/**
 * # session/instance — the Instance sequence runner (the multi-session horizon design, kestrel-5zl.16.1)
 *
 * A multi-session **Instance** is an ordered sequence of single-session runs (CONTEXT: *Instance /
 * Session*): a fresh {@link SessionCore} per session over its own Bus, finalised to its own Blotter, the
 * whole sequence chained by a {@link SessionCarry} (the one typed hand-off, `./carry.ts`). This runner is
 * the **one orchestration layer ABOVE** the per-session drivers — it does not touch the per-event pass.
 * Each session is driven by the existing {@link runSimulateSession}; the runner only threads the carry:
 *
 * ```
 * runInstance(sequence, cfg):
 *   carry = emptyCarry()                         // flat open, empty book
 *   for (k, session) of sequence:
 *     final = (k === last)
 *     res  = runSimulateSession({ …session, openingCarry: carry, carryClose: !final, sessionOrdinal: k })
 *     blotters.push(res.blotter); carry = res.carry
 *   return { blotters, carries, instanceRunId, … }
 * ```
 *
 * **The single-session driver is the degenerate length-1 call.** `runInstance` over a one-element sequence
 * opens with `emptyCarry()` (no seeding, no re-arm) and settles the final session at intrinsic
 * (`carryClose:false`) — so its per-session graded bus, `SimRunId`, and Blotter are **byte-identical** to a
 * standalone `runSimulateSession` of that session. That length-1 invariance is the regression guard that
 * this layer is purely additive (proven in `tests/session.instance.test.ts`).
 *
 * **Determinism / fail-closed.** The carry into session `k+1` is a pure function of session `k`'s graded
 * bus (no wall clock, no RNG crosses a boundary — RUNTIME §0), so the whole sequence replays
 * byte-identically. A structurally-incomplete carry is refused loudly by {@link assertCarry} at the seam.
 */
import type { BusEvent } from "../bus/index.ts";
import type { InstrumentSpec } from "../engine/index.ts";
import type { EpisodeSigmoidParams } from "../fill/index.ts";
import type { Blotter } from "../blotter/index.ts";
import type { Agent, CapturedTurns } from "./agent.ts";
import { type SessionCarry, type TimescaleBand } from "./carry.ts";
import type { FillModelName } from "./sim.ts";
import { type TimeOfDay } from "./day.ts";
/** One session in an Instance's ordered tape (the multi-session horizon design). Exactly one of `busPath`/`events` supplies
 * the session's Bus; the per-session knobs mirror {@link import("./simulate.ts").RunSimulateOptions}. The
 * Instance-level pieces (the agent, fill model, R) live on {@link InstanceConfig}, not here. */
export interface SessionInput {
    readonly busPath?: string;
    readonly events?: readonly BusEvent[];
    /** Authored wake vantages (ET times-of-day), strictly inside this session's window. */
    readonly wakes?: readonly TimeOfDay[];
    /** The author acting cutoff (an ET time-of-day); defaults to the canonical T-5 (09:25 ET). */
    readonly authorCutoff?: TimeOfDay;
    /** Add the structural close cadence (T-2h…T-5m) for this session. */
    readonly structural?: boolean;
    readonly instruments?: readonly InstrumentSpec[];
    readonly fairTauYears?: (now: number) => number | null;
    readonly makerFairParams?: EpisodeSigmoidParams;
    /** This session's wake-cadence band (the multi-session horizon design) — overrides the Instance default. The wake-floor
     * wiring is kestrel-5zl.16.7 (P1); carried on the input now so it is a fail-closed-present field. */
    readonly band?: TimescaleBand;
}
/** The Instance-level configuration shared across every session (the multi-session horizon design). `agentFor` is a factory
 * invoked once per session, in order, with the session ordinal — so each session gets its own agent
 * (a fresh {@link import("./agent.ts").recordedAgent} for replay, or a stateful live agent that reasons
 * across days). A stateless agent is `() => sharedAgent`. */
export interface InstanceConfig {
    readonly agentFor: (ordinal: number) => Agent;
    readonly fillModel: FillModelName;
    readonly rUsd: number;
    /** The Instance's default wake-cadence band (the multi-session horizon design), seeded onto the opening carry. Default `day`. */
    readonly band?: TimescaleBand;
    /** Called ONCE per carried wake the runner cannot re-anchor onto a session (kestrel-5zl.16.9 mustFix
     * B/D) — an unresolvable `atClockET` clock, or an `inMinutes` offset that has no target vantage at this
     * seam. The runner ALSO records every drop on {@link InstanceResult.droppedWakes} (the structured report);
     * this hook is the LOUD side-channel so a drop is never merely a return value nothing reads. Omitted ⇒ the
     * real `process.stderr` (a drop is announced, never silent — AGENTS fail-closed). Off the graded path (no
     * clock/RNG read), so determinism is unaffected; a test pins it to capture the drops quietly. */
    readonly onDrop?: (drop: DroppedWake) => void;
}
/** One carried wake the runner refused to re-anchor onto a session (kestrel-5zl.16.9), tagged with the
 * ordinal of the session it was refused AT. Surfaced on {@link InstanceResult.droppedWakes} and through
 * {@link InstanceConfig.onDrop} — the observable, reasoned refusal (never a silent swallow). */
export interface DroppedWake {
    /** The ordinal `k` of the session this carried wake was refused entry to (its opening carry held it). */
    readonly sessionOrdinal: number;
    /** The pending wake's original `reason` (author/platform provenance — carried verbatim). */
    readonly reason: string;
    /** WHY it could not be re-anchored (an unresolvable clock, or a non-re-anchorable `inMinutes` offset). */
    readonly why: string;
}
/** The result of running a whole Instance (the multi-session horizon design). Per-session Blotters (each a pure projection of
 * its own graded bus, ADR-0011) and the ordered {@link SessionCarry}s, plus the per-session `SimRunId`s
 * (the graded-bus content hash the sequence identity — {@link import("./run-identity.ts").InstanceRunId},
 * kestrel-5zl.16.5 — chains). The sequence-level {@link InstanceBlotter} aggregation is 5zl.16.8 (P1). */
export interface InstanceResult {
    readonly blotters: readonly Blotter[];
    /** Each session's OUT-carry, in order — the last is the Instance's final state. */
    readonly carries: readonly SessionCarry[];
    /** Each session's captured agent turns, in order — the deterministic replay input, per session. */
    readonly captured: readonly CapturedTurns[];
    /** Each session's `SimRunId` (`= blotter.session.bus.sha256`, a pure read) — the ordered per-session
     * identities the {@link InstanceRunId} hashes into one Instance identity. */
    readonly simRunIds: readonly string[];
    /** The whole Instance's identity — `sha256` of the ORDERED per-session SimRunIds (kestrel-5zl.16.5).
     * Order-sensitive and deterministic: same tapes + same agent turns ⇒ identical id. */
    readonly instanceRunId: string;
    /** The grid CELL key for this Instance as a sequence cell (kestrel-5zl.16.5) — the ordered per-session
     * {@link cellOf} keys. A length-1 Instance's key is the single session's cell key UNCHANGED. */
    readonly sequenceCellKey: string;
    /** Each session's canonical GRADED bus, in order (a pure read of `res.gradedBus` — the judge-stamped
     * record, ADR-0010). Surfaced so a caller can assert bus-level facts a Blotter hash hides — most of all
     * that a re-anchored `atClockET` wake landed a `WAKE` checkpoint at the TARGET session's own 16:00 epoch
     * (kestrel-5zl.16.9). Byte-for-byte the same records `project(gradedBus)` folds into {@link blotters}. */
    readonly gradedBuses: readonly (readonly BusEvent[])[];
    /** Every carried wake the runner REFUSED to re-anchor, in session order (kestrel-5zl.16.9 mustFix B/D) —
     * the observable, reasoned record that an unresolvable `atClockET` / non-re-anchorable `inMinutes` failed
     * closed LOUDLY at the carry seam rather than vanishing. Empty on a clean run (every carry today, until
     * the b3l producer populates a frontier). Also streamed live through {@link InstanceConfig.onDrop}. */
    readonly droppedWakes: readonly DroppedWake[];
}
/**
 * Drive an ordered sequence of Sessions as one Instance, threading the {@link SessionCarry} (the multi-session horizon design,
 * kestrel-5zl.16.1). Each session is a fresh {@link runSimulateSession}; the runner opens session 0 flat
 * ({@link emptyCarry}), carry-marks every non-final session's settle (`carryClose`), and settles the final
 * session at intrinsic — so a length-1 sequence is byte-identical to a standalone run.
 *
 * `async` because the per-session driver is (the live loop is deliberately non-deterministic; recorded /
 * fixed adapters resolve synchronously). Refuses an empty sequence loudly (fail-closed).
 *
 * `seedCarry` (OPTIONAL, kestrel-5zl.16.9) seeds the OPENING carry of session 0 — the minimal seam that lets
 * a NON-EMPTY opening frontier be driven end-to-end BEFORE the b3l producer (kestrel-b3l.1) can populate one
 * (until it lands, `carryFrom` only ever propagates an empty frontier, so the re-anchoring path would be
 * untestable through the real runner without this). It is `assertCarry`-checked (fail-closed by omission).
 * ABSENT ⇒ the sequence opens flat ({@link emptyCarry} with the cfg band) — DEFAULT BEHAVIOUR UNCHANGED, so
 * every existing caller and the length-1 byte-invariance are untouched.
 */
export declare function runInstance(sequence: readonly SessionInput[], cfg: InstanceConfig, seedCarry?: SessionCarry): Promise<InstanceResult>;
//# sourceMappingURL=instance.d.ts.map