mirror of
https://github.com/deepseek-ai/deepseek-harness
synced 2026-08-15 21:04:50 +00:00
fix: honor the teardown order on owner unload; make the structured commit unconditional
Adversarial-review findings (own reviewer agent), each verified and pinned: B1: agents.register() returned a wrapper lambda, so the factory composite's yield could not identity-nest it — on OWNER unload the unregistration (and agent/disposed) disposed as a concurrent sibling, firing mid-drain while the final turn was still closing (pre-existing on master; this branch's docs re-assert the order, so it must be true). register() now returns the EXACT cordis effect disposer (the Scope.rawDispose move); the composite nests it and owner unload runs stop/drain -> unregister -> detach -> scope like every other path. Regression test pins turn-end before disposed before detach on owner unload. B2: the structured two-phase commit could promote a stale stage when a later capture call REUSED the orphaned stage's call id with a body that never staged (denied downstream, or invalid args throwing pre-stage). The runtime's pre-execute listener now clears any stale stage unconditionally when a new capture call enters the pipeline — only a call's own body can stage for its commit; the call-id mismatch guard becomes a defensive second layer. Repro test: blocked capture then same-id invalid call. C1: an explicit empty toolFilter config now fails at plugin LOAD (the check is self-contained) instead of killing every delegation at child setup. C2: Scope.dispose/ScopeHost.dispose @returns state the single-shot repeat-call semantics honestly.
This commit is contained in:
@@ -170,6 +170,40 @@ describe('agent scope lifecycle', () => {
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expect(heard).toEqual(['a1:2'])
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})
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it('owner unload honors the documented teardown order: unregistration AFTER the drain, before detach', async () => {
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const ctx = await harness()
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let handle!: ReturnType<typeof ctx.agents.create>
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const owner = await ctx.plugin(Object.assign((inner: Context) => {
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handle = inner.agents.create({ agentId: AgentId('o1'), sessionId: SessionId('o1-s'), agentOptions: { model: 'mock' } })
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}, { inject: ['agents'] }))
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const { agent } = handle
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const order: string[] = []
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ctx.on('session/event', (_s, event) => {
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if (event.type === 'turn/end') order.push('turn-end')
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})
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ctx.on('agent/disposed', () => {
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order.push(`disposed(listed=${ctx.agents.get(AgentId('o1')) !== undefined})`)
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order.push(`session-still-stored=${ctx.sessions.get(SessionId('o1-s')) !== undefined}`)
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})
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// Open a turn so the drain has real work: the loop must finish it BEFORE
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// the registry entry goes away (the agent/disposed contract: "its fiber
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// and any in-flight turn have been torn down"). Wait for the turn to be
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// OPEN in the log — a dispose landing in the pre-step window would drop
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// the queued prompt without ever opening a turn.
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const turnOpen = new Promise<void>((resolve) => {
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const off = ctx.on('session/event', (_s, event) => {
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if (event.type === 'turn/start') { off(); resolve() }
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})
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})
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agent.send(text('work'))
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await turnOpen
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await owner.dispose()
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expect(order).toEqual(['turn-end', 'disposed(listed=false)', 'session-still-stored=true'])
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expect(ctx.sessions.get(SessionId('o1-s'))).toBeUndefined()
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})
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it('handle.dispose() during owner unload still awaits true quiescence (shared boundary)', async () => {
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const ctx = await harness()
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let handle!: ReturnType<typeof ctx.agents.create>
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@@ -208,9 +208,16 @@ export class AgentRegistry extends Service {
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* (calling through `agent.ctx` scopes EFFECTS; dispatch scoping always
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* requires passing the carrier). Returns the disposer.
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* @param agent - the already-constructed agent to record in the store.
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* @returns the disposer that removes the agent and emits `agent/disposed`.
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* @returns the EXACT Cordis effect disposer (single-shot; a repeat call
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* returns undefined without awaiting an in-flight teardown). Exact
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* identity is load-bearing: a composite (generator) effect that owns a
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* teardown ORDER — the agent factory's lifecycle chain — must yield THIS
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* function so Cordis nests the unregistration at that yield position;
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* yielding a wrapper would leave it disposing as a concurrent sibling on
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* owner unload, unregistering the agent (and emitting `agent/disposed`)
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* while its final turn is still draining.
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*/
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register(agent: Agent): () => void {
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register(agent: Agent): () => Promise<void> | void {
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const dispose = this.ctx.effect(function* (this: AgentRegistry) {
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if (this.store.has(agent.id)) {
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throw new Error(`agent "${agent.id}" is already registered`)
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@@ -242,9 +249,7 @@ export class AgentRegistry extends Service {
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}
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this.ctx.emit(scopeTarget(agent, agent), 'agent/created', agent)
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}.bind(this), 'agents.register()')
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// ctx.effect's disposer returns Promise<void>; our disposer API is
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// synchronous fire-and-forget — discard the (always-resolved) promise.
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return () => void dispose()
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return dispose
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}
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/**
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@@ -83,7 +83,12 @@ export interface Scope {
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* returns undefined the second time; this wrapper Promise-normalizes it).
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* After disposal the scoped context is inert — a further registration
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* through it throws Cordis's INACTIVE_EFFECT.
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* @returns resolves when every registration's disposer has settled.
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* @returns for the call that initiates teardown: resolves when every
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* registration's disposer has settled. A repeat/racing call resolves
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* immediately WITHOUT awaiting the in-flight teardown (the underlying
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* Cordis disposer is single-shot) — a caller needing a shared quiescence
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* boundary across racing disposers keeps its own completion promise (the
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* agent factory's pattern).
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*/
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dispose(): Promise<void>
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}
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@@ -250,7 +255,8 @@ export interface ScopeHost {
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mint(key: ScopeKey): Scope
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/**
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* Dispose the host fiber and with it every scope minted through it.
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* @returns resolves when all collected disposers have settled.
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* @returns resolves when all collected disposers have settled (first call;
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* a repeat call resolves immediately — single-shot, like Scope.dispose).
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*/
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dispose(): Promise<void>
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}
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@@ -159,6 +159,13 @@ export function attachStructuredRuntime(childCtx: Context, schema: StructuredOut
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reason: `structured output already recorded: the run is complete, so \`${exec.name}\` is not executed`,
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})
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}
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// A NEW capture call invalidates any stale stage UNCONDITIONALLY, before
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// dispatch: only THIS call's own body may stage for this call's commit.
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// Without this, a stale entry orphaned by an outer short-circuited chain
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// could be promoted by a later call REUSING the same call id whose body
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// never staged (pre-execute-denied downstream, or invalid args throwing
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// before the stage) — reporting success for a value the model saw fail.
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if (exec.name === STRUCTURED_OUTPUT_TOOL) pending = undefined
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return next()
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}, { prepend: true })
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@@ -171,13 +178,14 @@ export function attachStructuredRuntime(childCtx: Context, schema: StructuredOut
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this: unknown, exec: ToolExecution, _result: ToolExecutionResult, next: () => Promise<PostToolDecision>,
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): Promise<PostToolDecision> {
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if (exec.name !== STRUCTURED_OUTPUT_TOOL || pending === undefined) return next()
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/* v8 ignore start -- defensive second layer: the pre-execute clear above
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* already drops every stale stage before a new capture call dispatches,
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* so a call-id mismatch cannot be reached through the tool pipeline */
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if (pending.callId !== exec.callId) {
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// A stale stage from a different call: an outer listener short-circuited
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// that call's post-execute chain past this commit, so its verdict never
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// reached us and the value must never be promoted — drop it.
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pending = undefined
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return next()
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}
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/* v8 ignore stop */
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const staged = pending
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try {
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const decision = await next()
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@@ -530,4 +530,42 @@ describe('in-process structured output', () => {
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expect(valid.isError).toBeFalsy()
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await run.dispose()
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})
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it('a later capture call REUSING a stale stage\'s call id never promotes it (unconditional commit safety)', async () => {
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const { ctx, parent } = await setup([
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toolCallResponse('c1', STRUCTURED_OUTPUT_TOOL, { answer: 1 }),
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])
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const run = ctx.subagents.start('spawn', structuredRequest(parent))
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const child = ctx.agents.get(run.id)!
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// Orphan a stage: an outer short-circuiting post-execute BLOCK on the
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// first capture (its chain never reaches the commit listener).
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let blocks = 1
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ctx.on('tools/post-execute', (exec, _result, next) => {
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if (exec.name === STRUCTURED_OUTPUT_TOOL && blocks > 0) {
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blocks -= 1
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return Promise.resolve({ kind: 'block' as const, feedback: [{ type: 'text' as const, text: 'rejected' }] })
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}
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return next()
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}, { prepend: true })
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await run.result
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// A SECOND capture call with the SAME call id whose body never stages
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// (invalid args throw before the stage): the stale value must not ride
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// its acceptance.
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const reused = await ctx.tools.execute({
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callId: 'c1' as never,
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name: STRUCTURED_OUTPUT_TOOL,
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arguments: { answer: 'not-a-number' },
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agent: child,
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})
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expect(reused.isError).toBe(true)
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// Nothing was ever committed: a fresh valid call is still required.
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const valid = await ctx.tools.execute({
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callId: 'c1' as never,
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name: STRUCTURED_OUTPUT_TOOL,
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arguments: { answer: 5 },
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agent: child,
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})
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expect(valid.isError).toBeFalsy()
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await run.dispose()
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})
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})
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@@ -184,6 +184,12 @@ export function providerWording(inherits: boolean): { description: string; promp
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}
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export function apply(ctx: Context, config: Config): void {
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// Misconfiguration fails loud AT LOAD (the check is self-contained): an
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// explicit `toolFilter: {}` would otherwise pass the capability gate and
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// kill every delegation later, in the child-setup `restrict({})` throw.
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if (config.toolFilter !== undefined && config.toolFilter.allow === undefined && config.toolFilter.deny === undefined) {
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throw new Error('tool-subagent: `toolFilter` is configured but names neither `allow` nor `deny` — remove the key or fill the filter')
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}
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// The tool MIRRORS its provider's lifecycle instead of assuming load order:
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// the cordis Loader starts sibling entries concurrently, so "backend listed
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// first in cordis.yml" does not guarantee "provider registered first", and
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@@ -510,4 +510,19 @@ describe('dsh-tool-subagent', () => {
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expect(seen?.toolFilter).toEqual({ deny: ['subagent'] })
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expect(seen?.toolFilter).not.toHaveProperty('allow')
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})
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it('an explicit empty toolFilter fails at plugin load, not at first delegation', async () => {
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const ctx = new Context()
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await ctx.plugin(SystemPrompt)
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await ctx.plugin(ToolRegistry)
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await ctx.plugin(SubagentService)
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ctx.subagents.registerProvider({
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name: 'p',
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capabilities: { outputSchema: false, depthLimit: false, toolFilter: true, persona: false },
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inheritsParentContext: false,
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start: () => { throw new Error('unreachable') },
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})
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const fiber = ctx.plugin(tool, { provider: 'p', toolFilter: {} })
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await expect(fiber).rejects.toThrow(/names neither `allow` nor `deny`/)
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})
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})
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