mirror of
https://github.com/deepseek-ai/deepseek-harness
synced 2026-08-15 21:04:50 +00:00
Flat config with two layers. Correctness (type-checked): the headline rules for this codebase are no-floating-promises / no-misused-promises (a lost promise in the agent loop is our primary bug class), switch-exhaustiveness-check (we switch over merge-extensible unions everywhere), no-unnecessary-condition, require-await, and no-explicit-any. Style (@stylistic): 2-space, no semicolons, single quotes, trailing commas, max-len 140 — the existing house style, now enforced instead of drifting between agents. vendor/ is excluded (vendored source keeps upstream style); tests relax the rules that fight test ergonomics (non-null assertions after expects, async mock signatures, non-Error throws). Code adjusted to pass: registry disposers wrap ctx.effect's promise-returning disposer behind a sync () => void (our public API), BlockAssembler gains an invariant-checking mustGet instead of non-null assertions, lastTurnNumber uses findLast, waterfall tails return Promise.resolve instead of async-without-await arrows, and the two deliberate suppressions (non-exhaustive derivation switch, unbound execute pass-through) carry justification comments. yarn lint / yarn lint:fix added.
316 lines
12 KiB
TypeScript
316 lines
12 KiB
TypeScript
/**
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* The agent loop driver: one `runLoop()` invocation drives one agent for its
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* whole lifetime. Error-contained at the turn level — a throwing plugin ends
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* the turn, never kills the loop. See the JSDoc on `runLoop()` for the full
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* lifecycle pseudo-code.
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*
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* @module dsh-agent-loop/loop
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*/
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import type { Context } from 'cordis'
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import type { GenerateOptions, Message } from '@deepseek-ai/dsh-llm'
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import { BlockAssembler } from '@deepseek-ai/dsh-llm'
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import type { Session, TurnEndReason, TurnTrigger } from '@deepseek-ai/dsh-session'
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import { renderPrompt } from '@deepseek-ai/dsh-system-prompt'
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import type {} from '@deepseek-ai/dsh-tools'
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import type { LoopAgent } from './agent.ts'
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/** An Error with an optional machine-readable code (e.g., from LlmError or a throwing plugin). */
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type CodedError = Error & { code?: string }
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/** Normalize an arbitrary thrown value into a (possibly coded) Error. */
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function toError(error: unknown): CodedError {
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return error instanceof Error ? error : new Error(String(error))
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}
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/**
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* Build the `{ message, code? }` part of an error payload, omitting the
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* `code` key entirely when absent (exactOptionalPropertyTypes-correct).
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*/
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function errorData(err: CodedError): { message: string; code?: string } {
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return { message: err.message, ...typeof err.code === 'string' ? { code: err.code } : {} }
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}
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/**
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* Ambient handles the loop driver receives from the agent. Decouples the
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* pure function `runLoop` from the mutable LoopAgent fields, making the
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* loop testable without a real agent.
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*/
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export interface LoopHandle {
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setStatus(status: 'idle' | 'running'): void
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setAbort(controller: AbortController | undefined): void
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/** Resolves when the agent is disposed — unblocks the idle wait. */
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disposed: Promise<void>
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isDisposed(): boolean
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}
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/**
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* The agent loop. One invocation drives one agent for its whole lifetime:
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*
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* ```
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* forever:
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* wait for queued messages (idle)
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* TURN (error-contained — a throwing plugin ends the turn, never the loop):
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* drain queued → session('user/message'…) → 'turn/start' → emit agent/turn-start
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* STEP loop:
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* drain steering → session('steering/message') ⟵ catches late steering
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* emit agent/step-start
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* assembly = ctx.systemPrompt.assemble() ⟵ waterfall system-prompt/assemble
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* req = {model, system, tools, messages: session.deriveMessages(), signal}
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* req = waterfall agent/request ⟵ hooks/compaction/model-switch
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* stream ctx.llm.stream(req) ⟵ waterfall llm/stream (raw chunks)
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* session('assistant/chunk'); emit agent/stream-chunk
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* msg = waterfall agent/step-result ⟵ BEFORE the log append, so the
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* session('assistant/message','usage') session records what actually ran
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* each tool-call in msg (sequential, abort-checked):
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* session('tool/call'); ctx.tools.execute() ⟵ waterfall tools/execute
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* session('tool/result')
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* drain steering → session('steering/message'); emit agent/steering
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* emit agent/step-end
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* cont = waterfall agent/turn-continuation(default = hadToolCalls || steered)
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* if !cont && steering arrived from step-end/continuation listeners: cont = true
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* if !cont: break
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* session('turn/end'); emit agent/turn-end
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* await ctx.parallel('session/flush', session) ⟵ durability checkpoint
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* re-enqueue leftover steering as queued ⟵ steering is never stranded
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* idle (emit agent/status) unless more queued
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* ```
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*/
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export async function runLoop(ctx: Context, agent: LoopAgent, handle: LoopHandle): Promise<void> {
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const { session } = agent
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let turn = lastTurnNumber(session) // seeded/forked sessions continue numbering
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while (!handle.isDisposed()) {
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await agent.inbox.waitForQueued(handle.disposed)
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if (handle.isDisposed()) break
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handle.setStatus('running')
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turn += 1
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try {
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await runTurn(ctx, agent, handle, turn)
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} catch (error: unknown) {
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// Backstop: a throwing emit listener (turn boundaries) or a broken
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// finalizer must not kill the driver. Record what we can and move on.
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try {
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const err = toError(error)
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session.append('error', { turn, step: 0, ...errorData(err) })
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ctx.emit('agent/error', agent, turn, 0, err)
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} catch { /* the error path itself is broken; nothing left to do */ }
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}
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// Steering that arrived too late to join this turn (turn-end listeners,
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// flush) becomes a queued message — it must never be stranded.
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for (const message of agent.inbox.drainSteering()) {
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agent.inbox.enqueue(message)
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}
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if (!agent.inbox.hasQueued) handle.setStatus('idle')
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}
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}
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async function runTurn(ctx: Context, agent: LoopAgent, handle: LoopHandle, turn: number): Promise<void> {
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const { session } = agent
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// Drain queued messages into the session — they trigger this turn.
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const queued = agent.inbox.drainQueued()
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const first = queued[0]
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if (!first) throw new Error('runTurn invariant violated: no queued message at turn start')
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const trigger: TurnTrigger = { kind: 'message', source: first.source }
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for (const message of queued) {
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session.append('user/message', { content: message.content, source: message.source })
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}
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session.append('turn/start', { turn, trigger })
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ctx.emit('agent/turn-start', agent, turn)
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let reason: TurnEndReason = { kind: 'completed' }
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let step = 0
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while (true) {
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step += 1
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// Steering from the previous round's step-end/continuation listeners
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// (or turn-start listeners on the first step) joins before the request.
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drainSteering(ctx, agent, turn)
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ctx.emit('agent/step-start', agent, turn, step)
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session.append('step/start', { turn, step })
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const abort = new AbortController()
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handle.setAbort(abort)
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let stepOutcome: { hadToolCalls: boolean } | { error: Error }
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try {
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stepOutcome = await runStep(ctx, agent, turn, step, abort.signal)
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} catch (error: unknown) {
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stepOutcome = { error: error instanceof Error ? error : new Error(String(error)) }
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} finally {
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handle.setAbort(undefined)
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}
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if ('error' in stepOutcome) {
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// Steering that arrived during the failed step stays in the inbox —
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// runLoop re-enqueues it as a queued message, so an abort-then-steer
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// starts a fresh turn instead of being silently consumed.
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session.append('step/end', { turn, step })
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ctx.emit('agent/step-end', agent, turn, step)
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const { error } = stepOutcome
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if (handle.isDisposed()) {
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reason = { kind: 'disposed' }
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} else if (abort.signal.aborted) {
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reason = { kind: 'aborted', reason: String(abort.signal.reason ?? 'aborted') }
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} else {
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const coded = error as CodedError
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session.append('error', { turn, step, ...errorData(coded) })
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ctx.emit('agent/error', agent, turn, step, error)
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reason = { kind: 'error', ...errorData(coded) }
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}
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break
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}
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// Steering that arrived during streaming/tool execution.
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const steered = drainSteering(ctx, agent, turn)
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session.append('step/end', { turn, step })
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ctx.emit('agent/step-end', agent, turn, step)
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const defaultDecision = stepOutcome.hadToolCalls || steered
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let shouldContinue: boolean
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try {
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shouldContinue = await ctx.waterfall(
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'agent/turn-continuation', agent, turn, defaultDecision,
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() => Promise.resolve(defaultDecision),
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)
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} catch (error: unknown) {
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// A broken continuation plugin ends the turn, not the loop.
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const err = toError(error)
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session.append('error', { turn, step, ...errorData(err) })
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ctx.emit('agent/error', agent, turn, step, err)
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reason = { kind: 'error', ...errorData(err) }
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break
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}
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// Steering from step-end/continuation listeners (the /goal pattern)
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// demands the model see it — it overrides a negative decision; the
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// next iteration's drain records it.
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if (!shouldContinue && agent.inbox.hasSteering) shouldContinue = true
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if (!shouldContinue || handle.isDisposed()) {
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if (handle.isDisposed()) reason = { kind: 'disposed' }
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break
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}
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}
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session.append('turn/end', { turn, reason })
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ctx.emit('agent/turn-end', agent, turn, reason)
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// Durability checkpoint: persistence plugins drain write-behind buffers.
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// A failing persistence plugin is reported but doesn't kill the agent.
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try {
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await ctx.parallel('session/flush', session)
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} catch (error: unknown) {
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const err = toError(error)
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session.append('error', { turn, step, ...errorData(err) })
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ctx.emit('agent/error', agent, turn, step, err)
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}
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}
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/** Drain the steering queue into the session. Returns whether any arrived. */
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function drainSteering(ctx: Context, agent: LoopAgent, turn: number): boolean {
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const messages = agent.inbox.drainSteering()
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for (const message of messages) {
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agent.session.append('steering/message', { turn, content: message.content, source: message.source })
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ctx.emit('agent/steering', agent, turn, message.content, message.source)
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}
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return messages.length > 0
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}
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/** One step: assemble request → stream model → record → execute tools. */
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async function runStep(
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ctx: Context,
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agent: LoopAgent,
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turn: number,
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step: number,
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signal: AbortSignal,
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): Promise<{ hadToolCalls: boolean }> {
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const { session, options } = agent
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// --- Request assembly ---
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const assembly = await ctx.systemPrompt.assemble()
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const system = [renderPrompt(assembly), options.systemPrompt ?? '']
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.filter(text => text.length > 0)
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.join('\n\n')
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let request: GenerateOptions = {
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model: options.model ?? '',
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messages: session.deriveMessages(),
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...system ? { system } : {},
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...assembly.tools.length > 0 ? { tools: assembly.tools } : {},
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signal,
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}
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request = await ctx.waterfall('agent/request', agent, turn, step, request, () => Promise.resolve(request))
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if (!request.model) {
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throw new Error(`agent "${agent.id}" has no model: set AgentOptions.model or supply one via the agent/request waterfall`)
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}
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// --- Model call (streaming-first; raw chunks are the replay record) ---
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const assembler = new BlockAssembler()
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for await (const chunk of ctx.llm.stream(request)) {
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if (signal.aborted) throw new Error(String(signal.reason ?? 'aborted'))
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session.append('assistant/chunk', { turn, step, chunk })
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ctx.emit('agent/stream-chunk', agent, turn, step, chunk)
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assembler.push(chunk)
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}
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// The step-result waterfall runs BEFORE the session append so the log (the
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// source of truth for derived history and replay) records the message that
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// tool dispatch actually uses.
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let message: Message = assembler.message()
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message = await ctx.waterfall('agent/step-result', agent, turn, step, message, () => Promise.resolve(message))
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session.append('assistant/message', { turn, step, content: message.content })
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if (assembler.usage) {
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session.append('usage', { turn, step, usage: assembler.usage })
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}
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// --- Tool execution (sequential; parallel execution is a TODO) ---
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// ToolRegistry.execute converts tool failures (including aborts) into
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// isError results, so abort is re-checked around every call here.
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const toolCalls = message.content.filter(block => block.type === 'tool-call')
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for (const call of toolCalls) {
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if (signal.aborted) throw new Error(String(signal.reason ?? 'aborted'))
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session.append('tool/call', { turn, step, callId: call.id, name: call.name, arguments: call.arguments })
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let parsedArguments: unknown
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try {
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parsedArguments = call.arguments ? JSON.parse(call.arguments) : {}
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} catch {
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parsedArguments = call.arguments
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}
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const result = await ctx.tools.execute({
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callId: call.id,
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name: call.name,
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arguments: parsedArguments,
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agent,
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signal,
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})
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session.append('tool/result', {
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turn, step,
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callId: result.callId,
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content: result.content,
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isError: result.isError,
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})
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// signal CAN flip during the await above (abort() inside a tool);
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// the analyzer can't see through the await boundary.
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// eslint-disable-next-line @typescript-eslint/no-unnecessary-condition
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if (signal.aborted) throw new Error(String(signal.reason ?? 'aborted'))
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}
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return { hadToolCalls: toolCalls.length > 0 }
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}
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/** The last turn number in a (possibly seeded) session log, or 0. */
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function lastTurnNumber(session: Session): number {
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const lastStart = session.events.findLast(event => event.type === 'turn/start')
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return lastStart?.data.turn ?? 0
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}
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