deepseek-harness/knip.json

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{
"$schema": "https://unpkg.com/knip@5/schema.json",
"exclude": ["duplicates"],
"ignoreWorkspaces": ["vendor/*"],
"workspaces": {
".": {
feat(acp): ACP bridge — drive the coding agent from an editor over JSON-RPC stdio Implements the RFC 010 MVP: a new `@deepseek-ai/dsh-acp` package bridges the harness agent to the Agent Client Protocol (JSON-RPC 2.0 over newline-delimited stdio), so Zed and other ACP editors can drive the coding agent — streaming render, tool-call display, and resumable sessions via `session/load`. - packages/acp: AgentSideConnection wiring; initialize/newSession/loadSession/ prompt/cancel; a total TurnEndReason→StopReason codec; settle-once with a fallback chain (agent/turn-end → logged turn/end → idle); single-session guard; cwd-must-equal-launch-dir validation; load replays from the persisted event log (assistant/chunk→agent_message_chunk, tool/call/result→tool_call*). - agent: add Agent.whenIdle() quiescence signal to the interface; LoopAgent implements it (resolves on the first running→idle/disposed transition). The bridge awaits it on disposal so teardown reaches quiescence, not just abort. - examples: extract the shared provider/tool core into examples/base.yml; coding-agent nest-includes it; new examples/acp-agent serves the agent over ACP with JSONL persistence and no stdout logger (stdout is the protocol). - Permission gate deferred (TODO(rfc010-permission-gate)): tools run with the executor's full authority; only the Agent→sessionId ownership seam is laid down. Cancel is best-effort for a not-yet-started queued turn (TODO(rfc010-cancel-prestep)). RFC 010 stays `proposed`. - Docs: package README + Zed snippet; client-driver cookbook section; root and packages layout/commands; RFC 010 implementation-status note. 48 bridge tests + whenIdle coverage; 100% per-file coverage; e2e boots the example as a subprocess and verifies a written file on disk (key-gated, with a no-key stdout-purity check).
2026-06-16 11:10:25 +08:00
"entry": [
"examples/echo-agent/src/*.ts",
refactor(examples): extract reusable logic into tested packages Logic that lived under examples/ was outside the per-file 100% coverage gate (examples/ are not workspaces) and, in the stdio-UI case, duplicated across two examples. Move it into packages/ so it is gated and de-duped. - packages/ui-stdio (new): unify the two diverged stdio-chat.ts copies into one @deepseek-ai/dsh-ui-stdio plugin (welcome/agent Config). A test-only I/O seam (createStdioChat(ctx, config, runtime)) keeps process streams out of the serializable config and makes every render/EOF/disposal branch unit-testable. Per-file 100%. echo/coding cordis.yml now load the package; both src/stdio-chat.ts deleted. - packages/llm-replay (new): move examples/acp-agent/src/llm-replay.ts (+ its spec) here so its derive/parse/replay branches fall under the coverage gate. cordis.snapshot.yml + README rewired to the package name; added apply/env /assertNever/abort tests to reach per-file 100%. - examples/{echo,coding}-agent: keyless Loader-path e2e smokes that boot the real cordis.yml (no key) — the guard a hand-mounted unit test cannot be for the unwrapExports/export-shape class (postmortem 0001). examples/AGENTS.md codifies the keyless+with-key smoke convention (keyless-by-nature exception for echo-agent). - AGENTS.md: a scoped, removal-triggered pre-release stance (foundation over blast radius). packages/README.md: new rows + a FIXME to later regroup ALL packages into a hierarchy. Wiring: tsconfig paths/refs, publint, knip, module-graph. Verified: typecheck, lint, test:coverage (887 tests, 100%), build, hygiene, doc-sync, test:snapshot (10), test:e2e (6 keyless pass, with-key self-skip).
2026-06-19 12:42:28 +08:00
"examples/echo-agent/tests/**/*.e2e.ts",
"examples/coding-agent/tests/**/*.e2e.ts",
feat(acp-example): snapshot harness, normalizers, wiring, and handshake scenario Adds the snapshot-test harness and the keyless replay pipeline end-to-end. - snapshot-harness.ts: boots the real acp-agent subprocess via the cordis Loader (preserving TSX_TSCONFIG_PATH so unbuilt dsh-* imports resolve from a temp cwd), tees raw stdout into an SDK ClientSideConnection, interprets a per-scenario input.json DSL (initialize / newSession capturing the random sessionId / prompt / cancel), closes stdin to trigger graceful shutdown, and harvests the persisted session.jsonl. Failure-safe: a finally block SIGKILLs a live child, awaits its exit, and removes both temp dirs even on a thrown step or harvest. Raw bytes are buffered and decoded once (no multibyte split). - snapshot-normalize.ts (+ spec): two pure normalizers (stdout frames + session JSONL) scrub cwd, session ids / UUIDs, and JSON-RPC ids, and zero time / createdAt — but keep `seq` (deterministic by contract). normalizeStdout throws on a non-JSON line (the stdout-purity check). - start.ts: selects cordis.snapshot.yml (replay, providerless) or cordis.snapshot-record.yml (record, real adapter) from DSH_SNAPSHOT, skips .env in replay, and disposes the ctx on stdin end so persistence flushes before exit (harvest-after-flush, not on the prompt response). - acp.snapshot.ts: asserts the normalized stdout golden (and, for model scenarios, the re-persisted JSONL golden) via toMatchFileSnapshot; record mode writes the harvested log back to the scenario fixture; an orphan-fixture guard fails on an unregistered scenario dir. - handshake scenario: initialize + session/new (no model call; a header-only session.jsonl, since session/new persists no events). - vitest.snapshot.config.ts, test:snapshot / test:snapshot:record scripts, a pre-push snapshot job, and the knip entry. Incorporates Codex review: record-fixture writeback, failure-safe teardown, seq-not-scrubbed, harvest-after-flush. Per docs/rfc/implemented/2026-06-19.
2026-06-19 03:36:12 +08:00
"examples/acp-agent/tests/**/*.e2e.ts",
"examples/acp-agent/tests/**/*.snapshot.ts"
feat(acp): ACP bridge — drive the coding agent from an editor over JSON-RPC stdio Implements the RFC 010 MVP: a new `@deepseek-ai/dsh-acp` package bridges the harness agent to the Agent Client Protocol (JSON-RPC 2.0 over newline-delimited stdio), so Zed and other ACP editors can drive the coding agent — streaming render, tool-call display, and resumable sessions via `session/load`. - packages/acp: AgentSideConnection wiring; initialize/newSession/loadSession/ prompt/cancel; a total TurnEndReason→StopReason codec; settle-once with a fallback chain (agent/turn-end → logged turn/end → idle); single-session guard; cwd-must-equal-launch-dir validation; load replays from the persisted event log (assistant/chunk→agent_message_chunk, tool/call/result→tool_call*). - agent: add Agent.whenIdle() quiescence signal to the interface; LoopAgent implements it (resolves on the first running→idle/disposed transition). The bridge awaits it on disposal so teardown reaches quiescence, not just abort. - examples: extract the shared provider/tool core into examples/base.yml; coding-agent nest-includes it; new examples/acp-agent serves the agent over ACP with JSONL persistence and no stdout logger (stdout is the protocol). - Permission gate deferred (TODO(rfc010-permission-gate)): tools run with the executor's full authority; only the Agent→sessionId ownership seam is laid down. Cancel is best-effort for a not-yet-started queued turn (TODO(rfc010-cancel-prestep)). RFC 010 stays `proposed`. - Docs: package README + Zed snippet; client-driver cookbook section; root and packages layout/commands; RFC 010 implementation-status note. 48 bridge tests + whenIdle coverage; 100% per-file coverage; e2e boots the example as a subprocess and verifies a written file on disk (key-gated, with a no-key stdout-purity check).
2026-06-16 11:10:25 +08:00
],
"project": ["scripts/**/*.ts", "examples/**/*.ts"]
},
"packages/*/*": {
"entry": ["tests/**/*.spec.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
Add two DeepSeek LLM adapters: dsh-llm-deepseek and dsh-llm-pi-ai The first real LlmAdapter implementations, shipped as a deliberate pair: same models and wire protocol, completely different internals, so the StreamChunk protocol is verified across independent implementations. - dsh-llm-deepseek: hand-rolled fetch + SSE parser + chunk-translation state machine against the official chat-completions format (thinking mode via top-level thinking/reasoning_effort; the empty-string reasoning_content first chunk; usage attached to the finish chunk or trailing; reasoning_content passback on tool-call turns; disjoint cache-token accounting). - dsh-llm-pi-ai: the same endpoint through @earendil-works/pi-ai, mapping its event vocabulary (parsed tool arguments, in-stream error events, folded reasoning tokens) onto the same chunks. The agent loop now honors the in-band error path: an adapter that ends its stream with finish {kind:error|aborted} (the only option for adapters that can't throw mid-stream, like pi-ai) is translated into a step error, so the turn ends error/aborted with a logged error event instead of a normal completed assistant message. This makes the StreamChunk error contract real for both adapters; docs/architecture.md and the StreamChunk doc are updated accordingly. New yarn test:e2e (vitest.e2e.config.ts, *.e2e.ts) runs key-gated real-API matrices for both adapters across V4 Flash/Pro and all thinking/effort levels; it self-skips without DEEPSEEK_API_KEY. Unit suites run against local node:http mock SSE servers at 100% per-file coverage.
2026-06-13 00:28:29 +08:00
},
feat(types): brand bash ids + stop brand erosion; extract Branded to dsh-brand Type-only change (brands are zero-cost casts; no runtime/wire impact). Closes the two gaps in the "brand ids that cross package boundaries" policy and fixes the dependency direction so a capability package never pulls in an unrelated one. - Extract the `Branded<B>` primitive into a new standalone type-only package `@deepseek-ai/dsh-brand` (packages/util/brand) with no harness-package deps. dsh-llm keeps its owned CallId but imports Branded from dsh-brand; dsh-session, dsh-agent, and dsh-bash all import Branded from there. dsh-bash depends on dsh-brand ALONE — never on dsh-llm or dsh-session (the architectural fix: a generic execution backend must not couple to the LLM or session vocabulary). - Mint BashTaskId + OwnerToken in dsh-bash and thread them through BashTask.id, the get/ownerOf/list/readOutput/kill seam, the bash-local generation site, and the dsh-tool-bash validate/access surface. OwnerToken is a DISTINCT brand from SessionId so the seam stays decoupled; dsh-tool-bash is the single boundary that casts SessionId -> OwnerToken. - Brand at the SOURCE, not via mid-pipeline casts: agent-loop's Config types agents[].id as AgentId and resumeSessionId as SessionId, so the brand enters at the config boundary and the inner create()/resume casts disappear (only the genuinely-new per-run session-id string is cast). - Stop brand erosion: propagate CallId/SessionId/AgentId to the registry/store Map keys and public params/exports (SessionStore, AgentRegistry + factory options, the ACP session-id surface + ToolPresenter CallId map, the persistence coordinator, invariants pendingCalls, the pi-ai tool-call maps). - Docs: document BashTaskId/OwnerToken in bash.md (type-equiv re-pasted), point the Branded type-equiv at dsh-brand, fix stale param types in the session/ agent/bash READMEs, regenerate the cordis catalog + module graph. Implements docs/rfc/proposed/architecture/2026-06-20-branded-ids.md
2026-06-21 07:17:25 +08:00
"packages/util/brand": {
"project": ["src/**/*.ts"],
"ignoreDependencies": ["cordis"]
},
"packages/core/agent-loop": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
"packages/llm/llm-deepseek": {
Add two DeepSeek LLM adapters: dsh-llm-deepseek and dsh-llm-pi-ai The first real LlmAdapter implementations, shipped as a deliberate pair: same models and wire protocol, completely different internals, so the StreamChunk protocol is verified across independent implementations. - dsh-llm-deepseek: hand-rolled fetch + SSE parser + chunk-translation state machine against the official chat-completions format (thinking mode via top-level thinking/reasoning_effort; the empty-string reasoning_content first chunk; usage attached to the finish chunk or trailing; reasoning_content passback on tool-call turns; disjoint cache-token accounting). - dsh-llm-pi-ai: the same endpoint through @earendil-works/pi-ai, mapping its event vocabulary (parsed tool arguments, in-stream error events, folded reasoning tokens) onto the same chunks. The agent loop now honors the in-band error path: an adapter that ends its stream with finish {kind:error|aborted} (the only option for adapters that can't throw mid-stream, like pi-ai) is translated into a step error, so the turn ends error/aborted with a logged error event instead of a normal completed assistant message. This makes the StreamChunk error contract real for both adapters; docs/architecture.md and the StreamChunk doc are updated accordingly. New yarn test:e2e (vitest.e2e.config.ts, *.e2e.ts) runs key-gated real-API matrices for both adapters across V4 Flash/Pro and all thinking/effort levels; it self-skips without DEEPSEEK_API_KEY. Unit suites run against local node:http mock SSE servers at 100% per-file coverage.
2026-06-13 00:28:29 +08:00
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
"packages/llm/llm-pi-ai": {
Add two DeepSeek LLM adapters: dsh-llm-deepseek and dsh-llm-pi-ai The first real LlmAdapter implementations, shipped as a deliberate pair: same models and wire protocol, completely different internals, so the StreamChunk protocol is verified across independent implementations. - dsh-llm-deepseek: hand-rolled fetch + SSE parser + chunk-translation state machine against the official chat-completions format (thinking mode via top-level thinking/reasoning_effort; the empty-string reasoning_content first chunk; usage attached to the finish chunk or trailing; reasoning_content passback on tool-call turns; disjoint cache-token accounting). - dsh-llm-pi-ai: the same endpoint through @earendil-works/pi-ai, mapping its event vocabulary (parsed tool arguments, in-stream error events, folded reasoning tokens) onto the same chunks. The agent loop now honors the in-band error path: an adapter that ends its stream with finish {kind:error|aborted} (the only option for adapters that can't throw mid-stream, like pi-ai) is translated into a step error, so the turn ends error/aborted with a logged error event instead of a normal completed assistant message. This makes the StreamChunk error contract real for both adapters; docs/architecture.md and the StreamChunk doc are updated accordingly. New yarn test:e2e (vitest.e2e.config.ts, *.e2e.ts) runs key-gated real-API matrices for both adapters across V4 Flash/Pro and all thinking/effort levels; it self-skips without DEEPSEEK_API_KEY. Unit suites run against local node:http mock SSE servers at 100% per-file coverage.
2026-06-13 00:28:29 +08:00
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
refactor(examples): extract the app spine into dsh-agent-core + app packages Implements docs/rfc/.../2026-06-20-extract-example-app-packages.md. Each example was thick — a hand-rolled start.ts, an infra preamble, nested base.yml/base-core.yml/acp-tail.yml includes, and a coupled front-door cluster enforced only by prose. This moves the composition into packages so each example is a thin leaf cordis.yml: pick the swappable backends, load one app package. New packages: - @deepseek-ai/dsh-agent-core (packages/core/agent-core): one bundle plugin that loads the providerless/executor-less/UI-less spine (timer + llm + sessions + system-prompt + tools + agents + invariants + tool-bash + agent-loop) via ctx.plugin(...) inside apply(), and forwards agent-loop's `agents` list as its own Config (export const Config = AgentLoop.Config, default []). - @deepseek-ai/dsh-stdio-agent (packages/ui/stdio-agent): terminal chat APP — agent-core + console logger + readline UI + a pre-created `main` agent, with a bin. The demo:echo/coding front door. - @deepseek-ai/dsh-acp-agent (packages/ui/acp-agent): ACP server APP — agent-core + JSONL persistence + the acp bridge, NO stdout logger, with a bin. The stdout-purity footgun is structurally unreachable from the leaf. Amendment to the RFC: hmr stays a LEAF cordis.yml entry, not baked into dsh-stdio-agent. hmr is a Loader-only dev plugin (throws without --expose-internals; the in-process test tier can't even import its decorator form), so a package statically importing it could never carry the per-file coverage gate. Unlike the console logger, a stray hmr is not a stdout-purity footgun, so leaving it at the leaf costs no safety. With hmr out, all three new packages carry in-process unit specs at 100%. Boot glue (Loader tail, .env load, snapshot-mode selection, stdin-dispose lifecycle) moves into each app's bin; start.ts and base.yml/base-core.yml/ acp-tail.yml are deleted. Each app package gets a keyless real-load-path test that boots through its bin + the cordis Loader (guarding the unwrapExports export-shape bug class, postmortem 0001). ACP snapshot replay stays green against the existing committed goldens (pure boot restructuring). RFC moved proposed->implemented with the amendment recorded; package/example/architecture docs and the module graph updated.
2026-06-21 12:03:44 +08:00
},
"packages/web/web-search-exa": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
"packages/web/web-search-perplexity": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
"packages/web/web-search-deepseek": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
refactor(examples): extract the app spine into dsh-agent-core + app packages Implements docs/rfc/.../2026-06-20-extract-example-app-packages.md. Each example was thick — a hand-rolled start.ts, an infra preamble, nested base.yml/base-core.yml/acp-tail.yml includes, and a coupled front-door cluster enforced only by prose. This moves the composition into packages so each example is a thin leaf cordis.yml: pick the swappable backends, load one app package. New packages: - @deepseek-ai/dsh-agent-core (packages/core/agent-core): one bundle plugin that loads the providerless/executor-less/UI-less spine (timer + llm + sessions + system-prompt + tools + agents + invariants + tool-bash + agent-loop) via ctx.plugin(...) inside apply(), and forwards agent-loop's `agents` list as its own Config (export const Config = AgentLoop.Config, default []). - @deepseek-ai/dsh-stdio-agent (packages/ui/stdio-agent): terminal chat APP — agent-core + console logger + readline UI + a pre-created `main` agent, with a bin. The demo:echo/coding front door. - @deepseek-ai/dsh-acp-agent (packages/ui/acp-agent): ACP server APP — agent-core + JSONL persistence + the acp bridge, NO stdout logger, with a bin. The stdout-purity footgun is structurally unreachable from the leaf. Amendment to the RFC: hmr stays a LEAF cordis.yml entry, not baked into dsh-stdio-agent. hmr is a Loader-only dev plugin (throws without --expose-internals; the in-process test tier can't even import its decorator form), so a package statically importing it could never carry the per-file coverage gate. Unlike the console logger, a stray hmr is not a stdout-purity footgun, so leaving it at the leaf costs no safety. With hmr out, all three new packages carry in-process unit specs at 100%. Boot glue (Loader tail, .env load, snapshot-mode selection, stdin-dispose lifecycle) moves into each app's bin; start.ts and base.yml/base-core.yml/ acp-tail.yml are deleted. Each app package gets a keyless real-load-path test that boots through its bin + the cordis Loader (guarding the unwrapExports export-shape bug class, postmortem 0001). ACP snapshot replay stays green against the existing committed goldens (pure boot restructuring). RFC moved proposed->implemented with the amendment recorded; package/example/architecture docs and the module graph updated.
2026-06-21 12:03:44 +08:00
"packages/ui/acp-agent": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
fix review findings: harden the app bins + built-bin smokes, arch-exception doc, snapshot fixture-guard BLOCKER — the published lib/bin.js (stdio + acp) was exercised only via tsx (demo:* / the src/bin.ts smokes); the built artifact under plain `node` was unguarded. Root-cause on the BUILT bin: 1. Settle race: boot() returned once loader.create() registered the include ENTRY, but the include loads its child plugins asynchronously — so boot() (and main()) resolved while the app plugins (stdin reader, agent loop, ACP bridge) were still mounting. A CLI with no attached handles yet exits 0 silently, and a load error surfaces as an unhandled rejection AFTER boot. Fix: `await ctx.loader.await()` after create() — settle the whole tree. 2. Config-path robustness: hand the include the config's ABSOLUTE file:// URL so resolution never depends on ctx.baseUrl / can never fall back to cwd. Both bins fixed identically. NOTE: the cordis Loader resolves a config's bare plugin specifiers via its internal module loader, active only under `node --expose-internals`; the bin cannot add a node flag itself, so this is documented in the bin JSDoc + both package READMEs (the demos already comply). The repo `examples/*/cordis.yml` are tsx-only artifacts (workspace plugins resolve through the tsconfig paths map, not node_modules), so they are not a valid plain-node bin target — the smokes use a real-install-shaped temp dir. Fail loud on a load failure: boot() previously exited 0 SILENTLY when a config path's directory does not exist — the include plugin fails to IMPORT, the cordis Loader catches+LOGS it and leaves the entry with no fiber (no rejection), and `loader.await()` does not rethrow (EntryTree.await uses Promise.allSettled). Fix: boot() now calls assertEntriesLoaded(ctx) after the tree settles and throws on any entry with no fiber, so a typo'd config dir exits non-zero with a clear message. main() also installs an unhandledRejection guard (installFailLoud) that replaces Node's stack dump with a single labelled stderr line for the companion case (a missing config FILE in a real dir, whose include-init throw surfaces as a rejection Node already exits non-zero on). Regression tests added to both built-bin smokes (missing dir + missing file → non-zero exit + stderr); verified the missing-dir test fails on the pre-fix bin. Built-bin smokes (the reviewer's ask): packages/ui/{stdio,acp}-agent/tests/ built-bin.e2e.ts run the REAL lib/bin.js under `node` (NOT tsx) in a temp consumer dir, asserting the stdio echo round-trip / the acp initialize response + stdout purity, plus the fail-loud cases above. They build-gate (skip if lib/ absent) and run in a new ci.yml step after the build. Issue 2 — packages/README.md + docs/architecture.md said "plugins depend on interfaces, never on the concrete loop", but dsh-agent-core imports the concrete dsh-agent-loop. Scope the rule to EXTENSION plugins and carve out the sanctioned COMPOSITION/bundle exception (dsh-agent-core composes the concrete spine); note it in the implemented RFC too. Issue 3 — examples/acp-agent/tests/acp.snapshot.ts fixture-guard claimed no-model scenarios need no session.jsonl, but runScenario() always boots llm-replay with the session.jsonl path and loadReplayScript() throws when it is absent. Require session.jsonl for ALL scenarios (no-model ones ship a header-only fixture) and rewrite the comment to match reality.
2026-06-21 15:13:57 +08:00
},
"packages/ui/stdio-agent": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
Add in-process subagent backends: spawn (fresh) and fork (seeded) The second PR of the subagent seam: the two in-process backends that run a child agent on the same cordis context, reusing the agent factory's quiescent AgentHandle teardown. Both register on ctx.subagents (PR1's named-provider registry) and share one run driver. - dsh-subagent-spawn: a FRESH child via ctx.agents.create — own session, the parent's model by default (overridable), zero inherited conversation. Also exports the shared in-process run driver (startInProcessRun): mint ids, stamp cwd/parentSession-lineage/depth, drive the one-shot (send → whenIdle), read the last assistant/message + turn/end reason, dispose to quiescence. - dsh-subagent-fork: a child SEEDED with the parent's balanced completed-turn prefix (the log up to and including its last turn/end), so the child inherits context. The in-flight unbalanced turn is excluded — a raw seed would fail the invariants replay. Proven: a regression test goes red if the boundary seeds the open turn. - Seam extension: CreateAgentOptions.seed, threaded through AgentLoop.createAgent → ctx.sessions.prepare({ seed }) (the primitive resume already used). This is the fork-lineage path the TODO(sub-agents) markers anticipated. - Depth: a merge-extensible AgentOptions.subagentDepth (0 top-level, parent+1 for a child); the depthLimit capability refuses a spawn past request.maxDepth. Tests: real-loop unit tests for both backends (mock MODEL only, real loop + invariants), a multi-subagent test (one parent drives a fork AND a spawn child then keeps working), and a with-key e2e (a real parent delegates via the `subagent` tool to a real child that writes a file on disk — world-verified). 100% per-file coverage. The coding-agent demo wires the spawn backend + tool. Snapshot coverage of nested agents is deferred to a stacked follow-up (TODO(subagent-snapshots)): dsh-llm-replay is a single global positional cursor that cannot route calls to a parent vs. a child on one context. Recorded in the RFC's deferrals and a new AGENTS.md rule: designing a subsystem must design its test infrastructure END TO END up front, verifying the snapshot/e2e harness can express the new shape — a gap this plan hit.
2026-06-22 05:58:40 +08:00
},
"packages/subagent/subagent-spawn": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
Add the ACP subagent backend: out-of-process delegation (PR3) The first OUT-OF-PROCESS subagent backend, proving the seam generalizes past the in-process backends. @deepseek-ai/dsh-subagent-acp runs each child agent in a spawned subprocess, driven over the Agent Client Protocol as the CLIENT — the direction-inverted twin of the dsh-acp server bridge. Point the configured command at the acp-agent example and the harness talks to its own process. - Fresh process per run: start spawns, runs one ACP session (initialize → newSession → prompt), dispose kills the subprocess and awaits its exit. - Minimal client stub: advertises no fs/terminal; accumulates agent_message_chunk text as the result output; auto-answers session/request_permission by a configured policy (reject default / allow). No start-time capabilities (an out-of-process child can't enforce the parent's depth/tool-filter); ignores request.parent; injects only `subagents`. - StopReason mapping (end_turn→completed, cancelled→aborted, …); result resolves error/aborted on a child failure, never rejects (seam contract). - Security: credential-shaped ambient env vars are scrubbed; the child's own key is forwarded only via explicit config.env. A spawn-level error (ENOENT) is captured and raced against the ACP drive so a bad command settles error rather than crashing the parent. Testing designed at every tier: keyless integration drives a scripted mock ACP server subprocess (cancellation incl. the pre-newSession race and a torn-pipe-after-cancel, permission auto-answer, non-message updates, spawn failure, HMR, export shape) at 100% coverage; a with-key e2e drives the REAL acp-agent example process (PONG + real file write, verified on disk) — the harness driving itself. Snapshot coverage of an ACP child is deferred as TODO(acp-subagent-replay) (each child is its own process with its own replay). Stayed on @agentclientprotocol/sdk 0.25.1: the proposed 0.28.x bump only deprecates the stable ClientSideConnection/AgentSideConnection API this layer uses (33 sites incl. the server bridge), turning no-deprecated red across code this PR shouldn't rewrite — that fluent-API migration is its own follow-up. The backend needs nothing 0.28.x adds. This completes the subagent seam stack (PR1 interface → PR2 in-process → PR2.5 snapshot infra → PR3 ACP); the seam RFC moves to implemented/, amended.
2026-06-22 10:47:02 +08:00
},
"packages/subagent/subagent-acp": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts", "tests/mock-acp-server.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
},
"packages/fs/tool-fs": {
"entry": ["tests/**/*.spec.ts", "tests/**/*.e2e.ts"],
"project": ["src/**/*.ts", "tests/**/*.ts"]
}
}
}