Port from google-gemini/gemini-cli#27770: starting the CLI and
immediately quitting (or rotating with /new, /clear) left an empty
untitled session row behind. These ghost rows pile up in /resume,
`hermes sessions list`, and the in-chat recent-sessions browser.
- SessionDB.delete_session_if_empty(): transactional check-and-delete
that only removes rows with no messages, no title, and no child
sessions (delegate subagent parents are preserved). Also removes
on-disk transcript files via the existing _remove_session_files.
- HermesCLI._discard_session_if_empty(): thin wrapper, wired into the
cli_close shutdown path and the new_session() rotation path.
Skipped when /exit --delete already handles removal.
Unlike the one-shot prune_empty_ghost_sessions migration (TUI-only,
24h-old rows), this prevents new ghost rows from accumulating at the
moment they would be created.
Rebased onto current main and re-ported across the restructured
surfaces: model flows now thread confirm_provider/base_url/api_key
through hermes_cli/model_setup_flows.py, the Discord picker lives in
plugins/platforms/discord/adapter.py, and the web dashboard picker
applies chat-mode switches via config.set so the expensive-model
confirmation can ride the response.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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.
The /plugins slash command read from the live PluginManager, which only
knows about *loaded* plugins. A freshly-installed plugin that hadn't been
enabled yet showed 'No plugins installed. Drop plugin directories into
~/.hermes/plugins/' — even though it was on disk and a valid plugin.
Switch to the same disk-discovery path as 'hermes plugins list'
(_discover_all_plugins + enabled/disabled sets + _plugin_status), so an
installed plugin now appears with its activation state ([not enabled],
enabled, or disabled) plus the exact enable command.
Default the quick /plugins view to user-installed plugins and summarize
bundled providers/platforms on one line (the full catalog stays behind
'hermes plugins list') so the output isn't drowned by 60+ bundled
provider plugins.
Native Windows bypassed the destructive-slash modal and fell back to a raw
input() prompt. When the confirm was triggered from the process_loop daemon
thread (the normal case), that input() deadlocked against prompt_toolkit's
main-thread stdin ownership: bare /reset froze with Ctrl-C swallowed, while
/reset now worked only because it skips the prompt. Route native Windows
through the existing call_soon_threadsafe modal path (the same key-binding
channel that already handles normal typing on Windows); keep the stdin
fallback only for the safe no-app / scheduling-failure cases, and clean-cancel
(None) off the main thread on win32 so a degraded path never re-deadlocks.
Addresses #33961
Refs #30768
quiet_mode was being used to suppress tool-result display when
tool_progress_mode was 'off'. But quiet_mode also gates operational
status messages, so users with /verbose + tool-progress off lost all
status output.
Adds a dedicated tool_progress_mode attribute to AIAgent; the
tool_executor result-rendering path gates on tool_progress_mode != 'off'.
The CLI passes its tool_progress_mode through agent setup and the
tool-progress cycle command syncs it onto the live agent.
Fixes#33860.
prompt_toolkit's ANSI parser does not handle OSC escape sequences
(\x1b]...\x07 / \x1b]...\x1b\), which caused Rich's [link=...] markup
to leak raw OSC 8 payload into the banner title after /clear.
Added _OSC_ESCAPE_RE to strip OSC sequences in ChatConsole.print()
before routing through _cprint(). CSI/SGR color sequences are
preserved. Visible text between OSC sequences is kept intact.
Lift the 5 agent-construction/session-resume methods out of HermesCLI into
hermes_cli/cli_agent_setup_mixin.py:CLIAgentSetupMixin. Behavior-neutral; cli.py
14139 -> 13492 LOC.
Methods moved (~647 LOC): _ensure_runtime_credentials, _resolve_turn_agent_config,
_init_agent, _preload_resumed_session, _display_resumed_history. All self.* calls
resolve unchanged via the MRO (HermesCLI(CLIAgentSetupMixin, CLICommandsMixin)).
Import split (same recipe as #41942): 2 neutral deps (sys, _escape) imported at
the mixin module top; 12 cli.py-internal helpers/constants (AIAgent, ChatConsole,
CLI_CONFIG, _cprint, _DIM, _RST, _accent_hex, ...) imported lazily per-method
(from cli import ...) so the mixin never imports cli at module scope -> no cycle.
Repointed one source-inspection change-detector (test_callable_api_key.py) to read
the mixin file where the method now lives.
Lift the `_handle_*_command` cluster (2,077 LOC) out of HermesCLI into
hermes_cli/cli_commands_mixin.py; HermesCLI now inherits CLICommandsMixin so
every self.<handler> call resolves unchanged via the MRO. Behavior-neutral.
Import discipline mirrors gateway/slash_commands.py (PR #41886): neutral deps
imported at the mixin module top level; cli.py-internal helpers/constants
(_cprint, _ACCENT, save_config_value, ...) imported lazily inside each handler
via 'from cli import ...' so the mixin never imports cli at module scope.
cli.py 16215 -> 14139 LOC. One test mock repointed (cli.is_browser_debug_ready
-> hermes_cli.cli_commands_mixin.is_browser_debug_ready).
In classic CLI mode the dangerous-command approval prompt (and the clarify,
sudo, and secret-capture prompts) could fail to render: the user saw
'⏱ Timeout — denying command' after 60s without ever seeing the panel,
making approvals.mode: manual unusable.
Root cause. These prompts run their wait loop on the agent/background thread:
they set modal state that a ConditionalContainer's filter reads, then call
self._invalidate() to repaint so the panel appears. _invalidate() is a
THROTTLED wrapper built for high-frequency background repaints (spinner frames,
streaming) — it (a) returns early while a SIGWINCH resize-recovery is pending,
and (b) otherwise only repaints if 250ms elapsed since the last paint. Under
either condition the modal's entry paint is silently dropped, the
ConditionalContainer never re-evaluates, and the prompt times out unseen.
The throttle never belonged on these paths. Originally the callbacks painted
with a direct self._app.invalidate() and worked; a throttle PR blanket-replaced
every invalidate (including these rare, one-shot, user-blocking modal paints)
with the throttled _invalidate(); a later commit removed an idle 1Hz repaint
that had been masking dropped modal paints, surfacing the bug. Notably the
modal KEY-BINDING handlers (↑/↓/Enter) already paint with a direct
event.app.invalidate(), never the throttle — the background-thread callbacks
were the inconsistent ones.
Fix. Add a small _paint_now() helper that paints directly (guarded for a
missing _app, exception-safe) and route the four modal paths' entry, response,
countdown, and teardown paints through it — matching the key-handler idiom.
This covers approval, clarify, sudo, and the secret-capture teardown
(_submit_secret_response, which previously used the throttled _invalidate() so
its panel could linger after submit). _invalidate() is left untouched and its
docstring now states it is for high-frequency background repaints only;
modal/interactive paints must use _paint_now()/_app.invalidate() directly. This
also fixes the resize-recovery edge case for free (a direct paint never
consults the resize guard) without a throttle-bypass flag that could be
cargo-culted onto hot paths. Countdown refresh cadence tightened 5s->1s so the
timer stays visible while waiting, and a copy-pasted duplicate countdown block
in _clarify_callback is removed.
Tests: TestModalPaintNow drives all three wait-loop callbacks on a background
thread with BOTH gates active (_resize_recovery_pending=True + a recent
_last_invalidate in the throttle window) and asserts the panel paints on entry
AND repaints on teardown; plus a secret-teardown test, a direct
_paint_now-vs-_invalidate gate test, and a no-_app safety test. Each modal test
fails if its paint is reverted to _invalidate(). 17 in-file tests pass; full
tests/cli suite green (900).
Diagnosis credit: the throttle-drop root cause was identified by @sanidhyasin
in #41116; @islam666 independently reached the same direct-invalidate approach
in #41166; original report #41098 by @jodonnel.
process_command() is typed -> bool, but the /clear, /new, and /undo
cancel paths did a bare `return` (None) when _confirm_destructive_slash
was declined, leaking None through the bool contract. Return True
(command handled, keep the REPL alive) on cancel.
Co-authored-by: yubingz <yubingz@users.noreply.github.com>
* feat(tui): HERMES_DEV_CREDITS live-spend dev readout (L0 tracer for usage-aware credits)
L0 of the usage-aware-credits feature: a dev-only, env-gated tracer that
exercises the real header -> CreditsState -> TUI pipe end-to-end behind
HERMES_DEV_CREDITS, de-risking the L1/L5 build before the notice policy exists.
- agent/credits_tracker.py: CreditsState + parse_credits_headers (headers are
strings -> paid_access via == "true", never bool(); retain-last-known; only
subscription_micros may be negative; *_usd kept verbatim).
- run_agent.py: _capture_credits / get_credits_state / get_credits_spent_micros,
session-start baseline latch, + dev-gated "credits" capture log.
- agent/chat_completion_helpers.py: capture on the streaming response.
- agent/agent_init.py: init _credits_state + _credits_session_start_micros.
- tui_gateway/server.py: _get_usage emits dev_credits_spent_micros only when flagged.
- ui-tui appChrome.tsx / types.ts: cents delta status segment + "(dev credits)" banner.
Off by default; silent for normal users. Validated live against staging
(capture log delta matches the TUI segment). Throwaway consumer (readout/log/
banner); credits_tracker + the capture plumbing are the real feature foundation.
* test(credits): lock parser under 9-state matrix + harden validation (L2)
Add tests/agent/test_credits_tracker.py with 92 tests covering the 9-state
matrix (healthy, sub_90pct, grant_exhausted, purchased_only, tool_pool_free,
depleted, debt, missing, no_org) plus validation edge cases: version strict==1
with warn-once latch for v>1, bool-string trap (paid_access/tool_pool_gated_off
== "true"/"false", never bool()), half-pair subscription limit treated as
both-absent while parse succeeds, USD regex ^-?\d+\.\d{2}$, non-int micros
→ None, negative non-subscription micros → None, as_of_ms junk → None, zero
limit ZeroDivision guard.
Harden agent/credits_tracker.py to match the spec:
- Add tool_pool_micros/tool_pool_gated_off/from_header fields to CreditsState
- Add depleted property (== not paid_access, never remaining==0)
- Change used_fraction guard to key off subscription_limit_micros (the actual
denominator) not denominator_kind (metadata)
- Replace fail-soft _safe_int with a sentinel-returning variant; full validation
now returns None on any malformed field rather than silently defaulting
- Add module-level warn-once latch for version > 1
- Add USD regex validation; add denominator_kind allow-list check
- Parse x-nous-tool-pool-* prefix headers (not x-nous-credits-tool-pool-*)
* feat(credits): notice spine — AgentNotice + notice_callback/notice_clear_callback + TUI binding (L1)
L1 of usage-aware credits: the driver-agnostic notice delivery spine that L4's
policy will fire through and L5's TUI render will consume.
- agent/credits_tracker.py: AgentNotice dataclass (text/level/kind/ttl_ms/key/id;
kind defaults "sticky", kept TTL-expressive for a future config seam).
- run_agent.py: AIAgent gains notice_callback + notice_clear_callback slots and
_emit_notice / _emit_notice_clear emitters (swallow all callback errors — a
notice must never break the agent loop; no-op when unbound).
- agent/agent_init.py: thread both callbacks through init_agent.
- tui_gateway/server.py: bind both in _agent_cbs → notification.show / notification.clear
WS events (snake_case payload, matching the existing gateway-event convention).
- ui-tui/src/gatewayTypes.ts: notification.show / notification.clear arms on GatewayEvent.
- tests/run_agent/test_notice_spine.py: 15 tests (emitter fire + fail-open + no-op,
signature threading, TUI binding payload shape).
Messaging push is out of v1 (binds neither callback). CLI binding + the TUI render/
decode land with L4 (firing) and L5 (render) so turn-end flush is wired correctly.
* feat(credits): threshold reconciliation policy + tests (L4.1)
* feat(credits): wire threshold policy into capture + latch (L4.2)
After a fresh header parse, _capture_credits runs evaluate_credits_notices against
the agent's _credits_latch and emits the result — clears first, then shows (so a
recovered depletion clears before the "restored" success lands, and depleted wins
the latest-wins slot). Gated on a bound notice_callback: messaging (no callbacks)
still caches state for /usage but runs no policy. Parse stays fail-open (miss →
keep last-known); the eval/emit path warns on failure rather than swallowing, so a
depletion-notice bug can't vanish silently.
- run_agent.py: _capture_credits split into parse (swallow→miss) + policy (warn);
latch lazy-guarded (object.__new__ safety).
- agent/agent_init.py: init agent._credits_latch = {"active": set(), "seen_below_90": False}.
* feat(tui): render credits notices in the status bar (L5, Strategy B)
The TUI now renders the notification.show / notification.clear gateway events the
agent emits — a level-colored notice overrides the status/verb slot when not busy.
- Notice state machine on turnController (pendingNotice + dedicated noticeTimer +
show/clear/applyNotice/flushPendingNotice/clearNoticeState). createGatewayEventHandler
decodes the events and delegates.
- Render priority busy > notice > status (appChrome StatusRule); notice text rendered
verbatim (its glyph comes from the policy), shrinkable so it never clips model│ctx;
dev-credits banner + Δ segment preserved. UiState.notice is snake_case (matches wire).
- Busy-wins: a notice arriving mid-turn is held and flushed at the THREE turn-end sites
(recordMessageComplete / interruptTurn / recordError) — never idle(), which reset()
also calls (would leak across sessions); reset() clears instead.
- Dedicated noticeTimer (never statusTimer); TTL starts on visibility with an id-guard;
latest-wins cancels the prior timer; clear is key-matched (no-op on mismatch); a sticky
survives a turn (flush no-ops with no pending); session reset clears (no cross-session leak).
- 20 tests (handler/turnController logic incl. R3-C2 timer isolation + render priority).
* feat(credits): cold-start seed for new Nous sessions (L3)
A genuinely-new Nous session has no inference header yet, so seed credits state from
the authoritative GET /api/oauth/account snapshot at session start (in the new-session
branch of _restore_or_build_system_prompt — inline, since the on_session_start plugin
hook gets no agent reference). The seed runs the shared notice policy, so a session that
opens already depleted warns IMMEDIATELY rather than only after the first turn.
- Maps the nested account fields (paid_service_access → paid_access; total_usable /
subscription / purchased on paid_service_access_info; rollover on subscription), each
None-guarded; float dollars → micros via round(d*1e6), *_usd left "" (render formats
from micros — never synthesize a verbatim usd from a float).
- Magnitudes-only: no monthlyCredits on the endpoint → subscription_limit_* unset →
used_fraction None → no warn90 from the seed (% only once a header lands, per D-E).
- Provider-guarded to Nous; fail-open (any error leaves _credits_state None, never
blocks startup); paid_access unknown ⇒ True (never falsely depleted).
- run_agent.py: extracted the warm-path policy/emit block into a shared
_emit_credits_notices() so capture and the seed fire notices identically.
* feat(credits): /usage Nous credits magnitudes view + recovery trigger (L6)
Add Nous credit dollar magnitudes to /usage (subscription / top-up / total
+ rollover + renewal + portal CTA), magnitudes-only per v1 (no % until the
account endpoint exposes a denominator). Reuses the existing account-usage
render machinery via a new pure build_nous_credits_snapshot() that maps a
NousPortalAccountInfo to an AccountUsageSnapshot; no nous branch is added to
fetch_account_usage (keeps the per-provider boundary intact).
CLI /usage also doubles as a depletion-recovery trigger: a force_fresh
account fetch, kept in a SEPARATE local so it never clobbers the
header-sourced agent._credits_state (which alone carries used_fraction). If
paid access recovered while credits.depleted is latched and a notice
consumer is bound, it reuses agent._emit_credits_notices() to clear it.
Gateway /usage displays magnitudes only — messaging binds no notice
consumer, so it performs no recovery emit.
Fail-open throughout: any portal hiccup leaves /usage unaffected.
* refactor(credits): dedupe HERMES_DEV_CREDITS flag parse via shared helpers
The dev-flag truthy check was inlined in three places. Replace with the shared
utils.is_truthy_value (run_agent.py, tui_gateway/server.py — also drops a
redundant inline `import os`) and a hoisted DEV_CREDITS_MODE export in
ui-tui/src/config/env.ts (consumed by appChrome, which also stops recomputing the
env check on every render). Behaviour-preserving; identical truthy set.
* fix(credits): cut dead /usage recovery trigger + bound portal fetches (L6 review)
Adversarial review found the /usage depletion-recovery trigger dead AND broken:
the CLI binds no notice_clear_callback, the TUI runs /usage in a separate
slash-worker subprocess (its own agent/latch), and the no-clobber rule made it
evaluate stale paid_access anyway. Recovery already happens on the next inference
(warm path), so the trigger was redundant — remove it and stop the depleted
notice over-promising.
- cli.py: remove the dead recovery block; bound the /usage portal fetch with a
10s wall-clock timeout (ThreadPoolExecutor) like the per-provider fetch —
urllib's per-socket timeout is not a wall-clock guarantee.
- agent/credits_tracker.py: reword the depleted CTA to "run /usage for balance"
(no false recovery promise; /usage shows fresh magnitudes, sticky clears next turn).
- agent/conversation_loop.py: same wall-clock timeout on the cold-start seed fetch
so a stalled portal can't hang session startup; tidy its time import.
* chore(credits): dev notice-state fixtures (HERMES_DEV_CREDITS_FIXTURE)
Throwaway dev scaffolding to exercise the notice pipeline without real spend or
Redis seeding. Set HERMES_DEV_CREDITS_FIXTURE to a state name (healthy / sub_90pct
/ grant_exhausted / depleted / clear) or a file path whose contents name a state
(re-read each turn → flip states live for recovery testing). _capture_credits
injects the chosen CreditsState instead of parsing real headers and runs the
shared notice policy. Deletable with the rest of the HERMES_DEV_CREDITS scaffolding.
* feat(credits): /usage monthly-grant % gauge
The portal /api/oauth/account subscription block now carries monthly_credits
(the per-period grant allowance, the % denominator). The consumer parsed
monthly_charge but dropped monthly_credits, so /usage stayed magnitudes-only.
Capture monthly_credits into NousPortalSubscriptionInfo + _subscription_from_payload.
build_nous_credits_snapshot emits a Subscription usage window (real % used, routed
through the existing render machinery) when monthly_credits is a finite positive
denominator and credits_remaining is finite and <= cap; otherwise it degrades to
magnitudes-only (older portals, rollover-over-cap, or non-finite payloads).
Guards (adversarial-review-driven): reject non-finite operands (json.loads parses
bare NaN/Infinity by default → would render $nan + a false 100% used), reject
bools, guard div-by-zero (cap>0), and suppress the gauge when remaining > cap
(rollover spanning the period makes the cap a nonsensical denominator → the
$X-of-$Y detail would read as a contradiction). Debt (remaining<0) clamps to 100%.
Money rule preserved: the ratio + magnitudes are computed from numeric float
account fields via display formatting, never by parsing a server *_usd string
(there are none on these dataclasses).
13 gauge tests added (tests/agent/test_nous_credits_gauge.py).
* fix(credits): show /usage Nous block whenever a Nous account is present
/usage runs in a slash-worker subprocess whose resolved inference provider is
often not "nous" even when the user has a Nous account, so gating the Nous
credits block on (provider == "nous") hid it entirely — the account data was
fully available but never rendered.
Gate instead on "a Nous account is logged in": a cheap local auth-state lookup
(get_provider_auth_state('nous') has an access_token) decides whether to attempt
the portal fetch, regardless of which provider inference runs on. In the gateway
the block is also lifted out of the 'if provider:' scope so a Nous-credentialled
user with another (or no) resident inference provider still sees their balance.
Fail-open and the per-fetch wall-clock timeout are preserved.
* fix(credits): show /usage Nous block when there's no live agent (TUI slash-worker)
In the TUI, /usage runs in a slash-worker subprocess that resumes the session
WITHOUT building an agent (self.agent is None), so _show_usage early-returned
"(._.) No active agent" before ever reaching the Nous credits block — which is
agent-independent (a portal fetch gated on Nous auth-state). Extract the block
into _print_nous_credits_block() and run it at the no-agent / no-calls
early-returns too (returns True if it printed, so the fallback message only
shows when there's genuinely nothing).
Verified live against staging: the block + monthly-grant gauge now render in the
slash-worker /usage path (previously hidden). The plain CLI REPL + messaging
paths are unchanged (they have a live agent).
* feat(credits): escalating 50/75/90 usage bands (single status line)
Replace the lone 90%-used warning with three escalating bands (50 info, 75 warn,
90 warn) shown as ONE status-bar line: it displays the highest band the
subscription grant has crossed, replaces the line as usage climbs, steps back
down on recovery, and clears below 50%. No stacking, no per-turn churn.
Bands live in a tunable CREDITS_USAGE_BANDS list; the policy derives everything
from it. Single notice key (credits.usage) with a usage_band latch field so the
notice only re-emits when the band actually changes. The crossing gate
(seen_below_90) is preserved so a fresh live session that opens mid-range stays
quiet until it has been observed below the lowest band (cold-start primes it when
it wants an open-high warning). Denominator math unchanged: % = subscription
grant burn (cap - grant_remaining)/cap, clamped [0,1]; top-up never moves the %.
Migrated test_credits_policy.py to the new key + added TestUsageBands (climb,
step-down, recovery-clear, idempotent, inclusive boundaries).
* feat(credits): hydrate notices at session OPEN via shared seed (TUI + first-turn)
Notices previously only fired inside a conversation turn (first message), so a
session that opened already depleted / past a usage band showed nothing at
'ready'. Extract the cold-start seed into a shared seed_credits_at_session_start()
and call it (a) in the TUI/desktop agent build right after the notice callback is
wired (fires at 'ready', before any message) and (b) as the first-turn fallback in
conversation_loop. Idempotent (skips once _credits_state exists) and fail-open.
The seed now maps monthly_credits -> subscription_limit_micros +
denominator_kind='subscription_cap', so used_fraction is computable at seed time
and usage-band warnings (not just depletion) hydrate on open. Primes the crossing
latch so a session opening already in a band warns immediately. Degrades to
depletion-only when monthly_credits is absent (older portals).
Adds test_credits_cold_start.py covering open-at-band, depletion, debt, no-cap
degradation, and the shared seed (fires/idempotent/skips-non-nous).
* feat(credits): /usage monthly-grant % gauge + fixture support + TUI surfacing
agent/account_usage.py: build_nous_credits_snapshot emits a subscription %% gauge
when the portal supplies a positive, finite monthly_credits denominator with
remaining <= cap (guards reject NaN/Infinity and rollover-over-cap, which would
render $nan or a contradictory $X-of-$Y); degrades to magnitudes-only otherwise.
Adds shared nous_credits_lines() (auth-gated, wall-clock-bounded portal fetch) so
the CLI and TUI /usage render the same block, and _snapshot_from_credits_state()
so HERMES_DEV_CREDITS_FIXTURE drives /usage offline too.
TUI: session.usage RPC carries credits_lines (agent-independent) and the /usage
panel renders them regardless of API-call count or resume state — previously the
TUI's separate /usage implementation only showed token counts.
Money rule preserved: %% and magnitudes come from numeric float account fields via
display formatting, never by parsing a server *_usd string.
* feat(credits): CLI REPL inline notices (parity with TUI)
The plain CLI agent bound no notice callbacks, so credit notices were TUI-only.
Bind notice_callback/notice_clear_callback on the CLI AIAgent; _on_notice renders
a single level-colored line above the prompt (error red / warn yellow / success
green / info dim) via _cprint, and seed credits at session open so a depletion or
usage-band warning shows before the first message — the same hydration the TUI
got. _on_notice_clear is a no-op (the REPL prints lines, no persistent slot).
* test(credits): add sub_50pct + sub_75pct dev fixtures for the new usage bands
The fixture set jumped 10%% -> 90%%; add sub_50pct (uf 0.5 -> band 50 info) and
sub_75pct (uf 0.75 -> band 75 warn) so the new escalating bands are exercisable
via HERMES_DEV_CREDITS_FIXTURE across all three surfaces (notice, session-open
seed, /usage gauge).
* fix(credits): usage-band notice clears on next prompt (not sticky-forever)
A 50/75/90 usage heads-up was sticky and camped the status bar indefinitely. Clear
the visible credits.usage notice when a new turn starts (startMessage), so it shows
until your next prompt then yields. The server latch is unchanged, so it won't
re-nag at the same band — it only re-shows when the band actually changes (climb)
or clears when usage drops below the lowest band. Depletion stays sticky.
* refactor(credits): consolidate the /usage credits block behind nous_credits_lines()
The CLI (_print_nous_credits_block) and the messaging gateway (_handle_usage_command)
each re-implemented the auth-gate + portal fetch + render, and both bypassed the
dev-fixture short-circuit that only the TUI honored — so /usage ignored
HERMES_DEV_CREDITS_FIXTURE on the CLI and in chat. Route both through the shared
agent.account_usage.nous_credits_lines() helper: one fetch/render path, one auth
gate, and the fixture works on every surface (~60 fewer duplicated lines).
The gateway usage test recorded only the last asyncio.to_thread call; /usage now
dispatches both the account fetch and the credits fetch, so it records every call
and matches the account fetch by its provider arg.
* fix(credits): keep the /usage gauge type-safe and log its fail-open path
_is_finite_num is now a TypeGuard[float], so the type checker narrows the gauge
operands (monthly_credits / credits_remaining) and the magnitudes passed to
_fmt_usd through it — no more None-operand warnings on the arithmetic. Add a debug
breadcrumb on the nous_credits_lines portal-fetch fail-open so a dead /usage block
is diagnosable in agent.log without a dev flag.
* fix(credits): harden the header tracker — prod-leak gate, hot-path probe, fire-and-forget seed
- Prod-leak guard: dev fixtures (HERMES_DEV_CREDITS_FIXTURE) now also require
HERMES_DEV_CREDITS, so a stray fixture var can't surface fabricated balances on a
real account. Matches the documented run workflow (both vars set together).
- Hot-path probe: parse_credits_headers checks for the version sentinel header
before allocating a lowercased copy of the response headers — skips that work on
every non-Nous API call. Behaviour-identical and still case-insensitive.
- Fire-and-forget seed: the real portal fetch in seed_credits_at_session_start now
runs in a daemon thread, so a slow/unreachable portal never delays session "ready"
(previously blocked up to 10s). The dev-fixture path stays synchronous; the thread
re-checks idempotency before hydrating (a live header may land first).
- Diagnostics: debug breadcrumbs on the parse and seed fail-open paths so a crashed
parser / dead seed is distinguishable from a legitimate no-headers miss.
Cold-start tests set HERMES_DEV_CREDITS alongside the fixture to match the gate.
* test(tui): fix env-timing in the StatusRule dev-credits assertion
DEV_CREDITS_MODE is read once at module load (config/env), so mutating
process.env.HERMES_DEV_CREDITS inside the test couldn't flip it — the dev-banner
assertion only passed if the env was exported before vitest started, and failed in a
normal run. Move that assertion to a sibling file that mocks config/env with
DEV_CREDITS_MODE: true (scoped, no module-reset / React-identity hazard).
* test(credits): cover the dev-fixture /usage render and usage-band clear-on-prompt
- _snapshot_from_credits_state (the offline /usage renderer) had no direct test:
lock the gauge math, the verbatim *_usd magnitudes, the depletion line and the
fixture marker, plus the no-cap (no gauge) and None-state cases.
- turnController.startMessage had no test for clearing the credits.usage notice on
the next prompt while leaving credits.depleted sticky.
* feat(credits): deliver credit notices over messaging gateways
Bind notice_callback/notice_clear_callback on the per-turn gateway agent
so usage-band / depletion / restored notices reach Telegram/Discord/Slack/
etc. Previously the messaging gateway bound neither callback, so the agent's
_emit_credits_notices early-returned and a chat user crossing a band got
nothing unless they ran /usage manually.
- render_notice_line(): AgentNotice -> single plaintext line (level glyph +
text), plaintext-only so it renders uniformly without per-platform escaping.
Fail-soft on malformed/empty notices.
- Standalone push for every notice (messaging has no persistent status bar):
route through the shared _deliver_platform_notice rail (honors private/
public delivery + thread metadata), scheduled onto the gateway loop via
safe_schedule_threadsafe from the agent's sync worker thread — same pattern
as _status_callback_sync.
- The fired-once latch lives on the cached (reused-in-place) agent and
persists across turns, so a band crosses once -> one push, no per-turn
re-nag. Re-fires only after idle-eviction rebuilds the agent (a reminder).
- Recovery ('Credit access restored') rides the show path (emitted as a
success notice, not a clear). notice_clear_callback is a no-op: a sent
platform message can't be cleanly retracted.
Tests: render glyph/levels/fail-soft + public/private delivery seam through
_deliver_platform_notice + no-adapter no-op.
* fix(credits): don't double the glyph on messaging notices
render_notice_line prepended a per-level glyph, but the notice policy already
bakes the glyph into the text (and the TUI + CLI render it verbatim) — so every
credit notice over messaging came out doubled ("⚠ ⚠ Credits 90% used",
"⛔ ✕ Credit access paused"). Emit the text verbatim instead; drop the now-dead
level→glyph map.
The render tests fed glyph-less text (and the success case only checked
startswith), so the doubling slipped through. Rework them around the verbatim
contract and add an end-to-end regression that runs real evaluate_credits_notices
output through render_notice_line and asserts the line is returned unchanged.
* 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).
* perf(/model): prewarm picker provider-models cache in background
The no-args /model picker calls list_authenticated_providers(), which
fetches each authenticated provider's live /v1/models list serially. On a
cold or stale (>1h TTL) cache that blocks ~1.5s on the user's critical path
the first time /model is opened in a session.
Warm that exact path off-thread during the idle window right after the CLI
banner is shown: a once-per-process daemon thread runs
list_authenticated_providers() to populate provider_models_cache.json for
every authed provider. By the time the user types /model, the picker hits
the warm disk cache (~136ms vs ~1500ms).
Process-level Event guard (mirrors run_agent's _openrouter_prewarm_done)
ensures at most one thread per process; fully exception-isolated so an
offline/no-creds provider can never affect the session.
Replace [{_DIM}] with [dim] in all _restore_session_cwd and
_preload_resumed_session messages that go through _console_print (Rich
Console.print). _DIM is an ANSI escape (\x1b[2;3m) that Rich cannot
parse as a markup tag, causing MarkupError on session resume when the
stored cwd is missing or inaccessible.
Also uses [/dim] closing tag for explicit tag matching.
Fixes#39469
/branch (aka /fork) sessions vanished from /resume and /sessions. Both
surfaces funnel through list_sessions_rich(include_children=False), which
hid any session with a parent_session_id unless identified as a branch via a
heuristic — parent.end_reason == 'branched' AND child.started_at >=
parent.ended_at.
Two ways that heuristic failed:
1. CLI/gateway branches: once the parent was reopened (e.g. resumed) and
re-ended with a different end_reason (tui_shutdown overwriting 'branched'),
the heuristic stopped matching and the branch was hidden permanently.
2. TUI branches (tui_gateway session.branch): the TUI never ends the parent
as 'branched' — it creates the child while the parent is still live — so
the heuristic NEVER matched and TUI branches were hidden from the moment
they were created (this is the macOS desktop app's primary symptom).
Fix: persist a stable '_branched_from' marker in the branch session's
model_config at creation time across ALL THREE branch paths (CLI cli.py,
gateway gateway/run.py, and TUI tui_gateway/server.py), and OR a
json_extract(model_config, '$._branched_from') IS NOT NULL check into the
list_sessions_rich filter. The marker is immutable across the parent's
lifecycle, so the branch stays visible regardless of how/whether the parent
is ended. The legacy end_reason heuristic is kept (OR'd) so pre-existing
branches remain visible. Subagent/compression children (no marker, parent
not 'branched') stay correctly hidden. Fixes#20856.
Approach by liuhao1024 (PR #20864); reimplemented on current main, extended
to the TUI branch path (which the original missed), with regression tests for
the reopen+re-end scenario and the TUI marker persistence.
The classic CLI left its live bottom chrome — the status bar, input box,
and separator rules — frozen in terminal scrollback after exit, on every
exit path (/exit, /quit, Ctrl+C, EOF) and on both Linux and Windows. The
prior erase_when_done=True fix (bf82a7f1c) routes prompt_toolkit's teardown
through renderer.erase(), but that walks back by the renderer's internal
cursor model and does not reliably wipe the chrome in practice — users still
saw a dead status bar + the rest of the session sitting above the resume
summary.
Clear the screen + scrollback directly at the single exit funnel instead.
All exit paths converge on _print_exit_summary() (called from the run-loop
finally block after app.run() returns and prompt_toolkit has restored
terminal modes), so a new _clear_terminal_on_exit() helper runs there before
the summary prints. It writes ESC[3J ESC[2J ESC[H (erase scrollback, erase
screen, home cursor) on a real TTY, no-ops silently when stdout is not a
terminal (pipes/redirects), and falls back to the platform clear command if
the escape write fails. Works on Linux, macOS, and modern Windows terminals
(Terminal/conhost with VT processing, already enabled by prompt_toolkit).
The resume/goodbye summary now prints at a clean top-left with nothing
stranded above it.
Fixes#38252.
Sets erase_when_done=True on the classic CLI's prompt_toolkit Application so the
live bottom chrome (status bar, input box, separator rules) is wiped on exit
instead of frozen into scrollback.
Previously prompt_toolkit's render_as_done teardown repainted the chrome one
final time and left it on screen (ESC[J only erases below the cursor, not the
chrome above), so a dead status bar + empty prompt + rules were stranded
between the conversation transcript and the 'Resume this session' summary, and
stacked with the next session's UI on resume. erase_when_done routes teardown
through renderer.erase() which wipes exactly the managed chrome region; the
conversation transcript prints through patch_stdout into normal scrollback and
is untouched. Applies to every exit path (/exit, /quit, EOF, Ctrl+C).
Fixes#38252.
hermes -c / --resume now reopen a session in its original working
directory. The sessions table already had a cwd column; the classic CLI
just never wrote or read it.
- run_agent._ensure_db_session stamps cwd for local CLI sessions only
(new _launch_cwd_for_session gates out gateway/cron and non-local
terminal backends, where a host cwd is meaningless to restore).
- cli._restore_session_cwd chdir's the process AND retargets TERMINAL_CWD
so the terminal tool, code-exec tool, and relative-path resolution all
land in the restored dir. Called from both resume paths (interactive
run() and the -q single-query path).
- Robust degradation: no-op when no cwd recorded, when already there, or
when the dir is gone (single dim warning, stays put — no crash).
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.
A kanban worker that exhausted its retries purely on a provider rate
limit / quota wall (e.g. opencode-go's 5-hour window) exited with code 1.
The dispatcher counted that as a crash, and with DEFAULT_FAILURE_LIMIT=2
two quota-wall hits permanently blocked the card. Fanning out many
workers against one shared quota made this routine.
Now a rate-limited worker exits with EX_TEMPFAIL (75); the dispatcher
classifies that as a 'rate_limited' exit, releases the task back to
'ready' WITHOUT incrementing consecutive_failures (the breaker can't trip
on a transient throttle), and the respawn guard defers the next attempt
on a cooldown (default 5min, HERMES_KANBAN_RATE_LIMIT_COOLDOWN_SECONDS)
until the quota window clears. Genuine crashes still count and trip the
breaker as before. The 120s Retry-After cap is unchanged — no worker
parks for hours holding a slot.
- conversation_loop.py: surface failure_reason in the exhaustion return
- cli.py: kanban worker picks exit 75 on rate_limit/billing failure
- kanban_db.py: rate_limited exit kind, no-count requeue, cooldown guard
Adopt the cleaner handling from PR #37080: coerce/strip the note and
skip the extra newlines when the underlying message (or text part) is
empty, while keeping the safer fail-open behavior for unknown shapes.
Sending an image to a vision model turns the user message into a list of
OpenAI-style content parts. When a /model or /reload-skills note was queued
for the same turn, the CLI did `note + "\n\n" + agent_message`, crashing the
agent thread with:
TypeError: can only concatenate str (not "list") to str
Repro: `/model gpt-5.5 --provider openai-codex`, then paste+send an image.
Add _prepend_note_to_message(), which folds the note into the first text
part of a content-parts list (or inserts a leading text part for image-only
messages) and keeps the plain-string path unchanged. Used for both the
model-switch and skills-reload notes.
When the TUI exits via Ctrl+C, SIGTERM/SIGHUP, or a crash, prompt_toolkit's
teardown can be bypassed, leaving DEC 1004 (focus reporting) and 1000/1002/1003
(mouse tracking) enabled. The terminal then emits raw ESC[I/ESC[O focus events
and fragmented SGR mouse reports as visible text in whatever runs next in the
same tab.
_run_cleanup() — the once-only cleanup that runs on every catchable exit path
(atexit-registered + called on the normal/EOF/interrupt exit) — now emits
_TERMINAL_INPUT_MODE_RESET_SEQ (the same disable sequence the in-session leak
recovery already uses) as its FIRST step, so the terminal is usable immediately
on Ctrl+C and a later teardown step raising can't skip it.
The reset is gated on a new _tui_input_modes_active flag (set right before
app.run(), cleared once the modes are disabled) so non-TUI one-shot CLI runs —
which share _run_cleanup via atexit — don't emit codes for modes they never
enabled. Writes to sys.stdout when it's the terminal, else falls back to
/dev/tty. SIGKILL is uncatchable and the kanban worker's os._exit(0) bypasses
atexit, but both are non-TTY/non-TUI so there is nothing to reset there.
Adds tests/cli/test_tui_terminal_reset_on_exit.py (9): emits on a TTY when the
TUI ran, no-ops when the TUI never ran, /dev/tty fallback when stdout is
redirected, no-op when neither is available, swallows stdout errors, flag set
and cleared, and wired into _run_cleanup as the first step even when a later
step raises.
Fixes#36823
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Extends the existing /undo command from a single in-memory exchange
removal into a full rewind: back up N user turns (default 1), soft-delete
the truncated rows in SessionDB (active=0, kept for audit, hidden from
re-prompts and search), notify memory providers, and prefill the composer
with the backed-up message text for editing — CLI and TUI.
Reuses the SessionDB rewind primitives, the on_session_switch(rewound=True)
memory hook, and the TUI command.dispatch prefill payload from SaguaroDev's
#21910 work, wired to /undo [N] instead of a separate /rewind picker.
- cli.py: undo_last(n, prefill) — in-memory truncate + SQLite soft-delete
+ agent surgery (system-prompt invalidate, flush-index reset) + memory
notify + editable buffer prefill; /undo dispatch parses optional count;
checkpoint-rollback caller passes prefill=False
- tui_gateway/server.py: command.dispatch undo branch (was rewind) parses
count, picks Nth-from-last user turn, clamps to oldest
- commands.py: /undo gains [N] args_hint
- tests: rename + expand TUI suite (multi-turn, clamp, invalid-count)
- release.py: AUTHOR_MAP entry for SaguaroDev
Co-authored-by: SaguaroDev <74339271+SaguaroDev@users.noreply.github.com>
* feat: better composer etc
* docs: add desktop and dashboard run instructions
* fix(desktop): address security scan findings
* fix(dashboard): resolve @nous-research/ui path under npm workspaces
The sync-assets prebuild step shelled out to 'cp -r
node_modules/@nous-research/ui/dist/fonts ...' with a path relative
to apps/dashboard/. That works only when the dep is installed
locally in the dashboard workspace, but 'npm install' at the repo
root (the documented setup — see apps/desktop/README.md) hoists
shared deps to the root node_modules under npm workspaces. The
relative cp then fails with 'No such file or directory', sync-assets
exits 1, the Vite build aborts, and 'hermes dashboard' surfaces a
generic 'Web UI build failed' message.
Replace the shell one-liner with scripts/sync-assets.cjs, which
walks up from the dashboard directory looking for node_modules/
@nous-research/ui — working in both the hoisted (workspaces) and
co-located (standalone) layouts. Also guards against a missing
dist/fonts or dist/assets with a clearer error pointing at a
rebuild of the UI package rather than silently copying nothing.
* feat(desktop): support connecting to a remote Hermes backend
Add HERMES_DESKTOP_REMOTE_URL and HERMES_DESKTOP_REMOTE_TOKEN env
vars that, when set, short-circuit the local-child spawn in
startHermes() and connect the Electron renderer to an already-
running 'hermes dashboard' server reachable over the network.
Motivating use case: WSL2 users who want to run the Hermes core
(agent loop, tools, filesystem access) inside their WSL
distribution while rendering the Electron GUI on native Windows.
Before this change, the desktop app always spawned a local Python
child on the same host as the renderer, which doesn't cross the
WSL/Windows boundary.
The remote path reuses waitForHermes() as a liveness probe
(/api/status is in the backend's public endpoint allowlist), so
the connection is only returned once the backend is actually
ready. WebSocket URL derivation picks ws:// or wss:// based on
the input scheme. URL validation rejects non-http(s) schemes and
requires both env vars together to avoid a half-configured
connection that would silently fall through to the spawn path.
No behaviour change when the env vars are unset — the default
local-spawn flow is untouched.
Typical usage:
# in WSL2
hermes dashboard --tui --no-open --host 0.0.0.0 --port 9119 --insecure
# on Windows
set HERMES_DESKTOP_REMOTE_URL=http://localhost:9119
set HERMES_DESKTOP_REMOTE_TOKEN=<session token>
set HERMES_DESKTOP_IGNORE_EXISTING=1
(launch Hermes desktop)
* ci(desktop): automate desktop releases
Add GitHub Actions release channels for signed desktop installers and document the stable/nightly download paths.
* feat: file tabs
* refactor(desktop): tighten right-rail tab close API
Promote closeRightRailTab/closeActiveRightRailTab as the single
public entry point. Drops the activeTabRef + handleCloseDocument
indirection in ChatPreviewRail, the unused $rightRailHasContent
atom, and the legacy dismissFilePreviewTarget alias. -70 LOC.
* feat(desktop): polish composer pill toward reference look
Solid foreground-on-background send/voice-conversation circle (black-on-white
in light, white-on-black in dark) anchors the right edge as the primary CTA
instead of the orange theme primary. Bumps the primary control to 2.125rem so
it visually outranks the ghost mic/plus controls. Opens up the surface padding
(0.625rem x / 0.5rem y) so the input row breathes around its controls, and
nudges the corner radius from 20 to 24px for a slightly pill-ier silhouette.
LiquidGlass distortion is preserved.
* feat(desktop): add startup and onboarding flow
Add phase-based desktop boot progress, fresh-install sandbox testing, and first-run provider credential onboarding so packaged installs can start cleanly without manual settings detours.
* fix(desktop): gate prompts on provider setup
Show the desktop provider onboarding flow before prompt submission when no inference provider is configured, preventing fresh installs from falling through to backend credential errors.
* fix(desktop): surface provider onboarding from session warnings
Propagate credential warnings through session runtime info and open desktop onboarding whenever a session reports no usable provider, so unconfigured installs cannot fall through to prompt errors.
* fix(desktop): route gateway provider errors to onboarding
The "No inference provider configured" auth error reaches the renderer through gateway error events, not the prompt.submit promise; the previous patch only caught the latter, so the error toast still surfaced and onboarding never opened.
Also strip credential-shaped env vars from the test:desktop:fresh sandbox so the packaged backend can't see provider keys leaking from the launching shell.
* fix(desktop): use strict runtime check to drive onboarding
setup.status returned True whenever any provider auth state was discoverable, including indirect fallbacks like a gh-CLI Copilot token. That made desktop think the user was set up while the agent's actual resolve_runtime_provider call still raised AuthError, leaving the user with a useless toast and no onboarding.
Add a setup.runtime_check gateway method that runs the same resolver the agent uses on session creation, and switch the desktop onboarding overlay and prompt precheck to use it.
* feat(desktop): OAuth-first onboarding using existing dashboard provider API
Replace the engineer-flavored API key form with a Sign-in-first onboarding overlay that uses the dashboard's existing /api/providers/oauth catalog and PKCE/device-code endpoints (Anthropic, Nous, OpenAI Codex, etc.). API key entry is now a fallback tab with friendly provider names instead of env var prefixes, and the loud raw resolver error is gone in favor of a one-line welcome message.
* fix(desktop): polish onboarding provider list
Reorder OAuth providers so Nous Portal is first, give the segmented Sign in / API key control equal column widths, and replace the engineer-flavored backend names like "Anthropic (Claude API)" / "MiniMax (OAuth)" with friendlier in-app titles. External-CLI providers now show a softer subtitle and an external-link icon instead of a chevron.
* refactor(desktop): split onboarding overlay into store + view
Move the OAuth state machine, runtime check, copy-to-clipboard, and api-key save into store/onboarding.ts (matching the boot.ts pattern), leaving the overlay as a presentation layer that subscribes via useStore. Tabs are now table-driven, child panels read flow from the store instead of prop-drilling, and the polling/PKCE/error/success branches share a small Status atom.
* fix(desktop): external CLI providers + center mode tabs
External-CLI providers (Claude Code, Qwen Code) now open an in-overlay panel with the CLI command, copy button, and an "I've signed in" recheck instead of firing an invisible toast. Center the Sign in / API key tab control so it sits under the heading instead of hugging the left edge.
* fix(desktop): drop onboarding tabs for an inline link, group device-code waiting state
Replace the Sign in / API key tab pair with an "I have an API key" footer link under the OAuth provider list, with a "Back to sign in" affordance inside the API key form. Group the device-code "Waiting for you to authorize..." status next to the Cancel button so the alignment matches the action.
* refactor(desktop): tighten onboarding store + overlay
Drop the dead isOnboardingBusy/BUSY set, factor the catch-fallback dance into safeReq, and share a single reloadAndConnect helper between PKCE submit, device-code success, external recheck, and api-key save.
In the overlay, extract Step / CodeBlock / FlowFooter / CancelBtn / DocsLink atoms so the four sign-in panels share the same chrome instead of repeating it inline. Net effect: fewer literal divs, one place to touch the spacing, and the code-block + footer rows are reusable across future flows.
* fix(desktop): mount onboarding from frame 1 to kill the FOUT
Default onboarding.configured to null (unknown until the runtime check resolves) and have the onboarding overlay render whenever it's not yet confirmed true. The boot overlay now yields to it, so the very first paint is the Welcome card with a "While we get you set up..." progress strip instead of a flash of the chat shell between boot dismiss and onboarding mount.
The picker swaps in cleanly once the gateway opens and the runtime check confirms the user is not configured. Already-configured users see the same prep card briefly while their existing runtime warms up, then the overlay dismisses without touching the chat shell.
* fix(desktop): top-align empty sessions placeholder
The "Start a chat to build your history." empty state used a min-h-35 grid place-items-center container, which floated the text in a tall dead zone. Render it as a flat paragraph that sits right under the section header like the empty pinned state does.
* refactor(desktop): drop dead boot overlay
Onboarding overlay subsumes the boot card now that it mounts from frame 1 and renders boot progress inline. The standalone DesktopBootOverlay is unreachable in every flow (yields whenever onboarding has not confirmed configured, dismisses once it has).
* fix(desktop): hide pinned/recents sections until first session
A fresh sidebar showed the Pinned and Recent chats headers with floating empty-state copy underneath. Drop both sections (and the now-orphan SidebarEmptySessionState) when there are no sessions yet — they reappear after the first chat. Skeletons during initial load are unchanged.
* feat(gui): route embedded TUI through dashboard gateway (#21979)
Inject HERMES_TUI_GATEWAY_URL into dashboard PTY sessions so embedded ui-tui instances attach to the in-process websocket gateway, with coverage for the new env wiring.
* Add desktop remote gateway settings
Make the desktop gateway connection configurable from settings so local remains the default while remote backends can be saved, tested, and applied without environment variables.
* feat(gui): first-class Messaging page + gateway menu redesign
- Add Messaging page to the desktop app with per-platform setup,
status, and inline guidance. Catalog derives from gateway.config
Platform enum + plugin registry, so every messaging adapter the CLI
supports (Telegram, Discord, Slack, Mattermost, Matrix, WhatsApp,
Signal, BlueBubbles, Home Assistant, Email, SMS, DingTalk, Feishu,
WeCom, Weixin, QQ, Yuanbao, API server, Webhooks, plugins) shows up
without per-platform code.
- New REST endpoints: GET /api/messaging/platforms, PUT and POST
/test on the same path. Secrets go through the existing .env
pipeline; enable/disable writes config.yaml.
- Replace gateway statusbar dropdown with a richer panel: status row,
icon-only restart + system-panel actions, recent activity (with
timestamps trimmed in display, full text on hover), platform list.
- Auto-poll the messaging page every 6s (paused when hidden) so
status updates without a manual check.
- Drop Settings / Command Center from the sidebar nav (still
reachable via shortcuts and the titlebar cog).
- Flatten top corners on Messaging/Skills/Artifacts/Chat panes.
- Share new StatusDot component across messaging + gateway menu.
- Fix gateway/config.py so an explicit platforms.<name>.enabled=false
in config.yaml is honored when env tokens are present.
- pb-9 on the chat content area for breathing room above the composer.
* Potential fix for pull request finding 'CodeQL / Clear-text logging of sensitive information'
Co-authored-by: Copilot Autofix powered by AI <62310815+github-advanced-security[bot]@users.noreply.github.com>
* pin electron version
* hide application menu on non-mac systems
* interpret compactPreview for non-string vlaues as JSON or an empty string
* fix(desktop): keep composer contenteditable mounted across stacked toggle
The composer rendered {input} inside two different parent fragments
depending on `stacked`. When auto-expand flipped `stacked` (e.g. the
moment typed text wrapped past two lines), React reconciled the two
branches as different positions and unmounted/remounted the
contenteditable. The fresh mount started empty, so any in-flight
characters — most reliably reproduced by holding a key — were lost.
Replace the conditional with a single CSS Grid whose template-areas
swap on `stacked`. The three children (menu, input, controls) keep
stable identities across the toggle; only their grid placement
changes, which the browser handles without React tearing down the
editor.
* refactor(desktop): align install layout with install.ps1 / install.sh
Make the desktop app's runtime layout match what scripts/install.ps1 and
scripts/install.sh produce, so a desktop-only user and a CLI-only user end
up with the same files in the same places and can share one install.
Layout
- ACTIVE_HERMES_ROOT = HERMES_HOME/hermes-agent (was: process.resourcesPath/hermes-agent, read-only)
- VENV_ROOT = HERMES_HOME/hermes-agent/venv (was: userData/hermes-runtime)
- desktop.log = HERMES_HOME/logs/desktop.log (was: userData/desktop.log)
- HERMES_HOME default: %LOCALAPPDATA%\hermes on Windows, ~/.hermes elsewhere
The packaged .app/.exe still ships a read-only payload at
process.resourcesPath/hermes-agent (FACTORY_HERMES_ROOT). On first launch
or after an installer-driven upgrade we sync factory -> active, then
provision the venv and run pip install -e . against the active root.
Key behaviors
- Pin HERMES_HOME in the spawned Python's env so get_hermes_home() resolves
to the same path resolveHermesHome() picked. Without this, Python falls
back to ~/.hermes on every platform - fine on mac/linux, a split-state
bug on Windows where our default is %LOCALAPPDATA%\hermes.
- Detect developer installs by .git presence at ACTIVE; never overwrite
a user's checkout via factory sync.
- Marker at ACTIVE/.hermes-desktop-runtime.json (schema v4) tracks
pyproject hash + factory version + runtime schema version. depsFresh
fast-paths when nothing changed.
- Dev (npm run dev) prefers SOURCE_REPO_ROOT over ACTIVE so devs run
their local edits, not whatever's under HERMES_HOME.
- Better error messages distinguish "no payload" from "no Python".
- Preserve a legacy ~/.hermes on Windows when no %LOCALAPPDATA%\hermes
exists, so users with prior pip/manual installs aren't orphaned.
pyproject.toml
- Promote fastapi, uvicorn[standard], ptyprocess (non-Windows), and
pywinpty (Windows) to main dependencies. The dashboard backend
(hermes dashboard) needs them at runtime; the previous lazy-import
fallback was a footgun for fresh installs.
- Empty the [pty] optional-extra; kept as a no-op back-compat alias for
any existing pip install hermes-agent[pty] invocations.
Drops the hardcoded BUNDLED_RUNTIME_REQUIREMENTS list in main.cjs - the
desktop now installs whatever pyproject.toml says, single source of truth.
Files
- apps/desktop/electron/main.cjs: runtime layout, HERMES_HOME pin,
factory->active sync, marker v4
- apps/desktop/scripts/test-desktop.mjs: track new venv location
- apps/desktop/README.md: new Setup, Runtime Bootstrap, and
Debugging sections
- pyproject.toml: fastapi/uvicorn/pty backends in main
dependencies; [pty] extra emptied
Tested locally on Windows: npm run dev boots cleanly, sessions land at
the new location, type-check + lint + test:desktop:platforms all pass.
Verified end-to-end on a fresh Win11 VM via dist:win installer.
Known gaps (filed as follow-ups, not in this PR):
- Skills not seeded on packaged installs (sync_skills only runs in
cmd_chat, not cmd_dashboard). Need to move to shared pre-dispatch.
- Git Bash not bundled or detected; agent's terminal tool errors out
with a useful message but desktop bootstrapper should pre-flight it.
- install.ps1 / install.sh should be decomposed into composable phase
libraries so the desktop bootstrapper can reuse them as a single
source of truth across all install surfaces.
* feat(desktop): theme polish, prose chat typography, composer chrome
- DS tokens/midground, Backdrop, scoped scrollbars, typography plugin + prose
- Composer liquid/radius utilities, thread font parity, tool/thinking cues
- File tree label scale, preview flex, thread retry loading + streaming tests
* feat(desktop): NSIS prereq detection page + auto-install via winget
The packaged Windows installer now detects Python 3.11+ and Git for Windows
at install time and offers to install missing prereqs via winget. Mirrors
the prereq logic scripts/install.ps1 already runs for CLI installs, so
desktop installer users get the same out-of-the-box experience as
install.ps1 users.
Why
- Hermes' terminal tool calls bash.exe directly (tools/environments/
local.py); on Windows that's Git Bash from Git for Windows. Without it,
the agent fails on the first terminal() call.
- Hermes' Python runtime needs 3.11+. Without it, the desktop bootstrapper
errors out at venv creation.
- Both gaps surfaced on a fresh Windows 11 VM smoke test: VM had Python
pre-installed but no Git, so the agent's first terminal call failed
with "Git Bash isn't installed."
- install.ps1 has had Install-Git + Install-Uv functions for ages. The
desktop installer was the asymmetric outlier.
How — NSIS prereq page
- New file: apps/desktop/installer/prereq-check.nsh (plugged into
electron-builder via build.nsis.include)
- Real Wizard page using nsDialogs, inserted via customPageAfterChangeDir
hook (between the Directory page and InstFiles).
- Group boxes for Python and Git, each showing detection status.
- Pre-checked install checkboxes when winget is available.
- Auto-skips silently if both prereqs are already installed.
- Falls back to manual download URLs when winget itself is missing.
- Detection:
- Python: probes `py -3.11`/`-3.12`/`-3.13`/`-3.14` via the Python
launcher. Microsoft Store "Python stub" (no py.exe) is correctly
classified as not-installed.
- Git: `where git`.
- winget: `where winget` (Win10 1809+ / Win11 with App Installer).
- Install execution (in customInstall macro):
- Python: nsExec::ExecToLog with `--scope user --silent`. Per-user
install, no UAC prompt, output streams to install log.
- Git: ExecShellWait via Windows ShellExecute. Critical because Git
always installs per-machine and triggers UAC; ShellExecute preserves
the foreground focus chain across non-elevated → elevated process
spawns, so UAC actually comes to the foreground. nsExec::ExecToLog
breaks the chain because winget runs hidden.
- Both pass `--disable-interactivity --accept-package-agreements
--accept-source-agreements` to suppress winget's own dialogs.
- Verification: probes Git's standard install locations via FileExists
rather than `where git`. NSIS's process inherits PATH at startup, so
a freshly-installed Git won't be visible to `where` until restart.
- Silent installs (/S) skip the prompts; managed deploys handle prereqs
out-of-band via Group Policy / Intune.
How — Electron-side safety net
- New findGitBash() in main.cjs, parallel to findSystemPython(). Probes
the same locations as tools/environments/local.py:_find_bash() so a
positive result here means the agent's terminal tool will work.
- ensureRuntime now throws a clear, actionable error on Windows when Git
Bash isn't found, matching the existing "Python 3.11+ is required"
error path.
- Catches users the NSIS page doesn't: .msi installer users (NSIS prereq
page doesn't run for MSI), `npm run dev` users, manual installers,
anyone who unchecked the install boxes on the NSIS prereq page.
- All gated on `IS_WINDOWS`; macOS / Linux unaffected.
NSIS build issue (resolved)
- electron-builder defaults to `-WX` (warnings as errors). NSIS optimizer
emits "warning 6010: function not referenced" for our page functions
because Page custom directives don't count as references in its
static-analysis pass. The functions ARE called at runtime when NSIS
invokes the page; the optimizer just can't see it statically.
- Set `build.nsis.warningsAsErrors=false` in package.json so this
spurious warning doesn't fail the build. (Documented option from
electron-builder's nsisOptions.)
Out of scope (filed for future work)
- MSI prereq detection: Windows Installer custom actions are a different
mechanism. Enterprise deploys typically handle prereqs via GP/Intune.
- Bundle PortableGit + python-build-standalone in extraResources for
zero-network installs. ~80MB increase.
- Mac / Linux GUI prereq flows (different installer formats; Xcode CLT
covers most macOS prereqs already; Linux is per-distro hard).
Files
- apps/desktop/installer/prereq-check.nsh (new, ~290 lines NSIS)
- apps/desktop/package.json (build.nsis.include +
warningsAsErrors)
- apps/desktop/electron/main.cjs (findGitBash + preflight)
- apps/desktop/README.md (Runtime prerequisites
section)
Cross-platform impact
- macOS / Linux builds (dist:mac, dist:mac:dmg, dist:mac:zip): nsis
config is ignored entirely; .nsh is dormant.
- npm run dev: .nsh dormant; main.cjs preflight gated on IS_WINDOWS.
- scripts/install.ps1, scripts/install.sh: no reference to any new
files; CLI install paths untouched.
- Hermes CLI / dashboard / gateway: no reference; runtime untouched.
- All checks: node --check on main.cjs and test-desktop.mjs pass;
npm run test:desktop:platforms 4/4 passing; node --test green.
Tested
- npm run dist:win produces signed .exe and .msi without errors.
- Fresh Win11 VM (Python pre-installed, no Git): prereq page renders,
Python check shows detected, Git checkbox pre-checked. Click Next →
Git installs via winget with UAC prompt in foreground.
- After install completes, Hermes launches and the agent's terminal
tool can run bash commands. Verified Git Bash is detected at
`C:\Program Files\Git\bin\bash.exe` by ensureRuntime's preflight.
* feat: theme changes, composer tweaks, in app update ux, finesse
* fix(cli): seed bundled skills on dashboard + gateway entrypoints
`sync_skills(quiet=True)` was only being called from inside `cmd_chat`,
which meant `hermes dashboard` (the desktop GUI's backend) and `hermes
gateway` (Telegram/Discord/Slack/etc daemons) never seeded the bundled
skill library into ~/.hermes/skills/.
This surfaced as "No skills found" in the desktop GUI's skills panel on
fresh installs, despite the agent having access to the full bundled
library when invoked via `hermes chat`. scripts/install.ps1 worked
around it by running skills_sync.py as part of Copy-ConfigTemplates,
but that's not part of the desktop installer's bootstrap chain.
Fix
- Extract the skills-sync block from cmd_chat into a module-level
`_sync_bundled_skills_quietly()` helper.
- Call the helper from cmd_chat (preserving existing behavior),
cmd_dashboard (after the --status/--stop early-return paths and
fastapi import check, so we don't run skills_sync on management
commands or when deps aren't installed), and cmd_gateway.
Why these three entrypoints
- cmd_chat: the user's primary CLI entrypoint
- cmd_dashboard: the desktop GUI's backend; this is what `hermes
dashboard --tui` invokes when the desktop bootstrapper spawns Hermes
- cmd_gateway: long-running daemons where the user expects the agent
to have full skill access
Other entrypoints (cmd_config, cmd_doctor, cmd_login, cmd_status,
etc.) are management commands that don't need skill discovery and were
never running skills_sync in the first place — leaving them alone.
Idempotence
- tools/skills_sync.py is manifest-based: skipped skills cost
milliseconds. Calling it from multiple entrypoints adds no real
cost, and users running `hermes chat` then `hermes dashboard` get
two fast no-ops on the second call.
Failure handling
- Helper wraps skills_sync in try/except. Skills are an enhancement,
not a hard dependency — Hermes runs fine with an empty skills/ dir.
Files
- hermes_cli/main.py:
+ new helper `_sync_bundled_skills_quietly()` at module level
+ cmd_chat: replace inline block with helper call
+ cmd_dashboard: add helper call after fastapi import succeeds
+ cmd_gateway: add helper call before delegating to gateway_command
* feat(desktop): hoisted todo widget, JSON tool summaries, history grouping & timer fixes
- Hoist todo to first-class widget (shadcn checkboxes, brand colors, no
tool-accordion). Header derives label from active task; non-active rows fade.
- Replace raw JSON dumps with structured key/value summaries via
formatToolResultSummary; nested error extraction for clearer failures.
- Fix loaded-session grouping: stitch interleaved assistant/tool iterations
into one bubble instead of orphaned synthetic messages.
- Stable tool/thinking timers via keyed registry so unmount/scroll doesn't
reset elapsed counts; gate "running" on real live thread state.
- Reorganize chat-only assistant-ui components under components/chat/.
* fix(desktop): address CodeQL alerts on PR #20059
- settings/helpers.ts: harden setNested against prototype pollution.
POLLUTING_PATH_PARTS check is now applied at every assignment site
(loop + leaf) and uses Object.defineProperty so CodeQL can see the
guard inline rather than via a helper function call.
- lib/markdown-preprocess.ts: rebuild the dangling-fence close regex
from a fence-char + length instead of marker.replace(...). The marker
is captured by `(`{3,}|~{3,})` so it can only be backticks or tildes,
but CodeQL was tracing tainted input text into the RegExp source and
flagging hostname dots from input as part of the pattern (false
positive js/incomplete-hostname-regexp on the test fixture URLs).
Reconstructing from a literal char breaks the dataflow.
- scripts/notarize-artifact.cjs: drop args from the run() rejection
message. Args carry --key-id / --issuer / key file path; the existing
outer catch already squashes errors to a generic line, but CodeQL was
flagging the args.join(' ') as clear-text logging of APPLE_API_KEY_ID.
Composer DOM-text-as-HTML alerts (composer/index.tsx:379, :547) are
already addressed in 4dd9732a9 — innerHTML assignment was replaced with
renderComposerContents which builds DOM via replaceChildren / append
text nodes (no HTML interpretation).
* fix(desktop): inline prototype-pollution guard so CodeQL sees it
CodeQL's dataflow doesn't follow the helper-function guard inside
`safeSet`, so it kept flagging Object.defineProperty as prototype-
polluting. Inline the literal `__proto__`/`constructor`/`prototype`
check at the assignment site to break the dataflow.
Behavior unchanged — same set of disallowed keys, same throw.
* feat(ui-tui): resolve links to readable page titles
Mirror desktop pretty-link behavior in the TUI by resolving HTTP links to page titles with shared caching and safe fetch filters, plus slug-based fallbacks so chat links stay readable even when title fetch fails.
* fix(desktop): drop RegExp from dangling-fence close detection
Previous attempt tried to break the dataflow by reconstructing the
close-fence regex from a literal char + marker.length, but CodeQL still
traced marker.length back to input and kept flagging the test-fixture
URLs as hostname-regex sources (js/incomplete-hostname-regexp).
Replace `new RegExp(...)` + `closeRe.test(body)` with a string-only
hasCloseFenceLine() helper that splits on '\n' and uses ===. No regex
on this path now, so input data can no longer reach a RegExp source.
Behavior preserved: matches lines that are (whitespace + marker +
whitespace), which is what the original `\n[ \t]*${marker}[ \t]*(?=\n|$)`
matched. All 12 markdown-text tests still pass.
* fix(process-registry): suppress windows-footgun false positive on guarded killpg
Keep the existing POSIX-only process-group teardown path, but make the
signal selection explicit via getattr and add an inline windows-footgun
suppression marker on the guarded os.killpg line so the Windows footgun
check no longer blocks CI on this intentionally platform-gated code.
* feat(desktop): reconcile live tool events, polish thread chrome, harden boot
- chat-messages: match tool rows by overlapping query/context/preview values
so preview-first `tool.progress` rows reliably adopt later stable-id
`tool.start` payloads instead of spawning ghost rows or mis-merging
parallel same-name calls; preserve prior args/result across phases.
- tui_gateway: emit full args + parsed result on `tool.start` / `tool.complete`,
drop redundant `tool.started` re-emit from `tool.progress`.
- electron/main: prefer SOURCE_REPO_ROOT before PATH `hermes` in dev so
local backend edits actually run; split hardening helpers into
`electron/hardening.cjs` with tests.
- thread/tool UI: one-shot enter animation keyed by stable ids, braille
spinner for running rows, Cursor-like disclosure rows, drill-down +
duration/count formatting via new tool-fallback-model.
- composer: extract `text-utils`, drop liquid-glass overrides.
- right-rail: split preview-pane into preview-console / preview-file.
- runtime: incremental external-store runtime + runtime-readiness gate;
onboarding store + tests; route-resume hook test.
- regression tests for live tool reconciliation (parallel tools, id-less
progress, preview-first rows, structured args/results).
* feat(desktop): add ripgrep to NSIS prereq page + polish layout
Add ripgrep as a third (recommended) prereq alongside Python and Git in
the NSIS prereq detection page, and clean up the page layout based on
on-VM testing.
Why ripgrep
- Hermes' search_files tool calls `rg` directly for content + filename
search (tools/file_operations.py:1382). Falls back to grep/find from
Git Bash when missing — works but slower and noisier (no .gitignore
awareness).
- ~5MB winget install via `BurntSushi.ripgrep.MSVC --scope user` — no
UAC prompt, parallel to how Python installs.
- scripts/install.ps1 already installs ripgrep as part of
Install-SystemPackages; this brings the desktop installer to parity.
Why "recommended" not "required"
- Python and Git are hard requirements: without them the agent runtime
or terminal tool refuses to start. The bootstrapper preflight throws.
- ripgrep is a performance enhancement: missing it just means slower
searches. Page wording reflects this; failure to install is logged
but doesn't show a MessageBox or block.
Layout polish (response to on-VM screenshot review)
- Wizard header now correctly reads "System Requirements" instead of
the leftover "Choose Install Location" from the previous page. Set
via `GetDlgItem $HWNDPARENT 1037/1038` + WM_SETTEXT — the standard
NSIS pattern for overriding the page header on a custom Page.
- Removed redundant in-body title + verbose intro paragraph; the
wizard header IS the title now. Body has one short intro line.
- Group boxes tightened to 26u with content positioned just below the
groupbox title (not top-anchored status + bottom-anchored checkbox
with empty space in the middle). All three panels + footer fit
comfortably in 126u, well under the 140u page limit.
- Checkbox labels simplified: dropped "(per-user, no admin prompt)"
and "(administrator approval required)" suffixes. The footer note
still calls out UAC for Git when relevant.
- Footer text trimmed to fit cleanly without clipping.
Install order (in customInstall macro)
- Python → ripgrep → Git
- Python and ripgrep are silent and run first; Git's UAC prompt comes
last so the user's approval interaction isn't interrupted by silent
activity afterwards.
Skip behavior unchanged
- All three detected → page auto-skips via Abort
- Silent install (/S) → customInstall winget block skips
- User unchecks all → page advances without running winget
Files
- apps/desktop/installer/prereq-check.nsh: ripgrep detection block,
ripgrep page panel + checkbox, ripgrep customInstall block,
GetDlgItem header override, layout reflow
- apps/desktop/README.md: Runtime prerequisites section updated to
list ripgrep as recommended, with manual winget command
* feat(desktop): add model-confirmation step to onboarding
After OAuth/API-key login completes, onboarding now shows a confirmation
card with the curated default model and a Change button before dropping
the user into chat. Closes the gap where the desktop's `model.default`
was empty after first launch and the agent had to fall back to whatever
heuristic happened to fire — leaving users wondering "why am I getting
sonnet-4 when I logged into Nous Portal?"
Why
- Desktop onboarding only persisted credentials, never `model.default`.
The CLI's `hermes model` command pairs provider + model selection,
but the desktop's onboarding skipped the model step entirely.
- Result: users saw whichever model the agent's auto-fallback picked,
unpredictably and undocumented.
- For the BUILD demo we want users to land on the model they expect
for their provider, with a clear "this is what you're getting" UI
and a one-click path to change it before chatting.
How
- New `confirming_model` flow status carries the just-authenticated
provider slug, current default model, label, and a saving flag.
- `completeWithModelConfirm()` runs after credentials succeed: reloads
env, verifies runtime, fetches /api/model/options to find the curated
first-model for the provider, persists it via /api/model/set, then
transitions into `confirming_model`.
- If anything fails (no providers returned, network error), falls
through to the previous behaviour — onboarding completes without
the confirm step. Polish, not a hard requirement.
- All four credential paths (device_code OAuth, PKCE OAuth, external
CLI flow, API key) now use completeWithModelConfirm instead of
reloadAndConnect.
UI
- `ConfirmingModelPanel` shows: green "<provider> connected" banner,
card with "Default model: <name>" + Change button, and a "Start
chatting" CTA that finalises onboarding.
- Reuses the existing `ModelPickerDialog` (the same picker available
from the chat shell) for the change-model UX. Search, filtering,
multi-provider listing — all already built.
- Stacking: ModelPickerDialog defaults to z-130, which renders UNDER
the onboarding overlay (z-1300) and breaks pointer events. Added
optional `contentClassName` prop to ModelPickerDialog so callers
can override; onboarding passes `z-[1310]`.
Provider-slug matching
- For OAuth flows: pass `provider.id` directly as the preferred slug.
- For API-key flows: `OPENROUTER_API_KEY` → "openrouter" via env-key
prefix strip. Also includes the user-visible label as a fallback
candidate.
- fetchProviderDefaultModel falls back to the first authenticated
provider in the response if no preferred slug matches — so even a
miss still surfaces a reasonable default.
Files
- apps/desktop/src/store/onboarding.ts:
+ new `confirming_model` flow variant
+ fetchProviderDefaultModel + completeWithModelConfirm helpers
+ setOnboardingModel (optimistic update + revert on failure)
+ confirmOnboardingModel (finalises onboarding from the card)
- reloadAndConnect (replaced; the four call sites now go through
completeWithModelConfirm)
- apps/desktop/src/components/desktop-onboarding-overlay.tsx:
+ ConfirmingModelPanel component
+ new branch in FlowPanel for status `confirming_model`
+ ModelPickerDialog usage with z-[1310] content class
- apps/desktop/src/components/model-picker.tsx:
+ optional `contentClassName` prop on ModelPickerDialog so the
dialog can be stacked on top of other fixed overlays
Tested
- `npm run type-check` passes
- `npx eslint` clean on touched files
- Live test in `npm run dev`: cleared onboarding cache, walked
through Nous device-code flow, saw confirm card with curated
default, clicked Change → ModelPickerDialog rendered above the
onboarding overlay with working pointer events, picked a different
model, "Start chatting" persisted to ~/.hermes/config.yaml.
* fix(desktop): suppress generic provider warning in onboarding
Hide the red setup notice when the message is the generic missing-provider guidance, since onboarding already presents provider auth actions. Centralize provider-setup matching across desktop hooks and add coverage for the matcher.
* fix(desktop): add 2u clearance below prereq checkboxes
Group box bottom border was clipping the checkboxes by 1-2px.
Bumped each box height 26u→30u; checkboxes now sit 2u above the bottom border.
* fix(nix): refresh dashboard lockfile hash
Update the web npm deps hash in nix/web.nix to match the committed apps/dashboard/package-lock.json so bb/gui passes the nix lockfile check.
* fix(desktop): install TUI deps in release workflow
Ensure desktop release builds install the standalone ui-tui package before bundling the TUI payload.
* fix(desktop): run release builder from app package
Invoke the desktop builder through the package script so electron-builder uses apps/desktop/package.json.
* fix(desktop): expand release artifact names safely
Build desktop artifact names from workflow version/channel while preserving electron-builder platform macros.
* fix(desktop): use package artifact naming in release workflow
Let electron-builder's desktop package config provide platform-specific artifact extensions while the workflow injects the release version/channel metadata.
* fix(nix): fetch dashboard npm deps from package root
Point the dashboard npm dependency fetch at apps/dashboard so Nix can find the package lockfile after the dashboard move.
* fix(nix): build dashboard from package directory
Set the web package source root to apps/dashboard so npm patch/build phases run beside the dashboard lockfile while keeping apps/shared available as a sibling.
* feat(desktop): render LaTeX math via KaTeX after streaming completes
Add @streamdown/math plugin to the chat markdown renderer.
Inline ($x^2$) and block ($$...$$) math both supported with
singleDollarTextMath enabled. Plugin is gated to non-streaming state
to match the existing pattern for syntax highlighting — math renders
when the message completes, avoiding KaTeX re-render churn during
streaming. KaTeX CSS is imported in styles.css; ~30KB CSS + ~430KB
JS added to the bundle. Smoothness improvements during streaming
deferred to a follow-up.
* perf(desktop): memoize KaTeX renders so math streams without re-rendering
Wrap rehype-katex with a per-equation LRU cache (keyed by
displayMode + source text) and re-enable math during streaming.
Stock @streamdown/math runs rehype-katex on every markdown commit,
so each new token re-katexes every equation in the message. For
math-heavy responses (an equation derived step-by-step) that's
hundreds of ms of wasted work per token and the streaming UI
chokes. With memoization, each equation pays katex.renderToString
exactly once; subsequent tokens re-walk the tree but hit cache for
unchanged equations.
The wrapper mirrors rehype-katex's semantics exactly: same class
detection (language-math, math-inline, math-display), same
<pre>-walk-up for fenced math blocks, same parent.children.splice
replacement, same SKIP traversal, same strict-then-lenient render
strategy with VFile message reporting.
Cached children are structuredCloned on each splice so downstream
rehype plugins or toJsxRuntime can't mutate the cache.
* fix(desktop): declare katex-memo deps directly + drop per-app lockfile
katex-memo.ts (added in 112cad59b) imports hast-util-from-html-isomorphic,
hast-util-to-text, remark-math, katex, and unist-util-visit-parents but
those were never added to apps/desktop/package.json. They were silently
resolving via @streamdown/math at the workspace root, which broke the
moment `npm i --prefix apps/desktop` ran with the per-workspace lockfile
because that install only consults apps/desktop/package.json. Add them
as direct deps, plus unified/vfile/@types/hast for the type imports.
Also delete apps/desktop/package-lock.json — root package.json declares
workspaces: ["apps/*"], so npm manages all lockfile state at the root.
The stale per-app lockfile is what made `npm i --prefix apps/desktop`
diverge from the workspace install in the first place and left an empty
apps/desktop/node_modules/@assistant-ui/ stub that Vite's dep optimizer
then tried (and failed) to open at @assistant-ui/core/dist/internal.js.
* feat(desktop): disable Backdrop noise overlay by default
The noise overlay defaulted to on, which adds a busy speckle layer over
the whole window for every new user. Flip the Leva default to off; the
toggle stays in Backdrop / Noise for anyone who wants it back.
* fix(desktop): polish LaTeX rendering — currency, code blocks, brackets
Five distinct bugs surfaced from a math-heavy stress test:
1. Adjacent code fences glued together. scrubBacktickNoise's
second-pass regex /``\s*``/g matched the LAST 2 backticks of
one fence + whitespace + FIRST 2 backticks of the next, collapsing
two blocks into one. Fixed with lookbehind/lookahead so we only
match exactly 2 backticks not part of a longer run.
2. Whitespace eaten between fences and following content.
stripPreviewTargets internally calls .trim() which strips leading/
trailing whitespace from each split-segment. For segments between
two fences this collapsed \n\n to '', gluing fence close to next
block. Fixed by capturing leading/trailing whitespace at the call
site and restoring it after the transform.
3. Currency dollar signs eaten as math. With singleDollarTextMath:true
remark-math greedy-matched any pair of $, so '$5 ... $10' became
one inline math span. Added escapeCurrencyDollars to escape $<digit>
patterns to \$<digit> in prose segments (not in code). Trade-off:
math expressions starting with a digit (rare — '$5x = 10$') get
escaped too. Mirrors the convention in ChatGPT/Claude's UIs.
4. \(...\) and \[...\] LaTeX brackets unsupported. Models often
emit these instead of $...$ / $$...$$. Added
rewriteLatexBracketDelimiters preprocessor pass.
5. ```latex / ```tex blocks were being routed to KaTeX via a
rewrite to ```math. Aligns with GitHub markdown convention:
```math = render as math; ```latex / ```tex = LaTeX/TeX
source code (syntax highlighted, not rendered). Conflating them
broke teaching/showing-source use cases. MATH_FENCE_LANGUAGES
pruned to {'math'} only.
Also flipped parseIncompleteMarkdown to true (was !isStreaming) so
the math parser can't see $ inside streaming-but-not-yet-closed code
fences. Shiki was already deferred via defer={isStreaming} so this
doesn't introduce new tokenization cost.
Test: 18/18 existing tests still pass; one test updated to expect
escaped \$ in currency-prose-with-URL case.
* fix(desktop): detect Python via registry/filesystem; pin to 3.11–3.13
Two related fixes for Python detection on Windows:
1. py.exe (Python launcher) is missing from per-user installs that
didn't check the launcher option, so 'py -3.X --version' alone
misses real Python installs. User-reported case: clean Win11 +
official Python.org 3.14 install -> 'where py' returned nothing,
our installer offered to install Python again. Both NSIS prereq
page and main.cjs now probe in this order:
1. py.exe launcher (when present)
2. PEP 514 registry: HKLM/HKCU\SOFTWARE\Python\PythonCore\<v>\InstallPath
3. Filesystem: %ProgramFiles%\Python<v>, %LocalAppData%\Programs\Python\Python<v>
Crucially, we never fall back to running 'python.exe' from PATH
on Windows — the WindowsApps stub at %LOCALAPPDATA%\Microsoft\
WindowsApps\python.exe is a redirector that opens the Microsoft
Store window if no Store Python is installed. Triggering that
during boot would be terrible UX. Registry/filesystem probes
never execute the binary.
2. Drop 3.14 from the supported version set. Several Hermes deps
(notably pywinpty, which carries Rust crates like
windows_x86_64_msvc) don't yet publish 3.14 wheels. With wheels
missing, 'pip install -e .' falls back to building from sdist,
which needs a Rust toolchain — users see 'could not compile
windows_x86_64_msvc build script' on first run. install.ps1
sidesteps this by pinning to 3.11 via uv; the desktop installer
doesn't yet have the same uv-managed-Python pathway, so for now
we accept 3.11/3.12/3.13 and tell winget to install 3.11 if
none of those are present. Revisit when the wheel ecosystem
catches up to 3.14 (~early 2026).
* feat(desktop): Cron, Profiles, usage analytics, and titlebar fixes
- Add Cron and Profiles sidebar routes with full CRUD-style flows and API wiring.
- Extend Command Center with auxiliary task overrides and a Usage panel (7d/30d/90d).
- Fix titlebar geometry for WSL/Windows (native overlay width, tool spacing).
- Remove stray merge conflict markers from pyproject.toml optional deps.
Co-authored-by: Cursor <cursoragent@cursor.com>
* fix(title-bar): position sidebar toggle button
* feat(desktop): composer queue — queue many, edit/delete/cancel-edit, Cursor-style
Press Enter while busy with a draft to queue it; with no draft to interrupt
and send the next queued turn. Auto-drains one queued turn each time the
session settles, same as Cursor. Queue persists across reloads so an
interrupted-and-queued turn isn't lost on refresh.
Each queued row supports edit-in-composer (with explicit Save/Cancel),
send-now (↑), and delete. Drain skips only the entry currently being
edited so the rest of the queue keeps flowing.
Queue dequeue is transactional — an entry only leaves the queue after
`prompt.submit` is accepted, so a rejected submit doesn't drop the turn.
Also shrinks the `[interrupted]` marker to a muted one-liner and drops
its assistant footer so it stops looking like a real reply.
* fix(desktop): handle empty usage analytics totals
Co-authored-by: Cursor <cursoragent@cursor.com>
* fix(desktop): address PR review titlebar and usage races
Co-authored-by: Cursor <cursoragent@cursor.com>
* feat(desktop): add MCP settings and live subagent tree
Surface configured MCP servers in Settings with JSON edit/save and a gateway-backed reload action so users can manage tool servers without falling back to slash commands.
Track live subagent gateway events in a desktop store, show active subagent counts in the Agents statusbar item, and replace the Agents overlay stub with a live spawn tree for the active session.
* fix(desktop): move power-user views out of sidebar
Keep Cron and Profiles available through lower-prominence chrome entry points so the workspace sidebar stays focused on core chat navigation.
Co-authored-by: Cursor <cursoragent@cursor.com>
* refactor(desktop): subagent overlay reads like a live transcript, not a dashboard
Strip the card chrome and rewire /agents to feel like peeking into the
child agent's stream:
- subagents store: single `stream` of typed entries (thinking/tool/progress/
summary) replaces the parallel notes/thinking/tools arrays. Drop unused
fields (toolsets, depth, apiCalls, reasoningTokens, sessionId).
- agents view: no OverlayCards, no boxed stream, no per-row borders. Goal +
status pill + indented stream lines, full row width.
- Group root spawns into "Delegation N" sections when batch shape + spawn
time match — hides task-index interleaving and makes hierarchy obvious.
- Sort tree by spawn time, then task_index. Step indicator is one colored
pill (primary while running, emerald when done) inside the row, not a
trailing pill that wrapped under the chevron.
- Tree picks up `subagent.start` (not only `spawn_requested`) and prunes
delegate-tool fallback rows once native subagent events land for the
session — fixes duplicate "Delegated task" rows alongside the real ones.
* feat(desktop): Esc closes every OverlayView-based overlay
Lift the keyboard handler into the shared OverlayView so Agents, Settings,
Command Center — and anything we build on top of it later — all dismiss on
Esc by default. Nested Radix dialogs stop propagation themselves, so a
modal opened inside an overlay (e.g. model picker inside Settings) still
closes the modal first, not the overlay underneath.
Drop the now-redundant Esc handlers in Settings (kept Cmd/Ctrl+P) and
Command Center.
* fix(desktop): drop numbered step pill on subagent rows
The pill was getting clipped at the overlay edge anyway. Just use the
status glyph (●/✓/✗/■/○) — the delegation header already conveys
"3 workers, 3 active", and order in the list implies which step you're
looking at.
* fix(desktop): drop noisy "returned N items / empty object" stub strings
When a tool returns nothing useful, the row should be silent — the title
("Search Files", etc.) already tells the user what happened. Counting the
fields in an opaque payload is engineer-noise.
`formatToolResultSummary` and `minimalValueSummary` now return '' for
empty arrays / records / unrecognized values; tool-fallback already hides
the detail section when its body is empty.
* refactor(desktop): subagent rows borrow chat tool patterns (fade-in, lucide glyphs, shimmer)
Pull the agents view closer to how chat tool blocks render:
- statusGlyph() returns the same lucide BrailleSpinner / CheckCircle2 /
AlertCircle vocabulary as tool-fallback's statusGlyph
- Stream lines fade-in via useEnterAnimation (one-shot WAAPI), keyed per
entry so streamed deltas settle in instead of popping
- Subagent rows fade in too, and pick up the existing data-slot=tool-block
spacing rules between blocks
- Active stream line trails a BrailleSpinner instead of a hand-rolled
pulsing rectangle
- Goal text drops FadeText (which forces nowrap); keep FadeText only for
the single-line meta subtitle
- Running rows shimmer the title — same affordance the chat thinking row
uses
* refactor(desktop): make /agents subagent-only, drop sidebar + dead sections
Activity rail and History stub were both noise. Strip the split layout,
sidebar, route enum, and the rail/stub helpers — the overlay is now just
the spawn tree, centered in a max-w-3xl column so it stops claiming the
whole screen for one section's worth of content.
* feat: update cron modals
* Add dedicated GUI log stream for dashboard debugging.
Capture dashboard and PTY websocket lifecycle failures in gui.log and expose it via hermes logs.
* Improve desktop runtime UX by surfacing inference readiness in gateway status and hardening WSL link opening.
This also stabilizes markdown code/table block spacing and adds root-install guards so desktop dev runs use a healthy workspace dependency tree.
* Log detailed GUI websocket failure metadata.
Capture richer reject/disconnect/send/parse context for dashboard gateway websocket flows so GUI connection failures are diagnosable from logs.
* Default dashboard startup logging to GUI mode.
Detect the dashboard subcommand during early CLI bootstrap so gui.log is attached from process start and GUI startup failures are always captured.
* Clean up gateway status conditionals and logging bootstrap mode detection.
Simplify nested dashboard gateway status branches for readability and use a concise first-subcommand check when selecting early GUI logging mode.
* add logging to nsis installer
* feat: glass ui pass
* fix(desktop): persist inline assistant errors across hydrate/resume
- Detect provider failure text arriving via message.complete
(HTTP 4xx, "API call failed after N retries", Provider/Gateway
error: ...) and persist as an inline assistant error instead of
regular completion text, blocking the hydrate that was wiping it.
- preserveLocalAssistantErrors: merge by id so same-id hydrated
messages keep their local error, and preserve the optimistic
user+error pair as a unit (with tail-user dedupe).
- Hook all hydrate/resume writers (use-session-actions resume +
fallback, hydrateFromStoredSession, syncSessionStateToView) into
the merge so stale snapshots can't clobber a failed turn.
- Add error to chatMessagesEquivalent so the resume diff actually
sees error-only changes and paints them.
- editMessage on a failed turn now submits a plain resend (no
truncate_before_user_ordinal) and retries plainly on the
"no longer in session history" race.
Style polish on touched files:
- Inline error: text-only treatment (no card).
- User stop / edit-composer send: shared Tabler IconPlayerStopFilled
glyph + shared icon-button class slot for parity.
* feat(desktop): theme xterm with active light/dark mode
The right-sidebar terminal hardcoded a light palette, which read poorly
on the dark glass surface. Subscribe to `useTheme().resolvedMode` and
hot-swap `term.options.theme` so Shift+X (and any other mode change)
updates the terminal in place without tearing down the PTY session.
Dark mode uses xterm's built-in defaults (white fg/cursor + vivid ANSI
16) with just a transparent background so the glass shows through;
light mode keeps the existing hand-tuned overrides for legibility on a
bright surface.
* feat(sidebar): right-click + drag-reorder sessions and workspaces
- Wire right-click on session rows to open the same actions menu;
suppresses the OS-native context menu so Windows stops looking awful.
- Share dropdown + context menu items via useSessionActions() driving
a single declarative ItemSpec[]; render polymorphic over MenuItem.
- New shadcn ContextMenu primitive mirroring DropdownMenu styling.
- Restore drag-and-drop reordering for Agents (lost during the cwd
cleanup) and add reordering of workspace groups via a right-side
grab handle. Pinned reorder unchanged.
- Generic orderByIds<T> replaces the duplicated session/group orderers;
useSortableBindings() hook collapses the two Sortable wrappers.
- cursor-pointer on every actionable element; cursor-grab on handles.
- KISS pass: baseName() helper, AGE_TICKS table, single WORKSPACE_PAGE
constant, flatter SidebarSessionsSection render.
* feat(desktop): solarize the xterm palette in both light & dark
xterm's default ANSI 16 is tuned for dark and reads candy-bright on the
light glass surface (vivid cyans/greens). Ship the canonical Solarized
palette (Schoonover) for both modes — same 16 accents either way, only
fg/cursor swap between `base00/01` (light) and `base0/1` (dark), so a
prompt's colors look uniform across a Shift+X toggle.
Background stays transparent in both modes — Solarized's cream/slate
backgrounds would fight the glass.
* feat(desktop): virtualize chat thread + sidebar via TanStack Virtual
Replaces `use-stick-to-bottom` and per-row session rendering with
`@tanstack/react-virtual`, matching what Cursor uses.
Chat thread (`thread-virtualizer.tsx`):
- Natural-flow virtualization (padding spacers, not absolute items) so
`position: sticky` on the human bubble still resolves cleanly against
the scroller.
- Custom at-bottom anchor: pins when armed, disarms on user-driven
upward scroll, re-arms at bottom, jumps on session switch +
`thread.runStart`.
- Loading indicator and `--thread-last-message-clearance` move to a
real `[data-slot=aui_composer-clearance]` node; drops the brittle
`:nth-last-child(1 of …)` rule that can't fire reliably under
virtualization.
Sidebar (`virtual-session-list.tsx`):
- Flat agents list virtualizes at >=25 rows; pinned and
workspace-grouped paths stay direct-render.
- `SortableContext` keeps all IDs; only the window mounts; dnd-kit's
`setNodeRef` is merged with `virtualizer.measureElement` so rows
participate in both DnD hit-testing and TanStack measurement.
Drops `use-stick-to-bottom`. Streaming test gets a global
`offsetWidth/offsetHeight` stub so the virtualizer's viewport sizing
works in jsdom; the scroll-up-doesn't-pull-back invariant still passes.
* feat: more ui qa
* fix(desktop): trim sidebar terminal startup spacer
Drop zsh's initial spacer row before writing the first terminal prompt so new sidebar terminal sessions do not open with a selectable blank line.
* chore: uptick
* feat(desktop): thin installer + first-launch install.ps1 bootstrap
Converges the Windows packaged desktop installer onto a single canonical
install topology: drop the Electron shell only (~80MB instead of ~500MB),
clone Hermes Agent at a build-time-pinned commit on first launch via
install.ps1's stage protocol, and treat the resulting git checkout at
%LOCALAPPDATA%\hermes\hermes-agent\ as the canonical install location
(same path the CLI installer uses). Future updates flow through the
existing applyUpdates() git-pull path.
Replaces the previous fat-installer architecture where the .exe bundled
a pre-staged hermes-agent source tree under resources/hermes-agent/ that
was then sync'd into ACTIVE_HERMES_ROOT at launch -- a complicated
factory-vs-active dance with several footguns (FACTORY_HERMES_ROOT
mismatch on path resolve, isGitCheckout guard regressions, pyproject
hash drift detection inside the sync loop).
Architecture overview
---------------------
Build time
apps/desktop/scripts/write-build-stamp.cjs writes
apps/desktop/build/install-stamp.json with {commit, branch, builtAt,
dirty}. Honours $GITHUB_SHA / $GITHUB_REF_NAME in CI, falls back to
`git rev-parse HEAD` locally.
apps/desktop/scripts/stage-native-deps.cjs copies the runtime subset
of @homebridge/node-pty-prebuilt-multiarch from the workspace-root
node_modules into apps/desktop/build/native-deps/. Workspace dedup
hoists this dep to the root, out of reach of electron-builder's
`files:`-restricted collector; staging gives us a deterministic
path to extraResources.
electron-builder ships both into resources/install-stamp.json and
resources/native-deps/ respectively.
Boot resolver (electron/main.cjs)
Resolver order:
1. HERMES_DESKTOP_HERMES_ROOT override
2. SOURCE_REPO_ROOT (dev mode)
3. ACTIVE_HERMES_ROOT git checkout WITH .hermes-bootstrap-complete
marker -- the post-install fast path
4. `hermes` on PATH (CLI-installed user adding the desktop)
5. pip-installed hermes_cli via system Python
6. bootstrap-needed sentinel -> hand off to runBootstrap
Deletes the entire FACTORY_HERMES_ROOT / RUNTIME_MARKER /
syncTreeExcludingVenv machinery (-200 lines). The isGitCheckout
guard that bit us in the install.ps1 PR is gone.
First-launch bootstrap (electron/bootstrap-runner.cjs)
1. Resolve install.ps1: prefer SOURCE_REPO_ROOT/scripts (dev), else
download from GitHub raw at INSTALL_STAMP.commit (cached at
HERMES_HOME\bootstrap-cache\install-<sha>.ps1).
2. Fetch the stage manifest via install.ps1 -Manifest -Commit X
-Branch Y.
3. Iterate stages: install.ps1 -Stage <name> -NonInteractive -Json
-Commit X -Branch Y per stage.
4. On all stages green: write the .hermes-bootstrap-complete
marker with {schemaVersion, pinnedCommit, pinnedBranch,
completedAt, desktopVersion}.
Per-run log to HERMES_HOME\logs\bootstrap-<ts>.log. Cancellation
via AbortSignal. Manifest cache so retries don't re-download.
Install overlay (src/components/desktop-install-overlay.tsx)
Mounted alongside the existing onboarding overlay; flexbox card
with header (static) + middle (scrollable) + footer (failure-only,
static). Subscribes to hermes:bootstrap:event IPC + resyncs from
hermes:bootstrap:get on mount/reload. Renders:
- 14-stage checklist with per-stage state icons
- Overall progress bar + current-stage spotlight
- Auto-expanded installer-output panel on failure
- "Copy output" button (full ring buffer + error to clipboard)
- "Reload and retry" wired through hermes:bootstrap:reset to
clear main.cjs's latched failure
Synthetic empty-manifest event from main.cjs flips the overlay to
'active' immediately so the slow install.ps1 download doesn't
leave the user staring at the generic Preparing splash.
Failure latching (main.cjs)
bootstrapFailure module-scope variable holds the rejection after
install.ps1 fails. startHermes() throws the latched error
immediately when set, bypassing the entire ensureRuntime +
runBootstrap chain. Without this, the renderer's ensureGatewayOpen
retries would re-run install.ps1 in a 5-10 min hot loop while the
user was still reading the failure overlay. Cleared via
hermes:bootstrap:reset on user-driven retry.
Unsupported-platform overlay (1F)
macOS / Linux packaged builds (no install.sh stage protocol yet)
emit an unsupported-platform event with a copy-pasteable install
command + docs URL. Dedicated overlay branch with "Copy command"
+ "I've run it -- retry" buttons.
install.ps1 additions (Phase 1F.3 + 1F.5)
-----------------------------------------
New -Commit and -Tag string params. Precedence Commit > Tag >
Branch. Honoured by all three code paths (update / fresh clone /
ZIP fallback), with archive URL selection that handles each
ref-type variant. Detached-HEAD checkouts intentionally -- they're
pins, not branches the user pulls into.
EAP=Continue wrap around the new pin-step git invocations. `git
fetch origin <commit>` writes the routine 'From <url>' info line to
stderr; under the script's global EAP=Stop that terminates the
script even though fetch+checkout succeed. Matches the established
pattern in Install-Uv, Test-Python, _Run-NpmInstall.
Backend fix (hermes_cli/web_server.py)
--------------------------------------
CORS allow_origin_regex now accepts Origin: 'null'. Packaged
Electron loads index.html via file://; Chromium sets the WebSocket
upgrade Origin header to the opaque origin 'null', which the old
regex rejected with HTTP 403 before gateway_ws() ever ran. This
failure mode was masked in the older FACTORY_HERMES_ROOT
architecture because the resolver often found an existing hermes
on PATH with different binding behavior.
Security maintained: localhost-only bind keeps cross-machine pages
out; per-process session token still gates every authenticated
/api/ endpoint regardless of Origin.
Desktop QoL
-----------
DevTools is now enabled in packaged builds (F12 / Cmd+Opt+I).
Field-debugging trade-off: tiny attack surface increase versus
a much better support story when CSP / WS / theme issues surface.
NSIS prereq-check page deleted (-767 lines). The standard
Welcome -> License -> Directory -> InstallFiles -> Finish wizard
now installs without custom Python/Git/ripgrep detection -- those
prereqs are install.ps1's job at first launch.
Test infrastructure (Phase 1G)
------------------------------
apps/desktop/scripts/test-desktop.mjs rewritten as a cross-platform
bundle validator (was darwin-only and asserted on dead factory-
payload paths):
NEGATIVE: hermes_cli/main.py is NOT shipped (regression guard)
POSITIVE: install-stamp.json carries a real commit + branch
POSITIVE: node-pty native deps shipped under resources/native-deps
POSITIVE: renderer dist/index.html reachable (asar or unpacked)
New nsis mode and npm run test:desktop:nsis script.
Validated end-to-end on clean Win10 VM
--------------------------------------
Confirmed: NSIS installer drops Electron shell, app launches,
install overlay shows progress, install.ps1 clones the pinned
commit, 14 stages run to completion, marker written, backend
spawns, WebSocket connects, onboarding overlay asks for API key,
main UI loads, integrated terminal works.
Failures handled: bootstrap stays failed (no hot-loop retry),
"Copy output" gives actionable transcript, "Reload and retry"
explicitly re-runs install.ps1.
What's deferred
---------------
- MSIX wrapping (Phase 2): same Electron .exe under MSIX manifest
with runFullTrust, signed and submitted to Microsoft Store.
- install.sh stage protocol parity (Phase 2): once shipped, the
unsupported-platform overlay becomes drive-it-yourself and
macOS/Linux packaged installers gain feature parity with Windows.
* feat(desktop): persistent terminal pane + fullscreen takeover
Adds a VSCode-style "focus terminal" toggle to the right sidebar's Terminal
tab that takes over the chat pane area without unmounting the shell. The
xterm host is mounted once at the layout root and CSS-overlayed onto
whichever <TerminalSlot /> is currently active, so the PTY session,
scrollback, selection, focus, and WebGL renderer survive every toggle.
Also:
- WebGL renderer (matching dashboard ChatPage) so Hermes' TUI skins paint
faithfully instead of muting through xterm's default DOM renderer
- File drag/drop from the project tree or OS into xterm — paths are
shell-quoted (zsh/bash/pwsh/cmd) and written straight into the PTY
- Solarized dark canvas with brights promoted to real accent variants
(Schoonover's UI-gray brights washed out every TUI accent)
- Strip NO_COLOR/FORCE_COLOR/COLORFGBG/TERM=dumb leaking from non-tty
parents (CI runners, Cursor's agent shell) so the embedded shell gets
truecolor regardless of how Electron was launched
- rAF-debounced ResizeObserver — running fit.fit() synchronously during
sibling pane transitions crashed the WebGL texture-atlas rebuild
* fix(install.ps1): strip UTF-8 BOM regression that broke 'irm | iex'
The canonical install flow
irm https://raw.githubusercontent.com/.../scripts/install.ps1 | iex
fails on PowerShell 5.1 with a cascade of 'The assignment expression
is not valid' errors at every param() default value:
[string]$Branch = 'main',
~~~~~~
The assignment expression is not valid. The input to an assignment
operator must be an object that is able to accept assignments...
Root cause: scripts/install.ps1 carries a UTF-8 BOM (0xEF 0xBB 0xBF)
as its first three bytes. 'irm' returns the response body as a string;
on PS 5.1 the BOM survives into that string as a leading \ufeff
character. 'iex' then evaluates the string and PS's parser chokes
on the invisible character before param() -- error recovery proceeds
into the body but every assignment is reported as broken.
This was the exact failure mode the install.ps1 hardening pass (PR
#27224) deliberately fixed by stripping the BOM and ensuring the
file body is pure ASCII. Commit 4279da4db ('fix(windows): make
PowerShell installer parse in 5.1') re-introduced the BOM later,
unintentionally undoing the irm|iex compatibility fix; the merge
that brought it into bb/gui carried it forward.
Fix: strip the three BOM bytes. File body is verified pure ASCII
(any-byte > 127 returns false), so PS 5.1 with no BOM falls back to
Windows-1252 decoding which is identical to ASCII for our content.
Both install paths now work:
- 'irm ... | iex' (canonical CLI)
- 'powershell -File install.ps1' (programmatic / desktop bootstrap)
* install.ps1: detect ARM64 Windows reliably for Node and Git stages
Add a Get-WindowsArch helper that reads Win32_Processor.Architecture
via CIM (invariant to PowerShell host bitness) with PROCESSOR_ARCHITEW6432
fallback. Use it in:
- Install-Git: previously only triggered the arm64 PortableGit asset
when invoked from a native-ARM64 PowerShell host. WoW64 / emulated
x64 hosts (the default powershell.exe on Windows-on-ARM) saw
PROCESSOR_ARCHITECTURE=AMD64 and fell through to the x64 PortableGit
build, leaving ARM64 users on emulated Git for Windows.
- Test-Node: previously hardcoded the Node download to win-x64 on any
64-bit OS, so ARM64 users always got x64 Node under Prism emulation
even though Node ships an arm64 build for Windows. The winget
fallback now also passes --architecture arm64 on ARM64.
Python remains x86_64 by design: uv intentionally prefers
windows-x86_64 cpython on ARM64 hosts for ecosystem (wheel)
compatibility (see astral-sh/uv#19015).
* install.ps1: harden Install-SystemPackages against winget msstore failures
The previous winget invocation discarded stdout/stderr and trusted no
signal at all -- not the exit code (winget exits 0 even when it bails
"please specify --source"), not output (sent to Out-Null), not the
catch handler (winget returning 0 means no exception fires). The only
trust signal was a post-install Get-Command rg / Get-Command ffmpeg
check, which would also miss the package because %LOCALAPPDATA%\
Microsoft\WinGet\Links (where winget puts command aliases) is added to
PATH by AppExecutionAlias machinery only in fresh shells. End result on
machines where the msstore source has a cert problem (0x8a15005e --
common on Windows-on-ARM and some corporate networks): silent failure,
no log, no breadcrumb, and the user is told the install succeeded.
Specifically:
- Pin --source winget on every winget install call. Defeats the broken-
msstore-source path. We ship nothing from msstore so this is safe and
forward-compatible.
- Add --exact --id for a tighter package match.
- Capture each winget invocation's combined stdout/stderr + exit code to
%TEMP%\hermes-winget-<pkg>-<n>.log instead of Out-Null. On the happy
path the log is deleted after the post-install check confirms the
binary is on PATH; on failure the log is kept and its path is named in
a Write-Warn so the user has something to grep.
- Refresh PATH to include %LOCALAPPDATA%\Microsoft\WinGet\Links in
addition to the User/Machine env-var hives, so Get-Command sees newly-
installed winget aliases in the same process.
- No behavior change on the happy path. Same Write-Info/Success/Warn
cadence, same fallback order (winget -> choco -> scoop -> manual),
same $script:HasRipgrep / $script:HasFfmpeg outputs.
Verified end-to-end on a real Snapdragon ARM64 Windows host: ripgrep
uninstalled, stage re-run, [OK] ripgrep installed in 1.4s, ok:true.
* desktop: swap node-pty fork for upstream microsoft/node-pty 1.1.0
The previous dependency, @homebridge/node-pty-prebuilt-multiarch@0.13.1,
publishes no win32-arm64 prebuilds on its v0.13.x line, and its v0.14.x
betas (which do add an arm64 Windows build) ship no electron-vXXX-win32-
arm64 prebuilds at all -- so packaged Electron 40 builds (NMV 143) would
fail at runtime even on a successful npm install. Net effect: the
desktop's integrated terminal was unbuildable on Windows-on-ARM, in
both dev (npm install fails: 404 fetching the node-vXXX-win32-arm64
prebuilt) and packaged builds (no Electron-ABI prebuilt exists).
The homebridge fork was originally created because upstream node-pty
shipped no prebuilds at all. That hasn't been true since node-pty@1.0
(April 2024), which:
- bundles prebuilts for mac (arm64+x64) and Windows (arm64+x64) directly
inside the npm tarball -- no GitHub-Releases fetch, no missing-binary
failure mode
- uses N-API (node-addon-api) for ABI stability across Node and Electron
major versions, so the same pty.node binary loads under Node 22 (dev)
and Electron 40+ (packaged) without per-ABI rebuilds
- is what VS Code, Hyper, and Theia actually ship
API surface is identical (spawn / onData / onExit / write / resize /
kill) -- no call-site changes needed.
Specifically:
- apps/desktop/package.json: replace the @homebridge fork with
node-pty@1.1.0 (exact pin). Widen `asarUnpack` from `["**/*.node"]`
to also unpack `**/prebuilds/**`, because node-pty ships runtime-
execed helpers alongside its .node files (darwin spawn-helper has no
extension and would not be matched by `**/*.node`; conpty.dll,
OpenConsole.exe, winpty.dll, winpty-agent.exe on Windows are also
exec'd at runtime and cannot live inside asar).
- apps/desktop/electron/main.cjs: update both require() strings to
match the new package name and the new staged path under
resources/native-deps/node-pty/.
- apps/desktop/scripts/stage-native-deps.cjs: point at node_modules/
node-pty. node-pty's prebuilts live under prebuilds/<plat>-<arch>/
(not build/Release/), so update the include glob to copy that dir.
Per-arch staging keeps the resource bundle small (target arch comes
from npm_config_arch when electron-builder cross-builds, else
process.arch). Explicitly enumerate file types in the prebuilds glob
so the ~25 MB of .pdb debug symbols that prebuild-install bundles
for Windows crash analysis don't bloat the installer (29 MB -> 2.6 MB
staged on win32-arm64). Re-assert +x on the darwin spawn-helper
defensively, since a stripped mode bit would manifest as a silent
ENOENT at first pty.spawn().
- apps/desktop/scripts/test-desktop.mjs: update expectedNativeDepPaths()
and its assertion site to look at prebuilds/<plat>-<arch>/ instead of
build/Release/. Add an explicit spawn-helper-exists check on darwin
so a regression in the asarUnpack glob would fail loudly in CI rather
than at first PTY spawn.
Trade-off: Linux end-users lose prebuilts and fall back to building
node-pty from source on `npm install`. Acceptable because Hermes
ships no Linux desktop builds (desktop-release.yml matrix is mac + win
only, package.json declares no `linux` target), and Linux developers
hacking on the desktop already need a C++ toolchain for the rest of
the stack.
Verified on Windows 11 ARM64 (Snapdragon):
npm install -> exit 0
node -e "require('node-pty').spawn(...)" round-trip -> OK
stage-native-deps -> 27 files, 2.6 MB
load from staged tree (simulates packaged fallback) -> ConPTY
round-trip OK
* desktop+gateway: harden Slack socket recovery and Windows restart dedupe (#28873)
* desktop+gateway: harden Slack socket recovery and Windows restart dedupe
Fix Slack Socket Mode reliability by adding a watchdog/reconnect path so silent socket task drops no longer leave the adapter stuck. Harden Windows gateway lifecycle by avoiding desktop-binary path collisions, making gateway PID scans case/extension tolerant, and reusing in-flight restart actions to prevent duplicate gateway spawns.
* test(slack): add Socket Mode watchdog/reconnect behavioural coverage
Drive the new Slack Socket Mode self-healing logic through a fake AsyncSocketModeHandler so we can simulate the P0 silent-hang failure mode (task exit, transport disconnected, intentional shutdown, concurrent reconnect attempts) without touching real Slack.
* fix(slack,desktop): address Copilot review on watchdog races and path normalization
- connect(): explicitly cancel + await the prior socket watchdog before flipping _running, so an old monitor cannot exit between teardown and respawn (Copilot #1)
- _socket_watchdog_loop: wrap the body in try/except + add a done-callback that respawns on unexpected crash, so a transient bug cannot permanently disable self-healing (Copilot #2)
- normalizeExecutablePathForCompare: use the resolved path for realpathSync so non-string inputs cannot leak through (Copilot #3)
- Add tests for crash-recovery and atomic watchdog replacement across reconnects
* fix(slack): tighten connect() error path and clarify watchdog test intent
Address Copilot review round 2.
- connect(): wrap _start_socket_mode_handler/_ensure_socket_watchdog in a focused try/except so any failure rolls back partially-started handler/task state and leaves _running=False, ensuring the platform lock is always released by the outer finally
- Defer _running=True until after the handler is actually started so the watchdog observes a live socket task immediately and never spins against a half-built adapter
- Rename test_watchdog_self_restarts_after_unexpected_crash to test_watchdog_cancellation_does_not_respawn (matches what it actually asserts) and add test_watchdog_unexpected_exit_respawns_via_done_callback that drives a real RuntimeError through _on_socket_watchdog_done and verifies a fresh task replaces the crashed one
* fix(web_server): serialize action spawn check+store under a threading lock
Address Copilot review round 3.
FastAPI runs sync handlers on its threadpool, so two near-simultaneous /api/gateway/restart (or /api/hermes/update) requests could both observe "no live process" in _spawn_hermes_action's poll-based dedupe and double-spawn. Add a module-level _ACTION_SPAWN_LOCK around the entire check + Popen + _ACTION_PROCS store sequence so the dedupe is atomic across threads.
* fix: address Copilot review round 4
- slack.disconnect(): mirror connect()'s defensive cleanup — catch the broad Exception path on watchdog await so handler shutdown and lock release still run if the watchdog raised before cancellation took effect
- web_server._spawn_hermes_action: wrap subprocess.Popen in try/except so a missing executable / permission error closes the log file handle, writes a failure marker, and re-raises instead of leaking a file descriptor
- gateway._scan_gateway_pids: drop the over-broad "hermes.exe --profile" / "hermes.exe -p" patterns that would match any Hermes CLI subcommand using a profile flag (e.g. `hermes.exe --profile foo dashboard`); rely on the "hermes.exe gateway" + "hermes-gateway.exe" tokens instead
- tests: tighten _fake_create_task to assert coroutine input and return a real asyncio.Task that stays pending until pytest teardown, and update the three callsites whose mocked AsyncSocketModeHandler.start_async returned a non-coroutine value
* fix(slack): reset multi-workspace state on reconnect
Address Copilot review round 5.
connect() is reentrant (gateway restart, in-process reconnect), but it was leaving _bot_user_id / _team_clients / _team_bot_user_ids populated from the previous session. A reconnect that rotated the primary token or dropped a workspace would silently keep the stale bot user id and stale workspace client maps, leading to dispatch against gone workspaces.
Clear these three pieces of state right after _stop_socket_mode_handler() and before the auth_test loop, then let the loop repopulate from the current tokens. Add test_reconnect_refreshes_multi_workspace_state to lock it in.
* nix: package apps/desktop as .#desktop (#28964)
Adds nix/desktop.nix building the Electron renderer with buildNpmPackage
and wrapping nixpkgs' electron binary. Reuses .#default by setting
HERMES_DESKTOP_HERMES to its hermes binary, so the desktop's resolver
picks up the fully-wired nix hermes (venv, bundled skills/plugins,
runtime PATH) without reimplementing agent resolution.
- nix/desktop.nix: renderer + electron wrapper
- nix/hermes-agent.nix: finalAttrs form, exposes hermesDesktop in passthru
- nix/packages.nix: exposes .#desktop + adds to fix-lockfiles
- apps/desktop/package-lock.json: standalone hermetic lockfile
nix build .#desktop && nix run .#desktop both clean.
* fix(desktop): probe steps 4 & 5 of resolveHermesBackend before trusting
A user-reported failure on Windows-on-ARM: a pre-installed Python 3.13
on PATH makes findSystemPython() succeed, so resolveHermesBackend
returns a backend pointing at it -- but hermes_cli isn't in that
interpreter's site-packages. The spawn dies with ModuleNotFoundError
and the user sees a dead GUI instead of the first-launch installer.
Same shape can hit step 4 (existing `hermes` on PATH) when a stale
shim survives a partial uninstall.
Add cheap exit-code probes -- `python -c "import hermes_cli"` for
step 5, `<hermes> --version` for step 4 -- and fall through to step 6
(bootstrap-needed) on failure. install.ps1 then runs as if on a clean
box and the venv gets built.
Probes live in a standalone electron/backend-probes.cjs module so they
can be unit-tested with node --test, same pattern as bootstrap-platform.cjs
and hardening.cjs. New test file wired into test:desktop:platforms.
* test(desktop): allow `node-pty` bare-require in packaged entrypoints
Pre-existing failure on bb/gui since c858484b4 swapped the node-pty
fork for upstream microsoft/node-pty 1.1.0. main.cjs intentionally
bare-requires node-pty (it's hoisted by workspace dedup in dev, and
staged to resources/native-deps via scripts/stage-native-deps.cjs +
extraResources for packaged builds, with a try/catch fallback at
line ~38). The allowlist hadn't been updated to match -- same shape
as `electron`, which was already allowed.
* chore(deps): refresh root lockfile for dashboard @nous-research/ui 0.14.0
apps/dashboard/package.json was bumped to @nous-research/ui 0.14.0 (+
flag-icons ^7.5.0, motion ^12.38.0) but the root package-lock.json was
never refreshed. Running `npm install` from the repo root now
materialises 0.14.0's transitive closure (launder, bumps for
@nanostores/react, nanostores, sanitize-html, tailwind-merge).
No code changes; purely a lockfile catch-up so fresh checkouts on bb/gui
get a working dashboard install.
* chore(desktop): bump version to 0.0.1
First non-placeholder version so electron-builder's artifactName template
produces `Hermes-0.0.1-win-x64.exe` instead of the obviously-unreleased
`Hermes-0.0.0-...`. No release process yet; this just stops the artifact
filename from telling users "you got a debug build."
Bumped in three slots that all carry the desktop app's version:
- apps/desktop/package.json (source of truth)
- apps/desktop/package-lock.json (per-app lockfile, kept for CI parity)
- root package-lock.json's apps/desktop workspace entry
Identity-of-build for first-launch bootstrap continues to come from
build/install-stamp.json (commit SHA + builtAt), unchanged.
* fix: fs icon color
* perf(desktop): cut per-keystroke layout + listener churn in chat composer
Empirical work via CDP harnesses under apps/desktop/scripts/ (see
profile-typing-lag.md):
jsListeners growth (per round of 200 chars + GC):
before: +35 (verified leak — listeners stuck after 1st trigger popover use)
after: +0
Four narrow edits in src/app/chat/composer/index.tsx:
1. Drop the per-keystroke `editorRef.current.scrollHeight` read used to
decide composer expansion. Replace with `draft.length > 60` heuristic;
the existing ResizeObserver still catches edge cases. `scrollHeight`
is a forced-layout call and was firing on every char until the first
wrap.
2. Bucket measured composer height to 8px before writing
`--composer-measured-height` / `--composer-surface-measured-height`
on `documentElement`. Without this, the editor grows ~1px per char,
setProperty fires every keystroke, computed style is invalidated tree-
wide.
3. Remove the dead `$composerDraft` two-way sync. Nothing outside the
composer subscribed to that atom (verified via grep). Two useEffects
on `[draft]` were pushing draft→atom and atom→aui per keystroke for
no consumer. Also drop the per-keystroke
`reconcileComposerTerminalSelections` call; it was pruning stale
labels for `terminalContextBlocksFromDraft`, but that helper already
ignores labels not in the current submitted text, so pruning per
keystroke was just bookkeeping.
4. `refreshTrigger` fast-bails when the draft contains neither `@` nor
`/`. Previously `textBeforeCaret(editor)` ran on every input/keyup
regardless; `range.toString()` inside is O(n) over draft length.
Synthetic typing latency p50/p90/p99 is similar before vs after on a
freshly-loaded session (Blink can already handle ~30cps typing into a
contentEditable on its own); the real win is the listener leak being
gone and the global computed-style invalidations dropping ~8× when the
composer is sitting at a fixed height row.
The `Enter → stall` follow-up (see profile-typing-lag.md §"Submit /
TTFT stall") is unmeasured here — needs a throwaway session because
the harness fires a real prompt. Not blocking this commit.
* perf(desktop): cut FadeText forced layouts during streaming
The slowest user-felt path is typing into the composer while the
assistant is streaming. Profile (scripts/profile-under-stream.mjs):
FadeText measureOverflow self time: 35.8 ms → 18.1 ms (-50%)
total active CPU during 7s window: ~150 ms → ~50 ms
Two changes in src/components/ui/fade-text.tsx:
1. Drop the `useEffect([children])` that re-ran `measureOverflow`
(reads scrollWidth + clientWidth — forced layout) on every parent
re-render. `useResizeObserver` already fires the same callback on
mount and whenever the host span's box size changes; that covers
the only case where overflow state can legitimately change. The
previous explicit useEffect was a forced-layout flush on every
parent render, which during streaming meant every token tick.
2. Wrap the component in `memo` with a custom comparator that
short-circuits the entire render when scalar string `children` and
the className/fadeWidth/style props are unchanged. The hot path
was tool-fallback's title chips being re-rendered by parent
streaming updates even though their text was stable; memo+
comparator skips that.
Also adds two harness scripts under apps/desktop/scripts/:
- latency-under-stream.mjs (key→paint latency while a turn streams)
- profile-under-stream.mjs (CPU profile while a turn streams)
Updates profile-typing-lag.md with the streaming numbers and confirms
the Enter→paint submit path is already fast (≤320ms on the populated
session; the 2s "stall after Enter" the user noticed once was a
one-time cold-start, not reproducible at the UI layer).
I'd guess the felt jank in real use is fast-burst typing during a
long-form streaming reply (code blocks + markdown lists multiply the
per-token render cost). The CPU savings here scale linearly with
token volume.
* chore(desktop): drop diag scratch scripts no longer needed
* docs(desktop): correct leak-typing numbers on a real session
Re-ran the leak harness on a populated session (Phaser thread) for both
unpatched and patched builds. The original 'listener leak' was transient
warm-up cost, not a steady-state leak — both versions show 0 listener
growth/round in steady state.
The load-bearing number is forced layouts per character:
unpatched (HEAD~2): 7.02 layouts/char
patched (HEAD): 2.35 layouts/char (3× fewer)
The patches reduce per-char forced-layout work to Blink's natural floor.
Document node count and heap are flat in both builds.
* perf(desktop): fix "Enter jumps up" on long threads
User reported: after pressing Enter on a long thread, the view jumps up
— the just-submitted message disappears below the fold. Confirmed via
apps/desktop/scripts/measure-jump.mjs:
before: distFromBottom 0 → 49.5px, sticks there permanently
after: distFromBottom 0 → ~0 (worst case 4px for one frame)
Root cause in useThreadScrollAnchor (thread-virtualizer.tsx):
1. The sticky-bottom logic disarmed on any scroll event where
`scrollTop < lastTopRef.current`. That check can't distinguish a
user scrolling up from a programmatic `pinToBottom` write that
the browser clamped short of bottom (because content also grew in
the same frame, so `scrollTop = scrollHeight` lands at
`scrollHeight - clientHeight` for the OLD scrollHeight, which is
now below the NEW scrollHeight). Result: sticky-bottom disarmed
permanently on the user's first submit.
2. There was no synchronous pin tied to React's commit phase. By the
time the ResizeObserver fired and re-pinned, the user had already
seen ~50ms of "message below the fold" — visually that reads as the
view jumping up.
Fix:
- `programmaticScrollPendingRef` counter tracks scroll events we
expect to be ours (one per `pinToBottom` write). The scroll handler
skips the disarm check when consuming a pending tick, keeps the
arm bit true, and re-pins synchronously if the browser clamped us
short of bottom. A depth cap (8) breaks runaway loops in
pathological streaming-burst layouts.
- `useLayoutEffect` on `groupCount` increase pins BEFORE the browser
paints, eliminating the visible ~50ms window between optimistic
user-message insert and the RO/scroll-event chain firing.
Verified on the long Cloud Shadows thread (7-8 turns, ~11k px tall):
all three repro runs now hold within 0–4 px of bottom across the
post-Enter transition. Submit latency unchanged (paint 77–107 ms),
streaming-typing latency unchanged.
Also adds three debug harnesses:
- measure-jump.mjs — sample thread scroll across Enter
- probe-thread.mjs — dump current thread / scroll state
- diag-jump.mjs — intercept scrollTop + RO + mutations across Enter
* perf(desktop): rate-limit thread auto-pin during streaming
Follow-up to the Enter-jump fix. The first version did a synchronous
re-pin loop inside the on-scroll handler when the browser clamped our
`scrollTop = scrollHeight` write short of the new bottom; that gave a
tight 4 px visible jump on Enter, but during streaming the
ResizeObserver fires many times per second as content grows, and each
RO callback re-entered the pin loop. CPU profile showed
`Virtualizer.getMaxScrollOffset` climbing to 22 ms self over a typing-
during-streaming window — the sync re-pin path was paying tanstack-
virtual's recompute cost ~3× per token.
Re-architect:
- RO callback coalesces to one pin per animation frame. Streaming-rate
RO bursts now cost the same as a single per-frame pin.
- The on-scroll programmatic-counter guard remains (it's what prevents
the false-disarm bug when the browser clamps a write). It no longer
does sync re-pins; the next RO/rAF will catch up.
- The useLayoutEffect on groupCount (the path that fires on user
submit / new turn arrival) ALSO schedules one rAF pin in addition to
the synchronous pin. This catches the case where React mounts the
new message in a second commit (after our layout effect ran), which
grows scrollHeight again. Two pins instead of a tight loop, paid only
once per turn change.
Net effect on the Cloud Shadows long thread:
enter-jump transient: 12–20 px for 1 frame (was 49 px permanent)
CPU during stream+type: `getMaxScrollOffset` dropped out of top-5
self-time list
typing-during-stream: p50 ~10 ms paint, p99 ~20 ms (1 frame),
occasional 40 ms+ outliers during burst
token arrivals
Also adds scripts/profile-long-stream.mjs: 20-second streaming profile
with per-500ms FPS histogram + content-length tracking, so we can see
whether streaming render cost grows with message length (it doesn't —
sustained 60 fps).
* perf(desktop): use textContent for trigger precondition
Replace composerPlainText() call inside refreshTrigger's no-trigger
fast-bail with a textContent check. textContent is a browser-native
flat traversal; composerPlainText walks recursively with chip-aware
logic. We only need to know if @ or / appears; either way the trigger
char will be in textContent because chips contain @ in their refText.
Profile shows composerPlainText was ~18ms self over a 12s typing-during-
stream window, called from refreshTrigger on every keystroke. Most of
that was the precondition check (the trigger detection path is the
slow path but only runs when a trigger char is present).
* Revert "perf(desktop): use textContent for trigger precondition"
This reverts commit a6a78ff08a31129a3a47fa55aca260d93af913a5.
* Revert "perf(desktop): cut FadeText forced layouts during streaming"
This reverts commit 88e7d7537cdab87200405edf298e38cb37e0a950.
* Revert "perf(desktop): cut per-keystroke layout + listener churn in chat composer"
This reverts commit bff1b3261d18a2427ac6c345c99f8312728346dd.
* Revert "Revert "perf(desktop): cut per-keystroke layout + listener churn in chat composer""
This reverts commit b7b378e3a43f94b9f4a1a34155707c6301c0fd87.
* Revert "Revert "perf(desktop): use textContent for trigger precondition""
This reverts commit 0739588f4896902f7f0d4ded8b5eaeb92bfdf042.
* chore(desktop): synthetic-stream perf harness + scripts
Drops the React `<Profiler>` approach (no-op because Vite is currently
serving the production React build) in favor of an externally-observable
measurement stack: rAF frame intervals, `PerformanceObserver({entryTypes:
['longtask']})`, and a `MutationObserver` on the live streaming message.
Adds a synthetic stream driver — `window.__PERF_DRIVE__.stream({...})` —
that pushes tokens through the live `$messages` atom at a controlled rate,
so the assistant-ui runtime, incremental repository, and Streamdown
markdown pipeline see the same workload they'd see during a real LLM
stream, without the LLM cost.
The driver lives in `src/app/chat/perf-probe.tsx`; `main.tsx` side-imports
it under `import.meta.env.MODE !== 'production'` so it tree-shakes out of
prod builds. (Using `MODE` rather than `DEV` because our Vite setup
currently reports `DEV=false` even under `vite dev` — see the dev-build
note in `profile-typing-lag.md`.)
Scripts:
- measure-synthetic-stream.mjs drive synthetic + record frame/longtask/mutation
- profile-synth-stream.mjs CPU profile + top self-time during synthetic
- measure-real-stream.mjs same harness, real LLM stream
- profile-real-stream.mjs CPU profile bracketing the real stream window
- eval.mjs / reload.mjs small CDP helpers
A real-LLM measurement on Cloud Shadows (gpt-4o-mini, 39 s window) showed
12 longtasks in the same 75-127 ms range the synthetic predicted, so the
synthetic is a faithful proxy.
* perf(desktop): memo FadeText so it skips re-renders when text unchanged
FadeText is used 110+ times inside `tool-fallback.tsx` on a tool-heavy
thread. During streaming each parent re-render previously triggered the
component's `useEffect([children])`, which forced a `scrollWidth` layout
read even when the title text was unchanged. The `useResizeObserver` was
already covering the genuine resize case, so that effect was strictly
redundant work.
Drops the effect and wraps the component in `React.memo` with a custom
comparator that field-compares `className`, `fadeWidth`, and `style`,
plus identity-compares `children` (scalar fast-path; correct for JSX
nodes too since a new node should force a re-render).
Verified via temporary render counter on the 34 MB
`session_20260514_215353_fe0ac8` thread (110 FadeText instances): a
2 s synthetic stream went from ~11k FadeText render calls to 122 —
roughly one render per truly-new instance instead of one per parent
commit per instance.
Doesn't move the longtask needle on its own (Streamdown's markdown
re-parse dwarfs it) but eliminates a steady CPU floor and a class of
forced layouts during streaming. Profile-typing-lag.md documents the
full investigation, including the remaining Streamdown cost as the
real source of the perceived "5 fps moment" hitches.
* perf(desktop): memoize MarkdownText plugins to stop churning Streamdown
The inline `plugins={{ math: mathPlugin, ...(isStreaming ? {} : { code }) }}`
on `<StreamdownTextPrimitive>` constructed a new object literal on every
parent render. That broke `<Streamdown>`'s outer memo and forced its
internal `rehypePlugins` / `remarkPlugins` array useMemos to rebuild,
which propagates a new identity into every `<Block>` and defeats Block's
memoization for stable historical blocks.
After memoizing on `[isStreaming]` (the only real dimension of variance),
CPU profile during a 5 s synthetic stream on the 34 MB session shows
`parser` self-time dropping out of the top 10, `compile` cut roughly in
half, and `bn$1` / `m$1` (micromark internals) leaving the top entries.
Doesn't move the visible longtask count on its own — Streamdown's
per-Block parse cost still dominates whenever the last block's content
changes — but it removes a class of unnecessary re-parses for historical
blocks during streaming. See `scripts/profile-typing-lag.md` for the
full investigation.
* perf(desktop): floor assistant-text flush gap to 33ms for predictable batching
`scheduleDeltaFlush` previously coalesced via `requestAnimationFrame`
only. The "at most one flush per frame" guarantee that gives you is fine
for fast streams (>~80 tok/sec) where multiple tokens arrive within a
single frame, but breaks down at typical LLM token rates (30-80 tok/sec)
where each token arrives slower than the rAF cadence and triggers its
own React commit + Streamdown markdown re-parse.
Track `lastFlushAt` and require at least 33 ms between two flushes.
React 18+ auto-batching probabilistically already collapsed some of
these, but the floor makes it deterministic.
A/B on the 34 MB session, 300 tokens at 50 tok/sec (markdown chunks):
| | avgFps | p99 frame | LTs / 5 s | max LT |
|---|---|---|---|---|
| no floor (current rAF) | 54.0 | 38 ms | 2.0 | 145 ms |
| 33 ms floor (this PR) | 54.3 | 41 ms | 1.7 | 110 ms |
`inter-mutation` p50 also tightens from 22-28 ms to a clean 33 ms,
which is the expected signature of a deterministic floor. Doesn't fully
solve the user's perceived hitches — Streamdown's per-Block parse cost
when the last block grows past ~2 k chars is still the elephant — but
it consistently shaves the worst-case longtask and makes the streaming
cadence visibly steadier.
Also threads a matching `flushMinMs` option through the synthetic
stream driver in `perf-probe.tsx` + `scripts/measure-synthetic-stream.mjs`
so the harness can A/B both regimes without spending LLM credits.
See `scripts/profile-typing-lag.md` for the full investigation.
* perf(desktop): useDeferredValue for streaming markdown so parses don't block input
Streamdown's per-Block parse cost grows with the live tail's length and
is unavoidable inside the block-memo pattern (industry standard, see
findings doc). The fix is to stop having that work block the main thread.
`<DeferStreamingText>` is a 12-line wrapper that reads message-part state
via `useMessagePartText`, runs it through `useDeferredValue`, and
re-publishes via assistant-ui's `<TextMessagePartProvider>`. The inner
`<StreamdownTextPrimitive>` reads the deferred value through the normal
`useMessagePartText` hook — no fork, no internal-path imports, fully on
assistant-ui's public API. React's concurrent scheduler then:
- abandons in-flight deferred renders when a newer token arrives, so
intermediate states get skipped under fast streams
- deprioritises the markdown render when the main thread has urgent
work (typing, scroll), so input stays responsive even while a
100ms parse is queued
Streamdown already uses `useTransition` for its block-array setState;
this lifts the deferral up to the consumer boundary so it covers the
whole pipeline (preprocess → split → repair → parse → render).
A/B on the 34 MB session, 300 tokens at 50 tok/sec, markdown chunks
(four trials each, with the 33ms flush throttle on for both):
| | avgFps | p99 frame | LTs/5s | max LT | typing-while-stream p95 |
|---|---|---|---|---|---|
| pre | 54.3 | 41 ms | 1.7 | 110 ms | ~17 ms |
| post | 58.5 | 31 ms | 2.0 | 117 ms | 14-18 ms |
Longtask count + max LT unchanged — useDeferredValue doesn't reduce
CPU, only its priority. The avgFps lift and p99 frame drop are the
proof that the existing CPU is no longer blocking 60 fps cadence. One
clean run logged MUTATIONS=0 — React skipped every intermediate text
state and only committed the final one (textbook deferred-value
behaviour).
The actually-reduce-CPU path is replacing the parser with a state
machine like Flowdown — left for a future PR; see
`apps/desktop/scripts/profile-typing-lag.md` for the full investigation.
* feat(desktop): add hermes gui launcher
* feat(desktop): launch packaged gui builds by default
* bump gui version to 0.0.2
* fix(dashboard): allow file:// origin on loopback WS + diagnostic logging
Upstream commit 2e66eefbc ("fix(dashboard): validate WebSocket Host
and Origin") added a WebSocket Host/Origin guard to block DNS
rebinding against the dashboard. The guard rejects any Origin whose
scheme is not http/https or whose netloc is empty — which includes
Electron's renderer Origin: file:// when the desktop app loads its
bundle from disk in production mode.
That makes the bb/gui Electron desktop unable to open the gateway
WebSocket against the embedded backend on Windows / macOS prod
builds. The renderer reports "Desktop boot failed" and the backend
logs:
WARNING hermes_cli.web_server: gateway-ws reject
peer=127.0.0.1:NNNN reason=non_loopback_or_bad_origin
bound_host=127.0.0.1 close_code=4403
DNS-rebinding requires a DNS-resolvable hostname; file:// has no
host component and therefore cannot be the attack vector this guard
exists to block. When bound to a loopback interface (127.0.0.1 /
::1 / localhost), accept file:// origins so desktop wrappers can
attach. Non-loopback binds (operator opted into network exposure)
keep rejecting file:// — the loose policy doesn't apply.
Also adds per-reason diagnostic logging in
_ws_host_origin_is_allowed, so future ws-guard rejections name the
specific clause that fired (bad_host / bad_origin_scheme /
origin_host_mismatch) instead of the opaque
"non_loopback_or_bad_origin" surfaced at the call site.
Verified against tests/hermes_cli/test_web_server_host_header.py
(all 11 upstream tests still pass) and hand-tested by opening the
bb/gui Electron desktop dev build against the patched backend.
* fix(tui_gateway): restore _content_display_text helper
Bb/gui had dropped the helper but the orchestrator code merged from main
still calls it (_inflight_text, _message_preview). Re-add the definition
verbatim from main so session.create / _start_inflight_turn don't crash
with NameError on first prompt submit.
* fix(tui-gateway): restore _content_display_text helper lost in main merge
The May 27 merge of origin/main into bb/gui re-introduced two callers of
_content_display_text (in _inflight_text and _history_to_messages) but
dropped the helper definition itself, leaving an unresolved reference.
NameError fires on every user message via _start_inflight_turn ->
_inflight_text, taking down both the TUI and the desktop (which share
this gateway backend) the moment input is dispatched.
Restores the helper verbatim from main (commit 36c99af37) -- pure
structured-content text extractor, no other dependencies.
* fix(telegram): import Set for _dm_topic_chat_ids annotation
self._dm_topic_chat_ids: Set[str] = {...} at line 460 references Set
but only Dict, List, Optional, Any are imported from typing. The file
has no 'from __future__ import annotations', so the annotation is
evaluated at runtime and raises NameError on TelegramAdapter
construction.
* fix(setup): drop shadowing inner importlib.util re-imports
_print_setup_summary and _setup_tts_provider each had 'import
importlib.util' inside a try: block nested deeper in the function
body. Python flips importlib to function-local for the whole scope,
so earlier references in the same function (the neutts branches at
lines 493 / 1109) hit UnboundLocalError before the late import can
run.
The top-of-module 'import importlib.util' at line 14 already covers
both call sites, so dropping the redundant inner imports restores
the intended behavior.
* feat(install.ps1): add -IncludeDesktop switch + Stage-Desktop
The new Hermes-Setup.exe (Tauri bootstrap installer) passes -IncludeDesktop
so users who install via the GUI end up with a launchable Hermes.exe at
apps/desktop/release/<os>-unpacked/. Existing flows are unchanged:
* The 'irm install.ps1 | iex' CLI one-liner omits the flag — terminal
users don't need a prebuilt desktop binary; 'hermes desktop' builds
on demand.
* The Electron desktop's bootstrap-runner.cjs also omits the flag —
rebuilding apps/desktop from inside a running Hermes.exe would try
to overwrite the live binary on disk and fail.
Stage-Desktop runs after Stage-NodeDeps so workspace npm is already
installed when electron-builder fires. It does:
1. 'npm install' at repo root so apps/* workspaces resolve their deps
(Electron itself arrives via npm here, ~150MB)
2. 'npm run pack' in apps/desktop (tsc + vite + electron-builder --dir)
3. Probes apps/desktop/release/{win-unpacked,win-arm64-unpacked}/Hermes.exe
The --dir mode produces an unpacked launchable binary without an NSIS/MSI
installer artifact — we don't need one because Hermes-Setup.exe spawns the
unpacked binary directly via launch_hermes_desktop.
* feat(installer): Tauri bootstrap installer for first-time onboarding
Hermes-Setup.exe is a small signed Rust+Tauri binary that drives
scripts/install.ps1 stage-by-stage with a native UI matching the
desktop's design language. Replaces the chicken-and-egg pattern of
shipping a 200MB Electron app whose first launch existed only to
run install.ps1.
The architecture:
Rust backend (src-tauri/):
bootstrap.rs orchestrator -- Tauri commands, stage iteration
install_script.rs resolve install.ps1 (dev checkout, cache, GitHub raw)
powershell.rs spawn powershell, line-stream stdout/stderr, parse JSON
events.rs BootstrapEvent types -- mirror bootstrap-runner.cjs
paths.rs HERMES_HOME resolution + tracing log setup
build.rs bakes BUILD_PIN_COMMIT / BUILD_PIN_BRANCH from
'git rev-parse HEAD' at compile time
React frontend (src/):
Tauri webview rendering 4 screens (welcome / progress / success /
failure), driven by nanostores subscribing to the Rust event stream.
Visual layer reuses the desktop's styles.css wholesale via @import
so the installer and desktop never drift visually.
Distribution:
targets = ['app', 'dmg', 'appimage'] -- no NSIS/MSI wrapper. The
raw target/release/Hermes-Setup.exe IS the artifact on Windows;
.dmg + .app on macOS; AppImage on Linux. One file, double-click,
no installer-installing-an-installer pattern.
Compile-time pinning:
build.rs reads 'git rev-parse HEAD' and emits
cargo:rustc-env=BUILD_PIN_COMMIT=<sha> + BUILD_PIN_BRANCH=<branch>.
bootstrap.rs's option_env!() picks these up so the binary fetches
install.ps1 from the exact SHA it was tested against. CI / release
builds can override via HERMES_BUILD_PIN_COMMIT env var.
Windows manifest:
hermes-setup.manifest declares level='asInvoker' so the
productName 'Hermes Setup' doesn't trip Windows's installer-
detection heuristic and refuse to launch without elevation.
Also declares PerMonitorV2 DPI + UTF-8 active code page + Common
Controls v6.
Limitations of this initial version:
* No code signing -- Windows SmartScreen will warn once on Hermes-Setup.exe
('More info -> Run anyway'). The downstream binaries it produces
(Hermes.exe in win-unpacked/, the hermes CLI) are locally-built and
therefore don't carry MOTW, so they launch without SmartScreen
intervention. Cert procurement tracked separately.
* macOS and Linux build paths defined but untested -- Windows-only V1.
* fix(installer): pass -IncludeDesktop to manifest, surface launch errors, alias hermes desktop
Three bugs found in the first VM end-to-end test:
1. install.ps1 -Manifest was called WITHOUT -IncludeDesktop, so the
manifest came back with the 14-stage list (no desktop stage), the
UI showed '14 steps' and Stage-Desktop never ran. Pass the flag to
both the manifest fetch and the per-stage runs — install.ps1 gates
the desktop stage's inclusion on the flag.
2. The Success screen's Launch button silently swallowed the Tauri
error when no Hermes.exe existed (e.g. Stage-Desktop was skipped).
Wire the error through to inline UI with an alert callout, so the
user gets actionable text ('Hermes.exe missing, run hermes desktop
from a terminal') instead of an unresponsive button.
3. The Success screen tells users to run 'hermes desktop' from a
terminal but the CLI only accepted 'hermes gui' — invalid choice
for 'desktop'. Rename the subcommand canonically to 'desktop' with
'gui' as a backwards-compatible alias. Update the _SUBCOMMANDS sets
used by session-flag arg parsing + logging-mode probe so both names
route to the same logic.
* fix(install.ps1): pre-warm electron-builder winCodeSign cache + fix Stage-Desktop $HasNode false-skip
Two bugs caught in the second VM end-to-end run:
1. electron-builder's winCodeSign extraction fails on grandma-class
Windows boxes because the .7z archive contains macOS symlinks
(darwin/10.12/lib/libcrypto.dylib and libssl.dylib pointing at
versioned siblings). Creating symlinks on Windows requires
SeCreateSymbolicLinkPrivilege, a per-user right that non-admin
accounts don't have on stock Windows. Result: every fresh install
on a non-admin user fails Stage-Desktop with a 7-Zip 'cannot create
symbolic link' error, retried four times, then bails.
Fix: Initialize-ElectronBuilderCache pre-extracts winCodeSign-2.6.0.7z
ourselves with -snl (don't preserve symlinks, store as resolved file
content) AND -x!darwin (skip the entire macOS subtree — irrelevant
on Windows). Writes to electron-builder's expected cache dir before
electron-builder gets a chance to try its own broken extraction.
Idempotent — fast-paths via signtool.exe sentinel check.
2. Install-Desktop's first guard was 'if (-not $HasNode) skip'.
$HasNode is set by Stage-Node into $script:HasNode, but in
cross-process driver mode (each -Stage NAME is a fresh powershell.exe
spawned by Hermes-Setup.exe), that script-scope variable from the
PREVIOUS process is invisible — so the guard always fired and
Install-Desktop returned in 900ms with a misleading
'Node.js not available' reason. The real npm probe below it never
got to run. Fix: re-probe npm directly via Get-Command when $HasNode
is empty/false, since by that point Stage-Node has already verified
Node is installed and the only question is whether *this* process
can see it on PATH (it can — installer-wide PATH update from Stage-Node).
* fix(install.ps1): tell electron-builder we're NOT signing instead of pre-extracting winCodeSign
The previous commit (c7e46f9f3) worked around the winCodeSign-symlinks-
on-Windows extraction crash by pre-extracting the archive ourselves with
-snl + -x!darwin. That fix was correct but addressed the wrong layer.
The deeper question: why was electron-builder fetching winCodeSign at all
when we have no signing cert configured? Answer: electron-builder
unconditionally pre-warms the toolchain assuming any build MIGHT sign.
The cert auto-discovery never finds anything (we never set CSC_LINK
or anything else), so the signing never happens — but the 100MB fetch
of winCodeSign and its broken-on-Windows symlink extraction does.
Set CSC_IDENTITY_AUTO_DISCOVERY=false (with WIN_CSC_LINK and
WIN_CSC_KEY_PASSWORD also explicitly cleared as belt-and-suspenders)
before invoking npm run pack, and electron-builder skips the entire
winCodeSign apparatus. No download, no extraction, no privilege check.
Env vars are saved/restored around the invocation so we don't leak
the override into Stage-PlatformSdks etc.
Net: removes the 100-line Initialize-ElectronBuilderCache helper that
manually downloaded + extracted winCodeSign-2.6.0.7z. Replaced with
3 env-var assignments. The produced Hermes.exe is functionally
identical — just no longer carries a code-signing-machinery dependency
we never used.
* fix(installer): bump bootstrap-installer.log to capture stage transitions + every install.ps1 line
Diagnosing the second VM failure was impossible because bootstrap-installer.log
contained only the 'starting' banner. Two causes:
1. emit_log() inside run_bootstrap() was tracing::debug! — dropped on the
floor under the default INFO env-filter.
2. The per-stage sink callbacks (on_stdout_line / on_stderr_line) only
emitted Tauri events to the frontend; they never tee'd to the log file
at all. When the failure route mounts, the Tauri event stream is the
only place the script output lived, and it gets discarded.
3. The Failed / Stage / Manifest / Complete lifecycle frames in emit_event()
were also Tauri-only — so even the 'which stage failed' frame never
reached the log.
Fixes:
* emit_log() → tracing::info!
* Sink callbacks tee stdout to info!, stderr to warn!, with stage label
as a structured field for grep'ability
* emit_event() now matches on the variant and logs each lifecycle frame
at the right level: Failed → tracing::error!, others → info!
Result: a failing install leaves a complete forensic trail in
bootstrap-installer.log — manifest stage list, every install.ps1
stdout/stderr line tagged by stage, the stage transitions, and the
final error. Same path as before so nothing the user does changes.
* fix(install.ps1): Stage-NodeDeps cross-process $HasNode + stream npm install output to bootstrap log
VM run 3 diagnosis: node-deps stage skipped on the VM (logged
'Skipping Node.js dependencies (Node not installed)') and then
desktop's npm install failed with exit 1 and zero diagnostic detail.
Two root causes:
1. $HasNode false-skip in Stage-NodeDeps — same cross-process bug
pattern we fixed for Stage-Desktop in c7e46f9f3. Stage-Node ran
in process A and set $script:HasNode = $true, then exited. Stage-
NodeDeps ran in fresh process B (Hermes-Setup.exe -Stage NAME
spawns each stage independently), where that variable doesn't
exist. Re-probe via Get-Command npm instead of trusting the
stale script-scope global. The previous stage already verified
Node so the re-probe succeeds.
2. npm install --silent + Tee to TEMP file hid the real error.
When the workspace install failed on the VM, the actual reason
was buffered in $env:TEMP\hermes-npm-desktop-install-*.log and
the user saw only 'exit 1'. Drop --silent so npm streams its
full output, drop the TEMP-file dance — the Tauri installer's
streaming sink already tees every stdout/stderr line to the
rolling bootstrap-installer.log, so a side log file is dead
weight that hides the very error we need.
After this, the bootstrap log on a failure will contain npm's full
output (deprecation warnings, ETARGET, native-module compile errors,
whatever) tagged with stage=desktop, making the actual cause
diagnosable instead of an opaque exit code.
* fix(install.ps1): restore Initialize-ElectronBuilderCache (CSC env vars alone aren't enough)
VM run 4 diagnosis: even with CSC_IDENTITY_AUTO_DISCOVERY=false set,
electron-builder still fetches winCodeSign and signs bundled binaries.
The log shows the signing happens BEFORE the cache extraction:
• signing with signtool.exe ...\winpty-agent.exe
• signing with signtool.exe ...\OpenConsole.exe
• downloading winCodeSign-2.6.0.7z
• <symlink privilege error>
Cause: node-pty's bundled prebuilds are listed in apps/desktop's
asarUnpack ['**/*.node', '**/prebuilds/**']. electron-builder
re-signs anything unpacked from asar, regardless of whether OUR
binary gets signed. The signtool invocation needs winCodeSign on
disk, which needs the .7z extracted, which hits the macOS-symlink
crash on non-admin Windows.
The CSC env vars I added in d5fe46727 only kill IDENTITY DISCOVERY
(so OUR Hermes.exe stays unsigned, which is fine — we have no cert).
They don't prevent the toolchain fetch for the bundled-prebuild
re-sign. I removed the pre-extract in d5fe46727 thinking the env
vars subsumed it; that was wrong. Both are needed.
Restoring Initialize-ElectronBuilderCache verbatim from c7e46f9f3
and keeping the CSC env vars. Wrote a clearer doc-comment at the
call site explaining the two-knob interaction so future maintainers
don't drop one half again.
* fix(desktop): disable signtool via signtoolOptions.sign=null, drop dead winCodeSign pre-extract
VM run 5 diagnosis: the pre-extract from 3b29e65c1 ran (extracted 83
files, 24MB) but produced ZERO files at the expected sentinel path
'/winCodeSign-2.6.0/windows-10/x64/signtool.exe'.
Cause: the .7z archive's root entries are 'windows-10/', 'darwin/',
'linux/', etc. — not 'winCodeSign-2.6.0/<arch>'. Extracting with
'-o$cacheRoot' put files at $cacheRoot/windows-10/..., NOT at
$cacheRoot/winCodeSign-2.6.0/windows-10/.... I had the directory
nesting wrong from the start.
And then we observed: electron-builder downloads winCodeSign-2.6.0.7z
under a random numeric filename ('384387955.7z') regardless of what's
already extracted in the parent dir. The cache key isn't the dirname;
it's content-addressed. So the pre-extract approach was doomed even
if the path nesting had been right.
Actual fix: signtoolOptions.sign=null in apps/desktop/package.json's
win build config. electron-builder honors this and skips the bundled-
prebuild signing entirely — no signtool invocation, no winCodeSign
fetch, no symlink-privilege crash. The previous failures all stemmed
from electron-builder pre-signing node-pty's bundled .exes
(winpty-agent.exe, OpenConsole.exe) which are already author-signed
upstream; re-signing with our nonexistent cert was overwriting good
sigs with nothing useful anyway.
Cost: when we DO get a real cert later, we'll add it back with the
sign function pointing at the cert chain. Until then, all-null is
the correct config and unblocks every non-admin Windows user.
Removed Initialize-ElectronBuilderCache (the dead pre-extract).
Removed the call site. Kept the CSC_IDENTITY_AUTO_DISCOVERY env
vars as belt-and-suspenders against a future electron-builder
change that might revive cert auto-discovery.
* fix(desktop): use no-op sign function instead of sign=null
VM run 6 still hit the symlink crash even with signtoolOptions.sign=null.
electron-builder 26.8.1 treats null as 'use the default signtool path'
rather than 'skip signing', so the winCodeSign fetch + extraction still
fired for the bundled prebuild re-sign.
The Electron docs (electronjs.org/docs/latest/tutorial/code-signing)
make it clear signing is OPTIONAL and unsigned apps work fine — users
just see SmartScreen on first launch. The electron-builder mechanism
for 'don't actually sign anything' is to supply a custom sign function
(via signtoolOptions.sign: '<path-to-cjs-module>') that resolves
without invoking signtool.
build-noop-sign.cjs is that module — a 5-line async function that
returns undefined. electron-builder calls it for every binary it would
have signed, gets back a resolved promise, and considers each binary
'signed.' No signtool spawn, no winCodeSign fetch, no symlink crash.
When Nous's cert arrives, replace this file with a real signing hook
(@electron/windows-sign-based or a direct signtool invocation). The
architecture's signing-ready and the cutover is a one-file edit.
* fix(desktop): signAndEditExecutable=false to skip signtool path entirely
After reading app-builder-lib/winPackager.js line 216 + 231 directly:
signAndEditExecutable is the ACTUAL hardcoded gate that short-circuits
both signApp() (which signs Hermes.exe + every shouldSignFile match
including bundled prebuilds) AND createTransformerForExtraFiles().
None of signtoolOptions.sign / sign:null / sign:<custom-fn> gate the
winCodeSign download — that happens before they're consulted.
What we lose: rcedit also runs through signAndEditResources, so
disabling this drops PE metadata (file properties showing 'Hermes' /
'Nous Research' / file description). Cost is real but bounded:
* Hermes.exe filename, icon, asar contents, app identity intact
* Task Manager shows 'Hermes.exe' (the filename) not 'Hermes' (PE
description) — minor downgrade
* Start menu, taskbar, window title all work normally
* SmartScreen will warn once (unsigned, same as before)
When the cert lands, flip signAndEditExecutable back to default true,
both signing AND rcedit return, PE metadata is restored.
Removes the no-op sign function (build-noop-sign.cjs) since
signAndEditExecutable=false prevents signtool from being invoked at
all — the custom hook never gets called either.
* feat(install.ps1): write .hermes-bootstrap-complete marker at end of install
The desktop app's main.cjs resolver ladder has a 'bootstrap-needed' rung
that fires when .hermes-bootstrap-complete is missing from
ACTIVE_HERMES_ROOT. Pre-Hermes-Setup, this marker was written by the
packaged-desktop's own bootstrap-runner.cjs at the end of its install
flow. Now that Hermes-Setup.exe runs install.ps1 directly, install.ps1
needs to own the marker — otherwise the desktop sees no marker on first
launch and triggers its legacy first-launch bootstrap (re-running
install.ps1 from inside Electron, the exact recursion Hermes-Setup.exe
was supposed to obviate).
Implementation:
* New Stage-BootstrapMarker (worker) → Write-BootstrapMarker (helper)
* Slotted in the manifest right after platform-sdks, before the
interactive configure/gateway stages, so it runs unconditionally
when the install reaches the finalize phase
* Schema mirrors apps/desktop/electron/main.cjs writeBootstrapMarker /
isBootstrapComplete EXACTLY: {schemaVersion: 1, pinnedCommit,
pinnedBranch, completedAt}. Schema version stays at 1 so old
desktops that read marker files written by future install.ps1s
can still parse them.
* pinnedCommit comes from -Commit flag (Hermes-Setup.exe passes it)
or falls back to 'git rev-parse HEAD' in InstallDir
* pinnedBranch from -Branch flag, defaults to 'main' matching
install.ps1's own param default
Two PS-5.1 gotchas baked into comments:
* The ?. null-conditional operator doesn't exist pre-PS7; use
explicit if-checks on Get-Command results
* Set-Content -Encoding UTF8 emits a BOM in 5.1 and Node's plain
JSON.parse rejects BOM — write via .NET's UTF8Encoding(false)
to produce BOM-less JSON the desktop's readJson() can parse
* feat(installer): drive in-app updates through the Tauri installer
Converge update on the same principle as bootstrap: one driver owns all
repo mutation. The desktop becomes a pure consumer that hands off to
Hermes-Setup.exe --update instead of re-implementing git/pip in Electron.
- hermes desktop --build-only: build without launching, so the installer
owns the post-update launch (CLI keeps build logic single-sourced).
- Installer AppMode {Install,Update} from argv; get_mode exposed to the UI.
- Installer self-copies to HERMES_HOME/hermes-setup.exe on install success
(no-op guard during --update re-invocation to avoid the locked-exe copy).
- Installer --update flow (update.rs): wait for the desktop to release the
venv shim, run 'hermes update --yes --gateway' (branch on exit 0/2/other),
then 'hermes desktop --build-only', then launch the rebuilt desktop. Reuses
the bootstrap event channel + progress UI via a synthetic two-stage manifest.
- Desktop applyUpdates() gutted (~105 lines of git/stash/pull/pyproject/pip
removed) -> thin handoff: spawn updater, app.quit() to free the shim.
Detection (checkUpdates, commit changelog, behind-count) kept intact.
- install.ps1 creates Start Menu + Desktop shortcuts to the packed Hermes.exe
(never bare 'hermes desktop', which would rebuild every launch).
* test update
* fix(installer): pass --branch to hermes update in the --update flow
The install is a detached-HEAD checkout of a pinned commit. Without
--branch, 'hermes update' fell back to its default (main) and switched
the checkout to main — a divergent branch that lacks the desktop CLI
command — so the update targeted the wrong branch and the rebuild stage
failed with 'invalid choice: desktop'.
Thread BUILD_PIN_BRANCH (the branch this installer was built against,
and the same branch the desktop detected the update on) into
'hermes update --branch <b>' so update + rebuild stay on-branch.
* test update
* fix(installer): stamp Hermes icon onto Hermes.exe via rcedit (no winCodeSign)
The unpacked Hermes.exe showed the stock Electron icon + name in the
taskbar because build.win.signAndEditExecutable=false disables BOTH
electron-builder's signing AND its rcedit metadata/icon stamping. That
flag is load-bearing: enabling it re-triggers signtool -> winCodeSign,
whose macOS symlinks crash 7-Zip on non-admin Windows (unfixable dead end).
Decouple identity-stamping from signing entirely: after npm run pack,
run rcedit ourselves on the produced exe.
- Add rcedit as a direct devDependency of apps/desktop (the transitive
electron-winstaller copy is fragile).
- apps/desktop/scripts/set-exe-identity.cjs: Node helper that calls
rcedit's named export to set icon + ProductName/FileDescription/
CompanyName. Node builds argv natively — avoids the PowerShell->exe
->JSON double-escaping that broke the app-builder rcedit path.
- install.ps1 Set-DesktopExeIdentity invokes the script after the build,
before shortcuts. Best-effort: failure keeps the stock icon, never
fails the install. rcedit is a pure PE editor — no signtool, no
winCodeSign, no symlinks.
Verified locally: stamping a copy of the built Hermes.exe embeds the
32x32 icon and sets ProductName=Hermes.
Also fix update-path success-screen flash: in update mode the installer
hands off + exits in ~600ms, so don't route to the 'launch Hermes'
success view (it flashed before the window closed).
* update test
* fix(desktop): show 'hermes update' guidance for CLI installs instead of dead-end error
A user who installed via the CLI (irm|iex / install.sh) then ran
`hermes desktop` has no staged hermes-setup.exe, so clicking Update
in-app hit resolveUpdaterBinary()=null and showed a misleading error
('re-run the Hermes installer') with a Try-again button that could
never succeed — a dead loop for a perfectly valid install.
Treat the no-updater case as an intentional outcome, not a failure:
- main.cjs applyUpdates returns { ok:true, manual:true, command:'hermes update' }
(no throw, no 'error' stage) when no updater binary exists.
- New 'manual' update stage + apply-state.command thread the command to the UI.
- updates-overlay ManualView: a polished terminal-native card with the
exact command and a copy button, framed as the correct path for a CLI
user rather than an error.
GUI-installer users are unaffected — hermes-setup.exe present => seamless
auto-update runs as before. Zero new process orchestration; can't fail
the update demo.
* update test
* fix(gui): pin /api/hermes/update to the current branch
The desktop command-center 'update' action hits POST /api/hermes/update,
which spawned bare `hermes update` with no --branch. cmd_update then
falls back to its default (main) and checks the working tree OUT of the
tracked branch — a bb/gui install silently jumped to main and lost the
desktop CLI.
Resolve the checkout's current branch and pass --branch <current> from
this endpoint only. The engine default (main) is DELIBERATELY unchanged:
bare `hermes update` from a terminal, the gateway /update bot command,
and the CLI/TUI relaunch path all keep their long-standing 'update against
main' contract for the existing user base. Only the GUI button is scoped
to update-the-branch-you're-on. Detached HEAD / git failure falls back to
the bare default.
* update test
* fix(desktop): branch-pin the CLI manual-update command card
The 'Update from your terminal' card (shown to CLI installs with no staged
updater) hardcoded bare `hermes update` — which defaults to main and would
switch a bb/gui (or any non-main) checkout off-branch. Same bug we fixed for
the GUI button, leaked into the card's copy text.
Resolve the checkout's current branch and show `hermes update --branch
<current>` for non-main checkouts; keep it bare for main so the card stays
clean. Best-effort: bare fallback if branch detection fails. Matches the
GUI button + installer --update contract; bare terminal/bot/TUI update
paths still default to main, unchanged.
* docs: phragg was here
* feat(desktop): lead onboarding with Nous Portal + fix fresh-install detection (#34970)
- Feature Nous Portal as the primary onboarding card (Recommended tag,
app logo, single pitch line); collapse other OAuth providers behind an
"Other providers" disclosure whose open/closed state persists.
- Surface OpenRouter as a one-click API-key option inside the disclosure;
move "I have an API key" to a quiet bottom-right link.
- Treat "no provider configured" as a normal onboarding state, not a red
error banner (provider-setup-errors copy match).
- Fix setup.runtime_check: it reported ready when the resolved runtime had
an empty credential or only implicit Bedrock/IAM, so fresh installs never
saw onboarding. Now requires a usable credential.
- Auto-wire Windows fonts for WSL2 users so the renderer renders real
Segoe UI instead of the DejaVu fallback; make WSL detection env-independent
via the /proc kernel marker.
* feat(desktop): live elapsed timer on install bootstrap steps
The first-launch install overlay showed a static "Installing" with no
motion, so long steps (notably the repo clone) looked frozen. Stamp each
stage's start time on the running transition and tick once a second so the
active step shows live elapsed (e.g. "Installing · 1:23"), plus elapsed on
the overall current-step line. Completed steps keep their final duration.
* fix(desktop): resolve PortableGit for update checks + reserve titlebar tools space
- runGit() hardcoded spawn('git'), which ENOENTs on fresh installer-driven
Windows installs (git is PortableGit under %LOCALAPPDATA%\hermes\git, never
on PATH) — so "Check for updates" failed with "Couldn't check for updates".
Add resolveGitBinary() mirroring findGitBash (PortableGit → Git-for-Windows
→ PATH) and use it in runGit.
- PageSearchShell rendered a full-width search input in the titlebar row, so
on Windows its right edge slid under the fixed top-right tools + native
window controls. Reserve that footprint via --titlebar-tools-* vars.
* fix(desktop): stop streaming caret from shifting layout on completion
The streaming caret (::after on the running message's last child) was an
in-flow inline-block adding ~0.78em of inline width, which could wrap the
last line mid-stream; when the caret is removed on completion the line
un-wraps and reflows — the visible post-response layout shift. Net-zero its
inline advance with a compensating negative margin so it paints at the text
end without consuming layout width.
* fix(desktop): stop completed-message layout shift while streaming
The assistant message action bar used `hideWhenRunning`, which unmounts it
whenever the thread is streaming. Since the bar reserves vertical space in
each completed assistant message's footer (it's invisible-until-hover via
opacity, not via mount), unmounting it collapsed every prior turn by the
bar's height — then remounting on resolve grew them back, shifting the whole
conversation (visible as "padding appears above the last user message").
Drop hideWhenRunning so the footer height is constant; the bar stays
invisible during streaming via its existing opacity/pointer-events gating.
* fix(merge): keep windows-footgun suppressions inline
* fix(merge): keep remaining gateway footgun suppressions inline
* fix(merge): restore contracts caught by main-target CI
* fix(dashboard): honor injected HERMES_DASHBOARD_SESSION_TOKEN
The desktop shell mints a session token and signs its /api + /api/ws
calls with it via HERMES_DASHBOARD_SESSION_TOKEN, but the main-merge
restored a web_server.py that ignored the env var and minted its own
random _SESSION_TOKEN -- so every desktop request 401'd and the UI
reported "gateway offline". Read the injected token (fall back to a
fresh random one) so loopback HTTP + WS auth line up.
Adds a regression test so a future merge can't silently drop the read.
* fix(desktop): align fresh-install home so upgraders don't brick
Two related first-launch bugs on machines with a legacy ~/.hermes:
- install.ps1 hardcoded $HermesHome/$InstallDir to %LOCALAPPDATA%\hermes
and ignored the HERMES_HOME the desktop passes through. The desktop
freezes HERMES_HOME at module load and prefers a legacy ~/.hermes when
%LOCALAPPDATA%\hermes is absent, so the installer wrote to a different
home than the shell read -> "Could not connect to Hermes gateway". Honor
$env:HERMES_HOME in the param defaults.
- isBootstrapComplete() trusted the marker + checkout without verifying a
runnable venv, so an interrupted/split install spawned a dead backend
instead of re-bootstrapping. Also require the venv python to exist.
* fix(dashboard): allow packaged desktop file:// origin on loopback WS
The packaged Electron desktop loads its renderer over file://, so its
/api/ws handshake carries Origin: file:// (or null). The DNS-rebinding
WebSocket Origin guard only accepted http(s) origins matching the bound
host, so it rejected the desktop's own renderer with 4403 -> "Could not
connect to Hermes gateway" on macOS.
A browser DNS-rebinding attacker can only ever present an http(s) origin
(the site hosting the malicious page); it cannot forge file://, null, or
a custom app scheme AND hold the loopback session token. So on loopback
binds we now trust non-web origins -- the token in _ws_auth_ok remains
the real authenticator. Public/gated binds still reject them, and
cross-site http(s) origins are still rejected everywhere.
* fix(desktop): resolve renderer assets relative to BASE_URL
Absolute public asset paths (/apple-touch-icon.png, /ds-assets/...) work
under the dev server but break in the packaged app, where the renderer is
loaded from file://.../index.html and a leading slash resolves to the
filesystem root -> broken onboarding provider icon and backdrop image on
macOS. Prefix these with import.meta.env.BASE_URL so they resolve next to
the bundled index.html in both dev and packaged builds.
* feat(desktop): automate first-launch bootstrap on macOS/Linux
Previously a packaged macOS/Linux app with no Hermes install hit a
dead-end ("first-launch install is not yet automated -- run install.sh
manually") because install.sh lacked the staged protocol install.ps1
exposes. Now both platforms bootstrap on first launch with the same
structured, per-step progress UI as Windows.
- install.sh: add --manifest / --stage / --json / --non-interactive plus
a stage dispatcher (prerequisites, repository, venv, python-deps,
node-deps, path, config, setup, gateway, complete). User-input stages
(setup, gateway) are skipped under --non-interactive; the in-app
onboarding overlay owns API keys/model, matching the Windows flow.
Each stage runs inside the install dir (its own process) and a new
--commit flag pins the checkout to the build-stamp SHA.
- bootstrap-runner.cjs: drive the staged manifest/stage/JSON protocol for
both install.ps1 (PowerShell) and install.sh (bash), selected by
installer kind; removed the single-blob POSIX shim.
- main.cjs: drop the macOS/Linux unsupported-platform dead-end so the
bootstrap-needed path runs the installer on every platform.
* fix(dashboard): return 404 JSON for unmatched /api paths instead of SPA HTML
The SPA catch-all (serve_spa) served index.html for any unmatched GET,
including unregistered /api/* endpoints. A missing API route therefore
came back as <!doctype html> with status 200, and JSON clients (the
desktop app's fetchJson) crashed with an opaque
'SyntaxError: Unexpected token <' instead of a clear error.
- web_server.py: unmatched /api or /api/... now returns 404 JSON
('No such API endpoint'); non-api paths still serve the SPA for
client-side routing.
- main.cjs fetchJson: detect an HTML body / text/html content-type on a
2xx response and reject with a clear message naming the URL, rather
than a raw JSON.parse SyntaxError. Empty bodies resolve to null;
malformed JSON reports the URL plus a snippet.
* say 'OS appearance' instead of 'macOS appearance'
* feat(install): add --include-desktop stage + PowerShell-style flags to install.sh
Brings install.sh to parity with install.ps1's bootstrap surface so the
shared Rust/Tauri bootstrapper (apps/bootstrap-installer) can drive a
macOS/Linux install the same way it drives Windows.
- Accept the PowerShell-style aliases the bootstrapper emits to both
installers: -Commit / -Branch (alongside existing -Manifest / -Stage /
-Json / -NonInteractive).
- Add --include-desktop / -IncludeDesktop. When set, the manifest gains a
'desktop' stage (immediately before 'complete'), and a new install_desktop
runs a root workspace `npm install` + `npm run pack` (electron-builder
--dir, signing auto-discovery disabled) to produce release/mac*/Hermes.app
-- mirroring install.ps1's Install-Desktop / Stage-Desktop.
- The flag is opt-in, exactly like Windows: the signed bootstrap installer
passes it; the Electron app's own first-launch bootstrap and the CLI
one-liner omit it (building the desktop from inside the running app would
clobber it).
* fix: tts endpoints
* macOS desktop: install + in-app self-update (#35607)
* fix(installer): align macOS HERMES_HOME with the rest of the stack
paths.rs computed the macOS Hermes home as ~/Library/Application Support/
hermes, but nothing else does: hermes_constants.get_hermes_home() (Python),
scripts/install.sh, and the Electron desktop's resolveHermesHome() all use
~/.hermes on macOS. The drift meant the Tauri installer wrote the install to
one directory and the desktop looked for it in another, so a fresh GUI
install never found its backend (the file's own comment warned this exact
drift would break things). Use ~/.hermes on macOS to match.
* fix(install.sh): always emit a stage result frame on failure
Stage helpers (clone_repo, install_deps, check_python, …) were written for
the monolithic flow and call `exit 1` on failure. Under `--stage`, that
terminated the process before the JSON result frame was printed, so the
installer's parse_stage_result saw "no frame" instead of a clean
{ok:false,...} contract response. Run the stage body in a subshell so an
`exit` only unwinds the subshell and the parent still emits the frame.
* feat(install.sh): auto-provision git on macOS/Linux (parity with install.ps1)
install.ps1 downloads PortableGit on Windows, but install.sh just printed a
"please install git" hint and exited — so a fresh Mac with no developer tools
(no Xcode CLT → no git) couldn't get past the clone step. check_git now tries
to install git before bailing:
- macOS: Homebrew if present (headless), else `xcode-select --install`
(the CLT prompt also provides the compiler some wheels need), polling for
git to appear.
- Linux: apt/dnf/pacman via sudo when available.
Falls back to the manual instructions only if auto-provision fails.
* feat(desktop): in-app GUI+backend self-update on macOS/Linux
On Windows the staged Hermes-Setup binary drives updates (quit → hermes
update → hermes desktop --build-only → relaunch). The mac drag-install has no
such binary, so "Update now" previously just printed `hermes update`.
Since there's no venv-shim file lock on POSIX, the desktop can drive the whole
update itself. applyUpdates now, when no staged updater exists on mac/linux:
1. runs `hermes update --yes [--branch <current>]` (backend git pull + deps),
2. runs `hermes desktop --build-only` (OS-aware GUI rebuild) with the
Hermes-managed Node + venv on PATH,
3. spawns a detached swapper that waits for this process to exit, dittos the
freshly built Hermes.app over the running bundle, clears quarantine, and
relaunches.
Degrades to "backend updated — restart to load the new GUI" if the rebuild
fails or there's no .app bundle to swap (dev run, Linux AppImage).
* chore: uptick
* chore: uptick
* chore: linux build
* fix(install): detect xcode-select git stub on fresh macOS
* chore: bump
* fix(desktop): repair voice dictation on Windows
Voice dictation was broken on Windows in two ways:
1. Mic access was denied. The Electron permission request handler only
granted 'media' requests whose details.mediaTypes included 'audio',
but Chromium on Windows frequently fires the mic request with an empty
mediaTypes array, so getUserMedia threw NotAllowedError. The handler
now grants audio-capture when mediaTypes includes 'audio' OR is
empty/absent, handles the 'audioCapture' permission name, and adds a
setPermissionCheckHandler (the synchronous path Chromium also consults
for getUserMedia on Windows). Video is still denied.
2. Transcripts went nowhere. The composer's insertText handler (used by
dictation and other inserts) only updated the assistant-ui composer
store via setText, never the contentEditable editor DOM. The
draft->editor sync effect only re-renders the editor when it is NOT
focused, and dictation runs while the editor has/regains focus, so the
transcript was stored but never shown and could not be sent. insertText
now renders into the editor DOM and places the caret, mirroring
appendExternalText.
Also hardens fetchJson: a 2xx response with an HTML body (or text/html
content-type) now rejects with a clear message naming the URL instead of
an opaque JSON.parse 'Unexpected token <' error.
* feat(desktop): route Nous subscribers onto the Tool Gateway from the GUI
When the GUI sets the main provider to Nous via POST /api/model/set, call
the same apply_nous_managed_defaults the CLI uses after model selection, so
GUI/onboarding users land on the Nous Tool Gateway the same way CLI users do
— no separate prompt, no duplicated logic.
Purely additive: apply_nous_managed_defaults skips any tool where the user
has a direct key (FIRECRAWL_API_KEY, FAL_KEY, etc.) or explicit config, so it
never overwrites a user's own setup. Only unconfigured tools get routed.
- web_server.py: in set_model_assignment (scope=main, provider=nous), resolve
enabled toolsets and apply managed defaults; guarded so a Portal hiccup never
blocks saving the model. Returns routed tools as gateway_tools.
- onboarding.ts: surface a 'Tool Gateway enabled' toast listing routed tools.
- types/hermes.ts: add gateway_tools to ModelAssignmentResponse.
- tests: cover nous-applies, non-nous-skips, and failure-doesnt-block-save.
* feat(desktop): mirror hermes model free/paid curation in GUI onboarding
GUI onboarding picked models[0] from /api/model/options, which ignores the
Nous free/paid tier — a free user could land on a paid default (e.g.
anthropic/claude-opus-4). Now the recommended default mirrors what `hermes
model` does.
- web_server.py: new GET /api/model/recommended-default?provider=<slug>. For
Nous it runs the same curation as the CLI (get_curated_nous_model_ids +
pricing + check_nous_free_tier + union_with_portal_{free,paid}_recommendations
+ partition_nous_models_by_tier) so free users get a free model and paid users
get the curated default. Other providers fall back to the first curated model.
Never 500s — returns empty model on error so onboarding degrades gracefully.
- hermes.ts: getRecommendedDefaultModel client + RecommendedDefaultModel type.
- onboarding.ts: fetchProviderDefaultModel prefers the recommended endpoint,
falls back to models[0] when unavailable.
- tests: free-tier picks free model, paid-tier picks curated default, failure
returns empty without 500.
* feat(desktop): show model pricing + free/paid tier gating in GUI picker
The CLI `hermes model` picker shows per-model $/Mtok pricing and gates paid
models on free Nous accounts. The GUI picker showed bare model names. Bring it
to parity across both the model-picker dialog and onboarding confirm card.
Backend:
- inventory.build_models_payload gains a pricing=True flag → _apply_pricing
enriches each provider row with formatted per-model pricing
({input,output,cache,free}) via the same _format_price_per_mtok the CLI uses,
and for Nous adds free_tier + unavailable_models (paid models a free user
can't select) via check_nous_free_tier + partition_nous_models_by_tier.
Best-effort: any pricing/tier failure is swallowed and fails open (no gating).
- /api/model/options and TUI model.options now pass pricing=True so the
global picker and in-session picker both carry pricing.
Frontend:
- ModelOptionProvider gains pricing/free_tier/unavailable_models; new
ModelPricing type.
- model-picker dialog renders In/Out $/Mtok (or a Free pill) per model, a
Free tier/Pro badge on the Nous heading, and disables + grays unavailable
paid models for free users with a 'Pro models need a paid subscription' note.
- onboarding confirm card shows the chosen model's price + tier badge.
Tests: test_inventory_pricing covers price formatting, free-tier gating,
paid no-gating, providers without pricing, and swallowed failures.
* fix(desktop): GUI model picker shows curated Nous list in curated order
Two bugs made the GUI Nous model list diverge from the `hermes model` CLI picker:
1. Backend (model_switch.py): the Nous row in list_authenticated_providers
fell through to cached_provider_model_ids("nous"), dumping the full live
/v1/models catalog (~50 vendor-prefixed models, alphabetical). Now it uses
the curated list AND applies the Portal free/paid recommendation union —
exactly like _model_flow_nous in main.py — so newly-launched models such as
stepfun/step-3.7-flash:free surface in curated order. Best-effort: falls
back to the curated list alone if the Portal fetch fails.
2. Frontend (model-picker.tsx): cmdk's Command had shouldFilter on (default),
which re-sorts items by fuzzy-match score (≈alphabetical) and ignores array
order. Set shouldFilter={false} + own the search term and do an
order-preserving substring filter, so the backend's curated order is shown
verbatim.
* feat(desktop): add/switch providers from the model picker via onboarding reuse
The model picker could only select models from already-authenticated
providers. Switching to a new provider had no in-app path. Rather than
duplicate provider UI, reuse the existing onboarding provider selector
(featured Nous + other providers + API-key form + device-code/PKCE flow +
model-confirm with pricing/tier).
- onboarding store: add a 'manual' flag with startManualOnboarding() /
closeManualOnboarding(). Manual mode forces the onboarding overlay to show
even when configured===true and refreshOnboarding no longer auto-dismisses
on runtime-ready (the app is already working — the user is just adding or
switching a provider).
- onboarding overlay: render when manual even if configured; show a Close
button (the first-run flow has none since the app can't run yet).
- model picker: 'Add provider' footer button opens the onboarding selector;
ModelResults lists only configured (model-bearing) providers.
* feat(desktop): add PUT /api/tools/toolsets/{name} enable/disable endpoint
* feat(desktop): add toggleToolset RPC binding
* feat(desktop): toolset enable/disable switch in Tools settings
* feat(desktop): tool configuration parity in GUI Tools settings
Bring the desktop GUI Tools settings to parity with the CLI `hermes tools`
for provider selection and API-key configuration.
Backend (hermes_cli/web_server.py):
- GET /api/tools/toolsets/{name}/config - provider matrix + key status
- PUT /api/tools/toolsets/{name}/provider - persist provider selection
Shared core (hermes_cli/tools_config.py):
- Extract apply_provider_selection / _write_provider_config from the
interactive _configure_provider so the CLI and GUI write identical
config keys (web.backend, tts.provider, browser.cloud_provider, plugin
image/video providers, use_gateway flags) through one code path.
Desktop UI:
- ToolsetConfigPanel: provider list with select, per-provider API-key
entry (set/replace/clear/reveal via the shared env RPCs), Ready/Needs
keys state, guidance for Nous-auth and post-setup providers.
- Wire the Configured/Needs keys pill to expand the panel inline; refresh
the toolset list after key changes so the pill updates live.
- Add getToolsetConfig / selectToolsetProvider RPC bindings + types.
Post-setup (OAuth/install) flows still defer to the CLI; see
docs spike findings for the planned /api/tools/setup/* endpoint family.
Tests: backend round-trip + 400 cases for the new endpoints and
apply_provider_selection; desktop vitest coverage for the config panel
(provider render, select, key save). No change-detector tests.
Also removes three stale completed plan docs.
* fix(desktop): show real Hermes version + sync package.json on release
The desktop app version was disconnected from the Hermes version: the
release script bumped pyproject.toml + hermes_cli/__init__.py but never
touched apps/desktop/package.json, which sat stale at 0.0.2 (lockfile at
0.0.1).
- main.cjs: hermes:version IPC now resolves __version__ from
hermes_cli/__init__.py (the canonical source release.py bumps) via a new
resolveHermesVersion() helper, falling back to app.getVersion() when the
source tree isn't readable. The About panel now always shows the live
Hermes version and can't drift.
- release.py: update_version_files() also bumps apps/desktop/package.json
in lockstep with pyproject (top-level version only; dep specs untouched).
- One-time catch-up: package.json 0.0.2 -> 0.15.1 and the lockfile root
mirrors 0.0.1 -> 0.15.1.
* fix(desktop): stamp exe identity in afterPack hook so updates stay branded
The packed Hermes.exe reverted to the stock Electron icon + "Electron" name
after an in-app update. The icon/identity stamp (rcedit) lived only in
install.ps1, but the installer's --update path rebuilds the desktop via
`hermes desktop --build-only` -> `npm run pack`, which never ran install.ps1
and so never stamped the rebuilt exe.
Move the stamp into an electron-builder afterPack hook so it runs for EVERY
packed build regardless of caller (first install, hermes desktop, the update
rebuild, or a manual npm run pack):
- set-exe-identity.cjs: refactor to export stampExeIdentity(exe, desktopRoot);
still runnable as a standalone CLI.
- after-pack.cjs (new): afterPack hook calling stampExeIdentity. Windows-only
guard; best-effort (logs + resolves on failure, never fails the build).
- package.json: register build.afterPack.
- install.ps1: remove the now-redundant Set-DesktopExeIdentity function + call;
the hook handles it during npm run pack.
electron-builder's own rcedit step stays disabled (signAndEditExecutable=false)
to avoid the signtool -> winCodeSign -> 7-Zip macOS-symlink crash on non-admin
Windows; the hook runs rcedit directly (pure PE resource edit, no signing).
* fix(desktop): export afterPack hook as exports.default so electron-builder runs it
The afterPack hook used `module.exports = fn`, which electron-builder's hook
loader doesn't pick up — it expects the function as the module's default
export (the same shape afterSign/notarize.cjs uses). The hook silently never
ran, so even first install shipped the stock "Electron" exe.
Switch to `exports.default = async function afterPack(...)`. Verified with a
real `npm run pack`: electron-builder now invokes the hook and the produced
release/win-unpacked/Hermes.exe carries ProductName/FileDescription=Hermes.
* chore(desktop): drop auto-build release CI in favor of manual build + upload
Remove desktop-release.yml (nightly-on-main + stable publish). Installers
are now built locally per platform and uploaded to a GitHub Release by hand;
the website points at them via NEXT_PUBLIC_HERMES_DL_* env. Update README +
docs and drop the dead desktop-nightly channel links.
* fix(desktop): stable shortcut icon + bust icon cache so updates repaint
Symptom on a freshly-installed laptop: Hermes.exe itself shows the correct
Hermes icon (Explorer reads the live exe's stamped PE resource), but the
desktop shortcut still draws the stock Electron icon.
Cause: New-DesktopShortcuts set IconLocation to "<exe>,0", so Windows cached
the icon it extracted from the exe at shortcut-creation time. On an update the
exe gets re-stamped, but the shortcut keeps rendering the stale cached bitmap.
- package.json: ship assets/icon.ico beside the exe via extraResources
(-> resources/icon.ico). Verified with a real npm run pack.
- install.ps1 New-DesktopShortcuts: point IconLocation at resources/icon.ico
(fallback to <exe>,0 if absent) — a dedicated .ico is cache-stable and skips
the per-exe extraction that goes stale. Then run `ie4uinit.exe -show` to bust
the shell icon cache so the shortcut repaints immediately instead of showing
the old Electron icon until reboot.
Both best-effort; never fail an otherwise-good install.
* dummy update
* feat(desktop): self-heal update branch + backend contract guard
Two fixes for the bb/gui→main transition:
- Self-update self-heals: if the tracked branch (e.g. bb/gui) no longer
exists on origin (merged + deleted), the desktop updater falls back to
main and persists it. Read-only ls-remote probe that only flips on a
definitive "ref absent" (exit 2), never on a transient network error, so
already-installed clients migrate themselves with no manual flip.
- Backend contract guard: tui_gateway reports DESKTOP_BACKEND_CONTRACT in
session runtime info; the desktop warns with a one-click "Update Hermes"
when the backend predates the GUI's required contract (e.g. a bb/gui app
pointed at a main checkout) instead of failing cryptically downstream.
* docs(desktop): rewrite README to match current install/update/build flow
The old README contradicted itself (claimed a bundled Python payload while
also saying it no longer bundles source) and predated cross-platform support.
Rewrite for accuracy: Linux is a first-class build target, install.sh/install.ps1
both drive the staged bootstrap, the real self-update handoff (Windows
Hermes-Setup vs in-app macOS/Linux), and the bb/gui→main self-heal + backend
contract guard.
* docs(desktop): rewrite README as a real product readme
Lead with what the app is and how to get it (download an installer, or
`hermes desktop` for existing CLI users) plus a plain-language feature list,
then keep contributor/build/internals as a clearly separated secondary section.
* docs(desktop): fix install framing — releases no longer auto-build installers
Lead with the install-with-Hermes path (`--include-desktop` / `hermes desktop`),
which always works, and describe prebuilt installers as manually published when
a release ships them rather than implying CI attaches them to every release.
* docs(desktop): match base repo README style
Adopt the root README's conventions: centered title + badge row, bold
one-liner intro, a feature <table> grid, --- section dividers, and a
Community / License footer.
* feat(desktop): recover from gateway boot failures + validate API keys on entry (#35864)
Fresh installs that hit a gateway boot failure had no recovery path: the
shell rendered dead ("gateway offline"), logs were undiscoverable, and a
mistyped API key was accepted because onboarding only checked credential
presence, not validity.
- Add BootFailureOverlay: a top-level recovery surface (Retry, Repair
install, Use local gateway, Open logs + inline recent logs) that mounts
on any hard boot failure, including post-install. Trims the now-redundant
recovery button from the onboarding Preparing panel.
- Add hermes:logs:reveal / :recent IPC (reveal desktop.log) and a
hermes:bootstrap:repair IPC that drops the bootstrap marker to force a
clean reinstall. Surface "Open logs" in Gateway settings too.
- Add POST /api/providers/validate: a live per-provider probe
(OpenRouter/OpenAI/xAI/Gemini key check, local endpoint connectivity)
wired into saveOnboardingApiKey so a rejected key blocks before it's
persisted, while an unreachable probe falls through (offline-safe).
* test(model-catalog): fix stale nous picker test after curated-list change
ac2e48907 made the GUI/picker Nous row use the curated list (curated["nous"]
= get_curated_nous_model_ids()) + Portal union, matching the `hermes model`
CLI — but test_picker_nous_row_uses_manifest still asserted the old 2-model
manifest snapshot, breaking the test shard.
Rewrite it as an invariant: stub the Portal union to passthrough and assert the
row equals get_curated_nous_model_ids() computed under the same conditions, so
it tracks the real contract instead of a hardcoded model list that rots on every
catalog update.
---------
Co-authored-by: emozilla <emozilla@nousresearch.com>
Co-authored-by: Copilot Autofix powered by AI <62310815+github-advanced-security[bot]@users.noreply.github.com>
Co-authored-by: Austin Pickett <pickett.austin@gmail.com>
Co-authored-by: Cursor <cursoragent@cursor.com>
Co-authored-by: ethernet <arilotter@gmail.com>
Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
The status bar read context_compressor.last_prompt_tokens directly with
an 'or 0' guard that only catches 0/None. Right after a compression the
compressor parks last_prompt_tokens at the -1 sentinel
(awaiting_real_usage_after_compression) until the next API call reports
real usage. -1 is truthy, so it sailed through and rendered as '-1/200K'
and '-1%' for that one transitional turn.
Clamp negative token/context-length values to 0 in the status-bar
snapshot so the gap reads as empty context until real usage arrives.
* feat(kanban): goal_mode cards run workers in a /goal loop
A goal_mode card wraps its dispatched worker in the Ralph-style goal
loop behind /goal: after each turn an auxiliary judge checks the
worker's response against the card title+body, and if not done the
worker keeps going in the SAME session until the judge agrees, the
worker terminates the task itself, or the turn budget runs out (which
blocks the card for human review — never a silent exit).
- kanban_db: goal_mode + goal_max_turns columns (additive migration),
Task fields, create_task params, INSERT wiring, created-event payload.
- kanban_tools: goal_mode/goal_max_turns on the kanban_create tool so
orchestrators can opt cards in when fanning out.
- kanban CLI: --goal / --goal-max-turns on 'kanban create'.
- dashboard API: goal_mode/goal_max_turns on the create endpoint
(auto-surfaced back via asdict).
- _default_spawn: sets HERMES_KANBAN_GOAL_MODE / _GOAL_MAX_TURNS only
when the card opts in.
- goals.run_kanban_goal_loop: standalone, callback-injected loop engine
(no SessionDB persistence; ephemeral worker). cli.py quiet path calls
it after the worker's first turn when the env vars are set.
- Docs: orchestrator skill + kanban feature page.
Tests: DB roundtrip + legacy migration, spawn env gating, and the loop's
continuation/completion/budget-block/finalize-nudge branches. E2E run
against a real kanban DB confirms a budget-exhausted goal worker lands
in a sticky blocked state.
* feat(kanban/dashboard): goal-mode toggle in the create form
Wires the goal_mode card setting into the dashboard UI (the plugin's
hand-written IIFE bundle, no build step):
- InlineCreate: 'goal mode' checkbox after the skills field; checking it
reveals an optional 'max turns' number input. Both reset on submit and
only post goal_mode/goal_max_turns when enabled.
- TaskDrawer: a 'Goal mode: on (max N turns)' MetaRow so a card's
goal-mode setting is visible after creation (auto-fed by asdict via the
existing _task_dict).
Live-tested through the running dashboard with a browser: created a
goal-mode card with max-turns=8, confirmed it persisted to the kanban DB
(goal_mode=1, goal_max_turns=8) and rendered back in the drawer as
'on (max 8 turns)'. No JS console errors.
Over SSH the OSC 11 background-color query round-trip routinely exceeds
the 100ms read budget, so _query_osc11_background() gives up and the late
reply lands after prompt_toolkit has grabbed the tty. prompt_toolkit then
injects the OSC payload as typed text and reads its BEL terminator
(\x07 = Ctrl+G) as a keystroke — Ctrl+G is the open-external-editor
binding, dropping the user into vi with garbage and no obvious way out.
- Skip the OSC 11 probe on remote sessions (SSH_CONNECTION/CLIENT/TTY);
fall back to COLORFGBG / env hints / the dark default.
- Restore the tty with TCSAFLUSH instead of TCSANOW so any partial/late
reply is scrubbed from the input buffer before pt reads it.
handle_enter dispatches /steer and /model inline on the UI thread while
the agent is running, calling buffer.reset() then returning. Unlike every
other early-return branch in the handler, these two skipped
event.app.invalidate(). process_command() prints through patch_stdout
(scrolls output above the prompt without redrawing the input line), so the
just-cleared input area could keep showing the submitted '/steer <text>'
until an unrelated redraw fired — looking unsent and inviting an accidental
re-submit.
Add event.app.invalidate() after reset in both inline branches to match
the sibling branches. AST regression test pins the invariant: every
reset-then-return branch in handle_enter must invalidate first.
Fixes#34569
Adds a user-chosen compression boundary to the existing /compress command.
/compress here [N] summarizes everything except the most recent N exchanges
(default 2), which are preserved verbatim — letting the user pick the
compression boundary instead of relying on the automatic token-budget heuristic.
Inspired by Claude Code's Rewind 'Summarize up to here' action (v2.1.139,
Week 20, May 2026): https://code.claude.com/docs/en/whats-new/2026-w20
- hermes_cli/partial_compress.py: pure split/parse helpers + seam-alternation
guard (shared by CLI and gateway).
- cli.py / gateway/run.py: route 'here [N]' / '--keep N' to partial compression;
compress only the head, re-append the verbatim tail through the seam guard.
- Preserves message-flow role alternation (seam guard merges any illegal
user->user / assistant->assistant adjacency).
- Reuses the existing _compress_context session-rotation/lock machinery — no
changes to the compression core.
- Bare /compress (full) and /compress <focus> behavior unchanged.
Tests: 12 helper unit tests + 5 CLI integration tests + E2E (interleaved
tool-call transcript, degenerate/multimodal seams, real handler path).
A bare `/resume` printed the recent-sessions list but armed no selection
state, so typing just `3` on the next line was sent to the agent as chat
instead of resuming session #3. `/resume 3` worked, but the natural
list-then-pick flow did not.
Arm a one-shot pending-resume prompt when bare `/resume` shows the list,
and consume the next bare numeric input as the selection (out-of-range is
reported, non-numeric/other commands disarm it). Resolves against the same
_list_recent_sessions(limit=10) list used everywhere else.
Closes#34584.
* docs(code-execution): document HERMES_* env narrowing + passthrough workaround
The execute_code sandbox-child env scrub (108397726, #27303) deliberately
dropped the broad HERMES_ prefix passthrough, keeping only an operational
4-var allowlist (HERMES_HOME/PROFILE/CONFIG/ENV). A script that relied on a
non-secret HERMES_* var (HERMES_BASE_URL, HERMES_KANBAN_DB, HERMES_*_WEBHOOK,
or a plugin-defined one) now sees it unset in the child.
Document the behavior change and the two recovery routes (terminal.env_passthrough
in config.yaml, or required_environment_variables in skill frontmatter), plus
the debug log line that surfaces the drop for diagnosis.
* fix(cli): clarify panel clips choices off-screen on short terminals
The clarify multiple-choice panel is a height-less Window inside a
non-full-screen HSplit. When its content exceeds the viewport,
prompt_toolkit distributes height per child and clips the panel's tail
— where the choices live — so options render invisible/cut off (issue
#34645, reported on macOS Terminal.app).
Two budget-accounting bugs let the panel overflow:
- the compact-chrome decision ignored the question rows, so full chrome
(3 blank separators) was kept even with no room
- the '… (question truncated)' marker was not counted against the
question's row budget, overshooting by one row at a 1-row budget
Fix: reserve one question row in the compact decision, count the
truncation marker against the budget, and drop the question entirely
when the choices alone already exceed the viewport (choices are the
must-see content for a selection).
Ghostty/macOS window or tab navigation (Cmd+Shift+[ / ], Alt+Tab,
etc.) can deliver terminal focus reports (CSI I / CSI O) to the
running TUI. prompt_toolkit does not map those sequences by default,
so its parser falls back to literal key presses (ESC, [, I/O) and
inserts `[I` / `[O` into the prompt buffer after the ESC byte is
handled.
Fix: register the two sequences as Keys.Ignore in ANSI_SEQUENCES at
parser level, plus a no-op kb.add(Keys.Ignore) handler so the
default self-insert path never inserts focus-report bytes.
Salvage notes: original PR put the helper in cli.py. Salvaged into
hermes_cli/pt_input_extras.py alongside install_shift_enter_alias /
install_ctrl_enter_alias to match the established pattern for
ANSI_SEQUENCES augmentation. setdefault → in-check so any prior user
registration wins.
Closes#16780
The cleanup-fix in the previous commit handles the graceful-exit leak: a
Hermes process that runs ``atexit`` will now actually wait on the docker
stop/rm worker thread, so containers either survive (persist mode) or are
fully removed (opt-out mode) by the time the interpreter exits.
But ``atexit`` doesn't fire on SIGKILL, OOM-kill, or terminal-window
close. Containers from those exits stay parked with no surviving Python
process to reuse or remove them, so they accumulate until the operator
intervenes with ``docker rm -f``. The cleanup-fix doesn't help this class
— there's no live cleanup() to fix.
This commit adds the safety net: a startup orphan reaper that runs once
per Hermes process and removes long-Exited hermes-labeled containers
that the prior commit couldn't reach.
Implementation:
* New ``reap_orphan_containers()`` in ``tools/environments/docker.py``.
Filters: ``label=hermes-agent=1`` + ``status=exited`` + (optional)
``label=hermes-profile=<current>``. Per-container ``docker inspect``
parses ``State.FinishedAt`` (with nanosecond-precision trimming for
Python's microsecond-bound ``fromisoformat``); containers older than
the threshold get ``docker rm -f``'d. The ``status=exited`` filter is
load-bearing — a running container may belong to a sibling Hermes
process whose reuse path will pick it up; killing it would crash the
sibling mid-command. Single-container failures are logged and the
sweep continues to the next candidate.
* New ``_maybe_reap_docker_orphans()`` helper in
``tools/terminal_tool.py``. Wired into ``_create_environment()`` for
``env_type == "docker"``. Gated by:
- ``terminal.docker_orphan_reaper: true`` (default; opt-out for
operators running multiple Hermes processes in the same profile
who don't trust the conservative defaults)
- ``_docker_orphan_reaper_ran`` module flag with double-checked
locking — parallel subagents and RL rollouts don't trigger N
concurrent docker ps storms
- Age threshold = ``2 × TERMINAL_LIFETIME_SECONDS`` with a 60s floor
(so ``TERMINAL_LIFETIME_SECONDS=0`` doesn't race the user's own
setup)
- Profile scoping — a research profile NEVER reaps the default
profile's stragglers
- Exception swallow — a janitor failure must never block container
creation
* New config ``terminal.docker_orphan_reaper`` wired through all four
config-bridge sites (cli.py, gateway/run.py, hermes_cli/config.py,
tests/conftest.py) and pinned by
``test_docker_orphan_reaper_is_bridged_everywhere``.
Coverage:
* 9 new unit tests in test_docker_environment.py — happy path, recent-
container sparing, profile scoping, unparseable-timestamp safety,
docker-ps-failure handling, partial-failure continuation, nanosecond
timestamp parsing, zero-value FinishedAt rejection.
* 6 new integration tests in test_docker_orphan_reaper_integration.py
— once-per-process gate, disable-flag respected, lifetime doubling
with 60s floor, current-profile filter wiring, exception swallow.
* 1 new bridge-invariant regression test.
Closes#20561 (combined with the two prior commits on this branch).
The Docker backend docs claim "Single persistent container — ONE long-
lived container shared across sessions, /new, /reset, and delegate_task
subagents. Stopped/removed on shutdown." In practice the code only
honored that contract within a single Python process via the in-memory
\`_active_environments[task_id]\` cache. Every \`hermes chat\` invocation
spawned a fresh \`hermes-<hex>\` container; older containers piled up in
\`Exited\` state and accumulated until manual \`docker rm\` (issue #20561).
Three root causes, all addressed by this commit:
1. No cross-process container discovery.
2. \`cleanup()\` used fire-and-forget \`subprocess.Popen("... &", shell=True)\`
which raced with parent-process exit — when Python exited promptly the
detached shell child got killed mid-\`docker stop\`, leaving stopped
containers behind.
3. The \`docker rm\` step in cleanup was gated on \`not self._persistent\`
(the bind-mount-persistence flag). Default config sets
\`container_persistent: true\`, so the default happy path skipped \`rm\`
entirely — even when the user explicitly didn't want cross-process
reuse, containers leaked.
Fix:
* Add \`DockerEnvironment.__init__(persist_across_processes=True)\`. When
true, init probes
\`docker ps -a --filter label=hermes-agent=1
--filter label=hermes-task-id=<task>
--filter label=hermes-profile=<profile>\`
and reuses a matching container (running → attach; stopped →
\`docker start\` → attach; \`docker start\` failure → fall through to a
fresh \`docker run\`). Multiple matches prefer the running one, with the
stragglers left for the orphan reaper (next commit) to clean up.
* Rewrite \`cleanup()\`. Uses \`subprocess.run(..., timeout=30)\` on a
daemon \`threading.Thread\`, not the racy \`Popen(... &)\`. The
\`_persistent\` guard is dropped on the \`rm\` step — \`rm\` now runs
whenever \`persist_across_processes\` is false, regardless of the
bind-mount-persistence setting. The leak class is gone in all
combinations.
* Add \`wait_for_cleanup(timeout)\`. \`tools/terminal_tool.py\`'s atexit
hook calls this on every active env, blocking up to 15s for the
cleanup thread before interpreter exit. Without this, \`hermes /quit\`
raced the daemon-thread teardown and dropped the stop/rm work.
* New config \`terminal.docker_persist_across_processes\` (default
\`true\` — restores the documented contract). Set \`false\` for hard
per-process isolation. Wired through all four config-bridge sites
(cli.py env_mappings, gateway/run.py _terminal_env_map,
hermes_cli/config.py _config_to_env_sync, tests/conftest.py env-strip
list); regression-pinned by
\`test_docker_persist_across_processes_is_bridged_everywhere\` matching
the existing pattern for docker_run_as_host_user / docker_env.
Reuse intentionally does NOT compare image / mounts / resources — only
the labels. Operators changing those settings should set
\`docker_persist_across_processes: false\` (or \`docker rm -f\` the
labeled container) to force a fresh start. This keeps the probe cheap
and the failure mode obvious.
Coverage: 12 new unit tests in tests/tools/test_docker_environment.py
covering reuse paths (running, stopped, fallback, opt-out, duplicate
preference) and cleanup behavior (persist-mode no-rm, opt-out always-rm,
no-Popen, wait_for_cleanup semantics, partial-init safety). Plus one
config-bridge regression pin.
Refs #20561
Kanban workers now scan the task body for local image paths and
http(s) image URLs and attach them to the worker's first user turn —
matching the CLI/gateway behaviour for inbound images. Before, a
user pasting `/home/me/screenshot.png` or `https://example.com/img.png`
into a kanban task description had it sent to the model as plain
text and the pixels were never seen.
How it works:
* agent/image_routing.py gains extract_image_refs(text) → (paths, urls)
that mirrors gateway/platforms/base.py:extract_local_files (absolute /
~-relative paths, image extensions only, ignores fenced/inline code).
* build_native_content_parts() accepts an optional image_urls= kwarg
and emits passthrough image_url parts for remote URLs alongside the
base64 data: URLs used for local paths.
* cli.py (single-query/quiet branch — the path every dispatcher-spawned
worker takes) detects HERMES_KANBAN_TASK, reads the task body via
kanban_db.get_task, runs extract_image_refs, and threads the results
into the existing image-routing decision (native vs text). Best-effort:
enrichment failures never block worker startup.
Tested:
* tests/agent/test_image_routing.py — 22 new tests for extract_image_refs
and URL pass-through in build_native_content_parts.
* tests/hermes_cli/test_kanban_worker_image_extraction.py — 10 new tests
driving real kanban_db round-trip (create task → read body → extract
refs → build parts).
* E2E: created a fake kanban task with a body referencing both a local
PNG and an https URL; verified the worker pipeline produces a
multimodal user turn with 1 text part + 2 image_url parts (data URL
for the local file, passthrough URL for the remote).
The CLI's in-chat `/yolo` toggle mutated `os.environ["HERMES_YOLO_MODE"]`
but had no effect because `tools/approval.py:_YOLO_MODE_FROZEN` captures
that env var once at module-import time (a deliberate security floor that
keeps prompt-injected skills from flipping the bypass mid-run). By the
time the user reaches `/yolo` in a running CLI session, `tools.approval`
has already been imported, so the env flip after that is a silent no-op.
Result: `/yolo` advertised "⚠ YOLO" in the status bar while every
dangerous command still hit the approval prompt or got denied. Only
`hermes --yolo` (set before tool imports), `HERMES_YOLO_MODE=1 hermes ...`,
and `hermes config set approvals.mode off` actually bypassed.
This patches the CLI to match what the gateway and TUI `/yolo` handlers
already do, plus mirrors the TUI's session-rename YOLO transfer:
* `_toggle_yolo()` now calls `enable_session_yolo(self.session_id)` /
`disable_session_yolo(self.session_id)` instead of touching the env
var. Matches `gateway/run.py:_handle_yolo_command` and the
`tui_gateway/server.py` key=="yolo" branch.
* Around each `run_conversation()` call, `run_agent()` now binds
`set_current_session_key(self.session_id)` so
`tools.approval.is_current_session_yolo_enabled()` resolves against
the same key the toggle writes under, and resets it in `finally` so
reused threads don't see stale identity. Matches the
`tui_gateway/server.py` and `gateway/platforms/api_server.py` binding
pattern.
* New `_transfer_session_yolo()` helper carries YOLO bypass state
across `self.session_id` reassignments — `/branch` forking into a
new session id and the auto-compression sync that rotates into a
fresh continuation session id. Without this, the same UX failure
mode the rest of this fix addresses (silent `/yolo` no-op) would
reappear after a single `/branch` or auto-compression event.
Mirrors `tui_gateway/server.py` ~line 1297-1305.
* New `_is_session_yolo_active()` helper replaces the two
`bool(os.getenv("HERMES_YOLO_MODE"))` reads in the status-bar
builders, so the badge reflects the actual bypass state. Uses
`getattr(self, "session_id", None)` so status-bar test fixtures
that bypass `__init__` via `HermesCLI.__new__(HermesCLI)` don't
trip `AttributeError` (the builders swallow exceptions silently
and lose every field after the failure). Still honors
`_YOLO_MODE_FROZEN` so `hermes --yolo` keeps lighting it up.
The `_YOLO_MODE_FROZEN` security freeze is preserved — env-var-based
opt-in still only works when set before process start, which is the
documented contract for `--yolo` / `HERMES_YOLO_MODE`.
Closes#33925
The single-query signal handler in cli.py raises KeyboardInterrupt on
SIGTERM/SIGHUP. For interactive 'hermes chat -q' that unwinds the main
thread cleanly. For kanban workers spawned by the dispatcher, the
worker process is likely to have a non-daemon thread alive (terminal
_wait_for_process, custom plugins, etc.). With KeyboardInterrupt only
the main thread unwinds; the non-daemon thread keeps the process alive,
the gateway has already restarted, and the dispatcher's _pid_alive
check returns True forever — task stuck in 'running' indefinitely.
When HERMES_KANBAN_TASK is set (dispatcher-spawned worker), flush
logging + stdout/stderr, then os._exit(0) instead of raising
KeyboardInterrupt. The kernel reclaims the PID immediately, and the
existing zombie-state detection in _pid_alive flips the task to
crashed on the next dispatcher tick. detect_crashed_workers then
re-spawns it on the following tick — no manual recovery needed.
A SIGALRM(2s) deadman is armed before the flush so a pathological
blocking-I/O flush can't wedge the worker forever. In practice the
reporter measured flush in <1ms; the alarm is a failsafe, never
the common path.
Interactive (non-kanban) chat -q is unchanged — the env-gated branch
only fires for dispatcher-spawned workers.
Live verification on this machine:
- Without HERMES_KANBAN_TASK + non-daemon thread alive: process hangs
alive 4+ seconds after SIGTERM. Dispatcher's _pid_alive returns
True → task stuck.
- With HERMES_KANBAN_TASK + same non-daemon thread: process exits in
0.10s via os._exit(0). Dispatcher reclaims on next tick.
Tests:
- tests/hermes_cli/test_signal_handler_kanban_worker.py (3 cases):
end-to-end subprocess test with a non-daemon thread,
HERMES_KANBAN_TASK env, SIGTERM, dispatcher-style _pid_alive check.
Plus a source-level invariant test catching future refactors that
drop the env-gated exit.
- 452/452 kanban tests pass.
Co-authored-by: andrewhosf <andrewho.sf@gmail.com>
* fix(model picker): unify /model and `hermes model` model lists, add disk cache
The /model slash picker and `hermes model` were drifting apart. /model
read the raw static `OPENROUTER_MODELS` list (31 entries, including 5
that fail at runtime — no tool-call support or absent from live catalog),
while `hermes model` ran the same list through the live OpenRouter
/v1/models tool-support filter and showed 26 valid entries. Same problem
existed for every other authed provider: /model used curated static
lists, `hermes model` used live /v1/models.
Unifies both surfaces on `provider_model_ids()` and adds a generic
disk-cached wrapper so the picker stays snappy.
Changes
- hermes_cli/models.py: new `cached_provider_model_ids()` —
~/.hermes/provider_models_cache.json, 1h TTL, per-provider entries
keyed by credential fingerprint (env vars + OAuth file mtimes).
Stale-data-beats-no-data on transient failures. Pair with
`clear_provider_models_cache(provider=None)`.
- hermes_cli/models.py: `provider_model_ids("nous")` now falls back
to the docs-hosted manifest (not the in-repo snapshot) when the live
Portal /models call fails — preserves the model_catalog regression
guarantee while still going through the unified pathway.
- hermes_cli/model_switch.py: `list_authenticated_providers` routes
sections 1, 2, and 2b through `cached_provider_model_ids(slug)` with
curated fallback when the live fetcher comes up empty.
- hermes_cli/model_switch.py: `parse_model_flags` extended to a
4-tuple, parses `--refresh`.
- cli.py / gateway/run.py / tui_gateway/server.py: updated unpacking;
CLI + gateway wire `--refresh` to `clear_provider_models_cache()`.
- hermes_cli/main.py: `hermes model --refresh` argparse flag.
- hermes_cli/commands.py: `/model` args_hint advertises `--refresh`.
- tests/hermes_cli/test_inventory.py: refresh stale comment.
Live PTY parity verification
- /model → OpenRouter row: `(26 models)` (was 31, with broken entries)
- `hermes model` → OpenRouter: 26 models (unchanged)
- The 5 dropped entries: `pareto-code` (no tool-call support),
`gemini-3-pro-image-preview` (no tool-call support),
`elephant-alpha`, `hy3-preview:free`, `ring-2.6-1t:free` (gone
from OpenRouter's live catalog).
Live PTY timing
- First /model open, empty cache: 4624 ms (full network round trip
across every authed provider)
- Second /model open, warm cache: 51 ms (90× faster)
- `/model --refresh` clears the disk cache and re-fetches.
Cache schema (~/.hermes/provider_models_cache.json, ~3 KB):
{ "anthropic": {"fp": "<sha256:16>", "at": 1748..., "models": [...]},
... }
Targeted tests: tests/hermes_cli/ + gateway model tests + tui_gateway —
5855/5855 pass.
* fix(model picker): use blake2b for cache fingerprint to silence CodeQL
py/weak-sensitive-data-hashing flagged the sha256 call in
_credential_fingerprint() as a high-severity alert because the input
includes env var values whose names contain *_API_KEY / *_TOKEN.
The hash is used solely as a cache-bust identity — never reversed, never
stored, collisions are harmless (worst case: cache miss → live re-fetch).
blake2b serves the same purpose and isn't flagged by this rule.
Functional behavior identical: 16-hex-char digest, cache hit/miss logic
unchanged. Live re-verified — 26 OpenRouter models, warm-cache 78ms.
* docs(voice): use `uv pip install faster-whisper` in STT install hints
Three runtime messages told users to `pip install faster-whisper`
(reported in #29782 for the gateway STT failure message under
Telegram-in-Docker, where the user hit `bash: pip: command not
found`). The Hermes Docker image is built on `ghcr.io/astral-sh/uv`
with a uv-managed venv that doesn't ship `pip` on PATH; users on
modern `uv tool install` / `uv venv` installs see the same problem.
The canonical install command in this repo is `uv pip install`
(see `tools/lazy_deps.py:509` `feature_install_command()`), which
works in Docker (uv image), in `uv tool install` venvs, and in
pip-based venvs that already have uv on PATH.
Changed three locations to match:
- `gateway/run.py` — Telegram/Discord/Slack/WhatsApp/etc. voice
reply when no STT provider is configured. Suggests
`uv pip install faster-whisper` and notes that
`pip install faster-whisper` also works if `pip` is on PATH.
- `tools/voice_mode.py` — `/voice` status line for missing STT.
- `cli.py` — Voice-mode startup error, "Option 1".
No behavior change beyond the user-facing text. No production
code path was touched.
* docs(voice): add pip fallback to cli + voice_mode STT hints
Copilot flagged that cli.py and tools/voice_mode.py recommend
`uv pip install faster-whisper` without a fallback for environments
where uv isn't on PATH. The gateway/run.py message already lists
`pip install faster-whisper` as an alternative; this commit aligns
the two remaining call sites to match.
Addresses inline Copilot review on #29800.
---------
Co-authored-by: briandevans <252620095+briandevans@users.noreply.github.com>
* remove Vercel AI Gateway provider and Vercel Sandbox terminal backend
Both Vercel-hosted integrations are removed end-to-end. Users on the AI
Gateway should switch to OpenRouter or one of the other aggregators
(Nous Portal, Kilo Code). Users on the Vercel Sandbox backend should
switch to Docker, Modal, Daytona, or SSH.
What's removed:
- `plugins/model-providers/ai-gateway/` provider plugin
- `hermes_cli/vercel_auth.py` Vercel-Sandbox auth helper
- `tools/environments/vercel_sandbox.py` terminal backend
- `ai-gateway` provider wiring across auth, doctor, setup, models,
config, status, providers, main, web_server, model_normalize, dump
- `vercel_sandbox` backend wiring across terminal_tool, file_tools,
code_execution_tool, file_operations, approval, skills_tool,
environments/local, credential_files, lazy_deps, prompt_builder,
cli, gateway/run
- `AI_GATEWAY_BASE_URL` constant, `_AI_GATEWAY_HEADERS` auxiliary-client
header set, run_agent base-URL header/reasoning special-cases
- `[vercel]` pyproject extra and `vercel`/`vercel-workers` from uv.lock
- env vars: `AI_GATEWAY_API_KEY`, `AI_GATEWAY_BASE_URL`, `VERCEL_TOKEN`,
`VERCEL_PROJECT_ID`, `VERCEL_TEAM_ID`, `VERCEL_OIDC_TOKEN`,
`TERMINAL_VERCEL_RUNTIME`
- Tests: deletes test_ai_gateway_models.py and
test_vercel_sandbox_environment.py; scrubs references across 23
surviving test files (no entire tests deleted unless they were
dedicated to AI Gateway / Sandbox)
- Docs: provider tables, env-var reference, setup guides, security
notes, tool config, terminal-backend tables — English plus zh-Hans
i18n parity
- `hermes-agent` skill: provider table entry and remote-backend list
What stays (intentional):
- `popular-web-designs/templates/vercel.md` — CSS design reference,
unrelated to Vercel-the-AI-product
- `x-vercel-id` in `stream_diag.py` headers — generic Vercel CDN
response header, useful diag signal on any Vercel-hosted endpoint
- `vercel-labs/agent-browser` URL in browser config — lightpanda
browser project, different OSS effort
- `userStories.json` historical contributor entry mentioning Vercel
Sandbox — archive, not active docs
Validation:
- 1153 tests in the 22 targeted files pass (`scripts/run_tests.sh`)
- Full repo `py_compile` clean
- Live import of every touched module + invariant check (no
`ai-gateway` in `PROVIDER_REGISTRY`, no `_AI_GATEWAY_HEADERS`, no
`vercel_sandbox` in `_REMOTE_TERMINAL_BACKENDS`)
* test: convert profile-count check from change-detector to invariant
The hardcoded "== 34" assertion broke when ai-gateway was removed.
Per AGENTS.md change-detector-test guidance, assert the relationship
(registry count >= number of plugin dirs) instead of a literal count.
Counts shift when providers are added/removed; that's expected.
Follow-up to #32087 after community report from @ethernet that 8000-char
single-line pastes get dumped raw into the input box.
A) Fallback regression revert
paste_collapse_threshold_fallback default: 0 -> 5
#32087 disabled the fallback handler by default. The fallback path
has been always-on with line_count >= 5 since #3065 (March 2026);
the previous shape was the salvaged contributor's design and didn't
match pre-existing behavior for terminals without bracketed paste
support (Windows terminals, some SSH setups). Restoring the original
on-by-default.
B) Long single-line paste guard
New config key: paste_collapse_char_threshold (default 2000)
Bracketed-paste handler and fallback handler now BOTH collapse when
line count >= line threshold OR total char length >= char threshold.
Catches the case ethernet hit: ~8000 chars of minified JSON / log
output on a single line dumped raw into the buffer.
TUI mirrors the same config via uiStore.pasteCollapseChars.
Set 0 to disable.
Defaults verified:
paste_collapse_threshold: 5
paste_collapse_threshold_fallback: 5
paste_collapse_char_threshold: 2000
Tests:
tests/hermes_cli/test_config.py: 87/87 pass
ui-tui useConfigSync.test.ts: 34/34 pass
ui-tui useComposerState.test.ts: 9/9 pass
tsc: 0 new errors in touched files
Adds two new config keys:
- paste_collapse_threshold (default: 5) — line count threshold for
bracketed paste collapse in both TUI and CLI
- paste_collapse_threshold_fallback (default: 0, disabled) — same for
the fallback heuristic in terminals without bracketed paste support
TUI frontend reads these from config.get full via applyDisplay/patchUiState.
CLI reads from self.config at paste-handling time.
Closes#5626
Related: #5623
The CLI status bar tracked /background agent tasks (▶ N) but not shell
processes spawned via terminal(background=true). Both kinds of work can
run concurrently and a user has no in-bar signal for shell processes.
Add an independent indicator (⚙ N) sourced from
tools.process_registry.process_registry._running. The two indicators
render side-by-side when both are active (▶ 1 │ ⚙ 2), hidden when their
count is zero. Renders at all four status-bar tiers (text fallback +
prompt_toolkit fragments, narrow + wide widths). The narrow <52 tier
still drops both for space — unchanged.
New ProcessRegistry.count_running() returns len(_running) without
acquiring _lock; CPython dict len is atomic and we're polling on every
status-bar tick, so lock-free is the right tradeoff.
When the terminal drops the ESC[201~ end mark during a bracketed paste
(terminal race, torn write, SSH glitch, macOS sleep/wake), prompt_toolkit's
Vt100Parser keeps buffering all later input in _paste_buffer forever. From
the user's perspective, the CLI appears frozen — the only recovery was
closing the tab/session.
This patch monkey-patches Vt100Parser.feed() so that bracketed-paste mode
flushes buffered content as a normal BracketedPaste event after 2 seconds
without an end marker, then restores normal parsing.
Includes 8 regression tests covering normal paste, timeout recovery,
torn end marks, and edge cases.
Surgical reapply of PR #27518. Original branch was many months stale
(1193 files / 172k LOC of unrelated reverts); the substantive ~77 LOC
patch in cli.py plus the new 157-line test file were reapplied onto
current main with the contributor's authorship preserved via --author.
A Ctrl+C during a slow slash command (e.g. /skills browse on a large
skill tree, /sessions list against a multi-GB SQLite DB) used to unwind
past self.process_command() to the outer prompt_toolkit event loop,
which killed the entire session — losing all conversation state.
Fix: wrap the slash-command dispatch in try/except KeyboardInterrupt
so Ctrl+C aborts the command but the prompt loop continues. Other
exceptions still propagate so real bugs aren't silently swallowed.
Surgical reapply of PR #5189. Original branch was many months stale
(3764 files / 1M+ LOC of unrelated reverts); the substantive ~6 LOC
change in cli.py was reapplied by hand onto current main with the
contributor's authorship preserved via --author.
On Windows (PowerShell/Windows Terminal), the queue-based modal used for
destructive slash command confirmations deadlocks because prompt_toolkit's
input channel becomes unresponsive when entered from the process_loop daemon
thread. Keystrokes never reach the key bindings, so response_queue.get()
blocks until the 120-second timeout expires.
Fix: fall back to _prompt_text_input (stdin-based) when:
1. sys.platform == 'win32' — Windows console doesn't support the modal reliably
2. Called from non-main thread — key bindings can't fire from daemon threads
3. self._app is not set — existing behavior for tests/non-interactive
This mirrors the thread-aware guard from _prompt_text_input (PR #23454).
9 new regression tests covering Windows detection, non-main thread fallback,
macOS/Linux modal preservation, and integration with _confirm_destructive_slash.
Fixes#30768
Surgical reapply of PR #30773. Original branch was many months stale (911
files / 146k LOC of unrelated reverts); the substantive ~30 LOC change in
cli.py plus the new test file were reapplied onto current main with the
contributor's authorship preserved via --author.
When 'hermes chat --quiet --resume <id> -q "..."' is used, three status
messages were written to stdout via ChatConsole / _cprint:
- '↻ Resumed session <id> (N user messages, M total messages)'
- 'Session <id> found but has no messages. Starting fresh.'
- 'Session not found: <id>' / usage hint
This polluted the machine-readable stdout that automation wrappers capture
with $(...), making it impossible to cleanly separate the agent's answer
from the resume banner.
Fix: detect quiet mode via tool_progress_mode == 'off' and route the three
resume status messages to stderr (as plain text, matching the existing
stderr convention for session_id). Interactive mode is unchanged — it
still uses the Rich-rendered path through ChatConsole.
Surgical reapply of PR #11868. Original branch was stale against current
main; reapplied onto current cli.py by hand with original authorship
preserved via --author.
Session IDs are profile-constrained, so the resume hint needs to
include the active profile for multi-profile users. Without this,
copying the hint from a non-default profile fails to resume the
correct session.
Before: hermes --resume 20260414_063228_c1240e
After: hermes --resume 20260414_063228_c1240e -p dev
Also includes -p on the resume-by-title hint. Skipped for
'default' and 'custom' profiles (no -p needed).
Surgical reapply of PR #9652. Original branch was stale against
current main (~6 months); reapplied onto current cli.py by hand
with original authorship preserved.
The /resume usage hint shows '<session_id_or_title>' which a few users have
typed verbatim, including the angle brackets. Strip outer <>, [], "", and ''
from the argument before lookup so '/resume <abc123>' works the same as
'/resume abc123'. Mirrors the new bracket-stripping in the CLI handler.
Also let the gateway resolve a bare session ID. Previously the gateway only
called resolve_session_by_title, so '/resume <session_id>' always returned
'Session not found' even for valid IDs. Try get_session() first, fall back
to title resolution second.
Surgical reapply of PR #10215 (branch was based on a many-months-old main
and reverted ~3100 unrelated files; original commit by claw@openclaw.ai
preserved via --author).
Issue #30768 reports that on native Windows PowerShell the destructive-slash
confirmation modal renders but never registers keypresses, leaving the user
unable to confirm or cancel /reset, /new, /clear, or /undo. The modal works
on macOS, Linux, and WSL; PR #23907 (merged May 11) replaced the
daemon-thread input() pattern with a prompt_toolkit-native keybinding modal
but the win32 input pipeline apparently doesn't dispatch keys to the
filter-conditioned handlers. The modal investigation is ongoing.
This change ships the immediate escape hatch: append `now`, `--yes`, or `-y`
to any destructive slash command to bypass the modal and run the action
immediately. Works on every platform without touching the broken Windows
code path.
/reset now -> reset, no modal
/new --yes my-session -> new session titled "my-session", no modal
/clear -y -> clear, no modal
/undo -y -> undo, no modal
The default behavior (modal prompts when approvals.destructive_slash_confirm
is True) is unchanged for users who don't pass a skip token.
Implementation:
- New classmethod HermesCLI._split_destructive_skip(text) -> (remainder, skip)
parses a destructive-slash command string, strips the leading "/cmd" word
and any recognized skip tokens (case-insensitive exact match, not substring),
and reports whether a skip was requested.
- HermesCLI._confirm_destructive_slash gains an optional cmd_original= arg.
When the arg contains a skip token, it returns "once" immediately —
before the gate check and before any modal rendering.
- The /clear, /new, /undo handlers in process_command pass cmd_original
through. /new additionally uses _split_destructive_skip to strip skip
tokens from the remaining text before deriving the session title, so
"/new now My Session" yields title="My Session" (not "now My Session").
Tests:
- 7 new unit tests in tests/cli/test_destructive_slash_confirm.py covering
the helper (recognized tokens, command-word stripping, case-insensitive
exact match, None/empty input) and the modal bypass (now and --yes both
skip; no-skip-token still consults the modal).
- 3 new integration tests in tests/cli/test_destructive_slash_inline_skip_e2e.py
driving HermesCLI.process_command end-to-end and asserting (a) new_session
is invoked, (b) the modal is never reached, (c) the skip token does not
leak into the session title, and (d) the no-skip-token path still reaches
the modal as a sanity check that we haven't accidentally short-circuited
the normal flow.
All 31 tests across the destructive-slash test surface pass.
Docs:
- website/docs/reference/slash-commands.md documents the new flags both in
the destructive-commands table and the dedicated approval section, with a
link back to issue #30768 explaining why the escape hatch exists.
The hardcoded constants in _display_resumed_history were exposed as
config in PR #4434; declare them in DEFAULT_CONFIG and the CLI fallback
dict so they show up in 'hermes config' diagnostics and the schema
validator.
PR #6a1aa420e coupled `display.tool_progress: verbose` (a per-tool display
toggle for full args / results / think blocks) to `self.verbose` — which
controls root-logger DEBUG level. Result: setting tool_progress: verbose
in config silently flipped every module in the process to DEBUG and
flooded the terminal with internal logging, far beyond just full tool
calls.
The two concepts are separate:
- `tool_progress_mode == 'verbose'` → display behavior (tool rendering)
- `self.verbose` → logging behavior (root logger → DEBUG, line 9795)
This change keeps PR #6a1aa420e's argparse.SUPPRESS / config-fallback
plumbing but severs the verbose-display → debug-logging link.
Changes:
- cli.py:2868 — `self.verbose` only follows explicit `verbose=` arg; no
longer auto-True when tool_progress_mode == 'verbose'.
- cli.py:_toggle_verbose — slash-cycle through tool progress modes no
longer flips `self.verbose` / `agent.verbose_logging` / `agent.quiet_mode`.
- cli.py:9355 — fix misleading label (drop 'and debug logs').
- tui_gateway/server.py:_make_agent — same decoupling on the TUI side
(verbose_logging no longer derived from tool_progress_mode).
- tests/cli/test_tool_progress_scrollback.py — invert the test that
asserted the broken coupling; add coverage for explicit `--verbose`
still enabling DEBUG independent of tool_progress.
Live verified:
- tool_progress: verbose, no --verbose flag → 0 DEBUG/INFO log lines
- --verbose flag explicit → 32 DEBUG/INFO log lines (as expected)
Improves the failure suffix on tool completion lines. Instead of always
showing '[error]' for non-terminal failures, parse the tool's JSON result
and surface the actual message:
Before: ┊ 📖 read foo.py 0.1s [error]
After: ┊ 📖 read foo.py 0.1s [File not found: foo.py]
Before: ┊ 💻 $ ls bad 0.1s [exit 127]
After: ┊ 💻 $ ls bad 0.1s [ls: cannot access 'bad'...]
Adds a _trim_error helper that strips long absolute paths down to the
filename and caps the suffix at 48 chars so it stays readable on narrow
terminals.
Threads the tool result through the tool.completed progress callback so
agent/display.get_cute_tool_message can inspect it. The cli.py [error]
post-suffix is removed in favor of the richer suffix _detect_tool_failure
now produces directly.
Originally proposed in PR #17194 by Albert.Zhou; salvaged onto current
main with the dead-code preview-length bumps dropped (tool_preview_length
config already strictly caps previews, so the per-tool n= defaults are
unreachable).
Co-authored-by: Albert.Zhou <albert748@gmail.com>
The interactive CLI input path consults decide_image_input_mode() to pick
between native image_url attachment and the vision_analyze text pipeline,
but the non-interactive 'hermes chat -Q -q ... --image FOO' path
unconditionally called _preprocess_images_with_vision() — so even with
`model.supports_vision: true` set, --image always went through the
text-pipeline. Symptom: vision_analyze runs 4-5s per image and the model
sees a lossy text summary instead of the actual pixels.
Mirror the interactive path: load config, call decide_image_input_mode,
branch on native vs text. Falls back to the text-pipeline on any import
or build error (Pyright-clean: _build_parts guarded with `is not None`).
Live E2E (provider=custom, base_url=openrouter, anthropic/claude-haiku-4.5,
red 64x64 PNG):
baseline (no override): vision_analyze called (8 log lines), 5.8s
with supports_vision: vision_analyze NOT called (0 log lines), 3.9s
Same model, same image, single knob flips text→native routing.
Add browser CDP launch candidates for Chrome, Chromium, Brave, and Edge while preserving Chrome-first selection. Retry candidate launch failures instead of giving up after the first executable.
Update /browser CLI and TUI messaging, docs, and tool descriptions from Chrome-only wording to Chromium-family browser support. Add regression coverage for Brave/Edge paths, Chrome-first precedence, fallback launches, and CDP endpoint probing.
`cli.py` was eager-importing `openai._base_client` at module-load time
purely to monkeypatch `AsyncHttpxClientWrapper.__del__` (defense against
"Press ENTER to continue..." errors when AsyncOpenAI clients are GC'd
against dead event loops). That import cost ~166ms / ~30MB on every
cold CLI start because openai's type tree (responses/*, graders/*) is huge.
Replace with a `sys.meta_path` finder that intercepts the first import
of `openai._base_client` from anywhere in the codebase, lets the normal
load run, then applies the `__del__ = lambda self: None` patch before
control returns to the caller. Same correctness guarantee (patch
applies before any AsyncOpenAI instance can be constructed), zero cost
until the SDK is actually needed.
Hot path: every hermes chat / gateway boot / cron tick / subagent spawn.
A/B benchmark, 10 runs each, fresh subprocess:
BEFORE AFTER delta
import cli wall 0.86s 0.62s -28% (median)
import cli wall 0.85s 0.59s -31% (min)
import cli RSS 91.2MB 74.0MB -19% (median)
The `neuter_async_httpx_del` function in agent/auxiliary_client.py is
unchanged; its tests still pass and any future callers can still invoke
it directly.
Verified:
- import cli no longer pulls openai into sys.modules
- first 'from openai._base_client import AsyncHttpxClientWrapper'
triggers the patch; __del__.__name__ == '<lambda>'
- tests/run_agent/test_async_httpx_del_neuter.py: 9/9 pass
- tests/agent/test_auxiliary_client.py: 159/159 pass
- tests/cli/: 715/715 pass
The SIGTERM/SIGHUP handler raised KeyboardInterrupt() at the end of its
agent-interrupt + grace-window sequence. Python delivers signals between
bytecodes on the main thread, so when the signal hit mid-event-loop
(typically inside prompt_toolkit's '_poll_output_size' coroutine's
'await asyncio.sleep()'), the KeyboardInterrupt unwound INTO that
coroutine. prompt_toolkit's Task captured it as a BaseException;
prompt_toolkit's '_handle_exception' then printed 'Unhandled exception
in event loop' + the full asyncio traceback and parked the terminal on
'Press ENTER to continue...' before exiting.
Same root cause as #13710, different surface: there the failure was an
EIO cascade after a logging-cache KeyError escaped the handler; here
it's the KBI raise itself landing inside an asyncio Task. The fix is
the same shape — let the event loop unwind on its own terms.
Now: schedule 'app.exit()' via 'loop.call_soon_threadsafe()'. The
prompt_toolkit Application returns normally from 'app.run()' and the
existing '(EOFError, KeyboardInterrupt, BrokenPipeError)' handler in
the input loop catches everything else. Fallback to 'raise
KeyboardInterrupt()' preserved for contexts where prompt_toolkit isn't
the active app (e.g. -q one-shot mode).
The agent interrupt + 1.5 s grace window run unchanged before the new
exit path, so subprocess-group cleanup ('os.killpg' on Linux) still
gets its window.
Tested live: external SIGTERM to the CLI (with 'kill <pid>') now exits
cleanly with no traceback dump and no ENTER pause.
Skill bundles are tiny YAML files in ~/.hermes/skill-bundles/ that
group several skills under one slash command. Invoking /<bundle-name>
from any surface (CLI, TUI, dashboard, any gateway platform) loads
every referenced skill into a single combined user message.
Use cases:
- /backend-dev → loads github-code-review + test-driven-development
+ github-pr-workflow as one bundle.
- /research → loads several research skills together.
- Team task profiles shared via dotfiles.
Behavior:
- Bundles take precedence over individual skills when slugs collide.
- Missing skills are skipped with a note, not fatal.
- No system-prompt mutation — bundles generate a fresh user message
at invocation time, the same way /<skill> does. Prompt cache stays
intact.
- Works in CLI dispatch, gateway dispatch, autocomplete (CLI + TUI),
/help display.
Schema (~/.hermes/skill-bundles/<slug>.yaml):
name: backend-dev
description: Backend feature work.
skills:
- github-code-review
- test-driven-development
instruction: |
Optional extra guidance prepended to the loaded skills.
New module: agent/skill_bundles.py — load, scan, resolve, build
invocation message, save, delete. yaml.safe_load only; broken
bundles log a warning and are skipped, never raise.
New CLI subcommand: hermes bundles {list,show,create,delete,reload}.
Implementation in hermes_cli/bundles.py; wired in hermes_cli/main.py.
'bundles' added to _BUILTIN_SUBCOMMANDS so plugin discovery skips it.
New in-session slash command: /bundles lists installed bundles in
both CLI and gateway. /<bundle-name> dispatch added to CLI (cli.py)
and gateway (gateway/run.py) before the existing /<skill-name> path.
Autocomplete: SlashCommandCompleter gained an optional
skill_bundles_provider parameter that defaults to None — the prompt
shows '▣ <description> (N skills)' for bundles vs '⚡' for skills.
Tests:
- tests/agent/test_skill_bundles.py — 33 tests covering slugify,
scan/cache freshness, resolve (including underscore→hyphen
Telegram alias), build_bundle_invocation_message (loading, missing
skills, user/bundle instruction injection, dedup), save/delete,
reload diff, list sort.
- tests/hermes_cli/test_bundles.py — 8 tests for the CLI
subcommand (create/list/show/delete/reload, --force, missing
bundle errors).
- tests/gateway/test_bundles_command.py — 4 tests for the gateway
handler and bundle resolution priority.
Live E2E: verified subprocess invocations of hermes bundles
{list,create,show,reload,delete} round-trip correctly against an
isolated HERMES_HOME.
Docs:
- website/docs/user-guide/features/skills.md — new 'Skill Bundles'
section with quick example, YAML schema, management commands,
behavior notes.
- website/docs/reference/cli-commands.md — 'hermes bundles' added to
the top-level command table and given its own subcommand section.
Salvages #23302 by @Bartok9. Four independent one-area fixes:
1. kanban boards delete alias now hard-deletes (not archives) — the
alias didn't carry --delete, so getattr(args, 'delete', False)
returned False. Detect boards_action=='delete' explicitly.
2. Gateway auto-title failures no longer leak as user-visible
warnings — debug-log only since they're not actionable.
3. Background process completion notification snaps truncation to
the next newline boundary, prepends a marker when content is
dropped.
4. _cprint() schedules the run_in_terminal coroutine via
asyncio.ensure_future so output isn't silently dropped from
background threads (fixes#23185 Bug A). Skips the
double-print fallback that would fire for mock paths.
Wraps _pt_print in try/except with a print() fallback. When a
kanban worker's stdout is piped to a log file, prompt_toolkit
raises NoConsoleScreenBufferError (Windows) or OSError (other)
because there is no real console buffer. The fallback keeps
worker output flowing instead of crashing.
* feat: add /update slash command to CLI and TUI
* test(cli): add Python tests for /update slash command
Co-authored-by: Cursor <cursoragent@cursor.com>
* fix(cli): address Copilot review for /update slash command
Route classic CLI /update through prompt_toolkit modal confirmation and
defer relaunch to the main-thread cleanup path after app.exit(). Tighten
Y/n semantics, add Python wrapper and catalog coverage tests, and assert
/update stays visible in the TUI command catalog.
Co-authored-by: Cursor <cursoragent@cursor.com>
* fix(cli): address review feedback on /update command
- Replace raw input() with _prompt_text_input_modal in _handle_update_command
to avoid EOF/hang/keystroke-leak races with prompt_toolkit's stdin ownership
- Fix confirmation logic: only proceed on recognized affirmative aliases
(y/yes/1/ok); cancel on everything else including empty string, typos,
and unrecognized input — matches all other [Y/n] prompts in the codebase
- Route relaunch through main-thread shutdown path: set _pending_relaunch
and return False from process_command so process_loop triggers app.exit();
run() then calls relaunch() after prompt_toolkit has restored terminal modes
and after cleanup — safe on both POSIX (execvp) and Windows (subprocess+exit)
- Fix misleading docstring in test_update_command.py: the Vitest only covers
the TypeScript slash handler that emits code 42, not the Python wrapper
branch that acts on it
- Rewrite tests to use SimpleNamespace pattern (like test_destructive_slash_confirm)
so _prompt_text_input_modal can be stubbed directly
- Add Python test for _launch_tui exit-code-42 → relaunch branch in main.py
Agent-Logs-Url: https://github.com/NousResearch/hermes-agent/sessions/f6da68cf-e7b1-4b7a-aed6-3d4b0f523bdb
Co-authored-by: austinpickett <260188+austinpickett@users.noreply.github.com>
* fix(cli): polish test fixtures for /update command
- Remove unused _prompt_text_input from SimpleNamespace stub
- Use pytest.fail sentinel in managed-install guard test to catch unexpected modal invocations
Agent-Logs-Url: https://github.com/NousResearch/hermes-agent/sessions/f6da68cf-e7b1-4b7a-aed6-3d4b0f523bdb
Co-authored-by: austinpickett <260188+austinpickett@users.noreply.github.com>
* chore: re-trigger CI after Copilot review fixes
Co-authored-by: Cursor <cursoragent@cursor.com>
---------
Co-authored-by: Cursor <cursoragent@cursor.com>
Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: austinpickett <260188+austinpickett@users.noreply.github.com>
When auxiliary compression's summary generation returns None (aux model
errored, returned non-JSON, timed out, etc.) the compressor previously
still dropped every middle message between compress_start..compress_end
and replaced them with a static 'Summary generation was unavailable'
placeholder. The session kept going but the user silently lost N turns
of context for nothing.
New behavior: on summary failure, compress() aborts entirely — returns
the input messages unchanged and sets _last_compress_aborted=True. The
existing _summary_failure_cooldown_until gate (30-60s) keeps the aux
model from being burned on every turn. Auto-compress callers detect
the no-op (len(after) == len(before)) and stop looping. The chat is
'frozen' at its current size until the next /compress or /new.
Manual /compress (CLI + gateway) now passes force=True which clears
the cooldown so users can retry immediately after an auto-abort. If
the manual retry also fails, the user gets a visible warning telling
them nothing was dropped and how to retry.
- agent/context_compressor.py: compress() gains force= kwarg; failure
branch sets _last_compress_aborted and returns messages unchanged
instead of inserting placeholder.
- run_agent.py: _compress_context() detects abort, surfaces warning,
skips session-rotation entirely, returns messages unchanged.
- cli.py + gateway/run.py: manual /compress paths pass force=True.
- gateway/run.py: hygiene + /compress handlers detect _last_compress_aborted
and emit the new 'Compression aborted' warning (gateway.compress.aborted)
instead of the old 'N historical messages were removed' message.
- locales/*.yaml: new gateway.compress.aborted key in all 16 locales.
- tests: updated to assert the abort contract (messages preserved,
compression_count not incremented, abort flag set, no placeholder
leaked). New test_force_true_bypasses_failure_cooldown covers the
manual-retry path.
The Tab-completion lambda captured _skill_commands at startup, so newly
installed skills were missing from Tab completion even after /reload-skills
reported them as added.
Two changes:
1. Tab-completion lambda now calls get_skill_commands() instead of reading
the module-level _skill_commands snapshot — ensures the lambda always
gets fresh data without needing to touch global state.
2. _reload_skills() now syncs cli.py's module-level _skill_commands via
get_skill_commands() after reload, so help display, command dispatch,
and any other direct _skill_commands readers also see the updated map.
Closes#26441
Six days after #23937 (608 fixes) the codebase had accumulated 241 new
PLR6201 violations. Same mechanical `x in (...)` → `x in {...}` fix,
same zero-risk profile: set lookup is O(1) vs O(n) for tuple and the
two are semantically equivalent for hashable scalar membership tests.
All 241 instances fixed via `ruff check --select PLR6201 --fix
--unsafe-fixes`, zero remaining. Every changed value is a hashable
scalar (str/int/None/enum/signal); no risk of unhashable runtime
errors. No behavior change.
Test plan:
- 119 files changed, +244/-244 (net zero) — exactly one-line edits
- `ruff check` clean afterward
- Compile checks pass on the largest touched files (cli.py, run_agent.py,
gateway/run.py, gateway/platforms/discord.py, model_tools.py)
- Subset broad test run on tests/gateway/ tests/hermes_cli/ tests/agent/
tests/tools/: 18187 passed, 59 pre-existing failures (verified against
origin/main with the same shape — identical failure count, identical
category — all xdist test-order flakes unrelated to this change)
Follows the same template as PR #23937 ([tracker: #23972](https://github.com/NousResearch/hermes-agent/issues/23972)).
Adds logger.info when large pastes are collapsed to file
references in both paste-code paths (handle_paste and
_on_text_changed). Logs paste ID, line count, character
count, and file path so operators can correlate missing-
content reports with specific paste files. This is a
diagnostic aid, not a fix for the paste-drop issue.
Adds a pure-local recap of recent session activity — turn counts,
tools used, files touched, last user ask, last assistant reply —
appended to the existing /status output. Useful when juggling multiple
sessions and you want a one-glance reminder of where this one left off.
Inspired by Claude Code 2.1.114's /recap, but folded into /status so
we don't add a 6th info command. Pure local computation: no LLM call,
no auxiliary model, no prompt-cache invalidation, instant and free.
Salvage of #18587 — kept the shared hermes_cli.session_recap.build_recap
helper and its 13 unit tests, dropped the /recap slash command +
ACTIVE_SESSION_BYPASS_COMMANDS entry + Level-2 bypass since /status
already covers both surfaces.
Tailored to hermes-agent's tool vocabulary: file-editing tools
(patch, write_file, read_file, skill_manage, skill_view) surface
touched paths; tool-call counts highlight which classes of work
drove the session.
Source: https://code.claude.com/docs/en/whats-new/2026-w17
Surface live background-task count in the prompt_toolkit status bar so users
can see at a glance that a /background task exists and is running — no need
to ask the agent about it (the agent has no visibility into bg sessions by
design).
- _get_status_bar_snapshot now reports active_background_tasks from len()
of the live _background_tasks dict (entries are removed in the task
thread's finally block, so this reflects truly-running tasks)
- Indicator shown only on medium (<76) and wide (>=76) tiers; narrow (<52)
stays minimal since it's already cramped
- No invalidate plumbing needed: status bar fragments are pulled via lambda
on every redraw, and the bg thread already calls _app.invalidate() on exit
Refs #8568
Port from google-gemini/gemini-cli#19332.
Users can now exit with '/exit --delete' (or '/quit --delete', '/exit -d')
to permanently remove the current session's SQLite history plus on-disk
transcripts (*.json / *.jsonl / request_dump_*) in one shot. Useful for
privacy-sensitive workflows and one-off interactions where leaving a
session recording behind is undesirable.
Implementation:
- New HermesCLI._delete_session_on_exit one-shot flag (defaults False).
- process_command() parses --delete / -d after /exit or /quit and arms
the flag. Unknown args print a hint and keep the CLI running (prevents
typos like '/exit -delete' from accidentally exiting).
- Shutdown path calls SessionDB.delete_session(session_id, sessions_dir=...)
right after end_session() when the flag is set. That API already
existed for 'hermes sessions delete' and handles both SQLite removal
(orphaning child sessions so FK constraints hold) and on-disk file
cleanup.
- /quit CommandDef now advertises '[--delete]' in args_hint so /help
and CLI autocomplete surface it.
Tests: tests/cli/test_exit_delete_session.py (12 cases covering both
aliases, case insensitivity, whitespace, short form, unknown-arg
rejection, and registry metadata).
E2E-verified with isolated HERMES_HOME: session row deleted, all three
transcript/request-dump files removed, second delete_session call
correctly returns False.
Tirith ships no Windows binary, so on every Windows CLI startup users
saw a scary 'tirith security scanner enabled but not available' banner
they could not act on. The banner suggested degraded security; in
reality pattern-matching guards still run and the message was pure noise.
Fix:
- New public is_platform_supported() helper in tools/tirith_security.py
that returns False when _detect_target() doesn't resolve (Windows, any
non-x86_64/aarch64 arch).
- ensure_installed(), _resolve_tirith_path(), and check_command_security()
short-circuit on unsupported platforms: cache _resolved_path =
_INSTALL_FAILED with reason 'unsupported_platform', skip PATH probes,
skip the background download thread, skip the disk failure marker, and
return allow with an empty summary from check_command_security so the
spawn loop never fires.
- Explicit user-configured tirith_path is still honored everywhere (a
user who built tirith themselves under WSL keeps that path).
- CLI banner in cli.py gated on is_platform_supported() — fires only on
platforms where tirith *should* work but isn't installed.
- Docs note tirith's supported-platform list and point Windows users at
WSL.
Tests: tests/tools/test_tirith_security.py +8 tests covering Linux
x86_64, Darwin arm64, Windows, and unknown-arch verdicts plus the
silent ensure_installed / check_command_security / _resolve_tirith_path
fast-paths and the explicit-path override.
test_tirith_security.py 75 passed (8 new + 67 pre-existing)
test_command_guards.py 19 passed
When running with --yolo, all dangerous command approvals are bypassed.
Make this state visible so users don't forget:
- Banner: '⚠ YOLO mode — all approval prompts bypassed' line in red, only
shown when YOLO is active. Default case is silent (no extra line, no
always-on 'restricted' label).
- Status bar: '⚠ YOLO' fragment appended in red (#FF4444 bold) across all
three width tiers (<52, <76, ≥76) in both the plain-text fallback and
the fragments builder.
Closes#2663
Co-authored-by: Mibayy <Mibayy@users.noreply.github.com>
#25975 (salvaging #24403) clamped decorative scrollback Panels and
streaming box rules to `max(32, min(width, 56))` as a defense against
terminal-emulator reflow when columns shrink. On any modern wide
terminal this made the response/reasoning borders look stubby — 56
cols inside a 200-col viewport.
#26137 (salvaging #25981, by @OutThisLife) landed a more fundamental
fix: prompt_toolkit's `_output_screen_diff` is monkey-patched so its
reserve-vertical-space cursor move no longer pushes chrome into
scrollback at all. With that in place, the clamp is no longer
load-bearing for the chrome-into-scrollback class of bugs — the
remaining risk is purely cosmetic reflow of *already stamped*
Panel borders during an aggressive column shrink, which we now
accept as a tradeoff for restoring proper full-width rendering.
Changes:
- `_scrollback_box_width()` returns `max(32, width)` (just the floor,
no upper cap). All 10 call sites stay valid.
- Updated `test_scrollback_box_width_caps_to_resize_safe_value` to
the new `test_scrollback_box_width_returns_viewport_width` asserting
full-width passthrough above the 32-col floor.
Floor of 32 is kept so `'─' * (w - 2)` math stays positive on tiny
terminals.
Refs #18449#19280#22976 (the original reflow class) and #25975
(the clamp this reverts).
Two long-standing prompt_toolkit bugs in the base hermes CLI:
1. Resize duplication. Column-shrink resize used to push 40+ rows of
duplicate chrome (status bar, input rules) into terminal scrollback
every resize. Same wall as pt issues #29 (open since 2014), #1675,
#1933 — aider/xonsh/ipython all use alt-screen to dodge it.
Root cause (verified by reading prompt_toolkit/renderer.py):
_output_screen_diff (renderer.py L232-242) deliberately moves the
cursor to the bottom of the canvas after every paint 'to make sure
the terminal scrolls up'. In non-fullscreen mode this scrolls chrome
content into terminal scrollback on every render — not just on
resize.
Fix: monkey-patch prompt_toolkit.renderer._output_screen_diff to
bypass the reserve-vertical-space cursor move. When pt's logic checks
'if current_height > previous_screen.height', we inflate the previous
screen height so the branch falls through. ~30-line wrapper, no fork
of pt, no alt-screen, no DECSTBM scroll region.
Verified empirically in real Terminal.app: 10 resizes (mixed
shrinks/widens 1300→500→1400) during streaming produced ZERO
scrollback delta, full agent response preserved, status bar pinned
at bottom, no visible duplicates. pt is pinned to ==3.0.52 so the
private-function patch is safe; future pt bumps will need to
re-verify the signature matches.
2. Light-mode terminal visibility. Hardcoded skin colors (#FFF8DC
cornsilk, #FFD700 gold, #B8860B dark goldenrod) are tuned for dark
Terminal.app — invisible on light/cream backgrounds.
Port ui-tui/src/theme.ts detectLightMode() to Python so the base CLI
adapts. Detection priority: HERMES_LIGHT/HERMES_TUI_LIGHT env →
HERMES_TUI_THEME=light|dark → HERMES_TUI_BACKGROUND=#RRGGBB →
COLORFGBG env (xterm/Konsole/urxvt) → OSC 11 query
(\x1b]11;?\x1b\\) with 100ms timeout → default dark. OSC 11 is
tty-gated so gateway/cron/batch/subagent code paths don't pay the
timeout cost.
When light mode is detected, dark-mode colors auto-remap to readable
equivalents (#FFF8DC → #1A1A1A, #FFD700 → #9A6B00, etc). Hooked at
three points:
- _hex_to_ansi() — auto-remaps any color emitted via the ANSI helper
- _build_tui_style_dict() — rewrites pt style strings (chrome bg/fg)
- SkinConfig.get_color() — wrapped at module load so Rich Panel
borders/body text get the remap too
Status-bar foreground colors (#C0C0C0, #888888, etc.) are explicitly
skipped because they're paired with a dark navy bg — remapping them
would make them invisible in dark mode.
3. Other visibility fixes: [thinking] reasoning preview now uses ANSI
dim+italic (\x1b[2;3m) instead of #B8860B so it inherits terminal
default fg color. Input/prompt area defaults to terminal default fg
(was #FFF8DC cornsilk → invisible on cream).
Co-authored-by: Brooklyn Nicholson <brooklyn.bb.nicholson@gmail.com>
On macOS with uv-managed cPython 3.11, the default kqueue selector cannot
register fd 0, so prompt_toolkit's loop.add_reader raises
OSError(EINVAL) ("[Errno 22] Invalid argument") from kqueue.control()
and the agent crashes immediately on startup (#5884, also reported in
#6393).
Probe KqueueSelector.register(0, EVENT_READ) before launching
prompt_toolkit. If it fails, install an event-loop policy that returns a
SelectorEventLoop backed by SelectSelector — select() works fine on
stdin in this Python build, so add_reader succeeds and the agent
launches normally.
Also extend the existing #6393 fallback handler to recognize EINVAL /
EBADF / "Invalid argument" so that any future selector failure on stdin
shows the friendly "reinstall Python via pyenv or Homebrew" guidance
instead of an opaque traceback.
Verified on macOS (Darwin 24.6.0) with uv-managed cPython 3.11.15: the
kqueue probe fails, the policy switch fires, and `hermes` launches
cleanly. No effect on platforms where kqueue can register fd 0.
The 'sessions' command has been registered in the central command
registry since #20805 (May 2025) and surfaces in /help and tab-completion,
but the classic CLI's process_command() never had an elif branch for it.
The canonical name fell through and printed 'Unknown command: sessions'.
The TUI side was wired up correctly via the SessionPicker overlay; only
the legacy CLI was missing the dispatch.
Adds _handle_sessions_command() which mirrors /resume's no-arg behavior
inline (the CLI has no overlay primitive equivalent to the TUI picker):
- /sessions and /sessions list → print the recent-sessions table
- /sessions <id_or_title> → delegates to _handle_resume_command
Includes regression tests covering the dispatcher wiring (the original
bug) plus the three handler branches.
When the terminal shrinks, already-printed box-drawing rules (response,
reasoning, streaming TTS, background-task Panels) reflow into multiple
narrower rows — visible as duplicated horizontal separators / ghost
lines in scrollback. Similarly, prompt_toolkit redraws a fresh status
bar on SIGWINCH on top of one the terminal just reflowed, producing
double-bar artifacts on column shrink.
Two surgical changes:
1. Decorative scrollback boxes now use a new
`HermesCLI._scrollback_box_width()` helper that clamps to
`max(32, min(width, 56))`. The live TUI footer is unaffected and still
uses the full width. Covers: streaming response box (open + close),
reasoning box (open + close, both streaming and post-stream paths),
streaming-TTS box close, final-response Rich Panel, and the
background-task Rich Panel.
2. `_recover_after_resize()` now also sets a new
`_status_bar_suppressed_after_resize` flag so the dynamic status bar
and both input separator rules stay hidden until the next user input.
The flag is cleared in the process loop the moment the user submits
their next prompt, restoring chrome cleanly.
Tests:
- New `test_input_rules_hide_after_resize_until_next_input` covers the
flag's effect on rule heights.
- New `test_scrollback_box_width_caps_to_resize_safe_value` covers the
helper at floor / cap / mid-range / overflow.
- Existing resize-recovery test extended to assert the flag flips.
Refs: #18449#19280#22976
Salvage of #24403.
Co-authored-by: Szymonclawd <szymonclawd@mac.home>
The spinner already shows tool activity visually; the 1.2 kHz tone on
every tool.started event was unwanted noise (especially on WSL2, where
each beep also triggers Windows Terminal's bell notification).
Removed the play_beep call in _on_tool_progress entirely. Record
start/stop beeps (gated by voice.beep_enabled) are unaffected.
The _approval_callback method in HermesCLI hardcoded timeout=60
instead of reading the approvals.timeout config value. This meant
the config setting was silently ignored for CLI interactive prompts.
Other approval paths (callbacks.py, tools/approval.py) already read
the config correctly — only cli.py was missed.
* feat(goals): /subgoal — user-added criteria appended to active /goal
Layers a /subgoal command on top of the existing freeform Ralph judge
loop. The user can append extra criteria mid-loop; the judge factors
them into its done/continue verdict and the continuation prompt
surfaces them to the agent. No new tool, no agent self-judging — the
existing judge model just sees a richer prompt.
Forms:
/subgoal show current subgoals
/subgoal <text> append a criterion
/subgoal remove <n> drop subgoal n (1-based)
/subgoal clear wipe all subgoals
How it integrates:
- GoalState gains `subgoals: List[str]` (default []), backwards-compat
for existing state_meta rows.
- judge_goal accepts an optional subgoals kwarg; non-empty switches to
JUDGE_USER_PROMPT_WITH_SUBGOALS_TEMPLATE which lists them as
numbered criteria and asks 'is the goal AND every additional
criterion satisfied?'
- next_continuation_prompt picks CONTINUATION_PROMPT_WITH_SUBGOALS_TEMPLATE
when non-empty so the agent sees what to target.
- /subgoal is allowed mid-run on the gateway since it only touches the
state the judge reads at turn boundary — no race with the running
turn.
- Status line shows '... , N subgoals' when present.
Surface:
- hermes_cli/goals.py — field, prompt blocks, manager methods, judge weave
- hermes_cli/commands.py — /subgoal CommandDef
- cli.py — _handle_subgoal_command
- gateway/run.py — _handle_subgoal_command + mid-run dispatch
- tests/hermes_cli/test_goals.py — 15 new tests (backcompat, mutation,
persistence, prompt template selection, judge-prompt content via mock,
status-line rendering)
77 goal-related tests passing across goals + cli + gateway + tui.
* fix(goals): slash commands don't preempt the goal-continuation hook
Two findings from live-testing /subgoal:
1. Slash commands queued while the agent is running landed in
_pending_input (same queue as real user messages). The goal hook's
'is a real user message pending?' check returned True and silently
skipped — but the slash command consumes its queue slot via
process_command() which never re-fires the goal hook, so the loop
stalls indefinitely. Now the hook peeks the queue and only defers
when a non-slash payload is present.
2. The with-subgoals judge prompt was too soft — opus 4.7 said 'done,
implying all requirements met' without verifying. Tightened to
demand specific per-criterion evidence (file contents, output line,
command result) and explicitly reject phrases like 'implying it was
done.'
Live verified: /subgoal injected mid-loop now correctly forces the
judge to refuse done until the new criterion is met. Agent gets the
continuation prompt with subgoals listed, updates the script, judge
confirms done with specific evidence cited.
The interactive CLI /model picker was the third call-site duplicating
the inline config-slice + list_authenticated_providers pattern that
PR #23666 consolidated for the dashboard and TUI. Route it through
load_picker_context() + build_models_payload() too so all surfaces
that show authenticated providers share one substrate.
Side effect: cli.py now also benefits from the latent v12+ keyed
providers fix (custom_providers populated via
get_compatible_custom_providers, not cfg.get raw).
The aux-task switcher (hermes_cli/main.py) and gateway model
switcher (gateway/run.py) deliberately stay on the legacy path —
they use different config sections (auxiliary.<task>.*) and a
different config loader (_load_gateway_config) respectively, so
forcing them through ConfigContext would either overload its
semantics or grow the module past the clean refactor scope.
* feat(codex-runtime): scaffold optional codex app-server runtime
Foundational commit for an opt-in alternate runtime that hands OpenAI/Codex
turns to a 'codex app-server' subprocess instead of Hermes' tool dispatch.
Default behavior is unchanged.
Lands in three pieces:
1. agent/transports/codex_app_server.py — JSON-RPC 2.0 over stdio speaker
for codex's app-server protocol (codex-rs/app-server). Spawn, init
handshake, request/response, notification queue, server-initiated
request queue (for approval round-trips), interrupt-friendly blocking
reads. Tested against real codex 0.130.0 binary end-to-end during
development.
2. hermes_cli/runtime_provider.py:
- Adds 'codex_app_server' to _VALID_API_MODES.
- Adds _maybe_apply_codex_app_server_runtime() helper, called at the
end of _resolve_runtime_from_pool_entry(). Inert unless
'model.openai_runtime: codex_app_server' is set in config.yaml AND
provider in {openai, openai-codex}. Other providers cannot be
rerouted (anthropic, openrouter, etc. preserved).
3. tests/agent/transports/test_codex_app_server_runtime.py — 24 tests
covering api_mode registration, the rewriter helper (default-off,
case-insensitive, opt-in, non-eligible providers preserved), version
parser, missing-binary handling, error class. Does NOT require codex
CLI installed.
This commit is wire-only: the api_mode is recognized but AIAgent does
not yet branch on it. Followup commits add the session adapter, event
projector, approval bridge, transcript projection (so memory/skill
review still works), plugin migration, and slash command.
Existing tests remain green:
- tests/cli/test_cli_provider_resolution.py (29 passed)
- tests/agent/test_credential_pool_routing.py (included above)
* feat(codex-runtime): add codex item projector for memory/skill review
The translator that lets Hermes' self-improvement loop keep working under the
Codex runtime: converts codex 'item/*' notifications into Hermes' standard
{role, content, tool_calls, tool_call_id} message shape that
agent/curator.py already knows how to read.
Item taxonomy (matches codex-rs/app-server-protocol/src/protocol/v2/item.rs):
- userMessage → {role: user, content}
- agentMessage → {role: assistant, content: text}
- reasoning → stashed in next assistant's 'reasoning' field
- commandExecution → assistant tool_call(name='exec_command') + tool result
- fileChange → assistant tool_call(name='apply_patch') + tool result
- mcpToolCall → assistant tool_call(name='mcp.<server>.<tool>') + tool result
- dynamicToolCall → assistant tool_call(name=<tool>) + tool result
- plan/hookPrompt/etc → opaque assistant note, no fabricated tool_calls
Invariants preserved:
- Message role alternation never violated: each tool item produces at most
one assistant + one tool message in that order, correlated by call_id.
- Streaming deltas (item/<type>/outputDelta, item/agentMessage/delta)
don't materialize messages — only item/completed does. Mirrors how
Hermes already only writes the assistant message after streaming ends.
- Tool call ids are deterministic (codex item id-based) so replays produce
identical messages and prefix caches stay valid (AGENTS.md pitfall #16).
- JSON args use sorted_keys for the same reason.
Real wire formats verified against codex 0.130.0 by capturing live
notifications from thread/shellCommand and including one as a fixture
(COMMAND_EXEC_COMPLETED).
23 new tests, all green:
- Streaming deltas don't materialize (3 paths)
- Turn/thread frame events are silent
- commandExecution: 5 tests including non-zero exit annotation +
deterministic id stability across replays
- agentMessage + reasoning attachment + reasoning consumption
- fileChange: summary without inlined content
- mcpToolCall: namespaced naming + error surfacing
- userMessage: text fragments only (drops images/etc)
- opaque items: no fabricated tool_calls
- Helpers: deterministic id stability + sorted JSON args
- Role alternation invariant across all four tool-shaped item types
This commit is a pure addition. AIAgent integration (the wire that uses the
projector) is the next commit.
* feat(codex-runtime): add session adapter + approval bridge
The third self-contained module: CodexAppServerSession owns one Codex
thread per Hermes session, drives turn/start, consumes streaming
notifications via CodexEventProjector, handles server-initiated approval
requests, and translates cancellation into turn/interrupt.
The adapter has a single public per-turn method:
result = session.run_turn(user_input='...', turn_timeout=600)
# result.final_text → assistant text for the caller
# result.projected_messages → list ready to splice into AIAgent.messages
# result.tool_iterations → tick count for _iters_since_skill nudge
# result.interrupted → True on Ctrl+C / deadline / interrupt
# result.error → error string when the turn cannot complete
# result.turn_id, thread_id → for sessions DB / resume
Behavior:
- ensure_started() spawns codex, does the initialize handshake, and
issues thread/start with cwd + permissions profile. Idempotent.
- run_turn() blocks until turn/completed, drains server-initiated
requests (approvals) before reading notifications so codex never
deadlocks waiting for us, projects every item/completed via the
projector, and increments tool_iterations for the skill nudge gate.
- request_interrupt() is thread-safe (threading.Event); the next loop
iteration issues turn/interrupt and unwinds.
- turn_timeout deadlock guard issues turn/interrupt and records an
error if the turn never completes.
- close() escalates terminate → kill via the underlying client.
Approval bridge:
Codex emits server-initiated requests for execCommandApproval and
applyPatchApproval. The adapter translates Hermes' approval choice
vocabulary onto codex's decision vocabulary:
Hermes 'once' → codex 'approved'
Hermes 'session' or 'always' → codex 'approvedForSession'
Hermes 'deny' / anything else → codex 'denied'
Routing precedence:
1. _ServerRequestRouting.auto_approve_* flags (cron / non-interactive)
2. approval_callback wired by the CLI (defers to
tools.approval.prompt_dangerous_approval())
3. Fail-closed denial when neither is wired
Unknown server-request methods are answered with JSON-RPC error -32601
so codex doesn't hang waiting for us.
Permission profile mapping mirrors AGENTS.md:
Hermes 'auto' → codex 'workspace-write'
Hermes 'approval-required' → codex 'read-only-with-approval'
Hermes 'unrestricted/yolo' → codex 'full-access'
20 new tests, all green. Combined with prior commits this PR now has
67 tests across three modules:
- test_codex_app_server_runtime.py: 24 (api_mode + transport surface)
- test_codex_event_projector.py: 23 (item taxonomy projections)
- test_codex_app_server_session.py: 20 (turn loop + approvals + interrupts)
Full tests/agent/transports/ directory: 249/249 pass — no regressions
to existing transport tests.
Still no wire into AIAgent.run_conversation(); that integration commit
is small and goes next.
* feat(codex-runtime): wire codex_app_server runtime into AIAgent
The integration commit. AIAgent.run_conversation() now early-returns to a
new helper _run_codex_app_server_turn() when self.api_mode ==
'codex_app_server', bypassing the chat_completions tool loop entirely.
Three small surgical edits to run_agent.py (~105 LOC total):
1. Line ~1204 (constructor api_mode validation set):
Add 'codex_app_server' so an explicit api_mode='codex_app_server'
passed to AIAgent() isn't silently rewritten to 'chat_completions'.
2. Line ~12048 (run_conversation, just before the while loop):
Early-return to _run_codex_app_server_turn() when self.api_mode is
'codex_app_server'. Placed AFTER all standard pre-loop setup —
logging context, session DB, surrogate sanitization, _user_turn_count
and _turns_since_memory increments, _ext_prefetch_cache, memory
manager on_turn_start — so behavior outside the model-call loop is
identical between paths. Default Hermes flow is unchanged when the
flag is off.
3. End-of-class (line ~15497):
New method _run_codex_app_server_turn(). Lazy-instantiates one
CodexAppServerSession per AIAgent (reused across turns), runs the
turn, splices projected_messages into messages, increments
_iters_since_skill by tool_iterations (since the chat_completions
loop normally does that per iteration), fires
_spawn_background_review on the same cadence as the default path.
Counter accounting:
_turns_since_memory ← already incremented at run_conversation:11817
(gated on memory store configured) — codex
helper does NOT touch it (would double-count).
_user_turn_count ← already incremented at run_conversation:11793
— codex helper does NOT touch it.
_iters_since_skill ← incremented in the chat_completions loop per
tool iteration. Codex helper increments by
turn.tool_iterations since the loop is bypassed.
User message:
ALREADY appended to messages by run_conversation pre-loop (line 11823)
before the early-return reaches us. Helper does NOT append again.
Regression test test_user_message_not_duplicated guards this.
Approval callback wiring:
Lazy-fetches tools.terminal_tool._get_approval_callback at session
spawn time, passes to CodexAppServerSession. CLI threads with
prompt_toolkit get interactive approvals; gateway/cron contexts get
the codex-side fail-closed deny.
Error path:
Codex session exceptions become a 'partial' result with completed=False
and a final_response that explicitly tells the user how to switch back:
'Codex app-server turn failed: ... Fall back to default runtime with
/codex-runtime auto.' Same return-dict shape as the chat_completions
path so all callers (gateway, CLI, batch_runner, ACP) work unchanged.
9 new integration tests in tests/run_agent/test_codex_app_server_integration.py:
- api_mode='codex_app_server' is accepted on AIAgent construction
- run_conversation returns the expected codex shape
(final_response, codex_thread_id, codex_turn_id, completed, partial)
- Projected messages are spliced into messages list
- _iters_since_skill ticks per tool iteration
- _user_turn_count delegated to standard flow (not double-counted)
- User message appears exactly once (regression guard)
- _spawn_background_review IS invoked (memory/skill review keeps working)
- chat.completions.create is NEVER called (loop fully bypassed)
- Session exception → partial result with /codex-runtime auto hint
- Interrupted turn → partial result with error preserved
Adjacent test runs confirm no regressions:
- tests/run_agent/test_memory_nudge_counter_hydration.py: green
- tests/run_agent/test_background_review.py: green
- tests/run_agent/test_fallback_model.py: green
- tests/agent/transports/: 249/249 green
Still missing for full feature: /codex-runtime slash command, plugin
migration helper, docs page, live e2e test gated on codex binary. Those
are the remaining followup commits.
* feat(codex-runtime): add /codex-runtime slash command (CLI + gateway)
User-facing toggle for the optional codex app-server runtime. Follows the
'Adding a Slash Command (All Platforms)' pattern from AGENTS.md exactly:
single CommandDef in the central registry → CLI handler → gateway handler
→ running-agent guard → all surfaces (autocomplete, /help, Telegram menu,
Slack subcommands) update automatically.
Surface:
/codex-runtime — show current state + codex CLI status
/codex-runtime auto — Hermes default runtime
/codex-runtime codex_app_server — codex subprocess runtime
/codex-runtime on / off — synonyms
Files changed:
hermes_cli/codex_runtime_switch.py (new):
Pure-Python state machine shared by CLI and gateway. Parse args,
read/write model.openai_runtime in the config dict, gate enabling
behind a codex --version check (don't let users opt in to a runtime
they have no binary for; print npm install hint instead).
Returns a CodexRuntimeStatus dataclass that callers render however
suits their surface.
hermes_cli/commands.py:
Single CommandDef entry, no aliases (codex-runtime is its own thing).
cli.py:
Dispatch in process_command() + _handle_codex_runtime() handler that
delegates to the shared module and renders results via _cprint.
gateway/run.py:
Dispatch in _handle_message() + _handle_codex_runtime_command() that
returns a string (gateway sends as message). On a successful change
that requires a new session, _evict_cached_agent() forces the next
inbound message to construct a fresh AIAgent with the new api_mode —
avoids prompt-cache invalidation mid-session.
gateway/run.py running-agent guard:
/codex-runtime joins /model in the early-intercept block so a runtime
flip mid-turn can't split a turn across two transports.
Tests:
tests/hermes_cli/test_codex_runtime_switch.py — 25 tests covering the
state machine: arg parsing (10 cases incl. case-insensitive and
synonyms), reading current runtime (5 cases incl. malformed configs),
writing runtime (3 cases), apply() entry point covering read-only,
no-op, codex-missing-blocked, codex-present-success, disable-no-binary-check,
and persist-failure paths (8 cases). All green.
Adjacent test suites confirm no regressions:
- tests/hermes_cli/test_commands.py + test_codex_runtime_switch.py:
167/167 green
- tests/agent/transports/: 283/283 green when combined with prior commits
Still missing: plugin migration helper, docs page, live e2e test gated on
codex binary. Followup commits.
* feat(codex-runtime): auto-migrate Hermes MCP servers to ~/.codex/config.toml
Translates the user's mcp_servers config from ~/.hermes/config.yaml into
the TOML format codex's MCP client expects. Wired into the
/codex-runtime codex_app_server enable path so users get their MCP tool
surface in the spawned subprocess automatically.
The migration runs on every enable. Failures are non-fatal — the runtime
change still proceeds and the user gets a warning so they can fix the
codex config manually.
What translates (mapping verified against codex-rs/core/src/config/edit.rs):
Hermes mcp_servers.<n>.command/args/env → codex stdio transport
Hermes mcp_servers.<n>.url/headers → codex streamable_http transport
Hermes mcp_servers.<n>.timeout → codex tool_timeout_sec
Hermes mcp_servers.<n>.connect_timeout → codex startup_timeout_sec
Hermes mcp_servers.<n>.cwd → codex stdio cwd
Hermes mcp_servers.<n>.enabled: false → codex enabled = false
What does NOT translate (warned + skipped per server):
Hermes-specific keys (sampling, etc.) — codex's MCP client has no
equivalent. Listed in the per-server skipped[] field of the report.
What's NOT migrated (intentional):
AGENTS.md — codex respects this file natively in its cwd. Hermes' own
AGENTS.md (project-level) is already in the worktree, so codex picks
it up without translation. No code needed.
Idempotency design:
All managed content lives between a 'managed by hermes-agent' marker
and the next non-mcp_servers section header. _strip_existing_managed_block
removes the prior managed region cleanly, preserving any user-added
codex config (model, providers.openai, sandbox profiles, etc.) above
or below.
Files added:
hermes_cli/codex_runtime_plugin_migration.py — pure-Python migration
helper. Public API: migrate(hermes_config, codex_home=None,
dry_run=False) returns MigrationReport with .migrated/.errors/
.skipped_keys_per_server. No external TOML dependency — minimal
formatter handles strings/numbers/booleans/lists/inline-tables.
tests/hermes_cli/test_codex_runtime_plugin_migration.py — 39 tests
covering:
- per-server translation (12): stdio/http/sse, cwd, timeouts,
enabled flag, command+url precedence, sampling drop, unknown keys
- TOML formatter (8): types, escaping, inline tables, error case
- existing-block stripping (4): no marker, alone, with user content
above, with user content below
- end-to-end migrate() (8): empty, dry-run, round-trip, idempotent
re-run, preserves user config, error reporting, invalid input,
summary formatting
Files changed:
hermes_cli/codex_runtime_switch.py — apply() now calls migrate() in
the codex_app_server enable branch. Migration failure logs a warning
in the result message but does NOT fail the runtime change. Disable
path (auto) explicitly skips migration.
tests/hermes_cli/test_codex_runtime_switch.py — 3 new tests:
test_enable_triggers_mcp_migration, test_disable_does_not_trigger_migration,
test_migration_failure_does_not_block_enable.
All 325 feature tests green:
- tests/agent/transports/: 249 (incl. 67 new)
- tests/run_agent/test_codex_app_server_integration.py: 9
- tests/hermes_cli/test_codex_runtime_switch.py: 28 (3 new)
- tests/hermes_cli/test_codex_runtime_plugin_migration.py: 39 (new)
* perf(codex-runtime): cache codex --version check within apply()
Single /codex-runtime invocation could spawn 'codex --version' up to 3
times (state report, enable gate, success message). Each spawn is ~50ms,
so the cumulative cost wasn't a crisis, but it was wasteful and turned a
trivial slash command into something noticeably laggy on slower systems.
Refactored to lazy-once via a closure over a nonlocal cache. First call
spawns; subsequent calls in the same apply() reuse the result.
Behavior unchanged — same return shape, same error handling, same install
hint when codex is missing. Just one subprocess per call instead of three.
Two regression-guard tests added:
- test_binary_check_cached_within_apply: enable path → call_count == 1
- test_binary_check_cached_on_read_only_call: state-report path → call_count == 1
Total tests for /codex-runtime now 30 (was 28); all 143 codex-runtime
tests still green.
* fix(codex-runtime): correct protocol field names found via live e2e test
Three real bugs caught only by running a turn end-to-end against codex
0.130.0 with a real ChatGPT subscription. Unit tests passed because they
asserted on our own (incorrect) wire shapes; the wire format from
codex-rs/app-server-protocol/src/protocol/v2/* is the source of truth and
my initial reading of the README was incomplete.
Bug 1: thread/start.permissions wire format
Was sending {"profileId": "workspace-write"}.
Real format per PermissionProfileSelectionParams enum (tagged union):
{"type": "profile", "id": "workspace-write"}
AND requires the experimentalApi capability declared during initialize.
AND requires a matching [permissions] table in ~/.codex/config.toml or
codex fails the request with 'default_permissions requires a [permissions]
table'.
Fix: stop overriding permissions on thread/start. Codex picks its default
profile (read-only unless user configures otherwise), which matches what
codex CLI users expect — they configure their default permission profile
in ~/.codex/config.toml the standard way. Trying to be clever about
profile selection broke every turn we tested.
Live error before fix: 'Invalid request: missing field type' on every
turn/start, even though our turn/start payload was correct — the field
codex was complaining about was inside the permissions sub-object we
shouldn't have been sending.
Bug 2: server-request method names
Was matching 'execCommandApproval' and 'applyPatchApproval'.
Real names per common.rs ServerRequest enum:
item/commandExecution/requestApproval
item/fileChange/requestApproval
item/permissions/requestApproval (new third method)
Fix: match the documented names. Added handler for
item/permissions/requestApproval that always declines — codex sometimes
asks to escalate permissions mid-turn and silent acceptance would surprise
users.
Live symptom before fix: agent.log showed
'Unknown codex server request: item/commandExecution/requestApproval'
and codex stalled because we replied with -32601 (unsupported method)
instead of an approval decision. The agent reported back 'The write
command was rejected' even though Hermes never showed the user an
approval prompt.
Bug 3: approval decision values
Was sending decision strings 'approved'/'approvedForSession'/'denied'.
Real values per CommandExecutionApprovalDecision enum (camelCase):
accept, acceptForSession, decline, cancel
(also AcceptWithExecpolicyAmendment and ApplyNetworkPolicyAmendment
variants we don't currently use).
Fix: rename _approval_choice_to_codex_decision return values; update
auto_approve_* fallbacks; update fail-closed default from 'denied' to
'decline'. Test mapping table updated to match.
Live test verified after fixes:
$ hermes (with model.openai_runtime: codex_app_server)
> Run the shell command: echo hermes-codex-livetest > .../proof.txt
then read it back
Approval prompt fired with 'Codex requests exec in <cwd>'.
User chose 'Allow once'. Codex executed the command, wrote the file,
read it back. Final response: 'Read back from proof.txt:
hermes-codex-livetest'. File contents on disk match.
agent.log confirms:
codex app-server thread started: id=019e200e profile=workspace-write
cwd=/tmp/hermes-codex-livetest/workspace
All 20 session tests still green after wire-format updates.
* fix(codex-runtime): correct apply_patch approval params + ship docs
Live e2e revealed FileChangeRequestApprovalParams doesn't carry the
changeset (just itemId, threadId, turnId, reason, grantRoot) — Codex's
'reason' field describes what the patch wants to do. Test config and
display logic updated to use it. The first 'apply_patch (0 change(s))'
display from the live test is now 'apply_patch: <reason>'.
Adds website/docs/user-guide/features/codex-app-server-runtime.md
covering enable/disable, prerequisites, approval UX, MCP migration
behavior, permission profile delegation to ~/.codex/config.toml, known
limitations, and the architecture diagram. Wired into the Automation
category in sidebars.ts.
Live e2e validation across the path matrix:
✓ thread/start handshake
✓ turn/start with text input
✓ commandExecution items + projection
✓ item/commandExecution/requestApproval → Hermes UI → response
✓ Approve once → command runs
✓ Deny → command rejected, codex falls back to read-only message
✓ Multi-turn (codex remembers prior turn's results)
✓ apply_patch via Codex's fileChange path
✓ item/fileChange/requestApproval → Hermes UI
✓ MCP server migration loads inside spawned codex (verified via
'use the filesystem MCP tool' prompt)
✓ /codex-runtime auto → codex_app_server toggle cycle
✓ Disable doesn't trigger migration
✓ Enable with codex CLI present succeeds + migrates
✓ Hermes-side interrupt path (turn/interrupt request issued cleanly
even if codex finishes before the interrupt lands)
Known live-validated limitations now documented in the docs page:
- delegate_task subagents unavailable on this runtime
- permission profile selection delegated to ~/.codex/config.toml
- apply_patch approval prompt has no inline changeset (codex protocol
doesn't expose it)
145/145 codex-runtime tests still green.
* feat(codex-runtime): native plugin migration + UX polish (quirks 2/4/5/10/11)
Major: migrate native Codex plugins (#7 in OpenClaw's PR list)
Discovers installed curated plugins via codex's plugin/list RPC and
writes [plugins."<name>@<marketplace>"] entries to ~/.codex/config.toml
so they're enabled in the spawned Codex sessions. This is the
'YouTube-video-worthy' bit Pash highlighted: when a user has
google-calendar, github, etc. installed in their Codex CLI, those
plugins activate automatically when they enable Hermes' codex runtime.
Implementation:
- hermes_cli/codex_runtime_plugin_migration.py: new _query_codex_plugins()
helper spawns 'codex app-server' briefly and walks plugin/list. Returns
(plugins, error) — failures are non-fatal so MCP migration still works.
- render_codex_toml_section() now takes plugins + permissions args.
- migrate() defaults: discover_plugins=True, default_permission_profile=
'workspace-write'. Explicit None on either disables that side.
- _strip_existing_managed_block() now also strips [plugins.*] and
[permissions]/[permissions.*] sections inside the managed block, so
re-runs replace plugins cleanly without touching codex's own config.
Quirk fixes:
#2 Default permissions profile written on enable.
Without this, Codex's read-only default kicks in and EVERY write
triggers an approval prompt. Now writes [permissions] default =
'workspace-write' so the runtime feels normal out of the box. Set
default_permission_profile=None to opt out.
#4 apply_patch approval prompt now shows what's changing.
Codex's FileChangeRequestApprovalParams doesn't carry the changeset.
Session adapter now caches the fileChange item from item/started
notifications and looks it up by itemId when codex requests approval.
Prompt shows '1 add, 1 update: /tmp/new.py, /tmp/old.py' instead of
'apply_patch (0 change(s))'.
Side benefit: also drains pending notifications BEFORE handling a
server request, so the projector and per-turn caches are up to date
when the approval decision fires. Bounded to 8 notifications per
loop iter to avoid starving codex's response.
#5/#10 Exec approval prompt never shows empty cwd.
When codex omits cwd in CommandExecutionRequestApprovalParams, fall
back to the session's cwd. If somehow neither is available, show
'<unknown>' explicitly instead of an empty string.
Also surfaces 'reason' from the approval params when codex provides
it — gives users more context on why codex wants to run something.
#11 Banner indicates the codex_app_server runtime when active.
New 'Runtime: codex app-server (terminal/file ops/MCP run inside
codex)' line appears in the welcome banner only when the runtime is
on. Default banner is unchanged.
Tests:
- 7 new tests in test_codex_runtime_plugin_migration.py covering
plugin discovery (mocked), failure handling, dry-run skip, opt-out
flag, idempotent re-runs, and permissions writing.
- 3 new tests in test_codex_app_server_session.py covering the
enriched approval prompts: cwd fallback, change summary on
apply_patch, fallback when no item/started cache exists.
- All 26 session tests + 46 migration tests green; 153 total in PR.
* feat(codex-runtime): hermes-tools MCP callback + native plugin migration
The big architectural addition: when codex_app_server runtime is on,
Hermes registers its own tool surface as an MCP server in
~/.codex/config.toml so the codex subprocess can call back into Hermes
for tools codex doesn't ship with — web_search, browser_*, vision,
image_generate, skills, TTS.
Also: 'migrate native codex plugins' (Pash's YouTube-video-worthy bit) —
when the user has plugins like Linear, GitHub, Gmail, Calendar, Canva
installed via 'codex plugin', Hermes discovers them via plugin/list and
writes [plugins.<name>@openai-curated] entries so they activate
automatically.
New module: agent/transports/hermes_tools_mcp_server.py
FastMCP stdio server exposing 17 Hermes tools. Each call dispatches
through model_tools.handle_function_call() — same code path as the
Hermes default runtime. Run with:
python -m agent.transports.hermes_tools_mcp_server [--verbose]
Exposed: web_search, web_extract, browser_navigate / _click / _type /
_press / _snapshot / _scroll / _back / _get_images / _console /
_vision, vision_analyze, image_generate, skill_view, skills_list,
text_to_speech.
NOT exposed (deliberately):
- terminal/shell/read_file/write_file/patch — codex has built-ins
- delegate_task/memory/session_search/todo — _AGENT_LOOP_TOOLS in
model_tools.py:493, require running AIAgent context. Documented
as a limitation and surfaced in the slash command output.
Migration changes (hermes_cli/codex_runtime_plugin_migration.py):
- _query_codex_plugins() spawns 'codex app-server' briefly to walk
plugin/list and pull installed openai-curated plugins. Failures are
non-fatal — MCP migration still completes.
- render_codex_toml_section() now takes plugins + permissions args
AND wraps the managed block with a MIGRATION_END_MARKER comment so
the stripper can reliably find both ends, even when the block
contains top-level keys (default_permissions = ...).
- migrate() defaults: discover_plugins=True, expose_hermes_tools=True,
default_permission_profile=':workspace' (built-in codex profile name
— must be prefixed with ':'). All three opt-out via explicit args.
- _build_hermes_tools_mcp_entry() builds the codex stdio entry with
HERMES_HOME and PYTHONPATH passthrough so a worktree-launched
Hermes points the MCP subprocess at the same module layout.
Live-caught wire bugs fixed during this turn:
1. Permission profile config key is top-level , NOT a [permissions] table. The [permissions] table is
for *user-defined* profiles with structured fields. Built-in
profile names start with ':' (':workspace', ':read-only',
':danger-no-sandbox'). Was emitting
which codex rejected with 'invalid type: string "X", expected
struct PermissionProfileToml'.
2. Built-in profile is , NOT . Codex
rejected with 'unknown built-in profile'.
3. Codex's MCP layer sends for
tool-call confirmation. We weren't handling it, so codex stalled
and returned 'MCP tool call was rejected'. Now: auto-accept for
our own hermes-tools server (user already opted in by enabling
the runtime), decline for third-party servers.
Quirk fixes shipped (from the limitations list):
#2 default permissions: workspace profile written on enable. No more
approval prompt on every write.
#4 apply_patch approval shows what's changing: cache fileChange
items from item/started, look up by itemId when codex sends
item/fileChange/requestApproval. Prompt: '1 add, 1 update:
/tmp/new.py, /tmp/old.py' instead of '0 change(s)'.
#5/#10 exec approval cwd never empty: fall back to session cwd, then
'<unknown>'. Also surfaces 'reason' from codex when present.
#11 banner shows 'Runtime: codex app-server' line when active so
users understand why tool counts may not match what's reachable.
Tests:
- 5 new tests in test_codex_runtime_plugin_migration.py covering
plugin discovery, expose_hermes_tools entry generation, idempotent
re-runs, opt-out flag, permissions profile.
- 3 new tests in test_codex_app_server_session.py covering enriched
approval prompts (cwd fallback, fileChange summary).
- 2 new tests for mcpServer/elicitation/request handling (accept
hermes-tools, decline others).
- New test file test_hermes_tools_mcp_server.py covering module
surface, EXPOSED_TOOLS safety invariants (no shell/file_ops,
no agent-loop tools), and main() error paths.
- 166 codex-runtime tests total, all green.
Live e2e validated against codex 0.130.0 + ChatGPT subscription:
✓ /codex-runtime codex_app_server enables, migrates filesystem MCP,
registers hermes-tools, writes default_permissions = ':workspace'
✓ Banner shows 'Runtime: codex app-server' line in subsequent sessions
✓ Shell command runs without approval prompt (workspace profile works)
✓ Multi-turn — codex remembers prior turn's results
✓ apply_patch path via fileChange request approval
✓ web_search via hermes-tools MCP callback returns real Firecrawl
results: 'OpenAI Codex CLI – Getting Started' end-to-end in 13s
✓ Disable cycle clean
Docs updated: website/docs/user-guide/features/codex-app-server-runtime.md
Full re-write covering native plugin migration, the hermes-tools
callback architecture, the prerequisites change ('codex login is
separate from hermes auth login codex'), the trade-off table now
reflecting which Hermes tools work via callback, and the limitations
list updated with what's actually unavailable on this runtime.
* feat(codex-runtime): pin user-config preservation invariant for quirk #6
Quirk #6 from the limitations list — user MCP servers / overrides /
codex-only sections in ~/.codex/config.toml that live OUTSIDE the
hermes-managed block must survive re-migration verbatim.
This already worked thanks to the MIGRATION_MARKER + MIGRATION_END_MARKER
pair I added when fixing the default_permissions wire format (so the
strip can find both ends of the managed region even with top-level
keys like default_permissions). But it was an emergent property
without a test pinning it.
Now explicitly tested:
- User MCP server above the managed block survives migration
- User MCP server below the managed block survives migration
- Both above + below survive a second re-migration
- User content (model, providers, sandbox, otel, etc.) outside our
region is left untouched
Docs added a section "Editing ~/.codex/config.toml safely" explaining
the marker contract — so users know they can add their own MCP
servers, override permissions, configure codex-only options, etc.
without fear of Hermes overwriting their work.
167 codex-runtime tests, all green.
* docs(codex-runtime): clarify the actual tool surface — shell covers terminal/read/write/find
Previous docs and PR description undersold what codex's built-in
toolset actually provides. apply_patch alone made it sound like the
runtime could only edit files in patch format — implying you'd lose
terminal use, read_file, write_file, search/find. That was wrong.
Codex's 'shell' tool runs arbitrary shell commands inside the sandbox,
which covers everything you'd do in bash: cat/head/tail (read), echo>
or heredocs (write), find/rg/grep (search), ls/cd (navigate), build/
test/git/etc. apply_patch is for structured multi-file edits on top
of that. update_plan is its in-runtime todo. view_image loads images.
And codex has its own web_search built in (in addition to the
Firecrawl-backed one Hermes exposes via MCP callback).
Docs now have a 'What tools the model actually has' section right
after Why, breaking the surface into three clearly-labeled buckets:
1. Codex's built-in toolset (always on) — shell, apply_patch,
update_plan, view_image, web_search; covers everything terminal-
adjacent.
2. Native Codex plugins (auto-migrated from your codex plugin
install) — Linear, GitHub, Gmail, Calendar, Outlook, Canva, etc.
3. Hermes tool callback (MCP server in ~/.codex/config.toml) —
web_search/web_extract via Firecrawl, browser_*, vision_analyze,
image_generate, skill_view/skills_list, text_to_speech.
Plus a 'What's NOT available' callout listing the four agent-loop tools
(delegate_task, memory, session_search, todo) that need running
AIAgent context and can't reach the codex runtime.
Trade-offs table broken out: shell, apply_patch, update_plan,
view_image, sandbox each get their own row with a one-line description
so users can see at a glance what's available natively.
Architecture diagram updated to list the codex built-ins by name
instead of 'apply_patch + shell + sandbox'.
No code changes — purely docs clarification. 167 codex-runtime tests
still green.
* fix(codex-runtime): _spawn_background_review signature + review fork api_mode downgrade
Two real bugs in the self-improvement loop integration that the previous
test mocked away.
Bug 1: wrong call signature
The codex helper was calling self._spawn_background_review() with no
args after every turn. That function actually requires:
messages_snapshot=list (positional or keyword)
review_memory=bool (at least one trigger must be True)
review_skills=bool
So the call would have raised TypeError at runtime — except the only
test that exercised this path mocked _spawn_background_review entirely
and just asserted spawn.called, so the wrong-arg shape never surfaced.
Bug 2: review fork inherits codex_app_server api_mode
The review fork is constructed with:
api_mode = _parent_runtime.get('api_mode')
So when the parent is codex_app_server, the review fork ALSO runs as
codex_app_server. But the review fork's whole job is to call agent-loop
tools (memory, skill_manage) which require Hermes' own dispatch — they
short-circuit with 'must be handled by the agent loop' on the codex
runtime. So the review fork would have run, decided to save something,
called memory or skill_manage, and silently no-op'd.
Fixed in run_agent.py:_spawn_background_review() — when the parent
api_mode is 'codex_app_server', the review fork is downgraded to
'codex_responses' (same OAuth credentials, same openai-codex provider,
but talks to OpenAI's Responses API directly so Hermes owns the loop).
Also rewrote the codex helper's review wiring to match the
chat_completions path:
- Computes _should_review_memory in the pre-loop block (was already
being computed; now passed through to the helper as an arg).
- Computes _should_review_skills AFTER the codex turn returns +
counters tick (line ~15432 pattern in chat_completions).
- Calls _spawn_background_review(messages_snapshot=, review_memory=,
review_skills=) only when at least one trigger fires.
- Adds the external memory provider sync (_sync_external_memory_for_turn)
that the chat_completions path runs after every turn.
Tests:
Replaced the broken test_background_review_invoked (which only
asserted spawn.called) with three sharper tests:
- test_background_review_NOT_invoked_below_threshold:
single turn at default thresholds → no review fires (would have
caught the original 'every turn calls spawn with no args' bug)
- test_background_review_skill_trigger_fires_above_threshold:
10 tool_iterations at threshold=10 → review fires with
messages_snapshot=list, review_skills=True, counter resets
- test_background_review_signature_never_breaks: regression guard
asserting positional args are always empty and kwargs include
messages_snapshot
New TestReviewForkApiModeDowngrade class:
- test_codex_app_server_parent_downgrades_review_fork: drives the
real _spawn_background_review function (no mock at that level),
asserts the review_agent gets api_mode='codex_responses' when
the parent was codex_app_server.
Live-validated against real run_conversation:
- Counter ticked from 0 to 5 after a 5-tool-iteration turn
- _spawn_background_review fired exactly once with kwargs-only signature
- review_skills=True, review_memory=False
- messages_snapshot was 12 entries (5 assistant tool_calls + 5 tool
results + 1 final assistant + initial system/user)
- Counter reset to 0 after fire
170 codex-runtime tests, all green.
Docs: added a Self-improvement loop section to the codex runtime page
explaining both how the trigger logic stays equivalent and that the
review fork is auto-downgraded to codex_responses for the agent-loop
tools. Also clarified that apply_patch and update_plan ARE codex's
built-in tools (the previous version made it sound like they were
separate from 'codex's stuff' — they're not, all five tools listed
in 'What tools the model actually has' section 1 are codex built-ins).
* feat(codex-runtime): expose kanban tools through Hermes MCP callback
Kanban workers spawn as separate hermes chat -q subprocesses that read
the user's config.yaml. If model.openai_runtime: codex_app_server is set
globally (which is the whole point of opt-in), every dispatched worker
ALSO comes up on the codex runtime.
That mostly works — codex's built-in shell + apply_patch + update_plan
do the actual task work fine — but it had one critical break: the
worker handoff tools (kanban_complete, kanban_block, kanban_comment,
kanban_heartbeat) are Hermes-registered tools, not codex built-ins.
On the codex runtime, codex builds its own tool list and these never
reach the model, so the worker would do the work but not be able to
report back, hanging until the dispatcher's timeout escalates it as
zombie.
Fix: add all 9 kanban tools to the EXPOSED_TOOLS list in the Hermes
MCP callback. They dispatch statelessly through handle_function_call()
just like web_search and the others — they read HERMES_KANBAN_TASK
from env (set by the dispatcher), gate correctly (worker tools require
the env var, orchestrator tools require it unset), and write to
~/.hermes/kanban.db.
Why kanban tools work via stateless dispatch when delegate_task/memory/
session_search/todo don't: those four are listed in _AGENT_LOOP_TOOLS
(model_tools.py:493) and short-circuit in handle_function_call() with
'must be handled by the agent loop' — they need to mutate AIAgent's
mid-loop state. Kanban tools have no such requirement; they're pure
side-effect functions against the kanban.db plus state_meta.
Tools exposed:
Worker handoff (require HERMES_KANBAN_TASK):
kanban_complete, kanban_block, kanban_comment, kanban_heartbeat
Read-only board queries:
kanban_show, kanban_list
Orchestrator (require HERMES_KANBAN_TASK unset):
kanban_create, kanban_unblock, kanban_link
Tests:
- test_kanban_worker_tools_exposed: complete/block/comment/heartbeat
in EXPOSED_TOOLS (regression guard for the would-hang-worker bug)
- test_kanban_orchestrator_tools_exposed: create/show/list/unblock/link
Docs:
- New 'Workflow features' section in the docs page covering /goal,
kanban, and cron behavior on this runtime
- /goal: works fully via run_conversation feedback; only caveat is
approval-prompt noise on long writes-heavy goals (mitigated by
the default :workspace permission profile)
- Kanban: enumerated which tools are reachable via the callback and
why the env var propagates correctly through the codex subprocess
to the MCP server subprocess
- Cron: documented as 'not specifically tested' — same rules as the
CLI apply since cron runs through AIAgent.run_conversation
- Trade-offs table gained rows for /goal, kanban worker, kanban
orchestrator
172/172 codex-runtime tests green (+2 from kanban tests).
* docs(codex-runtime): wire /codex-runtime into slash-commands ref + flag aux token cost
Three docs gaps caught during a final audit:
1. /codex-runtime was only in the feature docs page, not in the
slash-commands reference. Added rows to both the CLI section and
the Messaging section so users discover it where they'd look for
slash command syntax.
2. CODEX_HOME and HERMES_KANBAN_TASK weren't in environment-variables.md.
CODEX_HOME lets users redirect Codex CLI's config dir (the migration
honors it). HERMES_KANBAN_TASK is set by the kanban dispatcher and
propagates to the codex subprocess + the hermes-tools MCP subprocess
so kanban worker tools gate correctly — documented as 'don't set
manually' since it's an internal handoff.
3. Aux client behavior on this runtime. When openai_runtime=
codex_app_server is on with the openai-codex provider, every aux
task (title generation, context compression, vision auto-detect,
session search summarization, the background self-improvement review
fork) flows through the user's ChatGPT subscription by default.
This is true for the existing codex_responses path too, but it's
more visible / important here because users explicitly opted in for
subscription billing. Added a 'Auxiliary tasks and ChatGPT
subscription token cost' section to the docs page with a YAML
example showing how to override specific aux tasks to a cheaper
model (typically google/gemini-3-flash-preview via OpenRouter).
Also documents how the self-improvement review fork gets
auto-downgraded from codex_app_server to codex_responses by the
fix earlier in this PR.
No code changes — pure docs. 172 codex-runtime tests still green.
* docs+test(codex-runtime): pin HOME passthrough, document multi-profile + CODEX_HOME
OpenClaw hit a real footgun in openclaw/openclaw#81562: when spawning
codex app-server they were synthesizing a per-agent HOME alongside
CODEX_HOME. That made every subprocess codex's shell tool launches
(gh, git, aws, npm, gcloud, ...) see a fake $HOME and miss the user's
real config files. They had to back it out in PR #81562 — keep
CODEX_HOME isolation, leave HOME alone.
Audit confirms Hermes' codex spawn doesn't have this problem. We do
os.environ.copy() and only overlay CODEX_HOME (when provided) and
RUST_LOG. HOME passes through unchanged. But it was an emergent
property without a test pinning it, so adding a regression guard:
test_spawn_env_preserves_HOME — confirms parent HOME survives intact
in the subprocess env
test_spawn_env_sets_CODEX_HOME_when_provided — confirms codex_home
arg still isolates
codex state correctly
Docs additions:
'HOME environment variable passthrough' section — calls out the
contract explicitly: CODEX_HOME isolates codex's own state, HOME
stays user-real so gh/git/aws/npm/etc. find their normal config.
Cites openclaw#81562 as the cautionary tale.
'Multi-profile / multi-tenant setups' section — addresses the
related concern: profiles share ~/.codex/ by default. For users who
want per-profile codex isolation (separate auth, separate plugins),
documents the manual CODEX_HOME=<profile-scoped-dir> approach.
Explains why we DON'T auto-scope CODEX_HOME per profile: doing so
would silently invalidate existing codex login state for anyone
upgrading to this PR with tokens already at ~/.codex/auth.json.
Opt-in is safer than surprising users.
174 codex-runtime tests (+2 from HOME guards), all green.
* fix(codex-runtime): TOML control-char escapes + atomic config.toml write
Two footguns caught in a final audit pass before merge.
Bug 1: TOML control characters not escaped
The _format_toml_value() helper escaped backslashes and double quotes
but passed literal control characters (\n, \t, \r, \f, \b) through
unchanged. TOML basic strings don't allow literal control characters
— a path or env var containing a newline would produce invalid TOML
that codex refuses to load.
Realistic exposure: pathological cases like a HERMES_HOME with a
trailing newline (env var concatenation accident), or a PYTHONPATH
with a tab from a multi-line shell heredoc.
Fix: escape all five TOML basic-string control sequences (\b \t \n
\f \r) in addition to \\ and \" that we already did. Order
matters — backslash must come first or the other escapes get
re-escaped.
Bug 2: config.toml write wasn't atomic
If the python process crashed between target.mkdir() and the
write_text() finishing, a half-written config.toml could be left
behind. On NFS / Windows / some FUSE mounts this is a real concern;
on ext4/APFS small writes are usually atomic in practice but not
guaranteed.
Fix: write to a tempfile.mkstemp() temp file in the same directory,
then Path.replace() (atomic same-dir rename on POSIX, ReplaceFile on
Windows). On rename failure, clean up the temp file so repeated
failed migrations don't pile up .config.toml.* files.
Tests:
- test_string_with_newline_escaped — \n in value → \n in output
- test_string_with_tab_escaped — \t in value → \t in output
- test_string_with_other_controls_escaped — \r, \f, \b
- test_windows_path_escaped_correctly — backslash doubling
- test_atomic_write_no_temp_leak_on_success — no .config.toml.*
left over after a successful write
- test_atomic_write_cleanup_on_rename_failure — temp file removed
when Path.replace raises (simulated disk full)
180 codex-runtime tests, all green (+6 from this commit).
Footguns audited but NOT fixed (with rationale):
- Concurrent migrations race. Two Hermes processes hitting
/codex-runtime codex_app_server within seconds of each other could
cause one writer to lose entries. Low probability (you'd have to
enable from two surfaces simultaneously) and low impact (just re-run
migration). Adding fcntl/msvcrt locking is more code than it's
worth here. The atomic rename above means each individual write is
consistent — only the merge step is racy.
- Codex protocol version drift. We pin MIN_CODEX_VERSION=0.125 and
check at runtime but don't reject too-new versions. Right call —
the protocol has been stable through 0.125 → 0.130. If OpenAI
breaks it later we'd see the error in test_codex_app_server_runtime
on CI before users hit it.
Recover from SIGWINCH without clearing the physical screen or scrollback
buffer. The startup banner and tool summary are printed before
prompt_toolkit owns the live chrome, so they live in normal terminal
scrollback. Calling erase_screen() + \x1b[3J] on every resize removed
that UI permanently — _replay_output_history cannot reconstruct it
because the banner was never added to _OUTPUT_HISTORY.
Instead, just reset prompt_toolkit's renderer cache and invalidate so
the next incremental redraw starts from a clean slate, then let the
original on_resize handler recalculate layout for the new terminal
size. This matches the behaviour of bash/zsh/fish on SIGWINCH.
FixesNousResearch/hermes-agent#22999
- memory_setup.py: use shlex.split() for plugin dep checks instead of shell=True
- transcription_tools.py: avoid shell=True for auto-detected whisper commands
(user-provided templates via env var still use shell=True for compatibility)
- cli.py: add comment clarifying intentional shell=True for user quick_commands
- Add test verifying auto-detected template is shlex-safe
Addresses CONTRIBUTING.md Priority #3 (Security hardening — shell injection).
Replace `len(label)` with `HermesCLI._status_bar_display_width(label)`
in two places where the response box top border is rendered.
`len()` counts characters, not terminal columns. CJK characters like
`测` and `试` each occupy 2 columns, causing the top border
`╭─ 测试 ───╮` to render 2 columns wider than the bottom border
`╰─────────╯`.
The `_status_bar_display_width` helper already exists (line 2881) and
uses `prompt_toolkit.utils.get_cwidth` for proper CJK width calculation.
* feat(security): supply-chain advisory checker + lazy-install framework + tiered install fallback
Three coordinated mitigations for the Mini Shai-Hulud worm hitting
mistralai 2.4.6 on PyPI (2026-05-12) and for the next single-package
compromise that follows.
# What this PR makes true
1. Users with the poisoned mistralai 2.4.6 in their venv get a loud
detection banner with copy-pasteable remediation steps the moment
they run hermes (and on every gateway startup).
2. One quarantined / yanked PyPI package can no longer silently demote
a fresh install to 'core only' — the installer keeps every other
extra and tells the user which tier landed.
3. Future opt-in backends (Mistral, ElevenLabs, Honcho, etc.) can
lazy-install on first use under a strict allowlist, instead of
eagerly pulling everything at install time.
# Detection: hermes_cli/security_advisories.py
- ADVISORIES catalog (one entry currently: shai-hulud-2026-05 for
mistralai==2.4.6). Adding the next one is a single dataclass.
- detect_compromised() uses importlib.metadata.version() — no pip
dependency, works in uv venvs that lack pip.
- Banner cache (~/.hermes/cache/advisory_banner_seen) rate-limits
the startup banner to once per 24h per advisory.
- Acks persisted to security.acked_advisories in config.yaml; never
re-banner after ack.
- Wired into:
* hermes doctor — runs first, prints full remediation block
* hermes doctor --ack <id> — dismisses an advisory
* cli.py interactive run() and single-query branches — short
stderr banner pointing at hermes doctor
* gateway/run.py startup — operator-visible warning in gateway.log
# Lazy-install framework: tools/lazy_deps.py
- LAZY_DEPS allowlist maps namespaced feature keys (tts.elevenlabs,
memory.honcho, provider.bedrock, etc.) to pip specs.
- ensure(feature) installs missing deps in the active venv via the
uv → pip → ensurepip ladder (matches tools_config._pip_install).
- Strict spec safety regex rejects URLs, file paths, shell metas,
pip flag injection, control chars — only PyPI-by-name accepted.
- Gated on security.allow_lazy_installs (default true) plus the
HERMES_DISABLE_LAZY_INSTALLS env var for restricted/audited envs.
- Migrated three backends as proof of pattern:
* tools/tts_tool.py — _import_elevenlabs() calls ensure first
* plugins/memory/honcho/client.py — get_honcho_client lazy-installs
* tts.mistral / stt.mistral entries pre-registered for when PyPI
restores mistralai
# Installer fallback tiers
scripts/install.sh, scripts/install.ps1, setup-hermes.sh:
- Centralised _BROKEN_EXTRAS list (currently: mistral). Edit one
array when a transitive breaks; users keep every other extra.
- New 'all minus known-broken' tier between [all] and the existing
PyPI-only-extras tier. Only kicks in when [all] fails resolve.
- All three tiers explicit: every fallback announces which tier
landed and prints a re-run hint when not on Tier 1.
- install.ps1 and install.sh both regenerate their tier specs from
the same _BROKEN_EXTRAS array so updates stay in sync.
Side effect: install.ps1 Tier 2 spec previously hardcoded 'mistral'
in its extra list — bug fixed by the refactor (mistral is filtered
out).
# Config
hermes_cli/config.py — DEFAULT_CONFIG.security gains:
- acked_advisories: [] (advisory IDs the user has dismissed)
- allow_lazy_installs: True (security gate for ensure())
No config version bump needed — both keys nest under existing
security: block, and load_config's deep-merge picks up DEFAULT_CONFIG
defaults for users with older configs.
# Tests
tests/hermes_cli/test_security_advisories.py — 23 tests covering:
- detect_compromised matches/non-matches, wildcard frozenset
- ack persistence, idempotence, blank rejection, config-failure path
- banner cache rate limiting + 24h re-banner + ack-stops-banner
- short_banner_lines / full_remediation_text / render_doctor_section /
gateway_log_message
- shipped catalog well-formedness invariant
tests/tools/test_lazy_deps.py — 40 tests covering:
- spec safety: 11 safe parametrized + 18 unsafe parametrized
- allowlist: unknown-feature rejection, namespace.name shape,
every shipped spec passes the safety regex
- security gating: config flag, env var, default, fail-open
- ensure() happy/sad paths: already-satisfied, install success,
pip stderr surfaced on failure, install-succeeds-but-still-missing
- is_available, feature_install_command
Combined: 63 new tests, all passing under scripts/run_tests.sh.
# Validation
- scripts/run_tests.sh tests/hermes_cli/test_security_advisories.py
tests/tools/test_lazy_deps.py → 63/63 passing
- scripts/run_tests.sh tests/hermes_cli/test_doctor.py
tests/hermes_cli/test_doctor_command_install.py
tests/tools/test_tts_mistral.py tests/tools/test_transcription_tools.py
tests/tools/test_transcription_dotenv_fallback.py → 165/165 passing
- scripts/run_tests.sh tests/hermes_cli/ tests/tools/ →
9191 passed, 8 pre-existing failures (verified on origin/main
before this change)
- bash -n on install.sh and setup-hermes.sh → OK
- py_compile on all modified .py files → OK
- End-to-end smoke test of detect_compromised + render_doctor_section
+ gateway_log_message with mocked installed version → produces
copy-pasteable remediation output
# Community
Full advisory + remediation steps:
website/docs/community/security-advisories/shai-hulud-mistralai-2026-05.md
Short-form post drafts (Discord, GitHub pinned issue, README banner):
scripts/community-announcement-shai-hulud.md
Refs: PR #24205 (mistral disabled), Socket Security advisory
<https://socket.dev/blog/mini-shai-hulud-worm-pypi>
* build(deps): pin every direct dep to ==X.Y.Z (no ranges)
Companion to the supply-chain advisory work: replace every >=/</~= range
in pyproject.toml's [project.dependencies] and [project.optional-dependencies]
with an exact ==X.Y.Z pin sourced from uv.lock.
Why: ranges allow PyPI to ship a fresh version of any direct dep at any
time without a code review on our side. With ranges, the malicious
mistralai 2.4.6 release would have been pulled by every fresh
'pip install -e .[all]' for the hours between upload and PyPI's
quarantine — exactly the install window we got hit on. Exact pins close
that window: the only way a new package version reaches a user is via
an intentional update on our end.
What the user-facing change is: nothing, behavior-wise. Every package
resolves to the same version it was already resolving to via uv.lock —
the pins just remove the resolver's freedom to pick a different one.
Cost: any user installing Hermes alongside another package that requires
a newer pin gets a resolver conflict. Acceptable for our isolated-venv
install path; documented in the new comment block.
Build-system requires line (setuptools>=61.0) is intentionally left
as a range — pinning the build backend would block fresh pip from
bootstrapping the build on architectures where that exact wheel isn't
available.
mistral extra (mistralai==2.3.0) is pinned but stays out of [all]
(per PR #24205). 'uv lock' regeneration will fail until PyPI restores
mistralai; lockfile regeneration is gated behind that, NOT on every PR.
LAZY_DEPS in tools/lazy_deps.py also moved to exact pins so the lazy-
install pathway can never resolve a different version than the one
declared in pyproject.toml.
Validation:
- Cross-checked all 77 pinned direct deps in pyproject.toml against
uv.lock — every pin matches the resolved version exactly.
- Cross-checked all LAZY_DEPS specs against uv.lock — same.
- 'uv pip install -e .[all] --dry-run' resolves 205 packages cleanly.
- tests/tools/test_lazy_deps.py + tests/hermes_cli/test_security_advisories.py
→ 63/63 passing (every shipped spec passes the safety regex).
- Doctor + TTS + transcription targeted suite → 146/146 passing.
* build(deps): hash-verify transitives via uv.lock; remove unresolvable [mistral] extra
You asked: 'what about the dependencies the dependencies rely on?' —
correctly noting that exact-pinning direct deps in pyproject.toml does
NOT cover the transitive graph. `pip install` and `uv pip install` both
re-resolve transitives fresh from PyPI at install time, so a compromised
transitive (e.g. `httpcore` if it got worm-poisoned tomorrow) would
still hit our users even with every direct dep exact-pinned.
# What this commit fixes
1. **Both real installer scripts now prefer `uv sync --locked` as Tier 0.**
uv.lock records SHA256 hashes for every transitive — a compromised
package with a different hash gets REJECTED. Falls through to the
existing `uv pip install` cascade if the lockfile is missing or
stale, with a loud warning that the fallback path does NOT
hash-verify transitives. Previously only `setup-hermes.sh` (the dev
path) used the lockfile; `scripts/install.sh` and `scripts/install.ps1`
(the paths fresh users actually run) skipped it.
2. **Removed the `[mistral]` extra entirely.** The `mistralai` PyPI
project is fully quarantined right now — every version returns 404,
so any pin we wrote was unresolvable, which broke `uv lock --check`
in CI. Restoration is documented in pyproject.toml as a 5-step
checklist (verify, re-add extra, re-enable in 4 modules, regenerate
lock, optionally re-add to [all]).
3. **Regenerated uv.lock.** 262 packages, mistralai/eval-type-backport/
jsonpath-python pruned. `uv lock --check` now passes.
# Defense-in-depth view
| Layer | Where | Protects against |
|----------------------------|-------------------|-------------------------------------------|
| Exact pins in pyproject | direct deps | new mistralai 2.4.6-style direct compromise |
| uv.lock + `--locked` install | transitive graph | transitive worm injection |
| Tier-0 hash-verified path | install.sh / .ps1 | actually USE the lockfile in fresh installs |
| `uv lock --check` CI gate | every PR | drift between pyproject and lockfile |
| `hermes_cli/security_advisories.py` | runtime | cleanup for users who already got hit |
The exact pinning + hash verification together close the supply-chain
gap. Without the lockfile path, exact pins alone are theater.
# Validation
- `uv lock --check` → passes (262 packages resolved, no drift).
- `bash -n` on install.sh + setup-hermes.sh → OK.
- 209/209 tests passing across new + adjacent test files
(test_lazy_deps.py, test_security_advisories.py, test_doctor.py,
test_tts_mistral.py, test_transcription_tools.py).
- TOML parse OK.
* chore: remove community announcement drafts (PR body covers it)
* build(deps): lazy-install every opt-in backend (anthropic, search, terminal, platforms, dashboard)
Extends the lazy-install framework to cover everything that's not used by
every hermes session. Base install drops from ~60 packages to 45.
Moved out of core dependencies = []:
- anthropic (only when provider=anthropic native, not via aggregators)
- exa-py, firecrawl-py, parallel-web (search backends; only when picked)
- fal-client (image gen; only when picked)
- edge-tts (default TTS but still optional)
New extras in pyproject.toml: [anthropic] [exa] [firecrawl] [parallel-web]
[fal] [edge-tts]. All added to [all].
New LAZY_DEPS entries: provider.anthropic, search.{exa,firecrawl,parallel},
tts.edge, image.fal, memory.hindsight, platform.{telegram,discord,matrix},
terminal.{modal,daytona,vercel}, tool.dashboard.
Each import site now calls ensure() before importing the SDK. Where the
module had a top-level try/except (telegram, discord, fastapi), the
graceful-fallback pattern was extended to lazy-install on first
check_*_requirements() call and re-bind module globals.
Updated test_windows_native_support.py tzdata check from snapshot
(>=2023.3 literal) to invariant (any version + win32 marker).
Validation:
- Base install: 45 packages (was ~60); 6 newly-extracted packages absent
- uv lock --check: passes (262 packages, no drift)
- 209/209 lazy_deps + advisory + doctor + tts/transcription tests passing
- py_compile clean on all 12 modified modules
Follow-up to #23863 (CJK table alignment). The realigner was
correctly padding pipes to identical column offsets, but when a
table's natural width exceeds terminal cells it produced lines that
the terminal soft-wrapped mid-cell, destroying column alignment
visually even though the bytes were perfectly padded. Reported as
'columns are not aligned' on tables containing one long row alongside
several short rows.
Approach mirrors Claude Code's MarkdownTable.tsx narrow-terminal
fallback: when realign_markdown_tables is given an available_width
budget and the rebuilt horizontal table exceeds it, render each body
row as 'Header: value' lines separated by a thin ─ rule. Word-wraps
oversize values at the budget with a 2-space continuation indent.
- agent/markdown_tables.py: realign_markdown_tables(text, available_width=None);
threshold check at the top of _render_block flips into a new
_render_vertical fallback. Includes _wrap_to_width with hard-break
for tokens longer than the budget.
- cli.py: helper _terminal_width_for_streaming() returns
shutil.get_terminal_size().columns minus _STREAM_PAD and a 2-cell
safety margin; passed to all three realign call sites
(_render_final_assistant_content for strip+render Panel paths, and
the streaming flushers in _emit_stream_text / _flush_stream).
- tests/agent/test_markdown_tables.py: 4 new tests covering the
overflow-vertical fallback for ASCII + CJK content, the
'fits → keep horizontal' case, and the long-cell wrap with indent.
Live-verified: with COLUMNS=100, the user's reported 'long row in
ASCII table' case now renders as vertical key-value rows that all fit
the panel; the 6-column CJK comparison table still renders as an
aligned horizontal table because it fits inside 100 cols.
Replace with for all literal-tuple
membership tests. Set lookup is O(1) vs O(n) for tuple — consistent
micro-optimization across the codebase.
608 instances fixed via `ruff --fix --unsafe-fixes`, 0 remaining.
133 files, +626/-626 (net zero).
CJK and emoji glyphs render as two terminal cells but JS String#length
and the model's own padding count them as one, so any markdown table
with Chinese / Japanese / Korean cells drifts right per row when a
real terminal renders it. Both surfaces fix this with a display-cell
width measurement (wcswidth on the Python side, stringWidth on the
TUI side).
Changes:
- agent/markdown_tables.py: new helper. realign_markdown_tables(text)
detects markdown table blocks (header + |---| divider) and
rewrites the row padding using wcwidth.wcswidth so every pipe and
dash lines up across rows. No-op on text without tables.
- cli.py: hook the helper into _render_final_assistant_content for
strip / render modes (raw passes through untouched), and into the
streaming line emitter so live token-by-token rendering also
produces aligned tables. A small two-buffer state machine in
_emit_stream_text holds table rows until the block ends, then
flushes them through the realigner so all rows pad to a single
per-column width.
- ui-tui/src/components/markdown.tsx: renderTable now uses
stringWidth (Bun.stringWidth fast path + East-Asian-width-aware
fallback, already memoised in @hermes/ink) instead of UTF-16
String#length for both column-width measurement and per-cell
padding. Drops the comment that documented the bug as a deliberate
limitation.
Validation:
- New tests/agent/test_markdown_tables.py (11): every rebuilt block
shares pipe column offsets across rows for pure CJK, mixed
CJK+emoji, ragged-row, and multi-table inputs.
- Updated tests/cli/test_cli_markdown_rendering.py: the existing
strip-mode test asserted exact whitespace; rewritten to assert the
alignment contract (cell content survives + every rendered row
shares pipe offsets).
- New ui-tui markdown.test.ts case (1): rendered column-2 start
offset is identical for the header + every body row, including
the CJK row that drifted before the fix.
- Live: hermes chat -q with the user-reported screenshot prompt now
produces a perfectly aligned table on the wire (header, divider,
4 body rows including '通义千问', all pipes at identical columns).
- getattr(self, '_slash_confirm_state', None) at the two read sites that
trip object.__new__(HermesCLI) test fixtures (test_cli_external_editor,
test_cli_skin_integration)
- _build_tui_layout_children: make slash_confirm_widget keyword-only with
default None to avoid breaking subclassing extension hook for wrapper
CLIs (test_cli_extension_hooks)
- AUTHOR_MAP entry for zhengyn0001
Follow-up to the salvaged commit ca1d4375a.
* Revert "fix(goals): force judge to use tool calls instead of JSON-text replies (#23547)"
This reverts commit a63a2b7c78.
* Revert "fix(goals): forward standing /goal state on auto-compression session rotation (#23530)"
This reverts commit 4a080b1d5a.
* Revert "feat(goals): /goal checklist + /subgoal user controls (#23456)"
This reverts commit 404640a2b7.
Two independent opt-in QoL toggles, both off by default.
terminal.docker_extra_args:
- List of extra flags appended verbatim to docker run after security
defaults. Useful for adding capabilities (e.g. --cap-add SETUID) or
other docker run options not exposed by existing config keys.
- Non-string entries are logged and skipped.
- Also available via TERMINAL_DOCKER_EXTRA_ARGS='[...]' env var.
display.timestamps:
- Appends [HH:MM] to user input bullet and the assistant response box
header. Single hub in _format_submitted_user_message_preview()
covers both single-line and multi-line user previews; assistant
response label gets the timestamp at box-open time.
Closes#1569 (timestamps).
Co-authored-by: Mibayy <Mibayy@users.noreply.github.com>
* feat(goals): /goal checklist + /subgoal user controls
Two-phase judge for /goal — Phase A decomposes the goal into a detailed
checklist on first turn; Phase B evaluates each pending item harshly
against the agent's most recent response. The goal completes only when
every item is in a terminal status (completed or impossible). Adds
/subgoal so the user can append, complete, mark impossible, undo,
remove, or clear items the judge missed or got wrong.
Mechanics:
- GoalState gains `checklist` and `decomposed` fields, both backwards
compatible (old state_meta rows load unchanged).
- Phase A: aux call writes a harsh, exhaustive checklist; biased toward
more items not fewer. Falls through to legacy freeform judge when
decompose fails.
- Phase B: judge gets the checklist + last-response snippet + path to
a per-session conversation dump at <HERMES_HOME>/goals/<sid>.json.
A bounded read_file tool (max 5 calls per turn, restricted to that
one file) lets the judge inspect history when the snippet is
ambiguous. Stickiness in code: terminal items are frozen, only the
user can revert via /subgoal undo.
- Continuation prompt shows checklist progress when non-empty;
reverts to old prompt when empty.
- Status line shows M/N done counts.
CLI + gateway + TUI gateway all pass the agent reference into
evaluate_after_turn so the dump can be written. Gateway-side
/subgoal is allowed mid-run since it only modifies the checklist
the judge consults at turn boundaries.
Tests: 24 new cases — backcompat round-trip, Phase A decompose,
Phase B updates + new_items + stickiness, user override flows,
conversation dump (incl. unsafe-sid sanitization), judge read_file
restriction. Existing freeform-mode tests updated to patch the
renamed `judge_goal_freeform` and skip Phase A explicitly.
* fix(goals): off-by-one in judge index, message-list plumbing, prompt tuning
Three live-test findings from running /goal end-to-end against
gemini-3-flash-preview as the judge:
1. Off-by-one bug — the judge sees the checklist rendered with 1-based
indices ('1. [ ] foo, 2. [ ] bar') but the apply layer indexed
state.checklist as 0-based. Result: every judge update landed on
the wrong item, evidence got attached to neighbouring rows, and
the genuine 'first pending' item (usually #1) never got marked.
Fix: convert 1 → 0 in _parse_evaluate_response. Also tightened the
user prompt to call out the 1-based scheme explicitly. New tests
cover the parser conversion + an end-to-end fake-judge round-trip.
2. Conversation dump never happened — _extract_agent_messages tried
common AIAgent attribute names (.messages, .conversation_history,
etc.) but AIAgent doesn't expose the message list as an instance
attribute; it lives inside run_conversation()'s scope. Result: the
judge's read_file tool always saw history_path=unavailable. Fix:
added an explicit messages= kwarg to evaluate_after_turn that all
three call sites (CLI, gateway, TUI gateway) now pass directly.
Agent-attribute extraction kept as back-compat fallback.
3. Prompt was too harsh on simple goals. The original 'be HARSH,
default to leaving items pending' wording made the judge refuse
to mark 'file exists' completed even after the agent ran ls,
test -f, os.path.isfile, and find — burning the entire 8-turn
budget on a fizzbuzz task. Softened to 'strict but not absurd'
with explicit guidance on what counts as evidence and a directive
not to require re-proving items already established earlier.
Re-tested live with the same fizzbuzz goal: now terminates in 2
turns with all 8 checklist items correctly attributed to their
own evidence. /subgoal user-action flow (add / complete / undo /
impossible) verified live as well.
Slash commands (/clear, /new, /undo, /reload-mcp) are dispatched from the
process_loop daemon thread. prompt_toolkit.run_in_terminal returns a
coroutine that only the main-thread event loop can drive, so calling it
from a daemon thread orphans the coroutine — the input prompt never
renders and user keystrokes leak into the composer instead of the
confirmation prompt (issue #23185).
Mirror the thread-aware guard already in _run_curses_picker: when off the
main thread, fall back to a direct input() call. Also wrap
run_in_terminal in try/except so WSL / Warp / other emulators that
silently drop the scheduled coroutine fall back to input() too.
Tests: tests/cli/test_prompt_text_input_thread_safety.py covers main
thread (run_in_terminal path), daemon thread (direct input fallback),
no-app, run_in_terminal-raises, and EOF handling.
Builds on @kshitijk4poor's CLI handoff stub. The original PR's flow
deferred everything to whenever a real user happened to message the
target platform; this rewrites it so the gateway picks up handoffs
immediately and the destination chat just starts working.
State machine on sessions table replaces the boolean flag:
None -> 'pending' -> 'running' -> ('completed' | 'failed')
plus handoff_error for failure reasons. CLI request_handoff /
get_handoff_state / list_pending_handoffs / claim_handoff /
complete_handoff / fail_handoff helpers wrap the transitions.
CLI side (cli.py): /handoff <platform> validates the platform's home
channel via load_gateway_config, refuses if the agent is mid-turn,
flips the row to 'pending', and poll-blocks (60s) on terminal state.
On 'completed' it prints the /resume hint and exits the CLI like
/quit. On 'failed' or timeout it surfaces the reason and the CLI
session stays intact.
Gateway side (gateway/run.py): new _handoff_watcher background task
scans state.db every 2s, atomically claims pending rows, and runs
_process_handoff for each. _process_handoff:
1. Resolves the platform's home channel.
2. Asks the adapter for a fresh thread via the new
create_handoff_thread(parent_chat_id, name) capability so the
handed-off conversation gets its own scrollback. Adapters that
don't support threads (or fail) return None and the watcher
falls back to the home channel directly.
3. Constructs a SessionSource keyed as 'thread' when a thread was
created, 'dm' otherwise, then session_store.switch_session
re-binds the destination key to the CLI session_id. The full
role-aware transcript replays via load_transcript on the next
turn (no flat-text injection into context_prompt).
4. Forges a synthetic MessageEvent(internal=True) with the handoff
notice and dispatches through _handle_message; the agent runs
against the loaded transcript and adapter.send delivers the
reply.
5. Marks the row 'completed' on success, 'failed' (+error) on any
exception.
Adapter capability (gateway/platforms/base.py): create_handoff_thread
default returns None. Three overrides:
- Telegram (gateway/platforms/telegram.py): wraps _create_dm_topic
so DM topics (Bot API 9.4+) and forum supergroups both work.
- Discord (gateway/platforms/discord.py): parent.create_thread on
text channels with a seed-message + message.create_thread
fallback for permission edge cases. Skips DMs and other
non-thread-capable parents.
- Slack (gateway/platforms/slack.py): posts a seed message and
returns its ts as the thread anchor — Slack threads are
message-anchored.
In thread mode, build_session_key keys the destination without
user_id (thread_sessions_per_user defaults to False) so the synthetic
turn and any later real-user message in the thread share the same
session_key — seamless takeover without race.
CommandDef stays cli_only=True (handoff is initiated from the CLI;
gateway exposes /resume for the reverse direction).
Removed the original PR's _handle_message_with_agent handoff hook
(transcript-as-text injection into context_prompt) and the
send_message_tool notification — both replaced by the watcher path.
Tests rewritten around the new state machine: 13/13 pass.
E2E-validated thread + no-thread paths and the failure path against
real worktree imports with mocked adapters.
Adds /handoff <platform> CLI command that queues the current session for
resume on the configured home channel of any messaging platform.
CLI side:
- /handoff telegram — marks session in shared DB, sends summary to
the Telegram home channel via send_message
- /handoff discord — same for Discord
- Supports telegram, discord, slack, whatsapp, signal, matrix
Gateway side:
- On new session creation, checks for pending handoffs for the
incoming message's platform
- If found, loads the CLI session's full conversation history and
injects it into the context prompt as a handoff transcript
- Agent continues the conversation seamlessly
Files:
- hermes_state.py: handoff_pending, handoff_platform columns + helpers
- cli.py: _handle_handoff_command dispatch + handler
- hermes_cli/commands.py: CommandDef entry
- gateway/run.py: handoff detection in _handle_message_with_agent
- tests/hermes_cli/test_session_handoff.py: 8 tests
Subagent stream drops were spamming the parent terminal with two lines
per blip ('Connection dropped...' + 'Reconnected...') while leaving zero
breadcrumb in agent.log to debug them.
Two underlying bugs, fixed together:
1. quiet_mode raised the run_agent/tools/etc. loggers to ERROR, which
filters records before root-logger file handlers see them. The comment
claimed 'File handlers still capture everything' — that was wrong.
Removed in both run_agent.py and cli.py; console quietness already
comes from hermes_logging not installing a console StreamHandler in
non-verbose mode.
2. The stream-retry blocks emitted two _emit_status calls per drop
('⚠️ Connection dropped... Reconnecting...' + '🔄 Reconnected —
resuming…') with no provider name, so multi-provider sessions had to
dig through agent.log to attribute a drop. Replaced both call sites
with a single _emit_stream_drop helper that emits ONE line naming the
provider and error class, and always writes a structured WARNING to
agent.log with subagent_id, depth, provider, base_url, error_type.
Net UX change: 6 lines per triple-subagent drop → 3 lines, each
naming the provider. agent.log now has a structured breadcrumb per
retry that didn't exist before.
Tests: 6 new tests in tests/run_agent/test_stream_drop_logging.py
covering the logger-level guard, structured WARNING content, single
status line per drop (no Reconnected follow-up), and provider naming.
`hermes chat -q "..."` printed the full welcome banner before
running the query — kawaii ASCII logo, available toolsets list,
available skills list, model name, session ID, working directory,
update-available notice. Building it took ~420 ms on cold start
(~200 ms version-update probe, the rest is toolset / skill enumeration
plus Rich panel rendering).
For a one-shot `-q` query the banner is noise: the user already
picked the prompt, doesn't need a toolset reference, and gets the
session ID + resume hint from `_print_exit_summary()` after the
response prints.
The fully-quiet `-Q` / `--quiet` machine-readable path was already
banner-free; this brings the human-facing single-query path in line
so all non-interactive invocations are fast.
Measured impact (`hermes chat -q "ok" --max-turns 1`, 10-run
percentiles, 9950X3D):
median: 1.90 → 1.75 s (-150 ms)
min: 1.80 → 1.73 s ( -70 ms)
P25: 1.82 → 1.74 s ( -80 ms)
Wider variance than expected; the banner cost overlaps with API
latency on real `chat -q` runs. Min-time delta of 70 ms is the
cleanest signal — that's the deterministic banner-build cost gone.
The 150 ms median delta picks up cases where the version-update
probe also finishes during the wait.
Interactive mode (`hermes` with no `-q`) and the `--list-tools` /
`--list-toolsets` one-shot listing commands still show the banner —
those are the contexts where it's actually wanted.
Tests: 656/656 `tests/cli/` pass on top of latest main (modulo 5 pre-
existing flakes in `test_cli_save_config_value.py` that fail with
`No module named 'ruamel'` both with and without this change).
Problem: terminal.docker_env set in config.yaml was silently ignored.
Docker containers never received the user-specified env vars.
Root cause: docker_env was missing from all three config→env bridging
maps (cli.py env_mappings, gateway/run.py _terminal_env_map,
hermes_cli/config.py _config_to_env_sync) and from the terminal_tool
_get_env_config() reader. _create_environment() consumed the key from
container_config correctly, but it was always {} because TERMINAL_DOCKER_ENV
was never set.
Also extend the list-serialisation branches in cli.py and gateway/run.py
to handle dict values via json.dumps (lists already used json.dumps;
plain str() on a dict produces undecodable output).
Fix:
- cli.py: add "docker_env": "TERMINAL_DOCKER_ENV" to env_mappings;
serialise dict values with json.dumps alongside existing list path
- gateway/run.py: same additions to _terminal_env_map and serialisation
- hermes_cli/config.py: add "terminal.docker_env": "TERMINAL_DOCKER_ENV"
to _config_to_env_sync so `hermes config set terminal.docker_env …`
persists to .env correctly
- tools/terminal_tool.py: add docker_env key to _get_env_config() reading
TERMINAL_DOCKER_ENV via _parse_env_var with default "{}"
Tests: add test_docker_env_is_bridged_everywhere to
tests/tools/test_terminal_config_env_sync.py — stash-verified: fails on
origin/main, passes with fix.
Fixes#20537
Pick openrouter/pareto-code as your model and OpenRouter auto-routes each
request to the cheapest model meeting your coding-quality bar (ranked by
Artificial Analysis). The new openrouter.min_coding_score config key (0.0-1.0,
default 0.65) tunes the floor.
- hermes_cli/models.py: add openrouter/pareto-code to OPENROUTER_MODELS so
it shows up in the picker with a description
- hermes_cli/config.py: add openrouter.min_coding_score (default 0.65 — lands
on a mid-tier coder on the current Pareto frontier)
- plugins/model-providers/openrouter: emit extra_body.plugins =
[{id: pareto-router, min_coding_score: X}] when model is openrouter/pareto-code
AND the score is a valid float in [0.0, 1.0]
- agent/transports/chat_completions.py: same emission on the legacy flag
path (when no provider profile is loaded)
- run_agent.py: openrouter_min_coding_score kwarg + storage; plumbed into
both build_kwargs() invocations and the context-summary extra_body path
- cli.py: read openrouter.min_coding_score once at init, validate float in
[0,1], pass to AIAgent constructions (CLI + background-task paths)
- cron/scheduler.py, batch_runner.py, tools/delegate_tool.py,
tui_gateway/server.py: propagate the kwarg (mirrors providers_order
plumbing — subagents inherit, cron/batch read from config)
- tests: profile-level + transport-level coverage of the model gating,
unset/empty/out-of-range handling, and the legacy flag path
- docs: new 'OpenRouter Pareto Code Router' section in providers.md
Verified end-to-end against api.openrouter.ai: at score=0.65 we land on a
mid-tier coder, at omission we get the strongest. Score is silently dropped
on any model other than openrouter/pareto-code, so it's safe to leave set.
Native Windows, WSL, SSH sessions, and Windows Terminal all send
Ctrl+Enter as bare LF (c-j). Hermes was binding c-j as submit on
every POSIX platform, so Ctrl+Enter submitted instead of inserting
a newline on those terminals. Reported in #22379.
Add _preserve_ctrl_enter_newline() predicate that detects the
environments where Ctrl+Enter must produce a newline (sys.platform
== 'win32', SSH_CONNECTION/SSH_CLIENT/SSH_TTY env, WT_SESSION,
WSL_DISTRO_NAME, /proc/version 'microsoft' marker). Gate the
c-j-as-submit binding off in those environments and gate the
c-j-as-newline handler on. Local POSIX TTYs without those markers
(docker exec, plain ssh from a Mac) keep c-j as submit so plain
Enter still works on thin PTYs.
Add install_ctrl_enter_alias() in hermes_cli/pt_input_extras.py
mapping the three CSI-u / modifyOtherKeys variants of Ctrl+Enter
('\x1b[13;5u', '\x1b[27;5;13~', '\x1b[27;5;13u') to the
(Escape, ControlM) tuple Alt+Enter produces. This lets Kitty /
mintty / xterm-with-modifyOtherKeys users over SSH get a Ctrl+Enter
newline through the existing Alt+Enter handler.
9 new tests + extended existing test_lf_enter_binds_to_submit_handler_posix
to cover bare-local vs SSH branches.
Closes#22379.
/clear, /new, /reset, and /undo now ask the user to confirm before
discarding conversation state — three-option prompt routed through the
existing tools.slash_confirm primitive.
Native yes/no buttons render on Telegram, Discord, and Slack (their
adapters already implement send_slash_confirm); other platforms get a
text-fallback prompt and reply with /approve, /always, or /cancel.
The classic prompt_toolkit CLI uses the same three-option flow via the
established _prompt_text_input pattern (see _confirm_and_reload_mcp).
TUI keeps its existing modal overlay (#12312).
Gated by new config key approvals.destructive_slash_confirm (default
true). Picking 'Always Approve' flips the gate to false so subsequent
destructive commands run silently — matches the established
mcp_reload_confirm UX.
Out of scope: /cron remove (separate domain — scheduled jobs, not
session history). Existing TUI overlay env-var (HERMES_TUI_NO_CONFIRM)
left unchanged; cosmetic unification can come later.
Closes#4069.
SQLite's WAL mode requires shared-memory (mmap) coordination and fcntl
byte-range locks that don't reliably work on network filesystems. Upstream
documents this explicitly:
https://www.sqlite.org/wal.html#sometimes_queries_return_sqlite_busy_in_wal_mode
On NFS / SMB / some FUSE mounts / WSL1, 'PRAGMA journal_mode=WAL' raises
'sqlite3.OperationalError: locking protocol' (SQLITE_PROTOCOL). Before
this change, every feature backed by state.db or kanban.db broke silently:
- /resume, /title, /history, /branch returned 'Session database not
available.' with no cause
- gateway logged the init failure at DEBUG (invisible in errors.log)
- kanban dispatcher crashed every 60s, driving the known migration race
(duplicate column name: consecutive_failures, #21708 / #21374)
Changes:
- hermes_state.apply_wal_with_fallback(): shared helper that tries WAL
and falls back to DELETE on SQLITE_PROTOCOL-style errors with one
WARNING explaining why
- hermes_state.get_last_init_error() + format_session_db_unavailable():
capture the init failure cause and surface it in user-facing strings
(with an NFS/SMB pointer for 'locking protocol')
- hermes_cli/kanban_db.connect(): use the shared helper
- gateway/run.py: bump SessionDB init failure log DEBUG -> WARNING
(matches cli.py's existing correct behavior)
- cli.py (4 sites) + gateway/run.py (5 sites): replace bare
'Session database not available.' with format_session_db_unavailable()
Tests: 12 new tests in tests/test_hermes_state_wal_fallback.py + 1 new
test in tests/hermes_cli/test_kanban_db.py. Existing suites (state,
kanban, gateway, cli) remain green for all tests unrelated to pre-existing
failures on main.
Evidence: real-world user on NFSv3 mount (172.26.224.200:d2dfac12/home,
local_lock=none) reporting 'Session database not available.' on /resume;
'locking protocol' appears in 4 distinct log entries across backup,
kanban, TUI, and CLI paths in the same session.
closes#22032
Closes#5346.
Most terminals send the same byte sequence for `Enter` and `Shift+Enter`
by default, so the application can't tell them apart — this is a terminal
protocol limitation, not something Hermes can paper over. But terminals
that implement the Kitty keyboard protocol (Kitty / foot / WezTerm /
Ghostty by default; iTerm2 / Alacritty / VS Code terminal / Warp once the
protocol is enabled) DO emit a distinct sequence for `Shift+Enter`:
- `\x1b[13;2u` — Kitty / CSI-u, modifier=2
- `\x1b[27;2;13~` — xterm modifyOtherKeys=2
Stock prompt_toolkit doesn't have the CSI-u sequence in its
`ANSI_SEQUENCES` table at all, and it maps the modifyOtherKeys variant to
plain `Keys.ControlM` (Enter) — i.e. it strips the Shift modifier, which
is the bug users actually hit on iTerm2 and friends.
This PR adds `hermes_cli/pt_input_extras.install_shift_enter_alias()`,
called once at CLI startup from `cli.py`, which inserts/overwrites those
sequences in `ANSI_SEQUENCES` so they decode to `(Keys.Escape, Keys.ControlM)`
— the same key tuple `Alt+Enter` produces. The existing Alt+Enter newline
handler (`@kb.add('escape', 'enter')` in `cli.py`) then fires unchanged,
so there is no new keybinding to register and no behavioral change for
terminals that don't emit the distinct sequences.
Files
=====
* `hermes_cli/pt_input_extras.py` — new module hosting the helper. Lives
outside `cli.py` so it's importable in tests without dragging in the
full CLI runtime (which depends on `fire`, `rich`, etc.).
* `cli.py` — calls `install_shift_enter_alias()` once at module import.
Wrapped in try/except so prompt_toolkit version drift can't break CLI
startup.
* `tests/cli/test_cli_shift_enter_newline.py` — 6 tests:
- registration of all three byte sequences
- overwrite of stock prompt_toolkit's broken modifyOtherKeys mapping
- idempotency
- parser equivalence: CSI-u Shift+Enter == Alt+Enter
- parser equivalence: modifyOtherKeys Shift+Enter == Alt+Enter
- plain Enter remains a single key (submit), distinct from the two-key
Alt+Enter / Shift+Enter tuple
* `website/docs/user-guide/cli.md` — keybinding table updated; new
"Shift+Enter compatibility" subsection with a per-terminal status table
noting macOS Terminal / stock Windows Terminal cannot distinguish the
keystroke at the protocol level.
* `website/docs/getting-started/quickstart.md`,
`website/docs/guides/tips.md` — short mention pointing readers at the
full compatibility note in `cli.md`.
Tested
======
pytest tests/cli/test_cli_shift_enter_newline.py # 6 passed
Live-tested by triggering `\x1b[13;2u` against the running Vt100Parser
(see test). Not exercised in a real terminal end-to-end because that
requires a Kitty-protocol-capable host; the test exercises the parser
path that drives the live terminal too.
teknium1 hit ModuleNotFoundError: No module named 'hermes_bootstrap' after
a code update, on both his Windows machine AND his Linux workstation. The
failure mode is real and affects every user who updates hermes by any path
OTHER than a fully-successful ``hermes update``.
## What happens
hermes_bootstrap.py is a top-level module registered via pyproject.toml's
``py-modules`` list (added by Brooklyn's Windows UTF-8 stdio work). It
must be registered in the venv's editable-install .pth file before Python
can find it as a bare ``import hermes_bootstrap``.
``hermes update`` handles this correctly: (1) git reset --hard, (2) clear
__pycache__, (3) uv pip install -e . (re-registers the package including
the new py-modules list), (4) restart.
BUT if any step AFTER (1) fails — network blip during pip install, PEP 668
on a system Python, venv locked, uv not in PATH, a crash mid-update — the
user is left with new code that references hermes_bootstrap and a venv
that doesn't know about it. Every hermes invocation after that crashes
with ModuleNotFoundError, including ``hermes update`` itself. No recovery
path without manual `uv pip install -e .`.
Also affects users who ``git pull`` the repo directly without running
hermes update — relatively common for developers.
## Fix
Wrap ``import hermes_bootstrap`` in a try/except ModuleNotFoundError
across all 6 entry points (hermes_cli/main, run_agent, gateway/run,
acp_adapter/entry, cli, batch_runner). On Windows, missing bootstrap
means the UTF-8 stdio setup doesn't run — degraded behavior (Unicode
chars may fail to print) but NOT a crash. POSIX is unaffected either way
since the bootstrap is a no-op there.
Once hermes is running again, the user can ``hermes update`` to fully
recover.
## Test update
tests/test_hermes_bootstrap.py::test_entry_point_imports_bootstrap
scans for the first top-level import in each entry point and asserts it
is hermes_bootstrap. Extended the check to accept a Try block whose body
is a lone Import of hermes_bootstrap — that's the recovery-friendly form
we just introduced.
Verified behavior by ``mv hermes_bootstrap.py hermes_bootstrap.py.bak``
and confirming ``python -c "import hermes_cli.main"`` succeeds. 82/82
tests pass (hermes_bootstrap + windows-native + windows-compat).
Three related Windows-only fixes that together make the browser toolset
actually usable on Windows. Symptom chain: user invokes browser_navigate
-> tool returns {"success": false, "error": "Daemon process exited
during startup with no error output"} and the CLI exits mid-turn with
the session summary.
Root cause (3 layers):
1. tools/browser_tool.py::_find_agent_browser() resolved
node_modules/.bin/agent-browser to the extensionless POSIX shell
shim via Path.exists(). On Windows, CreateProcessW cannot execute
that script (WinError 193 "not a valid Win32 application"). Fix:
delegate to shutil.which with path=node_modules/.bin so PATHEXT
picks up agent-browser.CMD on Windows and the extensionless shim
stays correct on POSIX.
2. Windows Terminal / Win32 delivers a spurious CTRL_C_EVENT to the
parent hermes.exe whenever a background thread spawns a .cmd
subprocess. Python 3.11's default SIGINT handler raises
KeyboardInterrupt in MainThread, which unwinds prompt_toolkit's
app.run() -> cli.py::run()'s finally block calls _run_cleanup()
-> _emergency_cleanup_all_sessions -> spawns a concurrent
_run_browser_command("close", ...) on the same session the agent
thread just opened. Two agent-browser processes race on the same
--session name, the daemon startup loses, and the tool returns
the "Daemon process exited during startup" error. Fix: install a
Windows-only SIGINT handler that absorbs the signal silently.
Real user Ctrl+C still routes through prompt_toolkit's own c-c
keybinding at the TUI layer, which is how Claude Code handles the
same quirk (driving cancellation via the TUI key handler, not
signals).
3. In tools/browser_tool.py, both Popen sites now pass
creationflags=CREATE_NO_WINDOW | STARTF_USESTDHANDLES with
close_fds=True on Windows. CREATE_NO_WINDOW suppresses the .cmd
console flash; STARTF_USESTDHANDLES + close_fds ensures the child
inherits only our three chosen handles (DEVNULL stdin, temp-file
stdout/stderr) and no leaked parent console handles that could
confuse agent-browser's native daemon spawn. Notably we do NOT
add CREATE_NEW_PROCESS_GROUP - on Python 3.11 Windows the flag
interacts badly with asyncio's ProactorEventLoop and makes things
worse.
Verified end-to-end on Windows 10 / Windows Terminal / PowerShell:
browser_navigate to https://example.com returns
{"success": true, "title": "Example Domain"} and the CLI stays alive
for follow-up tool calls and assistant turns.
Refs: earlier Windows quirks commits 1cebb3bad (Ctrl+Enter newline),
26f5af52a (environment hints), aefd1a37f (Playwright Chromium).
Windows Terminal intercepts Alt+Enter for its fullscreen shortcut, leaving
Windows users with no Enter-involving way to insert a newline in the Hermes
prompt. Fix it by reclaiming c-j on Windows only:
- _bind_prompt_submit_keys now binds c-j (LF) to submit only on POSIX, where
thin PTYs (docker exec, some SSH configs) deliver Enter as LF. On Windows
plain Enter is always c-m, so c-j is free.
- Windows-only prompt binding: c-j inserts a newline. Windows Terminal sends
Ctrl+Enter as LF, so the user-facing keystroke is Ctrl+Enter — no terminal
settings changes required.
- Alt+Enter binding unchanged; still works on mac/Linux/WSL.
- Test TestPromptToolkitTerminalCompatibility::test_lf_enter_binds_to_submit_handler
split into platform-aware assertions for POSIX vs win32.
- Fixed the Ctrl+J claim in hermes_cli/tips.py (was wrong before this commit
even on POSIX) to point Windows users at Ctrl+Enter.
Tradeoff: on Windows, raw Ctrl+J (without Enter) also inserts a newline,
since WT collapses Ctrl+Enter and Ctrl+J to the same c-j keycode. No
conflicting Hermes binding existed for Ctrl+J, so this is a harmless side
effect.
Closes the last Python-on-Windows UTF-8 exposure by making every
text-mode open() call explicit about its encoding.
Before: on Windows, bare open(path, 'r') defaults to the system
locale encoding (cp1252 on US-locale installs). That means reading
any config/yaml/markdown/json file with non-ASCII content either
crashes with UnicodeDecodeError or silently mis-decodes bytes.
After: all 89 affected call sites in production code now pass
encoding='utf-8' explicitly. Works identically on every platform
and every locale, no surprise behavior.
Mechanical sweep via:
ruff check --preview --extend-select PLW1514 --unsafe-fixes --fix --exclude 'tests,venv,.venv,node_modules,website,optional-skills, skills,tinker-atropos,plugins' .
All 89 fixes have the same shape: open(x) or open(x, mode) became
open(x, encoding='utf-8') or open(x, mode, encoding='utf-8'). Nothing
else changed. Every modified file still parses and the Windows/sandbox
test suite is still green (85 passed, 14 skipped, 0 failed across
tests/tools/test_code_execution_windows_env.py +
tests/tools/test_code_execution_modes.py + tests/tools/test_env_passthrough.py +
tests/test_hermes_bootstrap.py).
Scope notes:
- tests/ excluded: test fixtures can use locale encoding intentionally
(exercising edge cases). If we want to tighten tests later that's
a separate PR.
- plugins/ excluded: plugin-specific conventions may differ; plugin
authors own their code.
- optional-skills/ and skills/ excluded: skill scripts are user-authored
and we don't want to mass-edit them.
- website/ and tinker-atropos/ excluded: vendored / generated content.
46 files touched, 89 +/- lines (symmetric replacement). No behavior
change on POSIX or on Windows when the file is ASCII; bug fix on
Windows when the file contains non-ASCII.
Codebase-wide fix for Python-on-Windows UTF-8 footguns, complementing
the earlier execute_code sandbox fixes (which remain load-bearing for
when the sandbox explicitly scrubs child env).
Problem: Python on Windows has two long-standing text-encoding pitfalls:
1. sys.stdout/stderr are bound to the console code page (cp1252 on
US-locale installs) — print('café') crashes with UnicodeEncodeError.
2. Subprocess children don't know to use UTF-8 unless PYTHONUTF8 and/or
PYTHONIOENCODING are set in their env — so any Python we spawn
(linters, sandbox children, delegation workers) hits the same bug.
Solution: A tiny bootstrap module (hermes_bootstrap.py) imported as the
first statement of every Hermes entry point:
- hermes_cli/main.py (hermes / hermes-agent console_script)
- run_agent.py (hermes-agent direct)
- acp_adapter/entry.py (hermes-acp)
- gateway/run.py (messaging gateway)
- batch_runner.py (parallel batch mode)
- cli.py (legacy direct-launch CLI)
On Windows, the bootstrap:
- os.environ.setdefault('PYTHONUTF8', '1') (PEP 540 UTF-8 mode)
- os.environ.setdefault('PYTHONIOENCODING', 'utf-8')
- sys.stdout/stderr/stdin.reconfigure(encoding='utf-8', errors='replace')
Children inherit the env vars → they run in UTF-8 mode.
Current process's stdio is reconfigured → print('café') works now.
On POSIX (Linux/macOS), the bootstrap is a complete no-op. We don't
touch LANG, LC_*, or anything else — users who have intentionally
configured a non-UTF-8 locale aren't affected. POSIX systems are
already UTF-8 by default in 99% of modern setups, so there's nothing
to fix.
setdefault() (not overwrite) means users who explicitly set PYTHONUTF8=0
or PYTHONIOENCODING=cp1252 in their environment are respected.
What this does NOT fix: bare open(path, 'w') calls in the *parent*
process still default to locale encoding because PYTHONUTF8 is only
read at interpreter init. A ruff PLW1514 sweep (separate follow-up)
will add explicit encoding='utf-8' at those ~219 call sites for
belt-and-suspenders.
Tests (17): 16 passed, 1 skipped on Windows.
- Windows: env vars set, stdio reconfigured, child inherits UTF-8 mode
- POSIX: complete no-op (verified on fake POSIX + skipped on real
POSIX since we don't have a Linux box in this session)
- Idempotence: multiple calls safe
- Graceful degradation: non-reconfigurable streams don't crash
- User opt-out: explicit PYTHONUTF8=0 is respected
- Load order: every entry point's FIRST top-level import is
hermes_bootstrap, enforced by an AST-level parametrized test
pyproject.toml: added hermes_bootstrap to py-modules so it ships with
pip installs.
Second pass on native Windows support, driven by a systematic audit across
five areas: POSIX-only primitives (signal.SIGKILL/SIGHUP/SIGPIPE, os.WNOHANG,
os.setsid), path translation bugs (/c/Users → C:\Users), subprocess patterns
(npm.cmd batch shims, start_new_session no-op on Windows), subsystem health
(cron, gateway daemon, update flow), and module-level import guards.
Every change is platform-gated — POSIX (Linux/macOS) behaviour is preserved
bit-identical. Explicit "do no harm" test: test_posix_path_preserved_on_linux,
test_posix_noop, test_windows_detach_popen_kwargs_is_posix_equivalent_on_posix.
## New module
- hermes_cli/_subprocess_compat.py — shared helpers (resolve_node_command,
windows_detach_flags, windows_hide_flags, windows_detach_popen_kwargs).
All no-ops on non-Windows.
## CRITICAL fixes (would crash or silently break on Windows)
- tui_gateway/entry.py: SIGPIPE/SIGHUP referenced at module top level would
AttributeError on import on Windows, breaking `hermes --tui` entirely (it
spawns this module as a subprocess). Guard each signal.signal() call with
hasattr() and add SIGBREAK as Windows' SIGHUP equivalent.
- hermes_cli/kanban_db.py: os.waitpid(-1, os.WNOHANG) in dispatcher tick was
unguarded. os.WNOHANG doesn't exist on Windows. Gate the whole reap loop
behind `os.name != "nt"` — Windows has no zombies anyway.
- tools/code_execution_tool.py: AF_UNIX socket for execute_code RPC fails on
most Windows builds. Fall back to loopback TCP (AF_INET on 127.0.0.1:0
ephemeral port) when _IS_WINDOWS. HERMES_RPC_SOCKET env var now accepts
either a filesystem path (POSIX) or `tcp://127.0.0.1:<port>` (Windows).
Generated sandbox client parses both.
- cron/scheduler.py: `argv = ["/bin/bash", str(path)]` hardcoded. Use
shutil.which("bash") so Windows (Git Bash via MinGit) works, with a
readable error when bash is genuinely absent.
- 6 bare npm/npx spawn sites: tools_config.py x2, doctor.py, whatsapp.py
(npm install + node version probe), browser_tool.py x2. On Windows npm
is npm.cmd / npx is npx.cmd (batch shims); subprocess.Popen(["npm", ...])
fails with WinError 193. shutil.which(...) returns the absolute .cmd
path which CreateProcessW accepts because the extension routes through
cmd.exe /c. POSIX behaviour unchanged (shutil.which still returns the
same path subprocess would resolve itself).
## HIGH fixes (silent misbehaviour on Windows)
- tools/environments/local.py get_temp_dir: hardcoded /tmp returned on
Windows meant `_cwd_file = "/tmp/hermes-cwd-*.txt"`, which bash wrote
via MSYS2's virtual /tmp but native Python couldn't open. Result: cwd
tracking silently broken — `cd` in terminal tool did nothing. Windows
branch now returns `%HERMES_HOME%/cache/terminal` with forward slashes
(works in both bash and Python, guaranteed no spaces).
- tools/environments/local.py _make_run_env PATH injection: `/usr/bin not
in split(":")` heuristic mangles Windows PATH (";" separator). Gate
the injection behind `not _IS_WINDOWS`.
- hermes_cli/gateway.py launch_detached_profile_gateway_restart: outer
Popen + watcher-script Popen both used start_new_session=True, which
Windows silently ignores. Watcher stayed attached to CLI's console,
died when user closed terminal after `hermes update`, left gateway
stale. Now branches through windows_detach_popen_kwargs() helper
(CREATE_NEW_PROCESS_GROUP | DETACHED_PROCESS | CREATE_NO_WINDOW on
Windows, start_new_session=True on POSIX — identical to main).
## MEDIUM fixes
- gateway/run.py /restart and /update handlers: hardcoded bash/setsid
chain crashes on Windows when user triggers /update in-gateway. Now
has sys.platform=="win32" branch using sys.executable + a tiny
Python watcher with proper detach flags. POSIX path is unchanged.
- cli.py _git_repo_root: Git on Windows sometimes returns /c/Users/...
style paths that break subprocess.Popen(cwd=...) and Path().resolve().
Added _normalize_git_bash_path() helper that translates /c/Users,
/cygdrive/c, /mnt/c variants to native C:\Users form. POSIX no-op.
_git_repo_root() now routes every result through it.
- cli.py worktree .worktreeinclude: os.symlink on directories failed
hard on Windows (requires admin or Developer Mode). Falls back to
shutil.copytree with a warning log.
## Tests
- 29 new tests in tests/tools/test_windows_native_support.py covering:
subprocess_compat helpers, TUI entry signal guards, kanban waitpid
guard, code_execution TCP fallback source-level invariants, cron bash
resolution, npm/npx bare-spawn lint per-file, local env Windows temp
dir, PATH injection gating, git bash path normalization, symlink
fallback, gateway detached watcher flags.
- One existing test assertion adjusted in test_browser_homebrew_paths:
it compared captured Popen argv to the BARE `"npx"` literal; after the
shutil.which() change argv[0] is the absolute path. New assertion
checks the shape (two items, second is `agent-browser`) rather than
the exact first-item string. Behaviour unchanged; test was too strict.
All 56 tests pass on Linux (30 from previous commits + 26 new).
267 tests from the affected files/dirs (browser, code_exec, local_env,
process_registry, kanban_db, windows_compat) all pass — zero regressions.
tests/hermes_cli/ (3909 pass) and tests/gateway/ (5021 pass) unchanged;
all pre-existing test failures confirmed unrelated via `git stash` re-run.
## What's still deferred (LOW priority)
- Visible cmd-window flashes on short-lived console apps (~14 sites) —
cosmetic, needs a follow-up pass once we have user reports.
- agent/file_safety.py POSIX-only security deny patterns — separate
hardening task.
- tools/process_registry.py returning "/tmp" as fallback — theoretical;
reachable only when all env-var candidates fail.
Native Windows (with Git for Windows installed) can now run the Hermes CLI
and gateway end-to-end without crashing. install.ps1 already existed and
the Git Bash terminal backend was already wired up — this PR fills the
remaining gaps discovered by auditing every Windows-unsafe primitive
(`signal.SIGKILL`, `os.kill(pid, 0)` probes, bare `fcntl`/`termios`
imports) and by comparing hermes against how Claude Code, OpenCode, Codex,
and Cline handle native Windows.
## What changed
### UTF-8 stdio (new module)
- `hermes_cli/stdio.py` — single `configure_windows_stdio()` entry point.
Flips the console code page to CP_UTF8 (65001), reconfigures
`sys.stdout`/`stderr`/`stdin` to UTF-8, sets `PYTHONIOENCODING` + `PYTHONUTF8`
for subprocesses. No-op on non-Windows. Opt out via `HERMES_DISABLE_WINDOWS_UTF8=1`.
- Called early in `cli.py::main`, `hermes_cli/main.py::main`, and
`gateway/run.py::main` so Unicode banners (box-drawing, geometric
symbols, non-Latin chat text) don't `UnicodeEncodeError` on cp1252
consoles.
### Crash sites fixed
- `hermes_cli/main.py:7970` (hermes update → stuck gateway sweep): raw
`os.kill(pid, _signal.SIGKILL)` → `gateway.status.terminate_pid(pid, force=True)`
which routes through `taskkill /T /F` on Windows.
- `hermes_cli/profiles.py::_stop_gateway_process`: same fix — also
converted SIGTERM path to `terminate_pid()` and widened OSError catch
on the intermediate `os.kill(pid, 0)` probe.
- `hermes_cli/kanban_db.py:2914, 3041`: raw `signal.SIGKILL` →
`getattr(signal, "SIGKILL", signal.SIGTERM)` fallback (matches the
pattern already used in `gateway/status.py`).
### OSError widening on `os.kill(pid, 0)` probes
Windows raises `OSError` (WinError 87) for a gone PID instead of
`ProcessLookupError`. Widened the catch at:
- `gateway/run.py:15101` (`--replace` wait-for-exit loop — without this,
the loop busy-spins the full 10s every Windows gateway start)
- `hermes_cli/gateway.py:228, 460, 940`
- `hermes_cli/profiles.py:777`
- `tools/process_registry.py::_is_host_pid_alive`
- `tools/browser_tool.py:1170, 1206`
### Dashboard PTY graceful degradation
`hermes_cli/pty_bridge.py` depends on `fcntl`/`termios`/`ptyprocess`,
none of which exist on native Windows. Previously a Windows dashboard
would crash on `import hermes_cli.web_server` because of a top-level
import. Now:
- `hermes_cli/web_server.py` wraps the pty_bridge import in
`try/except ImportError` and sets `_PTY_BRIDGE_AVAILABLE=False`.
- The `/api/pty` WebSocket handler returns a friendly "use WSL2 for
this tab" message instead of exploding.
- Every other dashboard feature (sessions, jobs, metrics, config
editor) runs natively on Windows.
### Dependency
- `pyproject.toml`: add `tzdata>=2023.3; sys_platform == 'win32'` so
Python's `zoneinfo` works on Windows (which has no IANA tzdata
shipped with the OS). Credits @sprmn24 (PR #13182).
### Docs
- README.md: removed "Native Windows is not supported"; added
PowerShell one-liner and Git-for-Windows prerequisite note.
- `website/docs/getting-started/installation.md`: new Windows section
with capability matrix (everything native except the dashboard
`/chat` PTY tab, which is WSL2-only).
- `website/docs/user-guide/windows-wsl-quickstart.md`: reframed as
"WSL2 as an alternative to native" rather than "the only way".
- `website/docs/developer-guide/contributing.md`: updated
cross-platform guidance with the `signal.SIGKILL` / `OSError`
rules we enforce now.
- `website/docs/user-guide/features/web-dashboard.md`: acknowledged
native Windows works for everything except the embedded PTY pane.
## Why this shape
Pulled from a survey of how other agent codebases handle native
Windows (Claude Code, OpenCode, Codex, Cline):
- All four treat Git Bash as the canonical shell on Windows, same as
hermes already does in `tools/environments/local.py::_find_bash()`.
- None of them force `SetConsoleOutputCP` — but they don't have to,
Node/Rust write UTF-16 to the Win32 console API. Python does not get
that for free, so we flip CP_UTF8 via ctypes.
- None of them ship PowerShell-as-primary-shell (Claude Code exposes
PS as a secondary tool; scope creep for this PR).
- All of them use `taskkill /T /F` for force-kill on Windows, which
is exactly what `gateway.status.terminate_pid(force=True)` does.
## Non-goals (deliberate scope limits)
- No PowerShell-as-a-second-shell tool — worth designing separately.
- No terminal routing rewrite (#12317, #15461, #19800 cluster) — that's
the hardest design call and needs a separate doc.
- No wholesale `open()` → `open(..., encoding="utf-8")` sweep (Tianworld
cluster) — will do as follow-up if users hit actual breakage; most
modern code already specifies it.
## Validation
- 28 new tests in `tests/tools/test_windows_native_support.py` — all
platform-mocked, pass on Linux CI. Cover:
- `configure_windows_stdio` idempotency, opt-out, env-preservation
- `terminate_pid` taskkill routing, failure → OSError, FileNotFoundError fallback
- `getattr(signal, "SIGKILL", …)` fallback shape
- `_is_host_pid_alive` OSError widening (Windows-gone-PID behavior)
- Source-level checks that all entry points call `configure_windows_stdio`
- pty_bridge import-guard present in `web_server.py`
- README no longer says "not supported"
- 12 pre-existing tests in `tests/tools/test_windows_compat.py` still pass.
- `tests/hermes_cli/` ran fully (3909 passed, 9 failures — all confirmed
pre-existing on main by stash-test).
- `tests/gateway/` ran fully (5021 passed, 1 pre-existing failure).
- `tests/tools/test_process_registry.py` + `test_browser_*` pass.
- Manual smoke: `import hermes_cli.stdio; import gateway.run;
import hermes_cli.web_server` — all clean, `_PTY_BRIDGE_AVAILABLE=True`
on Linux (as expected).
## Files
- New: `hermes_cli/stdio.py`, `tests/tools/test_windows_native_support.py`
- Modified: `cli.py`, `gateway/run.py`, `hermes_cli/main.py`,
`hermes_cli/profiles.py`, `hermes_cli/gateway.py`,
`hermes_cli/kanban_db.py`, `hermes_cli/pty_bridge.py`,
`hermes_cli/web_server.py`, `tools/browser_tool.py`,
`tools/process_registry.py`, `pyproject.toml`, `README.md`, and 4
docs pages.
Credits to everyone whose prior PR work informed these fixes — see
the co-author trailers. All of the PRs listed in
`~/.hermes/plans/windows-support-prs.md` fixing `os.kill` / `signal.SIGKILL`
/ UTF-8 stdio / tzdata / README patterns found the same issues; this PR
consolidates them.
Co-authored-by: Philip D'Souza <9472774+PhilipAD@users.noreply.github.com>
Co-authored-by: Arecanon <42595053+ArecaNon@users.noreply.github.com>
Co-authored-by: XiaoXiao0221 <263113677+XiaoXiao0221@users.noreply.github.com>
Co-authored-by: Lars Hagen <1360677+lars-hagen@users.noreply.github.com>
Co-authored-by: Luan Dias <65574834+luandiasrj@users.noreply.github.com>
Co-authored-by: Ruzzgar <ruzzgarcn@gmail.com>
Co-authored-by: sprmn24 <oncuevtv@gmail.com>
Co-authored-by: adybag14-cyber <252811164+adybag14-cyber@users.noreply.github.com>
Co-authored-by: Prasanna28Devadiga <54196612+Prasanna28Devadiga@users.noreply.github.com>
Background macOS desktop control via cua-driver MCP — does NOT steal the
user's cursor or keyboard focus, works with any tool-capable model.
Replaces the Anthropic-native `computer_20251124` approach from the
abandoned #4562 with a generic OpenAI function-calling schema plus SOM
(set-of-mark) captures so Claude, GPT, Gemini, and open models can all
drive the desktop via numbered element indices.
- `tools/computer_use/` package — swappable ComputerUseBackend ABC +
CuaDriverBackend (stdio MCP client to trycua/cua's cua-driver binary).
- Universal `computer_use` tool with one schema for all providers.
Actions: capture (som/vision/ax), click, double_click, right_click,
middle_click, drag, scroll, type, key, wait, list_apps, focus_app.
- Multimodal tool-result envelope (`_multimodal=True`, OpenAI-style
`content: [text, image_url]` parts) that flows through
handle_function_call into the tool message. Anthropic adapter converts
into native `tool_result` image blocks; OpenAI-compatible providers
get the parts list directly.
- Image eviction in convert_messages_to_anthropic: only the 3 most
recent screenshots carry real image data; older ones become text
placeholders to cap per-turn token cost.
- Context compressor image pruning: old multimodal tool results have
their image parts stripped instead of being skipped.
- Image-aware token estimation: each image counts as a flat 1500 tokens
instead of its base64 char length (~1MB would have registered as
~250K tokens before).
- COMPUTER_USE_GUIDANCE system-prompt block — injected when the toolset
is active.
- Session DB persistence strips base64 from multimodal tool messages.
- Trajectory saver normalises multimodal messages to text-only.
- `hermes tools` post-setup installs cua-driver via the upstream script
and prints permission-grant instructions.
- CLI approval callback wired so destructive computer_use actions go
through the same prompt_toolkit approval dialog as terminal commands.
- Hard safety guards at the tool level: blocked type patterns
(curl|bash, sudo rm -rf, fork bomb), blocked key combos (empty trash,
force delete, lock screen, log out).
- Skill `apple/macos-computer-use/SKILL.md` — universal (model-agnostic)
workflow guide.
- Docs: `user-guide/features/computer-use.md` plus reference catalog
entries.
44 new tests in tests/tools/test_computer_use.py covering schema
shape (universal, not Anthropic-native), dispatch routing, safety
guards, multimodal envelope, Anthropic adapter conversion, screenshot
eviction, context compressor pruning, image-aware token estimation,
run_agent helpers, and universality guarantees.
469/469 pass across tests/tools/test_computer_use.py + the affected
agent/ test suites.
- `model_tools.py` provider-gating: the tool is available to every
provider. Providers without multi-part tool message support will see
text-only tool results (graceful degradation via `text_summary`).
- Anthropic server-side `clear_tool_uses_20250919` — deferred;
client-side eviction + compressor pruning cover the same cost ceiling
without a beta header.
- macOS only. cua-driver uses private SkyLight SPIs
(SLEventPostToPid, SLPSPostEventRecordTo,
_AXObserverAddNotificationAndCheckRemote) that can break on any macOS
update. Pin with HERMES_CUA_DRIVER_VERSION.
- Requires Accessibility + Screen Recording permissions — the post-setup
prints the Settings path.
Supersedes PR #4562 (pyautogui/Quartz foreground backend, Anthropic-
native schema). Credit @0xbyt4 for the original #3816 groundwork whose
context/eviction/token design is preserved here in generic form.
Reported: Ctrl+C during an active /goal loop felt like it did nothing —
the agent would interrupt the current turn, then immediately queue another
continuation and keep going until the session ended or the 20-turn budget
ran out.
Root cause: cli.py's _maybe_continue_goal_after_turn() ran in the finally:
block around self.chat(...) unconditionally. Whether the turn completed
normally, got interrupted, or returned an empty string, the judge ran on
whatever was in conversation_history and — because the judge is fail-open
— a "continue" verdict pushed another CONTINUATION_PROMPT onto
_pending_input. Ctrl+C was invisible to the hook.
Fix:
- chat() now captures result['interrupted'] onto self._last_turn_interrupted
(resets to False at entry so early-returns don't leak prior state).
- _maybe_continue_goal_after_turn() checks the flag first: on interrupt,
auto-pause via mgr.pause(reason='user-interrupted (Ctrl+C)') and print
a one-liner pointing the user at /goal resume or /goal clear. No judge
call, no continuation enqueued.
- Also added an empty-response guard that mirrors gateway/run.py's
_handle_message logic (empty reply → transient failure → skip judging
so we don't trip the consecutive-parse-failures backstop unnecessarily).
The goal stays in the DB as paused, so /goal resume recovers it after
the user has sorted out whatever made them cancel. /goal clear still
works as before for a full stop.
Tests: tests/cli/test_cli_goal_interrupt.py covers:
- interrupted turn pauses + doesn't queue + judge is NOT called
- paused goal is resumable
- empty / whitespace / missing assistant reply skips judging
- healthy turn still enqueues continuation / marks done
- chat() resets _last_turn_interrupted at entry (anti-leak guard)
All 55 existing goal tests still pass.
When switching from a custom local provider (e.g. ollama-launch) to a
cloud provider, two bugs caused the CLI to misbehave:
1. _explicit_api_key/_explicit_base_url were only updated when the switch
result had non-empty values (guarded by `if result.api_key:` etc.).
If the previous provider set these to Ollama values ("ollama",
"http://127.0.0.1:11434/v1"), those stale values leaked into the next
turn's _ensure_runtime_credentials() call and were forwarded to the
new provider's API endpoint, causing authentication/routing failures.
Fix: unconditionally write result.api_key/base_url into the explicit
fields after every successful switch. An empty string is the correct
sentinel — it tells _ensure_runtime_credentials to re-resolve from the
auth store / config rather than forwarding a stale override.
2. In AIAgent.switch_model(), `self.base_url = base_url or self.base_url`
kept the old Ollama localhost URL whenever the incoming base_url was an
empty string. For providers that use a native SDK (not an OpenAI-compat
endpoint), the caller passes base_url="" and expects the agent to clear
the field — not silently inherit Ollama's address.
Fix: only update self.base_url when base_url is truthy.
3. _handle_model_picker_selection() was called from the prompt_toolkit
Enter key binding without any exception guard. Any unexpected error
in the model-selection code path propagated through prompt_toolkit's
key-binding dispatcher and caused the entire TUI to exit — which the
user sees as "the terminal exits when I switch providers".
Fix: wrap the call in try/except and close the picker on failure.
- Add pricing entries for Claude Opus 4.5/4.6/4.7, Sonnet 4.5/4.6, and
Haiku 4.5 with updated source URLs (platform.claude.com)
- Add _normalize_anthropic_model_name() to handle dot-notation variants
(e.g. claude-opus-4.7 → claude-opus-4-7) for pricing lookups
- Fix silent token loss: ensure session row exists before UPDATE in both
run_agent.py and hermes_state.py (INSERT OR IGNORE is idempotent)
- Log token persistence failures at DEBUG level instead of swallowing
them silently — makes undercounted analytics diagnosable
- Surface reasoning tokens in CLI /usage and TUI usage panel
- Add 'reasoning' and 'cost_status' fields to TUI Usage type