Commit Graph
249 Commits
Author SHA1 Message Date
Dudu-0223 caef252905 chore: adapt web seam to master's tsconfig + regenerate catalogs
Register the five web packages in the root tsconfig.json project graph
(master's typecheck moved to `tsc -b tsconfig.json` and dropped the
separate tsconfig.typecheck.json), and regenerate the module graph and
cordis catalog so they reflect the web packages on master.
2026-06-26 19:18:46 +08:00
Dudu-0223 567519184b fix: address codex review round 1
- Re-validate redirect targets through validateFetchUrl before following, so a
  same-origin Location carrying credentials (or a non-http(s)/over-long URL)
  cannot bypass the transport hygiene a direct request enforces.
- Treat only DROPPED bytes as truncation: a body exactly at maxResponseBytes is
  no longer falsely flagged truncated (which emitted a spurious footer).
- Honor the declared response charset: parse the Content-Type charset and decode
  with it (rejecting unsupported labels as WEB_UNSUPPORTED_CONTENT_TYPE) instead
  of always assuming UTF-8 and returning replacement characters.
- Catalog the web seam vocabulary in docs/core-data-structures/web.md with
  type-equiv blocks + manifest entries, per the core-data-structures rule.
2026-06-26 19:14:30 +08:00
Dudu-0223 d01f5f73b7 Add web capability seam: ctx.web, search/fetch providers, web tools
Introduce web access as a first-class capability seam so the model-facing
web tools stay stable while backends change. dsh-web owns ctx.web as a
provider registry with registration-order-independent selection and the
WebError taxonomy; dsh-web-search-exa, dsh-web-search-perplexity, and
dsh-web-fetch-local register capabilities into it; dsh-tool-web is the sole
owner of the model-facing web_search/web_fetch schemas, prompt sections, and
HTML-to-markdown presentation. Search and fetch are deliberately one seam.

Providers ship as namespace plugins that register into ctx.web (like an
LlmAdapter into ctx.llm), not key-owning services, since multiple search
providers cannot each own the key. Tool registration follows product
enablement, not backend availability, so load order/credentials never enter
the model contract; the seam resolves the provider at execution time and
surfaces a structured WebError otherwise.

Moves the RFC to implemented/ amended to match what shipped. Example/app
configs are intentionally not wired yet (RFC migration step 6).
2026-06-26 19:12:13 +08:00
Dudu-0223 a4091daa3d docs: propose web capability seam 2026-06-26 19:04:23 +08:00
Hypatia May cf70141486 Merge branch 'session-surface' into compact-interface
# Conflicts:
#	docs/core-data-structures/core.md
#	packages/README.md
#	scripts/type-equiv.manifest.json
#	tsconfig.base.json
#	tsconfig.typecheck.json
2026-06-25 09:10:50 +08:00
Hypatia May 828c3f85c9 fix review findings: skip collided SCHEMA_VERSION 3; reject marker-less surface events
P1: both merge parents shipped SCHEMA_VERSION=3 for different layouts (surface
columns vs seed_length), so an on-disk 3 was ambiguous and wrongly accepted.
Bump to 4 (merged layout) so the version check rejects both sibling v3s.

P2: a surface-eligible event with no surfaceOp lands in the log but vanishes
from deriveMessages() (surface is the sole derivation path). The typed append
overload enforces the marker only when the type arg is a literal; it collapses
to optional when widened to the union (a caller iterating raw events). Guard at
runtime in both append() and the seed constructor — no backward-compat for
surface-less logs. Shared seed fixtures carry surfaceOp explicitly and the
appendLog helper forwards it verbatim (no synthesized default). Exports
isSurfaceEligibleType. Regression tests for all three, each verified to fail
on the unfixed code.

Gates: typecheck, test (1115), snapshot (14), doc-sync, lint, build, hygiene green.
2026-06-24 17:45:48 +08:00
Hypatia May 9cc8dc371e Merge remote-tracking branch 'origin/master' into session-surface
Reconciles the session-surface work (surfaceOp/sourceEventSeqs provenance as
the sole derivation path) with master's worktree-subagent series (fork-seed
boundary + out-of-process subagent backends).

Semantic reconciliations beyond the textual auto-merge:
- SQLite SCHEMA_VERSION: both sides bumped 2->3. Merged to a single v3 carrying
  BOTH column families — master's seed_length on `sessions` and surface's
  source_event_seqs/surface_op on `events`. writeRow + both INSERT sites bind
  the full set; the schema doc lists all three added columns as the v2->v3 gap.
- agent-loop runStep request: master's `sessionId: session.id` and surface's
  per-append surfaceOp/sourceEventSeqs coexist (different regions).
- Fork seed + surface: a fork seeds the child from the parent's LIVE events,
  which now carry surfaceOp, so the child's surface rebuilds correctly. Verified
  end-to-end — the subagent-fork replay recalls the inherited "SAFFRON" codeword
  through the seeded prefix.
- Subagent snapshot fixtures (recorded pre-surface) re-enriched via KEYLESS
  deterministic replay: only surfaceOp/sourceEventSeqs added onto existing
  recorded lines (matched by seq), no recorded value changed. Not re-recorded
  against the live API.

Gates: typecheck, test (1112), test:snapshot (14), doc-sync, lint, build,
hygiene all green.
2026-06-24 10:48:01 +08:00
Hypatia May 442f85469e refactor(compact): align compact/summary and CompactionResult on shadowed* naming 2026-06-23 16:51:20 +08:00
Hypatia May 894653763e docs(compact): add the compact group/service to package and architecture docs 2026-06-23 16:40:24 +08:00
Hypatia May 58d798492a docs(compact): catalog the compaction seam in core-data-structures 2026-06-23 16:33:05 +08:00
Hypatia May bb013e934e docs(compact): bracket the surface mutation inside the compaction lock 2026-06-23 16:13:55 +08:00
Hypatia May f4180bd764 feat(compact): add optional cancellation signal to the compact seam methods 2026-06-23 15:52:41 +08:00
Hypatia May bdaf9f651d Merge branch 'session-surface' into compact-interface 2026-06-23 13:59:04 +08:00
Hypatia May 358ae02c56 feat(invariants): enforce replace provenance — sourceEventSeqs must cover every shadowed surface node 2026-06-23 13:37:13 +08:00
Hypatia May 1ec8c40d0d refactor(surface): use nodeBySeq map for lookup in _replace, drop dead params 2026-06-23 13:26:45 +08:00
Hypatia May 6089e226bc refactor(session): make surface the sole derivation path, drop legacy fallback 2026-06-23 13:05:59 +08:00
Hypatia May 09d497d5c5 docs(rfc): clarify compaction rides the replace op on an existing event type 2026-06-23 09:54:58 +08:00
Tianyi Cui 78d60366ec Record fork and mixed spawn+fork snapshot scenarios
The seed-boundary change made fork-child replay route correctly but shipped
with no recorded fork scenario — the seedLength slice was exercised only by
llm-replay unit tests and a persistence round-trip, never by the full-transcript
snapshot tier. Add two recorded scenarios that drive a real fork child through
it:

- subagent-fork: parent completes a turn, then forks one child (child fixture
  carries a non-zero seedLength, the boundary the replay slice consumes).
- subagent-mixed: parent completes a turn, then delegates once via spawn
  (seedLength 0) and once via fork (non-zero seedLength) in one transcript —
  the first scenario to drive two subagent backends at once, exercising both
  branches of the slice.

Both need a completed turn-1 so the fork seed is a non-empty completed-turn
prefix (a turn-1 fork seeds empty = spawn, which would not exercise the slice).
Removing the slice turns both scenarios red (the fork child receives the
parent's recorded chunks), proving the guard bites.

ACP (out-of-process) subagent replay remains a different shape, still tracked
as TODO(acp-subagent-replay).
2026-06-22 21:20:54 +08:00
Tianyi Cui b3d40d427e Persist the seed boundary so fork-child replay routes correctly
A fork subagent seeds its child session with a prefix of the parent's log, and
that seed becomes the child's persisted log — so a fork child's .jsonl begins
with the PARENT's events, including the parent's assistant/chunk events. The
snapshot replay harness derived a child's script from its whole log, which would
replay the parent's recorded responses as the child's model calls. Spawn-only
scenarios never hit it, but a fork snapshot would mis-route silently.

Record the seed boundary and skip the inherited prefix at replay:

- SessionHeader gains an optional `seedLength` (how many leading events were
  inherited via a seed), threaded through CreateSessionOptions/CreateAgentOptions
  meta and stamped by the fork backend (= seeded-prefix length; absent for spawn).
  It is EXPLICIT, never inferred from seed.length: a resume seeds the whole stored
  log, so the resume path passes the persisted boundary back.
- Both persistence backends round-trip it: JSONL header line, SQLite seed_length
  column. The SQLite table change bumps SCHEMA_VERSION 2->3; per the pre-release
  stance the backend rejects an older user_version on open with NO migration.
- llm-replay's parseSessionHeader reads seedLength and loadSessionScripts derives
  a child script from events AFTER the boundary. seedLength is 0 for spawn, so
  spawn replay is byte-for-byte unchanged.

Closes the routing-correctness gap the per-session snapshot replay RFC under-
stated; a recorded fork scenario remains a future addition but now derives
correctly. RFC: docs/rfc/implemented/testing/2026-06-22-fork-child-replay-seed-boundary.md.

Regression coverage: a fork child fixture whose seeded prefix carries a parent
chunk (derived script must exclude it, proven red without the slice); a seedLength
persistence round-trip through the shared coordinator contract (both backends);
the fork backend stamping it; resume preserving it from the persisted header.
2026-06-22 20:55:32 +08:00
Hypatia May e45053f0f5 feat(compact): compaction capability seam — abstract CompactService interface
Adds the @deepseek-ai/dsh-compact interface package: the abstract
CompactService (ctx.compact) with compactIfNeeded / compactRegion, the
compact/* session-event types via SessionEventMap declaration merging, and the
capability-seam RFC. Wires the package into the three root tsconfigs and the
cordis catalog. A backend implementation lands separately.
2026-06-22 15:15:27 +08:00
Tianyi Cui 2086804b7e Merge branch 'worktree-subagent-seam-pr2.5' into worktree-subagent-seam-pr3
# Conflicts:
#	docs/module-graph.md
#	packages/subagent/README.md
2026-06-22 14:58:03 +08:00
Tianyi Cui e46ebcec89 Merge branch 'worktree-subagent-seam-pr2' into worktree-subagent-seam-pr2.5 2026-06-22 14:45:09 +08:00
Tianyi Cui 398b4f2ccf Merge branch 'worktree-subagent-seam-pr1' into worktree-subagent-seam-pr2 2026-06-22 14:36:57 +08:00
Tianyi Cui 8d111161de Merge remote-tracking branch 'origin/master' into worktree-subagent-seam-pr1
# Conflicts:
#	tsconfig.typecheck.json
2026-06-22 14:35:35 +08:00
Tianyi Cui 0c9ea3145f Extract the shared in-process driver into dsh-subagent-inprocess (review feedback)
The shared run driver lived inside dsh-subagent-spawn, so the spawn package
carried fork-aware seeding logic and dsh-subagent-fork depended backward on
dsh-subagent-spawn — the two in-process backends were not independent.

Move the driver (startInProcessRun, depthOf, SubagentDepthError,
InProcessRunOptions) into a new pure-library package
@deepseek-ai/dsh-subagent-inprocess that registers nothing. spawn and fork now
both depend only on that driver and neither knows about the other; spawn no
longer re-exports it and fork no longer imports from spawn.

Also wire BOTH backends in examples/coding-agent/cordis.yml (config-only): load
dsh-subagent-spawn + dsh-subagent-fork + two dsh-tool-subagent instances with
distinct toolNames (subagent → spawn, subagent_fork → fork), demonstrating that
exposing multiple transports needs no code change.
2026-06-22 14:27:38 +08:00
Tianyi Cui 3a67d0a882 docs: sync development CI gate docs 2026-06-22 12:54:11 +08:00
Tianyi Cui 475c68cbe8 docs: sync package cookbook with build config 2026-06-22 11:36:35 +08:00
Tianyi Cui f393043b03 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
Hypatia May 0298f5c6f0 Merge remote-tracking branch 'origin/master' into session-surface
Reconcile the session-surface feature with master's package reorg and
simplifications:

- Adopt master's folded usage (assistant/message.usage; standalone `usage`
  event dropped) and re-attach surface metadata (surfaceOp/sourceEventSeqs).
- Add surface opts to master's new max-tokens assistant/message append.
- Port surface columns onto the coordinator-refactored SQLite backend at its
  new path; drop the dead v1->v2 migration (bump-and-reject, no migration per
  pre-release policy).
- Move the session-surface RFC into implemented/architecture/ and refresh its
  stale body (no migration, SESSION_FORMAT_VERSION=0, renamed package paths).
- Update the core-data-structures catalog SessionEvent blocks for the two new
  surface fields; regenerate the cordis catalog.
- Re-harvest ACP snapshot fixtures (keyless replay) to carry surface metadata.
2026-06-22 10:35:59 +08:00
imccyu fa9438bf16 docs: update rewriteRelativeImportExtensions to current rfc 2026-06-22 09:03:28 +08:00
Tianyi Cui 413db68008 Clarify the child-ordering invariant (Codex review follow-up)
The createdAt+recordedId child sort comment over-claimed "tie-safe". Codex
flagged that a same-millisecond sibling tie would be broken by random session
id, which does not recover first-call order. In the current synchronous cut that
tie is unreachable — the subagent tool awaits one child's result and disposes it
before the parent starts the next, so siblings' createdAt values are strictly
ordered and match first-call order. Restate the comment to that real invariant
(at both the replay sort and the harvest sort), note that the id tiebreak only
makes a degenerate collision deterministic, and flag the concurrent-subagent cut
that would need a real first-call ordinal with XXX(concurrent-subagents). The RFC
records the same limitation. Comment/doc only — no behavior change.
2026-06-22 09:01:09 +08:00
Tianyi Cui e68496fd79 Add per-session snapshot replay for nested agents (PR2.5)
The snapshot tier was built single-session: dsh-llm-replay served calls from
one global positional cursor, and the harness harvested one session log. A
subagent runs as a second agent with its own session, so a parent→child
scenario could neither replay deterministically nor harvest the child's log.
This resolves the TODO(subagent-snapshots) deferral from the subagent RFC.

- Stamp the calling session id onto the model request: GenerateOptions.sessionId
  (typed Branded<'SessionId'> to avoid the dsh-llm↔dsh-session cycle), set by the
  agent loop from agent.session.id. Adapters ignore it; an llm/stream listener
  routes by it.
- Key replay per session: dsh-llm-replay loads the parent log plus one per child
  (childFiles / $DSH_SNAPSHOT_CHILD_FILES), derives a script per recorded session,
  and binds each live (freshly-random) session to a recorded script by first-call
  order — parent first (earliest createdAt, first to stream). Keys by WHO calls,
  so it survives a future concurrent/backgrounded subagent; a global cursor would
  not. An unrecorded extra session fails loud.
- Harvest every log: the harness collects all .jsonl across cwd buckets, ordered
  primary-first (top-level, then children by createdAt), and RunResult exposes the
  plural sessionLogs. The spec writes each back on record (session.jsonl +
  session.<n>.jsonl) and diffs each against its fixture on replay.
- Wire the subagent seam + spawn + fork + tool into the acp-agent example (both
  cordis configs) and add two nested scenarios recorded against the real API:
  subagent-spawn (parent + 1 child) and subagent-multi (parent + 2 children, 3
  sessions). Both replay keyless in the default gate.

A new RFC documents the design (docs/rfc/implemented/testing/). Single-session
replay is unchanged (a call with no sessionId is one anonymous primary session).

TODO follow-up: a dedicated branded-ids package could own the SessionId brand and
dissolve the cross-package cycle note; out of scope for this testing PR.
2026-06-22 08:39:36 +08:00
Tianyi Cui 9c1048f2b5 Honor an already-aborted request signal in the subagent driver (Codex review round 2)
A request signal aborted BEFORE the run starts never fires an `abort` event
(`addEventListener` only fires on the transition), so the backend-level bridge
missed it and ran the child to `completed`. The driver now checks
`request.signal?.aborted` at the top of the result path and settles `aborted`
without running the child. Regression test proven red on the pre-fix code.

Also refresh two stale RFC prose blocks the round-1 fix left behind: the
subagent RFC's Problem statement (cited the removed `TODO(sub-agents)` markers
and claimed nothing existed yet) and the unify-id RFC's fork/spawn risk bullet
(described the seam as "explicitly deferred" via `AgentLoop.create`'s old TODO),
now pointing at the realized seam.
2026-06-22 07:32:09 +08:00
Tianyi Cui b82c310db3 Fix subagent in-process result scoping (Codex review round 1)
Two merge-blocking bugs in the shared in-process run driver, both rooted in
`readResult` scanning the whole child session and deriving the stop reason only
from `turn/end`:

- A pre-turn `cancel()` cleared the queued prompt before any `turn/end` was
  logged, so the run settled `error` instead of `aborted`, violating the
  `SubagentRun.cancel()` contract. The driver now tracks that a cancel was
  requested and maps the no-turn case to `aborted`.
- A fork child whose own turn produced no `assistant/message` returned the
  SEEDED parent's last message as a `completed` success. `readResult` now scopes
  to the child's OWN events (after the seed prefix), so a message-less child
  yields empty output.

Both fixes carry a regression test proven to go red on the pre-fix driver.

Also: correct the `SubagentRun.id` / event-payload docs (it is the child AGENT
id, not a session id — the backend mints distinct tokens); refresh the stale
`coding-agent` welcome string (subagent is now a tool); and replace the stale
`TODO(sub-agents)` "deferred" prose in the Agent interface, core.md, and
architecture.md with an accurate pointer to the realized seam.
2026-06-22 06:47:20 +08:00
Tianyi Cui 07f4047ff0 Use explicit ts specifiers for declarations
Restore explicit .ts relative specifiers in source and enable rewriteRelativeImportExtensions so emitted JS uses .js while declarations keep explicit .ts specifiers. Add a NodeNext declaration-consumer gate to prevent extensionless declaration regressions.
2026-06-22 06:11:00 +08:00
Tianyi Cui 7aabd2a3df 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
imccyu 94e7355449 docs: update packages hierarchy to current rfc 2026-06-22 01:38:44 +08:00
imccyu 732e121ff6 fix: make constraints, lint and md-links happy 2026-06-22 01:38:44 +08:00
imccyu 74cdd9a2e5 Merge remote-tracking branch 'origin/master' into feat/adr0016-type-build-check 2026-06-22 00:35:51 +08:00
imccyu fd55d20548 revert: remove the non-branch changes introduced during the rebase 2026-06-21 23:57:00 +08:00
Tianyi Cui 861791d2d8 Contain subagent lifecycle listeners per-listener, not per-emit
A single try/catch around ctx.emit prevented a thrown subagent/start or
subagent/end listener from propagating, but cordis emit dispatches listeners in
a `.map(cb => cb())` that HALTS on the first throw — so a bad subscriber still
starved the listeners registered after it, violating the AGENTS.md
callback-boundary rule ("one bad subscriber must not starve the listeners after
it"). Resolve the listener callbacks via ctx.events.dispatch and contain each
call individually, the same per-listener guarantee BashExecutor.notifyTaskDone
gives its own listener set.

The two containment tests now register TWO listeners where the first throws and
assert the second still observes the event (start) and the settle (end) — a
regression that fails on the per-emit code (verified: reverted, watched both go
red, restored).
2026-06-21 23:44:07 +08:00
Tianyi Cui 25eccdaedc Fix review findings: lifecycle containment, configurable tool name, coverage, type catalog
Address four findings from the first Codex review round:

- Contain subagent/start|end listener throws (emitContainedStart/End): a
  thrown lifecycle listener could escape SubagentService.start() before the
  caller received the live run to dispose it (a leaked child), and a thrown
  subagent/end listener could surface as an unhandled rejection on the detached
  result-settle hook. Both emits now log-and-contain, mirroring the agent
  registry's agent/created|disposed containment.
- Make the model-facing tool name configurable (Config.toolName, default
  subagent). The docs say to load dsh-tool-subagent once per provider to expose
  multiple transports, but the hardcoded name made the second load throw a
  duplicate-tool-name error; a distinct toolName per load is now required and
  documented.
- Reach the per-file 100% coverage gate: tests for the subagent/end error
  branch, lifecycle-listener containment, every stopReasonError arm + the
  merge-extensible default, the multi-provider toolName path, agentOptions
  forwarding, and the direct-apply schema-bypass fallbacks.
- Document the seam vocabulary in docs/core-data-structures/subagent.md with
  verbatim type-equiv blocks + manifest entries, and link it from core.md (a
  brand-new core/seam type the doc-sync gate cannot detect on its own).
2026-06-21 23:15:43 +08:00
Tianyi Cui 1a81f2cccd Add subagent capability seam: interface, mock backend, model-facing tool
Introduce the `packages/subagent/` group and the abstract subagent seam — an
agent delegating to a child agent — as a named-provider registry (`ctx.subagents`),
unlike the single-implementation bash seam, so multiple transports (in-process,
ACP, future A2A) coexist. This first PR lands the interface, a scripted test
backend, and the model-facing tool, validated through the real cordis load path.

- dsh-subagent: SubagentService registry + SubagentProvider/SubagentRun
  vocabulary + subagent/start|end events. Start-time capabilities (outputSchema,
  depthLimit, toolFilter) are checked pre-start and rejected loud; runtime
  capabilities (sendMessage, resume) are optional methods on SubagentRun.
- dsh-subagent-mock (support): scripted provider for keyless, deterministic
  tests through the real Loader/export path.
- dsh-tool-subagent: the model-facing `subagent` tool, config-bound to one
  provider; synchronous collect with try/finally dispose, signal->cancel
  bridging, and non-completed-stop-reason -> isError mapping.
- Proposed RFC documenting the seam, the fork-vs-spawn-as-separate-backends
  decision, own-session isolation, synchronous-collect scope, and the deferral
  of background/poll/spill to a future unification with bash.
- Wire the new group into tsconfigs, build refs, package hierarchy docs, the
  module graph, and the cordis catalog.

RFC: docs/rfc/proposed/feature/2026-06-21-subagent-capability-seam.md
2026-06-21 22:31:56 +08:00
Tianyi Cui 0b75598c91 Merge remote-tracking branch 'origin/master' into worktree-simplify-extract-examples 2026-06-21 20:36:05 +08:00
Tianyi Cui c85713d11e Merge remote-tracking branch 'origin/master' into worktree-simplify-snapshot-goldens 2026-06-21 20:34:55 +08:00
Tianyi Cui 5d7af3be82 Merge remote-tracking branch 'origin/master' into worktree-simplify-trace-events 2026-06-21 20:33:53 +08:00
Tianyi Cui 4ead67c06d Merge remote-tracking branch 'origin/master' into worktree-simplify-agent-stop 2026-06-21 20:32:21 +08:00
Tianyi Cui 74344a8bd4 Merge remote-tracking branch 'origin/master' into worktree-simplify-branded-ids 2026-06-21 20:30:41 +08:00
Tianyi Cui fa5cf0afd7 Merge remote-tracking branch 'origin/master' into worktree-simplify-prune-seam 2026-06-21 20:27:19 +08:00
Tianyi Cui 6cb8f35adb Merge remote-tracking branch 'origin/worktree-simplify-snapshot-goldens' into worktree-simplify-extract-examples
# Conflicts:
#	AGENTS.md
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