The s6-overlay migration replaced every runtime use of gosu with
s6-setuidgid (in stage2-hook.sh, main-wrapper.sh, per-service run
scripts, and cont-init.d hooks), but the gosu binary itself was still
being copied into the image from tianon/gosu, and several comments
across the repo still pointed to it.
Image changes:
- Drop the FROM tianon/gosu:1.19-trixie AS gosu_source stage
- Drop the COPY --from=gosu_source /gosu /usr/local/bin/ layer
- Net: one fewer base-image pull, ~12-15 MB layer eliminated
Documentation/comment refresh (no behavior change):
- Dockerfile: update root-user rationale comment + cont-init.d comment
- docker/main-wrapper.sh: drop "pre-s6 contract (gosu drop)" reference
- docker-compose.yml: update UID/GID remap comment
- .hadolint.yaml: update DL3002 ignore rationale
- website/docs/user-guide/docker.md: privilege-drop helper is s6-setuidgid now
- hermes_cli/config.py: docker_run_as_host_user docstring
tools/environments/docker.py runs *arbitrary user images* via the
terminal backend, not the bundled Hermes image. It still needs SETUID/
SETGID caps so user images that use gosu/su/s6-setuidgid all work.
Renamed the cap-list constant _GOSU_CAP_ARGS → _PRIVDROP_CAP_ARGS and
updated comments to list s6-setuidgid alongside the others as examples.
The matching test (test_security_args_include_setuid_setgid_for_gosu_drop
→ test_security_args_include_setuid_setgid_for_privdrop) was renamed
and its docstring updated; behavior is unchanged.
Verification:
- hadolint clean against .hadolint.yaml
- shellcheck clean against all docker/ shell scripts
- Image rebuilt successfully (sha 1a090924ccea)
- Docker harness: 19 passed in 41.87s (every Phase 0 test + Phase 4
per-profile-gateway lifecycle + container-restart reconciliation)
- tests/tools/test_docker_environment.py: 23 passed (rename did not
break test discovery; pre-existing unrelated mock warning)
The plan document (docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md)
intentionally retains its historical references to gosu — it describes
the pre-s6 entrypoint as background for understanding the migration.
Phase 4 of the s6-overlay supervision plan. Activates the Phase 3
S6ServiceManager by hooking it into the profile lifecycle and the
`hermes gateway start/stop/restart` dispatcher, and adds a cont-
init.d-time reconciliation pass that survives `docker restart`.
Task 4.0 — container-boot reconciliation:
/run/service/ is tmpfs, so every `docker restart` wipes every
per-profile gateway slot. /etc/cont-init.d/02-reconcile-profiles
invokes hermes_cli.container_boot.reconcile_profile_gateways() on
every boot, which walks $HERMES_HOME/profiles/<name>/, reads each
gateway_state.json, recreates the s6 service slot, and auto-starts
only those whose last state was 'running'. Other states
(stopped, starting, startup_failed, missing) register the slot
in the down state — avoiding crash-loops across restarts for a
gateway that was broken last boot. Per-profile outcome is recorded
to $HERMES_HOME/logs/container-boot.log.
Implementation: hermes_cli/container_boot.py + 12 unit tests.
Profile-marker is SOUL.md, not config.yaml, because `hermes profile
create` only seeds SOUL.md by default (config.yaml comes from
`hermes setup`).
Task 4.1 / 4.2 — profile create/delete hooks:
hermes_cli/profiles.py::create_profile now calls
_maybe_register_gateway_service(<canon>) at the end, which routes
through ServiceManager.register_profile_gateway when running on s6
and no-ops on host backends. delete_profile mirrors with
_maybe_unregister_gateway_service. _allocate_gateway_port produces
a deterministic SHA-256-derived port in [9200, 9800).
Task 4.3 — gateway dispatch + remove rejection arms:
_dispatch_via_service_manager_if_s6(action) intercepts
start/stop/restart at the top of each subcommand and routes them
through S6ServiceManager.{start,stop,restart}. The pre-Phase-4
`elif is_container():` rejection arms are kept as fallback for
pre-s6 containers / unsupported runtimes, but only ever fire when
detect_service_manager() != 's6'. install/uninstall under s6
print informational guidance pointing users at profile create/delete.
Removed the two xfail(strict=True) markers from
tests/docker/test_profile_gateway.py — both tests now pass strictly.
Task 4.4 — status reporting:
get_gateway_runtime_snapshot() reports
Manager: 's6 (container supervisor)' inside an s6 container instead
of 'docker (foreground)'.
Plan-vs-reality drift fixed in this commit:
- Plan's S6ServiceManager._render_run_script used
`gateway start --foreground --port {port}` — invented args; the
real CLI is `gateway run`. Switched accordingly. port arg
retained for API parity but now documented as 'currently ignored'.
- Plan's reconciler keyed on config.yaml; switched to SOUL.md
(config.yaml is created by hermes setup, not by hermes profile
create, so the original gate caught nothing).
- The plan's _dispatch helper used _profile_arg() which returns
'--profile <name>' (i.e. with the flag prefix). Switched to
_profile_suffix() which returns the bare name.
- Architecture B's docker exec doesn't get /command on PATH or
the venv on PATH; Dockerfile's runtime PATH now includes
/opt/hermes/.venv/bin so 'docker exec <c> hermes ...' works
without sourcing the venv.
- stage2-hook now chowns $HERMES_HOME/profiles to hermes on every
boot, not just on the UID-remap path. Without this, files created
by docker-exec-as-root accumulate and the next reconciler run
fails with PermissionError reading SOUL.md.
Test harness:
19 passed, 0 xfailed (the two pre-Phase-4 xfail targets flip to
passing). 78 unit tests across service_manager + container_boot +
profiles_s6_hooks + gateway_s6_dispatch. Hadolint + shellcheck
pass cleanly.
Refs: docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md
Phase 3 of the s6-overlay supervision plan. Implements the runtime-
registration surface from D4 — only the s6 backend supports
register_profile_gateway / unregister_profile_gateway /
list_profile_gateways; host backends continue to raise
NotImplementedError. No caller yet (Phase 4 wires in the profile
create/delete hooks).
Key implementation notes:
- Service directory shape: /run/service/gateway-<profile>/{type,run,log/run}.
Atomic register: write to gateway-<profile>.tmp, fsync via
os.rename. Cleanup on rescan failure.
- Run script uses #!/command/with-contenv sh so HERMES_HOME and any
extra_env arrive at exec time. The hermes -p <profile> gateway
start --foreground --port <port> command is wrapped in
s6-setuidgid hermes for the per-service privilege drop (OQ2-A).
- Log script (OQ8-C): persists via s6-log to
${HERMES_HOME}/logs/gateways/<profile>/. CRITICAL — HERMES_HOME is
a runtime env-var expansion in the rendered script, NOT a Python
f-string substitution. Negative-asserted in
test_s6_register_creates_service_dir_and_triggers_scan so
regressions are caught.
- PATH gotcha: /command/ is only on PATH for processes spawned by
the supervision tree (services, cont-init.d). `docker exec` and
profile-create hooks don't get it. S6ServiceManager calls all
s6-* binaries via absolute path through the new _S6_BIN_DIR
constant so callers don't have to fix up env vars.
- validate_profile_name rejects path-traversal, leading-dash (s6
would parse as a flag), uppercase, whitespace, and names >251
chars (s6-svscan default name_max).
Test coverage:
- 13 new unit tests in tests/hermes_cli/test_service_manager.py
(kind detection, run-script content, env quoting, register
rollback on rescan failure, unregister idempotence, list filter,
lifecycle dispatch, svstat parsing). Total: 36 passing.
- 2 new in-container integration tests in
tests/docker/test_s6_profile_gateway_integration.py validating
end-to-end registration against a real s6 supervision tree.
Docker harness: 14 passed, 2 xfailed (Phase 4 target unchanged).
Refs: docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md
BREAKING CHANGE: the container ENTRYPOINT is now /init (s6-overlay)
instead of /usr/bin/tini. Main hermes runs as the container CMD with
TTY inherited (preserving --tui), dashboard runs as a supervised s6-rc
service (HERMES_DASHBOARD=1 starts it; crashes auto-restart), and the
ground is laid for per-profile gateway supervision (Phase 3+4).
All five pre-s6 docker run invocation patterns continue to work
identically — verified by the Phase 0 docker harness:
docker run <image> → `hermes` with no args
docker run <image> chat -q "..." → `hermes chat -q ...` passthrough
docker run <image> sleep infinity → `sleep infinity` direct
docker run <image> bash → interactive bash
docker run -it <image> --tui → interactive Ink TUI
Phase 2 harness result: 12 passed, 2 xfailed (Phase 4 target). Hadolint
+ shellcheck pass cleanly.
Architecture pivot from plan v3 (documented in main-hermes/run header):
the plan called for main hermes to be an s6-supervised service, but
two real s6-overlay v3 mechanics blocked that — cont-init.d scripts
receive no arguments (CMD args are not visible to stage2-hook), and
`/run/s6/basedir/bin/halt` after writing the exit code did not
propagate the desired exit code (container exits 143). We use the
s6-overlay-native CMD pattern instead: main-wrapper.sh is the
container's main program (ENTRYPOINT prepends it so leading-dash
args like --version aren't intercepted by /init), exec's the final
program with stdin/stdout/stderr inherited, and the program's exit
code becomes the container exit code. main-hermes is now a no-op
`sleep infinity` slot kept for future supervised-gateway-container
modes. This trades "supervised restart of main hermes" for arg-
parity with the pre-s6 contract — main hermes was already unsupervised
under tini, so we lose nothing functional. Dashboard supervision is
the only new guarantee added by this phase.
Files added:
docker/main-wrapper.sh # arg routing + s6-setuidgid drop
docker/stage2-hook.sh # gosu-equivalent + chown + seed
docker/s6-rc.d/main-hermes/{type,run,dependencies.d/base}
docker/s6-rc.d/dashboard/{type,run,dependencies.d/base}
docker/s6-rc.d/user/contents.d/{main-hermes,dashboard}
Files changed:
Dockerfile: tini → s6-overlay install + ENTRYPOINT flip + service wiring
docker/entrypoint.sh: thin shim to stage2-hook.sh for back-compat
tests/docker/test_dashboard.py: add test_dashboard_restarts_after_crash
Refs: docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md
Phase 1 of the s6-overlay supervision plan. Pure-refactor addition:
introduces the abstract interface (with runtime_checkable Protocol),
detect_service_manager(), validate_profile_name(), and thin
SystemdServiceManager / LaunchdServiceManager / WindowsServiceManager
wrappers around the existing systemd_* / launchd_* / gateway_windows.*
module-level functions. No host call site was modified — host code
continues to use the existing functions directly; the protocol is for
new backend-agnostic code (Phase 4 profile create/delete hooks and the
Phase 4 s6 dispatch path in 'hermes gateway start/stop/restart').
WindowsServiceManager.install() forwards the v3 kwargs (start_now,
start_on_login, elevated_handoff) added in PRs #28169-adjacent so
non-Windows callers — there aren't any today — can opt in.
The s6 backend lands in Phase 3; until then get_service_manager()
raises a clear error if invoked on a host that detects as 's6'.
Two pre-existing baseline issues found while running the Phase 0 harness
against the tini image that need fixing before later phases can use the
harness as a behavior-parity oracle:
1. The autouse `_enforce_test_timeout` fixture in tests/conftest.py
hard-coded a 30s SIGALRM, which preempted any `pytest.mark.timeout`
marker (already honored by pytest-timeout). Honor the marker if
present; fall back to 30s otherwise. Docker harness tests carry a
180s marker applied at collection time in tests/docker/conftest.py.
2. test_dashboard_port_override polled via `ss -tlnp` / `netstat -tln`
— neither is installed in the Hermes image, so the probe trivially
failed even when the dashboard was bound. The dashboard also takes
8-15s to bind on cold image; the 5s sleep was insufficient. Replace
with a poll loop reading /proc/net/tcp directly (port 9120 = 0x23A0,
state 0A = LISTEN). Bump probe deadline to 60s and switch
test_dashboard_opt_in_starts to a similar poll for pgrep so we don't
regress to the same race.
Result: 11 passed, 2 xfailed (Phase 4 target) on tini image. Harness
now ready to serve as Phase 2's behavior-parity oracle.
The agent-test suite default is 30s; docker test_no_args (the dashboard
spin-up, the container restart) routinely take 60-90s. Without this
they intermittently fail in CI with TimeoutError.
Tasks 0.2-0.6 of the s6-overlay supervision plan. Locks the
user-visible behavior we must preserve through the Phase 2 init-
system swap:
- test_main_invocation.py (Task 0.2): docker run <image> with no
args, chat subcommand passthrough, bare executable passthrough,
bash pattern, exit-code propagation
- test_tui_passthrough.py (Task 0.3): TTY allocation via docker -t
using the host's script(1) for a PTY
- test_dashboard.py (Task 0.4): HERMES_DASHBOARD=1 opt-in,
HERMES_DASHBOARD_PORT override
- test_profile_gateway.py (Task 0.5): per-profile gateway
start/stop and profile-delete-stops-gateway. Both marked
xfail(strict=True) because the current tini image refuses
gateway lifecycle commands inside the container; Phase 4
Task 4.3 flips them to passing.
- test_zombie_reaping.py (Task 0.6): PID 1 reaps orphaned
zombies. tini does this today; s6-overlay's /init must
continue to.
Refs: docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md
Task 0.1 of the s6-overlay supervision plan. Establishes the test
infrastructure for tests/docker/: skip-on-missing-Docker collection
hook, session-scoped image-build fixture (overridable via the
HERMES_TEST_IMAGE env var for faster local iteration), and a
container_name fixture that ensures cleanup on test exit.
Refs: docs/plans/2026-05-07-s6-overlay-dynamic-subagent-gateways.md
Adds a `TTSProvider(ABC)` + `register_tts_provider()` extension point
to the plugin context API, **alongside** the existing config-driven
`tts.providers.<name>: type: command` registry from PR #17843. This is
additive — the command-provider surface stays as the primary way to
add a TTS backend.
The hook covers cases the shell-template grammar can't reasonably
express:
- Native Python SDKs without a CLI (Cartesia, Fish Audio, etc.)
- Streaming synthesis (chunked Opus → voice-bubble delivery)
- Voice metadata API for the `hermes tools` picker
- OAuth-refreshing auth flows
None of the 10 inline built-in providers (`edge`, `openai`,
`elevenlabs`, `minimax`, `gemini`, `mistral`, `xai`, `piper`,
`kittentts`, `neutts`) are migrated to plugins. They stay inline. The
hook is for *new* engines that aren't built-in.
## Resolution order
The dispatcher's resolution order is the load-bearing invariant:
1. `tts.provider` is a built-in name → built-in dispatch. **Always wins.**
2. `tts.provider` matches `tts.providers.<name>` with `command:` set
→ command-provider dispatch (PR #17843).
3. `tts.provider` matches a plugin-registered `TTSProvider`
→ plugin dispatch (new).
4. No match → falls through to Edge TTS default (legacy behavior).
Built-ins-always-win is enforced at THREE layers:
- Registry: `register_provider()` rejects shadowing names with a warning.
- Dispatcher: `_dispatch_to_plugin_provider()` short-circuits built-in
names defensively before consulting the registry.
- Picker: `_plugin_tts_providers()` filters built-in shadows out of
the `hermes tools` row list defensively.
Command-providers-win-over-plugins is enforced at TWO layers:
- The caller in `text_to_speech_tool` checks
`_resolve_command_provider_config` first.
- `_dispatch_to_plugin_provider` re-checks for a same-name command
config defensively so a refactor of the caller can't silently break
the invariant.
## New files
- `agent/tts_provider.py` — `TTSProvider(ABC)` with `synthesize()` (required),
`list_voices()`, `list_models()`, `get_setup_schema()`, `stream()`,
`voice_compatible` (all optional with sane defaults). Mirrors
`agent/image_gen_provider.py` shape.
- `agent/tts_registry.py` — `register_provider`/`get_provider`/`list_providers`
with `_BUILTIN_NAMES` reject-shadowing invariant. Mirrors
`agent/image_gen_registry.py` shape.
- `plugins/tts/...` directory ready for community plugins (none shipped).
## Modified files
- `hermes_cli/plugins.py` — `register_tts_provider()` method on
`PluginContext`. Matches the gating shape of
`register_image_gen_provider()` / `register_browser_provider()`.
- `tools/tts_tool.py` — `_dispatch_to_plugin_provider()` +
`_plugin_provider_is_voice_compatible()` + walrus-elif wiring into
the main dispatcher. Built-in elif chain untouched.
- `hermes_cli/tools_config.py` — `_plugin_tts_providers()` injects
plugin rows into the Text-to-Speech picker category alongside the
10 hardcoded built-in rows.
## Tests
- `tests/agent/test_tts_registry.py` — 47 tests covering registration,
lookup, ABC contract, helpers, AND a `TestBuiltinSync` regression
test that fails if `agent.tts_registry._BUILTIN_NAMES` drifts from
`tools.tts_tool.BUILTIN_TTS_PROVIDERS` (kept duplicated due to
circular import constraints).
- `tests/tools/test_tts_plugin_dispatch.py` — 35 tests covering
built-in-always-wins, command-wins-over-plugin, plugin dispatch,
exception passthrough, voice_compatible helper.
- `tests/hermes_cli/test_tts_picker.py` — 10 tests covering the
picker surface, builtin shadowing defense, integration with
`_visible_providers`.
- `tests/hermes_cli/test_plugins_tts_registration.py` — 3 end-to-end
tests via `PluginManager.discover_and_load()`.
- `tests/plugins/tts/check_parity_vs_main.py` — 9-scenario subprocess
parity harness vs `origin/main`. The only intentional diff is
`fallback_edge → plugin` for the `plugin-installed` scenario.
## Verification
- 95/95 new tests pass.
- 170/170 pre-existing TTS tests (test_tts_command_providers,
test_tts_max_text_length, test_tts_speed, etc.) pass unchanged.
- Parity harness against `origin/main`: 8 OK + 1 expected DIFF.
- E2E smoke: a registered plugin's `synthesize()` is called via
`text_to_speech_tool` with the standard JSON envelope returned.
- Ruff clean on all touched files.
## Docs
- `website/docs/user-guide/features/tts.md` — new "Python plugin
providers" section with a decision table (command-provider vs
plugin), minimal plugin example, and the optional-hook reference.
- `website/docs/user-guide/features/plugins.md` — TTS row updated to
mention both surfaces (command-provider primary, plugin for
SDK/streaming).
Closes#30398
Two-layer redaction at the persistence boundary so credentials never reach
state.db, session_*.json, or compression:
1. agent/chat_completion_helpers.py :: build_assistant_message
- Redact assistant content before the message dict is constructed
(catches PATs / API keys the model inlines into natural language)
- Redact tool_call.function.arguments at the same site (catches secrets
inlined into tool args, e.g. terminal command=curl -H 'Authorization: ...')
Tool execution uses the raw API response object, not this dict, so
redacting the persisted shape is safe.
2. run_agent.py :: _save_session_log
- Add _redact_message_content() static helper that handles both string
content and OpenAI/Anthropic multimodal list-of-parts (image parts
pass through untouched, only text/content fields are redacted)
- Apply to every message + the cached system prompt before writing
session_*.json
Both layers respect HERMES_REDACT_SECRETS via redact_sensitive_text —
no-op when disabled.
Tests (TestSaveSessionLogRedactsSecrets, 4 cases):
- api key in tool content
- api key in user message
- api key in system prompt
- multimodal list-of-parts (image part preserved, text redacted)
Tests use an autouse fixture to force _REDACT_ENABLED=True because the
hermetic conftest defaults the env var to false.
Salvaged from PR #24758 by @vgocoder (build_assistant_message + session_log)
+ PR #19855 by @liuhao1024 (multimodal list helper, system_prompt redaction).
Kept only the redaction concern from #19855; its unrelated whatsapp npm
timeout + PATCH_SCHEMA changes are out of scope and dropped.
Refs #19798 (PAT leak via assistant inline mention), #19845 (session capture
credential leak).
Co-authored-by: liuhao1024 <liuhao03@bilibili.com>
Co-authored-by: teknium1 <127238744+teknium1@users.noreply.github.com>
The web dashboard's Anthropic OAuth helper wrote the credential file
straight to its final destination and relied on the process umask for
permissions. That left the dashboard-specific path weaker than the
existing auth writers, which already use owner-only permissions and
safer write semantics.
This change keeps the scope narrow: make the dashboard helper write via
a temp file + replace, chmod the final file to owner-only, and add a
focused regression test for both permission handling and atomic-write
behavior.
Constraint: Must preserve the existing dashboard OAuth flow and credential-pool side effects
Rejected: Broader auth-storage refactor | unnecessary scope for a single verified inconsistency
Confidence: high
Scope-risk: narrow
Reversibility: clean
Directive: Keep dashboard credential writes aligned with existing auth storage semantics; do not reintroduce direct write_text() here without matching chmod/atomic behavior
Tested: pytest -o addopts='' tests/hermes_cli/test_web_server_oauth_write.py tests/hermes_cli/test_web_server.py -q (78 passed)
Not-tested: Cross-platform permission semantics on Windows-managed filesystems
_write_claude_code_credentials wrote ~/.claude/.credentials.json via
Path.write_text + replace + post-write chmod(0o600). Both the temp file
and the destination briefly inherited the process umask (commonly 0o644
= world-readable) between create/replace and chmod, exposing the OAuth
access/refresh tokens to other local users on multi-user hosts.
Use os.open with O_WRONLY|O_CREAT|O_EXCL and an explicit S_IRUSR|S_IWUSR
mode so the temp file is created atomically at 0o600. After os.replace,
the destination inherits the temp's mode, so the post-write chmod is no
longer needed. The temp name also gains a per-process random suffix to
avoid collisions between concurrent writers and stale leftovers from a
crashed prior write.
Parent dir (~/.claude/) is owned by Claude Code itself and shared with
its native auth, so we deliberately don't tighten its mode here (unlike
the mcp_oauth fix which owns its own subtree under HERMES_HOME).
Mirrors the fix shipped for agent/google_oauth.py in #19673 and the
parallel fix for tools/mcp_oauth.py in #21148.
Adds a regression test in TestWriteClaudeCodeCredentials asserting the
resulting file mode is 0o600 (skipped on Windows where POSIX mode bits
aren't enforced).
PR #9020's salvage changed the /resume list footer from
'Use /resume <session id or title> to continue.' to
'Use /resume <number>, /resume <session id>, or /resume <session title> to continue.\n Example: /resume 2'.
test_resume_without_target_lists_recent_sessions still pinned the old
string verbatim and failed in CI. Relax to substring assertions that
allow both the new numbered footer and any future tweaks while still
verifying the hint is shown.
The numbered /resume feature added new i18n keys to en.yaml; the catalog parity
tests require every locale to carry matching keys and placeholders, so add
translations to all 15 supported locales.
Also unblock tests/cli/test_cli_resume_command.py:
- _make_cli stub now sets self.resume_display = 'minimal' since
_handle_resume_command (post-#31695) calls _display_resumed_history.
- mock_db.resolve_resume_session_id returns the input id (no compression
chain) so HERMES_SESSION_ID is set to a real string, not a MagicMock.
The gateway pairing directory (~/.hermes/pairing/) stores per-platform
access-control files (telegram-approved.json, discord-approved.json, etc.).
A prompt-injected agent using write_file could add arbitrary user IDs to an
approved file, granting persistent gateway access without going through the
pairing code flow — the same threat class that motivated protecting
webhook_subscriptions.json (#14157).
The pairing directory was not included in the original control-plane protection
because it postdates PR #14157. PR #30383 introduced the hashed-pending schema
and made the approved files the sole source of truth for gateway access, raising
the security sensitivity of the directory.
Apply the same mcp-tokens pattern: block writes to pairing/ and any path within
it, under both the active hermes_home and the root path (for profile-mode parity
with the fix in #30382).
Regression tests verify denial for pairing/telegram-approved.json,
pairing/discord-pending.json, and the directory itself, in both normal and
profile-mode layouts.
Issue #30768 reports that on native Windows PowerShell the destructive-slash
confirmation modal renders but never registers keypresses, leaving the user
unable to confirm or cancel /reset, /new, /clear, or /undo. The modal works
on macOS, Linux, and WSL; PR #23907 (merged May 11) replaced the
daemon-thread input() pattern with a prompt_toolkit-native keybinding modal
but the win32 input pipeline apparently doesn't dispatch keys to the
filter-conditioned handlers. The modal investigation is ongoing.
This change ships the immediate escape hatch: append `now`, `--yes`, or `-y`
to any destructive slash command to bypass the modal and run the action
immediately. Works on every platform without touching the broken Windows
code path.
/reset now -> reset, no modal
/new --yes my-session -> new session titled "my-session", no modal
/clear -y -> clear, no modal
/undo -y -> undo, no modal
The default behavior (modal prompts when approvals.destructive_slash_confirm
is True) is unchanged for users who don't pass a skip token.
Implementation:
- New classmethod HermesCLI._split_destructive_skip(text) -> (remainder, skip)
parses a destructive-slash command string, strips the leading "/cmd" word
and any recognized skip tokens (case-insensitive exact match, not substring),
and reports whether a skip was requested.
- HermesCLI._confirm_destructive_slash gains an optional cmd_original= arg.
When the arg contains a skip token, it returns "once" immediately —
before the gate check and before any modal rendering.
- The /clear, /new, /undo handlers in process_command pass cmd_original
through. /new additionally uses _split_destructive_skip to strip skip
tokens from the remaining text before deriving the session title, so
"/new now My Session" yields title="My Session" (not "now My Session").
Tests:
- 7 new unit tests in tests/cli/test_destructive_slash_confirm.py covering
the helper (recognized tokens, command-word stripping, case-insensitive
exact match, None/empty input) and the modal bypass (now and --yes both
skip; no-skip-token still consults the modal).
- 3 new integration tests in tests/cli/test_destructive_slash_inline_skip_e2e.py
driving HermesCLI.process_command end-to-end and asserting (a) new_session
is invoked, (b) the modal is never reached, (c) the skip token does not
leak into the session title, and (d) the no-skip-token path still reaches
the modal as a sanity check that we haven't accidentally short-circuited
the normal flow.
All 31 tests across the destructive-slash test surface pass.
Docs:
- website/docs/reference/slash-commands.md documents the new flags both in
the destructive-commands table and the dedicated approval section, with a
link back to issue #30768 explaining why the escape hatch exists.
Board defaults represent persistent project checkouts. Scratch workspaces
are auto-deleted on completion and must stay under the per-board scratch
root that resolve_workspace() creates. Inheriting default_workdir for a
scratch task pointed the cleanup path at the user's source tree — the
data-loss vector documented in #28818.
The containment guard in _cleanup_workspace (just added) is the safety
rail. This commit prevents the bad state from being created in the first
place: only persistent kinds (dir/worktree) inherit board defaults.
Tests updated to cover the new semantics: scratch with default_workdir
set keeps workspace_path=None; dir/worktree still inherits the board
default.
Salvaged from PR #31315 by @leeseoki0 — prevention layer on top of the
#28819 containment fix by @briandevans.
Co-authored-by: teknium1 <127238744+teknium1@users.noreply.github.com>
Copilot review on PR #28819 flagged that `_is_managed_scratch_path` accepted
the entire `<kanban_home>/kanban` subtree as managed scratch storage. With
that, a task whose `workspace_kind='scratch'` and `workspace_path` was
mis-set to `<kanban_home>/kanban`, `.../kanban/logs`, or a board's
metadata directory (e.g. `.../kanban/boards/<slug>` without the
`workspaces/` child) would pass the containment guard and let task
completion `shutil.rmtree` Hermes' own DB, metadata, and log subtrees.
Tighten the guard:
* Allowed roots are now exclusively `workspaces/` directories — the
`HERMES_KANBAN_WORKSPACES_ROOT` override, `<kanban_home>/kanban/workspaces`,
and each `<kanban_home>/kanban/boards/<slug>/workspaces` discovered on
disk.
* Require strict descendancy: a path equal to a root itself is rejected
too, because deleting a workspaces root would wipe every task's scratch
dir at once.
Add a regression test covering the three Copilot-named attack paths
(kanban root, kanban/logs, board root without `workspaces/`) plus the
workspaces-root-itself case, and confirm the inner task-id dir still
matches.
A board's ``default_workdir`` (e.g. ``hermes kanban boards
set-default-workdir my-board /path/to/real/source``) is copied into
``tasks.workspace_path`` for tasks created without an explicit
``workspace_kind``. Those tasks default to ``workspace_kind='scratch'``,
so completion calls ``_cleanup_workspace`` and unconditionally runs
``shutil.rmtree(wp, ignore_errors=True)`` — deleting the user's real
source tree as if it were disposable scratch storage.
Add ``_is_managed_scratch_path()`` and gate ``_cleanup_workspace`` on
it: only delete paths under ``HERMES_KANBAN_WORKSPACES_ROOT`` (the
worker-side override the dispatcher injects) or under the active kanban
home's ``kanban/`` subtree (covering both the legacy default-board root
and per-board ``kanban/boards/<slug>/workspaces`` roots). Anything else
gets a warning log and is left alone, so a misconfigured
``default_workdir`` can no longer destroy user data on task completion.
Follow-up to 54e61f933. The plugin enablement gate calls
``entry.is_connected(probe_cfg)`` BEFORE ``env_enablement_fn`` runs,
and the probe is built as ``existing_cfg or PlatformConfig()`` — empty
extras, ``enabled=False``.
For plugins whose ``is_connected`` reads ``config.extra`` instead
of env vars directly, that probe is a misrepresentation of what the
platform will look like after enablement. Google Chat's
``_is_connected`` short-circuits on ``config.enabled`` and inspects
``config.extra["project_id"]`` / ``config.extra["subscription_name"]``
— both False on the default probe even when the user has set
``GOOGLE_CHAT_PROJECT_ID`` and ``GOOGLE_CHAT_SUBSCRIPTION_NAME``. Result:
Google Chat silently fails the gate on every env-var-only setup.
Build a candidate probe that mirrors what the platform will look like
post-enablement:
- pre-call ``env_enablement_fn`` and layer its result into the probe's
``extra`` (without mutating any existing platform config)
- pass ``enabled=True`` on the probe — we're asking "would this BE
configured if we let it in?" not "is it currently enabled?"
- reuse the same seeded extras when we commit the platform to
``config.platforms`` (avoids calling ``env_enablement_fn`` twice)
Discord/IRC/Teams/LINE/ntfy/Simplex ``_is_connected`` hooks read env
vars directly, so they are unaffected. This change only restores
Google Chat on env-var-only setups while keeping the original #31116
Discord-no-token block intact.
All 6 shipped ``env_enablement_fn`` implementations were audited and
are pure reads (no ``os.environ`` writes), so running them earlier in
the loop has no observable side effects.
Tests: 2 new in tests/gateway/test_platform_registry.py covering
extras-seeded-before-is_connected and don't-leak-extras-on-gate-fail.
693 tests across 11 adjacent suites pass (platform_registry, config,
google_chat, matrix, discord_connect, ntfy_plugin, simplex_plugin,
line_plugin, irc_adapter, teams, gateway_platform_gating).
Refs #31116.
- test_tool_calls_shown_as_summary: explicitly disable resume_skip_tool_only
(#4434 made True the default; the legacy assertion relied on tool-only
entries being rendered as a summary).
- test_tool_only_message_skipped_by_default: add coverage for the new
default skip behavior.
- test_resume_command_*: mock_db.resolve_resume_session_id now returns the
same id (no compression chain) so the post-#15000 redirect block doesn't
shove a MagicMock into HERMES_SESSION_ID.
The cherry-picked fix from #28605 inverts an existing test (an unknown
non-lobby thread_id no longer rewrites to the most-recent binding), but
that test only seeds two bindings and queries a third thread_id. Add a
second regression test that more closely mirrors the live failure mode:
seed exactly one prior binding, then query a brand-new thread_id and
assert recovery returns None — so the new topic is allowed to get its
own session row instead of being silently merged into the previous
topic's session.
Co-authored-by: Fábio Siqueira <fabioxxx@gmail.com>
Co-authored-by: dillweed <dillweed@users.noreply.github.com>
Companion to the GH-25255 incoming-strip fix from @hayka-pacha. Without
this, build_anthropic_kwargs unconditionally added 'mcp_' to every tool
name in step 3, so a native MCP server tool registered as
'mcp_composio_X' was sent as 'mcp_mcp_composio_X' on the wire. The
incoming strip only removes ONE prefix, which still worked on first
call, but on subsequent calls the model pattern-matched the
single-prefixed form from message history and produced names that
stripped to 'composio_X' — registry miss, dispatch fail.
The history-rewrite block (#4) already has this guard. Apply the same
guard to the schema-rewrite block (#3) so round-trip is symmetric.
Added 4 outgoing-side tests. Existing 7 incoming-side tests still pass.
Author map: hayka-pacha added for PR #25270 salvage attribution.
Refs GH-25255.
When strip_tool_prefix=True (Anthropic OAuth path), normalize_response
unconditionally stripped the mcp_ prefix from ALL tool names starting
with mcp_. This broke Hermes-native MCP server tools (registered under
their full mcp_<server>_<tool> name in the registry) because the stripped
name doesn't match any registry entry.
Fix: check the tool registry before stripping. Only strip when:
- The stripped name EXISTS in the registry (OAuth-injected tool)
- The full name does NOT exist in the registry
This preserves backward compatibility for OAuth-injected tools while
protecting native MCP server tools from incorrect prefix removal.
7 new tests covering: OAuth strip, native preserve, no-flag, non-mcp,
unknown tools, mixed responses, and dual-registration edge case.
Signed-off-by: HKPA <hayka-pacha@users.noreply.github.com>
After sustained Bad Gateway / TimedOut reconnect cycles, the PTB httpx
client can enter a state where bot.send_message() returns a valid
Message (real message_id) but the message never reaches the recipient.
TelegramAdapter.send returns SendResult(success=True) and cron's
live-adapter branch marks the run delivered while the message is
silently dropped.
Add a _send_path_degraded flag. _handle_polling_network_error sets it
on reconnect storms; the existing _verify_polling_after_reconnect
heartbeat probe clears it once getMe() confirms the Bot client is
healthy. While the flag is set, send() short-circuits with
SendResult(success=False, retryable=True) so cron falls through to
the standalone delivery path (fresh HTTP session).
Closes#31165.
Co-authored-by: teknium1 <127238744+teknium1@users.noreply.github.com>
Fixes#31116 — two distinct bugs in fresh-install Matrix gateway:
1. Matrix E2EE setup installed only mautrix[encryption], leaving asyncpg
/ aiosqlite / Markdown / aiohttp-socks uninstalled. The first encrypted
connect failed with 'No module named asyncpg' deep inside
MatrixAdapter.connect(). Root cause: the setup wizard hand-rolled a
pip install of one package instead of using lazy_deps.ensure(
'platform.matrix'), and check_matrix_requirements() short-circuited the
runtime installer on 'import mautrix' alone — so the other 4 packages
were never pulled in.
2. Discord auto-enabled itself on every gateway start, even when the user
never selected Discord and had no DISCORD_BOT_TOKEN. Root cause:
gateway/config.py plugin-enablement loop gated enablement on
entry.check_fn() (just 'is the SDK importable?') and ignored
entry.is_connected (the 'did the user configure credentials?' probe).
Same bug class as commit 7849a3d73 fixed for _platform_status in the
setup wizard; this is the runtime counterpart. Affects Discord, Teams,
and Google Chat.
Changes:
- hermes_cli/setup.py::_setup_matrix — install via
lazy_deps.ensure('platform.matrix') to pull the full feature group.
- gateway/platforms/matrix.py::_check_e2ee_deps — verify asyncpg +
aiosqlite + PgCryptoStore in addition to OlmMachine, so E2EE failures
surface at startup instead of at first encrypted-room connect.
- gateway/platforms/matrix.py::check_matrix_requirements — use
feature_missing('platform.matrix') as the install gate instead of a
single 'import mautrix' check, so partial installs trigger the lazy
installer correctly.
- gateway/config.py plugin-enablement loop — consult entry.is_connected
before flipping enabled=True. Explicit YAML enabled=true still wins.
Tests: 3 new in tests/gateway/test_matrix.py (asyncpg-required,
aiosqlite-required, partial-install lazy-runs), 5 new in
tests/gateway/test_platform_registry.py (is_connected=False blocks,
is_connected=True enables, is_connected=None falls back to check_fn,
raising probe doesn't enable, explicit YAML wins).
Validation: 310 tests across affected test modules pass.
Standard OpenAI returns request-validation failures (unknown/
unsupported parameter, malformed request) as 4xx. Some
OpenAI-compatible gateways return them as 5xx instead — codex.nekos.me
returns 502 for an unknown parameter.
The generic '5xx -> retryable server_error' rule then misfires: the
error is deterministic (every retry gets the identical rejection), so
the retry loop burns all 3 attempts, the transport-recovery path
resets the counter and burns 3 more, and the result is a request
flood against a request that can never succeed.
Fix: when a 500/502 body carries an unambiguous request-validation
signal — 'unknown parameter' / 'unsupported parameter' /
'invalid_request_error' in the message text, or invalid_request_error
/ unknown_parameter / unsupported_parameter as the structured error
code — classify as a non-retryable format_error so the loop fails
fast and falls back. Genuine 502 Bad Gateway with no such signal
stays retryable as before.
Origin: local-author
Upstream-PR: none
Patch-State: local-only
The empty-response recovery path in run_agent.py appends synthetic
messages tagged with _empty_recovery_synthetic (and the agent loop uses
_thinking_prefill / _empty_terminal_sentinel similarly). These are
internal bookkeeping markers — they must never reach the wire.
chat_completions' convert_messages only stripped Codex Responses leak
fields (codex_reasoning_items, call_id, etc.), not these _-prefixed
markers. Permissive providers (real OpenAI, Anthropic) silently ignore
unknown message keys so the bug stayed hidden, but strict
OpenAI-compatible gateways reject them outright. Observed against
codex.nekos.me:
502: [ObjectParam] [input[617]._empty_recovery_synthetic]
[unknown_parameter] Unknown parameter:
'_empty_recovery_synthetic'
Because the synthetic messages persist in the session, every
subsequent request in that session carries the poisoned key and
fails identically — a deterministic 502 the retry loop mistakes for
a transient server error.
Fix: convert_messages now drops any top-level message key starting
with '_'. OpenAI's message schema has no '_'-prefixed fields, so this
is safe and future-proofs against new internal markers.
Origin: local-author
Upstream-PR: none
Patch-State: local-only
Adds 'hermes security audit' — a one-shot vulnerability scan against
OSV.dev covering three surfaces a Hermes user actually controls:
1. The running Python's installed PyPI dists (importlib.metadata)
2. Plugin requirements.txt / pyproject.toml pins under ~/.hermes/plugins/
3. Pinned npx/uvx MCP servers in config.yaml
Zero new dependencies (stdlib urllib + importlib.metadata + tomllib +
concurrent.futures). No auth required for OSV's public batch API.
Flags: --json, --fail-on {low,moderate,high,critical} (default: critical),
--skip-venv, --skip-plugins, --skip-mcp
Output groups findings by source, sorts by severity descending, surfaces
fixed-versions inline. Exit 1 when any finding meets the --fail-on tier.
Deliberately out of scope: globally-installed pip/npm, editor/browser
extensions, daily background scans, auto-blocking of installs. The audit
is on-demand by design — daily scans become noise the user trains
themselves to ignore.
Closes#31273.
HTTP 402 (insufficient credits) was retried up to agent.api_max_retries
times (default 3), burning paid requests against an exhausted balance.
Real-world impact: ~$40 in 48h on a 24/7 Telegram+Discord gateway.
Root cause: FailoverReason.billing was in the is_client_error
exclusion set in agent/conversation_loop.py, which prevents the
non-retryable-abort branch from firing.
By the time control reaches that predicate:
* credential-pool rotation has already run for billing and either
continued the loop or returned False (pool exhausted/absent)
* the eager-fallback branch has also fired on billing and either
continued the loop or fell through (no fallback configured)
Falling through to the backoff retry from here has no recovery
mechanism left — it just burns more paid requests. Removing billing
from the exclusion set makes 402 abort cleanly once pool+fallback
recovery has failed, mirroring how 401/403 (also should_fallback=True)
already behave.
Added tests/run_agent/test_31273_402_not_retried.py which mirrors the
is_client_error predicate shape from the source and asserts the
invariant (plus a source-inspection guard against accidental
re-introduction).
Closes#31066. Closes#31110.
An unhandled `telegram.error.TimedOut` (or peer `NetworkError` /
`httpx` connection error) propagating to the asyncio event loop killed
the entire gateway process, taking down every profile attached to the
same runner. systemd restarted the service after ~5s but the active
conversation turn was lost.
Public adapter methods (`adapter.send`, `adapter.edit_message`,
`adapter.send_voice`, …) are individually try/except-wrapped on
current main, but at least one async path was reaching the loop with
TimedOut unhandled — the report's traceback ends at the deepest httpx
frame and doesn't pinpoint the caller.
Rather than audit 30+ call sites blind, install a loop-level safety net:
`_gateway_loop_exception_handler` is set as the loop's exception handler
in `start_gateway()` after `asyncio.get_running_loop()`. It classifies
the exception via `_is_transient_network_error()` (walks the
__cause__/__context__ chain, matches on class name so the test suite
doesn't need the real telegram/httpx packages installed). Transient
errors are logged at WARNING with full traceback so the originating
call site stays diagnosable; everything else forwards to
`loop.default_exception_handler` so real bugs still surface.
Tests cover the classifier (known transients accepted, real bugs
rejected, cause/context chain unwrap, cyclic-cause termination) and the
handler (swallow + log warning, forward unknowns, missing-exception
context). One end-to-end test schedules an orphan task raising TimedOut
and asserts `asyncio.run` returns cleanly.
* fix(vision): route auxiliary.vision.provider=openai to api.openai.com, skip text-only main for vision
Fixes#31179. Three coupled fixes so a configured aux vision backend
actually serves vision tasks instead of silently routing images to the
user's main provider:
1. agent/auxiliary_client.py: `auxiliary.<task>.provider: openai` resolves
to `custom` + `https://api.openai.com/v1`. "openai" was not in
PROVIDER_REGISTRY (we have `openai-codex` for OAuth and `custom` for
manual base_url), so the obvious config name silently failed to build a
client. User-supplied base_url is still preserved; only the provider
name normalises to `custom` so resolution doesn't hit the
PROVIDER_REGISTRY-only path.
2. agent/auxiliary_client.py: the vision auto-detect chain now skips the
user's main provider when models.dev reports `supports_vision=False`.
Without this guard, a misconfigured aux provider would fall back to
`auto`, which happily returned the main-provider client. The caller
would then send image content to e.g. api.deepseek.com with model
`gpt-4o-mini` and get a cryptic `unknown variant 'image_url',
expected 'text'` from the provider's parser.
3. tools/vision_tools.py + tools/browser_tool.py: `check_vision_requirements`
now mirrors the runtime fallback chain (explicit provider, then auto),
so `vision_analyze` shows up whenever vision is actually serviceable.
`browser_vision` gets a new `check_browser_vision_requirements` check_fn
that AND-gates browser + vision availability, so it doesn't get
advertised to the model when the call would fail at runtime.
Reproduction (config from the bug report):
model.provider: deepseek
model.default: deepseek-v4-pro
auxiliary.vision.provider: openai
auxiliary.vision.model: gpt-4o-mini
Before: resolve_vision_provider_client() returns None for the explicit
provider, fallback auto returns the deepseek client with model='gpt-4o-mini',
image hits api.deepseek.com → 'unknown variant image_url'. vision_analyze
hidden from tool list; browser_vision exposed but fails at call time.
After: resolves to custom + api.openai.com/v1 with model gpt-4o-mini.
vision_analyze and browser_vision both gate correctly on capability.
Tests: tests/agent/test_vision_routing_31179.py covers all three fixes
(12 cases including the user's exact scenario, base_url preservation,
text-only-main skip, capability-unknown permissive fallback, and tool
gating parity). Existing 382 tests across auxiliary/vision/image_routing
suites still pass.
* test(vision): use exact hostname check to silence CodeQL substring-sanitization alert
* fix(auxiliary): drop model name from vision-skip debug log to silence CodeQL
The new `logger.debug(...)` added in the previous commit interpolated
both `main_provider` and `vision_model` (a public model slug \u2014 not
sensitive). CodeQL's `py/clear-text-logging-sensitive-data` heuristic
re-flagged it twice because the rule mis-detects multi-value
interpolations near tainted-via-config provider strings.
Drop the model from the log args (provider alone is enough to diagnose
the skip; the same sibling branch a few lines up already logs provider
only). Behavior unchanged; CodeQL false positive cleared.
Regression guard for #30770 — verifies the guardrail-halt branch in
agent/conversation_loop.py pushes the synthesized halt message through
stream_delta_callback before breaking out of the loop. Without the
emit, chat-completions SSE writers drain an empty queue and clients
(Open WebUI, etc.) see a finish chunk with zero content delta —
indistinguishable from a crash.
Verified: the test fails when the production fix is reverted.
Four recent security PRs landed on main with stale/missing test updates,
breaking 4 test shards on every subsequent PR's CI run:
- test_discord_bot_auth_bypass.py (PR #30742c3caca658):
DISCORD_ALLOWED_ROLES no longer bypasses _is_user_authorized.
Inverted 3 tests to assert the new (correct) behavior: role config
alone does NOT authorize at the gateway layer.
- test_msgraph_webhook.py (PR #301694ca77f105):
adapter.is_connected is a @property, not a method. Test was calling
it with () after the connect() change; TypeError: 'bool' is not
callable. Removed the parens.
- test_feishu_approval_buttons.py (PR #30744bdb97b857):
Card-action callbacks now go through _allow_group_message
authorization. 3 tests in TestCardActionCallbackResponse didn't
populate adapter._allowed_group_users so the operator's open_id got
rejected. Added the allowlist setup to each test, matching the
existing pattern in test_returns_card_for_approve_action.
Also raise tolerance on test_wait_for_process_kills_subprocess_on_keyboardinterrupt:
the SIGTERM → 3s TimeoutStopSec → SIGKILL → reap chain can exceed 10s
under loaded xdist (40 workers). Bumped _wait_for_pgid_exit timeout
10→30s and worker join timeout 5→15s. Passes 100% in isolation
already; this just makes it tolerant of CI-host load.
Validation: 270/270 tests pass across the 5 affected files.
response_store.db (api server) holds conversation history including tool
payloads, prompts, and results. webhook_subscriptions.json holds per-route
HMAC secrets. Under a permissive umask (e.g. 0o022, default on most
distros) both files were created mode 0o644 — readable by other local
users on shared boxes.
- gateway/platforms/api_server.py: ResponseStore tightens itself + WAL/SHM
sidecars to 0o600 after __init__, then trusts the inode. (Original
contributor patch chmod'd after every _commit() — wasteful on a hot
api_server path; chmod-on-create is sufficient since SQLite preserves
mode bits across writes.)
- hermes_cli/webhook.py: _save_subscriptions writes via tempfile.mkstemp
(which itself creates the file with 0o600), chmods the temp before the
atomic rename, and re-asserts 0o600 on the destination so an existing
permissive file from before this fix gets narrowed.
Tests cover (a) creation under permissive umask leaves 0o600 and (b) an
existing 0o644 webhook_subscriptions.json gets narrowed on next save.
Tests guarded with skipif os.name=='nt' since POSIX mode bits don't apply
on Windows.
Salvaged from PR #30917 by @Hinotoi-agent. Reworked the api_server.py
side from chmod-on-every-commit to chmod-on-create.
Co-authored-by: teknium1 <127238744+teknium1@users.noreply.github.com>
When FEISHU_VERIFICATION_TOKEN is configured, an unauthenticated remote
could previously prove endpoint control by sending a url_verification
payload with any attacker-controlled challenge string — the handler
reflected the challenge BEFORE running the token check.
Move the verification_token check ahead of the url_verification echo so
the challenge response is gated on a valid token. Add a regression test
covering the wrong-token case. Also fix the stale
test_connect_webhook_mode_starts_local_server fixture to set
FEISHU_VERIFICATION_TOKEN (post #30746 webhook mode requires a secret).
Salvaged from PR #29663 by @m0n3r0 — kept the url_verification reorder
and its regression test; dropped the host-conditional weakening of the
#30746 secret guard (we want webhook secrets required regardless of
bind host, not only on 0.0.0.0/::).
Docs updated to call out the gating.
Co-authored-by: teknium1 <127238744+teknium1@users.noreply.github.com>
Operator misconfiguration is a client/setup error, not an internal server
exception. 403 "forbidden" more accurately reflects "this route refuses
to authenticate" than 500 "internal server error" — the latter triggers
incident alerting on operator monitoring and conflates real bugs with
config drift.
Follow-up tweak to PR #29629 by @m0n3r0.
Reject unsigned webhook requests when a route has no effective HMAC secret, even if the request handler is reached without the normal connect-time validation. Add regression coverage for the direct-handler path.
When the 'mcp' Python SDK isn't installed, _run_stdio leaked a bare
'NameError: name StdioServerParameters is not defined' because the
top-level 'from mcp import ...' fails inside try/except ImportError,
leaving the names unbound at module scope.
Mirror the _MCP_HTTP_AVAILABLE gate that _run_http already had: raise
a clear ImportError with install instructions instead.
Fixes#30904
Three test classes lock in the #30963 fix:
1. TestPartialStreamStubFinishReason — drives _interruptible_streaming_api_call
through the two recovery branches and asserts:
- text-only partial → finish_reason="length" (the new behaviour),
- mid-tool-call partial → finish_reason="stop" (unchanged on purpose).
2. TestLengthContinuationPromptBranching — pure-Python check on the branch
that picks the continuation prompt by response.id. Locks the network
error wording for partial-stream-stub vs. the output-length wording
for everything else.
3. TestConversationLoopPartialStreamContinuation — feeds a stub +
continuation pair into run_conversation, verifies the loop makes a
second API call (instead of exiting with text_response(stop)),
confirms the network-error continuation prompt actually reaches the
model on call #2, and that final_response stitches both halves.
Refs: NousResearch/hermes-agent#30963
PR #29119 dropped the 'not streamed_message' guard unconditionally so
that plugin-transformed responses (transform_llm_output hook) would
reach ACP clients. That regressed test_prompt_does_not_duplicate_streamed_final_message:
when no transform happened, the streamed text was re-sent as a duplicate
final delivery.
Tighten the condition to mirror the gateway side: deliver after streaming
only when response_transformed=True. Otherwise keep the old guard.
Adds test_prompt_delivers_transformed_response_after_streaming so the
transformed path stays covered.
Adds a test that fails without the gateway fix, exercising the
response_transformed=True branch in _finalize_response: a streamed
response whose final text was modified by a transform_llm_output
plugin hook must be edit_message'd in place (not duplicate-sent),
with already_sent=True so the normal final-send is skipped.
Also drops two minor leftovers from the salvaged PR #29119:
* accumulated_text property on GatewayStreamConsumer (unused)
* duplicate _response_transformed=False inside the hook try block
Closes#31370.
bws defaults to the US identity endpoint, so EU Cloud and self-hosted
machine-account tokens fail with [400 Bad Request] {"error":"invalid_client"}
during 'hermes secrets bitwarden setup'. The token is valid — it's just
being checked against the wrong region.
Add a Bitwarden region step to the wizard between the access-token and
project-list steps:
Step 1 Install bws
Step 2 Provide access token
Step 3 Pick region <-- new (US / EU / self-hosted-custom-URL)
Step 4 Pick project (now talks to the right endpoint)
Step 5 Test fetch
Region is stored in config.yaml as secrets.bitwarden.server_url and
plumbed into every bws subprocess as BWS_SERVER_URL (project list,
secret list, test fetch, and the env_loader startup pull).
Also:
- Non-interactive: 'hermes secrets bitwarden setup --server-url ...'
- Pre-existing BWS_SERVER_URL in the shell is detected and reused
- Cache key includes server_url so EU/US fetches don't collide
- 'hermes secrets bitwarden status' shows the configured region
- 'invalid_client' / '400 Bad Request' from bws now triggers a hint
pointing at the region setting instead of looking like a bad token
PR #6a1aa420e coupled `display.tool_progress: verbose` (a per-tool display
toggle for full args / results / think blocks) to `self.verbose` — which
controls root-logger DEBUG level. Result: setting tool_progress: verbose
in config silently flipped every module in the process to DEBUG and
flooded the terminal with internal logging, far beyond just full tool
calls.
The two concepts are separate:
- `tool_progress_mode == 'verbose'` → display behavior (tool rendering)
- `self.verbose` → logging behavior (root logger → DEBUG, line 9795)
This change keeps PR #6a1aa420e's argparse.SUPPRESS / config-fallback
plumbing but severs the verbose-display → debug-logging link.
Changes:
- cli.py:2868 — `self.verbose` only follows explicit `verbose=` arg; no
longer auto-True when tool_progress_mode == 'verbose'.
- cli.py:_toggle_verbose — slash-cycle through tool progress modes no
longer flips `self.verbose` / `agent.verbose_logging` / `agent.quiet_mode`.
- cli.py:9355 — fix misleading label (drop 'and debug logs').
- tui_gateway/server.py:_make_agent — same decoupling on the TUI side
(verbose_logging no longer derived from tool_progress_mode).
- tests/cli/test_tool_progress_scrollback.py — invert the test that
asserted the broken coupling; add coverage for explicit `--verbose`
still enabling DEBUG independent of tool_progress.
Live verified:
- tool_progress: verbose, no --verbose flag → 0 DEBUG/INFO log lines
- --verbose flag explicit → 32 DEBUG/INFO log lines (as expected)
When asyncio.sleep() fires just before Task.cancel() is called, CPython
sets _must_cancel=True but cannot cancel the already-completed sleep
future, so CancelledError is delivered at the next await (handle_message)
rather than at the sleep. By that point the superseded task has already
popped the merged event from _pending_text_batches, so the superseding
task sees an empty batch and silently drops the message.
Fix: add a synchronous task-registry check between the sleep and the pop.
No await between the check and the pop means no other coroutine can
interleave, so the guard is race-free.
When WeCom returns errcode=40001 (invalid credential) or 42001 (token
expired), send() was returning a failure without evicting the bad token
from _access_tokens. All subsequent sends then kept using the same
invalid cached token until its TTL naturally expired (~7200s).
Fix: on the first token-rejection errcode, evict the cache entry and
retry once with a freshly fetched token. Non-token errcodes fail
immediately as before. If the refreshed token also fails, the error
is returned without looping further.
Adds four regression tests covering: successful retry on 40001,
successful retry on 42001, no retry on unrelated errcode, and clean
failure when the refresh does not help.
* fix(profiles): cross-profile soft guard on file-write tools + system-prompt hint
Adds a soft guard so an agent running under one Hermes profile cannot
silently edit a different profile's skills/plugins/cron/memories.
Three layers:
A. agent/file_safety.classify_cross_profile_target
Classifies a write target against the active HERMES_HOME. Returns
a {active_profile, target_profile, area, target_path} dict when the
path lands in another profile's scoped area. PROFILE_SCOPED_AREAS =
(skills, plugins, cron, memories). get_cross_profile_warning()
wraps it into a model-facing error string that names both profiles,
names the area, and points at the cross_profile=True bypass.
Defense-in-depth, NOT a security boundary — the terminal tool runs
as the same OS user and can write any of these paths directly. The
guard exists to prevent confused-agent corruption, not to stop a
determined attacker. SECURITY.md §3.2 (terminal-bypass posture)
still applies.
Wired into tools/file_tools.write_file_tool and patch_tool with a
cross_profile=False kwarg. WRITE_FILE_SCHEMA and PATCH_SCHEMA both
advertise cross_profile so the model can pass it after explicit
user direction. patch_tool extracts target paths from V4A patch
bodies before checking (same shape as the existing sensitive-path
check).
skill_manage is already scoped to the active profile's SKILLS_DIR
by construction, so no extra guard wiring is needed there. The
D-side error message (below) still names other profiles when the
skill exists elsewhere.
B. agent/system_prompt
One deterministic line near the environment-hints block names the
active profile and tells the model not to modify another profile's
skills/plugins/cron/memories without explicit direction. Profile
name is stable for the lifetime of the AIAgent, so the line is
prompt-cache-safe.
D. tools/skill_manager_tool._skill_not_found_error
Replaces the bare "Skill 'X' not found." with a message that:
- names the active profile,
- searches OTHER profiles' skills dirs for the same name,
- names the profile(s) where the skill exists and the path,
- suggests `hermes -p <name>` to switch profiles, or
cross_profile=True for an explicit edit.
All 5 "not found" sites in skill_manager_tool (edit, patch, delete,
write_file, remove_file) now go through the helper.
Reference incident (May 2026): a hermes-security profile session
edited skills under both ~/.hermes/profiles/hermes-security/skills/
AND ~/.hermes/skills/ (the default profile's skills) without
realizing the second path belonged to a different profile. Three of
the four skill files needed manual restoration afterward.
What this PR does NOT do:
* No hard block. The terminal tool can still touch any of these
paths with no guard — same posture as the dangerous-command
approval flow. SECURITY.md §3.2 applies.
* No regex sweep on terminal commands for cross-profile paths.
That direction is a Skills-Guard-style arms race (cd + relative
paths, base64, etc.) and would false-positive on legitimate
cross-profile reads. Filed as a follow-up.
* No on-disk path migration. ~/.hermes/skills/ remains the
default profile's skills dir; this PR is about telling the
agent about that boundary, not changing the layout.
Tests:
tests/agent/test_file_safety_cross_profile.py (16 tests)
- _resolve_active_profile_name covers default/named/failure paths
- classify_cross_profile_target covers all four scoped areas,
both directions (default → named, named → default, named → named),
non-Hermes paths, and root-level config files
- get_cross_profile_warning covers in-profile no-op, cross-profile
message shape, and the defense-in-depth self-documentation
tests/tools/test_cross_profile_guard.py (12 tests)
- write_file: in-profile allow, cross-profile block, cross_profile=True
bypass, non-Hermes pass-through
- patch: replace-mode block, cross_profile=True bypass, V4A patch
path extraction
- skill_manage: error names the other profile (single + multiple),
missing-everywhere falls back to skills_list hint
- system prompt: contract-level checks (both branches present,
cross_profile=True mentioned, ~/.hermes/profiles/ referenced)
All 207 existing tests in file_safety/file_operations/skill_manager
still pass. 10 system-prompt tests still pass.
E2E verified: the exact incident scenario (security profile editing
default's hermes-agent-dev skill) is now blocked with the warning
message; cross_profile=True unblocks.
* fix(code_execution): add cross_profile to write_file/patch stubs
The cross_profile kwarg added to write_file_tool/patch_tool needs to
flow through the execute_code sandbox stubs in _TOOL_STUBS so the
test_stubs_cover_all_schema_params drift test passes. Without this,
scripts running inside execute_code couldn't pass cross_profile=True
through hermes_tools.write_file().
Caught by CI on PR #31290.
Adds an --ids flag to 'hermes kanban promote' mirroring the existing
block/schedule convention, so the marquee use case from issue #28822
(promote all children of a closed organizational parent in one shot)
doesn't require a shell loop. Single-id JSON output stays a flat
object for back-compat; bulk emits a list. Dedupes positional + --ids
so the same id can't be promoted twice in one call. 5 new CLI-level
tests cover bulk happy path, partial-failure exit code, JSON shapes,
and dedup.
Also adds the thedavidmurray noreply-email -> github-login mapping in
scripts/release.py so the salvage cherry-pick passes the AUTHOR_MAP
contributor-credit check.
Adds `hermes kanban promote <task_id>` for manual lifecycle recovery
when an auto-promote daemon misses the parent-done transition (issue
#28822). Refuses promotion unless every parent dep is done/archived
(override with --force). Emits a `promoted_manual` audit event distinct
from the automatic `promoted` kind, so audit consumers can filter
human-driven from system-driven promotions. Supports --dry-run and
--json for orchestration. Does not mutate assignee/claim state — the
dispatcher picks the card up via its normal ready polling path.
Closes#28822.
Two independent bugs caused the slash-command autocomplete to render
`/goal` as `/goa` (and `/gquota` as `/gquot` for that matter) in the TUI:
1. `tui_gateway/server.py` was forwarding `c.display` from
prompt_toolkit's `Completion` straight into the JSON-RPC payload.
prompt_toolkit normalizes `display=` into `FormattedText` (a `list`
subclass), so the wire format became `[["", "/goal"]]` instead of
the `string` that `CompletionItem.display` in the TUI declares.
`meta` already went through `to_plain_text` — `display` did not.
2. The dropdown row in `appOverlays.tsx` used `flexDirection="row"`
with the display `<Text>` and the (very long) meta `<Text>` as
siblings. When the meta overflows the row width, Ink/Yoga shrinks
the *first* column by one cell, lopping the trailing character off
the command name. `/goal` triggers it reliably because its meta
string is the longest of any built-in command (description +
embedded `[text | pause | resume | clear | status]` usage hint).
Wrapping the display column in `<Box flexShrink={0}>` keeps it at
its natural width and lets the meta wrap or truncate instead.
The original PR #17194 description claimed test_display_tool_preview.py
but only ever shipped test_display_todo_progress.py. Add the missing
coverage for the failure-suffix path:
- _trim_error: whitespace strip, length cap, File-not-found path collapse
- _detect_tool_failure: terminal exit codes, memory full, structured
{error}/{message} extraction, malformed JSON, None result
- get_cute_tool_message E2E: read_file failure, terminal exit-only,
terminal stderr message, memory full, success path, no-result path
Also update test_tool_progress_scrollback.test_error_suffix_on_failed_tool
to reflect the new behavior: the generic '[error]' fallback in cli.py
has been removed; failure suffixes now come from the result-aware
_detect_tool_failure (e.g. '[exit 1]', '[File not found: x]').
Parse the todo_tool result summary to display completion progress in
CLI tool preview lines:
Read: ┊ 📋 plan 3/4 task(s) 0.5s
Update: ┊ 📋 plan update 3/4 ✓ 0.5s
Create: falls back to plain count when no completed tasks
Falls back gracefully to the existing 'N task(s)' format when the
result is missing, malformed, or has no completed items.
Originally proposed in PR #17194 by Albert.Zhou; salvaged onto current
main.
Co-authored-by: Albert.Zhou <albert748@gmail.com>
`terminal(background=true)` without `notify_on_complete=true` or
`watch_patterns` runs the process SILENTLY — the agent has no way
to learn it finished short of calling `process(action='poll')`
explicitly. That's correct for genuine long-lived processes (servers,
watchers, daemons) but is a footgun for every bounded task (tests,
builds, deploys, CI pollers, batch jobs), which is the vast majority
of background uses.
Hit on May 23, 2026 (PR #31231 incident): agent launched a CI-watch
loop with `background=true` only. The poller ran fine, exited green
6 minutes later, agent never noticed. User had to surface 'we are
green CI, you can merge.' Memory and skill docs said *what* to do
(poll in background) but not *how* to receive the result. The
`notify_on_complete=true` flag exists and works, but is easy to
forget when bg seems sufficient on its own.
Two changes here, mutually reinforcing:
1. Runtime nudge: tool result for `background=true` w/o notify or
watch_patterns now includes a `hint` field explaining the silent-
process failure mode and pointing at the corrective flag. Agent
sees it on the same turn and self-corrects without needing the
user to surface anything. Cost for legitimate server cases is one
ignored read (~50 tokens); cost for forgot-notify cases is
prevented blindness (potentially many turns, or a user nudge).
False positives << false negatives.
2. Schema/description rewrite: top-level TERMINAL_TOOL_DESCRIPTION
and the `background` field description now lead with 'Almost
always pair with notify_on_complete=true' instead of presenting
it as one of two equally-likely patterns. The two legitimate
non-notify shapes (long-lived servers; watch_patterns mid-process
signals) are still documented, but as the minority case.
Tests cover all four shapes: bg-only emits hint, bg+notify doesn't,
bg+watch_patterns doesn't, foreground doesn't. 4 new tests; full
suite of background/process tests stays green (160/160 across the
relevant 6 test files).
AI Card "tool progress" cards created with finalize=False were left in
streaming state on DingTalk's UI after a gateway restart because
disconnect() called _streaming_cards.clear() without first closing
them via _close_streaming_siblings.
Move the finalization loop before self._http_client.aclose() so the
HTTP client is still available when the finalize requests are sent.
Adds a regression test that asserts the HTTP client is alive during
finalization.
The Windows branch of `_terminate_host_pid` early-returned after
`os.kill(pid, SIGTERM)` (which Python maps to `TerminateProcess` for
the target handle only), leaving descendant processes — e.g. Chromium
renderer/GPU/network helpers spawned by an `agent-browser` daemon —
running on Windows even after the preceding commit fixed POSIX.
The right Windows primitive is `taskkill /PID <pid> /T /F`:
`/T` walks the tree, `/F` force-terminates. Same approach
`gateway.status.terminate_pid(force=True)` already uses for the
gateway's own shutdown path; reuse the same shape here.
Why NOT extend the POSIX psutil tree-walk to Windows:
1. Windows doesn't maintain a Unix-style process tree. `psutil.
Process.children(recursive=True)` walks PPID links that go stale
when intermediate processes exit, so enumeration is best-effort
and silently misses orphaned descendants. The whole bug we're
fixing is orphaned descendants.
2. `psutil.Process.terminate()` on Windows is `TerminateProcess()`
for one handle — same single-PID scope as the existing
`os.kill`. The existing comment in `gateway/status.py::
terminate_pid` warns this explicitly: 'os.kill SIGTERM is not
equivalent to a tree-killing hard stop' on Windows.
3. Headless Chromium has no GUI window, so the softer
`taskkill /T` without `/F` (which sends WM_CLOSE) won't reach
it either. `/F` is required.
POSIX path is unchanged. The taskkill subprocess uses the same
`creationflags=windows_hide_flags()` pattern other Windows shellouts
in this codebase use. `FileNotFoundError` / `TimeoutExpired` /
`OSError` fall back to bare `os.kill(SIGTERM)` as cheap insurance.
Tests cover the Windows branch via the codebase's standard
`monkeypatch _IS_WINDOWS` pattern (`references/windows-native-
support.md`), plus POSIX tree-walk order, NoSuchProcess swallow,
and the OSError fallback path. 7 new tests, all green on Linux CI.
os.kill(pid, SIGTERM) only signals the parent, leaving Chromium child
processes (renderer, GPU, etc.) orphaned. Reuse the existing
ProcessRegistry._terminate_host_pid() helper which walks the process
tree leaf-up via psutil, terminating children before the parent.
Policy: if it ain't a secret it goes in config.yaml. HERMES_INFERENCE_PROVIDER
was leaking behavioral config into the .env surface, including from the gateway,
which bypassed config.yaml entirely.
Behavior:
- gateway/run.py: drop HERMES_INFERENCE_PROVIDER read in _resolve_runtime_agent_kwargs.
Gateway now flows through resolve_runtime_provider() with no `requested` override,
which reads model.provider from config.yaml first.
Docs/UX (strip env var from user-facing surface):
- --provider help text no longer mentions the env var
- cli-config.yaml.example same
- reference/environment-variables.md: remove HERMES_INFERENCE_PROVIDER row and
the cross-reference from HERMES_INFERENCE_MODEL
- reference/cli-commands.md: blank the env-var column for --provider
- guides/xai-grok-oauth.md, guides/minimax-oauth.md: replace
HERMES_INFERENCE_PROVIDER=x hermes invocations with config.yaml / --provider
- developer-guide/adding-providers.md, model-provider-plugin.md: reframe
Internal mechanism (kept as-is):
- hermes_cli/main.py writes HERMES_INFERENCE_PROVIDER into the TUI subprocess env
- tui_gateway/server.py reads it on TUI startup
- resolve_requested_provider() / oneshot.py / cli.py still fall through to the
env var as a last-resort behind config.yaml, which is what makes the TUI
parent->child handoff work
This stays. We just stop documenting it as a user knob.
Tests: tests/gateway/test_auth_fallback.py — simplify mock to fail on first
call, succeed on second; drop monkeypatch.setenv lines that no longer matter.
Supersedes #31064 (closed with credit to @novax635 who surfaced the underlying
issue but proposed aligning gateway *to* the env var rather than removing it).
Auxiliary LLM tasks (vision, compression, web_extract, etc.) currently
require modifications to core files for any plugin that needs its own
task slot — specifically the _AUX_TASKS list in hermes_cli/main.py and
the hardcoded env-var bridging dict in gateway/run.py. This violates
the 'plugins must not modify core files' rule and forces every memory
or context plugin that wants its own auxiliary task to either fork
core or open a coupled core+plugin PR.
This change adds a generic plugin surface for auxiliary task
registration:
ctx.register_auxiliary_task(
key='memory_retain_filter',
display_name='Memory retain filter',
description='hindsight pre-retain dedup/extract',
defaults={'timeout': 30, 'extra_body': {'reasoning_effort': 'low'}},
)
After registration, the task automatically:
- Appears in 'hermes model → Configure auxiliary models' picker via
a new _all_aux_tasks() merge of built-in + plugin tasks
- Has its provider/model/base_url/api_key bridged from config.yaml
to AUXILIARY_<KEY_UPPER>_* env vars at gateway startup
(gateway/run.py now uses a dynamic bridged-keys set instead of
a hardcoded per-task dict)
- Gets plugin-declared defaults (timeout, extra_body, etc.) layered
underneath user config so unconfigured plugin tasks still work
(agent/auxiliary_client._get_auxiliary_task_config)
- Resets to auto via 'Reset all to auto' alongside built-ins
Validation:
- Rejects shadowing of built-in keys (vision, compression, etc.)
- Rejects invalid key shapes (must match [A-Za-z0-9_]+)
- Rejects cross-plugin collisions (clear error)
- Allows same-plugin re-registration (idempotent updates)
Plugin discovery failures (rare) fall back gracefully — the aux
config UI still shows built-in tasks if get_plugin_auxiliary_tasks()
raises, and gateway env-var bridging keeps working for built-ins.
Built-in tasks remain hardcoded in _AUX_TASKS for stability — they're
the baseline UX, and DEFAULT_CONFIG already ships their defaults.
Plugin tasks layer on top.
Tests: 15 new tests in test_plugin_auxiliary_tasks.py covering API
validation, manager state lifecycle, helper sort order, _all_aux_tasks
merge semantics, _reset_aux_to_auto inclusion of plugin tasks, and
default-layering in auxiliary_client.
Updates the gateway-bridge code-parity test (test_auxiliary_config_bridge)
to assert the new dynamic shape rather than the hardcoded literal env
var names which no longer appear post-refactor.
Motivation: this unblocks PR #20262 (hindsight smart retain pipeline)
and similar plugins that need a dedicated aux task slot. The change
is non-breaking — built-in env vars (AUXILIARY_VISION_PROVIDER, etc.)
keep working since they're produced by the same f-string template
that built the hardcoded names.
Trim ~600 LOC off the original contribution while keeping the same
operator-facing surface and detection coverage.
- Collapse three entry points (file / dir / bundle) into one
ast_scan_path(path) that handles both files and directories.
- Drop AstFinding dataclass + severity field — replaced with plain
(file, line, pattern_id, description) tuples. Severity ordering was
display-only for a diagnostic that explicitly disclaims security
verdicts, so the field added bookkeeping without earning its place.
- Replace Rich-markup formatter with plain text grouped by file.
- Drop the 'inspect --ast-deep' surface — same scanner, same output as
'audit --deep', single CLI entry is enough. Operators audit after
install; pre-install inspection signal isn't worth the second surface.
- Trim test file to the cases that earn their place: bypass payload,
syntax error survival, RecursionError survival, false-positive guard
(importer lookalike), literal-arg false-positive guard, non-.py
ignored, directory recursion + cache-dir skipping, missing-path,
getattr/__dict__ detection, formatter empty + populated.
Net: tools/skills_ast_audit.py 353 -> 133 LOC,
tests/tools/test_skills_ast_audit.py 299 -> 103 LOC, full diff
+704/-12 -> +264/-6. No change to tools/skills_guard.py — Skills Guard
verdicts remain untouched per SECURITY.md §2.4.
Add opt-in AST diagnostics for skill review without making Skills Guard stricter by default.
- Add hermes skills inspect --ast-deep to scan fetched skill bundles before installation
- Add hermes skills audit --deep to scan already-installed hub skills
- Keep AST analysis in tools/skills_ast_audit.py, separate from tools/skills_guard.py
- Label output as diagnostic hints, not security verdicts
- Cover dynamic import/access patterns: importlib, __import__(computed), getattr(computed), and __dict__[computed]
This follows the maintainer guidance from closed PR #7436: useful AST-level analysis belongs in an opt-in diagnostic path, not in Skills Guard's default heuristic scan.
Null bytes in API key values (introduced by copy-paste) crash
os.environ[k] = v with ValueError: embedded null byte, preventing
hermes from starting at all.
Robustness:
- Surface 401/404 stream failures via _set_fatal_error() so the gateway's
runtime status reflects 'fatal: ntfy_unauthorized' / 'ntfy_topic_not_found'
instead of staying 'connected' when the reconnect loop halts. Matches
the pattern in whatsapp / telegram / sms adapters.
- Strip whitespace from auth tokens so pasted tokens with trailing
newlines don't produce malformed Authorization headers.
Simplicity:
- Extract _build_auth_header() and _truncate_body() to module-level
helpers, used by both NtfyAdapter and _standalone_send. Removes the
duplicated auth/truncation logic between the two paths.
Docs:
- website/docs/user-guide/messaging/ntfy.md — full setup guide,
identity-model warning, self-hosting, cron usage, troubleshooting.
- website/docs/reference/environment-variables.md — all 9 NTFY_* vars.
- website/docs/user-guide/messaging/index.md — platform comparison row.
- website/sidebars.ts — sidebar entry between simplex and open-webui.
Tests: 78/78 (+ 10 new robustness tests covering token hygiene, fatal
error propagation for 401/404, and the _truncate_body helper).
ntfy now ships as a self-contained plugin under plugins/platforms/ntfy/
instead of editing 8 core files (gateway/config.py Platform enum,
gateway/run.py factory + auth maps, cron/scheduler.py, toolsets.py,
hermes_cli/status.py, agent/prompt_builder.py, gateway/channel_directory.py,
tools/send_message_tool.py).
All routing goes through gateway/platform_registry via register_platform():
- adapter_factory, check_fn, validate_config, is_connected
- env_enablement_fn seeds PlatformConfig.extra from NTFY_* env vars so
gateway status reflects env-only setups without instantiating httpx
- standalone_sender_fn handles deliver=ntfy cron jobs when cron runs
out-of-process from the gateway
- allowed_users_env / allow_all_env hook into _is_user_authorized
- cron_deliver_env_var=NTFY_HOME_CHANNEL for cron home routing
- platform_hint surfaces in the system prompt
- pii_safe=True (topic names are the only identifier; no PII to redact)
Tests moved to tests/gateway/test_ntfy_plugin.py using _plugin_adapter_loader
so the module lives under plugin_adapter_ntfy in sys.modules and cannot
collide with sibling plugin-adapter tests on the same xdist worker. The
core-file grep tests (Platform.NTFY in source, hermes-ntfy in toolsets,
etc.) are replaced with plugin-shape tests covering register() metadata,
env_enablement_fn output, and standalone_sender_fn behavior.
68 tests pass under scripts/run_tests.sh.
First scratch workspace creation on an install now emits a one-shot
warning log + a 'tip_scratch_workspace' event on the task. Sentinel
file at ~/.hermes/kanban/.scratch_tip_shown silences subsequent
creations across the whole install.
Behavior unchanged — scratch is still ephemeral by design. This just
makes the design visible to new users (reported in user community:
'progress files vanished, no warning anywhere').
Docs (en + ko) updated to spell out 'Deleted when the task completes'
on the scratch bullet and 'Preserved on completion' on worktree/dir.
User incident (Slack, 2026-05-13): user walked away mid-conversation,
agent requested approval to run `rm -rf .git`, the prompt timed out
after the gateway_timeout (default 300s), and the agent removed the
.git folder on its own. Corroborated by an independent report from a
Telegram user.
The underlying code path was correct — `check_all_command_guards`
returns `approved=False` with a BLOCKED message on both timeout and
explicit deny, and `terminal_tool` surfaces that as `status=blocked`
to the agent. The bug is at the model-interface layer: the message
"BLOCKED: Command timed out. Do NOT retry this command." reads to
some models as "try a different command achieving the same outcome."
This commit changes only the model-facing message + the structured
return shape:
- Timeout message now explicitly names the three evasion paths the
agent must avoid: retry, rephrase, AND achieve the same outcome
via a different command. Ends with "Silence is not consent."
- Explicit deny gets the same shape minus the silence-is-not-consent
line (it WAS an explicit deny, not silence).
- New structured fields on the return dict: `outcome` ("timeout"
or "denied") and `user_consent` (always False on this branch)
so plugins, hooks, and audit pipelines don't have to string-parse
the message to distinguish the two cases.
The mechanism that should already have prevented the original incident
— timeout treated as deny, BLOCKED result, post hook fires with
`choice="timeout"` — is unchanged. This commit hardens only the
agent's reading of the result.
Tests:
- test_timeout_returns_approved_false_with_no_consent — pins the
return shape on the Slack-shaped notify_cb-registered path
- test_timeout_message_is_emphatic_against_retry_and_rephrase —
pins the exact phrases the message must contain
- test_explicit_deny_carries_same_no_consent_shape — same contract
on explicit /deny
- test_timeout_emits_post_hook_with_timeout_outcome — pins the
post_approval_response hook payload so audit plugins can act
329 approval tests passing (4 new + 325 existing).
Fixes#24912
Reproduction (production, 2026-05-14): two concurrent sessions on the
same agent. Session A patches MEMORY.md directly via the patch tool,
appending ~8KB of structured content (Vendor Master, Standing Orders,
Pin Board) — none of it through the memory tool, so no § delimiters.
Session B starts later with stale in-memory state (1 entry, ~331
chars). Session B calls memory(action=replace) on its one known
entry. The tool's _read_file parses A's content as a single 8KB
'entry' (no § splits), then replace truncates that entry to B's new
333-byte content. ~8KB of structured content silently destroyed.
The atomic-rename write path is fine in isolation. The bug is the
implicit contract: the tool assumes MEMORY.md is exclusively a
§-delimited list of small entries it wrote, but the v0.13 install
runbook itself uses 'cat >> MEMORY.md' for onboarding, the patch tool
edits the file directly, and operators do too.
Fix: a drift guard in MemoryStore._detect_external_drift that fires
on either signal:
1. Re-parse + re-serialize doesn't produce identical bytes
(catches oddly-encoded delimiters / partial writes).
2. Any single parsed entry exceeds the store's whole-file char
limit. The tool budgets the ENTIRE store against that limit
(2200 chars for memory, 1375 for user), so no tool-written
entry can legitimately be larger. An entry bigger than the
store limit means an external writer dropped free-form content
into what the tool will treat as one entry.
When drift fires, _reload_target writes a .bak.<ts> snapshot of the
on-disk file, then add/replace/remove refuse to flush. The original
file stays untouched. The error dict surfaces the .bak path AND a
remediation string ('integrate missing entries via memory(add=...)
one at a time, then rewrite the file clean') so the model can act on
it without escalating to the operator.
Tests:
- test_replace_refuses_on_drift, test_add_refuses_on_drift,
test_remove_refuses_on_drift — all three mutators refuse
- test_clean_file_does_not_trigger_drift — false-positive check
- test_error_message_points_at_remediation — error string shape
- test_drift_guard_also_protects_user_target — USER.md too
- test_drift_backup_filename_is_unique_per_invocation — bak.<ts>
naming pin
144 memory tests passing (was 137; +7).
Fixes#26045
Eleven new tests pinning the #29344 fix. Layout mirrors the existing
"Fix D" entitlement section so the bad-credentials disambiguator
sits alongside the entitlement-block tests it complements.
Classifier-level coverage:
* ``test_is_entitlement_failure_false_for_bad_credentials_wke_suffix``
— verbatim shape from the reporter's wire capture
(``{code: 'caller does not have permission', error: 'OAuth2 access
token could not be validated. [WKE=unauthenticated:bad-credentials]'}``)
↦ classifier must return False so the refresh path runs.
* ``test_is_entitlement_failure_false_for_wke_suffix_in_normalized_shape``
— same body after ``_extract_api_error_context`` has rewritten it
to ``{reason, message}``. The disambiguator must fire in BOTH
shapes; without this guard the production call site at
``_recover_with_credential_pool`` (which goes through the
normalised extractor) would still misclassify.
* ``test_is_entitlement_failure_false_for_any_wke_unauthenticated_variant``
— parametrised forward-compat: ``bad-credentials``,
``expired-token``, ``revoked``, ``some-future-reason``. xAI
documents the prefix as stable, the suffix after the colon as a
reason code that can grow; every variant under
``unauthenticated:`` must route to refresh.
* ``test_is_entitlement_failure_false_via_oauth2_validation_phrase_alone``
— belt-and-braces guard: if a future API revision drops the WKE
suffix but keeps "OAuth2 access token could not be validated", we
still classify correctly.
* ``test_is_entitlement_failure_wke_signal_overrides_entitlement_keywords``
— defensive: if a body ever carries BOTH the WKE suffix and
entitlement language, the WKE signal wins. Auth is recoverable;
entitlement isn't, and a refreshed token will resurface the
entitlement message on the next request.
* ``test_is_entitlement_failure_case_insensitive_wke_match`` —
pins that the classifier lowercases the haystack so a future xAI
build that uppercases the prefix doesn't reintroduce the bug.
Recovery-path coverage (end-to-end through
``_recover_with_credential_pool``):
* ``test_recover_with_credential_pool_refreshes_on_xai_bad_credentials_403``
— the headline test the reporter requested: a bad-credentials 403
with the exact wire body must call ``try_refresh_current()``
exactly once and ``_swap_credential`` once. Pre-fix this returned
``(False, _)`` because the entitlement classifier over-matched and
short-circuited the refresh path.
* ``test_recover_with_credential_pool_still_blocks_real_entitlement``
— companion regression guard for #26847: a pure unsubscribed-
account body (no WKE suffix, no OAuth2-validation phrase) must
still surface as entitlement and skip refresh. The new
disambiguator must not weaken the original loop-protection it
was added to preserve.
The scaffolding reuses ``_make_codex_agent``, ``_FakePool``, and the
existing ``MagicMock`` patterns from the surrounding tests so the
new section reads as a natural extension of "Fix D" rather than a
separate test file.
Closes#30045. Based on @qike-ms's PR #30141.
Telegram status callbacks (lifecycle, compression, context-pressure)
used to append a fresh bubble on every emit. Now adapter tracks
{(chat_id, status_key) -> message_id}; first call sends, subsequent
calls edit. Failed edits drop the cache entry and fall through to a
fresh send.
- gateway/platforms/telegram.py: send_or_update_status() (+34 LOC)
- gateway/run.py: route _status_callback_sync through it when the
adapter supports it; plain adapter.send() otherwise (+15 LOC)
- 5 tests covering first send / edit-in-place / edit-failure fallback
/ distinct key & chat isolation
PR 2362cc468 ("fix(gateway): enforce env variable template expansion
on runtime config loaders") refactored `_load_service_tier` to read
config via the new `_load_gateway_runtime_config` wrapper instead of
opening `_hermes_home/config.yaml` directly. The
`test_run_agent_passes_priority_processing_to_gateway_agent` test still
only stubbed `_load_gateway_config` (the inner loader), so the runtime
wrapper saw an empty config and `_load_service_tier` returned None,
breaking the test:
FAILED tests/gateway/test_fast_command.py::test_run_agent_passes_priority_processing_to_gateway_agent
- AssertionError: assert None == 'priority'
Fix: also stub `_load_gateway_runtime_config` to return the expected
`agent.service_tier=fast` config, so the test once again drives the
priority routing path it was written to verify.
Confirmed reproducing on current main before the patch and passing
after.