* fix(ai): preserve Responses server compaction state Persist opaque Responses compaction items as fenced provider replay state so long stateless sessions can resume authoritative compressed history without exposing it in display or diagnostics. Carry state through worker transcripts and prune replay prefixes without splitting tool pairs. Release note: Preserve long OpenAI Responses sessions across server-side compaction and worker restarts. Related: #95788 * test(ai): align long-context fixtures with CI contracts Make tool-result fixtures type-complete, use the canonical model selector helper, remove unused test-helper exports, and route the paid long-context live probe through the dedicated Gateway profile shard. * test(ai): type mocked Responses terminal events Give the mock SSE event collection an explicit open event shape so terminal response events coexist with output-item events under the root test typecheck. * fix(ai): suppress rejected compaction replay Persist a route-fenced suppression tombstone when encrypted-content recovery rejects a compaction item, so later turns do not retry the same opaque state. Preserve the tombstone through transcript redaction and cover successful fallback followed by the next turn. * fix(ai): keep compaction suppression transport-private Keep the suppression contract local to its sole Responses transport owner and make the regression fixture satisfy root type and lint checks without widening the Plugin SDK surface. * refactor(ai): remove compaction suppression re-export * fix(ai): scope compaction suppression to replay route Keep foreign-route rejection tombstones from hiding the newest compatible Responses compaction while preserving same-route suppression. * fix(ai): harden Responses replay recovery Stage encrypted replay recovery so compaction is only suppressed after an attributable rejection. Preserve terminal ordering and keep provider replay within worker frame budgets without truncating opaque state. * refactor(ai): centralize Responses output indexes Keep normalized output identity tracking in the stream-slot owner, move response failure state to its diagnostic owner, and remove the obsolete replay clone export so exact-head static gates remain shrink-only. * fix(ai): retain idless terminal tool identity Use the canonical empty identity only when a provider supplies neither call nor item id, preventing terminal recovery from duplicating a done-only tool call while preserving stronger identities when available. * fix(sessions): hide provider replay from public events * fix(ai): stage encrypted replay recovery * fix(ai): keep replay attempt kind internal * fix(ai): route Azure through replay recovery Use the shared encrypted-content retry owner for Azure Responses so compaction suppression and prompt-observer variants stay coherent across transports. * fix(ai): harden replay persistence boundaries Fence Azure replay by the resolved request endpoint, drop invalid replay during transcript sanitization, and surface worker-launch replay omissions through the existing redacted diagnostic path.
@openclaw/gateway-protocol
Typed schemas, inferred TypeScript types, and runtime validators for the OpenClaw Gateway WebSocket protocol.
The current wire protocol is version 4. General clients must use v4; authenticated node clients and lightweight probes may use the N-1 window during rolling upgrades. See the Gateway protocol specification for transport, authentication, roles, scopes, and complete frame examples.
Versioning
Package versions follow the OpenClaw calendar release train:
YYYY.M.PATCH, with the same prerelease suffix when applicable. A package version
therefore identifies the OpenClaw source release that produced the schemas; it is
not the wire protocol number.
The wire protocol integer is versioned separately. Its current value is exported
as PROTOCOL_VERSION from @openclaw/gateway-protocol/version. Gateway protocol
changes are additive first. An incompatible wire change requires an explicit
protocol-version decision and coordinated client follow-through. See
CHANGELOG.md for the wire and schema history.
Install
npm install @openclaw/gateway-protocol
Entry points
@openclaw/gateway-protocolexports runtime validators, selected schemas, error formatting, and their TypeScript types. This is the main TypeBox-backed entry.@openclaw/gateway-protocol/schemaexports the TypeBox schema graph, including theProtocolSchemasregistry used by generators.@openclaw/gateway-protocol/frame-guardsexports dependency-free structural guards for gateway event and response envelopes.@openclaw/gateway-protocol/client-infoexports client ID, mode, and capability registries plus normalization helpers.@openclaw/gateway-protocol/connect-error-detailsexports structured connect error readers and recovery metadata.@openclaw/gateway-protocol/gateway-error-detailsexports helpers for reading structured details from general gateway errors.@openclaw/gateway-protocol/startup-unavailableexports startup retry constants and helpers.@openclaw/gateway-protocol/versionexports the current and minimum accepted protocol versions.
The frame-guards, client-info, connect-error-details, gateway-error-details,
startup-unavailable, and version entry points are TypeBox-free. Prefer them when
a browser bundle only needs envelope dispatch, handshake constants, or reconnect
policy. This also avoids runtime compilation in CSP-sensitive consumers. The root
and schema entry points provide the full validation surface and depend on TypeBox.
Validate an inbound frame
The compiled validators are callable type guards. Their errors property contains
the most recent validation errors.
import { formatValidationErrors, validateRequestFrame } from "@openclaw/gateway-protocol";
const frame: unknown = JSON.parse(inboundText);
if (!validateRequestFrame(frame)) {
throw new Error(formatValidationErrors(validateRequestFrame.errors));
}
console.log(frame.id, frame.method);
validateRequestFrame validates the request envelope. Dispatch code must also use
the validator for the selected method's params; the root entry point exports those
validators as validate*Params functions.
Guard an event without TypeBox
Use the lightweight guards when code only needs safe frame discrimination. They check dispatch-critical envelope fields and intentionally allow additive payload fields.
import { isGatewayEventFrame } from "@openclaw/gateway-protocol/frame-guards";
const frame: unknown = JSON.parse(inboundText);
if (isGatewayEventFrame(frame)) {
console.log(frame.event, frame.seq);
}
Build handshake version and capability fields
Protocol levels and client capabilities live in TypeBox-free entry points.
import { GATEWAY_CLIENT_CAPS } from "@openclaw/gateway-protocol/client-info";
import { MIN_CLIENT_PROTOCOL_VERSION, PROTOCOL_VERSION } from "@openclaw/gateway-protocol/version";
const handshake = {
minProtocol: MIN_CLIENT_PROTOCOL_VERSION,
maxProtocol: PROTOCOL_VERSION,
caps: [GATEWAY_CLIENT_CAPS.TOOL_EVENTS],
};
Nodes and probes use MIN_NODE_PROTOCOL_VERSION and
MIN_PROBE_PROTOCOL_VERSION, respectively. A capability advertises client support;
it does not grant authorization.
Contract notes
Session identifiers
Several identifier names coexist because they identify different things:
keyis the established logical session selector used by mostsessions.*CRUD, send, subscription, patch, reset, delete, compaction, and usage methods. A key can be canonicalized or resolved within an agent's session store.sessionKeynames the same logical routing identity where the contract needs to make that meaning explicit.chat.*, session file and diff APIs, transcript branch/rewind/fork APIs, agent events, and channel delivery payloads use this spelling.sessionIdis the opaque stored transcript or runtime instance ID. Session results may return it beside a key. Talk, terminal, worker, and selected channel protocols also usesessionIdfor their own concrete session instances; do not substitute a logical session key there.
Follow each method schema rather than converting fields based on their spelling.
sessions.resolve is the explicit bridge when a caller has a key, raw session ID,
label, or parent/agent scope.
Intentionally open fields
The schema graph is strict by default, but roughly 60 fields intentionally use
Type.Unknown() passthroughs. The main clusters are transport-owned channel
payloads, logs-chat message and attachment passthrough, worker and node tool
arguments/results, and the dynamic config.schema response. Frame params,
payload, and error details are also open at the envelope layer because the
selected method, event, or error code owns their concrete shape.
Do not treat these fields as validated domain objects. Narrow them at their owner boundary before reading nested values.
Machine-readable schema
protocol.schema.json ships in the npm tarball as the generated machine-readable
contract. It contains the frame union, named schema definitions, and core method
metadata. It is generated during prepack and is not committed to the repository.
Method discovery
The hello-ok.features.methods list is conservative discovery, not a complete
enumeration of every callable method. It reflects the methods the connected
Gateway intentionally advertises. Core-internal, role-specific, plugin-provided,
or otherwise non-advertised methods can have valid schemas without appearing in
that list. Clients should use discovery to enable optional UI, not to reject an
otherwise documented method contract.