import { CHANNEL_SENTINEL } from "#channel/compiled-channel.js";
import { type ChannelCorsOptions } from "#channel/cors.js";
import type { TypedReceiveTarget } from "#channel/receive-target.js";
import type { RouteDefinition, SendFn } from "#channel/routes.js";
import type { Session } from "#channel/session.js";
import type { CancelTurnInput, CancelTurnResult, DeliverInput, GetEventStreamOptions, RunHandle, RunInput } from "#channel/types.js";
import type { HandleMessageStreamEvent } from "#protocol/message.js";
import type { SessionContext } from "#public/definitions/callback-context.js";
import type { GenericChannelDefinition, GenericReceiveInput } from "#shared/channel-definition.js";
declare const CHANNEL_METADATA_TYPE: unique symbol;
export type { CancelTurnInput, CancelTurnResult, GetEventStreamOptions } from "#channel/types.js";
export type { Session, SessionHandle } from "#channel/session.js";
export type { ChannelCors, ChannelCorsOptions } from "#channel/cors.js";
export { GET, POST, PUT, PATCH, DELETE, WS } from "#channel/routes.js";
export type { CancelFn, CancelOptions, HttpRouteDefinition, RouteDefinition, RouteHandlerArgs, SendFn, SendOptions, SendPayload, ResolveActiveSessionFn, GetSessionFn, WebSocketMessage, WebSocketPeer, WebSocketRouteDefinition, WebSocketRouteHandler, WebSocketRouteHooks, WebSocketUpgradeRequest, WebSocketUpgradeResult, } from "#channel/routes.js";
/**
 * HTTP method a route handles. Defaults to `"POST"` — almost every route
 * is a webhook. Override only when authoring a non-webhook route such as a
 * long-poll endpoint or an event-stream reader.
 */
export type ChannelMethod = "GET" | "POST" | "PUT" | "PATCH" | "DELETE";
/**
 * Method-like discriminator used by compiled channel route entries.
 *
 * WebSocket routes are not HTTP methods, but they still need a stable
 * route key in the compiler manifest and runtime route table.
 */
export type ChannelRouteMethod = ChannelMethod | "WEBSOCKET";
/**
 * Per-request surface exposed to a route's `fetch` handler. The
 * framework constructs this per request and passes it as the second
 * argument.
 *
 * Routes call into the agent to start sessions, deliver follow-ups,
 * cancel turns, and read events.
 */
export interface RouteContext {
    /**
     * Handle to the agent that this route sends inbound requests to.
     * Conceptually the runtime + harness combined: routes call `run`,
     * `deliver`, `cancelTurn`, and `getEventStream` to drive sessions of
     * this agent without knowing about the workflow runtime, the harness,
     * or any other execution-layer detail.
     *
     * Every route speaks the same `RunInput` shape regardless of which
     * webhook it serves — `agent` is platform-agnostic.
     */
    readonly agent: Agent;
    /**
     * Hands a background promise to the request host so the serverless
     * invocation stays alive until the promise resolves. Use this when the
     * route responds to the platform immediately (e.g. a Slack `200 OK`
     * acknowledgement) but still needs to drive an `agent.run()` call to
     * completion.
     */
    readonly waitUntil: (task: Promise<unknown>) => void;
    /**
     * Path parameter values extracted from `[name]` segments in the route's
     * filesystem path. For `agent/channels/sessions/[sessionId]/stream.ts`
     * mounted at `GET /sessions/:sessionId/stream`, the matched value lives at
     * `params.sessionId`.
     * Empty for routes with no path parameters.
     */
    readonly params: Readonly<Record<string, string>>;
    /**
     * Trusted peer IP for this request, extracted by the host transport
     * before the route handler runs. `null` when the host can't observe a
     * peer address (e.g. unit tests calling `route.fetch` directly).
     *
     * Pass this to {@link isIpAllowed} from `eve/channels/auth`
     * when implementing IP allowlisting in a route.
     */
    readonly requestIp: string | null;
}
/**
 * Route-facing handle to the agent that owns this request.
 *
 * `Agent` is conceptually the workflow runtime plus the tool-loop harness:
 * routes call `run` to start a new session of the agent, `deliver` to
 * send a follow-up to a parked session, `cancelTurn` to stop in-flight work,
 * and `getEventStream` to read events from a previously-started session.
 * The framework's internal `Runtime`
 * interface (in `channel/types.ts`) is the underlying primitive — `Agent`
 * is the *public* shape exposed on `RouteContext` so route authors
 * speak in terms of the agent rather than the runtime.
 */
export interface Agent {
    /**
     * Starts a new agent session and returns a handle. The session's identity
     * is the supplied `continuationToken` — subsequent calls to `deliver()`
     * with the same token resume the same session.
     */
    run(input: RunInput): Promise<RunHandle>;
    /**
     * Requests cancellation of a session's in-flight turn. A `turnId` limits
     * the request to the turn the caller observed.
     *
     * `"accepted"` means a cancellation hook accepted the request; observe
     * the event stream for `turn.cancelled` to confirm that it affected the
     * current turn. `"no_active_turn"` means no cancellable hook was active.
     * Both outcomes are successful.
     */
    cancelTurn(input: CancelTurnInput): Promise<CancelTurnResult>;
    /**
     * Sends a follow-up message to a session that is currently parked waiting
     * for input. Throws if no parked session exists for the supplied
     * `continuationToken` — routes typically catch the failure and fall back
     * to `run()` to start a new session.
     */
    deliver(input: DeliverInput): Promise<{
        sessionId: string;
    }>;
    /**
     * Returns a readable NDJSON-style stream of lifecycle events for an
     * existing session. Used by the framework's HTTP session-stream route and by
     * any user-authored route that exposes an event-streaming endpoint.
     *
     * Nonnegative `options.startIndex` values skip events the caller has already
     * consumed. Negative values read relative to the current tail (`-1` starts
     * at the latest event). The framework HTTP session-stream route forwards
     * the `startIndex` query parameter unchanged.
     */
    getEventStream(sessionId: string, options?: GetEventStreamOptions): Promise<ReadableStream<HandleMessageStreamEvent>>;
}
/**
 * Marker discriminator written into every {@link DisabledRouteSentinel}.
 */
declare const DISABLED_ROUTE_SENTINEL_KIND = "eve:disabled-channel";
/**
 * Marker value returned from {@link disableRoute}. Export this as the
 * default export of a file in `agent/channels/` to remove the framework
 * default route whose logical name matches the file's slug path.
 */
export interface DisabledRouteSentinel {
    readonly kind: typeof DISABLED_ROUTE_SENTINEL_KIND;
}
/**
 * Returns a sentinel that disables the framework route whose logical name
 * matches the containing file's slug path.
 *
 * Export it as the default export of a file in `agent/channels/`.
 */
export declare function disableRoute(): DisabledRouteSentinel;
/**
 * Type guard: returns whether `value` is a {@link DisabledRouteSentinel}
 * produced by {@link disableRoute}.
 */
export declare function isDisabledRouteSentinel(value: unknown): value is DisabledRouteSentinel;
type EventData<T extends HandleMessageStreamEvent["type"]> = Extract<HandleMessageStreamEvent, {
    type: T;
}> extends {
    data: infer D;
} ? D : undefined;
/**
 * Session operations on the `channel` argument of every channel event handler.
 */
export interface ChannelSessionOps {
    readonly continuationToken: string;
    setContinuationToken(token: string): void;
}
/**
 * Channel context passed to event handlers: `TCtx` intersected with
 * {@link ChannelSessionOps}.
 */
export type ChannelContext<TCtx> = TCtx & ChannelSessionOps;
type ChannelEventHandler<T extends HandleMessageStreamEvent["type"], TCtx> = (data: EventData<T>, channel: ChannelContext<TCtx>, ctx: SessionContext) => void | Promise<void>;
type ChannelSessionFailedHandler<TCtx> = (data: EventData<"session.failed">, channel: ChannelContext<TCtx>) => void | Promise<void>;
/**
 * Optional handlers keyed by session lifecycle event name. Each handler receives
 * the event `data`, the {@link ChannelContext}, and a {@link SessionContext}
 * `ctx`. The `session.failed` handler is the exception: it receives only `data`
 * and the channel context, with no `ctx`.
 */
export interface ChannelEvents<TCtx = void> {
    readonly "turn.started"?: ChannelEventHandler<"turn.started", TCtx>;
    readonly "actions.requested"?: ChannelEventHandler<"actions.requested", TCtx>;
    readonly "action.result"?: ChannelEventHandler<"action.result", TCtx>;
    readonly "message.completed"?: ChannelEventHandler<"message.completed", TCtx>;
    readonly "message.appended"?: ChannelEventHandler<"message.appended", TCtx>;
    readonly "reasoning.appended"?: ChannelEventHandler<"reasoning.appended", TCtx>;
    readonly "reasoning.completed"?: ChannelEventHandler<"reasoning.completed", TCtx>;
    readonly "input.requested"?: ChannelEventHandler<"input.requested", TCtx>;
    readonly "turn.failed"?: ChannelEventHandler<"turn.failed", TCtx>;
    readonly "turn.completed"?: ChannelEventHandler<"turn.completed", TCtx>;
    readonly "turn.cancelled"?: ChannelEventHandler<"turn.cancelled", TCtx>;
    readonly "session.failed"?: ChannelSessionFailedHandler<TCtx>;
    readonly "session.completed"?: ChannelEventHandler<"session.completed", TCtx>;
    readonly "session.waiting"?: ChannelEventHandler<"session.waiting", TCtx>;
    readonly "authorization.required"?: ChannelEventHandler<"authorization.required", TCtx>;
    readonly "authorization.completed"?: ChannelEventHandler<"authorization.completed", TCtx>;
}
/**
 * Input passed to a channel's `receive` callback when another channel or
 * schedule proactively routes a message to it.
 */
export type ReceiveInput<TReceiveTarget = Record<string, unknown>> = GenericReceiveInput<TReceiveTarget>;
/**
 * The object passed to {@link defineChannel}. `routes` is required; `state`
 * seeds durable adapter state, `context` builds the per-step `channel` argument
 * for `events` and `deliver`, `events` handle session lifecycle, `receive`
 * accepts cross-channel handoffs, `fetchFile` stages remote file URLs, and
 * `metadata` projects observability data.
 *
 * Generics: `TState` (adapter state), `TCtx` (context factory return type),
 * `TReceiveTarget` (cross-channel target shape), `TMetadata` (instrumentation
 * projection).
 */
export type ChannelDefinition<TState = undefined, TCtx = void, TReceiveTarget = Record<string, unknown>, TMetadata extends Record<string, unknown> = Record<string, unknown>> = GenericChannelDefinition<ChannelEvents<TCtx>, TState, TCtx, TReceiveTarget, TMetadata>;
/**
 * Opaque channel value produced by {@link defineChannel} and exported from
 * `agent/channels/<name>.ts`. Exposes the channel's routes, an optional
 * `receive` hook, and (via a phantom property) its metadata shape. Unlike
 * {@link ChannelDefinition} it has no `TCtx` parameter: the context type is
 * internal to the definition.
 */
export interface Channel<TState = undefined, TReceiveTarget = Record<string, unknown>, TMetadata extends Record<string, unknown> = Record<string, unknown>> extends TypedReceiveTarget<TReceiveTarget> {
    readonly __kind: typeof CHANNEL_SENTINEL;
    readonly [CHANNEL_METADATA_TYPE]?: TMetadata;
    readonly routes: readonly RouteDefinition<TState>[];
    readonly cors?: ChannelCorsOptions;
    readonly receive?: (input: ReceiveInput<TReceiveTarget>, args: {
        send: SendFn<TState>;
    }) => Promise<Session>;
}
/**
 * Extracts the metadata projection type (`TMetadata`) from a {@link Channel}.
 * Resolves to `Record<string, unknown>` when the value is not a Channel.
 */
export type InferChannelMetadata<TChannel> = TChannel extends Channel<any, any, infer TMetadata> ? TMetadata : Record<string, unknown>;
/**
 * Builds a {@link Channel} from a {@link ChannelDefinition}. Returns a value
 * placed at `agent/channels/<name>.ts`; the file path supplies the channel name
 * (do not add a `name` field). `TCtx` (the context factory's return type) is
 * internal to the definition and is not part of the returned Channel signature.
 */
export declare function defineChannel<TState = undefined, TCtx = void, TReceiveTarget = Record<string, unknown>, TMetadata extends Record<string, unknown> = Record<string, unknown>>(definition: ChannelDefinition<TState, TCtx, TReceiveTarget, TMetadata>): Channel<TState, TReceiveTarget, TMetadata>;
