Files
deepseek-harness/packages/subagent/tool-subagent/src/index.ts
2026-08-02 12:51:10 +08:00

406 lines
18 KiB
TypeScript

/**
* Model-facing delegation through one configured `ctx.subagents` provider.
* Provider lifecycle controls tool registration and context-sensitive schema
* wording. Foreground calls always dispose the run after collection.
* Background policy is selected by this plugin's configuration: one-shot
* calls own a plain Task, while continuable calls use
* `ctx.subagents.startContinuable()`.
* @module @deepseek-ai/dsh-tool-subagent
*/
import type { Context } from 'cordis'
import z from 'schemastery'
import { defineTool } from '@deepseek-ai/dsh-tools'
import type { AgentOptions } from '@deepseek-ai/dsh-agent'
import type { ContentBlock } from '@deepseek-ai/dsh-llm'
import type { JsonValue } from '@deepseek-ai/dsh-session'
import { assertSubagentMaxDepth, settleRun } from '@deepseek-ai/dsh-subagent'
import type { SubagentProvider, SubagentResult, SubagentRun } from '@deepseek-ai/dsh-subagent'
import type { TaskOutcome } from '@deepseek-ai/dsh-tasks'
export const name = 'tool-subagent'
export const inject = ['tools', 'subagents']
/** Config: which registered provider this tool delegates to, plus child defaults. */
export interface Config {
/** The `ctx.subagents` provider name to start runs on (e.g. `spawn`, `acp`). */
provider: string
/**
* Model-facing tool name (default `subagent`). Each loaded instance must use
* a distinct name.
*/
toolName?: string
/**
* Expose `run_in_background` (default true). Disabled instances omit the
* parameter and reject forced background calls.
*/
enableRunInBackground?: boolean
/**
* Background execution policy (default `one-shot`). `continuable` requires a
* provider with the `prepareContinuable` capability and returns the durable
* child id; follow-up adapters remain independently optional.
*/
backgroundMode?: 'one-shot' | 'continuable'
/**
* Agent options applied to every child; omitted fields use child-loop defaults.
*/
agentOptions?: AgentOptions
/**
* Per-child persona that shadows `deployment:persona`. Requires the
* provider's `persona` capability; omission preserves the deployment persona.
*/
persona?: string
/**
* Tool filter applied to every child. Filtered tools disappear from its
* prompt and reject execution. Requires the provider's `toolFilter`
* capability; unknown names fail startup.
*/
toolFilter?: {
/** Global tool names the child keeps; everything else is removed. */
allow?: string[]
/** Global tool names removed from the child. */
deny?: string[]
}
/**
* Maximum child depth: a non-negative safe integer (default `3`; `0` forbids
* delegation entirely), or `'provider-managed'` to send no cap. A numeric cap
* requires the provider's `depthLimit` capability (mount fails loud
* otherwise). The provider checks the calling agent's current depth at every
* start; the tool remains model-visible so runtime policy owns rejection.
* `'provider-managed'` is for an out-of-process provider (ACP) whose
* recursion budget belongs to the child harness's own deployment.
*/
maxDepth?: number | 'provider-managed'
}
export const Config: z<Config> = z.object({
provider: z.string().required(),
toolName: z.string().default('subagent'),
enableRunInBackground: z.boolean().default(true),
backgroundMode: z.union(['one-shot', 'continuable'] as const).default('one-shot'),
// Prevent Schemastery from materializing omitted agentOptions as `{}`.
agentOptions: z.object({
provider: z.string(),
model: z.string(),
maxTokens: z.number().step(1).min(1).max(Number.MAX_SAFE_INTEGER),
}).default(undefined as unknown as { provider: string; model: string; maxTokens: number }),
persona: z.string(),
// Preserve omission; Schemastery's `{ allow: [] }` default would deny every tool.
toolFilter: z.object({
allow: z.array(z.string()).default(undefined as unknown as string[]),
deny: z.array(z.string()).default(undefined as unknown as string[]),
}).default(undefined as unknown as { allow: string[]; deny: string[] }),
maxDepth: z.union([z.natural().max(Number.MAX_SAFE_INTEGER), z.const('provider-managed' as const)]).default(3),
})
/** Render text blocks from the canonical JSON block array without trusting arbitrary values. */
function outputValueText(values: JsonValue[]): string {
return values
.filter((value): value is { type: 'text'; text: string } =>
typeof value === 'object' && value !== null && !Array.isArray(value)
&& value.type === 'text' && typeof value.text === 'string')
.map(value => value.text)
.join('')
}
/** Settle pending startup without rejecting the task producer contract. */
async function settleStart(start: Promise<SubagentRun>, signal: AbortSignal): Promise<TaskOutcome> {
try {
return await settleRun(await start)
} catch (error: unknown) {
return signal.aborted
? { status: 'killed' }
: { status: 'failed', detail: String(error) }
}
}
/** A non-`completed` stop reason means the child did not finish cleanly. */
function stopReasonError(result: SubagentResult): string | undefined {
switch (result.stopReason) {
case 'completed':
return undefined
case 'aborted':
return 'subagent run was cancelled'
case 'error':
return 'subagent run failed'
case 'max-tokens':
return 'subagent run hit its token limit before finishing'
case 'refusal':
return 'subagent declined the task'
// Merge-extensible union: a backend may add stop reasons. Treat an unknown
// terminal reason as a failure rather than reporting partial output as success.
default:
return `subagent run ended abnormally (${String(result.stopReason)})`
}
}
type ForegroundToolResult = {
readonly kind: 'foreground'
readonly runId: SubagentRun['id']
readonly output: JsonValue[]
}
/**
* Collect and release one foreground run without letting disposal replace an
* independent result failure.
*/
async function settleForegroundRun(run: SubagentRun): Promise<ForegroundToolResult> {
const [execution] = await Promise.allSettled([
run.result.then((result): ForegroundToolResult => {
const error = stopReasonError(result)
if (error !== undefined) {
// The registry converts this throw to isError; partial output is not success.
throw new Error(error)
}
return {
kind: 'foreground',
runId: run.id,
// Content blocks already cross durable JSON boundaries elsewhere;
// the registry performs the authoritative lossless snapshot here.
output: result.output as unknown as JsonValue[],
}
}),
])
const [disposal] = await Promise.allSettled([Promise.resolve().then(() => run.dispose())])
if (execution.status === 'rejected') {
if (disposal.status === 'rejected') {
throw new AggregateError(
[execution.reason, disposal.reason],
`subagent run failed: ${String(execution.reason)}; dispose failed: ${String(disposal.reason)}`,
)
}
throw execution.reason
}
if (disposal.status === 'rejected') throw disposal.reason
return execution.value
}
/**
* Model-facing wording from the provider's conversation-history descriptor
* ({@link SubagentProvider.inheritsParentContext}).
* A fresh child needs a standalone prompt; a forked child already sees the
* conversation's completed turns — telling the model to restate everything
* (or, worse, that the child "does not see this conversation") would be false
* for a fork.
* @param inheritsConversation - whether the child's conversation is seeded
* with the parent's completed turns; this says nothing about tool, service,
* scope, or authority inheritance.
* @returns the tool `description` and the `prompt` parameter description.
*/
function providerWording(inheritsConversation: boolean): { description: string; promptDescription: string } {
if (inheritsConversation) {
return {
description:
'Delegate a task to a subagent that inherits this conversation: a child agent seeded with all '
+ 'completed turns so far (it does not see the current in-flight turn), returning only its final '
+ 'result. Use this when the subtask builds on this conversation\'s context — a follow-up analysis, '
+ 'a review, a continuation — without consuming this conversation\'s context for the work itself. '
+ 'You receive only its final answer, not its intermediate steps.',
promptDescription:
'The task for the subagent. It already sees this conversation\'s completed turns, so build on them '
+ 'freely and state only what is new.',
}
}
return {
description:
'Delegate a self-contained task to a subagent (a separate agent that works in its own context) '
+ 'and return its final result. Use this to offload focused, independent work — research, a scoped '
+ 'implementation, an analysis — so it does not consume this conversation\'s context. The subagent '
+ 'runs to completion and you receive only its final answer, not its intermediate steps. Give it a '
+ 'complete, standalone prompt: it does not see this conversation.',
promptDescription:
'The complete, self-contained task for the subagent. It does not share this '
+ 'conversation\'s context, so include everything it needs.',
}
}
export function apply(ctx: Context, config: Config): void {
// Direct apply() bypasses Schemastery's numeric constraints. A direct-apply
// omission stays capless (the schema default only runs through the loader).
if (config.maxDepth !== 'provider-managed') assertSubagentMaxDepth(config.maxDepth)
// Reject an empty explicit filter at load instead of failing every delegation.
if (config.toolFilter !== undefined && config.toolFilter.allow === undefined && config.toolFilter.deny === undefined) {
throw new Error('tool-subagent: `toolFilter` is configured but names neither `allow` nor `deny` — remove the key or fill the filter')
}
// Mirror provider lifecycle because sibling load order and HMR replacement
// can change provider availability while this fiber remains active.
let disposeTool: (() => void) | undefined
const mount = (provider: SubagentProvider): void => {
// A numeric cap the provider cannot enforce is a misconfiguration — fail at
// mount (the earliest point the provider's capabilities are known), not on
// the first delegation.
if (typeof config.maxDepth === 'number' && !provider.capabilities.depthLimit) {
throw new Error(
`tool-subagent: provider "${provider.name}" cannot enforce maxDepth (no depthLimit capability) — `
+ 'set maxDepth: \'provider-managed\' to leave the recursion budget to the provider',
)
}
const wording = providerWording(provider.inheritsParentContext)
const backgroundEnabled = config.enableRunInBackground !== false
const continuable = (config.backgroundMode ?? 'one-shot') === 'continuable'
if (continuable && provider.prepareContinuable === undefined) {
throw new Error(
`tool-subagent: provider "${provider.name}" does not support \`backgroundMode: continuable\``,
)
}
disposeTool = ctx.tools.register(defineTool({
name: config.toolName ?? 'subagent',
description: wording.description + (backgroundEnabled
// The return channel is a separately installed capability this package
// cannot observe, so this describes only this call's result.
? continuable
? ' Set `run_in_background: true` to start a background subagent that keeps its conversation:'
+ ' you receive only its subagent id, never its result, and it works on its own. Use this for'
+ ' work whose result you do not need returned by this call; `send_message` sends it more work.'
: ' Set `run_in_background: true` to return a task id; collect with `task_output` and stop with `task_kill`.'
: ''),
parameters: {
description: {
type: 'string',
required: true,
description: 'A short (3-5 word) description of the delegated task, for display.',
},
prompt: {
type: 'string',
required: true,
description: wording.promptDescription,
},
...backgroundEnabled ? {
run_in_background: {
type: 'boolean' as const,
description: continuable
? 'Run as a background subagent that keeps its conversation and return only its subagent id. '
+ 'This call never returns its result; send it more work with send_message.'
: 'Run as a background task and return its id; collect with task_output or stop with task_kill.',
},
} : {},
},
output: {
schema: {
oneOf: [
{
type: 'object',
additionalProperties: false,
properties: {
kind: { type: 'string', required: true, const: 'background' },
taskId: { type: 'string', required: true },
},
},
{
type: 'object',
additionalProperties: false,
properties: {
kind: { type: 'string', required: true, const: 'continuable' },
subagentId: { type: 'string', required: true },
},
},
{
type: 'object',
additionalProperties: false,
properties: {
kind: { type: 'string', required: true, const: 'foreground' },
runId: { type: 'string', required: true },
output: { type: 'array', required: true, items: { type: 'json' } },
},
},
],
},
render: (_args, value) => [{
type: 'text',
text: value.kind === 'background'
? `started background subagent task ${value.taskId}`
: value.kind === 'continuable'
? `started subagent ${value.subagentId}`
: outputValueText(value.output),
}],
},
async execute(args, exec) {
const parent = exec.agent
if (!parent) {
// Non-agent callers provide no parent for delegation ownership.
throw new Error('subagent tool requires a calling agent (exec.agent was undefined)')
}
const maxDepth = typeof config.maxDepth === 'number' ? config.maxDepth : undefined
const request = {
label: args.description,
prompt: [{ type: 'text', text: args.prompt }] as ContentBlock[],
parent,
...config.agentOptions !== undefined ? { agentOptions: config.agentOptions } : {},
...config.persona !== undefined ? { persona: config.persona } : {},
...config.toolFilter !== undefined ? { toolFilter: config.toolFilter } : {},
...maxDepth !== undefined ? { maxDepth } : {},
}
if (args.run_in_background === true) {
// The validator permits undeclared keys, so schema omission also needs
// execution-time enforcement.
if (!backgroundEnabled) {
throw new Error('run_in_background is disabled for this tool instance (enableRunInBackground: false)')
}
if (continuable) {
// Resolves at inbox acceptance: the child owns its own turns from
// there, so this call neither waits for nor collects a result.
const started = await ctx.subagents.startContinuable({
provider: config.provider,
label: args.description,
request,
signal: exec.signal,
})
return { kind: 'continuable' as const, subagentId: started.childId }
}
const tasks = ctx.get('tasks')
if (tasks === undefined) {
throw new Error('background tasks unavailable: load @deepseek-ai/dsh-tasks and @deepseek-ai/dsh-tool-tasks')
}
// One-shot background child: task preflight finishes before the
// starter can spawn, and the task-owned signal covers startup.
const id = tasks.start({
kind: 'subagent',
label: args.description,
owner: parent,
run: () => {
const controller = new AbortController()
const start = ctx.subagents.start(config.provider, { ...request, signal: controller.signal })
return {
cancel: (reason?: string) => {
controller.abort(reason ?? 'background subagent task killed')
},
done: settleStart(start, controller.signal),
// No readOutput: the child session owns intermediate detail.
}
},
})
return { kind: 'background' as const, taskId: id }
}
const run: SubagentRun = await ctx.subagents.start(config.provider, {
...request,
signal: exec.signal,
})
return settleForegroundRun(run)
},
}))
}
// Register listeners before checking presence so no synchronous change is missed.
// TODO(subagent-dup-toolname): two WAITING fibers configured with the same
// toolName collide when their provider appears, and the duplicate-name throw
// rolls back the provider registration. Add an intent registry if this occurs.
ctx.on('subagent/provider-added', (provider) => {
if (provider.name === config.provider && disposeTool === undefined) mount(provider)
})
ctx.on('subagent/provider-removed', (name) => {
if (name !== config.provider || disposeTool === undefined) return
disposeTool()
disposeTool = undefined
})
const present = ctx.subagents.getProvider(config.provider)
if (present !== undefined) {
mount(present)
} else {
// A backend fiber may activate later; a misspelled provider remains visible in this log.
ctx.logger.info(`subagent provider "${config.provider}" not registered yet; the "${config.toolName ?? 'subagent'}" tool will register when it appears`)
}
}