Gap-fill from the follow-up commit's own review:
- __init__.py: restore getattr tolerance in _pop_auth_notice — test
fixtures outside tests/honcho_plugin/ install minimal fake managers
without pop_auth_notice (tests/test_honcho_startup_fail_open.py's
SlowManager failed with AttributeError). Exceptions still propagate;
only the blanket except was dropped.
- test_auth_recovery.py: the fast-path test used a raising stub, but
_reauth_required swallows all exceptions — the test passed even with
the fast path removed. Rewritten as a recording spy with a call-count
assertion; mutation-verified (removing the fast path now fails it).
- test_auth_recovery.py: autouse fixture resetting oauth module dicts
(_dead_grants, _refresh_failure_at, _reauth_check_cache,
_expiry_cache) so state can't leak between tests.
honcho_plugin 293 + test_honcho_startup_fail_open 7 + plugins/memory
285 = 585 passed.
Follow-ups from review of #80590:
- oauth.py: extract _rotate_and_persist() — the twin ~18-line
OAuthRefreshError permanent/transient handling blocks in
ensure_fresh_token and force_refresh_token were byte-identical
except the log verb.
- oauth.py: cap the exchange cycle at _REFRESH_TOTAL_BUDGET_SECONDS
(20s). The retry runs while holding the global refresh locks on the
path to a memory call; a timed-out first attempt no longer earns a
second full 15s exchange (~32s lock hold -> <=20s).
- oauth.py: transient-failure cooldown (_refresh_failure_at, 30s).
Waiting threads and later turns fail open to the stale token instead
of serializing their own full exchange cycles against an endpoint
that just failed. Cleared on successful rotation and re-login.
- oauth.py: mtime-gate reauth_required()'s config read — the dead-grant
state persists until re-login, and the verdict can only change when
the config file is rewritten; drop the per-call read+parse.
- oauth.py: derive _TOKEN_VALUE_RE from ACCESS_TOKEN_PREFIX /
REFRESH_TOKEN_PREFIX so a prefix change can't silently break
redaction; promote redact_tokens to public (session.py imported the
private name).
- session.py: fast path in _reauth_required — skip config-path
resolution entirely while no grant is dead (runs before every SDK
call).
- session.py: client-generation counter closes the fetch/store race in
_sdk_session/_get_or_create_peer — an object resolved from the old
client mid-rebuild is no longer cached (it would 401 forever and burn
a token rotation per retry).
- __init__.py: drop the getattr/callable/except triple-guard in
_pop_auth_notice; the manager is always None or HonchoSessionManager.
7 new tests (budget, cooldown x3, generation guard, fast path); all
mutation-checked (disabling each guard fails its test). honcho_plugin
293 passed; plugins/memory 285 passed; live E2E against a real HTTP
token endpoint re-verified.
An init-time HonchoAuthError discarded the manager that recorded it, so
context/hybrid prefetch returned nothing and tools mode returned the
generic init error. The provider now keeps the failure detail across the
manager discard, prefetch emits the one-time notice at the readiness
guard, tools mode returns an explicit authentication error, and a
successful re-login retry clears the stored failure. Non-auth init
failures keep failing open with no notice.
_authed_call checks the dead-grant marker before calling, retries a
confirmed auth failure once after a forced refresh, and records the
failure for the one-time notice. Operations re-resolve their peer and
session objects inside the call, so a retry after a client rebuild no
longer reuses objects bound to the old transport. Tool handlers now
return an explicit auth error instead of an empty result, and non-auth
failures keep their fail-open behavior.
_is_auth_error matched the substring '401' anywhere in an error string,
so a latency figure ('retry after 4010 ms'), a request id, or a
workspace name containing those digits classified as an auth failure.
A false positive calls _force_reauth, which runs a real token exchange;
the server rotates the refresh token on every exchange, and a lost
rotation response leaves Hermes holding a superseded token whose later
replay revokes the whole grant — the exact wedge this branch fixes.
The status attribute check (SDK AuthenticationError carries status=401)
does the real work and stays first. A concrete non-401 status now wins
over ambiguous text. The text fallback keeps only specific markers:
'invalid or expired access token', 'authentication failed' (not bare
'authentication', which also matches auth-infrastructure outage
messages), 'unauthorized', and '401' only with HTTP context ('HTTP
401', 'status 401'), never as a bare number. The classifier is biased
toward false negatives: a missed auth error costs one un-recovered
call, a false positive spends a rotation.
Also redacts token values in _record_auth_failure, _auth_error_message,
and the two retry warnings, matching oauth.py. The SDK's auth errors
carry no token values today, but this is the one credential path where
an upstream regression would leak silently.
Tests: the four false-positive strings stay non-auth, HTTP-context 401s
still match, a concrete 429 status beats 'authentication failed' text,
and the recorded failure plus notice redact token values.
reauth_required() existed but nothing called it, so after a grant died
every dialectic fire and sync flush still sent a Honcho API call that
401ed. dialectic_query and _flush_session now check the dead-grant flag
first and skip the call: dialectic raises HonchoAuthError (exempt from
cadence backoff), sync returns False with the failure recorded so the
one-time notice still fires.
The check compares the on-disk refresh-token digest, so a re-login flips
it back with no network call and the next cadence resumes immediately.
Transient auth errors keep the existing force-refresh-and-retry path.
Four new tests: a dead grant issues no dialectic or sync call, and a
re-login resumes both without waiting.
An expired access token could pause Honcho memory for hours with no
user-facing signal: ensure_fresh_token swallowed every exchange failure
and returned the stale token, no code handled a 401 from the Honcho API,
and each failed dialectic cycle widened the cadence backoff. Hypothesis
for the trigger (not confirmed): the refresh POST times out after the
server already rotated the token pair, Hermes keeps the old refresh
token, and the eventual replay lands outside the server's 60-second
rotation grace window, which revokes the whole grant.
- oauth: the exchange reads the token endpoint's error body instead of
discarding it. invalid_grant and other permanent OAuth errors mark the
grant dead so no code retries a revoked grant; transient failures retry
once immediately, which keeps a replayed refresh token inside the grace
window. Log lines redact token values.
- oauth: force_refresh_token() rotates the token now, ignoring local
expiry, to recover from a server-side 401.
- session: dialectic_query and _flush_session treat a 401 as a trigger to
force one token rotation and retry the call exactly once. A persistent
auth failure raises HonchoAuthError (dialectic) or records the failure
(sync) instead of being returned as an empty result.
- provider: injects a one-time notice into the memory context so the
model tells the user memory is paused and 'hermes honcho setup'
restores it. Auth failures no longer widen the dialectic cadence
backoff.
New tests cover the exchange retry, invalid_grant terminality plus
re-login recovery, forced refresh, 401 retry on both the sync and
dialectic paths, the one-time notice, and the backoff exemption.
Simplify-pass finding: sharing only the REGEX left the wrapper logic
(empty/strip/slash checks) duplicated, half-defeating the no-drift goal.
The classmethod now calls agent/memory_provider.is_trivial_prompt directly;
_TRIVIAL_PROMPT_RE stays as a class attr for backward compatibility with
any external referents.
Rebase fold on the salvaged gate:
- is_trivial_prompt/TRIVIAL_PROMPT_RE move to agent/memory_provider (the
ABC both the core gate and providers already import) — one source of
truth; honcho's _TRIVIAL_PROMPT_RE now aliases it, turn_context and the
queue_prefetch_all warm path (a sibling site main grew after the PR's
base) both use it
- tests: gate tests at the prefetch call site (mutation-checked), shared
classifier tests incl. prefix-collision guards (k8s/yolo/note/supper),
and honcho dialectic-machinery tests re-driven with a substantive prompt
("hello" became trivial by design — those tests exercise thread cadence,
not the classifier)
Salvage of PR #25350 (commits 88ffede2d + 2b848a0b2 + 3136dc63a, squashed
and ported): the run_agent.py prefetch site the PR gated has since moved
into agent/turn_context.py's build_turn_context(), so the trivial-query
gate lands there instead.
- Gate the per-turn memory_manager.prefetch_all() on a trivial-prompt
check so greetings/acknowledgements ('hi!', 'thanks', 'ok') no longer
block the turn on provider network round-trips or inject stale context.
- Extend honcho's _TRIVIAL_PROMPT_RE with greetings and a trailing
punctuation class so 'hey!' / 'hello.' classify as trivial.
- Add honcho classifier tests for greeting forms.
Route HINDSIGHT_API_KEY/HINDSIGHT_LLM_API_KEY, HONCHO_API_KEY, SUPERMEMORY_API_KEY, MEM0_API_KEY and RETAINDB_API_KEY reads through agent.secret_scope.get_secret so multiplexed turns resolve the active profile's key instead of the process environment. Also guard supermemory post_setup's os.environ write on not is_multiplex_active() — writing one profile's key into the process-global env pollutes sibling profiles; the single-profile convenience path is unchanged.
Re-port of PR #67576:
- plugins/memory/honcho/session.py: start the async writer thread lazily on
first enqueue via _ensure_async_writer (idempotent, lock-guarded) instead
of eagerly in __init__; shutdown tolerates a never-started thread
- tests/honcho_plugin/conftest.py: package-wide socket guard so no honcho
unit test can reach a live server
- tests/honcho_plugin/test_network_isolation.py: regression tests
- test_async_memory.py / test_oauth_flow.py: rebased hunks onto the pruned
suite (pruned tests not resurrected)
Salvaged-from: #67576
Co-authored-by: eapwrk <eapwrk@gmail.com>
Installing a memory provider (Honcho, mem0, hindsight, ...) from the
dashboard Plugins page failed on hosted deployments with a permission
error: the setup endpoint shelled out to
`uv pip install --python sys.executable`, which targets the sealed
read-only venv under /opt/hermes (immutable hosted image, NS-579/#49113).
The correct mechanism already exists: tools/lazy_deps.py redirects
installs to the writable durable target on the data volume
(HERMES_LAZY_INSTALL_TARGET=/opt/data/lazy-packages) when the venv is
sealed (HERMES_DISABLE_LAZY_INSTALLS=1), appends the target to the END
of sys.path (core venv always wins collisions), and constrains shared
deps to core-venv versions. The dashboard installer simply never used
it.
Fix:
- tools/lazy_deps.py: new public install_specs() — installs arbitrary
manifest-declared pip specs through the same environment routing as
ensure(): venv-scoped by default, durable-target on sealed images,
refused with an actionable reason when gated off (config kill switch
or sealed venv without a target — never surfaces raw EROFS/EACCES).
Specs are validated with _spec_is_safe(); post-install it invalidates
import/metadata caches so availability rechecks in the same process
see the new packages without a restart. Never raises.
- hermes_cli/web_server.py: _install_memory_provider_pip_dependencies
now calls install_specs() instead of building its own uv/pip
subprocess. Blocked installs surface the gate reason in the setup
results; the response's status block reflects post-install
availability (stale 'missing deps' state clears immediately).
- hermes_cli/memory_setup.py, plugins/memory/honcho/cli.py,
plugins/memory/mem0/_setup.py: CLI setup wizards routed through
install_specs() too — same sealed-venv failure mode, same fix.
No hosted setup path writes to /opt/hermes anymore; provider discovery
and installation now use the same environment (sys.path activation is
shared with the lazy-install bootstrap in hermes_bootstrap).
Tests:
- tests/tools/test_lazy_deps.py: TestInstallSpecs — gating matrix
(sealed+no-target blocked with immutable-deployment reason, config
kill switch, sealed+target proceeds), spec-safety rejection before
any subprocess, venv-scoped vs --target command display, failure
stderr passthrough, never-raises contract.
- tests/hermes_cli/test_web_server.py: setup endpoint routes pip
through lazy_deps (regression guard asserts no direct 'pip install'
subprocess), blocked-reason surfacing, same-response availability
recheck clears stale missing state.
Fixes NS-605 (Plain T-1111).
Path.read_text() without an explicit encoding uses the platform's
default encoding. On Windows this is typically cp1252 or mbcs, which
causes UnicodeDecodeError or silent data corruption when reading
UTF-8 content (JSON files, user text, config with non-ASCII chars).
This is the read-side companion to the write_text() encoding fix.
Fixed the most critical locations that read JSON data, user content,
and config files across 14 files with 31 call sites.
Pattern: .read_text() → .read_text(encoding='utf-8')
json.loads(path.read_text()) → json.loads(path.read_text(encoding='utf-8'))
On Windows with Chinese locale (GBK), subprocess.run(text=True) without
explicit encoding causes UnicodeDecodeError crashes. This fix adds
encoding='utf-8', errors='replace' to all subprocess.run() and
subprocess.Popen() calls that use text=True across 76 non-test Python files.
Fixes#53428 (master tracker for Windows GBK locale crash).
Note: credential_pool.py and electron changes excluded per reviewer request —
those will be submitted as separate focused PRs.
RFC 8628 §3.2 makes the device-authorization `interval` optional with a
client-side default of 5 seconds. request_device_code required it, so a
compliant AS that omitted it hit the malformed-response path and the flow
could never complete. Fall back to 5s and cover it with a regression test.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Adds a device authorization grant flow alongside the existing loopback
OAuth flow, so `hermes setup` can connect to Honcho cloud from SSH and
other no-browser environments.
- oauth.py: new HTTP seams — _http_post_form_status (non-raising, since
RFC 8628 polling reads the OAuth error off a 400) and _http_get_json
for the RFC 8414 metadata probe
- oauth_flow.py: DeviceCode, request_device_code, poll_for_token with
slow_down backoff (+5s, capped at 60s) bounded by expires_in, typed
errors (AccessDenied, DeviceCodeExpired, AuthorizationTimeout), and
supports_device_login (fail-closed metadata gate); device flow ends in
the same install_grant tail as loopback so refresh/status work
unchanged
- oauth_flow.py: loopback callback now serves a "sign-in was not
completed" page on consent cancel instead of the success page
- cli.py: cloud menu offers oauth / device / apikey; the device option
only appears when the host advertises the grant, and becomes the
default when no browser is detected
- 18 new tests covering the full flow against a local fake AS, backoff
schedule, error mapping, deadline bound, metadata gate, and wizard
branches
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The staleness check's bespoke mtime memo keyed only on the user
config.yaml, but load_config() merges the managed-scope config
(HERMES_MANAGED_DIR/config.yaml, /etc/hermes) whose leaf keys win. A
managed honcho.timeout with no user config.yaml made the memo cache
'no timeout' while _build resolved the managed value — the same
perpetual-rebuild mismatch this PR fixes for honcho.json. A managed
timeout edit was likewise invisible while the user file's mtime stayed
put.
load_config_readonly() is already cached on both files' signatures plus
the env-ref snapshot, so use it instead of duplicating that
invalidation logic; the defensive deepcopy the old memo existed to
avoid is skipped by the readonly variant. Drive the rebuild test
through a real config.yaml and add a HERMES_MANAGED_DIR regression
test covering stable reuse and managed-timeout edits.
The staleness check added in #66052 resolved the timeout from env,
config.yaml, and the default only, while the build path also reads the
honcho.json host block (timeout/requestTimeout). With a timeout
configured in honcho.json, the two permanently disagreed: every
no-config get_honcho_client() call — i.e. every HonchoSessionManager
.honcho property access — interpreted the mismatch as a config change
and tore down and rebuilt the client, defeating the singleton on the
hot path it was meant to protect.
Teach the check to read honcho.json through the same host-aware chain
as from_global_config, memoized on the file's mtime_ns so the per-call
cost stays one stat(). A genuine honcho.json timeout change is now also
detected, extending #57437 to that config surface.
Follow-ups for the consolidated salvage:
- Memoize the config.yaml-derived timeout on the file's mtime_ns so the
rebuild-on-timeout-change check from PR #57437 costs one stat() per
get_honcho_client() call instead of a full YAML load on the hot path.
- hermes honcho status now displays the host-block-resolved
dialecticCadence (remnant from PR #63776, whose runtime fix landed
in #62290).
- AUTHOR_MAP entries for the salvaged contributor emails.
The Honcho client singleton cached the HTTP timeout at first build.
In long-lived processes (gateway, dashboard), changing the timeout
via config.yaml or HONCHO_TIMEOUT had no effect until restart.
Track the resolved timeout alongside the cached client and compare
on each get_honcho_client() call. When the timeout differs, reset
the singleton so the next call rebuilds with the new value.
Fixes#57347
Fixes Honcho client initialization for setup-generated configs that store
connection details in a named host block (e.g. "local"). Previously:
- base_url was only read from flat config root, not from host_block.
- resolve_active_host() ignored defaultHost and always used the Hermes
profile key ("hermes"), so the host block lookup returned {} and the
api_key was also lost.
FixesNousResearch/hermes-agent#61661
honcho_reasoning's minimal tier hard-caps Honcho's dialectic output at 250
tokens combined with the model's own hidden reasoning tokens. Confirmed via
direct honcho-api server logs that a multi-fact query ("summarize known
facts about this peer and communication preferences") run at
reasoning_level=minimal gets cut off mid chain-of-thought at exactly
output_tokens=250, before the model ever reaches a synthesized answer.
low/medium/high/max fall back to Honcho's much larger global dialectic
default and don't hit this cap. Since dialecticDynamic is on by default and
the calling model picks reasoning_level itself via this tool parameter, the
fix is to make the tradeoff explicit in the parameter description so the
model defaults to low unless the query is genuinely a single-fact lookup.
Schema-description-only change; the shared dialectic_max_chars truncation
cap in session.py's dialectic_query() is a separate fix (its own PR).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
_fetch_session_context was using user_peer_id directly as observer
when calling _fetch_peer_context, bypassing _resolve_observer_target.
This caused honcho_context to return empty data because the observer
perspective was wrong (user instead of hermes/assistant).
Fixed by resolving observer via _resolve_observer_target(session, 'user'),
consistent with all other call sites (get_peer_card, honcho_search, etc.).
queryRewrite (default off) gates the latest-message rewrite so the
extra auxiliary LLM call is opt-in. firstTurnBaseWait and
firstTurnDialecticWait expose the turn-1 bounded waits in seconds
(0 disables). All three resolve host-block-first like every other
field. Also pins per-host timeout resolution with tests.
Move query_rewrite from the honcho plugin to plugins/memory/ and
rename the auxiliary task key honcho_query_rewrite ->
memory_query_rewrite so any memory provider can use the same
rewrite path and model/timeout config block. No behavior change.
dialecticMaxChars (default 600) is documented as the budget for the dialectic
supplement auto-injected into the system prompt every turn — a small recurring
cost that is correct to bound tightly. But dialectic_query() applied that cap
unconditionally, so explicit honcho_reasoning tool calls — where the model
deliberately spends a turn asking for a synthesized answer — were silently
truncated mid-word to 600 chars with a trailing " …", no error surfaced. The
full answer is returned by Honcho server-side; the clip happens client-side.
The auto-injection path already has its own token-based budget (contextTokens,
enforced in prefetch() via _truncate_to_budget), so the char cap's real job is a
cheap always-on guardrail for that recurring injection. Explicit tool results
are already bounded server-side by Honcho's dialectic MAX_OUTPUT_TOKENS and don't
need the injection cap — sibling tools (honcho_search, honcho_context) don't
post-clip their results either.
Add apply_injection_cap (default True, preserving current behavior) to
dialectic_query(); the honcho_reasoning tool handler passes False so it returns
Honcho's full synthesized answer. Auto-injection is unchanged. Tests cover both
the capped injection path and the uncapped tool path.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
honcho_conclude's delete action was unreachable in practice: no tool ever
surfaced a real conclusion id for the model to pass as delete_id.
honcho_search only searches the separate Message resource space, and the
SDK's ConclusionScope.list()/.query() (which do return real Conclusion.id
values) were never wired into any tool.
Adds an optional list mode to honcho_conclude (query to search, omit to
browse recent conclusions), backed by a new
HonchoSessionManager.list_conclusions(). No new tool, no changes to the
create/delete signatures or their conclusions_of() routing.
injectionFrequency='first-turn' returned empty for the entire
prefetch_context() method on turns 2+, which blocked the dialectic
supplement from being consumed and injected. The dialectic has its
own cadence (dialecticCadence) and must continue to fire and inject
independently of the base context layer.
Now first-turn mode gates only Layer 1 (base context: representation
+ card), letting Layer 2 (dialectic supplement) flow through its
normal consumption path on every turn.
Also fixes all remaining tests that passed dialecticCadence via
cfg_extra={'raw': {...}} to use the typed dialectic_cadence field.
injectionFrequency, contextCadence, and dialecticCadence were read
only via raw.get() which checks root-level keys in honcho.json.
Settings placed inside hosts.<name> (the normal per-host location)
were silently ignored, falling back to defaults.
- Add typed dataclass fields: injection_frequency, context_cadence,
dialectic_cadence with host-block-first resolution chains matching
the pattern used by all other config fields.
- Update HonchoMemoryProvider.initialize() to read from typed cfg
fields instead of cfg.raw directly.
- Fix search_context tests that mocked _honcho directly — the
.honcho property getter calls get_honcho_client() which overwrites
the backing field, so use patch.object on the property instead.
- Add injection_frequency and context_cadence config override tests.
HonchoClientConfig timeout/requestTimeout resolution skipped the per-host config
block, silently dropping a host-scoped timeout and falling through to the global
config.yaml value (or the default). Add the host block at the front of the
resolution chain, consistent with every other field (base_url, api_key, etc.).
Symptom: Honcho logs show a dialectic answer was generated, but Hermes never
injects it — intermittently.
Root cause: the dialectic supplement that queue_prefetch() fires at the end of
turn N is stored pending (fired_at=N) for consumption by turn N+1's prefetch().
But prefetch()'s trivial-prompt guard returned early BEFORE the consumption
block. So when turn N+1's prompt was trivial ('ok', 'yes', 'continue', a slash
command), the ready result was never consumed, and a few turns later the
stale-discard guard dropped it. Generated by Honcho, never seen by the model.
The dependence on 'is the consuming turn trivial?' is why the loss looked random.
Fix: trivial turns now consume and inject a ready, non-stale pending result while
still spending no new work (no base-context fetch, no new dialectic fire). A
trivial ack shouldn't generate context, but it shouldn't destroy an answer
already computed for that exact turn. Extracted the pop+stale-check into a shared
_consume_pending_dialectic() used by both the trivial path and the normal path so
they age-check identically.
Preserved (covered by new tests): genuinely stale results are still discarded on
trivial turns; trivial turns still fire no new work; a trivial turn with nothing
pending still injects nothing.
Adds regression tests for inject-on-trivial and discard-stale-on-trivial.
A brand-new session injected no Honcho context on the user's first message —
the peer card/representation only showed up from turn 2 onward. The base-context
fetch was fired asynchronously and popped in the same synchronous pass, so it
always lost the race on turn 1 (a background thread can't finish inside one
pass), leaving the first response with zero recalled context.
Fetch the base layer (representation + card + summary) synchronously with a
bounded timeout on turn 1 so the peer card is injected immediately; subsequent
turns still consume the background-refreshed result primed by queue_prefetch().
The wait is bounded by _FIRST_TURN_BASE_TIMEOUT and tightened further by a small
configured request timeout (fail-fast deployments / tests).
Two related first-turn/dialectic reliability fixes ride along:
- first-turn dialectic no longer double-fires: if a prewarm .chat() thread is
already in flight from session init, turn 1 waits briefly for it instead of
firing a second (duplicate) call that also blocked the first response. The
first-turn wait is decoupled from a large host timeout (a 60s host timeout
must not block the first response for 60s) via _FIRST_TURN_DIALECTIC_CAP,
while still honoring a tight configured timeout.
- empty-pass propagation guard in multi-pass dialectic: at depth > 1 each pass
feeds the prior pass's output into the next prompt. If a pass returned empty
(e.g. a reasoning model that spent its whole budget thinking), the next prompt
carried a blank assessment (the "empty spot" seen in Honcho request logs). Now
only non-empty prior results feed dependent passes; if all priors are empty,
re-issue the base prompt instead of referencing nothing.
The five Honcho tool schemas had overlapping/misleading descriptions, making it
hard for the model to pick the right one, plus two concrete correctness bugs:
- honcho_context advertised an 'Optional focus query' parameter that the dispatch
never read. The model could pass query= expecting filtering that never happened.
Remove the dead parameter; honcho_context is an honest no-query snapshot. Focused
retrieval now lives in honcho_search (see prior commit).
- honcho_conclude's peer param was described as 'Peer to query' — wrong; it's the
peer the conclusion is ABOUT. Corrected.
Rewrite all five descriptions to give each tool a distinct mental model and
cross-reference siblings:
profile = read/write the compact card (cheapest, no query, no LLM)
search = find what was actually said, ranked, cross-session (cheap, no LLM)
reasoning= ask a question, get a synthesized answer (the only LLM tool; expensive)
context = a fixed session snapshot (no query, no LLM)
conclude = write a durable fact to the profile
Addresses the honcho_context query param half of #29402 (see PR notes for the
divergence from that issue's proposed wire-through approach).
honcho_search routed through search_context() -> peer.context(search_query=),
which returns the peer's standing representation + card. The search_query arg
does not turn that endpoint into a search, so results were effectively
query-independent: the same representation blob regardless of the query. Factual
lookups ('what medication', 'which value did we pick') returned noise.
Rewire search_context() to call the workspace message-search endpoint
(Honcho.search) with a peer_perspective filter: RRF-ranked (hybrid semantic +
full-text) raw message excerpts spanning every session the peer was a member of,
across all authors, membership-time-scoped. This is the cross-session factual
recall primitive.
peer_perspective is chosen over the alternatives because it is the only scope
that is simultaneously (a) cross-session, (b) inclusive of assistant-authored
facts about the peer (peer-author search drops these, and they are a large part
of what you want to recall about yourself), and (c) privacy-scoped to the peer's
own sessions (plain workspace search leaks other peers' sessions).
- snippets are labeled by author so the model can tell user-stated facts from
assistant-derived ones
- max_tokens is now an enforced budget (was accepted but meaningless)
- graceful fallback to peer-authored search if peer_perspective is unsupported
- query length clamped under the embedding input cap
Replaces 3 change-detector tests that asserted the old representation-dump
behavior with 4 that assert the message-search contract + fallback path.
Main's #60569 (dashboard memory provider switching) rewrote the same
GET/PUT /api/memory/providers/{name}/config routes this PR owns — the
dashboard and desktop share one backend. Resolve by dispatching: providers
that declare a config_schema.py get the declared path (host-block storage,
locked honcho writes, profile scoping, actions); everything else keeps
main's instance get_config_schema()/save_config path unchanged, so the
dashboard's PluginsPage behavior is preserved for instance providers.
Setup manifests, the /setup endpoint, provider switching, and name
validation from #60569 apply to both paths. Instance payloads gain the
docs_url/actions keys the desktop panel expects; declared payloads gain
the setup block the dashboard expects. Main's hindsight/honcho instance-
schema tests are updated for the dispatch, and its status test gets the
HOME pin it was missing (it read the developer's real ~/.honcho).
Fields can declare a longer 'info' text rendered as an (i) tooltip next to
the label in both the panel and the modal; honcho uses it to spell out the
session strategy, write frequency, and recall mode semantics. The modal
description claimed 'the active profile' without saying which — show the
active gateway profile name.
Replace the hand-rolled ensurepip bootstrap (and five other one-off
pip-install code paths) with hermes_cli.tools_config._pip_install, which
prefers the bundled uv (fast, needs no pip in the venv), falls back to
python -m pip, and bootstraps pip via ensurepip only when missing.
Sites unified:
- hermes_cli/setup.py: _install_neutts_deps, _install_kittentts_deps,
modal SDK install, daytona SDK install
- hermes_cli/memory_setup.py: memory-plugin pip deps (previously dead-ended
when uv AND pip binaries were both absent)
- hermes_cli/dingtalk_auth.py: qrcode auto-install (previously invoked
'python -m uv' which is not how uv ships)
- agent/lsp/install.py: --target LSP server installs
- plugins/google_meet/cli.py, plugins/platforms/matrix/adapter.py,
plugins/platforms/google_chat/oauth.py, plugins/memory/honcho/cli.py
Tests updated to assert the ladder behavior (uv-first, pip fallback,
ensurepip bootstrap) instead of the removed bespoke branches.
ruff check --fix --select F541 . on current main. Pure prefix removals;
adjacent-string concatenations keep the f only on interpolating fragments.
No string content or live placeholder altered.