once it owns the durable lock (begin_lock_setup /
register_cancelled_lock_release close the acquire→publish race), the
refresher start is serialized against the release path, and the host
invokes the hook on idle timeout, hygiene timeout, and every unwind
(revoke_commit_admission now also releases). ABA safety: the SessionDB
release is holder-qualified (DELETE ... WHERE holder = ?), so a stale
release can never free a replacement holder's lease.
State ordering: the compressor consults a fence-cancellation check BEFORE
clearing the failure cooldown, so a late worker cannot undo the host's
timeout cooldown; the check is installed only for the fenced call and
removed in a finally.
Regression implements the reviewer's exact 5-step scenario: summary
blocked indefinitely → host timeout → a NEW compressor acquires the
durable lock while the old summary is STILL blocked → old worker released
→ it cannot clear cooldown, release the new holder's lease, or publish
stale state.
PR #76354 review, blocking finding 4 / merge gates 4 + 5.
Co-authored-by: ciabata-git <ciabata-git@users.noreply.github.com>
The pooled worker closure captured the caller's live `messages` list and
compress_context explicitly supports plugin/legacy context engines that
mutate that list in place — so after a host timeout, a late engine could
rewrite the live conversation (roles, ordering, persisted content)
concurrently with the resumed turn.
The worker now deep-snapshots the transcript on the worker thread before
any engine code runs; the caller's list object is never handed to pooled
code. Results reach caller-visible state only through the returned value
of an ADMITTED commit (the host discards results on timeout/cancel), and
durable SessionDB mutation was already gated behind the commit fence.
No-op passes map the unchanged snapshot back to the caller's original
list so identity-based no-op detection and flush dedup keep working.
Document the thread-safety contract for context-engine and
memory-provider extension points (they now run on pooled threads) in the
module docstring and the context-engine plugin guide.
Regression: an in-place-mutating engine plus host timeout proves the
caller's live transcript is byte-identical WHILE the worker is still
blocked inside the engine (released only after the assertions).
PR #76354 review, blocking finding 3 / merge gate 3.
The sync compress wrapper only handled concurrent.futures.TimeoutError;
KeyboardInterrupt, task cancellation, or any other exception while
waiting let the host unwind while the detached worker kept full commit
authority — it could later enter the commit fence and mutate durable
state (in-place archival, session rotation) behind the caller's back.
Wrap the whole host wait in try/finally: any exit that did not settle the
worker (returned result or won the fence race) revokes future commit
admission via a new lock-free CompressionCommitFence.revoke_commit_admission()
(begin_commit re-checks the flag under the fence lock, so no admitted
commit is ever abandoned mid-mutation). The gateway hygiene wait gets the
same guarantee via a BaseException handler that revokes admission and
defers helper cleanup until the worker actually returns.
Reconciliation with PR #74449 (suparious): that PR routes EXPLICIT host
interrupts into auxiliary-call cancellation; this change is the
complementary host-side guarantee that no unwind — explicit or not —
leaves an unfenced worker. The two compose (fence revocation here is the
outer safety net; #74449's aux cancellation remains the fast path) rather
than duplicating one another.
Regressions: KeyboardInterrupt and generic-exception unwinds assert the
fence is revoked WHILE the worker is still blocked pre-commit, then
release the worker and prove begin_commit() is refused.
PR #76354 review, blocking finding 2 / merge gate 2.
begin_commit() retains the fence lock until finish_commit(), so a hung
SessionDB commit made try_cancel_before_commit() return None forever and
the host spun ahead of the overrun-warning loop — a genuinely hung commit
stayed unbounded AND silent. Add a lock-free phase marker (threading.Event
set inside begin_commit while the lock is held, readable without it) and
break the host spin on commit_in_flight so the bounded overrun loop — and
its WARNING + on_commit_overrun surfacing — is reachable WHILE the commit
is still blocked. Applies to both the sync compress wrapper and the
gateway session-hygiene wait.
Regression asserts the warning and callback fire while the event-gated
fake commit is still blocked; the test releases the worker only after
those assertions (addresses helix4u's released-before-asserting callout).
PR #76354 review, blocking finding 1 / merge gate 1.
The stubbed-compressor fixture still let the one-time compression-model
feasibility probe run inside the first _compress_context call. On machines
with real credentials configured, that probe resolves a live auxiliary
provider (credential pool seeding, Copilot token exchange over HTTPS),
which nondeterministically exceeds the 2s event-timing budget in
test_fence_cancelled_compression_leaves_lock_reacquirable (reproduced on
PR #73031's own head). Mark the probe done in the shared fixture: these
tests exercise locking/fencing/rotation, never aux feasibility. Suite
runtime drops from ~90s to ~4s.
Heartbeat write discipline for the durable SessionDB activity projection:
- Pin the cadence in a named constant
(SESSION_ACTIVITY_HEARTBEAT_MIN_INTERVAL_SECONDS = 60s, contract >= 30s,
deliberately config-independent so no compression.*/agent.* setting can
turn the heartbeat into a high-frequency writer on the contended
SessionDB write path).
- The write already rides the standard _execute_write patience path via
SessionDB.touch_session_activity — verified, now documented in the
docstring.
- Best-effort hardening: a failed heartbeat write never raises into the
agent loop; the bare 'pass' becomes an explicit debug log with traceback.
- Tests: direct proof that a heartbeat DB failure doesn't propagate,
the cadence constant is pinned >= 30s, and the rate limiter keys off
the shared constant (boundary tested on both sides of the window).
The post-begin_commit() waiter previously called unbounded future.result(),
so the advertised compression.context_total_ceiling_seconds was silently
unenforced for commit-phase hangs. The commit still must complete (abandoning
an in-flight SessionDB mutation would diverge live messages from durable
state), but the wait is now bounded in increments against the remaining
ceiling: on ceiling breach the overrun is logged (WARNING escalating to
ERROR), surfaced once through the user-visible warning channel via the new
on_commit_overrun callback (wired to _emit_warning in run_agent.py), and the
host keeps waiting in bounded slices until the commit finishes.
Documented guarantee (config comment + docs, en/zh): summary phase bounded
by the ceiling; commit phase logged + surfaced if it exceeds it — never
silently hung, never abandoned mid-commit.
Test updated to assert the surfacing fires (previously accepted a silent
over-ceiling wait); adds coverage that a raising overrun callback cannot
break the commit wait.
Once begin_commit() wins, SessionDB mutation cannot be fence-cancelled;
document that context_total_ceiling_seconds covers the summary phase only
and pin the hang-wait contract in tests.
Host progress timeout leaves compress_context running on a daemon worker while
the live turn continues. Latch heartbeat silence on fence cancel or terminal
timeout/cooldown provenance so a later UNKNOWN stamp cannot re-arm
agent.compression and poison stall clocks.
compress_context now runs on a daemon pool worker thread (via
run_compress_context_with_progress_timeout). The session id rotation
updates hermes_logging._session_context (a threading.local) on the
WORKER thread, not the caller thread. After the wrapper returns,
propagate self.session_id back to the caller's logging context so
subsequent log lines carry the rotated id (#34089).
Fixes CI failure in test_compression_logging_session_context.
Three code-reuse fixes applied during salvage:
1. Reuse _relative_time from hermes_cli/main.py instead of duplicating
the relative-time formatting logic in hermes_cli/status.py.
2. Extract _stamp_hygiene_compression_provenance helper in gateway/run.py
to deduplicate the two nearly-identical try/except blocks that stamp
compression timeout/abort provenance in the hygiene path.
3. Add ContextCompressor.record_timeout_failure() method and use it from
the in-agent compress_context timeout callback instead of re-implementing
the (60, 300, 900) cooldown ladder inline. The existing summary-LLM
exception handler already has this ladder — now both paths share one
method.
Three mechanisms to detect and notify when gateway sessions stall silently:
1. Mid-turn activity heartbeats stamped to SessionDB so hermes sessions list
and hermes status show progress during long turns without new message rows.
2. Stall watchdog: when a busy session has pending inbound and the shared
activity clock is idle past agent.session_stall_timeout (default 300),
log a WARNING and notify the user once to try /new. Notify-only; does
not kill the turn.
3. Compaction timeout: fenceless compress_context callers get a progress-aware
host budget (compression.context_timeout_seconds default 120 idle,
compression.context_total_ceiling_seconds default 600 ceiling). On timeout,
cancel via commit fence, skip compaction without dropping messages, and
continue the turn.
Closes#72016 (slices 1-3; slice 4 cumulative SSE stream-retry deadline
remains a follow-up).
Cherry-picked from PR #72424 by @fangliquanflq.
Every tool schema ships on every API call. The terminal schema was
5,641 chars (~1,410 tokens) and execute_code 2,842 (~710) — the two
largest core tools, padded with repeated war stories and triple-stated
rules. Schema token audit across 88 tools: ~33k tokens total.
This trims prose while preserving every hard rule (each still stated
exactly once):
- terminal description 2,324 -> 1,233 chars: tool-redirect lines
collapsed to one sentence; background/notify guidance deduplicated
(was stated in desc + 2 params); PTY/pager rules merged.
- background/notify_on_complete/watch_patterns params 692/508/1,114 ->
~330/250/490 chars: kept the mutual-exclusion contracts, the
rate-limit consequence, and the bounded-vs-long-lived distinction;
dropped narrative repetition.
- execute_code description tightened (helper docs inlined to one line
each; when-to-use kept).
Net: terminal schema 5,641 -> 3,386 chars, execute_code 2,842 -> 2,522
— ~700 tokens saved on EVERY request with the terminal+code toolsets.
One test updated (pinned a removed phrase; now pins the rule's new
phrasing).
Truncated terminal output was information LOSS: the middle was gone
and the only recovery was re-running the command (data: 1,394
truncation markers in a 250k-call window, with re-runs and grep
retries chained behind the big ones).
Truncation is now deferred retrieval (opencode/goose/qwen-code
pattern, codex's original_token_count idea):
- tools/environments/base.py: _BoundedOutputCollector gains an
optional spill tee — when foreground output overflows the capture
window, the FULL stream is teed to
~/.hermes/cache/terminal-output/out-*.log (lazy file creation with
backlog backfill, 5MB hard cap, 7-day opportunistic cleanup,
disk errors never break execution). All three _wait_for_process
returns attach {output_total_chars, full_output_path} via a shared
finalizer.
- tools/terminal_tool.py: redacts the spill with the same
redact_terminal_output pass as the visible output (no secret
persists unmasked), then surfaces output_total_chars,
full_output_path, and a truncation_note pointing at
search_files/read_file instead of a re-run.
Non-truncated results are byte-identical; internal unbounded
consumers (file-ops cat reads, RPC reads) are untouched (spill only
arms with bounded_capture=true).
'Found N matches for old_string' (190+ occurrences in a 250k-window)
previously reported only the count, forcing a re-read of the file to
find the occurrences before retrying. The error now appends up to 5
'L<line>: <snippet>' rows (80-char cap per snippet, overflow noted),
so the model can disambiguate in ONE follow-up — add neighboring
context or choose replace_all — without the intermediate read.
Applies to both patch modes (replace + V4A) since they share
fuzzy_find_and_replace.
#77128 fixed the orphaned zero-match probe but shipped no tests, so the
same class of break can recur: an early return anywhere in the rg branch
silently makes the whole steering tier unreachable.
Asserts hint wiring per search engine with the probe stubbed to a
sentinel (the probe itself needs rg, so a real-text parity assertion
fails on the grep leg for an unrelated reason), plus the negative case
and the rg newline-warning skip that the early return originally
existed to preserve.
Sabotage-verified against 794d6c434e: restoring the early return turns
4 red; a naive fix that also drops the rg newline guard turns 1 red;
attaching the hint when matches exist turns 2 red.
Integration regression between two merged PRs: #77102's rg-path early
return (added to skip the grep-era line-oriented warning) also skipped
the #77011 zero-match steering probes (case-insensitive, hidden-file,
literal-vs-regex), silencing them on the primary engine. Caught by
#77001's rebased CI run (its branch carried both features together for
the first time).
_search_content now runs the zero-match probe block for BOTH engines
and only exempts the rg path from the legacy line-oriented \n warning
(rg auto-enables --multiline; the grep fallback keeps the explanation).
The check-attribution CI gate kept bouncing salvage PRs because mapping
contributor emails was a manual, easy-to-forget step (bare
<login>@users.noreply.github.com emails don't auto-resolve like the
<id>+<login> form).
- scripts/audit_pr_attribution.py: mirrors the CI gate's logic exactly
(merge-base scan, same skip rules). Report mode for pre-push checks;
--fix auto-resolves via the bare-noreply local part (verified against
the GitHub users API) or GitHub email search, then writes
contributors/emails/<email> files via add_contributor.py. Prints a
confirm-the-human warning on bare-noreply resolution since the local
part is user-controlled (the bryan->hydraxman case).
- contributor-check.yml: failure output + review_status how_to_fix now
lead with the one-command fix instead of hand-editing instructions
(also drops the stale 'edit AUTHOR_MAP' guidance — AUTHOR_MAP is
frozen).
The top execute_code failure shapes in production (state.db mining)
are sandbox-contract confusions, not logic bugs: importing tools that
aren't in the sandbox from hermes_tools (23x in one window, incl.
importing the built-in helpers json_parse/shell_quote/retry), importing
third-party packages absent from the sandbox interpreter (matplotlib
6x), and indexing tool-result dicts as strings. The stderr traceback
alone sends models into re-diagnosis loops.
Failed scripts (exit != 0) now carry one actionable 'hint' field:
- unavailable hermes_tools import -> lists the tools that ARE
importable in this session + points to normal tool calls otherwise;
- built-in helper import -> 'no import needed, call it directly';
- ModuleNotFoundError -> 'sandbox has stdlib only; use terminal() with
the project venv for third-party packages';
- string-indexing errors -> 'tool functions return dicts, do not
json.loads them'.
Bounded 4KB stderr scan, first match wins, never raises; successful
scripts and unknown failures are untouched.
A regex \n (or a raw newline) in a search_files content pattern cannot
match in rg's default line-oriented mode. It previously either
hard-errored ('the literal "\n" is not allowed in a regex' — 17
occurrences in the production window) or, after the newline-warning
patch, returned 0 matches with an explanation — either way the model's
cross-line search intent required a manual workaround.
The rg engine now detects the pattern shape (_pattern_has_regex_newline,
already used by the warning path: odd-backslash \n escape or raw
newline; escaped \\n literals excluded) and enables -U/--multiline up
front, noting the mode switch in the result warning. Plain patterns are
untouched; the old line-oriented explanation is retained for the grep
fallback engine, which has no multiline mode.
skill_view re-sent full skill content on every call: ~286k tokens of
verbatim repeat views in a 400k-msg production window (one session
loaded the same skill 9 times), and a single repeat view of a large
skill costs ~25k tokens.
Mirrors read_file's proven unchanged-stub pattern: a per-task cache
keyed on (resolved name, file_path) with an mtime+size fingerprint of
the served file. On a repeat view of an UNCHANGED file, return a short
stub pointing at the earlier result. This does NOT violate the
skills-are-loaded-fully rule — the stub only ever replaces content
that is already fully present earlier in the same conversation, and:
- any on-disk change (patch, external edit) invalidates the entry;
- context compression clears the cache (wired next to
reset_file_dedup in conversation_compression.py) so post-compression
re-views return full content;
- setup-needed views are never deduped (readiness can change without
the file changing);
- no task_id -> no dedup; caches are task-isolated; 200-entry cap.
Live E2E: repeat view of hermes-agent-dev 99,739 chars -> 374-char
stub.
write_file confirmed only SIZE (wc -c) after writing — never content.
Models compensated by re-reading files immediately after writing them
(154 verify-reads in a 400k-msg production window), and a corrupted
write (truncated pipe, backend FS oddity) could silently pass.
The write path now compares the on-disk sha256 against the intended
content (one shell call). Three outcomes:
- match -> result carries verified: true; the schema tells the model
an explicit contract: do NOT re-read to check the write landed.
- mismatch -> hard error ('The write did not persist correctly'),
mirroring patch_replace's existing post-write verification.
- backend can't hash (no sha256sum) -> flag omitted, write unaffected.
Hashes the shim-adjusted content (after CRLF/BOM preservation) so
Windows-line-ending and BOM round-trips verify correctly; surrogatepass
encoding matches the rest of the codebase's hashing of model text.
When old_string survives all 9 fuzzy strategies without a match but
the closest candidate line matches after stripping whitespace, the
failure is whitespace-shaped (tabs vs spaces, indent depth). The
did-you-mean hint now appends a two-line diagnosis with leading
whitespace made visible:
Whitespace difference detected (→ = tab, · = space):
file has: →def start(self):
you sent: ····def start(self):
Use the exact whitespace shown in 'file has'.
Pattern ported from crush's diagnoseMismatch (agent-codebase survey) —
it converts the residual dead-end error into a one-turn fix. Only the
leading run is visualized (interior spacing stays readable); content-
shaped misses and raw-exact candidates are unchanged.
Unify @null-runner's selector approach with the merged #77019 keepalive:
the reapers now match live delegations by origin UI sid AND (when the TUI
owns the durable lifecycle, never for gateway-viewer tabs, #60609) by the
durable session_key, so a delegation dispatched from an earlier tab of
the same resumed session still keeps it alive. has_live_for_session also
counts 'stalling' to match the #77019 live-state set. Explicit teardown
(_finalize_session) interrupt semantics unchanged.
Follow-up to the recovery-recipe commit on this branch, per review:
instead of only TELLING the model to re-author the payload via
write_file (2 turns), materialize the blocked command to
~/.hermes/cache/blocked-scripts/blocked-*.sh and point the recovery
at it directly: 'saved to <path> - review it, then run
terminal(command="bash <path>")' (1 turn).
Safety posture is unchanged or better:
- Nothing is executed here; the file is only written.
- The bash <path> follow-up goes through the normal execution
pipeline, including the referenced-script content guard, which
inspects script files named in commands - the payload is MORE
visible to policy than it was inline.
- Genuine hardline blocks (destructive ops) never save anything
(test-asserted).
- Save failures fall back to the previous manual write_file recipe.
- 7-day opportunistic cleanup of saved payloads.