Files
OmniRoute/@omniroute/opencode-plugin-v2/src/index.ts
Dizzle b345c7f6cd feat(opencode): opencode v2 plugin publishing the OmniRoute catalog (#12870)
opencode v2 loads plugins through a contract the existing
@omniroute/opencode-plugin cannot satisfy: v1 exports plugin factories with an
auth/provider/config/tool hook object, v2 expects a default define({id, setup})
carrying catalog and integration domains. One package would have to satisfy
both loaders from a single entrypoint. An opencode v2 install therefore has no
route to an OmniRoute gateway at all: no model discovery, no combos, no
enrichment.

This adds @omniroute/opencode-plugin-v2, a self-contained package. The v1
plugin is untouched, so v1 users see no move, no migration and no breaking
version. The two packages deliberately share no code and no release: the
mapping logic here began as a port of v1's and now lives in this package, which
keeps either one free to change without a coordinated publish.

The plugin publishes models, combos and auto-combos into the host catalog,
refreshes them lazily behind a 300s TTL, and keeps serving the last known
catalog from an on-disk snapshot when the gateway is unreachable. Publishing is
staged: models and combos are what a catalog is, so they go out as soon as they
are known, while auto-combos, the provider list and the enrichment overlay fold
into the snapshot when they land. Gating the publish on all of them made the
catalog hostage to the slowest source — a gateway that accepts the connection
and never answers /api/combos/auto left everything unpublished until that fetch
timed out, which is longer than a short-lived host stays alive.

Display names carry what the gateway knows about a model: the upstream provider
it routes to, whether it is free, and the budget that comes with it. Those parts
were already fetched and then dropped, so two connections selling the same model
looked identical in the picker. The provider prefix can be turned off with
`providerTag: false`.

The on-disk snapshot carries that overlay too, under a size cap, so a cold start
opens on named models rather than raw ids. The host is asked to reload only when
the catalog or the overlay actually moved, never once per refresh window.

The gateway key comes from the host credential store when one is connected, so
connecting the integration from opencode is enough and no secret needs to sit
in opencode.json; a plugin option and an environment variable remain as
fallbacks, and a host too old to expose a credential store still loads. Nothing
is silent when a key is missing or refused: an absent key is named once at
startup with the three ways to supply one, and an enrichment source the gateway
rejects is reported per endpoint with what the catalog loses. Those three
failures used to be empty catch blocks, which turned a management token the
gateway refuses into a catalog of raw model ids with no explanation.

Tool calling to Gemini keeps working. Gemini answers 400 INVALID_ARGUMENT for
an entire request whose tool declarations carry $schema, $ref or
additionalProperties. The v1 plugin handled it by wrapping fetch and rewriting
the JSON body; v2 does it on the language model, where the tools are still
structured data, and only for Gemini models of this provider. It can be turned
off with geminiSanitization: false, and a host exposing no aisdk domain loads
without it.

The catalog contract itself is a moving target, so the plugin adapts to the
host instead of assuming one shape. The released CLI keeps the aisdk package,
the endpoint (as settings.baseURL), the request headers and the variant options
directly on the model and provider; the current SDK types keep the same
information inside an api block. Writing only the api block yields a catalog
the released CLI lists but cannot route. Rather than key off a version list
that goes stale on the next release, the plugin reads the shape the host seeds
into the catalog draft and publishes accordingly: a seed with a top-level
package and no api block gets both field sets, a seed with an api block gets
that block alone, and an undisclosed seed gets both. None of the legacy keys
collide with a key of the current types, so the two shapes coexist on one
object, variants included.

Four v1 behaviours are deliberately not carried over, because v2 either owns
them or no longer needs them: the plugin-side debug log (the host has its own
logging), the compression-metadata suffix on combo names, the MCP auto-emit
(the v2 host owns MCP), and the omni-sync command plus its background timer
(the TTL and a content fingerprint drive catalog.reload instead).

A refresh never downgrades what is already published: the previous overlay is
carried forward until the new one lands, so names, pricing and the usable
filter no longer drop out for the length of every TTL window. The disk snapshot
is read after the credential is resolved, because it is keyed by that
credential — reading it earlier looked up the identity the options carry rather
than the one in use, and rejected a perfectly good catalog exactly when the
gateway was down.

The tool-schema cleaner now knows where a schema ends and a property name
begins. Stripping keywords by name anywhere in the tree deleted a tool
parameter called `ref` while leaving it in `required`, handing the model a
schema it could not satisfy; a `$ref` it cannot resolve now forwards the tool
untouched instead of widening it to accept anything. Gemini detection is
anchored on the model family, so `gemini-compatible-proxy` is no longer treated
as a Gemini model.

A source the gateway refuses is reported on the library entry point as well,
not only through the plugin, so the usable-provider filter can no longer disable
itself in silence. `providerId` is bounded to a safe character set because it
reaches a filesystem path, `hiddenModels` covers combos as it already covered
models, the Anthropic block gets the gateway root rather than a doubled `/v1`, an unparseable tool schema forwards the tool instead
of failing the request, and the package typechecks under the same settings as
the v1 plugin.

CI mirrors the existing plugin workflow: install, build and test on Node 22 and
24, for both packages. The plugin SDK stays pinned, and the host-shape assertions carry the risk of
a contract move rather than a check against a rolling upstream tag.

Co-authored-by: Max <maxmad64@gmail.com>
2026-09-06 18:36:27 -03:00

540 lines
22 KiB
TypeScript

import { define, type PluginContext } from "@opencode-ai/plugin/v2/promise";
import {
optionalTierFingerprint,
catalogContentFingerprint,
createLogger,
defaultOmniRouteAutoCombosFetcher,
defaultOmniRouteCombosFetcher,
defaultOmniRouteEnrichmentFetcher,
defaultOmniRouteModelsFetcher,
defaultOmniRouteProvidersFetcher,
type OmniRouteEnrichmentMap,
type OmniRouteProviderConnection,
} from "./shared/index.js";
import type {
OmniRouteRawAutoCombo,
OmniRouteRawCombo,
OmniRouteRawModelEntry,
} from "./shared/index.js";
import type { ResolvedOptions } from "./catalog.js";
import { publishCatalog } from "./catalog.js";
import {
DEFAULT_MODEL_CACHE_TTL_MS,
UNREACHABLE_COOLDOWN_MS,
memoryCacheKey,
readDiskSnapshot,
snapshotIdentityFingerprint,
writeDiskSnapshot,
type CatalogSnapshot,
} from "./cache.js";
import { assertContext } from "./compat.js";
import { type ApiKeyOrigin, resolveApiKey, warnIfMissing } from "./credentials.js";
import { createSourceErrorReporter } from "./enrichment-report.js";
import { sanitizeToolSchemasFor } from "./gemini-language.js";
import { PLUGIN_ID, parsePluginOptions, resolveTimeouts, type PluginOptions } from "./options.js";
/**
* A fetch result that says whether it succeeded. Returning a bare `[]` on
* failure makes an outage indistinguishable from a gateway that legitimately
* has no combos — and the difference decides whether the last known value
* should be kept or dropped.
*/
type SourceResult<T> = { ok: true; value: T } | { ok: false };
interface RefreshState {
entries: Map<string, CatalogSnapshot>;
inFlight: Map<string, Promise<CatalogSnapshot>>;
fingerprint: string | undefined;
/** Digest of the optional tier, so a reload only follows a real change. */
optionalFingerprint: string | undefined;
/**
* When the last refresh found the gateway unreachable, skip the network
* until this timestamp and serve last-known-good instead. Without it every
* transform past TTL re-fires the full fetch suite against a gateway that
* just proved it cannot answer — a self-inflicted retry storm.
*/
unreachableUntil: number;
}
function toResolvedOptions(parsed: PluginOptions): ResolvedOptions {
return {
providerId: parsed.providerId,
baseURL: parsed.baseURL,
apiKey: parsed.apiKey ?? process.env.OMNIROUTE_API_KEY ?? "",
managementReadToken: parsed.managementReadToken,
timeoutMs: parsed.timeoutMs,
timeouts: parsed.timeouts,
logLevel: parsed.logLevel,
startupDebug: parsed.startupDebug,
providerTag: parsed.providerTag,
modelCacheTtlMs:
typeof parsed.modelCacheTtlMs === "number" && parsed.modelCacheTtlMs > 0
? parsed.modelCacheTtlMs
: DEFAULT_MODEL_CACHE_TTL_MS,
displayName: parsed.displayName,
apiFormat: parsed.apiFormat,
visibleModels: parsed.visibleModels,
hiddenModels: parsed.hiddenModels,
usableOnly: parsed.usableOnly,
enrichment: parsed.enrichment,
};
}
export default define({
id: PLUGIN_ID,
setup: async (ctx: PluginContext) => {
assertContext(ctx);
const parsed = parsePluginOptions(ctx.options);
const X = parsed.providerId;
const resolved = toResolvedOptions(parsed);
const timeouts = resolveTimeouts(parsed);
const log = createLogger(parsed.startupDebug ? "debug" : (parsed.logLevel ?? "warn"));
resolved.logger = log;
resolved.logLevel = parsed.logLevel;
resolved.startupDebug = parsed.startupDebug;
log.info(`[omniroute-v2] init providerId=${X}`);
// v1 parity port: in-memory TTL + disk snapshot. The memory key
// `baseURL::sha256(creds)` isolates credential tuples (prod vs
// staging); the TTL is checked in the transform before any fetch;
// concurrent calls share the refresh promise in the setup closure keyed
// by (providerId, baseURL); the disk snapshot feeds warm-startup and
// the offline fallback. The existing in-memory keep-last-good is kept.
const state: RefreshState = {
entries: new Map(),
inFlight: new Map(),
fingerprint: undefined,
optionalFingerprint: undefined,
unreachableUntil: 0,
};
// The credential the host holds wins over one written in config, so a
// user who connected the integration from the UI never has to paste a
// key into `opencode.json`. Reading it is async and the transforms must
// register synchronously, so the lookup happens on the first publish;
// until then the option/env key resolved above stands in.
const credentialsOf = (): { cacheKey: string; identityFingerprint: string } => ({
cacheKey: memoryCacheKey(
resolved.baseURL,
`${resolved.apiKey}\0${resolved.managementReadToken ?? resolved.apiKey}`
),
identityFingerprint: snapshotIdentityFingerprint(
resolved.baseURL,
resolved.apiKey,
resolved.managementReadToken ?? resolved.apiKey
),
});
let { cacheKey, identityFingerprint } = credentialsOf();
// Both keys are derived from the credential: two credentials must never
// share a snapshot, so they are recomputed whenever the key moves.
let credentialChecked = false;
let apiKeyOrigin: ApiKeyOrigin = resolved.apiKey.length > 0 ? "option" : "missing";
const ensureCredential = async (): Promise<void> => {
// Settled once a key is in hand: re-reading on every refresh would let
// a mid-session change silently repoint the snapshot keys.
if (credentialChecked && apiKeyOrigin !== "missing") return;
const next = await resolveApiKey(ctx, X, parsed.apiKey, log);
const moved = next.key !== resolved.apiKey;
resolved.apiKey = next.key;
apiKeyOrigin = next.origin;
if (moved) ({ cacheKey, identityFingerprint } = credentialsOf());
if (!credentialChecked) warnIfMissing(next, X, log);
else if (moved) log.info(`[omniroute-v2] API key picked up from the ${next.origin} source`);
credentialChecked = true;
};
const fetchModelsSafe = async (): Promise<OmniRouteRawModelEntry[]> => {
try {
return await defaultOmniRouteModelsFetcher(
resolved.baseURL,
resolved.apiKey,
timeouts.models
);
} catch (err) {
log.warn(
`[omniroute-v2] models fetch failed, publishing empty catalog: ${err instanceof Error ? err.message : String(err)}`
);
return [];
}
};
// Failures are reported once per endpoint (with the management-token hint
// when the inference key stands in), so a gated `/api/*` degrades loudly
// rather than silently. Declared before the wrappers that use it.
const reportSourceError = createSourceErrorReporter(
log,
resolved.managementReadToken === undefined
);
const fetchCombosSafe = async (): Promise<SourceResult<OmniRouteRawCombo[]>> => {
try {
return {
ok: true,
value: await defaultOmniRouteCombosFetcher(
resolved.baseURL,
resolved.managementReadToken ?? resolved.apiKey,
timeouts.combos
),
};
} catch (err) {
const reason = err instanceof Error ? err.message : String(err);
reportSourceError("/api/combos", reason);
log.warn(`[omniroute-v2] combos fetch failed, keeping the last known combos: ${reason}`);
return { ok: false };
}
};
// Providers connections follow the same rule: gated on usableOnly (no
// request when false, v1 parity), soft-fail to [] so the filter degrades
// to keep-all instead of hiding the catalog.
const fetchProvidersSafe = async (): Promise<SourceResult<OmniRouteProviderConnection[]>> => {
if (!resolved.usableOnly) return { ok: true, value: [] };
try {
return {
ok: true,
value: await defaultOmniRouteProvidersFetcher(
resolved.baseURL,
resolved.managementReadToken ?? resolved.apiKey,
timeouts.models,
reportSourceError
),
};
} catch (err) {
log.warn(
`[omniroute-v2] providers fetch failed, keeping the last known provider list: ${err instanceof Error ? err.message : String(err)}`
);
return { ok: false };
}
};
// Enrichment follows the same rule: gated on the option (default on,
// v1 parity), soft-fail to an empty map so names/pricing degrade to
// mapper defaults instead of hiding the catalog.
const fetchEnrichmentSafe = async (): Promise<SourceResult<OmniRouteEnrichmentMap>> => {
if (resolved.enrichment === false) return { ok: true, value: new Map() };
try {
return {
ok: true,
value: await defaultOmniRouteEnrichmentFetcher(
resolved.baseURL,
resolved.managementReadToken ?? resolved.apiKey,
timeouts.enrichment,
reportSourceError
),
};
} catch (err) {
log.warn(
`[omniroute-v2] enrichment fetch failed, keeping the last known names/pricing: ${err instanceof Error ? err.message : String(err)}`
);
return { ok: false };
}
};
const fetchAutoCombosSafe = async (): Promise<SourceResult<OmniRouteRawAutoCombo[]>> => {
try {
return {
ok: true,
value: await defaultOmniRouteAutoCombosFetcher(
resolved.baseURL,
resolved.managementReadToken ?? resolved.apiKey,
timeouts.autoCombos,
log,
reportSourceError
),
};
} catch (err) {
// The default fetcher reports the refusal itself (with the
// management-token hint); this warn is the fallback for injected
// stubs that throw without reporting.
const reason = err instanceof Error ? err.message : String(err);
log.warn(`[omniroute-v2] auto combos fetch failed, keeping the last known ones: ${reason}`);
return { ok: false };
}
};
/**
* Fetch in two tiers. Models are what a catalog *is*: without them there
* is nothing to publish. Everything else — combos, auto-combos, the
* provider list, the enrichment overlay — improves an already usable
* catalog, so awaiting any of them before publishing makes the catalog
* hostage to the slowest source: a gateway that accepts the connection
* and never answers one endpoint kept everything unpublished until that
* fetch's own timeout fired, which is longer than some hosts stay alive.
*
* The optional tier therefore keeps running after the publish and upgrades
* the stored snapshot when it lands, so the next transform serves the
* complete catalog.
*/
async function refreshSnapshot(): Promise<CatalogSnapshot> {
// Models are what a catalog *is*; everything else improves one that
// already works. Combos used to sit here too, so a gateway slow to
// answer /api/combos held the whole picker back — the very thing the
// staged publish exists to prevent.
const essential = fetchModelsSafe();
const optional = Promise.all([
fetchCombosSafe(),
fetchAutoCombosSafe(),
fetchProvidersSafe(),
fetchEnrichmentSafe(),
]);
const models = await essential;
const previous = state.entries.get(cacheKey);
// A gateway that just failed everything gets a short breather: serving
// last-known-good for a few seconds beats hammering it on every
// transform while it is down. Arms whenever the models fetch comes back
// empty — with or without a prior entry to serve — so a totally dead
// gateway stops getting hit every window. Partial degradation (models
// healthy, an optional tier failed) still retries normally next window.
if (models.length === 0) {
state.unreachableUntil = Date.now() + UNREACHABLE_COOLDOWN_MS;
}
// Carry every source forward until its replacement lands, and keep the
// old value when a fetch FAILED — but honour a gateway that legitimately
// returns nothing, which is a different answer from "I could not ask".
const snapshot: CatalogSnapshot = {
models,
combos: previous?.combos ?? [],
autoCombos: previous?.autoCombos ?? [],
providers: previous?.providers ?? [],
enrichment: previous?.enrichment ?? new Map(),
fetchedAt: Date.now(),
};
if (models.length > 0) {
state.entries.set(cacheKey, snapshot);
await writeDiskSnapshot(X, snapshot, identityFingerprint);
}
void optional.then(
(parts) => upgradeWithOptional(snapshot, parts),
(err) => {
// The wrappers never reject; a throw here would be a bug in them, and
// an unhandled rejection is a worse way to learn about it.
log.warn(
`[omniroute-v2] optional catalog sources failed unexpectedly: ${err instanceof Error ? err.message : String(err)}`
);
}
);
return snapshot;
}
/**
* Fold late optional data into the snapshot that was published without it.
* Skipped when a newer refresh has already replaced that snapshot, so a
* slow tier can never resurrect a stale catalog.
*/
async function upgradeWithOptional(
base: CatalogSnapshot,
[combos, autoCombos, providers, enrichment]: [
SourceResult<OmniRouteRawCombo[]>,
SourceResult<OmniRouteRawAutoCombo[]>,
SourceResult<OmniRouteProviderConnection[]>,
SourceResult<OmniRouteEnrichmentMap>,
]
): Promise<void> {
if (state.entries.get(cacheKey) !== base) return;
// Per source: a success replaces (even with an empty answer — that is
// the gateway's answer), a failure keeps what we had.
const upgraded: CatalogSnapshot = {
...base,
combos: combos.ok ? combos.value : base.combos,
autoCombos: autoCombos.ok ? autoCombos.value : base.autoCombos,
providers: providers.ok ? providers.value : base.providers,
enrichment: enrichment.ok ? enrichment.value : base.enrichment,
};
const unchanged =
upgraded.combos === base.combos &&
upgraded.autoCombos === base.autoCombos &&
upgraded.providers === base.providers &&
upgraded.enrichment === base.enrichment;
if (unchanged) return;
state.entries.set(cacheKey, upgraded);
if (upgraded.models.length > 0) {
await writeDiskSnapshot(X, upgraded, identityFingerprint);
}
// Reload only when the optional tier actually moved: the catalog
// fingerprint covers ids alone, so without this the host would rebuild
// its catalog once per TTL window for an identical result.
const optionalFingerprint = optionalTierFingerprint(
upgraded.autoCombos ?? [],
upgraded.providers ?? [],
upgraded.enrichment,
upgraded.combos
);
const optionalChanged = state.optionalFingerprint !== optionalFingerprint;
state.optionalFingerprint = optionalFingerprint;
if (optionalChanged && typeof ctx.catalog.reload === "function") {
try {
await ctx.catalog.reload();
} catch (err) {
log.warn(
`[omniroute-v2] catalog reload after late sources failed, keeping current catalog: ${err instanceof Error ? err.message : String(err)}`
);
}
}
}
function loadSnapshot(): Promise<CatalogSnapshot> {
const now = Date.now();
const hit = state.entries.get(cacheKey);
if (hit && hit.fetchedAt + resolved.modelCacheTtlMs > now) return Promise.resolve(hit);
// Cooldown after a total models failure: skip the network until it
// lapses. Serves last-known-good when one exists; otherwise the refresh
// below still runs (nothing to serve, no point pretending).
if (now < state.unreachableUntil && hit) return Promise.resolve(hit);
if (now >= state.unreachableUntil) state.unreachableUntil = 0;
const inflight = state.inFlight.get(cacheKey);
if (inflight) return inflight;
const snapshot = refreshSnapshot();
state.inFlight.set(cacheKey, snapshot);
const clear = () => {
if (state.inFlight.get(cacheKey) === snapshot) state.inFlight.delete(cacheKey);
};
snapshot.then(clear, clear);
return snapshot;
}
// Warm-startup: the disk snapshot is read at boot (without blocking
// the synchronous transform registration) to publish the last-known
// catalog before the first successful fetch.
/**
* Warm start: publish the last known catalog from disk before the first
* fetch returns. Deliberately read *after* the credential is resolved —
* the snapshot is keyed by the credential tuple, and resolving the host
* credential changes that key, so reading at setup time would look up the
* wrong identity and reject a perfectly good snapshot.
*/
let warmLoadedFor: string | undefined;
const ensureWarmSnapshot = async (): Promise<void> => {
if (warmLoadedFor === identityFingerprint) return;
warmLoadedFor = identityFingerprint;
const warm = await readDiskSnapshot(X, identityFingerprint, log);
if (warm && !state.entries.has(cacheKey)) state.entries.set(cacheKey, warm);
};
// Fail-closed models (keep-last-good, validated): an empty models fetch
// (transient 500/timeout) must not wipe a known catalog. The latest
// non-empty entry (fresh fetch or warm disk snapshot) is replayed
// instead of publishing the empty set. `refreshSnapshot` never overwrites
// the memory entry on failure, so `entries` stays the last-known-good
// source — including cross-setup via the disk snapshot.
// Fail-open one level down, in the wrappers (never reject) and the
// `publishCatalog` catches — so no try/catch here.
const catalogRegistration = ctx.catalog.transform(async (draft) => {
await ensureCredential();
await ensureWarmSnapshot();
const snapshot = await loadSnapshot();
let effective = snapshot;
if (snapshot.models.length === 0) {
const stale = state.entries.get(cacheKey);
if (stale !== undefined && stale.models.length > 0) {
log.warn(
`[omniroute-v2] models fetch returned empty, keeping last-known catalog (${stale.models.length} models, ${stale.combos.length} combos)`
);
effective = stale;
}
}
const counts = await (async (): Promise<{
models: number;
combos: number;
autoCombos: number;
}> => {
// fetcher-level fail-open covers fetches; this guard covers mapper/draft throws.
try {
return await publishCatalog(draft, resolved, {
onSourceError: reportSourceError,
models: async () => effective.models,
combos: async () => effective.combos,
autoCombos: async () => effective.autoCombos,
providers: async () => effective.providers ?? [],
enrichment: async () => effective.enrichment ?? new Map(),
});
} catch (err) {
log.warn(
`[omniroute-v2] catalog publish failed, keeping current catalog: ${err instanceof Error ? err.message : String(err)}`
);
return { models: 0, combos: 0, autoCombos: 0 };
}
})();
void counts;
const fingerprint = catalogContentFingerprint(
effective.models,
effective.combos,
effective.autoCombos
);
const changed = state.fingerprint !== undefined && state.fingerprint !== fingerprint;
state.fingerprint = fingerprint;
if (changed && typeof ctx.catalog.reload === "function") {
await Promise.resolve();
try {
await ctx.catalog.reload();
} catch (err) {
log.warn(
`[omniroute-v2] catalog reload failed, keeping current catalog: ${err instanceof Error ? err.message : String(err)}`
);
}
}
});
const integrationHook = (ctx.integration as Partial<PluginContext["integration"]> | undefined)
?.transform;
// A host that exposes the hook but throws while registering it must cost
// the plugin nothing but the connect action: the throw happens OUTSIDE
// any await, so only a call-site guard catches it (an await-guard alone
// would let a synchronous throw escape setup and kill the catalog).
let integrationRegistration: unknown;
if (typeof integrationHook === "function") {
try {
integrationRegistration = integrationHook((draft) => {
draft.update(X, (integration) => {
integration.name = parsed.displayName ?? "OmniRoute";
});
draft.method.update({ integrationID: X, method: { type: "key", label: "API key" } });
draft.method.update({
integrationID: X,
method: { type: "env", names: ["OMNIROUTE_API_KEY"] },
});
});
} catch (err) {
log.warn(
`[omniroute-v2] host refused the integration hook, the connect action will be missing: ${err instanceof Error ? err.message : String(err)}`
);
integrationRegistration = undefined;
}
}
/**
* `aisdk.language` is newer than the catalog domain, so a host may not
* expose it; the plugin must stay loadable there, minus the sanitising.
*/
const languageHook = (ctx.aisdk as Partial<PluginContext["aisdk"]> | undefined)?.language;
// A host that rejects this registration must cost the catalog nothing: the
// plugin is a catalog first, and tool-schema cleaning is an extra.
let languageRegistration: Promise<{ dispose: () => Promise<void> }> | undefined;
if (parsed.geminiSanitization !== false && typeof languageHook === "function") {
try {
languageRegistration = languageHook((input) => {
if (input.model.providerID !== X) return;
input.language = sanitizeToolSchemasFor(input.language, input.model.id, log);
});
} catch (err) {
log.warn(
`[omniroute-v2] host refused the language-model hook, Gemini tool schemas will not be cleaned: ${err instanceof Error ? err.message : String(err)}`
);
}
}
await catalogRegistration;
if (integrationRegistration !== undefined) {
try {
await integrationRegistration;
} catch (err) {
log.warn(
`[omniroute-v2] host refused the integration hook, the connect action will be missing: ${err instanceof Error ? err.message : String(err)}`
);
}
}
if (languageRegistration !== undefined) {
try {
await languageRegistration;
} catch (err) {
log.warn(
`[omniroute-v2] language-model hook registration failed, Gemini tool schemas will not be cleaned: ${err instanceof Error ? err.message : String(err)}`
);
}
}
},
});