Sibling-site follow-up to the AGENTS.md token-lock fix (#50481). Platform
adapters migrated from gateway/platforms/<name>.py to
plugins/platforms/<name>/adapter.py; a handful (signal, weixin, bluebubbles,
qqbot, yuanbao, msgraph_webhook, webhook, api_server) still live in
gateway/platforms/.
- adding-platform-adapters.md: new-adapter creation path + reference-impl table
- gateway-internals.md: rewrite the adapter tree to reflect the actual split
- zh-Hans mirrors of both kept in parity
- scripts/release.py: add TutkuEroglu to AUTHOR_MAP (CI gate)
* feat(providers): remove google-gemini-cli + google-antigravity OAuth providers
Google now actively bans accounts for third-party tools that piggyback on
Gemini CLI / Antigravity / Code Assist OAuth, and because abuse prevention
sits at a backend layer the ban can extend to the entire Google account
(Gmail/Drive), with a second violation being permanent.
Ref: https://github.com/google-gemini/gemini-cli/discussions/20632
Removes both OAuth inference providers entirely (modules, provider profiles,
auth/runtime/config/models wiring, the /gquota Code Assist quota command,
the antigravity-cli optional skill, desktop + docs surface in en + zh-Hans).
The API-key 'gemini' provider (GOOGLE_API_KEY/GEMINI_API_KEY against
generativelanguage.googleapis.com) is unaffected and stays fully supported.
* fix(skills): keep the antigravity-cli skill — only the OAuth provider is removed
The antigravity-cli optional skill orchestrates the external `agy` binary as
a coding-agent tool via the terminal tool — it does NOT wrap Hermes inference
through the banned google-antigravity OAuth provider, so it carries none of
the account-ban risk that motivated removing that provider. Restore the skill,
its docs page, the sidebar entry, and the optional-skills catalog row. The
google-antigravity / google-gemini-cli inference providers stay fully removed.
The s6 dashboard entrypoint and docker integration tests relied on
HERMES_DASHBOARD_INSECURE=1 to bring up a 0.0.0.0 dashboard with no auth
provider. With --insecure now a no-op (auth gate mandatory on non-loopback
binds), that path fails closed.
- s6 dashboard/run: drop --insecure derivation; warn that the env is a no-op
and point operators at HERMES_DASHBOARD_BASIC_AUTH_* / OAuth.
- docker tests: supervision tests now register the bundled basic password
provider (HERMES_DASHBOARD_BASIC_AUTH_USERNAME/_PASSWORD) so the gate has a
provider and the dashboard binds. Rewrote the insecure-opt-out test to
assert fail-closed (dashboard does NOT serve) instead of gate-bypass.
- docs (en + zh-Hans): HERMES_DASHBOARD_INSECURE documented as deprecated
no-op; basic-auth is the zero-infra way to authenticate a containerized
public dashboard.
The kanban-worker and kanban-orchestrator bundled skills existed only to
be force-loaded into dispatcher-spawned workers, gated by
environments:[kanban] so they wouldn't leak into normal CLI listings.
That gating was fragile (the leak that #50443 patched) and the
--skills auto-load was already best-effort — most workers ran without it
because the bundled skill isn't present in profile-scoped skills dirs.
Remove the skills entirely and promote their load-bearing content
(workspace kinds, deliverable artifacts, created-card integrity, profile
discovery) into KANBAN_GUIDANCE, which is already injected into every
kanban worker's system prompt. Net result: every worker reliably gets
the guidance, nothing can leak into a CLI/blank-slate session, and the
gating machinery is gone.
- agent/prompt_builder.py: promote the 4 load-bearing rules into KANBAN_GUIDANCE
- hermes_cli/kanban_db.py: drop --skills kanban-worker auto-injection + _kanban_worker_skill_available probe
- hermes_cli/kanban_swarm.py: drop skills=[kanban-orchestrator] on the root card
- hermes_cli/kanban.py: drop kanban-init skill seeding; fix help text
- delete skills/devops/kanban-{worker,orchestrator}
- docs: delete the two skill pages (EN+zh), fix sidebars/catalog/kanban.md/kanban-worker-lanes.md and the video-orchestrator + codex-lane references
- tests: update spawn-argv expectations; re-bound the guidance-size guard
Supersedes the skill-leak half of #50443 (credit @helix4u for flagging the area).
Answers a recurring plugin-author question: how to read the active
profile and drive Hermes from inside a hook callback when ctx._cli_ref
is None (gateway, hermes chat -q, and kanban-spawned worker sessions).
- Adds a 'Act from inside a hook' section to the plugin guide covering
ctx.profile_name and ctx.dispatch_tool as the session-agnostic APIs,
with a kanban_task_blocked example, and notes there is no in-process
slash-command bridge for headless workers (shell out via the terminal
tool instead).
- Adds the three kanban lifecycle hooks to the hook reference table with
their process semantics.
- Pins the contract with a regression test: ctx.dispatch_tool invokes a
tool handler with _cli_ref=None (worker/hook context).
Requested by @Smithangshu on Discord.
hermes -w created the worktree branch from the standalone clone's HEAD, which
lags origin when the clone isn't freshly updated (it's only refreshed by
hermes update, not per session). Every worktree branch then rooted on a stale
base, so the PR diff GitHub computes against current main ballooned with
unrelated changes and the agent had to discover the staleness at push time and
rebase.
_resolve_worktree_base() now fetches and branches from the freshest available
ref: the current branch's upstream if it tracks one (so a deliberate
feature-branch worktree tracks its own remote), else the remote's default
branch (origin/HEAD), else local HEAD as a fail-soft fallback (offline / no
remote / detached). A bogus 'origin/(unknown)' default is guarded, and worktree
creation retries from HEAD if branching off the remote ref fails — so this is
never worse than the old behavior.
Gated by worktree_sync (default true); set worktree_sync: false to keep the
old branch-from-local-HEAD behavior. The resolved base is printed in the
session banner.
This is the follow-up to the #50319 session, where the standalone clone was
213 commits behind origin and the worktree inherited that stale base.
Rich messages are not ready for primetime: current Telegram clients can
render Bot API 10.1 rich messages as blank/unsupported bubbles and make
them hard to copy as plain text, which is worse than the legacy
MarkdownV2 path for command snippets and mobile handoffs. Default the
rich_messages toggle to False so replies stay on the copyable legacy
path; users opt in per bot via platforms.telegram.extra.rich_messages:
true. Updates adapter, gateway config default, example config, English +
zh-Hans docs, and the default/opt-in tests.
The gateway pre-compression hygiene valve force-compressed any session
crossing 400 messages regardless of token usage. On large-context (1M+)
models doing many short, message-dense turns, a healthy session at ~16%
token usage could hit 400 messages and get force-compressed — and the
compression summary's stale Active Task could then bleed into the next
turn.
The valve's actual purpose is to break a death spiral: when API calls
keep disconnecting on an oversized session, no token-usage data arrives,
the token threshold never fires, and the transcript grows unbounded.
It's a count-based floor for that pathological case only. 400 was tuned
for ~200K-context models and is far too low for modern large-context
sessions. Raise the default to 5000 — still well clear of any death
spiral, but no longer firing on legitimate long conversations.
The value remains fully configurable via compression.hygiene_hard_message_limit.
Adds hermes_cli/context_switch_guard.py mirroring the model_cost_guard
pattern. When a user switches models mid-session (Herm TUI picker, CLI,
or /model on Telegram/Discord), the warning surfaces on the existing
ModelSwitchResult.warning_message path used by the expensive-model
guard if the new model's compression threshold is below the current
session size.
Partial fix for #23767 — addresses only the 'user-facing guardrail
when switching from a high-context provider to a substantially
lower-context provider' slice. The other proposed fixes from that
issue (hard preflight token guard, metadata cache invalidation on
switch, compression safety invariant, oversized tool-output handling)
are out of scope for this PR.
- Remove the 'you only log in once per machine' claim from spotify.md
and document the ~6-month refresh token expiry with re-auth instructions
- Add test_client_wraps_invalid_grant_as_spotify_auth_required_error to
confirm SpotifyClient wraps AuthError(code=spotify_refresh_invalid_grant)
into SpotifyAuthRequiredError with a user-facing message
Refs: #28155
When model.context_length is set in config.yaml, it blocks auto-detection
from the server's /v1/models endpoint. The skill incorrectly implied a
hard fallback to 131072. Add the resolution chain and the fix command
(hermes config set model.context_length "") to both the config table
and a new troubleshooting section.
Closes#48835
The bundled himalaya skill and its website docs documented command
syntax that does not match Himalaya CLI v1.2.0.
Verified against pimalaya/himalaya v1.2.0 source:
- message move: MessageMoveCommand declares target_folder BEFORE
envelopes (src/email/message/command/move.rs) -> usage is
'<TARGET> <ID>...', so 'move 42 "Archive"' is wrong; correct is
'move "Archive" 42'.
- message copy: same ordering in copy.rs.
- attachment download: AttachmentDownloadCommand exposes the flag as
'-d, --downloads-dir <PATH>' (src/email/message/attachment/command/
download.rs), not '--dir'.
Fixed in all three surfaces that carried the wrong examples:
- skills/email/himalaya/SKILL.md
- website/docs/.../email-himalaya.md
- website/i18n/zh-Hans/.../email-himalaya.md
* feat(setup): Blank Slate setup mode — minimal agent, opt in to everything
Adds a third first-time setup option alongside Quick Setup and Full Setup.
Blank Slate forces ON only what an agent needs to run — provider & model,
the File Operations toolset, and the Terminal toolset — and turns
everything else OFF, then walks the user through opting each capability
back in.
What it does:
- platform_toolsets.cli = [file, terminal] (explicit, authoritative list)
- agent.disabled_toolsets = every other known toolset (web, browser,
code_execution, vision, memory, delegation, cronjob, skills, image_gen,
kanban, …). Applied last in the resolver, so it overrides the
non-configurable platform-toolset recovery that would otherwise re-add
toolsets like kanban — guaranteeing a true blank slate.
- Optional config features off: compression, memory + user-profile capture,
checkpoints, smart model routing, auto session reset.
- Bundled skills default to NONE (reuses the .no-bundled-skills marker);
offers to seed the full catalog.
- Walks through tools / plugins / MCP / messaging, all opt-in.
Proven end-to-end: with the Blank Slate config, model_tools.get_tool_definitions
emits exactly 6 schemas — patch, process, read_file, search_files, terminal,
write_file. Nothing else reaches the model.
Re-enable later via hermes tools / hermes skills opt-in --sync /
hermes setup agent.
Tests: tests/hermes_cli/test_setup_blank_slate.py (8 tests) pin the writers,
the resolver invariant ({file, terminal}), and the 6-schema end-to-end set.
Docs: getting-started/quickstart.md documents all three setup modes.
* feat(setup): Blank Slate fork — finish minimal, or walk through configs
After applying the minimal baseline (provider/model + file + terminal,
everything else off), Blank Slate now presents a choice instead of always
running the full walkthrough:
1. Start with everything disabled — finish now with the minimal agent.
2. Walk through all configurations — opt in to tools, skills, plugins, MCP,
and messaging.
Provider/model and terminal are still configured first either way (the agent
can't run without them). The finish-now path records the bundled-skill opt-out
so future `hermes update` runs don't re-inject skills. The walkthrough body
moved to a separate _blank_slate_walkthrough() helper.
Tests: TestBlankSlateFork covers both branches (finish-now applies baseline +
skill opt-out and skips the walkthrough; walkthrough path invokes it). Docs
updated to describe the fork.
Sets the Telegram bot's short description (the line under its name) to
"Online" on gateway connect and "Offline" on clean disconnect, gated
behind extra.status_indicator (off by default).
Telegram bots have no presence/online dot — that's a user-account
feature the Bot API doesn't expose for bots. The short description is
the closest available surface, so this gives users a way to tell whether
the gateway is up from the bot's profile.
- New extra.status_indicator flag (+ status_online/status_offline text
overrides), read in __init__ via config.extra — no config-schema change.
- _set_status_indicator() helper: best-effort, swallows API errors so it
never blocks connect/disconnect; truncates to Telegram's 120-char cap.
- Wired Online after _mark_connected(), Offline at top of disconnect()
while the bot HTTP client is still alive.
- 9 unit tests + Telegram docs section.
Requested by @ilTrumpista, cc @Teknium.
Adds a Raft platform adapter as a bundled plugin (plugins/platforms/raft/)
connecting Hermes to Raft as an external agent via a wake-channel bridge.
The adapter starts a loopback HTTP endpoint, spawns 'raft agent bridge' as a
child process, and injects content-free wake hints into the gateway session
pipeline. The agent reads/sends messages through the Raft CLI; the adapter
never touches message bodies or delivery cursors. Activity observer hooks
report tool/LLM/session lifecycle events via a bounded at-most-once queue.
Auto-enables when RAFT_PROFILE is set.
Cherry-picked from PR #47629. Authored by skyzh (@xxchan).
Extend the 'Running Many Gateways at Once' user-guide page with a
'one gateway for all profiles (multiplexing)' section, kept to a single page:
- How to opt in (gateway.multiplex_profiles on the default profile) and when to
prefer it vs one-process-per-profile.
- Every contract change a user sees when the flag is on:
1. secondary-profile 'gateway start' is a hard error (--force escape hatch),
2. HTTP-inbound reached via /p/<profile>/ prefix; secondary profiles must NOT
enable a port-binding platform (webhook/api_server/msgraph_webhook/feishu/
wecom_callback/bluebubbles/sms) — config error at startup,
3. per-credential platforms still need their own token per profile,
4. session keys namespaced agent:<profile>: (default stays agent:main:),
5. single PID/lock + aggregated hermes status, per-profile runtime_status.json.
- What does NOT change: per-profile .env credential isolation (stricter, incl.
MCP/Kanban subprocess env), Kanban, profile-scoped skills/memory/SOUL, routing.
All inert when the flag is off.
Add a ChatGPT-style conversation list beside the embedded TUI on the
dashboard Chat tab so users can swap sessions without leaving the page.
- New ChatSessionList component: lists recent sessions for the active
profile (title/preview, last-active, message count, source), a New chat
button, and a refresh control. Best-effort like ChatSidebar.
- Selecting a row drives /chat?resume=<id>, which ChatPage already treats
as part of the PTY identity, so the terminal respawns resuming that
conversation. Active row is highlighted; New chat clears resume.
- Wired into ChatPage as a dedicated right-side column (desktop) and into
the existing slide-over panel above model/tools (narrow screens).
- i18n: new sessions.newChat key across all locales.
- Read-only switcher by design — delete/rename/export stay on Sessions.
Docs: web-dashboard.md Chat section documents the switcher.
gui.log was registered in hermes_cli/logs.py::LOG_FILES (and surfaced by
`hermes logs gui`) but was never wired into `hermes debug share`. The share
report captured agent/errors/gateway/desktop tails plus full agent/gateway/
desktop logs — but nothing from gui.log, the surface the dashboard, TUI-over-
PTY bridge, and websocket layer (hermes_cli.web_server / pty_bridge /
tui_gateway) actually write to. A user reporting a dashboard or TUI bug shared
zero breadcrumbs from the broken surface.
Wire gui.log through all three share surfaces, matching the existing pattern:
- _capture_default_log_snapshots(): capture the gui snapshot (redacted like the rest)
- collect_debug_report(): add the gui.log summary tail block
- build_debug_share(): pull gui full_text, prepend dump header + redaction banner, add to the upload loop
- run_debug_share() --local branch: same, plus the local print block
- _PRIVACY_NOTICE: name gui.log in both bullets
Redaction is inherited for free — the gui snapshot goes through the same
_capture_log_snapshot(..., redact=redact) path, so secrets are scrubbed in
both the tail and full text (verified E2E: seeded key masked by default,
passes through under --no-redact, raw token never leaks).
Tests: seed gui.log in the fixture, add test_report_includes_gui_log, and bump
the upload-count tripwire 4->5 (test_share_uploads_five_pastes).
* feat(skills): add html-artifact skill, fold in sketch + architecture-diagram + concept-diagrams
Adds a unified `html-artifact` creative skill that produces self-contained,
single-file HTML artifacts — concept explainers, implementation plans,
status/incident reports, code-review walkthroughs, technical + educational
SVG diagrams, multi-variant design comparisons, and throwaway editors that
export their state back to the clipboard. Grounded in Anthropic's
html-effectiveness gallery (MIT); the house style (token block, serif/sans/
mono split, hand-rolled diffs, inline-SVG diagrams, graceful degradation) is
distilled from reading all 20 reference files.
Supersedes and removes three overlapping skills, folding their unique value in:
- sketch -> the fidelity dial (throwaway vs presentation) + the
multi-variant comparison layouts + the browser-vision
verify loop (references/fidelity-and-verify.md)
- architecture-diagram-> the dark "infra" token variant + double-rect masking +
semantic component palette (references/dark-tech.md,
templates/diagram.html infra mode)
- concept-diagrams -> the 9-ramp educational color system + the concept
archetype library (references/concept-archetypes.md,
the light design system in templates/diagram.html)
Structure:
- SKILL.md (description exactly 60 chars), 6 references, 3 templates
- templates verified by headless-Chrome render + vision inspection
- editor export logic (file://-safe clipboard, Promise-normalized) verified in node
Cross-references updated in claude-design (new disambiguation table row drawing
the design-taste vs information-artifact boundary), design-md, pretext, spike,
and kanban-video-orchestrator. Website skill docs + catalogs regenerated;
stale EN/zh-Hans per-skill pages pruned and i18n cross-refs fixed.
Not folded (intentionally orthogonal): excalidraw (.excalidraw JSON), p5js
(generative canvas), claude-design / popular-web-designs / design-md (visual
design taste / brand vocab / token spec).
* feat(skills): ship html-effectiveness gallery as fetched reference examples
Add scripts/fetch-examples.sh (idempotent clone/pull of Anthropic's MIT
html-effectiveness gallery) + references/examples.md mapping each of the 20
example files to a mode so the agent reads the right worked example. The clone
lands in references/examples/ and is gitignored (it's a 384KB upstream repo,
not vendored). SKILL.md workflow + reference list now point at it; falls back to
the distilled pattern references when offline.
* feat(skills): make reading a gallery example a required authoring step
Reading the matching html-effectiveness example is now workflow step 2 (was an
optional aside in step 3): fetch the gallery, read_file the file for your mode,
mirror its structure. Models skip optional steps; the examples are the ground
truth, so consulting one is mandatory. Added an 'Example' column to the
mode->build quick-reference table and a 'don't skip the example' pitfall.
Also dogfooded the skill: read 03-code-review-pr.html and 13-flowchart-diagram.html
raw and reconciled the distilled references against source — aligned diff-row tint
opacity to the source's 0.15 (was 0.18) and added the .ctx/.hunk rows in
house-style.md + base.html so they match 03-code-review-pr.html verbatim.
* docs(skills): explain the consolidation + bundled-vs-optional rationale
The supersession note only stated *what* was folded, not *why* the prune is
sound. Expand SKILL.md's intro into a 'Why this skill exists' section: the three
former skills emitted the same artifact and overlapped, so consolidating removes
which-one-do-I-load ambiguity; and the optional->bundled promotion of
concept-diagrams is footprint-safe because this skill has zero deps (only cost is
the 60-char description; everything else is progressive-disclosure). States the
bundling dividing line explicitly: zero install cost + broadly useful gets
bundled, real install cost (hyperframes: Node+FFmpeg+Chromium) stays optional.
Regenerated website per-skill page to match.
* feat(image-gen): add image-to-image / editing to image_generate
Brings image generation to parity with video generation: the unified
image_generate tool now edits/transforms a source image (image-to-image)
when given image_url / reference_image_urls, routing to each backend's
edit endpoint, exactly as video_generate routes to image-to-video.
- ImageGenProvider ABC: generate() gains keyword-only image_url +
reference_image_urls; new capabilities() declares modalities +
max_reference_images (defaults to text-only, backward compatible).
success_response gains a modality field; adds normalize_reference_images.
- image_generate tool: schema exposes image_url + reference_image_urls;
dynamic schema reflects the active model's actual edit capability so the
agent knows when image_url is honored. Handler + plugin dispatch forward
the new inputs; legacy/text-only providers get a clear modality_unsupported
error instead of silently dropping the source image.
- In-tree FAL: 7 models gain edit endpoints (flux-2-klein, flux-2-pro,
nano-banana-pro, gpt-image-1.5, gpt-image-2, ideogram/v3, qwen-image)
with per-model edit_supports whitelists + reference caps; routes to the
/edit endpoint and skips the upscaler for edits.
- Plugins: openai (images.edit, 16 refs), xai (/v1/images/edits via
grok-imagine-image-quality, JSON body per xAI docs), krea
(image_style_references, 10 refs). openai-codex stays text-only and
rejects edits with an actionable error.
- Tests: 15 new (payload, routing, dispatch forwarding, dynamic schema,
capabilities); updated 2 change-detector/lambda tests for the new schema.
- Docs: image-generation feature page, image-gen provider plugin guide,
tools reference.
* fix(image-gen): preserve legacy passthrough in fal/krea plugin tests
Two existing plugin tests asserted pre-image-to-image behavior:
- fal: forward image_url/reference_image_urls only when supplied, so a
text-to-image delegation stays byte-identical (no None kwargs).
- krea: keep dict-shaped image_style_references refs verbatim (the unified
string refs go through normalize_reference_images; legacy non-string ref
objects pass through unchanged) — fixes KeyError when callers pass the
richer Krea ref-object shape.
* fix(image-gen): clearer not-capable message for text-to-image-only models
When a text-to-image-only model (incl. gpt-image-2 on the Codex OAuth path,
which can't do editing through the Responses image_generation tool) gets a
source image, say 'this model is not capable of image-to-image / editing —
provide a text-only prompt' rather than sending the user shopping for other
backends. Applies to the openai-codex guard, the in-tree FAL no-edit-endpoint
error, and the dynamic tool-schema text-only line.
Adds a 'Customizing platform hints' section to the Prompt Assembly
developer guide covering the append/replace/shorthand shapes, the
defensive fallback, and the cache-stable lifecycle (stable tier,
resolved at build time).
When a worker calls kanban_create from inside a session that has a
persistent delivery channel, the originating session is now subscribed
to the new task's completion/block events automatically. The agent
that dispatched the task gets notified instead of having to poll.
- Gateway sessions (telegram/discord/slack): HERMES_SESSION_PLATFORM +
HERMES_SESSION_CHAT_ID ContextVars, set by the messaging gateway.
- TUI / desktop sessions: HERMES_SESSION_KEY in the subprocess env.
The TUI notification poller keys on platform='tui' + chat_id=<key>.
- CLI / cron / test: no persistent channel, no subscription.
Gated by kanban.auto_subscribe_on_create in config.yaml (default True).
Disable to mirror pre-feature behaviour — users who want explicit
kanban_notify-subscribe calls per task can set it to false. This
config gate addresses the design concern that got PR #19718 reverted
upstream (unconditional implicit auto-subscribe on tool-driven
kanban_create was too aggressive for orchestrator users).
HERMES_SESSION_ID is intentionally not a fallback channel — it is
set by ACP/agent subprocess telemetry for every invocation, not just
TUI, so treating it as a notification target would auto-subscribe
every CLI session and re-introduce the over-eager behaviour.
The kanban_create response now includes a 'subscribed' bool so
orchestrators can react if subscription failed (e.g. by falling
back to explicit kanban_notify-subscribe or to polling).
Includes 6 tests covering the gateway / TUI / CLI / partial-context /
gated / add_notify_sub-failure paths. All 90 tests in
test_kanban_tools.py pass; 509 broader kanban tests pass.
The dashboard MCP catalog only showed name/description/transport and a
non-clickable source. Users couldn't see what an entry connects to or runs
before installing — the exact detail the docs trust model tells them to vet.
- /api/mcp/catalog now returns transport target (url, or command+args),
auth_type, git install source/ref + bootstrap commands, default-enabled
tool hint, and post-install guidance per entry.
- McpPage renders the endpoint URL (http) or command+args (stdio), the git
install source/ref, a collapsible bootstrap-commands list, setup notes,
and the source as a clickable link when it's a URL.
- Docs: drop the 'uv pip install -e .[mcp]' quick-start step (Hermes does
not support pip installs; MCP ships with the standard install) and note
the dashboard now surfaces this detail.
- Strengthen the catalog endpoint test to assert the new inspection fields.
Phase 4F (F.1 + F.2 + F.3, agent side). F.4 is the operator-run live smoke
(needs a NAS deployment); recorded in the PR, not code.
F.1 — on_jobs_changed wiring:
- cron/scheduler.py: _notify_provider_jobs_changed() — resolve the active
provider, call on_jobs_changed(), swallow errors. Lives in scheduler.py (not
jobs.py) so the store stays free of provider imports (no import cycle).
- Wired at the consumer surfaces AFTER a successful mutation: the cronjob model
tool (tools/cronjob_tools.py, create/update/remove/pause/resume) — which the
`hermes cron` CLI also routes through — and the REST handlers
(gateway/platforms/api_server.py, same five). Built-in's no-op default = zero
behavior change on the default path. Sleeping-agent direct jobs.json writes
(no tool/CLI/REST) are covered by reconcile-on-wake in start().
F.2 — config: cron.chronos.{portal_url,callback_url,expected_audience,
nas_jwks_url}. All non-secret; the agent holds no scheduler creds and the
outbound provision call reuses the existing Nous token (no token key). Additive
deep-merge key, no version literal.
F.3 — docs:
- docs/chronos-managed-cron-contract.md: authoritative agent↔NAS wire contract
(the three agent-cron endpoints + inbound /api/cron/fire + the 3-hop trust
model + at-most-once/re-arm semantics). This is what the NAS-side agent builds
against.
- cron-internals.md: "Managed cron (Chronos) for scale-to-zero" section.
- cli-commands.md: cron.provider accepts chronos + the cron.chronos.* keys.
- User docs name no scheduler vendor (QStash is a NAS-internal detail).
INVARIANT re-verified: zero qstash/upstash hits across plugins/cron, gateway,
hermes_cli, tools, website/docs (the one remaining repo hit is an unrelated
Context7 MCP comment in tools/mcp_tool.py).
Tests: test_jobs_changed_notify (5) — notify calls provider hook, swallows
errors, built-in harmless, tool create/remove notify. Full cron + chronos +
webhook + config + api_server_jobs suites green (504 in the cron+chronos+webhook
run).
Phase 3.5. cron-internals.md gateway-integration section now describes the
pluggable trigger (resolve_cron_scheduler, built-in default, plugins/cron
discovery, the never-without-a-trigger fallback, and the trigger-vs-execution
split). cli-commands.md notes cron.provider near the hermes cron entry.
* feat(mcp): raise default tool-call timeout 120s -> 300s
Port from openai/codex#28234. Long-running MCP tools (web fetches,
sandboxed builds, deep-research servers) routinely exceed 120s, causing
spurious timeout failures. Codex bumped its default MCP tool timeout from
120 to 300 for the same reason.
- _DEFAULT_TOOL_TIMEOUT 120 -> 300 in tools/mcp_tool.py (per-server
'timeout' config override unchanged)
- update test_default_timeout assertion
- document the default in mcp-config-reference.md
* refactor: remove agent-callable send_message tool
The agent should not decide on its own to fire off cross-platform
messages or reactions. Outbound platform messaging is handled outside
the agent loop — cron delivery, the gateway kanban notifier
(dashboard-toggled), and the `hermes send` CLI.
Removes the model-tool registration only; the send engine in
send_message_tool.py (_send_to_platform, _send_via_adapter,
_parse_target_ref, per-platform _send_* helpers) is kept intact for
those non-agent callers. Drops the now-empty 'messaging' toolset and
its `hermes tools` toggle. Yuanbao DM guidance now points at the
native yb_send_dm tool.
The curator now defaults to prune-only: the deterministic inactivity pass
(mark stale / archive long-unused skills) still runs whenever the curator is
enabled, but the opinionated LLM umbrella-building consolidation fork is OFF
by default.
- agent/curator.py: add DEFAULT_CONSOLIDATE=False + get_consolidate(); gate
the forked aux-model review in run_curator_review behind it (new consolidate
param, None=read config). When off, the LLM pass is skipped entirely (no
aux-model cost); the run is still recorded and reported.
- config.py: add curator.consolidate (default false); v29->v30 migration seeds
the key for existing installs without clobbering a user-set value.
- hermes_cli/curator.py: 'hermes curator run --consolidate' override; status
shows consolidate state; prune-only notice on run.
- docs + tests.
Follow-up to salvaged PR #41633: the timestamp prefix injection was
unconditional. Gate the in-context render behind
gateway.message_timestamps.enabled (default false) at both the live-message
and history-replay sites; timestamp metadata is still captured + persisted
regardless so the toggle can be flipped on later. Add DEFAULT_CONFIG entry,
docs, and gate tests.
Reflect the default-model change in the xAI Grok OAuth guide, the web
search docs (EN + zh-Hans), and the web provider docstring. grok-4.3 is
kept in the model tables as the previous default; the Nous/OpenRouter
aggregator catalog still lists grok-4.3 and is left unchanged.
PROBLEM: Automatic context files such as SOUL.md and AGENTS.md were capped by a hardcoded CONTEXT_FILE_MAX_CHARS value. Amy's local fork had raised that constant from 20K to 25K so a larger SOUL.md would not be silently truncated, but the hardcoded 25K value changed upstream default behavior and made the patch less generally useful.
SOLUTION: Restore the upstream-compatible 20K default, add a context_file_max_chars config setting for users who intentionally keep larger identity/project-context files, keep chat-visible truncation warnings, and document the new setting. Tests cover the default, config override, explicit max_chars precedence, and the warning text.
Z.ai released GLM 5.2 on 2026-06-15, available on OpenRouter:
- https://openrouter.ai/z-ai/glm-5.2
GLM-5.2 is Z.ai's flagship for long-horizon tasks, shipping a 1M-token
context window (up from 200K on GLM 5.1) and tool calling. Per the
OpenRouter API: text-only, context_length 1048576, tools supported.
No separate -fast variant exists.
The 1M context length, native zai picker entry, setup wizard, and Z.ai
coding-plan auth entries for glm-5.2 already landed on main. This fills
the remaining gap: the two aggregator surfaces where glm-5.1 appears but
glm-5.2 did not.
Changes:
hermes_cli/models.py
- Add z-ai/glm-5.2 to the OpenRouter fallback snapshot (OPENROUTER_MODELS)
and the Nous Portal curated list (_PROVIDER_MODELS["nous"]), newest
flagship first. Live catalogs surface it automatically when reachable;
the fallback lists matter when the manifest fetch fails.
website/static/api/model-catalog.json
- Regenerated via scripts/build_model_catalog.py (not hand-edited) so the
manifest stays in sync with the source lists; guarded by
tests/hermes_cli/test_model_catalog.py.
The picker no longer touches the profile default. Model/effort/fast live as
plain UI state persisted in localStorage, so a pick follows across Cmd+N and
restarts instead of snapping back. New chats ship that state through
session.create as per-session overrides; live chats still scope switches to the
current session. Settings -> Model remains the only surface that writes the
profile default.
The gateway now accepts those session.create overrides, builds the agent with
them directly, reflects them in the immediate session.info payload, and writes
the chat's own model_config into the lazy DB row so reconnect/resume restores
that chat instead of the global default.
Streamed Telegram replies that finalize through editMessageText were
converted to MarkdownV2, which has no table syntax and rewrites pipe
tables into bullet lists — users saw a table while streaming that
collapsed to a list at the last moment.
Finalize now edits the existing preview IN PLACE via Bot API 10.1's
editMessageText rich_message parameter when the content has constructs
the legacy path degrades (tables, task lists, <details>, block math).
No fresh send + delete, so no duplicate-preview flicker — the reason
#46206 reverted the fresh-final re-send path. prefers_fresh_final_streaming
stays False; the in-place edit replaces it.
- _needs_rich_rendering(): rich reserved for table/task-list/details/math
(adapted from #45995, @YonganZhang); plain replies stay on MarkdownV2.
- _try_edit_rich(): editMessageText + rich_message via do_api_request,
mirroring _try_send_rich's fallback/latch/transient contract.
- edit_message finalize tries rich in place before the 4,096 overflow
pre-flight (rich cap is 32,768), falling back to legacy on rejection.
- rich_messages default flipped back to True (DEFAULT_CONFIG + adapter).
- docs (en + zh-Hans) + cli-config example updated to default-on.
Closes the root cause behind #45911 / #46009.
* feat(skills): add optional payments skills (Stripe Link, MPP, Projects)
Adds four optional skills under optional-skills/payments/ wrapping the
Stripe Link CLI, the Machine Payments Protocol (MPP) clients, and the
Stripe Projects CLI plugin. Plus a router skill (payments) that picks
between them based on user intent.
All four are gated [linux, macos] — Stripe's Link CLI does not yet
support Windows. The other CLIs (mppx, stripe projects) are
cross-platform on paper but the payments cluster moves as a unit until
Link CLI gains Windows support.
Skills:
- stripe-link-cli - one-time virtual cards + Shared Payment Tokens
- mpp-agent - HTTP 402 payments via mppx/Tempo/Privy/AgentCash
- stripe-projects - provision SaaS services + credential sync
- payments - router/index skill for the cluster
Hard invariants encoded in every skill:
- Card PANs/wallet keys never enter agent transcripts, logs, or memory
- Spend approvals are not self-bypassable (Link app / wallet UI / CLI prompt)
- Final totals confirmed with user before any --request-approval call
- Credential output files cleaned up after one-time use
Zero core touches. Skills install via:
hermes skills install official/payments/<skill>
* chore(skills/payments): drop router skill — skills shouldn't depend on other skills
Removed optional-skills/payments/payments/ — the router skill that
existed to hand off between stripe-link-cli, mpp-agent, and
stripe-projects.
Per project convention: skills should be independently loadable; a
router is a footgun because (a) it assumes the loader will follow its
recommendation rather than just loading what the user asked for, and
(b) it duplicates the trigger logic that already lives in each
sub-skill's '## When to Use' section.
The three remaining skills declare their own triggers and routing
hints. The optional-skills catalog still groups them under '## payments',
which is the appropriate place for cluster-level discoverability.
Also drops 'payments' from each remaining skill's 'related_skills' list
and removes the corresponding entries from the docs catalog + sidebars.
* feat(skills/payments): fold in danhill-stripe review feedback
- mpp-agent: add link-cli as a client option (when Link is already set
up, or the 402 challenge advertises method="stripe")
- stripe-link-cli: reframe Link account / payment method / approval app
as first-run setup, not hard preconditions (CLI configures them on
first run)
- regenerate the two affected optional-skills docs pages
The Honcho provider page documented the per-profile peer model (user
peer / AI peer / observation) but never the gateway axis — how platform
runtime IDs map to peers. Adds the three keys to the config table and a
short Gateway identity mapping subsection that points at the Honcho page
for the resolver ladder.
Uses the corrected pinUserPeer wording (pins non-agent users, overrides
aliases) so the provider-comparison reader gets the same accurate framing
as the dedicated page.
'everyone collapses to your peer' read as a promise about all traffic.
pinUserPeer pins the user-side peer and is checked before userPeerAliases
(session.py:335), so a pin overrides every alias — including agent peers.
For a multi-agent operator that silently pools distinct agents onto one
peer, the opposite of intent.
Scopes the wording to 'every non-agent gateway user', notes the pin
overrides aliases, and points agent-mesh operators at pinUserPeer:false +
userPeerAliases instead. Same correction in the wizard menu/echo text,
the plugin README, and the website Honcho page.
The /desktop page is deprecated and redirects to the home page. The
landing page for the desktop app is now simply
https://hermes-agent.nousresearch.com/. Update all docs and the
Docusaurus nav/footer links accordingly.
Co-authored-by: Teknium <127238744+teknium1@users.noreply.github.com>
* fix(teams): package Microsoft Teams SDK as an installable extra
The Teams adapter imports the microsoft-teams-apps SDK, but it was never
declared as a dependency, so source/local installs hit ImportError and the
adapter silently reported the SDK as unavailable. Add a 'teams' extra
(microsoft-teams-apps==2.0.13.4 + aiohttp) and document 'uv sync --extra teams'.
Per the 2026-05-12 [all] policy, opt-in messaging-platform SDKs are NOT added
to [all] (they would break every fresh install on a quarantined release); the
teams extra is installed on demand like the other platform backends.
Co-authored-by: rio-jeong <rio.jeong@thebytesize.ai>
* chore: map rio-jeong contributor email for attribution (#43945)
* feat(teams): lazy-install the Teams SDK on demand (parity with other channels)
The teams extra alone left Teams as the only messaging platform that wouldn't
auto-install its SDK — every other channel (telegram, discord, slack, matrix,
dingtalk, feishu) lazy-installs via tools.lazy_deps on first connect. Bring
Teams to parity:
- Add 'platform.teams' to LAZY_DEPS (microsoft-teams-apps + aiohttp).
- Replace the passive 'check_teams_requirements = check_requirements' alias with
a real lazy-installer that calls ensure_and_bind('platform.teams', ...),
rebinding all Teams SDK globals on success (mirrors check_slack_requirements).
- Call check_teams_requirements() at the top of TeamsAdapter.connect() so
enabling Teams installs the SDK on demand.
- Keep the passive check_requirements() as the registry check_fn so 'gateway
status' probes never trigger a pip install.
The 'teams' extra remains for packagers / explicit 'uv sync --extra teams'.
Tests: rework the alias test into shortcircuit + lazy-install assertions, and
update test_connect_fails_without_sdk to simulate an uninstallable SDK.
---------
Co-authored-by: rio-jeong <rio.jeong@thebytesize.ai>
Co-authored-by: Teknium <127238744+teknium1@users.noreply.github.com>
Remove the rich_messages config toggle entirely so Telegram replies always try the Bot API 10.1 rich-message path first, with the existing MarkdownV2 fallback/latch behavior for unsupported endpoints and per-message failures.
Restore the Telegram platform hint to encourage rich Markdown tables/task lists/math now that the rich path is the default, and remove the config/docs surface for the old toggle.
The Multi-profile section never explained how to reach more than one
profile from outside the container, and distinguishes the two surfaces
that people conflate:
- Hermes Desktop's Remote Gateway connects to a `hermes dashboard`
backend (port 9119), and a single dashboard serves every co-located
profile via its profile switcher (the target profile is sent per
request; the backend opens that profile's HERMES_HOME). No per-profile
port or second connection is needed for Desktop.
- OpenAI-compatible API clients (Open WebUI, LobeChat, /v1) talk to each
profile's API server, which binds 8642 for every profile with no
auto-allocation. Reaching a second profile from such a client needs a
distinct `API_SERVER_PORT` in that profile's own `.env` (and the port
must NOT go in the container-wide `environment:` block, or every
profile collides on it).
Adds the create -> set port -> restart flow, the bridge port-publishing
note, and clarifies the default profile's connection is untouched.
* feat(cli): add --safe-mode troubleshooting flag
Inspired by Claude Code v2.1.169 (June 2026): run Hermes with all
customizations disabled to isolate setup problems from product bugs.
--safe-mode implies --ignore-user-config and --ignore-rules, and
additionally skips plugin discovery (hermes_cli/plugins.py) and MCP
server loading (tools/mcp_tool.py) via the internal HERMES_SAFE_MODE
env bridge.
* fix(desktop): keep composer usable during reconnect
--clone-all copied the source profile's state.db, sessions/, backups/,
state-snapshots/, and checkpoints/ into the new profile. These are
per-profile history: a 49GB copy in practice (15GB snapshots + 11GB
backup archives + 16GB state.db + 6.4GB sessions), and restoring a
copied backup inside the clone would resurrect the SOURCE profile's
state. A clone is a fresh workspace; history stays with the source.
New _CLONE_ALL_HISTORY_EXCLUDE_ROOT set, applied at root level for ANY
source profile (named profiles accumulate the same artifacts), unlike
the default-gated infrastructure excludes. Nested same-name dirs still
copy. Docs and the post-create CLI message updated to match; profile
export / hermes backup remain the full-history paths.
Subagents doing legitimate heavy work (deep code reviews, research
fan-outs, slow reasoning models) were routinely killed at the blanket
600s child_timeout_seconds cap while making steady progress (e.g. 36
API calls completed when the axe fell). Failures should come from what
the child is actually doing — API errors, tool errors, iteration
budget — not a delegation-level stopwatch.
- DEFAULT_CHILD_TIMEOUT: 600 -> None; Future.result(timeout=None)
blocks until the child finishes
- config default delegation.child_timeout_seconds: 600 -> 0
(0/negative = disabled; positive opts back in, floor 30s unchanged)
- stuck-child protection unchanged: the heartbeat staleness monitor
still stops refreshing parent activity so the gateway inactivity
timeout fires on a truly wedged worker; the 0-API-call diagnostic
dump still works when a cap is configured
- docs updated (EN + zh-Hans)
When hermes update restarts a hermes-gateway system service as a
non-root user, the systemctl reset-failed/start/restart calls trigger
polkit's org.freedesktop.systemd1.manage-units TTY authentication
agent. That prompt runs inside a captured subprocess with a 10-15s
timeout, so it flashes and dies before the user can answer, and the
resulting TimeoutExpired was swallowed silently by the loop's blanket
except — the restart phase just vanished with no output.
- Resolve a manage-units command prefix up front: plain systemctl as
root, sudo -n systemctl as non-root (with a targeted reset-failed
probe so least-privilege sudoers entries scoped to hermes-gateway*
qualify), or None when no non-interactive privilege path exists.
- Add --no-ask-password to every manage-units call in the update
restart path so polkit can never prompt inside a captured subprocess.
- When unprivileged: after a graceful drain, rely on systemd's own
RestartSec auto-restart (needs no privileges) with a message about
the wait; skip the force-restart fallback with clear manual
instructions instead of racing a doomed polkit prompt.
- Surface TimeoutExpired in the restart loop instead of passing
silently, and add sudo to the system-scope recovery hints.
- Docs: headless-VM note recommending user service + enable-linger,
or sudo updates / a scoped NOPASSWD sudoers entry for system
services.
A user passing an image to `hermes send --file` got a raw
UnicodeDecodeError ('utf-8 codec can't decode byte 0x89...') with no
hint that media delivery goes through the MEDIA:<path> directive.
- send_cmd: catch UnicodeDecodeError separately and print a usage error
explaining --file is for text bodies, with copy-pasteable MEDIA: and
[[as_document]] examples using the user's own path
- --file help text + epilog now mention MEDIA:
- docs: new 'Sending images and other media' section on the hermes send
reference page
- Use reply_parameters per the sendRichMessage spec instead of the
undocumented reply_to_message_id scalar (silently ignored -> reply
anchor quietly dropped).
- Latch rich sends off after an endpoint-capability failure (old PTB /
server without sendRichMessage) so every later reply doesn't pay a
doomed extra roundtrip; per-message BadRequests do NOT latch.
- Default rich_messages to OFF (opt-in) while the day-old Bot API 10.1
endpoint is validated live; revert the prompt-hint table guidance
until the default flips on.
- Tests: reply_parameters shape, send-latch behavior, BadRequest
non-latch; rich tests opt in explicitly via extra.
Introduce opportunistic support for Telegram Bot API 10.1 rich messages by sending raw agent Markdown via sendRichMessage and streaming previews via sendRichMessageDraft. Implements a rich-path fast‑path in gateway/platforms/telegram.py (RICH_MESSAGE_MAX_BYTES=32768, feature gate platforms.telegram.extra.rich_messages, bot capability checks, routing/thread handling, and conservative fallback rules: permanent/capability errors fall back to the legacy MarkdownV2 path, transient/network errors are surfaced without legacy-resend). Also add a latch for draft capability failures (_rich_draft_disabled) and preserve legacy chunking and draft behavior when needed. Update agent prompt hints (telegram encourages rich Markdown/tables), add CLI config example option, update English and Chinese docs to describe rich messages and fallbacks, and add/adjust tests for rich send and draft behavior.
The Automation Blueprints rebrand (#44470) renamed the guide page from
guides/automation-templates to guides/automation-blueprints, leaving the
old URL 404ing. The site deploys to static hosting, so server-side
redirects aren't available.
Add @docusaurus/plugin-client-redirects (pinned 3.9.2, same as the other
Docusaurus packages) and a redirect entry for the old slug. The plugin
emits a static HTML page at the old path that meta-refresh/JS-redirects
to the new page, preserving query string and hash, with a canonical link
for SEO. Localized routes are handled automatically (zh-Hans verified).
The subscription-cap usage gauge (50/75/90% bands) ignored purchased
(top-up) credits: a sub user with top-up funds got a sticky warn banner
at 90% of their cap — permanently at >=100%, alongside grant_spent —
despite being fully able to keep inferencing. The cap is the wrong
denominator for an account that can keep spending.
- evaluate_credits_notices: purchased_micros > 0 suppresses the usage
band (grant_spent already covers the cap-reached + top-up case with
the remaining balance). A top-up landing mid-session clears any
showing band; spending top-up down to 0 resumes the gauge.
- New display.credits_notices config (default true): false silences all
credits notices. State capture and /usage are unaffected. Read once
per agent (cached) in _emit_credits_notices, fail-open true.
- Docs: configuration.md display block.
Plugins that post Block Kit messages with interactive elements (buttons,
overflow menus, datepickers, etc.) had no documented way to receive the
resulting click events. The plugin API exposed register_tool, register_hook,
register_command, register_platform, and register_context_engine, but
nothing for slack_bolt action handlers. The only workaround was to
monkey-patch SlackAdapter.connect from inside register(), which is
fragile and breaks on every Hermes update.
This change adds:
* PluginContext.register_slack_action_handler(action_id, callback) —
validates inputs and queues the handler on the PluginManager.
action_id accepts whatever slack_bolt.App.action() accepts (literal
string, compiled re.Pattern, or constraint dict).
* PluginManager.get_slack_action_handlers() — accessor used by the
Slack adapter at connect time.
* SlackAdapter.connect — after wiring its built-in approval and
slash-confirm buttons, iterates the plugin-registered handlers
and registers each via self._app.action(matcher)(callback). Each
callback is wrapped defensively so a misbehaving plugin cannot
crash slack_bolt's dispatch loop, with a best-effort ack on
exception so Slack stops retrying the click.
* Defensive fallback when the plugin layer is unhealthy: a
RuntimeError from get_plugin_manager() is logged and swallowed
rather than blocking the gateway from starting.
* Test coverage in tests/gateway/test_slack_plugin_action_handlers.py
for input validation, multi-plugin registration, the connect-time
wiring, defensive exception handling, and the plugin-loader-
failure fallback path.
* Documentation in website/docs/guides/build-a-hermes-plugin.md
describing the new API alongside the existing register_command /
dispatch_tool documentation.
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
* docs: finish Automation Blueprints terminology rebrand
Replace leftover "Automation Templates" wording from the Cron Recipes
rebrand, rename the copy-paste cookbook guide to Automation Recipes, and
point the marketing gallery link at the blueprints catalog.
Co-authored-by: Cursor <cursoragent@cursor.com>
* docs: use Automation Blueprints instead of Recipes in guide
Rename the cookbook guide from automation-recipes to
automation-blueprints so sidebar and copy match the product term.
Co-authored-by: Cursor <cursoragent@cursor.com>
* docs: rename automation-blueprints-catalog to automation-blueprints
Drop the -catalog suffix from the reference page slug and title, and
move the copy-paste cookbook to automation-blueprint-examples so the
main Automation Blueprints doc is unambiguous.
Co-authored-by: Cursor <cursoragent@cursor.com>
* Revert "docs: rename automation-blueprints-catalog to automation-blueprints"
This reverts commit 605f1eeab56c295729352e72ed252008b15f89a0.
---------
Co-authored-by: Cursor <cursoragent@cursor.com>
The identity-mapping keys never made it to the site docs. Add the three keys
to the config reference and a Gateway Identity Mapping section: when it
applies (gateway only, setup-gated), the intent tree, resolver order, the
un-pin orphan warning, and the deprecated pinPeerName alias.
Reworks the chat-line UX: pick a recipe by name and the agent asks you for
what it needs, one question at a time, instead of forcing you to hand-type a
slot=val command line.
- /cron-recipe -> lists the catalog
- /cron-recipe <name> -> forgiving name match (exact/prefix/substring/
fuzzy; ambiguous lists candidates), then seeds
the agent with a natural-language fill request
built from the recipe's typed slots + schedule
and prompt templates. The agent asks for each
value one at a time and calls the EXISTING
cronjob tool. No new tool.
- /cron-recipe <name> slot=val -> unchanged deterministic path (fill_recipe ->
create_job) for the dashboard/docs/power user.
Mechanism (no new plumbing, invariant-safe — the seed enters as a normal user
turn, never a synthetic injection):
- shared handler returns RecipeCommandResult{text, agent_seed}; match_recipe()
and build_recipe_seed() are the new shared pieces.
- gateway: dispatch rewrites event.text to the seed and falls through to the
agent (the same pattern /steer uses).
- CLI: handler sets a one-shot self._pending_agent_seed; the interactive loop
consumes it right after process_command() and runs it as the next turn.
The typed-slot schema stays the single source of truth (still validates the
form/inline path via fill_recipe); the agent path just renders those slots into
the questions to ask. Docs updated to lead with the name-then-ask flow.
A 'recipe' is a one-place definition of an automation that every surface
renders natively. The slot schema (cron/recipe_catalog.py) is the single
source of truth; four renderers consume it, and all paths end at the same
cron.jobs.create_job — no second job engine.
Form where there's a screen, conversation where there's a chat line:
- Dashboard / GUI app: a Recipes sub-tab on the Cron page renders each
recipe's typed slots as a form (time-picker, enum dropdown, free-text);
submit POSTs /api/cron/recipes/instantiate which fills + creates the job.
- CLI / TUI / messengers: /cron-recipe lists the catalog, shows a recipe's
fields, or fills + creates from a pasted 'key slot=val' command. The shared
handler (hermes_cli/cron_recipe_cmd.py) names any missing/invalid slot so
the agent can ask a targeted follow-up.
- Docs: a generated Cron Recipes catalog page (website, .mdx + React cards)
shows each recipe with a copy-paste command and a 'Send to App' button.
- Desktop: a hermes:// URL scheme (Electron single-instance lock +
setAsDefaultProtocolClient + open-url/second-instance) routes
hermes://cron-recipe/<key>?slot=val into the chat composer pre-filled.
Typed slots (time/enum/text/weekdays) with defaults: users never type raw
cron — recipes parameterize time-of-day and weekday sets and translate to
cron expressions; a free-text 'schedule' slot is the full-flexibility escape
hatch. Consent-first throughout: nothing schedules without an explicit submit
or send.
Core:
- cron/recipe_catalog.py — CronRecipe + RecipeSlot, 5 curated recipes,
recipe_form_schema / recipe_slash_command / recipe_deeplink /
recipe_catalog_entry renderers, fill_recipe (validate + translate to
create_job kwargs).
- hermes_cli/cron_recipe_cmd.py — shared /cron-recipe handler (CLI + TUI +
gateway never drift). CommandDef + dispatch in commands.py / cli.py /
gateway/run.py.
Dashboard: GET /api/cron/recipes + POST /api/cron/recipes/instantiate
(web_server.py), CronRecipes.tsx gallery+form, Segmented sub-tab on CronPage,
api.ts methods + types.
Desktop: hermes:// scheme end to end (main.cjs deep-link router + ready-queue,
preload onDeepLink/signalDeepLinkReady, global.d.ts types, desktop-controller
composer prefill, electron-builder protocols key).
Docs: extract-cron-recipes.py generator wired into prebuild.mjs,
cron-recipes-catalog.mdx + CronRecipesCatalog React component, sidebar entry.
Generated index json gitignored like skills.json.
Tests: 23 core (catalog/slots/schedule-resolution/validation/renderers/command
handler/generator) + 5 web_server endpoint tests. E2E verified end to end:
slot fill -> create_job -> persisted job with correct schedule/deliver/origin.
Hermes can propose automations and let the user accept them with one tap
via /suggestions, instead of making them assemble cron jobs by hand. Every
proposal — wherever it originates — flows through one surface.
Sources (the 'where suggestions come from'):
- catalog: curated starter automations (daily briefing, important-mail
monitor, weekly review, workday-start reminder) via /suggestions catalog
- recipe: installing a skill that carries a metadata.hermes.recipe block
registers a suggestion instead of auto-scheduling
- usage / integration: reserved for the background-review detector and
account-connect triggers (sources defined; emitters land next)
Pieces:
- cron/suggestions.py — the store. add/list/accept/dismiss, dedup+latch by
key (dismissed proposals never re-offered), pending cap so it can't become
a nag wall. Accepting calls the existing cron.jobs.create_job — there is
NO second job engine. Mirrors jobs.py storage (atomic writes, lock, 0600).
- cron/suggestion_catalog.py — the curated set. The important-mail monitor
entry is where the old proactive-monitor poll->classify->surface engine
lives now (cron/scripts/classify_items.py + the 'monitor' aux task), as ONE
catalog automation rather than a standalone feature.
- tools/recipes.py — recipe<->job bridge; register_recipe_suggestion() makes
a recipe source 'recipe' of this surface. recipe_to_job_spec() is the single
translation both the direct and suggestion paths share.
- hermes_cli/suggestions_cmd.py — shared /suggestions handler (CLI + gateway
never drift); /suggestions [accept N|dismiss N|catalog|clear].
- Wired: CommandDef + CLI dispatch (cli.py) + gateway dispatch (gateway/run.py)
+ aux 'monitor' task (config.py) + recipe-install hook (skills_hub.py).
Consent-first throughout: nothing auto-schedules; acceptance is always
explicit; dismissals latch.
Supersedes #41122 (proactive-monitor) and #41127 (recipes): both fold in here
as a catalog entry and a suggestion source respectively.
Tests: store (dedup/cap/accept/dismiss/latch), catalog seeding+idempotency,
recipe->suggestion bridge, command handler, aux config. E2E: recipe SKILL.md
-> parsed -> suggested -> accepted -> real cron job persisted to jobs.json.
- nous_subscription: gate the STT managed-default flip on openai-audio
entitlement and skip when a local backend (faster-whisper or custom
command) works; new _local_stt_backend_available() helper + tests
- whatsapp_cloud: WHATSAPP_CLOUD_{DM_POLICY,ALLOW_FROM,GROUP_POLICY,
GROUP_ALLOW_FROM} env overrides so both adapters can run in parallel;
normalize allowlist entries (JID/punctuation) to bare wa_id
- whatsapp_cloud: wrap per-message event build in try/except (dedup-marked
wamids would be silently dropped on Meta's batch retry otherwise)
- whatsapp_cloud: validate media_id before URL/filename interpolation,
delete transient .ogg after voice upload, FIFO-cap interactive-button
state dicts and per-chat wamid cache
- whatsapp_common: '# **Title**' headers no longer double-wrap asterisks
- setup wizard: read access token / app secret via getpass on TTYs
- docs: new WHATSAPP_CLOUD_* gating env vars
* fix(matrix): isolate room context and inbound dispatch
* test(matrix): cover room isolation and dispatch regressions
* docs(matrix): document room isolation and session scope
* fix(matrix): stabilize CI requirement checks
* test(matrix): isolate mautrix stubs in requirements tests
* fix(matrix): port room-scoped status and resume to slash commands mixin
Move Matrix /status scope output and /resume same-room guards from the
pre-refactor gateway/run.py into gateway/slash_commands.py so PR #18505
foundation behavior survives the upstream god-file decomposition.
Uses i18n keys for Matrix resume/status messages. Preserves upstream
session.py fixes (role_authorized, DM user_id isolation).
* docs(matrix): explain inbound dispatch via handle_sync loop
Document why Hermes uses an explicit sync loop with handle_sync() rather than
client.start(), aligning with upstream #7914 diagnostics while preserving
Hermes background maintenance tasks.
* fix(i18n): add Matrix resume/status keys to all locale catalogs
The Matrix /resume and /status slash-command keys added in the foundation
PR must exist in every supported locale file. tests/agent/test_i18n.py
asserts key and placeholder parity across catalogs.
Non-English locales use English strings as interim placeholders until
community translators can localize them.
* fix(matrix): restore gateway authz for allowed_users; honor config require_mention
Revert the early MATRIX_ALLOWED_USERS gate in _on_room_message so inbound
sender authorization stays in gateway authz like main. Parse require_mention
from config.extra (platforms.matrix / top-level matrix yaml) with env fallback,
matching thread_require_mention and fixing Forge when require_mention is set
only in profile config.yaml.
* fix(matrix): harden status scope and allowlisted DMs
* fix(matrix): use session store lookup for resume scope
* feat(dashboard): unify multi-profile management — one machine dashboard, global profile switcher
The dashboard becomes a machine-level management surface with one
write-target selector, replacing per-profile dashboard fragmentation.
Backend:
- profile param (query or body) on /api/config (get/put/raw), /api/env
(get/put/delete/reveal), /api/mcp/servers (list/add/remove/test/enabled),
/api/mcp/catalog (list/install), /api/model/info, /api/model/set —
all scoped through the existing _profile_scope() context manager
- model/set restructured: expensive-model warning (await) runs before the
scope; the config write runs sync inside the scope in a worker thread
- MCP catalog installs + git-bootstrap entries spawn 'hermes -p <profile>'
- chat PTY: ?profile= on /api/pty points the child's HERMES_HOME at the
profile dir (its own gateway subprocess, config/skills/memory/state.db
all profile-bound); in-process gateway attach skipped when scoped
CLI launch unification:
- '<profile> dashboard' routes to the machine dashboard: attach (open
browser at ?profile=) when one is listening, else re-exec pinned to the
default profile with --open-profile preselecting the launcher
- --isolated preserves the old dedicated per-profile server behavior
- start_server(initial_profile=...) appends ?profile= to the auto-open URL
Frontend:
- ProfileProvider + sidebar ProfileSwitcher: ONE global selector, URL-
persisted (?profile=), mirrored into fetchJSON which auto-appends the
param to the scoped endpoint families (explicit params win)
- app-wide amber banner names the managed profile
- SkillsPage's page-local selector (from the skills-scoping PR) folded
into the global context — single source of truth
- ChatPage threads the scope into the PTY WS URL; switching profiles
remounts the terminal into a fresh scoped session
Omitted profile keeps legacy behavior everywhere.
* docs(dashboard): document machine-level multi-profile management
- web-dashboard.md: 'Managing multiple profiles' section (switcher, URL
deep-links, unified launch, --isolated, scoped Chat, what stays
per-profile) + --isolated in the options table
- profiles.md: 'From the dashboard' subsection + set-as-active vs
switcher clarification
- cli-commands.md: --isolated flag + profile-alias launch example
* fix(dashboard): address profile-unification review findings
Review findings (dev review on PR #44007):
1. HIGH — stale page state on profile switch: pages load data on mount
and didn't consume the profile scope, so a page opened under profile A
kept showing A's state while writes silently targeted the newly
selected B. Fixed structurally: ProfileKeyedRoutes wraps the routed
page tree and keys it by the selected profile, remounting every page
(fresh state + refetch) on switch. ChatPage keeps its own remount
(channel keyed on scopedProfile).
2. HIGH — /api/model/auxiliary read was unscoped while /api/model/set
wrote scoped (Models page could show default's aux pins while editing
worker's). Endpoint now takes profile + _profile_scope, added to
PROFILE_SCOPED_PREFIXES, HTTPException re-raise so ghost profiles 404
instead of 500. Regression test asserts read/write symmetry with
differing worker/default aux config.
3. MEDIUM — tools post-setup spawned unscoped from the profile-aware
drawer. Now spawns 'hermes -p <profile> tools post-setup <key>'
(same mechanism as hub installs); drawer threads its profile prop.
Most hooks install machine-level artifacts where the scope is inert,
but hooks reading config/env now see the drawer's HERMES_HOME.
4. LOW — ty warnings: env Optional asserts before subscript/membership,
fastapi import replaced with web_server.HTTPException re-use.
298 tests green across the four affected suites; tsc -b + vite build
green; aux scoping E2E-verified with real imports.
* fix(dashboard): address second profile-unification review (gille)
1. BLOCKER — profile scope dropped on sidebar navigation: ProfileProvider
derived the selection from the current URL, and nav links are bare
paths, so clicking Config from /skills?profile=worker silently reset
the write target. State is now the source of truth; an effect
re-asserts ?profile= onto the new location after every navigation
(URL stays a synchronized projection for deep links/refresh), and an
incoming URL param (e.g. 'Manage skills & tools' links) still wins.
2. BLOCKER — /api/model/options unscoped while model/set wrote scoped:
the picker context (current model/provider, custom providers,
per-profile .env auth state) now loads inside _profile_scope; added
to PROFILE_SCOPED_PREFIXES. Test: a worker-only current-model pin
appears in the scoped payload and not the unscoped one.
3. BLOCKER — MCP test-server probe escaped the scope after the config
read: the probe now re-enters _profile_scope inside the worker thread
so env-placeholder expansion resolves against the selected profile's
.env. Known limit (documented): the probe's dedicated MCP event-loop
thread doesn't inherit the contextvar (OAuth token paths). Test
asserts get_hermes_home() inside the probe == the worker profile dir.
4. BLOCKER — broad excepts swallowed unknown-profile 404s: /api/model/info
degraded to 200-with-empty-model-info and /api/mcp/catalog to a
silently-empty catalog. Both re-raise HTTPException; 404 regression
tests added for info/options/catalog.
Polish: scope banner clears the fixed mobile header (mt-14 lg:mt-0);
--open-profile hidden via argparse.SUPPRESS (internal re-exec flag);
attach-path test now asserts the opened ?profile= URL.
(Stale-page-state + /api/model/auxiliary findings from this review were
already fixed in 92bcd1568 — the review ran against e600f6951.)
35 tests in the two new suites + 274 in the adjacent ones, all green;
tsc -b + vite build green; scoping E2E-verified with real imports.
* docs(dashboard)+fix: self-review pass — Profiles page section, REST profile-param tip, body-beats-query precedence
Docs:
- web-dashboard.md: add the missing 'Profiles' subsection to Pages
(cards, create/builder, manage-skills jump, set-as-active vs switcher
distinction, editors); REST API section gets a profile-scoped-endpoints
tip documenting ?profile= / body profile / 404 semantics / /api/pty
- (profiles.md + cli-commands.md were already updated in e600f6951)
Precedence fix: scoped endpoints taking BOTH a query param and a body
field now resolve body.profile first. The SPA's fetchJSON injects the
query param from the GLOBAL switcher; an explicit body.profile (e.g.
Profile Builder flows writing into a specific new profile) is the more
specific intent and must not be overridden by whatever the sidebar
happens to be set to. Matches the documented 'explicit beats global'
contract in api.ts.
Verified: 304 tests green across the four suites; tsc -b + vite build
green; docusaurus build green (only pre-existing broken-link warnings,
none from this PR's pages).
Fully removes the cron per-job 'profile' arg added in #28124: the
cronjob tool schema field, CLI --profile flags on cron create/edit,
job-record storage/validation, the scheduler's _job_profile_context
wrapper, and the script-runner env override. Sequential-partition
logic reverts to workdir-only.
The context-local HERMES_HOME override in hermes_constants and the
subprocess bridging in tools/environments/local.py are kept — they
now have other consumers (dashboard multi-profile, TUI gateway).
The memory/skill write-approval gate (#38199, #43354, #43452) was only
documented inside features/memory.md. Surface it everywhere users will
actually look:
- features/skills.md: new 'Gating agent skill writes' section under
skill_manage, with the staging semantics, review commands, and the
distinction from skills.guard_agent_created
- configuration.md: memory.write_approval added to the Memory
Configuration block; new 'Write approval for skill writes' subsection
next to the guard_agent_created scanner
- reference/slash-commands.md: /memory and /skills review subcommands in
both the CLI and messaging tables; Notes updated since /skills
pending/approve/reject/diff/approval now works on the gateway
- features/memory.md: cross-link to the new skills section
The "Persistent Memory" callout said "when memory is full, the agent
consolidates or replaces entries to make room," which reads as if the
store self-compacts automatically. It does not: the `memory` tool
returns an overflow error and the agent does the consolidation in-turn
(the design from #41755). Also note that `replace` is bound by the same
limit — swapping in a longer entry can still overflow — which is the
exact case that confused a user (replace rejected near the cap even
though the math was correct).
Follow-ups to #38199/#43354 found in post-merge review:
- Inline CLI memory approval never worked: the per-thread approval callback
was not passed to prompt_dangerous_approval, so the prompt_toolkit
fail-closed guard (#15216) denied every gated foreground write without
showing a prompt. Now invokes the registered callback directly; a crashed
prompt falls back to staging instead of a silent deny.
- Gateway sessions claimed inline support but prompt_dangerous_approval has
no gateway round-trip (that lives in the pending-approval queue), so gated
gateway memory writes hit the input() fallback and denied. Gateway
contexts now stage for /memory pending review.
- /skills pending|approve|reject|diff|approval now works on the gateway
(gateway_config_gate on skills.write_approval), so skills staged from a
messaging session can be reviewed there. Diff output truncated for chat.
- memory_tool validates required params before the gate so invalid writes
are rejected immediately instead of staged and failing at approve time.
- Stale tri-state write_mode docstrings updated to the boolean gate; docs
table corrected (inline prompt is interactive-CLI-only).
- 6 new tests covering the interactive approve/deny/error paths, gateway
staging, skills never-prompt invariant, and pre-gate validation.
* fix(openrouter): route reasoning_effort to verbosity for adaptive Anthropic models
Reasoning-mandatory Anthropic models (Claude 4.6+/fable/mythos-class) over
OpenRouter ignore reasoning.effort and use adaptive thinking. #42991 correctly
stopped Hermes from sending a reasoning field to them (it 400s), but put nothing
in its place — leaving agent.reasoning_effort a silent no-op on the OpenRouter
path: the model always ran at its adaptive default (high) regardless of config.
OpenRouter honors the requested effort on the top-level verbosity field instead
(maps to Anthropic output_config.effort). Route the existing
reasoning_config[effort] there for these models while still never emitting a
reasoning field, preserving the #42991 fix. No new config arg — the value the
user already sets via agent.reasoning_effort now flows to verbosity.
- low/medium/high/xhigh/max pass through verbatim (OpenRouter accepts the
extended scale for Claude; verified live HTTP 200 + monotonic token spend).
- effort unset/none/disabled omits verbosity so the model keeps its default.
- native Anthropic transport already correct; unchanged.
Fixes#43432
* test(openrouter): cover real effort range (add minimal, frame max as passthrough)
Adversarial review noted the verbosity tests looped over 'max' — a value
parse_reasoning_effort can never produce — while omitting 'minimal', which it
can. Align the routing test with the real config range
(VALID_REASONING_EFFORTS = minimal/low/medium/high/xhigh) and keep a separate
value-agnostic passthrough test that documents why xhigh/max must survive
verbatim (TypedDict, no runtime literal validation; OpenRouter accepts the
extended scale for Claude).
* docs: explain reasoning_effort -> verbosity routing for adaptive Anthropic models
Document that reasoning_effort transparently maps to OpenRouter's verbosity
field for adaptive-thinking Anthropic models (Claude 4.6+/Fable/Mythos), where
reasoning.effort is ignored. Note xhigh is the configurable ceiling (max is wire-
only). Add verbosity as a top-level-kwarg example in the provider-plugin guide.
Two fixes for the reported Slack thread approval UX:
1. Slack Block Kit approval/confirm sends silently overflowed the
3000-char section-block cap (flat 2900-char truncation + header +
reason), so long execute_code approvals failed with invalid_blocks
and fell back to the plain-text prompt with no buttons. Budget the
command preview against the rendered fixed parts so blocks never
exceed the cap (send_exec_approval + send_slash_confirm).
2. The text fallbacks told users to reply /approve — which Slack blocks
inside threads and Matrix clients reserve client-side. Add a
typed_command_prefix capability flag on BasePlatformAdapter
(default "/"; Slack and Matrix set "!" to match their existing
bang-prefix rewrite) and use it in the shared fallback prompt
builders (exec approval, update prompt, destructive slash confirm,
expensive-model confirm) plus Matrix's reaction-prompt text.
The slash-confirm text-intercept now also accepts bang-prefixed
replies (!always, !cancel) since those keywords aren't registered
commands and the adapters' rewrite doesn't touch them.
The shipped tri-state write_mode (on|off|approve) conflated two concepts —
whether writes are enabled and whether they're gated — so 'on' (writes flow
freely, gate inactive) read like 'gating is on'. Replace it with a single
clear boolean gate that defaults off.
memory.write_approval / skills.write_approval:
false (default) — write freely; the approval gate is off (pre-gate behaviour)
true — require approval: memory foreground prompts inline, memory
background-review + all skill writes stage for review
The old 'off = block all writes' mode is dropped; memory_enabled: false already
disables memory entirely, so a third 'block' state was redundant.
- tools/write_approval.py: get_write_mode/MODE_* → write_approval_enabled() bool;
evaluate_gate() loses the config-driven 'blocked' path (blocked now only comes
from an interactive user denial).
- tools/memory_tool.py, tools/skill_manager_tool.py: comment + behaviour follow.
- hermes_cli/config.py: memory/skills write_mode → write_approval (False);
_config_version 28→29 with a 28→29 migration that renames any persisted
write_mode (approve→true, on/off/unset→false) and drops the old key.
- slash commands: '/memory|/skills mode <on|off|approve>' → 'approval <on|off>'
('mode' kept as a back-compat alias); set_mode_fn callback now takes a bool.
- write_approval_commands.py, cli_commands_mixin.py, gateway/slash_commands.py,
commands.py: handlers + registry args/subcommands updated.
- docs + tests rewritten for the boolean model; added migration tests.
Adds memory.write_mode and skills.write_mode (on|off|approve), applied to
both foreground turns and the background self-improvement review fork — the
source of the unprompted 'wrong assumption' saves users reported.
- on (default): write freely, unchanged behaviour
- off: never write; the tool returns a clean disabled result
- approve: don't commit. Memory foreground writes prompt inline (small,
reviewable in a chat bubble); background memory writes and ALL skill writes
stage to a pending store instead (a SKILL.md is too large to review inline,
and a daemon thread can't block on a prompt)
Review staged writes from CLI or any messaging platform:
/memory pending|approve|reject|mode
/skills pending|approve|reject|diff|mode
Skill review respects the size asymmetry: inline you see a one-line gist;
the full unified diff stays out-of-band (/skills diff, dashboard, or the
staged JSON file).
New: tools/write_approval.py (gate + pending store), hermes_cli/
write_approval_commands.py (shared CLI+gateway handlers). Gates wired at the
single entry points memory_tool() and skill_manage(), using the existing
write-origin ContextVar to distinguish foreground from background_review.
* chore(skills): remove red-team skills (godmode, obliteratus) from bundled catalog
Anthropic's output classifier on claude-fable-5 (and likely other Claude
models served through it) intermittently returns empty content for sessions
whose system prompt advertises these skills. The bundled skills-catalog block
is injected into every session's system prompt, so the descriptions
- red-teaming/godmode 'Jailbreak LLMs: Parseltongue, GODMODE, ULTRAPLINIAN'
- mlops/inference/obliteratus 'OBLITERATUS: abliterate LLM refusals (diff-in-means)'
trip the classifier on EVERY session regardless of which skill is actually
loaded, killing unrelated legitimate work (PR review, codebase audits, etc.).
Measured impact (controlled, interleaved A/B, claude-fable-5 via OpenRouter,
prompts differing only by the ~204 chars of these catalog lines, N=20 each):
catalog lines present -> 19/20 (95%) blocked
catalog lines absent -> 5/20 (25%) blocked
Removing them ~quartered the block rate. Rewording the descriptions was not
enough; the skills must leave the bundled catalog.
- Delete skills/red-teaming/godmode and skills/mlops/inference/obliteratus
- Drop their generated doc pages + catalog/sidebar entries (EN + zh-Hans)
- Drop the godmode hand-written-page exception in generate-skill-docs.py
* chore(skills): relocate godmode + obliteratus to optional-skills
Rather than deleting outright, move both into optional-skills/ so they remain
installable via `hermes skills install` while leaving the always-injected
bundled catalog (which is what tripped Anthropic's classifier).
- optional-skills/security/godmode (was skills/red-teaming/godmode)
- optional-skills/mlops/obliteratus (was skills/mlops/inference/obliteratus)
- regenerate optional-skills catalog + sidebar entries
* fix(gateway): auto-start after container restart via planned-stop marker
On Docker (s6-overlay), the gateway runs as a dynamically-registered s6
service. When the container stops/restarts/upgrades, s6 sends the gateway
a plain SIGTERM. The shutdown path (_stop_impl) ended with an
unconditional _update_runtime_status("stopped"), persisting
gateway_state=stopped to the volume. container_boot.py reads that on the
next boot and only auto-starts gateways whose last state was "running"
(_AUTOSTART_STATES) — so after a routine `docker compose up
--force-recreate` the gateway stays down and messaging channels silently
go dark, with no error surfaced (issue #42675).
The codebase already distinguishes intentional stops from unexpected
signals via the planned-stop marker (write_planned_stop_marker /
consume_planned_stop_marker_for_self): `hermes gateway stop`,
systemd/launchd ExecStop, and Ctrl+C write a marker before signalling,
so the handler classifies them as planned. An unmarked SIGTERM
(container/s6 restart, OOM, bare kill) is signal-initiated.
This wires that existing classification through to the state persist,
rather than adding unreliable signal-source inference:
- run.py: GatewayRunner._signal_initiated_shutdown, set in
shutdown_signal_handler's unmarked-signal branch. In _stop_impl, a
signal-initiated (non-restart) teardown now persists "running" instead
of "stopped" — preserving the operator's run-intent and overwriting the
mid-shutdown "draining" marker so _AUTOSTART_STATES matches on reboot.
Operator stops and restarts persist "stopped" as before.
- service_manager.py: S6ServiceManager.stop() now writes the planned-stop
marker for the supervised PID (read from s6-svstat) before `s6-svc -d`,
so an in-container `hermes gateway stop` is correctly classified as
intentional (parity with the systemd/launchd/host stop paths, which
already mark). Best-effort: a marker-write failure falls back to the
safe signal-initiated path.
Tests: shutdown persist-decision table (signal→running, operator→stopped,
restart→stopped), s6 stop marker write + svstat PID parse + failure
tolerance. The signal→running and s6-marker tests fail without the
respective source change. Verified end-to-end against a container built
from this branch: an unmarked SIGTERM to the live gateway leaves
gateway_state=running (shutdown-context log confirms signal path);
existing real container-restart suite still green.
* docs(docker): clarify gateway autostart distinguishes operator-stop from container-kill
The per-profile-supervision section described the autostart-across-restart
contract as "running gateways come back, stopped stay stopped" without
spelling out what records 'stopped'. That contract was the source of
#42675 confusion: users expected a restart to bring the gateway back and
it didn't. With the write-side fix, only an explicit `hermes gateway stop`
records 'stopped'; container/s6 restart SIGTERMs (incl. image upgrades and
unexpected exits) leave the state 'running' so the gateway auto-starts.
Make that distinction explicit in both the multi-profile and
per-profile-supervision sections.
* test(docker): real-restart autostart E2E for #42675
Adds test_live_gateway_autostarts_after_real_restart_without_manual_state_stamp:
a live s6-supervised gateway is killed by an actual `docker restart`
SIGTERM (no manual gateway_state stamp, no planned-stop marker) and must
auto-start on the next boot. Exercises the WRITE side of the fix that the
existing stamp-based tests bypass.
Verified to FAIL against an origin/main image (reconciler logs
prior_state=stopped action=registered — the #42675 bug) and PASS against
the fixed image (prior_state=running action=started).
* docs(windows): correct native data dir to %LOCALAPPDATA%\hermes
The Windows-native guide claimed a deliberate split where config, auth,
skills, and sessions live under %USERPROFILE%\.hermes. That is not what
the installer does: scripts/install.ps1 sets HERMES_HOME=%LOCALAPPDATA%\hermes,
so data actually lives in %LOCALAPPDATA%\hermes alongside the disposable
install (the hermes-agent\, git\, node\, bin\ subdirectories) — `hermes
config` confirms config.yaml/.env resolve there, not under %USERPROFILE%.
Update the data-layout table, the "split is deliberate" note, the env-var
and uninstall sections to describe the real layout: data and install share
the %LOCALAPPDATA%\hermes root, reinstall only replaces hermes-agent\, and
a full wipe targets %LOCALAPPDATA%\hermes (with %USERPROFILE%\.hermes kept
only as a legacy/WSL cleanup). Mention HERMES_HOME as the override knob.
* docs(windows): fix PATH + bin layout to match installer
The installer adds hermes-agent\venv\Scripts (where hermes.exe lives) to
User PATH and sets HERMES_HOME — not %LOCALAPPDATA%\hermes\bin. The \bin
dir holds Hermes's managed uv.exe, not a hermes.cmd shim. Correct the
install-step list and the data-layout table accordingly.
* fix(install): show real HERMES_HOME path in setup messages
The native Windows installer wrote config/env/skills under $HermesHome
(%LOCALAPPDATA%\hermes) but its success messages claimed ~/.hermes,
which doesn't exist on native Windows. Print the actual paths so a new
user can find their config, .env, and skills.
* fix(install): self-heal a stuck Electron download on the desktop build
The desktop build downloads Electron (~114MB) from GitHub. A corrupt cached
zip, or a blocked/throttled GitHub release host (the repeating "retrying" log),
hard-failed the install — and install.sh had no recovery at all while
install.ps1 / `hermes desktop` only purged the cache.
All three build paths now escalate on a failed `npm run pack`:
GitHub → purge corrupt electron-*.zip + stale *-unpacked and retry → one retry
via a public Electron mirror (npmmirror.com). @electron/get SHASUM-verifies the
download, and a user-pinned ELECTRON_MIRROR is always respected (never
overridden). Adds a bash clear_electron_build_cache()/_desktop_pack() to mirror
the existing PowerShell/Python helpers.
* test(install): cover the Electron mirror fallback
Verify `hermes desktop` falls back to a mirror when the cache purge finds
nothing, and that a user-pinned ELECTRON_MIRROR is respected (no extra attempt,
not overridden).
* docs(desktop): troubleshoot a stuck Electron download
Document the automatic cache-purge + mirror fallback, how to pin your own
ELECTRON_MIRROR, and how to clear a corrupt cached zip by hand.
* docs(install): correct the Electron mirror trust framing
The mirror-fallback comments and the desktop troubleshooting doc implied
`@electron/get`'s SHASUM check makes the npmmirror.com download safe against
tampering. It doesn't: the SHASUMS256.txt is fetched from the same mirror, so
the check guards against a corrupt/partial download, not a compromised mirror.
Reframe all four surfaces (install.sh, install.ps1, `hermes desktop`, and the
docs) to state the trust trade-off honestly — npmmirror.com is the de-facto
Electron community mirror, we only fall back to it after the canonical GitHub
download fails, and a user-pinned ELECTRON_MIRROR is never overridden. No
behavior change.
---------
Co-authored-by: xxxigm <tuancanhnguyen706@gmail.com>
Adds the model above claude-opus-4.8 in both the OpenROUTER_MODELS and
_PROVIDER_MODELS['nous'] curated picker lists used by /model and
`hermes model`. Regenerated website/static/api/model-catalog.json to match.
Two new free-tier slugs surfaced in /model and `hermes model`. owl-alpha
was already present. Regenerated website/static/api/model-catalog.json to
keep the manifest sync test green.
Switch `list_users`, `find_user_by_phone`, `create_user`,
`register_user_if_absent`, and `refresh_user_numbers` from the
Dashboard API (Bearer token) to the Spectrum API (Basic auth with
project credentials). Update response unwrapping to handle the nested
`data.users` envelope returned by Spectrum, add `_spectrum_host()`
resolver, `_basic()` header helper, and structured error helpers.
Update tests, docs, and plugin.yaml accordingly.
Store operator and assigned iMessage numbers in `auth.json` after
setup, and surface them in `hermes photon status`. When numbers are
missing, status auto-refreshes from the dashboard without provisioning
new lines.
Make Photon iMessage a first-class persistent-connection channel like
Discord/Slack, using the spectrum-ts gRPC stream for both directions.
- Inbound: the sidecar forwards the SDK's app.messages gRPC stream to the
adapter over a loopback GET /inbound (NDJSON) instead of webhooks. Drops
the aiohttp webhook server, HMAC signature verification, public URL, and
PHOTON_WEBHOOK_* config; adapter reconnects with backoff.
- Management plane: device login uses client_id=photon-cli against the
single dashboard host (Bearer), matching the official photon-hq/cli;
find-or-create "Hermes Agent" project, enable Spectrum, rotate secret,
register user (with phone dedup), surface the assigned iMessage line.
- SDK projectId is the project's spectrumProjectId, not the dashboard id;
runtime creds persist to ~/.hermes/.env like every other channel.
- CLI: 6-step setup, webhook subcommands removed.
- Tests/docs updated for the gRPC flow; sidecar pins spectrum-ts ^1.17.1.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Salvage of PR #27978 cherry-picked onto current main, resolving conflicts
with main's intervening SimpleX plugin fixes (resp-envelope normalization,
health-monitor reconnect-churn fix, bare-form DM addressing).
What's new:
- Group support via SIMPLEX_GROUP_ALLOWED (comma-separated IDs or '*');
inbound items surface chat_id=group:<id> + chat_type=group. Disabled by
default so a bot in a group doesn't process every member's traffic.
- Inbound files/voice via rcvFileDescrReady (immediate /freceive) deferred
through _pending_file_transfers, replayed on rcvFileComplete. Voice notes
-> MessageType.VOICE.
- Native outbound media: send_image (PNG/JPEG + inline thumbnail), send_voice
(msgContent.type=voice), send_video, send_document. All addressed by numeric
ID via /_send ... json [...].
- MEDIA:<path> tags in agent replies stripped and dispatched as voice/document.
- Text-burst batching (HERMES_SIMPLEX_TEXT_BATCH_DELAY, default 0.8s).
- Auto-accept contact requests (SIMPLEX_AUTO_ACCEPT, default true).
- Group send path uses structured /_send #<id> json form (the bracket
#[<id>] form is parsed as display-name lookup and silently drops).
plugin.yaml bumped to 1.1.0; docs updated. All inside plugins/platforms/simplex/
- no core edits.
Co-authored-by: Juraj Bednar <juraj@bednar.io>
Photon now exposes attachment send (Ray Sun, photon-nousresearch), so
the Photon plugin gains outbound media to match the BlueBubbles iMessage
channel.
- sidecar: new /send-attachment endpoint wrapping space.send(attachment())
/ space.send(voice()); caption sent as a trailing text bubble.
- adapter: override send_image/send_image_file/send_voice/send_video/
send_document/send_animation. URL helpers cache to a local path first
(cache_image_from_url), file helpers pass through. Defense-in-depth
path re-validation before the path reaches the Node sidecar.
- _standalone_send (cron): send text first, then each media_file as a
/send-attachment call (is_voice -> voice builder).
- docs/README: flip the 'outbound attachments not wired' note.
Adds the last missing parity piece vs the established channels: group
chats can be made opt-in via a mention wake word, exactly like the
BlueBubbles iMessage channel.
- require_mention + mention_patterns, read from config.extra (config.yaml
via the generic gateway bridge) or PHOTON_REQUIRE_MENTION /
PHOTON_MENTION_PATTERNS env vars. Same shapes BlueBubbles accepts
(list / JSON / comma / newline), same default Hermes wake words.
- _dispatch_inbound drops unmatched group messages and strips the leading
wake word from matched ones; DMs are never gated.
- plugin.yaml + docs document both knobs and the config.yaml form.
- New test_mention_gating.py (8 tests): default-off, group drop/pass,
wake-word strip, DM bypass, custom patterns, env comma-list, invalid
regex skip.
The config.yaml -> extra bridge needed no core change — the generic
shared-key loop in gateway/config.py already iterates plugin platforms
(_shared_loop_targets += plugin_entries()), so require_mention /
mention_patterns flow through automatically.
Note: outbound media is the one capability Photon still can't reach —
Photon exposes no HTTP send-attachment endpoint yet (documented API
limitation), so the sidecar can't send files. Not faked.
Validation: 34/34 photon tests; E2E confirms config.yaml require_mention
+ custom mention_patterns bridge through load_gateway_config into a live
adapter and gate/strip correctly.
Brings Photon in line with how every other Hermes gateway channel
behaves, instead of being a one-off with its own surfaces.
- gateway setup: register a `setup_fn` so Photon appears in
`hermes gateway setup` (the unified wizard) and runs the same
device-login + project + user + sidecar flow as `hermes photon setup`.
Adds `cli.gateway_setup()` as the zero-arg entry point.
- PII redaction: flip `pii_safe` False -> True. The comment already
said iMessage E.164 numbers should be redacted; the value contradicted
it. Now matches BlueBubbles (the other iMessage channel) which is in
_PII_SAFE_PLATFORMS — phone numbers are stripped before reaching the LLM.
- Pairing/authz: already worked via the registry's allowed_users_env /
allow_all_env generic path in authz_mixin; documented it. The adapter
forwards unauthorized DMs to the gateway (no intake gating), so the
pairing handshake fires and `hermes pairing approve photon <CODE>` works.
- Docs: fixed the `hermes photon status` output block to match the real
labels (project key / webhook key, not project secret / webhook secret),
added the missing PHOTON_API_HOST / PHOTON_DASHBOARD_HOST /
PHOTON_HOME_CHANNEL_NAME env vars, and added gateway-setup +
authorize-users sections mirroring the other channel docs.
Validation: 26/26 photon tests, 6504/6504 gateway+plugins tests, registry
E2E confirms setup_fn dispatch + pii_safe + authz envs all wired.
First-class iMessage support via Photon's managed Spectrum platform.
Targeted as a successor to the BlueBubbles adapter — Photon allocates
the iMessage line, handles delivery, and abuse-prevention so users
don't have to run their own Mac relay. Free tier uses Photon's shared
line pool.
Architecture:
- Inbound: signed JSON webhooks (X-Spectrum-Signature, HMAC-SHA256)
delivered to a local aiohttp listener. Dedupes on message.id,
rejects deliveries with >5min timestamp drift.
- Outbound: small supervised Node sidecar that runs the spectrum-ts
SDK. Photon does not currently expose a public HTTP send-message
endpoint; the sidecar is the only way to call Space.send() today.
When Photon ships an HTTP send endpoint we collapse the sidecar
into _sidecar_send and drop the Node dep — every other layer of
the plugin stays the same.
- Setup: 'hermes photon login' runs the RFC 8628 device-code flow;
'hermes photon setup' creates a Spectrum-enabled project, creates
a shared user (free tier), installs the sidecar's npm deps.
- Webhook management: 'hermes photon webhook register|list|delete'.
- Credentials persisted under credential_pool.photon /
credential_pool.photon_project in ~/.hermes/auth.json.
Plugin path (not built-in) — per current policy (May 2026), all new
platforms ship under plugins/platforms/. Registers itself via
ctx.register_platform() + ctx.register_cli_command(), zero edits to
core gateway code.
Tests cover:
- HMAC-SHA256 signature verification (happy path, tampered body,
wrong secret, drift, missing v0 prefix, empty inputs, non-integer
timestamp)
- Inbound dispatch for text DMs, group ids (any;+;...), and
attachment metadata markers
- Deduplication window
- check_requirements gating when Node is absent
- Device-code flow: request, header-based token return,
body-fallback token return, access_denied propagation
- Project/user/webhook API clients with mocked httpx
Known limitations (current Photon API):
- Attachments are metadata only — no download URL yet
- Outbound attachment send not wired (sidecar can add easily)
- Reactions / message effects not exposed yet
Docs: website/docs/user-guide/messaging/photon.md + sidebar entry.
The TUI docs presented HERMES_TUI_GATEWAY_URL + /api/ws as a supported
'attach the TUI to a standalone running gateway' workflow. It isn't.
/api/ws exists only inside the dashboard's FastAPI server
(hermes_cli/web_server.py), which spawns its own embedded TUI child and
injects the var as an internal wiring detail. The OpenAI-compat API
server (api_server platform) deliberately does not serve /api/ws, so the
documented ws://host:port/api/ws workflow 404s — the cause of #32882 and
the two PRs (#32904, #32955) that tried to add the route to the wrong
surface.
Rewrites the section in en + zh-Hans to describe the var accurately and
point users at shared state.db / dashboard embedded chat for multi-surface
session sharing.
* fix(plugins): add thread-safe lazy-singleton helpers, fix honcho TOCTOU (#24759)
get_honcho_client() and fal's _load_fal_client() used unlocked
check-then-init: racing threads both ran the expensive build and the
loser's client (open connection) leaked.
Rather than one-off locks, add plugins/plugin_utils.py with two
reusable primitives every plugin author can drop in:
- lazy_singleton: decorator for zero-arg accessors
- SingletonSlot: manual slot for config-keyed accessors (first wins)
Both use double-checked locking; factory runs at most once; failed
builds aren't cached. honcho is the reference consumer; fal's sibling
TOCTOU gets a matching double-checked lock. Plugin dev guide documents
the pattern so future plugins don't reintroduce the race.
Closes#24759
* test(honcho): update reset test for SingletonSlot internals
test_reset_clears_singleton poked the removed _honcho_client module
global directly. Assert through the slot's public peek() surface
instead, matching the #24759 refactor.
The curator's idle-archival path (apply_automatic_transitions under
prune_builtins) could archive the bundled `plan` skill, killing the
/plan slash command silently — typing /plan then returned 'Unknown
command' with no signal that a skill had vanished. The archived skill's
hash stays in .bundled_manifest, so 'hermes update' wouldn't re-seed it.
Add PROTECTED_BUILTIN_SKILLS ({plan}) enforced at the master gate
is_curation_eligible() (covers archive_skill + the transition walk) and
in the candidate enumerator (so the LLM consolidation pass never sees
them). Immune to prune_builtins, pin state, and LLM judgment.
* fix(memory): make overflow errors instruct in-turn consolidation + retry
When bounded memory is full, the add/replace overflow errors now explicitly
tell the model to consolidate (merge/remove/shorten) and retry the write in
the same turn, matching the documented behavior. The replace-overflow path
now also echoes current_entries + usage for parity with add-overflow, so the
model has the same context to act on.
Closes#23378 (working-as-documented; this sharpens runtime to match docs).
* fix(memory): broaden overflow remediation hint beyond 'stale'
Say 'stale or less important' — entries don't have to be stale to be the
right ones to drop when making room.
Inspired by Claude Code's /simplify. A bundled skill that captures recent
changes via git diff, fans out three focused reviewers (reuse, quality,
efficiency) via delegate_task batch mode, then aggregates findings and
applies the fixes worth applying.
Zero core changes — orchestrates existing tools (terminal/git, search_files,
delegate_task). Supports focus, dry-run, and scoped-diff modifiers.
Closes#379.
SIMPLEX_ALLOWED_USERS silently denied every contact when operators
listed display names instead of numeric contactIds. The SimpleX UI
never surfaces the numeric id, so display names are what operators
naturally put in the env var. _is_user_authorized only compared
source.user_id (the contactId), so the allowlist never matched.
Expand check_ids to include source.user_name for the simplex platform,
mirroring the existing WhatsApp phone-LID aliasing pattern. Adds doc +
setup-prompt clarification and three regression tests.
Salvaged from PR #40393. Adds manishbyatroy to release.py AUTHOR_MAP.
The dashboard font is now selectable from the UI, not just YAML. A new Font
section in the header theme picker overrides the UI font of whatever theme is
active; the choice is orthogonal to the theme and survives theme switches.
Each theme keeps its own font as the default — picking "Theme default" clears
the override.
- web/src/themes/fonts.ts: curated font catalog (system + Google Fonts across
sans/serif/mono), each with a family stack and optional webfont URL. The
catalog is the only injected-font surface — no free-text URL box, so the
injected <link> origins stay fixed.
- web/src/themes/context.tsx: font-override state (localStorage + server),
applied after theme typography so it wins; theme apply re-asserts it, and
clearing re-runs theme apply to restore the theme's own font. Mono is left
to the theme so code/terminal are untouched.
- web/src/components/ThemeSwitcher.tsx: Font section with grouped, self-
previewing font rows and a "Theme default" clear option.
- hermes_cli/web_server.py: GET/PUT /api/dashboard/font persisting to
config.yaml dashboard.font, with a server-side id allow-list (unknown ids
coerce to the theme sentinel).
- i18n + types, api client methods, tests, and docs.
Validation: 6 new backend endpoint tests pass; tsc + vite build clean; live
browser test confirmed pick/persist/survive-theme-switch/clear all work.
Mirrors the EN deep-audit fixes (PR #40952) into the zh-Hans translation so the
two locales agree. zh-Hans is the only non-English locale; 26 translated pages
carried the same stale claims.
Corrections ported (code tokens identical across locales; prose re-translated
where the surrounding text was already Chinese):
- reference: /version slash command + dual-surface list; cli --provider adds
openai-api + novita aliases; tool count 70->71 (+ removed phantom "10 RL tools"
and fixed kanban 7->9); model_catalog ttl 24->1.
- user-guide: hermes -w -q -> -w -z; language list 8->16; aux slots 8->11;
docker separate-dashboard claim; gateway-streaming per-platform note;
computer-use frontmatter.
- features: curator prune_builtins truth; codex-runtime aux keys
(context_compression->compression, vision_detect->vision); voice-mode STT/TTS
enums; removed phantom rl toolset.
- integrations: StepFun step-3-mini->step-3.5-flash; web-search backends 4->8;
nous-portal status subcommand.
- messaging: WeCom typing/streaming columns; telegram transport default
edit->auto; sms host 0.0.0.0->127.0.0.1; simplex/ntfy gateway-setup + pairing
approve; line smart-chunking; matrix MATRIX_DM_AUTO_THREAD; msgraph host note.
- developer-guide: entry-point group hermes.plugins->hermes_agent.plugins;
PLUGIN.yaml->plugin.yaml.
Net-new EN sections (mcp mTLS, api-server run-approval, kanban CLI verbs) are
untranslated in zh-Hans and fall back to English source, consistent with the
mirror's existing partial-coverage state. Verified: docusaurus build --locale
zh-Hans succeeds; no new broken anchors from these edits.
The ChatGPT Codex OAuth backend hard-caps gpt-5.5 at a 272K context window
(verified live: a ~330K-token request to chatgpt.com/backend-api/codex/responses
is rejected with context_length_exceeded while ~250K succeeds; the same slug
exposes 1.05M on the direct OpenAI API / OpenRouter and 400K on Copilot). At the
default 50% trigger, auto-compaction fires at ~136K — half the usable window.
Raise the trigger to 85% (~231K) on this exact route only, gated by a new
compression.codex_gpt55_autoraise config flag (default true). When it fires,
emit a one-time notice (CLI inline print + gateway status_callback replay) with
the exact opt-back-out command. gpt-5.5 on any other provider keeps the user's
global threshold.
- _is_codex_gpt55() matches the 5.5 family only on provider=openai-codex
- _compression_threshold_for_model() now provider-aware + opt-out param
- config key + _config_version bump (27->28) for backfill
- docs + tests (40 cases in test_arcee_trinity_overrides.py)
* feat: uninstall the Chat GUI without removing the agent (CLI + desktop UI)
Adds a GUI-only uninstall path so people can remove the desktop Chat GUI
while keeping the Hermes agent + their config/sessions/.env, and surfaces
the three CLI uninstall modes inside the desktop app's Settings → About.
CLI:
- New hermes_cli/gui_uninstall.py: cross-platform discovery + removal of the
desktop GUI's artifacts (source-built dist/release/node_modules + build
stamp, the packaged app bundle, and the Electron userData dir) on Linux,
macOS, and Windows. Never touches the agent source, venv, or user data.
- `hermes uninstall --gui` removes only the Chat GUI; `--gui-summary` prints a
JSON install snapshot (used by the desktop UI to gate options + detect a
missing agent for a future lite client).
- `hermes uninstall --yes` / `--full --yes` now run non-interactively, sharing
the destructive sequence via a new _perform_uninstall() helper. The keep-data
and full flows also sweep the GUI artifacts.
Desktop:
- electron/desktop-uninstall.cjs: pure helpers mapping each mode (gui/lite/full)
to CLI flags, resolving the running app bundle per OS, and building the
detached cleanup script that waits for the app to exit, runs the Python
uninstall, and removes the bundle.
- IPC hermes:uninstall:summary / :run, preload bridge, and types.
- Settings → About "Danger zone" with the three options; agent-removing
options hide when no local agent is detected.
Tests: tests/hermes_cli/test_gui_uninstall.py (22 pass with the existing
uninstall tests), electron/desktop-uninstall.test.cjs (17 pass, wired into
test:desktop:platforms). Docs: desktop.md "Uninstalling" + cli-commands.md.
* fix(desktop): tear down backend process tree before GUI uninstall (Windows lock safety)
The desktop uninstall cleanup script waited only on the desktop app's own
PID, but a backend grandchild (gateway / pty terminal / hermes REPL) can
outlive it and keep hermes.exe + venv files mandatory-locked on Windows —
making the script's rmdir half-fail and leaving a partial install, the same
failure class as the self-update path's #37532.
- main.cjs: runDesktopUninstall now awaits releaseBackendLock() before
spawning the cleanup script — tree-kills every backend PID the desktop owns
(primary + pool) via taskkill /T /F and polls the venv shim until unlocked.
Extracted the shared core out of releaseBackendLockForUpdate so both the
update hand-off and the uninstaller use the identical, incident-hardened
teardown. No-op on macOS/Linux (no mandatory locks).
- desktop-uninstall.cjs: Windows cleanup script removes the bundle via a
bounded rmdir retry loop (10x, 1s) instead of a single rmdir, since Windows
releases directory handles lazily even after the holding process exits.
- Dropped a fragile tasklist|findstr reap-by-path attempt; the Electron-side
tree-kill-by-PID is the reliable mechanism.
Tests: desktop-uninstall.test.cjs updated for the retry-loop output (17 pass).
* fix(desktop): address review on GUI uninstall (venv self-delete, gates, wait-loop)
Resolves @OutThisLife's review on #40355:
1. full mode now gated on agent presence (needsAgent: true). It removes the
agent + user data, so on a lite client with no local agent it's hidden
like lite — no more offering to remove an agent that isn't there.
2. (Finding 3, the real bug) lite/full no longer rmtree the venv from the
venv's OWN python. On Windows a running python.exe is mandatory-locked, so
that half-fails. New lightweight 'python -m hermes_cli.uninstall --mode X'
entrypoint (stdlib-only imports) lets the desktop run agent-removing modes
under the SYSTEM python (findSystemPython) with PYTHONPATH=<agentRoot>, so
import hermes_cli resolves from source while the venv is torn down. Falls
back to venv python + logs when no system python (gui-only unaffected).
3. Windows wait-loop is now bounded (60 tries, matching POSIX) and matches the
PID as a whole space-delimited token via findstr (no substring 99->990
trap, no redundant bare find). set HERMES_HOME/PID/PYTHONPATH now quoted.
4. Renamed the misleading 'returns null for dev run' test — the dev-run safety
is shouldRemoveAppBundle(isPackaged=false), which the test now asserts.
Docs: note that --gui on a source checkout also sweeps node_modules/build
output. Tests: 18 python + 19 desktop pass.
* docs: remove --include-desktop install instructions
Drop the --include-desktop curl one-liner from the desktop app docs.
The flag remains in scripts/install.sh; these docs now point to the
desktop installer / website and the 'hermes desktop' path instead.
* docs: remove --include-desktop from install docs
Drop the redundant 'Hermes Desktop installer on Linux' block (which
used --include-desktop) from quickstart, installation, and index docs.
The website installer covers macOS/Windows desktop; the CLI-only path
covers Linux. Removes the flag from all user-facing docs.
* Revert "fix(update): require managed marker before destructive clean"
This reverts commit c8e80cd0bf.
* Revert "fix(update): stop stash/restore from clobbering desktop source on managed clones (#38542)"
This reverts commit 8a19884bf3.
* chore(install): keep npm ci desktop-build fix after stash revert
The destructive-clean reverts (#38542/#39568) pulled the desktop
workspace install back to bare `npm install`. The npm ci -> npm install
fallback is orthogonal build-correctness (avoids the Windows
workspace-hoisting flake where install reports up-to-date against a
stale marker while node_modules is empty, breaking tsc -b). Preserve it.
* feat(update): settable stash-or-discard for non-interactive local changes
Adds updates.non_interactive_local_changes (stash | discard, default
stash). Governs ONLY non-interactive updates (desktop/chat app, gateway,
--yes) — interactive terminal updates always stash-and-ask, unchanged.
- config.py: new key under existing updates section; _config_version 26->27.
- main.py: _cmd_update_impl detects non-interactive (gateway/--yes/no-TTY),
reads the setting; new _discard_stashed_changes() drops the stash
(stash-and-drop, never reset --hard/clean -fd, so ignored paths survive).
Post-pull restore site branches on it; the bail-out and up-to-date
restores always preserve work.
- web_server.py + apps/desktop settings: exposes it as a stash/discard
select (Advanced section, In-App Update Local Changes).
- docs + tests (discard drops, stash restores, interactive ignores setting,
missing section defaults to stash).
* fix(install.ps1): stash/restore instead of reset --hard on Windows update
The PR reverted the destructive update path to stash/restore everywhere
except scripts/install.ps1, whose managed-clone update path still ran
`git reset --hard HEAD` before checkout — silently destroying agent-edited
tracked source on Windows (the same #38542 data-loss class the PR fixes).
- Replace `git reset --hard HEAD` with stash-before-checkout +
restore-after-checkout, mirroring install.sh. Untracked files are
included so agent-created dirs (e.g. tinker-atropos/) survive.
- Keep `core.autocrlf false` (it prevents the phantom CRLF dirt that made
the stash necessary; it's also load-bearing for a clean restore).
- Wrap all three checkout modes (Commit/Tag/Branch); Branch case now uses
`git pull --ff-only` so local commits are never clobbered.
- Only prompt to restore when a real console is attached (UserInteractive
+ non-redirected stdin/stdout + ConsoleHost); the desktop Update button
and bootstrap have no usable console, so they default to restore and
never hang on Read-Host.
- On restore conflict or a failed update, the stash is preserved with
recovery instructions — work is never silently dropped.
Validated on Windows (PowerShell 5.1, git 2.54): AST parse clean;
E2E non-conflicting restore applies+drops cleanly with ignored paths
(node_modules) untouched; conflicting restore preserves the stash.
---------
Co-authored-by: alt-glitch <balyan.sid@gmail.com>
* fix: respect disabled auto-compaction on context overflow
Port from anomalyco/opencode#30749.
When compression.enabled is false, NO automatic compaction trigger may
fire. The proactive token-threshold paths (preflight + post-response
should_compress gate) already honoured the setting, but the three
provider-overflow recovery paths in the agent loop — long-context-tier
429, 413 payload-too-large, and context-overflow — called
_compress_context() unconditionally, silently compressing and rotating
the session against the user's explicit choice.
Add a single guard at the top of the overflow-recovery dispatch: when
compression is disabled and the error is one of those three overflow
classes, surface a terminal error (compaction_disabled: True) telling the
user to /compress manually, /new, switch to a larger-context model, or
reduce attachments. Manual /compress (force=True) is unaffected — it never
enters this loop.
Tests: new TestOverflowWithCompactionDisabled (413 + 400 overflow don't
compress when disabled; control case still compresses when enabled).
Existing overflow-recovery tests updated to enable compaction explicitly
(they verify the recovery fires); fixture defaults flipped to True to
match production (compression.enabled defaults to True).
* feat(delegation): uncap max_spawn_depth to match max_concurrent_children
Removed the hard ceiling of 3 on delegation.max_spawn_depth. Depth now has
a floor of 1 and no upper limit, mirroring max_concurrent_children. Cost
(each level multiplies API spend) is the practical limiter, not a constant.
- delegate_tool.py: drop _MAX_SPAWN_DEPTH_CAP, _get_max_spawn_depth() floors
at 1 instead of clamping to [1,3]; depth-limit error string reworded
- config.py / cli-config.yaml.example: doc comments say floor 1, no ceiling
- docs (configuration, delegation, delegation-patterns): range 1-3 -> >=1
- tests: convert clamp-above-3 change-detector into a no-ceiling invariant,
drop the _MAX_SPAWN_DEPTH_CAP==3 snapshot assert, fix warning-text assert
* feat(discord): voice-channel mixer — ambient idle bed + verbal acks that overlap TTS
Discord voice mode can now feel conversational: the bot speaks a short
acknowledgement before it starts working, and a subtle ambient 'thinking' bed
plays underneath while tools run, ducking under speech and swelling back — the
Grok-voice-mode feel.
discord.py plays only one audio stream per voice connection, so this adds a
software mixer (VoiceMixer, a discord.AudioSource) installed once per guild on
join. It sums an ambient loop, verbal acks, and TTS replies into that single
20ms/48kHz/stereo stream (numpy int16 add + clip), so they overlap instead of
stop-and-swap. Speech ducks the ambient gain down and releases it smoothly.
- plugins/platforms/discord/voice_mixer.py: VoiceMixer + MixerChild (gain,
loop, fade, duck/release), decode_to_pcm (ffmpeg), synth_ambient_pcm (no
asset needed — synthesised pad).
- adapter: install mixer on join, tear down on leave, route
play_in_voice_channel through the mixer (legacy one-shot path kept as
fallback), play_ack_in_voice, voice_mixer_active. Defensive getattr for the
object.__new__ test helpers.
- gateway/run.py: tool_start_callback fires a one-time verbal ack on the first
tool call of a turn when in a voice channel (independent of the text
tool-progress gate). No system-prompt or message-flow changes.
- config: discord.voice_fx.* (OFF by default; ambient/duck/speech gains, ack
phrases). All in config.yaml, not .env.
- docs + tests (mixer unit + adapter integration).
Verified: 19 new tests pass, existing voice suite green (2 pre-existing
davey-module env failures unchanged), and a real-mixer E2E confirms ambient
streams, TTS overlaps it, acks layer in, and teardown is clean.
* fix(discord): make voice mixer numpy import lazy (numpy is voice-extra-only)
numpy ships in the optional 'voice' extra, not [all,dev], so a module-level
'import numpy' broke CI test collection (and would break the always-imported
Discord adapter on any install without the voice extra). Defer numpy to the
functions that actually mix audio via _require_numpy(); guard the test module
with pytest.importorskip('numpy').
* docs(dashboard): clarify auth provider suitability + document dashboard registration
- Add a 'Registering a dashboard' subsection under the Nous Research
provider covering both the 'hermes dashboard register' CLI command
and the Portal /local-dashboards GUI page.
- Note that the Nous provider is the one suitable for public-internet
exposure (logins verified against your Nous account).
- Add a warning that the username/password provider is for trusted
networks / VPN only and is not suitable for direct public-internet
exposure; point readers to the Nous / OIDC / custom OAuth providers.
- Surface the same distinction in the two-provider intro list.
* docs(dashboard): count three bundled auth providers, add self-hosted OIDC to intro
'Two providers ship in the box' undercounted — the bundled
plugins/dashboard_auth/self_hosted (generic OpenID Connect) is a third.
List all three in the gated-mode intro and link each to its section.
* docs(dashboard): extend auth provider updates to Docker and Desktop pages
- docker.md: list all three bundled gate providers (was username/password
+ OAuth only), adding the self-hosted OIDC provider and its env vars,
and note username/password is not for public-internet exposure.
- desktop.md: reframe the remote-backend connection so OAuth (Nous Portal)
is the preferred option for any backend reachable beyond the local
machine, with username/password positioned for local / trusted-network
use only. Cover the 'Sign in with <provider>' OAuth flow in the in-app
steps and scope the VPN warning to the password path.
* docs(dashboard): align env-var, CLI, and remote-Desktop recipe with provider changes
- environment-variables.md: reframe the Web Dashboard & Hermes Desktop
intro (OAuth preferred for remote/public, username/password for
trusted networks), add the self-hosted OIDC env vars
(HERMES_DASHBOARD_OIDC_*) that were missing from the table, and note
hermes dashboard register provisions the OAuth client_id.
- cli-commands.md: document the 'hermes dashboard register' subcommand
(flags, behavior, /local-dashboards GUI alternative).
- web-dashboard.md: apply the OAuth-preferred reframe to the bottom
'Connecting Hermes Desktop to a remote backend' recipe and scope its
VPN warning to the username/password path, matching desktop.md.
* docs(dashboard): move 'recommended remote Desktop path' framing from username/password to OAuth
The gated-mode intro list claimed the username/password provider was the
recommended path for a remote Hermes Desktop connection, contradicting the
OAuth-preferred framing established elsewhere. Move that recommendation onto
the OAuth (Nous Portal) item so the docs are consistent: OAuth is the
recommended provider for any remote/internet-facing backend; username/password
is for trusted networks only.
* docs(dashboard): drop unreleased managed/hosted-install provisioning notes
Remove the 'not available in managed/hosted installs, where the client id is
provisioned by the hosting platform' line from the dashboard register docs
(web-dashboard.md, cli-commands.md) and the 'provisioned by the Nous Portal for
hosted deploys' clause from the HERMES_DASHBOARD_OAUTH_CLIENT_ID env-var row —
that platform-provisioning path is unreleased.
* docs(dashboard): drop --portal-url / HERMES_DASHBOARD_PORTAL_URL from user docs
The portal-URL override targets a non-production Nous Portal and only works
for internal Nous usage — it won't function for end users (the access token
must be issued by the same portal). Remove it from the register CLI flags,
the Nous-provider config/env tables, and the verify-the-gate example so users
aren't pointed at an option that can't work for them.
* docs(dashboard): add worked examples for Nous and username/password providers
The self-hosted OIDC provider already had a full 'Worked example: Keycloak'
walkthrough; the Nous and username/password providers only had scattered
config snippets. Add parallel '#### Worked example' sections for both
(register/run/login + /api/status verification), mirroring the Keycloak
example's structure so all three bundled providers read consistently.
* docs(env): move HERMES_DESKTOP_REMOTE_URL to end of the dashboard auth table
It was sitting between the HERMES_DASHBOARD_BASIC_AUTH_* block and the
HERMES_DASHBOARD_OAUTH/OIDC block, splitting the dashboard-side vars. As the
only desktop-side var in the table, it belongs at the end so the dashboard
provider vars (basic, OAuth, OIDC) stay grouped together.
* docs(dashboard): remove Fly.io references from dashboard auth docs
Fly.io is the internal hosting implementation for hosted Hermes — it shouldn't
leak into user-facing dashboard auth docs. Reword the OAuth provider intro,
the env-var-path rationale, the public-URL-override section, the cookie Secure
note, and the verify-the-gate example to generic 'hosting platform' / 'reverse
proxy' / 'TLS terminator' phrasing.
Left the legitimate user-facing Fly.io mentions in telegram.md (a deliberate
cloud-deployment walkthrough) and work-with-skills.md (a generic example)
untouched.
Some VPS providers (Hetzner Cloud and others) offer a browser-based
console for managing hosts. These consoles transmit special characters
incorrectly — ':' may arrive as ';', '@' may be mis-rendered, and
non-English keyboard layouts fare worse — which silently corrupts
'docker run' arguments like '-v ~/.hermes:/opt/data', '-e KEY=value',
and pasted API keys / tokens.
Adds a :::caution admonition above the Quick start 'docker run' block
in website/docs/user-guide/docker.md recommending SSH for copy-paste-
safe command entry, with manual-typing guidance as a fallback.
Pure docs change, no code touched.
Closes#36279
Co-authored-by: Bedirhan Celayir <bedirhancode@users.noreply.github.com>
Both the desktop and web-dashboard remote-backend sections now state up front
that the 'remote backend' is a running 'hermes dashboard' process the desktop
app attaches to (it does not start it for you), and that the gateway is a
separate process needed only for messaging channels.
Adds qwen/qwen3.7-plus directly under qwen/qwen3.7-max in both the
OpenRouter curated catalog (OPENROUTER_MODELS) and the Nous portal
catalog (_PROVIDER_MODELS['nous']), then regenerates the docs-hosted
model-catalog.json manifest from those source lists.
* Revert "fix(gateway): anchor Google Chat OAuth client secret to default Hermes root"
This reverts commit fff0561441.
* Revert "fix(cli): honor global-root active_provider fallback for named profiles"
This reverts commit 3858cf4307.
* docs(google_chat): describe OAuth client secret as profile-scoped, not host-wide
The setup docs, oauth docstring, and the adapter's 'no credentials'
error message all described the Google Chat OAuth client secret as
host-wide shared infrastructure. That contradicts profile isolation:
profiles are separate auth boundaries, so two profiles can point at
different Google OAuth apps / accounts. Reword all three to say the
secret is profile-scoped and each profile registers its own.
* docs(guides): add "Run Nemotron 3 Ultra free in Hermes Agent" launch guide
Day-0 NVIDIA Nemotron 3 Ultra availability on Nous Portal (free June 4-18,
in partnership with NVIDIA + Nebius). Quick Setup walkthrough for selecting
the nvidia/nemotron-3-ultra:free tier, plus switching/troubleshooting notes.
Registered at the top of Guides & Tutorials.
* docs(guides): reword Nemotron lead-in to match launch copy
Frame as Nemotron Coalition induction (working with NVIDIA) + Nebius
partnership for the free tier, rather than a direct NVIDIA partnership,
to avoid overstating the relationship.
* docs(guides): lead Nemotron guide with desktop app, CLI second
Add a one-click desktop-app install track (download → Nous Portal
recommended sign-in → pick the Free-tier nemotron-3-ultra model) as the
recommended path for non-terminal users, and keep the CLI curl flow as
Option B. Update switching/troubleshooting to cover both surfaces.
The WeCom adapter delivers each response as a single complete message
via aibot_respond_msg / aibot_send_msg — it does not stream tokens
incrementally (no edit_message override) and send_typing is a no-op.
Reword the 'Reply-mode streaming' feature bullet to 'Reply correlation',
retitle the section to 'Reply-Mode Responses', and add a note clarifying
that neither token streaming nor typing indicators are supported.
The documented path for connecting Hermes Desktop to a remote backend was
`--insecure` + a pinned HERMES_DASHBOARD_SESSION_TOKEN — an unauthenticated
bind plus a copy-pasted token. Replace it everywhere with the bundled
username/password dashboard-auth provider: set HERMES_DASHBOARD_BASIC_AUTH_*,
run `hermes dashboard --host 0.0.0.0` (the non-loopback bind engages the auth
gate), and Sign in from the app.
- desktop.md: rewrite 'Connecting to a remote backend' for the user/pass + Sign in flow
- web-dashboard.md: rewrite both remote-backend sections (overview + dedicated);
reframe the auth-gate section so --insecure is a discouraged escape hatch, not a
co-equal use case; drop the removed --tui flag from the systemd example
- environment-variables.md: lead with HERMES_DASHBOARD_BASIC_AUTH_*; drop the
session-token / HERMES_DESKTOP_REMOTE_TOKEN remote-connect entries
- docker.md: mention the username/password provider as the simplest gate provider
Adds a bundled dashboard-auth provider plugin that authenticates the
web dashboard against any conformant self-hosted OpenID Connect server
(Authentik, Keycloak, Zitadel, Authelia, Auth0, Okta, Google, …) using
standard OIDC — no per-IDP code.
It's a pure drop-in plugin implementing the DashboardAuthProvider
protocol; it touches no core auth/runtime/login paths. Mechanics:
- OIDC discovery from {issuer}/.well-known/openid-configuration
(cached; issuer pinned; endpoints required HTTPS, loopback http
allowed for local-dev IDPs)
- authorization-code + PKCE (S256), public client
- verifies the OIDC ID token (RS256/ES256) against the discovered
jwks_uri with iss/aud pinned to the configured issuer/client_id, and
maps standard claims (sub/email/name/preferred_username, groups→org)
onto a Session
- standard refresh_token grant for silent re-auth; RFC 7009 revocation
on logout when advertised
Verifies the ID token (not the access token) because OIDC guarantees the
ID token is a signed JWT carrying identity, while access-token format is
opaque to the client per spec — the only universally-correct choice
across self-hosted IDPs.
Config via dashboard.oauth.self_hosted.{issuer,client_id,scopes} in
config.yaml or HERMES_DASHBOARD_OIDC_{ISSUER,CLIENT_ID,SCOPES} env vars
(env-wins-config, empty-is-unset — same convention as the nous plugin).
Confidential clients (client_secret) left as a documented TODO seam.
Docs: adds a Self-hosted OIDC section to the web-dashboard guide,
including a copy-paste Keycloak worked example (realm import + docker
run + dashboard wiring + login walkthrough).
Tests: 65 cases covering construction, discovery (incl. issuer
mismatch + https enforcement), start_login/PKCE, complete_login, ID
token verification, refresh/revoke, and env/config precedence.
The dashboard's embedded Chat surface (/chat, /api/ws, /api/pty) was gated
behind `hermes dashboard --tui` / HERMES_DASHBOARD_TUI=1. The desktop app and
the dashboard's own Chat tab both drive the agent over the /api/ws + /api/pty
WebSockets, so a dashboard started without the flag would pass the /api/status
health check but slam the chat WebSocket shut with WS code 4403 — the app
connects, reports "ready", and chat stays dead. This was the root cause behind
multiple user reports of the desktop app failing to connect to a self-hosted
gateway/dashboard, and it bit Docker and host installs alike.
Make the embedded chat unconditional:
- web_server.py: _DASHBOARD_EMBEDDED_CHAT_ENABLED defaults to True; drop the
embedded_chat parameter and the runtime reassignment from start_server().
The WS gates still read the constant (now always true) so the seam — and its
"rejects when disabled" contract test — stays meaningful.
- main.py: remove the `--tui` argument from the dashboard subparser and the
`embedded_chat = args.tui or HERMES_DASHBOARD_TUI==1` derivation.
- web/: isDashboardEmbeddedChatEnabled() returns true unconditionally; drop the
deprecated __HERMES_DASHBOARD_TUI__ alias and the dead LEGACY_TUI_RE scrape in
the vite dev-token plugin.
- apps/desktop/electron/main.cjs: drop `--tui` from the spawned dashboardArgs
(it would now error with "unrecognized arguments: --tui") and the redundant
HERMES_DASHBOARD_TUI env injection.
- Docker: no s6 run-script change needed — the script never passed --tui; the
HERMES_DASHBOARD_TUI env var is now simply a no-op, so the image works out of
the box with no extra var.
- Docs: remove every dashboard --tui / HERMES_DASHBOARD_TUI reference across the
CLI reference, env-var reference, docker/desktop/web-dashboard guides, in-app
tips, and the zh-Hans translations. The terminal `hermes --tui` / HERMES_TUI
references are intentionally left untouched.
Tests: 270 passing across web_server, dashboard lifecycle, host-header,
auth-gate, and docker-override-scripts suites.
Add a 'Username/password provider (no OAuth IDP)' section to the web
dashboard guide (config.yaml + env surfaces, the explicit-secret caveat,
the rate-limit/generic-401 properties, and a 'write your own password
provider' pointer to the supports_password extension point), and list the
HERMES_DASHBOARD_BASIC_AUTH_* env vars in the environment-variables
reference.
* refactor(supermemory): session-level conversation ingest + kebab tool aliases
Salvaged from #32487 (by @MaheshtheDev), rebased onto current main.
- sync_turn now buffers cleaned turns; the full session is ingested once
at session end / switch / shutdown via the conversations endpoint
- ingest_conversation() accepts and forwards functional document metadata
(type, session_id, message_count, partial)
- register kebab-case tool aliases (supermemory-save/search/forget/profile)
alongside the snake_case names
- README + docs (EN/zh-Hans) updated for the simplified session model
Source/vendor-attribution removed per project policy (no telemetry):
dropped x-sm-source header, sm_source metadata, and sm_capture_mode tags.
Preserved the post-branch atomic_json_write(mode=0o600) hardening that the
PR's stale base had reverted. Updated provider tests for the new behavior
and added maheshthedev@gmail.com to release.py AUTHOR_MAP.
Co-authored-by: alt-glitch <balyan.sid@gmail.com>
* feat(supermemory): restore x-sm-source for Spaces routing
Reinstates x-sm-source: hermes (SDK default_headers + conversations POST)
and sm_source: hermes document metadata. Per @Dhravya (Supermemory), this
is a functional routing key, not telemetry: it groups Hermes writes into a
dedicated "Hermes" Space in the Supermemory app so users can filter and
bulk-manage memories per source agent.
sm_capture_mode remains dropped (appears analytics-only; Spaces are routed
by sm_source) pending confirmation. Adds README note + a unit test covering
_merge_metadata sm_source stamping and legacy source->type migration.
---------
Co-authored-by: Mahesh Sanikommu <maheshthedev@gmail.com>
Salvage of #35508 (@dchenk), rebased onto current main. Resolved the
tests/tools/test_stage2_hook_puid_pgid.py conflict (kept both the
envdir-creation regression test on main and the new config-migration
tests).
Docker image upgrades replace code under $INSTALL_DIR but preserve
$HERMES_HOME on the mounted volume, so the persisted config.yaml never
received the schema migrations that non-Docker `hermes update` runs
(#35406). This adds scripts/docker_config_migrate.py, invoked from
stage2-hook after first-boot seeding and before gateway services start:
it backs up config.yaml + .env, runs migrate_config(interactive=False),
and honors HERMES_SKIP_CONFIG_MIGRATION=1 for manual control.
Also fixes a latent bug in check_config_version(): it called load_config()
which deep-merges DEFAULT_CONFIG, so a legacy config with no raw
_config_version falsely reported as already-current. It now reads the raw
on-disk file so legacy configs are correctly detected for migration.
Differs from #35508 as submitted (Option B cleanup): dropped the
`_config_version` line added to cli-config.yaml.example and removed the
accompanying test_cli_config_example_declares_latest_version change-detector
test. The example is a copy-template and has no business asserting a schema
version; check_config_version() reads the user's real config.yaml, not the
example. This removes a second sync point that drifts on every version bump.
Closes#35508. Fixes#35406.
Co-authored-by: Dmitriy Cherchenko <17372886+dchenk@users.noreply.github.com>
The Desktop Chat section described chat-only and gave no signpost that
remote-hosted Hermes connection is documented. Adds a pointer to the
in-page remote-backend section and to the deeper Web Dashboard doc.
Desktop's readiness probe only checks GET /api/status (public), but the
live chat rides /api/ws, which is gated by --tui (4403), a matching
session token (4401), and a non-loopback bind. The web-dashboard doc
covered --tui and the OAuth gate but never the Desktop remote-connection
flow, so the three independent failure modes weren't documented together.
Adds a 'Connecting Hermes Desktop to a remote backend' section: pin
HERMES_DASHBOARD_SESSION_TOKEN, run with --host 0.0.0.0 --insecure --tui,
the curl token-verification one-liner, and WS close-code triage.
Self-review of #38465 surfaced three real items:
1. SystemExit escape (defense): `_login_nous` raises SystemExit(130)/(1) on
cancel/failure. The logged-out login path inside `_model_flow_nous` catches
it, but the expired-session re-login path (main.py) only catches Exception,
so a Ctrl-C during re-auth could propagate past `_run_portal_one_shot` and
kill the CLI. Add SystemExit to the portal handler so all cancel/abort cases
end with the graceful 'Setup cancelled / retry later' message.
2. Doc sweep: the model-pick step was only added to the bare-`hermes portal`
prose. Propagate it to the surfaces describing `hermes setup --portal`
behavior that still omitted model selection:
- `--portal` argparse help (main.py)
- nous-portal.md intro + the numbered 'what it does' step list (EN + zh-Hans)
- run-hermes-with-nous-portal.md 'default model after setup --portal' line,
which was now contradictory (there's a picker, not a forced default) (EN + zh)
3. Test coverage: add parametrized regression test asserting the portal handler
swallows KeyboardInterrupt / EOFError / SystemExit (returns None, no escape).
Note on 'Skip (keep current)': delegating to _model_flow_nous means picking
Skip preserves the prior provider instead of force-switching to nous — this is
intentional and matches quick setup exactly; docs now say 'sets Nous as your
provider (when you pick a model)' rather than unconditionally.
`hermes portal` / `hermes setup --portal` previously logged in and set
provider=nous but left the model UNSELECTED (blank -> runtime default) and
never showed a picker — unlike the first-time quick setup, which runs the
model picker.
Route `_run_portal_one_shot` through `_model_flow_nous` — the exact same
routine quick setup (`_run_first_time_quick_setup`) and `hermes model` -> Nous
use. It handles both the logged-out path (device-code OAuth, which picks a
model internally) and the logged-in path (curated Nous model picker), then
offers the Tool Gateway opt-in and sets provider=nous. Net effect: `hermes
portal` now offers a model picker every time and is a true single-command
collapse of quick setup's Nous step.
Removes the hand-rolled auth_add_command + manual provider write + separate
Tool Gateway prompt (now a single source of truth). Re-syncs the in-memory
config from disk afterward so a caller's later save_config can't clobber the
model/provider written by the login flow.
Docs (CLI help, portal_cli docstrings, nous-portal EN + zh-Hans) updated to
mention model selection. New regression test asserts `_run_portal_one_shot`
delegates to `_model_flow_nous`.
Verified live: `hermes portal` now shows the 27-model curated picker, 'Skip
(keep current)' preserves prior provider/model.
`hermes portal` (no subcommand) now runs the one-shot Nous Portal onboarding
— OAuth login, switch provider to Nous, offer Tool Gateway — identical to
`hermes setup --portal` and the human-readable alias for
`hermes auth add nous --type oauth` (which still works).
The prior status default moves to `hermes portal info`; `status` is kept as a
hidden back-compat alias. `open`/`tools` subcommands are unchanged.
User-facing hints and docs (status.py, conversation_loop 401 guidance,
SystemPage, README, website docs + zh-Hans) now point at `hermes portal` /
`hermes portal info`. `--manual-paste` references keep the explicit auth
command since `hermes portal` does not expose that flag.
The Desktop App and Web Dashboard remote-connect instructions told users
to start the backend with `hermes dashboard --no-open --insecure --host
0.0.0.0`, omitting --tui. Without --tui the embedded-chat WebSockets
(/api/ws, /api/pty) are refused, so the desktop passes the /api/status
health check and reports the backend "ready" — but chat never works
because the socket is closed on connect.
- Add --tui to both backend command blocks (with an inline why-comment).
- Explain that the desktop chat runs over /api/ws + /api/pty and needs
the embedded-chat surface enabled; a plain dashboard/gateway is not
enough.
- Add a troubleshooting entry for the exact symptom (connects, says
ready, chat dead) on both pages.
Adds backend-neutral observer hooks for plugins: session, turn, API
request, tool, approval, and subagent lifecycle events with stable
correlation IDs (session_id, task_id, turn_id, api_request_id,
tool_call_id, parent/child subagent ids). Extends VALID_HOOKS with
api_request_error and subagent_start.
Hot path is zero-cost when no plugin subscribes: has_hook()/presence
checks gate all payload construction, request payloads are returned
by reference when no middleware rewrites, and the sanitized response
payload no longer embeds raw response objects.
Bundles the optional NeMo-Relay observability plugin
(plugins/observability/nemo_relay) as an in-repo consumer of the new
hooks, peer to the existing langfuse plugin. Fails open when the
optional nemo-relay package is not installed.
Authored-by: Bryan Bednarski <bbednarski@nvidia.com>
Salvaged from #29722 onto current main.
The dashboard's update button ran 'hermes update' immediately with no
preview. Now the System page shows whether an update is available and
asks the user to confirm before applying it.
- New GET /api/hermes/update/check: reports install method, current
version, and commits-behind (via banner.check_for_updates, 6h-cached;
?force=1 busts the cache). Soft-fails to behind=null on network error;
marks docker/nix/homebrew as can_apply=false with the out-of-band cmd.
- System page: update-status badge on the Hermes version row (latest /
N behind), a Check-for-updates button, and an Update-now button that
opens a ConfirmDialog showing the commit count before POST /api/hermes/
update fires. Cached status loads with the rest of the page.
- Docs + 5 endpoint tests (git/up-to-date/docker/soft-failure + auth gate).
The Electron desktop app writes boot failures, backend spawn output, and
Python tracebacks to HERMES_HOME/logs/desktop.log, but debug-share only
captured agent/errors/gateway — so desktop boot issues never made it into
shared debug reports.
- logs.py: register desktop -> desktop.log (enables 'hermes logs desktop')
- debug.py: capture desktop snapshot, add to summary report, upload full
desktop.log in 'share', update privacy notice
- gateway /debug inherits the desktop tail via collect_debug_report()
- main.py + docs: help text and log-name table (also adds missing gui row)
- tests: desktop seed in fixture, new report test, three_pastes -> four_pastes
The section explained why the Session token is hidden but punted the actual
setup steps to the web-dashboard page via a link — a bounce for someone on
the Desktop App page trying to connect. Inline the concrete steps instead:
backend command block (mint token -> .env -> hermes dashboard --insecure),
the in-app Remote gateway steps, the env-var override, Tailscale guidance,
and a troubleshooting list. Keep a short pointer to the web-dashboard page
for the same setup from that angle.
The Desktop App page covered install, settings, and chat but not how to
connect the app to a backend on another machine — the exact thing
@PedjaDrazic asked about. Add a 'Connecting to a remote backend' section
that explains the Session token is the dashboard token Hermes never
surfaces (pin it via HERMES_DASHBOARD_SESSION_TOKEN + run --insecure),
and link to the web-dashboard page for the full backend setup rather than
duplicating it. Add a reciprocal link from the web-dashboard remote section
back to the Desktop App page.
The desktop Remote gateway field asks for a session token that Hermes never
surfaces — by default web_server.py mints an ephemeral token per boot and
injects it into the served HTML, so there is nothing in config.yaml, /gateway,
or env to copy. Document that you pin it yourself via
HERMES_DASHBOARD_SESSION_TOKEN, run the backend with --insecure (keeps the
legacy token auth path instead of engaging the OAuth gate), then paste that
value into the desktop app.
- web-dashboard.md: new 'Connecting Hermes Desktop to a remote backend' section
(backend + desktop steps, --insecure vs OAuth-gate nuance, HERMES_DESKTOP_*
env override, Tailscale guidance, troubleshooting).
- environment-variables.md: new 'Web Dashboard & Hermes Desktop' env-var table
(HERMES_DASHBOARD_SESSION_TOKEN, HERMES_DESKTOP_REMOTE_URL/TOKEN, the OAuth
and public-url vars) — none were previously documented.
Follow-up to #38089. The merged PR removed --recurse-submodules from the
installer, CI, and getting-started docs, but missed the same stale clause in:
- CONTRIBUTING.md (Prerequisites table)
- website/docs/developer-guide/contributing.md (table + clone command)
- zh-Hans mirror of the developer-guide contributing doc
git-lfs is kept in the Git requirement rows since it's a separate, real
prerequisite. No .gitmodules has existed since the Atropos RL submodule was
removed in #26106.
On a fresh volume there is no gateway_state.json, so the boot reconciler
(cont-init.d/02-reconcile-profiles) registers the gateway-default s6 slot
but leaves it down — it only auto-starts when the last recorded state was
"running". A freshly-provisioned container therefore comes up with the
gateway down until something starts it (e.g. the dashboard's start button).
Add a generic, first-boot-only env-seed in stage2-hook.sh (which runs
before 02-reconcile-profiles): when HERMES_GATEWAY_BOOTSTRAP_STATE=running
and no gateway_state.json exists yet, seed {"gateway_state":"running"} so
the reconciler brings the supervised slot up on the very first boot.
This mirrors the existing HERMES_AUTH_JSON_BOOTSTRAP pattern: it seeds the
same state file the reconciler already consults, guarded by [ ! -f ] so
persisted runtime state always wins on later boots (a deliberately-stopped
gateway stays stopped across restarts). Only the literal "running" is
honoured (the sole value in the reconciler's _AUTOSTART_STATES).
Generic container contract — no host-specific code. Useful to any
orchestrator that provisions a blank volume and wants the gateway up from
first boot (the supervised gateway/dashboard already work on such hosts;
only the first-boot autostart was missing because the CLI lifecycle
commands can't drive the s6 layer when container self-detection misses).
Adds a shell-level contract test and documents the env var.
Add `display.interface` config key so users can make the modern TUI the
default for bare `hermes` / `hermes chat` without exporting HERMES_TUI=1 in
every shell. Default stays "cli" to preserve current behavior.
Add a `--cli` flag (mirrors `--tui`) so an explicit invocation can force the
classic prompt_toolkit REPL even when `display.interface: tui` is configured.
Precedence (highest first): `--cli` > `--tui`/`HERMES_TUI=1` > config
`display.interface` > classic REPL. Two resolvers enforce it:
* `_resolve_use_tui(args)` — the args-aware resolver used by `cmd_chat`
and the Termux fast-TUI path (uses full load_config()).
* `_wants_tui_early(argv)` — a dependency-free early resolver used by
mouse-residue suppression and the Termux fast paths, which run before
argparse / hermes_cli.config are importable (minimal cached YAML read).
Both `--cli` and `--tui` are registered via `_inherited_flag`, so they are
carried across self-relaunch automatically.
- config: add display.interface ("cli" default), bump _config_version 25->26.
The generic missing-field migration + load_config() deep-merge seed the key
for existing configs; no bespoke migration block needed.
- docs: document --cli flag and display.interface in cli-commands.md and
the TUI user guide.
- tests: new test_default_interface_resolution.py covering resolver
precedence at every layer, early resolver edge cases (missing/garbage
config), parser flags, and relaunch inheritance.
Add a SHA-256 content-hash based build stamp to `hermes desktop` so
unchanged source trees skip the npm install + build step. Uses pathspec
for .gitignore-aware file matching instead of a hardcoded skip-list.
New CLI flags:
- --build-only: run the build but don't launch the app
- --force-build: rebuild even when the stamp matches
`hermes update` now calls `hermes desktop --build-only` so the
desktop app is rebuilt (if needed) as part of the update flow.
16/16 tests passing.
The native Electron desktop app shipped (PR #20059 and follow-ups) but the
docs only told people how to download it, not what it is or how to use it.
Adds website/docs/user-guide/desktop.md covering install (installer +
prebuilt + Windows GUI), the chat-first UI and management panes, the
hermes desktop CLI flag reference, self-update, how-it-works, and
troubleshooting. Sourced from apps/desktop/README.md, routes.ts, and the
real argparse. Wired into sidebars.ts under Interfaces after the TUI.
The /api/messaging/platforms endpoints (catalog, configure, test) shipped
with the desktop app but never got a dashboard UI; the recent admin-panel
PRs covered MCP/webhooks/hooks/system but skipped messaging channels. This
adds the missing page so all 20+ channels (Telegram, Discord, Slack, Matrix,
Mattermost, WhatsApp, Signal, BlueBubbles, Email, SMS, DingTalk, Feishu,
WeCom, WeChat, QQ Bot, Yuanbao, plugin platforms, etc.) can be configured,
enabled/disabled, tested, and connected entirely from the browser.
- web/src/pages/ChannelsPage.tsx: per-platform list with live status, enable
Switch, Test, and a Configure modal that renders each platform's exact
setup fields (secrets masked, required validated, redacted display).
- web/src/lib/api.ts: MessagingPlatform types + get/update/test client fns.
- web/src/App.tsx: /channels route + nav tab (Radio icon, after MCP).
- docs: Channels section + REST endpoints + screenshot.
Frontend-only — reuses the existing env-write + config-enable backend, which
auto-enables a platform once its required env vars are present and the
gateway restarts. No core changes, no new tool schema.