In Zed the tool-call card showed only "bash" — the bare tool name — instead
of what the command does. Fix it by letting each TOOL own how its calls render,
rather than the bridge special-casing names.
dsh-tools: add an optional two-state presentation seam to ToolDefinition /
defineTool — `presentCall(args)` (pending: title, kind, rawInput) and
`presentResult(args, result)` (completed: title?, content?). Provider-neutral
`ToolCallKind`/`ToolCallPresentation`/`ToolResultPresentation` vocabulary so
tools never depend on ACP. defineTool soft-validates args (display runs on log
replay, so a malformed/old shape returns undefined instead of throwing).
dsh-tool-bash: bash declares presentCall (model `description` → title, exact
`command` → rawInput, kind execute) and presentResult (wrap output in a fenced
```console block — a UI-only affordance kept out of the model-facing result);
bash_output/bash_kill present task-scoped titles.
dsh-acp: inject `tools`; a per-session `ToolPresenter` looks the tool up by name
and maps its neutral presentation to the ACP tool_call/tool_call_update wire
shape, with a generic fallback (title = name) for tools that declare nothing.
Because the `tool/result` event carries only {callId, content, isError}, the
presenter keeps a small bridge-local map of ONLY in-flight calls' (name, args),
keyed by callId and removed as each result is presented — no event-schema or
core change. Replay uses a throwaway presenter so loaded sessions render
identically to live ones.
Tests: dsh-tools defineTool presenters (typed args, soft-validate), tool-bash
bash/bash_output/bash_kill presenters, acp ToolPresenter (tool-owned mapping,
unknown-callId fallback, in-flight-only map), and an end-to-end turn through the
bridge. The key-gated e2e now asserts a real bash call's title is the model
description (not "bash") and rawInput is the command — verified against the real
DeepSeek model. The test harness derives its inject from the bridge's exported
`inject` so it can't drift again.
Codex CLI review flagged 2 READMEs still referencing old TODO markers
after source had been updated to XXX:
- packages/bash-local/README.md: TODO(stateful-shell) → XXX(stateful-shell)
- packages/tool-bash/README.md: TODO(tool-bash-owner-hmr) → XXX(tool-bash-owner-hmr)
No vendor files changed. Classification of non-vendor TODOs:
TODO → XXX (someday-maybe, no commitment):
packages/bash-local/src/run.ts:248
— XXX(stateful-shell): design reference for future workflows;
current spawn-per-call is deliberate and works fine.
packages/tool-bash/src/index.ts:23,165
packages/tool-bash/tests/tools.spec.ts:413
— XXX(tool-bash-owner-hmr): HMR-only issue; dev-only,
single-user cooperative editor, not a trust boundary.
All other TODOs kept as-is:
TODO(demo) — should fix for production deployment
TODO(sub-agents) — planned feature
TODO(review) — validation pending real adapters
TODO(http) — should refactor raw fetch
TODO(permissions) — important security feature
TODO(rfc010-*) — deferred ACP features, should land when resources permit
parallel execution — phase 1 sequential, performance improvement
Reclassify 4 markers that did not match their actual urgency per
docs/development.md:
TODO → XXX (someday-maybe, no commitment):
vendor/cordis/src/reflect.ts:250 — enhance error message
packages/bash-local/src/run.ts:248 — stateful-shell design reference
FIXME → TODO (should fix soon, not blocking release):
vendor/loader/src/index.ts:108 — merge config
vendor/cordis/src/fiber.ts:376 — internal/fiber-info
- AgentLoop.resume uses `this.ctx.get('sessionPersistence')` (strict) instead
of the `, false` overload: still topology-independent, but an inactive/
absent backend reads as undefined (rejected by the existing guard) rather
than being handed back mid-teardown.
- Correct the bridge teardown comment: an ACP-created agent's registry entry
binds to the BRIDGE fiber (the factory is reached through the bridge's
traceable proxy, so AgentLoop.start's `this.ctx.effect` registration uses the
caller context), not the AgentLoop fiber — so an ACP-only HMR dispose
reclaims it. Add a regression test pinning that ownership.
- Sync the ctx.get guidance in the post-mortem, packages/AGENTS.md, and the
dsh-code-review skill to the strict form.
Two independent bugs made the ACP server crash the moment an editor (Zed)
connected, despite 178 green unit tests at 100% coverage:
1. `session/new` threw `cannot get property "agents" without inject`. Root
cause: a stray `export default apply` made the cordis Loader's
`unwrapExports` (`exports.default ?? exports`) collapse the module to the
bare `apply` function, discarding the sibling `inject`/`name`/`Config`
named exports. The plugin fiber was built with empty `inject`, so every
`ctx.<service>` read in `apply` threw at load. Fix: remove the default
export so the Loader uses the namespace.
2. `session/load` threw `cannot get property "sessionPersistence" without
inject`. `AgentLoop.resume` read `this.ctx.sessionPersistence` (a service
it deliberately does NOT inject); the property proxy's ancestor-only fiber
walk fails through the bridge's traceable shadow. Fix: read it via
`this.ctx.get('sessionPersistence', false)`, the topology-independent
global-store lookup.
Why the suite missed both: every test mounted the plugin by hand
(`ctx.plugin({name,inject,apply})`), bypassing `unwrapExports` entirely, and
the only test driving these RPCs was key-gated (skipped in CI). Added a no-key
`session/new` e2e that boots the real example through the real Loader — it
fails loudly on bug #1 without an API key. Set `TSX_TSCONFIG_PATH` in the e2e
spawn so the subprocess resolves workspace `paths` from a temp cwd (it was
silently falling back to a stale built `lib/`).
Docs: post-mortem 0001; AGENTS.md "line coverage is not behavior coverage" +
with-key/smoke-test philosophy; packages/AGENTS.md plugin-export-shape and
ctx.get rules; dsh-code-review SKILL checks.
Collapse docs/adr/ and docs/rfc/ into a single docs/rfc/ with proposed/,
implemented/, and rejected/ subfolders. Every file is renamed to
yyyy-mm-dd-topic-title.md, where the date is when the topic was first
proposed (from git history). ADRs and RFCs that covered exactly the same
topic are merged (property-based testing, session persistence); the
umbrella RFC 005 stays split across its three implemented decisions, and
RFC 006's deferred part-3 (API extractor reports) splits into its own
proposed RFC. All cross-references become machine-checkable relative
links instead of bare "ADR NNNN" / "RFC NNN" prose.
Add a verify-md-links doc-sync gate (scripts/verify-md-links.ts) that
checks every relative Markdown cross-link resolves, wired into doc-sync
alongside verify-md-wrap. This makes the reorganization self-verifying:
the same change that rewrote ~forty inter-doc links adds the check that
proves none dangle. Document the cross-link convention in a new
docs/AGENTS.md and record the gate as an implemented RFC.
doc-sync, typecheck, lint, and the full test suite (667) all pass.
Lifts the RFC 010 § Deferred restriction that the server had to launch in the
workspace ("cwd must equal the launch directory"). An editor can now open any
project folder, and N concurrent sessions over one connection can each target a
different directory.
- packages/acp: drop the `cwd === process.cwd()` guard in validateWorkspaceParams
(keep "must be absolute" — the cwd becomes the session header / bash workdir),
and drop the persisted-cwd-vs-launch-dir check in session/load (a resumed
session keeps its original header.cwd, so its bash tools run in its workspace).
- packages/tool-bash: the missing link — default the bash workdir to the calling
agent's session cwd (`exec.agent.session.header.cwd`) via a new resolveWorkdir
helper. An explicit model `workdir` still wins; a relative one resolves against
the session cwd. This is the only correct spot for multi-session: N sessions
share one ctx.bash executor, so the workdir must come per-call from exec.agent,
not executor config. Falls back to the executor default when no session cwd is
available (preserves non-ACP behavior).
- Trust: the cwd originates from the ACP client (the user's editor) at
session/new — same trust level as the old launch dir; no new untrusted-input
path. `additionalDirectories` (scope widening / sandbox) stays rejected.
- Tests: bridge accepts any absolute cwd + records it on the header; session/load
honors the persisted cwd; bash defaults to / resolves relative against the
session cwd; two sessions with different cwds each run bash in their own dir;
non-absolute cwd still rejected. 100% per-file coverage maintained.
- Docs: RFC 010 status + § Deferred cwd bullet marked RESOLVED; acp README adds a
Per-session cwd section; tool-bash + example READMEs and e2e comments updated.
The loop logs the assistant/message (carrying tool-call blocks) BEFORE running
the tools, so a crash mid-tool leaves durable tool calls with no matching
tool/result. interruptedTurnClosers only added step/end + turn/end, so a resumed
session's deriveMessages() replayed a dangling assistant tool-call — which every
provider rejects as an invalid transcript on the next request.
interruptedTurnClosers now scans the interrupted turn for tool-call blocks
without a matching tool/result and synthesizes an error tool/result for each
(before the step/end), so the rehydrated history is a valid transcript. Adds a
dedicated repair.spec.ts and a shared-contract case proving both backends pair
every orphaned call with a result. Docs (ADR 0018, both persistence READMEs,
load() JSDoc) updated.
Also fixes the echo-agent README session-cleanup path: demo:echo runs from the
repo root, so sessions land in <repo-root>/.sessions/_no-cwd/, not
examples/echo-agent/.sessions/ (review #33).
Mirror the JSONL backend's crash-recovery contract change: load() now PRESERVES
the real events of an interrupted final turn (a turn can be huge — truncating it
would destroy work) and durably CLOSES the orphaned turn with synthetic boundary
events (step/end if open, then turn/end {interrupted}) inside one transaction
that also deletes any torn tail row. load() is therefore mutating; the deferred
truncation-repair on the next append is gone. Replaces cutAtLastTurnEnd with
scanRows (longest preserved prefix + torn-tail offset). Updates the sqlite tests
and README to the preserve-and-close semantics; the shared runPersistenceContract
suite now holds both backends to identical interrupted-turn behavior.
A config agent with `resumeSessionId` set continues a persisted session
instead of starting a fresh `${id}-session-<uuid>`. The id is sourced from
an env var in cordis.yml, so the coding-agent demo can resume a prior
conversation without code changes. The resume is deferred until the
`sessionPersistence` backend loads (via ctx.inject) and is contained: a
missing/unreadable id logs a warning and starts no agent. Adds a real-API
resume e2e proving cross-process continuity through the JSONL backend.
A crash can leave a durable log whose final turn never closed. The old
behavior truncated everything after the last turn/end as a "crash tail".
But a single turn can be HUGE in a long-horizon task (many steps, large
tool output), so truncating it silently destroys real, durably-written
work — truncating a turn is wrong.
New crash recovery (ADR 0018): load() PRESERVES the interrupted turn's
events and CLOSES the orphaned turn by durably appending synthetic
boundary events — a step/end if a step was open, then a turn/end carrying
the new merge-extensible TurnEndReason {kind:'interrupted'}. load()
returns the balanced log, so a resumed session is immediately usable. Only
a never-fully-written TORN tail fragment is discarded; corruption in the
committed region is still unloadable.
- dsh-session: TurnEndReason {kind:'interrupted'} + shared
interruptedTurnClosers() repair helper.
- JSONL backend: scanLog preserves the longest contiguous prefix
(including a partial final turn); loadCore truncates a torn fragment and
durably writes the closers, returning the balanced log.
- runPersistenceContract gains a crash-recovery test (both backends + mock).
- Docs: ADR 0018/0017, architecture.md, package READMEs.
Also (review #33): RFC 013 records the "move event vocabulary to Zod"
question (merge-extensible maps → runtime schema registry) + blast radius;
deferred, not done here.
The `materialized` INTEGER column was redundant: create()/update() already
keep a lazy session in memory and write no row, so a `sessions` row is
written only by the first append. Its EXISTENCE is the materialization
signal — has()/list() now report exactly the sessions that have a row,
matching the JSONL backend's "file exists ⇔ materialized".
The column only existed to force has()/list() to FALSE for an all-tail
crash (a partial first turn, zero committed events). That actually
DIVERGED from the JSONL backend, whose file (and thus has()=true) survives
a first append that never reached turn/end. Removing the column drops that
special case: an all-tail session keeps its row and stays present, the
same as JSONL. The orphaned tail rows are still removed by the deferred
truncation-repair on the next append, and load() stays non-mutating.
Also: add a TODO to route through a cordis db service if one is adopted,
and correct the README's Node-version framing to the repo's engines (>=24).
Lifts the RFC 010 single-session-per-connection cap: the bridge now runs N
concurrent sessions over one connection, each mapped to its own LoopAgent.
- packages/acp: live sessions held in a Map<sessionId, SessionRecord> with an
agent→sessionId reverse WeakMap so agent/* events (which carry only the
Agent) demux in O(1). Every session/event and agent/status is routed strictly
to its owning record — concurrent sessions never cross-settle or interleave
their session/update notifications. Per-session state: one in-flight prompt
each, session/cancel aborts+settles only its own agent/prompt, session/load
reserves a per-id load slot (distinct ids load concurrently; re-loading a live
id is rejected), and disposal drains every live session in parallel to
quiescence.
- packages/tool-bash: record each background task's owning agent at spawn and
keep it for the executor's lifetime (NOT cleared on completion).
bash_output/bash_kill reject a task owned by a different agent (a task with no
owner is open; a no-agent caller can't access an owned task). Task ids are
global and predictable, so this is the fence that stops one session's agent
from reading/killing another session's background task.
- Per-session permission ownership and a per-agent disposer seam stay deferred
(depend on the deferred permission gate); the reverse map the gate will route
through is in place. RFC 011 stays `proposed`.
- Tests: two sessions stream concurrently without interleave; cross-session
cancel isolation; per-session in-flight enforcement; dispose-all-to-quiescence;
bash cross-session read/kill rejected (+ no-agent and unowned-task cases).
- Docs: RFC 011 implementation-status note; acp + tool-bash READMEs; example
MVP-limitations updated. 100% per-file coverage maintained.
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).
master's pnpm migration claimed ADR 0016 (0016-pnpm-over-yarn), which
collides with this stack's session-persistence ADR. Renumbering the
session-persistence ADR to 0018 (turn-enclosure stays 0017); update the
json.ts module-doc reference accordingly.
Add a `max-tokens` variant to `TurnEndReasonMap` and carry the model
finish reason up from `runStep` to `runTurn`, applying the rule "any
max-tokens step in the turn surfaces as max-tokens" (disposed/aborted/
error still take precedence). This lets consumers distinguish a clean
stop from a truncated one — the contract RFC 010's ACP bridge maps to
the `max_tokens` stop reason.
Also add an AGENTS.md rule: write an ADR when (and only when) a PR makes
a durable, contested, surprising decision.
materialize() removed the temp hard link in a finally that ran BEFORE
syncDir() and before state.materialized/cursor advanced. If link()
succeeded (log published) but the temp rm then threw, materialize()
rejected after publishing — leaving state.materialized false, so the
buffered events stayed unpersisted and every retry wedged on the
"already exists" exists() backstop.
Restructured to the robust shape: track link() success; on link failure
remove the temp (the only reference) before propagating; on success
fsync the directory, mark materialized, THEN best-effort remove the
now-redundant temp link (a leftover *.tmp is harmless and never read).
A temp-rm failure can no longer reject a session whose log published.