#71184 (stream resume) upgraded agent-build-failure delivery from a bare
'error' event to a terminal message.complete frame (status=error,
recoverable) so failed turns replay on resume. The #71140 test pinned the
old event shape and broke on main where the two merged within the hour.
Contract unchanged: build failure must reach the client visibly.
Leg 2 of #63078: prompt.submit returns {"status":"streaming"} immediately and
runs _start_agent_build + _wait_agent(timeout=30s) behind it. The deferred
build (MCP discovery with per-server retry backoff, synchronous model-metadata
HTTP, skills scanning) routinely outlives 30s on cold starts; on timeout
run_after_agent_ready emitted an error EVENT and returned without ever calling
_run_prompt_submit — the user's first message was permanently discarded while
the build finished successfully in the background. The desktop's optimistic
row eventually cleared with no visible error: the blank first session.
New _wait_agent_for_prompt replaces the flat cliff for the deferred prompt
path only (_sess()'s RPC-blocking _wait_agent keeps its 30s contract):
- The pending prompt stays attached to the (already off-RPC) run thread and
is delivered the moment the still-running build completes — a slow build is
no longer message loss.
- The wait runs in 5s slices so a cancel (session.interrupt / churn) is
honored promptly; the cancelled path returns None and defers to the
caller's cancel branch (the #65567 emit) for user-visible messaging.
- Past 30s the client gets ONE keyed notification.show ('Still starting the
agent…', key=agent-build-slow, desktop toast / TUI status bar), cleared on
delivery — patient, never silent.
- Permanent failure only when the build itself fails: agent_error set at
ready, the build thread died without signalling ready (fail fast via the
new _agent_build_thread handle instead of sitting out the cap on a corpse),
or the bounded cap expired on a genuinely hung build. The cap defaults to
600s and is tunable via agent.build_wait_timeout in config.yaml (no new
env vars); the error message states the message was not sent.
Tests: slow-build delivery with zero error events; the keyed progress notice
shown once and cleared; build-failure surfacing exactly one error event with
the real reason; dead-thread fail-fast; cancel honored mid-wait; config
override + fallback semantics; cap expiry message. The compute-host fallback
test stubs the new waiter alongside _wait_agent.
run_after_agent_ready() silently returned when _turn_cancel_requested or
running=False was set during lazy agent startup, leaving the Desktop with
a {"status":"streaming"} reply that never produced a message.start or
error event. The _wait_agent error branch 6 lines above already emits;
this mirrors it so the client can surface feedback instead of hanging.
This is the server-side half of #63078 — the client-side drift guard is
addressed by #64327, but even with that fix the server-side cancel race
still silently dropped the turn.
Adds two regression tests that capture _emit (the existing sibling test
mocked it to a no-op, so it could not catch the silent drop).
Closes#63078
Session previews are the first 60 characters of the first user message, so
persisting the @image: directives ahead of the caption labelled the session
with a truncated file path in the sidebar, session switcher, and command
palette. Clients lift the refs out of the body line by line, so moving them
after the caption changes nothing about how the turn renders.
A turn routed to a model that takes pixels directly sends `content` as a
parts list, and the session store deliberately ignores a plain-string
persist override for a list payload — a text override must not erase a
turn's image summary. So the override was dropped for every user on a
vision-capable main model, and the durable row kept only the caption plus a
literal `[Image attached at: ...]` / `[screenshot]`, which the renderer
cannot turn back into an image. Only vision-preprocessed (text-mode) turns
were actually fixed.
Mirror the shape instead: swap the text part for the `@image:` ref form and
keep the image parts, so the model still has the pixels for the rest of the
session, and drop the `[screenshot]` stand-in on the way into the bubble
when a ref was lifted from the same message.
The unquoted alternative in the directive pattern is `\S+`, so a ref built
by string interpolation truncates at the first space and strands the tail
as loose text next to a broken thumbnail. Composer images live in the app's
userData dir, which on macOS is `~/Library/Application Support/<App>/` — so
every pasted or dropped image hit this.
Adds format_reference_value next to REFERENCE_PATTERN, mirroring
formatRefValue in the desktop's directive-text.tsx, and covers the
round-trip through the parser.
The desktop gateway passed the vision-enriched, model-only message text
(carrying an `image_url:<path>` hint) straight into run_conversation as
the persisted user turn. The renderer only parses `@image:<path>`, so it
could not rebuild the attachment from history: after a restart the image
was gone and only the caption survived, and on a live session switch the
warm cache disagreed with the authoritative text and the frontend
"rescued" the image by appending it after the caption.
run_conversation already supports persist_user_message for exactly this
"what the model sees" vs "what gets stored" split; it was simply never
wired up for the attachment path.
With the eager pre-warm removed (PR #66783), slash.exec is the only spawn
path — and it runs on the RPC thread pool, so two concurrent worker-routed
commands on a fresh session could both see slash_worker=None and each fork
a full stdio-MCP-fleet worker (the _attach_worker race loser leaking
unclosed). Add a per-session spawn lock with a double-check, plus a
regression test racing two slash.exec calls through handle_request.
Also maps Ne0teric's contributor email.
Every slash_worker child runs its own MCP discovery (#61891), which
forks the full configured stdio MCP fleet — on a config with a handful
of stdio servers that is ~20 OS processes per worker once npx/cmd
wrappers are counted. The gateway pre-warmed a worker for every session
at create/build time, and sessions held by a live transport are (by
design) never reaped, so a desktop app left open for days accumulates
one fleet per retained session. On a real setup this reached ~120
processes across 6 sessions and pushed Windows commit charge to the
point where CreateProcess started failing system-wide ("Not enough
memory resources are available to process this command").
slash.exec already spawns a worker on demand when the session has none
and already recovers from a dead worker the same way, so the eager
pre-warm is pure pre-warming:
- drop the pre-warm in the deferred session-build path
- drop the pre-warm in _init_session
- make _restart_slash_worker a no-op for sessions that never spawned a
worker (the next slash.exec builds one with the current session
key/model, so no stale-key worker can exist)
Only sessions that actually run a worker-routed slash command now pay
for a fleet. Cost: the first such command in a session takes the CLI
build + MCP discovery hit that session.create used to absorb.
Tests: the two create/close-race guards now assert the build thread
never constructs a worker (the notify-unregister guarantees are kept);
the restart-orphan guard seeds a live worker so the close path is still
exercised; new test pins the restart no-op for workerless sessions.
A session pinned to a named custom provider could silently reroute to the
user's default provider on resume/rebuild. Session rows persist the RESOLVED
provider — bare "custom" for every named providers:/custom_providers: entry —
and when no base_url survived in model_config, the existing heal
(canonical_custom_identity) had only the config.model.provider fallback left.
For users whose global default is a BUILT-IN provider (e.g. nous) that tier
cannot fire, so the bare provider was dropped, resume fell back to the default
provider with the session's custom model name, and the default endpoint 404'd
with "Model '<x>' not found. The requested model does not exist in our
configuration or OpenRouter catalog." Re-selecting via /model fixed it until
the next resume — the reported symptom.
Add a model-name recovery tier between the base_url reverse-lookup and the
config fallback: find_custom_provider_identity_by_model() maps the stored
model back to the entry that serves it (model/default_model/models catalog,
dict and legacy list shapes). The session row always stores the model, so the
entry identity survives even when the row has no base_url AND the global
default points elsewhere.
All five bare-custom heal sites in tui_gateway/server.py now pass the model:
_ensure_session_db_row, _stored_session_runtime_overrides,
_runtime_model_config, _make_agent, and _model_picker_context.
session.branch wrote the child ROW into the parent's profile db but
built the live agent with the launch defaults: _make_agent fell back to
_get_db() and no HERMES_HOME override was active. The branched agent's
own message flushes — and any later compression rotation it performed —
therefore landed back on the launch profile, splitting the lineage one
turn after the branch. Mirror session.create/resume: open the parent
profile's SessionDB for the agent and hold the home override across the
build, so config/skills/memory resolve to the profile too.
Spotted in #70605's sibling implementation of the same fix.
Co-authored-by: HexLab98 <liruixinch@outlook.com>
profile_name was only written on the agent's initial lazy create
(e8b7ce8c1); every parented child row — compression rotation, TUI
/branch, desktop branch first-persist — was created without it. A
non-default profile's lineage therefore turned NULL on its first
compression or branch and aggregated as "default" in unified session
lists, completing the cross-profile session-jump.
Fix the class at the DB layer: _insert_session_row's parent backfill now
COALESCEs profile_name from the parent alongside cwd/git_* (#64709
pattern), so any parented child inherits its lineage's owning profile.
Stamp it explicitly at the three create sites as well — compression
rotation (mirroring _ensure_db_session), TUI session.branch, and the
TUI first-prompt row persist — so rows are self-describing even when the
parent row predates the profile_name column.
Closes#62503
Root cause: session.resume already opened the requested profile's state.db,
but session.list / most_recent / delete / history / title / status, create's
immediate info payload, teardown, session.branch, and post-turn pending_title
still used the launch profile (_get_db / _current_profile_name).
Fix: add _db_for_profile / _profile_db / _session_db helpers and route
session.* methods through them; report requested profile on create/status;
lifecycle uses session-owned profile stores with branch profile_home inherit.
Rebase onto current main keeps _session_usage_snapshot in session info.
Follow-up to the salvaged #57634 commits:
- agent/manual_compression_feedback.py: new describe_compression_lock_skip()
— single source of truth for lock-skip wording. A descriptive holder
string means another compressor CONFIRMED holds the lock ('already in
progress (holder: ...)'); True/None means acquisition failed without a
confirmed holder (hermes_state.try_acquire_compression_lock catches
sqlite3.Error internally and returns False), so the message says
'could not acquire ... the lock check failed' instead of falsely
claiming a concurrent compression is running.
- cli.py, gateway/slash_commands.py, tui_gateway/server.py (all three
in-process consumers: session.compress RPC, command.dispatch compress
branch, slash.exec mirror) now route through the shared helper.
- tui_gateway/server.py command.dispatch compress branch: catch
CompressionLockHeld explicitly — it previously fell into the generic
'compress failed' error handler.
- Deferred-notify contract (#69324): lock-skip discards the pending
context-engine notification (committed=False) in _compress_session_history
and the CLI path before returning.
- tests: lock-skip wording pins per surface, VISIBLE_COMPRESSION_MESSAGES
noise-filter carve-outs for both wordings, MagicMock signal opt-outs for
sibling tests added on main after the original PR.
Follow-up to the salvaged #35533 fix: instead of parsing 'here [N]' only in
_mirror_slash_side_effects, parse it inside _compress_session_history — the
single helper all three manual-compress routes converge on (session.compress
RPC, command.dispatch /compress|/compact, slash-exec mirror). Every route now
honors the boundary-aware forms (here [N], up to here, --keep N) with the
same head/tail split + rejoin as cli.py and gateway/slash_commands.py, and
keeps the choke point's existing guards (lock-free LLM call, history_version
race check, deferred context-engine notification).
Tests: choke-point unit tests for 'here N', degenerate-split fallback, and
focus-topic passthrough, plus endpoint-level tests on each of the three
routes.
_mirror_slash_side_effects() passed the raw argument after /compress
directly as focus_topic to _compress_session_history. So /compress here
3 silently used "here 3" as a summary focus topic and did a full
compress instead of preserving the last 3 exchanges verbatim.
Fix: call parse_partial_compress_args() on the argument first. When it
detects a boundary-aware form (here, here N, up to here, --keep N),
split the history into head/tail using split_history_for_partial_compress,
compress only the head via agent._compress_context, and rejoin with
rejoin_compressed_head_and_tail — exactly mirroring cli.py and
gateway/run.py's /compress here implementation (PR #35252).
Non-boundary forms (plain /compress, /compress <focus>) fall through
to _compress_session_history unchanged.
`no-key-required` is a valid sentinel for local/self-hosted/custom
routers. Warning on it made Desktop treat a working setup as missing
API keys.
Co-authored-by: Yingliang Zhang <zhangyingliang@outlook.com>
Co-authored-by: Brandon R <kingdomwarrior23@gmail.com>
Model-switch and personality notices are persisted as role=user `[System: …]`
rows so strict providers accept them mid-history, but they are model-facing
runtime metadata, not user turns. `_history_to_messages` — the single display
projection every client reads — passed them straight through, so on resume or
reload they rendered as a fake user bubble in the desktop, TUI, CLI, and web
transcripts.
Drop them in that projection. The raw marker stays in `session["history"]`
for the model, so nothing changes for inference; only the display loses a row
that never belonged to the user. This also removes the stored marker from the
payload the desktop reconciles against, killing the ordinal shift that
duplicated the optimistic prompt (#67603) at its source — the desktop-side
marker exclusion remains as a fallback for older backends.
Co-authored-by: Dolverin <Dolverin@users.noreply.github.com>
* fix(desktop): keep clarify lifecycle when tool progress is off
* fix(desktop): render clarify prompt from the request event
Re-authored onto the current use-message-stream/gateway-event.ts (the
original patched the pre-split use-message-stream.ts). When the tool.start
row that normally mounts the inline clarify UI is missed (stream reconnect
/ hydration race), upsert a stable pending clarify tool row from
clarify.request itself so the prompt stays answerable; a real
tool.start/complete with the same request id merges rather than duplicates.
Co-authored-by: 정수환 <centerid@naver.com>
* chore(contributors): map centerid@naver.com -> lidises
Attribution mapping for the salvaged #47544 commit.
* fix(desktop): correlate clarify rows by question so hydration can't duplicate
The hydrated row (from clarify.request's request_id) and the real tool.start
row (the model's tool_call_id) have different ids, so id-only matching appended
a second clarify card in the normal path (caught by the BLOCKING_CLARIFY e2e:
'question' resolved to 2 elements). Add 'question' to the tool match-value keys
so a clarify upsert merges into the existing pending clarify row regardless of
id (same request<->args correlation ClarifyToolPending already uses); when no
row exists yet (reconnect/hydration) it still creates one.
---------
Co-authored-by: 정수환 <centerid@naver.com>
* test(clarify-gateway): cover signature, timeout fallback, and notify paths for 100% coverage
Fixes#36531
(cherry picked from commit 5265dfe2f5)
* fix(clarify): one canonical timeout across CLI, TUI/desktop, and gateway
The clarify wait timeout was resolved three different (wrong) ways:
- CLI (`cli.py`, `hermes_cli/callbacks.py`) read a non-existent top-level
`clarify.timeout`, so it always fell through to a hardcoded 120s instead of
the canonical `agent.clarify_timeout` (default 3600) the gateway uses (#42969).
- The TUI/desktop bridge called `_block("clarify.request", …)` with no timeout,
so it used the hardcoded 300s `_block` default and ignored config (#51960).
- There was no way to disable the auto-skip: a user who wanted the agent to wait
indefinitely while they think couldn't get it.
Collapse all of this onto a single resolver:
- `tools.clarify_gateway.resolve_clarify_timeout(config)` is the one source of
truth. Order: explicit legacy `clarify.timeout` (back-compat) → canonical
`agent.clarify_timeout` → 3600. `<= 0` is preserved verbatim as "unlimited".
- CLI, callbacks, and the TUI bridge (`_clarify_timeout_seconds`) all route
through it, so the three surfaces can't drift.
- `<= 0` means unlimited everywhere: `wait_for_response` and `_block` drop the
deadline (heartbeat still fires), and the CLI hides its countdown.
Tests: resolver order / default / non-numeric / unlimited-sentinel; an
unlimited `wait_for_response` blocks until resolved rather than auto-skipping;
the TUI clarify bridge passes the configured timeout to `_block`.
Supersedes #42974 (CLI key), #51993 (TUI honors config), and #68986 (unlimited
wait); folds in #52031 (clarify_gateway coverage).
Co-authored-by: liuhao1024 <liuhao1024@users.noreply.github.com>
Co-authored-by: lkevincc0 <lkevincc0@users.noreply.github.com>
Co-authored-by: theone139344 <theone139344@users.noreply.github.com>
Co-authored-by: baauzi <baauzi@users.noreply.github.com>
---------
Co-authored-by: Christopher-Schulze <210261288+Christopher-Schulze@users.noreply.github.com>
Co-authored-by: liuhao1024 <liuhao1024@users.noreply.github.com>
Co-authored-by: lkevincc0 <lkevincc0@users.noreply.github.com>
Co-authored-by: theone139344 <theone139344@users.noreply.github.com>
Co-authored-by: baauzi <baauzi@users.noreply.github.com>
Update the gateway's live turn projection after an accepted correction so a warm session resume does not add the stale original prompt beside the persisted correction.
Cover the inference-time correction path end to end and assert both redirect entry points refresh the live user text.
Surface audit for #64438 consistency: cli.py and acp_adapter had their
gates removed by the salvaged #63630 commit (each with a behavioral
test). The remaining manual-compress surfaces never gated on
compression.enabled — pin that contract so a gate can't regress in:
- gateway/slash_commands.py _handle_compress_command (new behavioral
test: compression_enabled=False still compresses, force=True).
- tui_gateway/server.py — all three manual routes (session.compress
RPC, command.dispatch compress branch, slash.exec mirror) plus the
compute-host slash.compress/session.compress controls converge on
_compress_session_history; new test pins the helper ignores
agent.compression_enabled and passes force=True.
compression.enabled: false is documented (agent/conversation_loop.py
overflow path) as disabling *automatic* compaction only — the terminal
context-overflow error explicitly tells users to run /compress manually,
and the gateway handler has never gated on the flag. But the classic CLI
(_manual_compress) and the ACP adapter (/compact) refused with
'Compression is disabled', leaving users at a full context with no
manual escape hatch on those surfaces.
Remove the stale gates (they predate the overflow-path design; the CLI
gate came from the original /compress commit's boilerplate) and unify
force=True across all manual-compaction call sites: ACP /compact and the
TUI's _compress_session_history (manual-only helper) now bypass the
summary-failure cooldown exactly like the CLI and gateway already did.
Also reword the ACP /context status line so a disabled-compression agent
no longer implies /compact is unavailable.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
CLI: the VAD monitor's playback cut and the record-key interrupt both
mark the latch; the chat path prepends the note via the existing
_prepend_note_to_message channel. TUI: _tts_stream_stop() grows a
user_barge flag (False for /voice off — a mode change isn't an
interruption; no-op when speech already finished), the VAD monitor
marks on cut, prompt.submit accepts interrupted:true from clients, and
_run_prompt_submit pops the latch into the run message.
Turn deltas feed a per-turn TTS pipeline; the post-complete speak_text
call survives only as a fallback. session.interrupt, /voice toggles,
and new turns cut in-flight speech. VAD barge-in emits
voice.interrupted at detection, then the captured interruption goes out
as voice.transcript — the same event the TUI already submits as a
spoken turn.
Removes Homebrew and PyPI wheel/sdist as Hermes distribution paths while
preserving the supported source, Docker, and Nix workflows.
Changes:
- Removes the Homebrew formula, PyPI publish workflow, sdist manifest
(MANIFEST.in), and wheel/sdist release-attachment logic from scripts/release.py.
- Keeps setuptools metadata and entry points required by editable installs
and Docker/Nix builds, but adds a setup.py guard that rejects wheel/sdist
builds outside a sealed Nix derivation (HERMES_NIX_BUILD=1).
- Removes pip/Homebrew install detection, PyPI update checks, the pip
self-update path, the deprecation-banner state, the postinstall subcommand,
wheel data-directory fallbacks in agent/i18n.py and hermes_constants.py,
and the ACP Registry manifest/version-lockstep release logic.
- Adds /nix/store/ path detection so `nix run` / `nix profile install`
installs (which don't set HERMES_MANAGED) are correctly identified as
"nix" rather than falling through to "git"/"unknown".
- Retired install-method values ("pip", "homebrew") in existing
.install_method stamps (both code-scoped and home-scoped) are ignored by
the allowlist reader and fall through to "unknown" instead of resurrecting
a retired enum value.
- Updates Nix packaging to ship bare runtime data (locales, optional-mcps)
through store symlinks and wrapper env vars instead of wheel data-files.
- Removes the ACP Registry manifest/icon and their version-lockstep tests.
- Deletes or rewrites packaging, pip-update, Homebrew, and ACP Registry
tests; adds parametrized coverage for the packaging build guard covering
BOTH sdist and wheel paths (the guards live in separate cmdclass entries
— a passing sdist test proves nothing about the wheel path).
- Updates installation/platform documentation and related user-facing copy.
- Adjusts the supply-chain scan so deleted install-hook files do not trigger
a finding, while additions or modifications still require the existing
ci-reviewed label gate.
Supported installation paths (unchanged):
- git installer (install.sh)
- Docker
- Nix/NixOS
- editable development installs (uv sync, uv pip install -e ., pip install -e .)
* fix(desktop): route /compress through session.compress RPC with transcript replacement
Salvages #44462, #53755, and #68218 into a single canonical fix for the
desktop /compress cluster.
The desktop routed /compress through slash.exec, which sends it to the
_SlashWorker subprocess. Compressing a large session outlives both the
desktop's 30s WS timeout and the worker's 45s pipe timeout — the client
gives up, runExec's blanket catch swallows the error, and command.dispatch
surfaces a misleading "not a quick/plugin/skill command: compress" (#44456).
Even when compression succeeded via the _mirror_slash_side_effects path,
the desktop never received the post-compress message list, so summarized
bubbles stayed on screen forever — /compress looked like a no-op.
This change routes /compress to the dedicated session.compress RPC (the TUI's
path), combining the best of all three PRs:
- 120s client timeout matching the TUI's HERMES_TUI_RPC_TIMEOUT_MS (#44462)
- Transcript replacement from the response `messages` via toChatMessages,
the same converter session.resume uses (#68218, teknium1 review on #44462)
- Session-isolation guard: updateSessionState only publishes for the active
runtime, so a late result after a session switch can't clobber the
foreground transcript (#53755, teknium1 review on #53755)
- Coalescing: dedup concurrent compress requests per session (#53755)
- Progress toast ("compressing context...") outside the transcript (#53755)
- Error unmasking in runExec: when slash.exec fails and command.dispatch only
adds "not a quick/plugin/skill command" routing noise, surface the original
worker error instead (#44462)
- /compact alias + focus_topic forwarding
Co-authored-by: AlliDev <AIalliAI@users.noreply.github.com>
Co-authored-by: PinkEVO <PINKIIILQWQ@users.noreply.github.com>
* feat(desktop): route slash commands with dedicated RPCs to those RPCs
Salvages #63513 — introduces a new `rpc` kind on DesktopCommandSurface so
commands with a first-class gateway @method handler bypass slash.exec /
command.dispatch entirely, and a `renderRpcResult` utility that shapes
each RPC's structured reply into readable transcript text.
Migrates 6 commands from exec() to rpc(...):
/agents → agents.list
/save → session.save
/status → session.status
/steer → session.steer
/stop → process.stop
/usage → session.usage
/compress stays as action('compress') — it needs transcript replacement
from the response `messages`, which the generic rpc path can't do (per
teknium1 review on #44462/#63513).
Also includes the json-rpc-gateway timeout message improvement: the error
now includes the configured timeout duration ("request timed out after 120s:
session.compress") so a user can tell whether the default 30s fired or a
per-call override.
Co-authored-by: Jelvin <SmallNew2003@users.noreply.github.com>
* fix(desktop): preserve provider choice during config initialization
* fix(desktop): preserve slash command and host compression semantics
Keep commands whose CLI behavior exceeds their current RPC contracts on slash.exec.
Propagate the full compression timeout through compute-host control, return structured
host compression outcomes with metadata, and retain successful compression feedback
in the desktop transcript.
Add regressions for timeout forwarding, host aborts and metadata sync, structured host
control responses, command routing parity, and numeric stop counts.
* fix(desktop): harden compression state handling
Preserve the invoking stored-session binding for delayed compression results,
normalize replacement histories, and serialize provider selection. Stabilize
gateway platform tests and guard the desktop Git facade during renderer teardown.
---------
Co-authored-by: AlliDev <AIalliAI@users.noreply.github.com>
Co-authored-by: PinkEVO <PINKIIILQWQ@users.noreply.github.com>
Co-authored-by: Jelvin <SmallNew2003@users.noreply.github.com>
Two narrow timing windows (reported by null-runner) silently downgraded a
mid-turn correction to a plain next-turn message on the desktop client:
- Turn-build window: a fresh turn flips running=True and builds the agent
asynchronously, so session["agent"] is briefly None. session.redirect
answered 4010 "unsupported", which the renderer's catch swallowed into a
lost follow-up. Queue the correction server-side instead and return
status="queued" — lossless, and honest about what happened.
- Stale runtime id after reconnect: session.redirect 404s on a sid the
gateway no longer maps. redirectPrompt now resumes the stored session and
retries once, mirroring stopPrompt, so a correction fired right after a
reconnect isn't dropped.
The desktop treats "queued" like "redirected": the correction reaches the
model either way, so it's recorded once as a real user message.
The default `busy_input_mode: interrupt` now redirects the live turn instead
of hard-stopping it and re-queuing a fresh turn, wired consistently across
every first-party surface via the shared core primitive.
- CLI, gateway (busy + PRIORITY paths), TUI (`_handle_busy_submit`), desktop
(`session.redirect` RPC), and ACP call `redirect()` when the agent advertises
`_supports_active_turn_redirect`, and fall back to the proven interrupt +
next-turn queue for older runtimes.
- Redirect is gated to plain text with no attachments: captioned or
attachment-bearing events (including adapters that classify unknown media as
`TEXT`) stay queued so media is never dropped.
- ACP `cancel()` records the interrupted prompt, sets its cancel event, and
hard-stops the agent while holding `runtime_lock`, closing the
cancel-then-correct ordering gap; connection I/O happens after the lock is
released.
- Desktop appends the correction as a real user transcript message so the live
view matches the durable history after reload.
- `/busy` help, onboarding hints, and the new `session.redirect` RPC describe
the redirect behavior; `/stop` remains the hard stop.
- tui_gateway commands.catalog: skip _TUI_EXTRA entries that collide with a
registry command or alias (the /compact class of bug, #57133; also removes
the pre-existing /sessions duplicate) — registry entry is canonical.
- apps/desktop: /compact now dispatches as an alias of /compress (matching
the registry's canonical alias) instead of dead-ending; /density (the
renamed TUI display toggle) is marked terminal-only so the desktop palette
doesn't advertise a command its dispatcher can't run.
- ui-tui/README.md: document /density instead of the old /compact toggle.
- tests: commands.catalog regression test asserting no duplicate advertised
names and no command shadowing another command's alias; desktop routing test.
Complete the #65919 warm/live-payload fix across its sibling path and add
real-SessionDB cross-builder coverage.
- Child-watch (lazy) resume: the delegated-subagent watch window served
_history_to_messages(repaired_history) for its user-visible messages, which
collapses out persisted verification candidates just like the warm-payload
path did. Build the visible messages from the verbatim child-only display
projection (repair_alternation=False) while the repaired history still feeds
live replay; fall back to the repaired history if the display read fails.
- E2E cross-builder consistency (real SessionDB, not mocks): a persisted
verification candidate is collapsed out of the model projection but kept in
the display projection, and _live_visible_history now equals the eager
session.resume display projection (candidate present). Adds the combined
candidate + fully-flushed-second-turn case and a lazy child-watch handler
test that asserts the candidate survives in resp["result"]["messages"].
#65919 persists verification candidates (finish_reason=verification_required
/ verify_hook_continue) to state.db but collapses them out of the in-memory
model history via repair_message_sequence. The eager session.resume + REST
paths read the verbatim display lineage (candidate present), but the
warm/live-reuse payload (_live_session_payload) built its user-visible
messages from the collapsed in-memory model history — so switching to a
still-live session dropped the substantive verification answer that a cold
resume of the SAME session showed. That divergence is the cross-session
"substantive text vanishes on switch" class, and the direct sibling of the
resume-duplication regression fixed in #68149.
Reconcile the persisted display lineage (candidate-inclusive, the same
get_messages_as_conversation(..., include_ancestors=True) read the eager
resume + REST paths use) with the fresh in-memory tail in
_live_visible_history, so all three surfaces agree by construction while a
not-yet-flushed live turn is still shown. Extracted
_reconcile_display_with_live as a pure, DI-testable function (anchors on the
last persisted row's (role, text); appends only the uncovered in-memory tail;
trusts the DB display when the tail can't be anchored).
Tests: unit coverage for candidate-inclusion, freshness, empty/raising-DB
fallback, and the combined candidate+fresh-tail case. The existing freshness
guard (test_session_resume_live_payload_uses_current_history_with_ancestors)
stays green.
Add an opt-in battery indicator to the CLI and TUI status bars, shown as
the first element and colour-coded by charge (green/yellow/orange/red, or
green while charging). Off by default and a no-op on machines without a
battery.
- agent/battery.py: shared psutil-backed reader with a short TTL cache,
category bucketing, and a compact 🔋/⚡ label. Fails open to
"unavailable" everywhere.
- CLI: /battery [on|off|status] toggle persisted to display.battery,
rendered first in every status-bar width tier.
- TUI: /battery slash command, config sync, a system.battery RPC polled
while enabled, and a pinned first segment in StatusRule.
The display_history_prefix calculation used by session.resume's
_live_session_payload was display_history[:len(display) - len(raw)].
This assumed the model (repaired) history is always a suffix of the
display history — i.e., repair_message_sequence only removes messages
from the tail. That assumption broke when verification candidates
(finish_reason=verification_required) were persisted to state.db (#65919):
- repair collapses consecutive assistant messages, removing the
verification candidate from the MODEL history
- the candidate stays in the DISPLAY history (it's real persisted content)
- the length gap (gap = len(display) - len(raw)) counts BOTH ancestor
messages AND repair-removed tip messages
- the prefix = display[:gap] grabs the first N display messages, which
are tip messages (not ancestors) when there are no compression ancestors
- _live_session_payload concatenates prefix + model_history, duplicating
the first N messages
On session 20260720_110036_a33889 (8 verification candidates), this
duplicated the first 8 messages in every warm-cache session.activate
response, producing visible duplicate user messages in the desktop.
Fix: add SessionDB.get_ancestor_display_prefix() which returns ONLY
genuine ancestor messages (rows where session_id != tip_session_id),
identified at the row level before _rows_to_conversation strips
session_id. Both resume paths (eager + deferred) now use this instead
of the length-slice heuristic.
Tests:
- test_get_ancestor_display_prefix_single_session_returns_empty
- test_get_ancestor_display_prefix_returns_ancestor_only_messages
- Updated 12 mock DBs across test_protocol.py + test_tui_gateway_server.py
- 848 passed (run_tests.sh), 0 regressions
* fix(fast): default /fast to session scope on CLI and gateway
Completes the session-first policy from #67946 for the /fast toggle
(the remaining half of #54084). A bare /fast fast|normal now applies to
the current session only; --global persists agent.service_tier to
config.yaml.
Gateway: new _session_service_tier_overrides dict (registered in
_CONVERSATION_SCOPED_STATE so /new clears it) resolved at both agent
turn sites via _resolve_session_service_tier(); the /fast handler and
its choice picker apply session overrides and evict the cached agent.
The TUI config.set fast path was already session-scoped.
CLI: /fast parses --global (parity with /reasoning); bare toggles
mutate self.service_tier only.
* fix(sessions): /new resets model, reasoning, and fast to config defaults
/new and /reset are full conversation boundaries: session-scoped
runtime overrides do not carry into the next session (#48055, #23131).
CLI new_session(): clears the one-turn model restore, re-derives
service_tier from config, and — when the session's model differs from
the config default — switches back via the shared switch_model()
pipeline (live agent swap included; best-effort so an unreachable
default never blocks /new).
TUI _reset_session_agent(): stops forwarding model_override /
create_reasoning_override / create_service_tier_override into the
rebuilt agent and pops the pins so later rebuilds can't resurrect
them. The gateway already cleared its per-session overrides via
_clear_conversation_scope on /new.
Cross-session contamination stays impossible: nothing here touches
process-global env or other sessions' pins.
Parity with the gateway /reasoning handler and the new /model default:
a bare /reasoning <level> now applies to the current session only;
--global persists agent.reasoning_effort to config.yaml. --session is
still accepted as an explicit alias for the default. Display toggles
(show/hide/full/clamp) remain persistent as before — they are user
preferences, not conversation state.
Builds on YAMAGUCHI Seiji's #51158 (session-scope plumbing + /new reset,
cherry-picked as the previous commit) with the default flipped to match
the session-first policy. Fixes the CLI half of #54084.
Salvaged and rebased from #66354 by @UnathiCodex onto current main.
Fixes a fresh-chat race in Hermes Desktop where a model, reasoning-effort,
or Fast selection made before the first Send could be replaced by an
in-flight profile refresh, or read only after the profile handshake
yielded. Send is now the linearization point: the visible selector state is
snapshotted before awaiting profile readiness, and intent-generation guards
make older config/model responses stand down after a picker/toggle action.
Adds the contract-v4 session-create wire contract for explicit Fast=false.
Conflict resolution vs the original branch (use-model-controls.ts / .test.tsx):
combined main's catalog-aware keepManualPick() sticky-pick logic with the
PR's profileRefreshEpoch + composerSelectionGeneration staleness guards so
both a removed-from-catalog reseed and the in-flight-picker race are handled.
Verified on current main: apps/desktop tsc --noEmit clean; 80 affected
UI/store tests pass (use-model-controls, use-hermes-config,
use-session-actions, model-edit-submenu, model-presets, updates).
Co-authored-by: UnathiCodex <theunathi@gmail.com>
session.resume built two projections of the same lineage with two separate
get_messages_as_conversation calls — the model-fed copy (tip rows, alternation-
repaired) and the display copy (full lineage, verbatim). The display fetch
already reads a superset of the model fetch (the tip rows are part of the
lineage), so the second call re-scanned the same messages.
Add SessionDB.get_resume_conversations(): one lineage SELECT, split into the tip
(model) and full (display) projections in memory via the extracted
_rows_to_conversation helper. Byte-identical to the two separate reads
(test_get_resume_conversations_matches_separate_reads covers a lineage with a
dangling tool-call tail so repair diverges the two lengths, a single session,
and replayed-user dedup). Both session.resume build paths (deferred + eager) now
use it; the subagent single-read path is unchanged.
From the Desktop performance audit (P1: "Remove repeated resume transcript
work") — the gateway half. The renderer's concurrent REST prefetch is left as-is
(the audit flags dropping it as measure-first).
Adds --once to /model across CLI, TUI, and gateway: switch model for the
next turn only, restoring the previous model in a finally block so
success, exception, and interrupt all revert. Parsing extends
parse_model_flags_detailed(); resolve_persist_behavior() treats --once
as a persistence opt-out; --global + --once is rejected.
Salvaged from PR #29923 (image-generation lane split to #59815 per
review; conflict resolution against current main by the maintainers).
On Windows (and some Linux setups), an application like VS Code's
js-debug can hold 127.0.0.1:9222 while a Chromium browser launched
with --remote-debugging-port=9222 silently binds [::1]:9222 only.
The IPv4-only probe then (a) missed the live browser entirely and
(b) hung against the squatter — which accepts TCP but never answers
the /json/version HTTP probe — repeatedly, driving the whole connect
past the desktop GUI's RPC deadline:
'error: request timed out: browser.manage'.
Fix, applied to both the gateway browser.manage RPC and the CLI
/browser connect path via shared helpers in browser_connect.py:
- discover_local_cdp_url(): probe BOTH loopbacks (127.0.0.1 first,
then [::1]) and adopt whichever actually speaks CDP.
- local_port_in_use() + find_free_debug_port(): when neither loopback
speaks CDP but the port is held by another application, report the
squatter explicitly and launch the debug browser on a nearby free
port instead of fighting a bind conflict on 9222.
- Bound the gateway's post-launch wait to a 10s deadline (was up to
20 unbounded probe cycles) so connect always answers inside the
client RPC timeout.
- _wait_for_browser_debug_ready_or_exit() also probes dual-stack so a
successful launch pushed onto [::1] is classified 'ready'.
Verified on a live Windows repro (VS Code holding 127.0.0.1:9222,
Chrome 148 on [::1]:9222): connect now resolves http://[::1]:9222
in ~4.5s instead of timing out.