Claude Cowork (Aug 6, 2026) added skill & plugin security scanning:
third-party skills and plugins are automatically checked for malicious
content on upload/edit, returning pass/warn/fail. Hermes already scans
hub-installed skills (tools/skills_guard.py), but `hermes plugins
install` cloned and activated arbitrary Git repos completely unscanned —
and plugins run Python in-process, making them the more dangerous
surface.
- tools/plugin_guard.py: plugin-adapted scanner reusing the skills_guard
pattern engine. Exempts the documented provider-plugin patterns (own
requires_env API-key reads, HTTP calls with keys) on code files while
keeping true threat signals (foreign credential-store access, reverse
shells, destructive/persistence/obfuscation patterns, prompt injection
in docs). Plugin-sized structural limits; VCS/venv dirs excluded.
- hermes_cli/plugins_cmd.py: scan the temp clone before it is moved into
~/.hermes/plugins/. safe=install, caution=confirm (interactive prompt
or --force), dangerous=blocked (--force does NOT override). Re-scan on
`hermes plugins update`; a dangerous updated tree is deactivated until
the user reviews the findings. Dashboard install path returns
structured scan_blocked/scan_findings.
- Config gate: plugins.scan_on_install (default true) in config.yaml.
- Validated against all 60 bundled plugins: 57 safe, 3 caution (real
sudo / curl|sh content in their docs), 0 false-positive blocks.
- 15 new tests incl. E2E through _install_plugin_core with real git
clones.
'✓ Update complete!' now shows what the update actually delivered:
'✓ Update complete! (v0.19.4 → v0.20.0)' when the pyproject version
changed, '(v0.20.0)' when commits landed within one release, and the
plain message when the version cannot be read. Reads the on-disk
pyproject.toml (not importlib.metadata, which still describes the old
install after a pull). Applied to both the git and Windows-ZIP paths.
Tracker #79686 P3. Every skill mutation — curator, agent, or user — now
appends one entry to the append-only JSONL ledger at
~/.hermes/skills/.curator_ledger.jsonl, with per-file before/after
manifests whose contents are stored content-addressed (sha256-deduped)
under ~/.hermes/.curator_backups/blobs/.
- tools/skill_ledger.py: append/list/get, blob store, actor derivation
(curator|agent|user), single-entry rollback that takes a pre-rollback
safety entry first and FAILS CLOSED when that capture fails (consistent
with the whole-run tarball rollback hardening from #63366). Path
containment check so a hand-edited ledger can't write outside
HERMES_HOME.
- Hooked all three choke points: skill_manage() dispatch (all actors,
delete intent recorded via absorbed_into/archived evidence),
archive_skill()/restore_skill(), and curator auto-transitions (tagged
actor=curator via a ContextVar override).
- Ledger failures never block the mutation — telemetry, not a gate.
Config gate skills.ledger (default true).
- hermes curator ledger [--skill NAME] [--limit N] and
hermes curator rollback <entry-id> (whole-tree snapshot rollback
unchanged).
- Optional TTL purge of skills/.archive/: curator.archive_ttl_days
(default 0 = never) + explicit hermes curator purge, recorded in the
ledger with before-blobs so purges stay recoverable.
- Docs: curator.md sections on the ledger, single-edit rollback, and
archive TTL purge.
Curator invariants unchanged: only created_by:agent skills auto-transition,
never hard-delete autonomously, pinned exempt; foreground user deletes stay
hard-delete (and are now recoverable via the ledger).
Closes#45778, #50875. Tests adapted from #50261 by @yu-xin-c.
The 'Configure auxiliary models' menu under 'hermes model' now includes a
Delegation entry so the delegate_task subagent model is discoverable and
configurable interactively, instead of requiring hand-edited
delegation.provider / delegation.model keys in config.yaml.
Delegation is not an auxiliary_client task — subagents are full child
agents resolved via tools/delegate_tool.py — so the picker entry writes to
the top-level delegation.* section rather than auxiliary.*. 'auto' (inherit
the parent agent) is persisted as empty strings, never the literal 'auto',
which delegate_tool would try to resolve as a provider name. 'Reset all to
auto' clears only the four delegation routing fields and preserves
non-routing settings like max_concurrent_children.
Per project policy, .env / HERMES_* env vars are reserved for
credentials; behavioural settings belong in config.yaml. Replaces
HERMES_DETERMINISTIC_EMPTY_GUARD and
HERMES_EMPTY_RETRY_COST_THRESHOLD_USD with an additive
agent.empty_response_guard section:
agent:
empty_response_guard:
enabled: true # false = legacy fixed 3-retry behaviour
cost_threshold_usd: 0.25 # per-attempt cost that halves the budget
- hermes_cli/config_defaults.py: new documented subsection under agent
(additive key, no config-version bump needed).
- agent/empty_response_guard.py: resolve_guard_settings() maps the
section to (enabled, threshold) with fail-open tolerance for
malformed values; guard_enabled()/_cost_threshold_usd() now read the
init-resolved agent attributes instead of os.environ.
- agent/agent_init.py: resolves the section once at init into
agent._empty_guard_enabled / agent._empty_guard_cost_threshold_usd,
following the existing tool_use_enforcement extraction pattern.
- Tests updated to config-attr injection; new TestResolveGuardSettings
covering malformed sections, YAML string booleans, bad thresholds,
and a DEFAULT_CONFIG sync check; new integration test proving
enabled:false restores the legacy 1+3-call behaviour.
Requested by isak-ialogics on PR #75115.
Kanban worktree workspaces were never removed by anything: _cleanup_workspace
preserved them by design, the CLI startup pruner explicitly defers t_* trees
to 'hermes kanban gc', and gc only sweeps scratch — so every worktree task
leaked its checkout forever (measured ~130GB on one estate).
- _cleanup_workspace now dispatches worktree workspaces to a new
_cleanup_worktree_workspace, which removes the worktree and its
auto-generated wt/<task-id> branch only when the tree is clean AND every
commit is reachable from a remote-tracking ref (reusing cli.py's
_worktree_is_dirty / _worktree_has_unpushed_commits predicates). Any
doubt preserves the worktree. dir workspaces stay untouched.
- The #33774 active-children deferral now covers worktree parents, and
_try_cleanup_parent_workspaces reaps deferred worktree parents when the
last child reaches a terminal state.
- archive_task reaps workspaces too; tasks archived without completing
previously leaked forever.
- 'hermes kanban gc' gains a backstop sweep for archived worktree tasks
that predate these hooks.
Tests: tests/hermes_cli/test_kanban_worktree_teardown.py (10 cases: removal,
dirty/unpushed/custom-branch/main-checkout/non-git preservation, complete/
archive integration, deferred-parent handoff).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Follow-up to #80451. /api/status cleared gateway_platforms whenever the
gateway process was down — correct for a clean stop (stale 'connected'
states are noise) but wrong for startup_failed, where the fatal entries
ARE the diagnosis: per-profile credential collisions and auth failures
(multiplex '<profile>:<platform>' keys) that the single exit_reason
string cannot express. #80451's writer-identity and freshness filters
already drop entries from other/older processes, so preserving
fatal-state entries here cannot leak another gateway's live state.
Live-validated shape: a real multiplex gateway (2 secondary profiles,
rejected tokens) persists telegram / alpha:telegram / beta:telegram
fatals in gateway_state.json; /api/status previously reported {} for
platforms while state was startup_failed.
Cmd/Ctrl+Shift+B worktree flows on a remote gateway route through the
backend's /api/git mirror (hermes_cli/web_git.py), but that mirror had
drifted behind the Electron-local git ops the same UI drives locally, so
the flows broke exactly and only on remote connections:
- Convert-a-branch: the picker offers remote-tracking refs, and the
Electron op turns "origin/feature" into a local tracking branch. The
mirror ran `git worktree add <dir> origin/feature` verbatim, which
either fails or detaches HEAD. It now resolves the ref's remote via
git (never assuming "origin"), fetches best-effort, and creates the
worktree with `--track -b <short-name>`.
- branch_list omitted remote-tracking refs entirely and never set the
`isRemote` flag the renderer's HermesGitBranch contract requires —
the convert picker on a remote gateway couldn't reach a teammate's
branch and mislabeled every row's action.
- Branching off an `origin/…` base silently wired the new branch to the
remote upstream; the mirror now passes `--no-track` like the Electron
op does.
Renderer side, replace the silent degradation with a capability gate:
when a remote backend predates the /api/git worktree routes, worktree
creation failed with an opaque "Expected JSON … got HTML" toast. The
route-missing shapes now surface a clear "update the Hermes backend"
message (isGitEndpointMissingError, mirroring the sidebar batch-endpoint
detector); real git errors still pass through untouched.
Sibling audit (documented, no code change needed): repo status / review /
file-diff / git-root / default-cwd already route through desktopGit()'s
REST bridge or /api/fs on remote; repo scan is deliberately a no-op there.
Stale comments claiming "empty/false on a remote backend" in projects.ts
and coding-status.ts updated to describe the backend-routed reality.
Fixes#81724
The freshness window (updated_at >= live process create_time - 2s) had a
P1 boundary hole: a stale failure written by the PREVIOUS process
immediately before a fast restart landed inside the slack and was
aggregated; if that platform was then removed, the new process never
replaces the entry and NAS stays degraded indefinitely.
Replace clock heuristics with persisted writer identity:
- write_runtime_status now stamps every platform entry with the writing
process's (writer_pid, writer_start_time) — the same PID-reuse
fingerprint the liveness checks use, so a recycled PID never
masquerades as the original writer.
- The aggregation ownership filter requires exact equality between an
entry's stamp and the profile's validated live gateway process
(get_runtime_status_running_pid + _get_process_start_time). No slack,
no timestamps. Legacy entries without a stamp fail closed.
- Writer stamps are process recon (same class as the auth-gated
gateway_pid) and are stripped from all /api/status projections, both
active-profile and merged cross-profile entries.
Near-boundary regression test: prior-process entry stamped 100ms before
restart is excluded; recycled-pid-different-fingerprint excluded;
legacy no-stamp excluded; current-process entry kept.
Gateway startup deliberately preserves plain platform entries in
gateway_state.json across restarts, and the active-profile endpoint
compensates by filtering against current configuration. The cross-profile
aggregation copied raw maps, so a fatal entry for a platform the operator
had since disabled/removed could keep NAS reporting the instance degraded
indefinitely.
The aggregation has no cheap per-profile config context (platform sets
depend on tokens in each profile's .env behind its secret scope), so use
freshness instead: an entry is aggregatable only when its updated_at is
at/after the live gateway process's create time (validated PID via
get_runtime_status_running_pid + psutil create_time; the record's own
start_time field is a PID-reuse fingerprint in clock ticks, not a
timestamp). Config changes require a restart to take effect, so
restart-anchored freshness is exactly the config filter's semantics.
Fail closed: unparseable timestamps or no live process exclude the entry
— a false 'degraded forever' is the worse failure mode.
- /api/status now folds LIVE independent per-profile gateways' platform
failures (gateway_mode == 'multiple', the OOF-3 deployment mode) into
gateway_platforms under the validated <profile>:<platform> grammar, so
NAS fleet health sees them without a schema change. ?profile= requests
stay unmerged (single-profile view).
- Namespaced-key validation no longer fails open: colon-containing keys
are grammar-checked even when configured-platform loading throws.
- Platform key segment now accepts hyphens, matching plugin platform IDs
(plugins/platforms/<dir> names, e.g. foo-bar).
Since the managed-cron redesign (#84339, v2026.8.13) the dashboard fire
webhook forwards fires to the gateway process and returns 503 when it is
unreachable so NAS/QStash retries. Correct for transient windows — but an
operator-STOPPED gateway can never be fixed by retrying: every fire on
every job burns the full scheduler retry budget, NAS converts each 503 to
a retryable 502, and the resulting storms page on-call for a non-incident
(OOF-266 and its five duplicate tickets; +93% relay callback failures as
the fleet adopted v2026.8.13).
Split the unreachable path by durable operator intent:
- desired_state == "stopped" (written only by the s6 lifecycle commands;
the same intent signal container-boot reconciliation trusts) -> drop
the fire with 200 + a structured log line, mirroring NAS's own
instance_stopped drop. Jobs are not lost: the Chronos provider
reconciles and re-arms every job on the next gateway start.
- Anything else (crash loop, scale-to-zero wake, restart, legacy state
file without desired_state) -> keep the retryable 503, now stamped
with Retry-After: 60 so a scheduler that honors it spaces retries
past the wake/restart window instead of exhausting them inside it.
The gateway's own pass-through 503s (draining) get the same hint.
The intent check fails open (any parse/resolution error -> retryable
path) and is only consulted when the gateway is actually unreachable, so
a stale state file can never shadow a live gateway.
Replaces the plugin-side SOUL.md protocol append: on Bot-Mode-managed
installs (any profile carrying ui_meta['hermes-bots']) the prompt builder
injects the "Messaging other agents" section into every session of every
profile — including headless `hermes -p <bot> chat` sessions a teammate
starts — so bot handoffs work without mutating user-authored SOUL files.
- tools/bot_mode_probe.py: silent-when-unmanaged probe, cached per
(process, home), keyed off the agent's OWN home (not ambient
HERMES_HOME); silent when SOUL.md already carries the legacy section
- agent/system_prompt.py + agent_init.py + config_defaults.py: wired as
agent.bot_mode_protocol (default True), stable tier, byte-stable
across rebuilds (E2E-verified against the real build_system_prompt)
- tui_gateway profiles.list gains bot_mode_protocol capability flag;
the bundled plugin gates ALL SOUL protocol writes on it (backfill,
composeSoul, Edit save) — older gateways keep the SOUL-append path
- overhead: ~916 bytes, only on Bot-Mode installs; zero elsewhere
Supersedes the SOUL backfill half of Hermes-Bot-Mode#99 (credit
@kaduxo — the handle fix, `hermes profile list` correction, and
idempotent-append guards from that PR ship in the bundled plugin).
A same-day version-floor bump (0.20 runtime contract) left every install
with an older cua-driver hard-failing on all computer_use calls: the
start() gate fails closed, while the `hermes update` refresh defers to the
driver's own check-update verb — whose ~20h cache routinely answers "no
update available" right after we raise the floor. Hermes knew it required
0.20+ but never acted on that knowledge.
Two changes:
- tools_config.install_cua_driver(): a contract-failed installed driver is
repaired on the upgrade=True path too (previously only upgrade=False).
The contract failure itself is the confirmation, so the
require_confirmed_update gate and the check-update short-circuit are
bypassed for repairs — an indeterminate or stale-cached check can no
longer pin users on an unusable driver.
- cua_backend.CuaDriverBackend.start(): when the contract gate fails on an
installed binary, attempt one automatic repair per process via the
standard install path, then re-probe. HERMES_CUA_DRIVER_CMD overrides
are never repaired (explicit override is authoritative even when broken)
and a missing binary still just reports the install hint. A failing
installer can't loop: the second start() surfaces the original error.
Tests: contract-repair coverage in test_computer_use.py (auto-repair
success, failed repair surfaces the original error, once-per-process
guard, override never repaired, missing binary never repaired) and
test_install_cua_driver.py (incompatible driver repairs despite an
indeterminate check-update, check-update not consulted). All new tests
verified to fail against the unfixed source (sabotage run).
Live-testing the Cua Driver 0.20 convergence on Windows 11 (session 2,
cua-driver 0.20.0) surfaced three defects in the existing-profile browser
path and in install status.
1. The config grant was silently nullified by an approval bypass.
`--yolo` / `-z` map onto a private unrestricted daemon, which answers every
browser_prepare. Because the host delegated the entire existing-profile
decision to the driver, that bypass also nullified
`computer_use.grant_existing_profile: false`: a plain `hermes -z` attached
to the user's real Chrome profile and read live page content over CDP, with
the driver reporting it as "the approved existing Chromium profile". It was
never approved.
An approval bypass is consent to skip prompts, not consent to read an
existing profile's pages, cookies, and storage. CuaTypedBrowserRoute.prepare
now enforces the key itself, regardless of permission mode. bounded stays
exempt - its reviewed capability manifest is the authorization boundary.
The authorization inputs are resolved in the backend from config and the
backend's immutable mode, never from model-supplied kwargs.
2. The grant, once set, still could not be used.
With `grant_existing_profile: true` the runtime is launched
`--grant existing-profile` correctly, but cua_browser_prepare then hit a
runtime approval prompt anyway - re-asking the user to authorize what the
config already authorized, and making the documented opt-in unusable on any
non-interactive run, where the prompt has nobody to answer it and the call
dies on approval timeout. The durable, file-backed grant now stands in for
that prompt. Scope is narrow: only the existing-profile prepare, only when
the grant is present; isolated launches still prompt and any resolution
failure falls closed to prompting.
3. `computer-use status` hid a custom override and spliced its output.
With HERMES_CUA_DRIVER_CMD pointed at cmd.exe, status printed the child's
multi-line banner and prompt inside the one-line version field, never
mentioned the override, and advised `hermes computer-use install` - which
install itself (correctly) refuses to run against an overridden path. It now
names the override and mirrors install's update-or-unset guidance, and
version output is reduced to one bounded line.
Verified on the reported host: `-z` existing-profile attach now refuses and
names the key; `grant: true` no longer prompts (33s vs a 300s approval
timeout); status names the override and prints one line. No change to the
reconciliation path - driver SHA256 unchanged end to end.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Mirror the strict unit-name shape from the hermes-serve gate (review on
PR #83595) on the gateway side too: the discovery gate and the SIGUSR1
eligibility helper now accept only `hermes-gateway.service` or the
`hermes-gateway-<profile>` family, so a near-prefix unit like
`hermes-gatewayd.service` can neither enter the restart path nor be sent
a SIGUSR1 it does not handle.
Review on #83595 flagged two service-lifecycle gaps in the hermes-serve
restart support:
- The unit-name gate accepted anything starting with "hermes-serve",
which also matched the unrelated hermes-server.service. Require the
exact base unit or the hyphenated profile family instead.
- The fleet-restart loop and _finish_dashboard_update_cleanup() could
both restart the same hermes-serve unit — the loop restarts it
directly, then cleanup's PID scan finds the fresh process and
restarts its owning unit again. Thread the fleet loop's restarted
unit names through to _kill_stale_dashboard_processes() so it skips
units already handled.
hermes update discovered and restarted hermes-gateway* systemd units but
never looked for hermes-serve* — the Desktop app's backend — so it kept
running stale pre-update code until the user restarted it by hand (#83438).
Extend the systemd unit discovery/restart loop to also match hermes-serve*
units. They don't wire SIGUSR1 to a graceful drain (only gateway/run.py
does), so restart eligibility for the graceful path is now gated on unit
name via a small, directly-tested helper; hermes-serve units fall straight
to the existing blunt systemctl restart path, matching the workaround the
issue already documents.
Widen PR #87757 to cover the ZIP path: _update_via_zip() also calls
_finish_dashboard_update_cleanup() but never runs _reload_config_modules,
so the Windows git-broken fallback would still crash with the same
ImportError (cannot import name 'bounded_probe_run' from the stale cached
hermes_cli._subprocess_compat).
- new _reload_process_scan_modules() called inside
_finish_dashboard_update_cleanup itself, so every current and future
call site is covered; reloads dependency-first
(_subprocess_compat, then dashboard_procs)
- reload failures log at warning (a miss surfaces seconds later as an
ImportError in the same process)
- regression tests: reload-before-kill ordering, node-failure skip,
stale-module symbol restoration (the exact #87134 boundary state),
nonfatal reload failure, and the #87757 reload-list contract
hermes update runs in the PRE-pull Python process. After git pull updates
source files on disk, modules already in sys.modules still hold the OLD
code. The existing _reload_config_modules() reloaded only config modules,
but the post-update dashboard cleanup path (_finish_dashboard_update_cleanup
-> _scan_dashboard_processes) imports hermes_cli._subprocess_compat lazily;
a new symbol added there (e.g. bounded_probe_run) is invisible to the
cached module object, causing ImportError during the cleanup step.
Extend the reload list to include hermes_cli._subprocess_compat and
hermes_cli.dashboard_procs so the cleanup uses freshly-pulled code.
Follow-up to #87400: drop the max_iterations and prompt_file knobs from
auxiliary.background_review. The aux model routing (provider/model/
base_url/...) predates #87400 and stays; the enabled switch and the
usage telemetry stay. The fork's iteration budget returns to the
historical hardcoded 16.
Persist fork token usage under session_model_usage task=background_review,
emit a per-fork completion log line, and expose enabled/max_iterations/
prompt_file so operators can see and bound the automatic review cost.
Address review feedback: load auxiliary.background_review once per spawn,
classify completion logs by summarize action prefixes, treat explicit
api_call_count=None as the documented default of 1, and WARNING on the
fail-open enabled-gate path.
subprocess.run(capture_output=True, timeout=N) is not hang-safe on
Windows: after the timeout fires, run()'s cleanup kills the direct child
and then joins the pipe reader threads with an UNBOUNDED communicate().
A descendant (conhost.exe under wmic/powershell) holding duplicated pipe
handles keeps the pipes from EOF and the join never returns.
_scan_gateway_pids() runs its wmic / Get-CimInstance Win32_Process scans
exactly that way, and on machines where the full process scan genuinely
exceeds its 10/15s budget (cold WMI on first boot, ARM VMs, heavy
Update/AV activity) hermes update wedged forever inside
_pause_windows_gateways_for_update() before printing a single line —
observed live on a fresh Windows 11 ARM64 VM with a faulthandler stack
pinning the main thread in subprocess._communicate and only a conhost.exe
child surviving. The single-flight update lock then blocks retries until
the wedged process is killed by hand.
This is the same deadlock class bounded_git_probe already fixed for git
probes (#68609 / #66037). Generalize that proven pattern into a shared
bounded_probe_run() — explicit communicate(timeout), kill_process_tree on
failure, bounded 1s drain, then abandon the daemonic readers — and
migrate the whole call-site class onto it:
- hermes_cli/gateway.py _scan_gateway_pids (the site that hung; reached
from hermes update, cron, gateway restart/status, dashboard)
- hermes_cli/dashboard_procs.py wmic scan (same shape, reached on update)
- hermes_cli/claw.py tasklist + PowerShell probes (same shape; its
try/except cannot catch a hang because a hang raises nothing)
- bounded_git_probe now delegates to bounded_probe_run (identical
contract, one copy of the cleanup logic)
Unlike bounded_git_probe, bounded_probe_run returns the CompletedProcess
(or None) rather than collapsing to stdout, because the gateway scan
branches on returncode to trip its wmic -> powershell fallback.
Tests: tests/hermes_cli/test_bounded_probe_run.py covers success,
nonzero-exit passthrough, spawn failure, bounded timeout (fails against
the old unbounded semantics — verified by sabotage), errors= decoding,
DEVNULL stdin, POSIX process-group placement, and the bounded_git_probe
delegation contract. Existing test_git_probe_tree_kill.py passes
unchanged against the delegated implementation.
Closes#87134
Response to AI review (Enough1122) on #86812:
1. `_create_titled_session`: log the underlying exception before returning
None so programmatic callers aren't left with an undebuggable "could
not be created" — failures (DB lock, I/O, import) now land in errors.log
via logger.exception.
2. Drop the source-reading `TestSourceGuard` — it violated the repo's
"never read source code in tests" rule and was a change-detector
(passed even if behavior regressed). The stderr routing is already
covered by the real-path `test_missing_session_fails_on_stderr`.
3. Bare `-c` + `--create-if-missing` now prints a stderr note explaining
the flag needs a session name, instead of silently ignoring it — makes
the no-op self-evident to programmatic callers.
Tests: 6 targeted + 8 adjacent, all passing.
`hermes chat -c "<title>" -q "<text>"` silently no-oped when no session
matched the title under quiet/programmatic use: the not-found message was
written to stdout (the channel quiet callers parse as the final response),
so a background send to a not-yet-existing named session vanished with no
error. Surfaces via Hermes-Bot-Mode bot-to-bot handoffs (#86794).
- not-found message now goes to stderr (exit 1 unchanged), so programmatic
callers always see it even with -Q/--quiet
- new --create-if-missing: with `-c <title>` and no matching session, create
a fresh session carrying the title and proceed — the deterministic
"send to this named thread, making it if needed" primitive plugins asked for
- extract the -c resolution block into _resolve_continue_arg for testability
Tests: flag parsing, titled-session creation, stderr routing, source guard.
The previous except Exception silently fell back to os.getenv if the
_scoped_key_env import ever failed — under multiplex that is exactly the
fail-open this PR removes (secondary profiles would regress to 'No LLM
provider configured' with zero trace). Catch only ImportError, log a
WARNING naming the consequence, and let any other failure propagate.
Also replaces the lambda fallback with a named nested function.
resolve_provider's auto path read provider API keys with bare
os.getenv — under multiplex a secondary profile's keys live only in its
secret scope, so auto-detection found nothing and every secondary
profile with model.provider: auto failed with 'No LLM provider
configured' at agent init (reproduced on a live 7-profile gateway).
Route both env-key reads (the OPENAI/OPENROUTER tier and the
PROVIDER_REGISTRY loop) through _scoped_key_env, the scope-aware helper
auxiliary_client already uses: secret scope wins under multiplex,
UnscopedSecretError falls back to os.environ (default-profile/CLI
paths unchanged). Same bug class as #86905.
Verified in a gateway-accurate simulation (hermes_home_override +
profile scope): resolve_provider('auto') now returns the secondary
profile's own provider (deepseek) instead of erroring.
The Bedrock API-key flow stored the bearer token in OPENAI_API_KEY and set
a bare `provider: custom`. Since #28660 that variable is only honoured for
openai.com hosts, so for bedrock-mantle.*.api.aws the token was dropped and
requests went out with api_key="no-key-required", a 401 on every call.
Write a named `providers.bedrock-mantle` entry with
key_env: AWS_BEARER_TOKEN_BEDROCK instead. The named-provider branch in
runtime_provider.py resolves key_env; the bare-custom branch cannot.
Fixes authentication only. Per-model mantle route selection is separate.
`hermes config set` and JSON-mode editor saves store lists as quoted
strings (e.g. '["skill-a","skill-b"]' or "['memory']"). Both disable
filters treated such a string as a single name, so curated disable
lists silently filtered nothing with zero diagnostics.
Add parse_config_string_list() in agent.skill_utils and use it in
_normalize_string_set (skills.disabled / platform_disabled) and at
every agent.disabled_toolsets read site: tools_config resolve +
reconcile, CLI, gateway agent construction (both sites), cron
scheduler, and prompt_size. A scalar string still names a single
entry (#13026); malformed JSON falls back to the single-name
behavior instead of raising.
Fixes#86661
Commit 4c34eeb416 fixed dead Ctrl+C by removing the Kitty protocol push
(CSI >1u) from _EXTENDED_ENTER_KEYS_SEQ, keeping only modifyOtherKeys
level 2. That regressed kitty-the-terminal completely: kitty removed
xterm modifyOtherKeys support (kovidgoyal/kitty#4075) and only speaks
its own protocol, so after the removal kitty users lost Shift+Enter and
every other extended key — the CSI >4;2m we still pushed is a no-op
there (kitty even logs a PARSE ERROR for it).
The original reason for removing the push is obsolete: #87511 mapped
CSI-u control sequences, so Ctrl+C as ESC[99;5u now parses to
Keys.ControlC and fires the existing c-c binding. (The kernel-INTR
concern in that commit was moot — prompt_toolkit's raw mode clears
ISIG, so Ctrl+C is always handled by the binding, never the kernel.)
Restore the dual push (CSI >1u + CSI >4;2m), exactly mirroring the Ink
TUI, and complete the alias table for what the kitty disambiguate flag
actually emits — #87511 left real gaps, some of which its PR body
wrongly claimed were covered:
- Esc key: ESC[27u (+ modifiers) — previously leaked '[27u' as text
- Ctrl+Backspace -> backward-kill-word (#78285 was closed on the wrong
claim that codepoint-127 mapping existed; it did not)
- Shift+Space -> space (#86866's second symptom; the Ctrl+Space
mapping never covered modifier 2)
- Alt+Enter -> newline tuple; Shift+Tab -> BackTab; Ctrl+Tab -> Tab;
Alt/Shift+Backspace
- Multi-modifier letters (Shift+Alt 4, Ctrl+Shift 6, Ctrl+Alt 7,
Ctrl+Alt+Shift 8) normalized onto their Ctrl/Escape-prefix targets,
both unshifted (kitty) and shifted (mok emitters) codepoints
- Kitty PUA functional keys: keypad -> non-keypad equivalents,
F13-F24, and Ignore for lock/media/modifier-event keys so they are
consumed instead of leaking (kitty emits these even in legacy mode)
Also: clear the VT100 parser's prefix cache after installing (stale
answers could misparse), and re-push extended keys after
_recover_terminal_input_modes' reset — the recovery previously popped
both modes mid-session and never re-enabled them, silently killing
Shift+Enter until restart.
Refs #87511, #87074, #56684, #56645, #78285, #86866, #87390.
The Nous Subscription image_gen row carries imagegen_backend="fal", so
_reconfigure_provider's post-model-picker step ran
img_cfg["use_gateway"] = False
unconditionally at two sites, immediately after the managed branch had
written use_gateway=True. A user who picked Nous Subscription and then
re-entered `hermes tools` to change the model was silently flipped onto
their personal FAL_KEY.
Same bug class as fe63353cb, which fixed the plugin-provider selector
but missed these two legacy-backend sites in the reconfigure flow. Both
now write bool(managed_feature), matching the existing correct site in
_configure_provider.
Adds regression tests driven through the real TOOL_CATEGORIES managed
row; sabotage-verified (tests fail with the old behavior restored).
Each configured server row on the MCP Capabilities page now shows what it
costs and whether it earns its keep:
- ~per-call token estimate of the server's tool schemas, summed over ENABLED
tools only (ceil(schema_chars/4) via the existing include/exclude filter)
- 30-day usage count from getUsageAnalytics(30), cached per scope profile
like the Toolsets tab's toolCallsCache, mapped to servers via the
mcp__<server>__<tool> registry-name convention (tools/mcp_tool.py)
- a subtle muted "unused" pill on enabled, probed-ok servers with nonzero
schema cost and zero 30-day uses — never a dialog
Backend: the /api/mcp/servers/{name}/test probe now fills an additive
per-tool `schema_chars` (length of the SAME converted registry schema the
agent registers). Older backends omit it → renderer shows counts only;
older renderers ignore the extra key. Display-only: nothing changes what
schemas are sent to models, no config knobs.
i18n keys (costTokens/usage30d/unusedPill) added to types/en/zh/zh-hant/ja
(ar inherits en via defineLocale overrides). Pure math lives in
lib/mcp-cost.ts with unit tests; Python wire shape pinned in
tests/hermes_cli/test_web_server_profile_unification.py.