- AGENTS.md: require merging PRs with a merge commit (gh pr merge
--merge), never squash/rebase — the per-PR commit history (review-fix
and regression-test commits) is intentional record.
- Add scripts/verify-md-wrap.ts: a doc-sync gate that fails on
hard-wrapped prose paragraphs (one physical line per paragraph), with
smart exemptions for fenced code, tables, lists, blockquotes, headings,
HTML comments, hrs, and reference defs. Scope covers README.md,
docs/**/*.md, packages/*/README.md, plus AGENTS.md / packages/AGENTS.md
(the files doc-sync did not previously cover). Folded into doc-sync so
it rides the existing pre-push and CI gates.
- Sync AGENTS.md and docs/development.md doc-sync descriptions and
command lists to include verify-md-wrap.
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.
Codex review follow-up:
- Update docs/development.md: add verify-module-graph to the pre-push and
CI gate lists and gen/verify-module-graph to the daily commands, so the
contributor guide matches the new freshness gate.
- Emit the module-graph.md intro paragraph as a single line (repo Markdown
convention: one line per paragraph), since regenerating would otherwise
reintroduce hard wrapping.
Replace the alphabetical package ordering with a Kahn-style topological
sort (alphabetical tiebreak within each layer to stay deterministic), so
the table and graph list leaf interfaces first and dependents last.
Add scripts/gen-module-graph.ts, which derives the inter-package
dependency graph from each package's @deepseek-ai/dsh-* peerDependencies
and renders docs/module-graph.md (a GitHub-native Mermaid graph plus a
dependency table). Output is deterministic so a regenerate-and-diff
check is stable.
Wire a freshness gate the same way doc-sync is wired (ADR 0007: hooks
and CI run the same package.json scripts): verify-module-graph runs in
pre-push (lefthook) and as a CI step. It fails if the committed file
drifts from what the generator would produce.
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).
Records the why behind the Yarn 4 → pnpm move (PR #39): ecosystem
alignment, strict-linker phantom-dependency safety, build-script
allowlisting, and the package-manager-independent constraints script.
Captures migration-time install benchmarks and notes the gate suite
passes unchanged on pnpm.
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.
The resume seam intentionally throws a plain Error (the JSDoc and #34
were aligned to "clear error"). Match the ADR 0016 prose, which still
said "typed error". Docs-only; no behavior change. (Also carries the
#32 finalizer-containment fixes via the forward merge.)
Add a SQLite SessionPersistence backend (node:sqlite), a SECOND
implementation built to prove the abstract seam + the shared
runPersistenceContract suite are genuinely backend-agnostic. Each
SessionEvent maps 1:1 onto an events row (session_id, seq, type, time,
data); append is an INSERT inside a transaction asserting the
contiguous-seq contract; the mutable SessionSummary lives in the
sessions metadata row.
It satisfies the SAME contract semantics as the JSONL backend, expressed
over rows instead of file bytes:
- Lazy materialization: create() records intent in memory; no row until
the first append (a never-appended session is absent from has()/list()
via a materialized flag set inside the first append transaction).
- Crash-tail-on-load: load() returns events only through the last
complete turn/end and deletes the uncommitted tail; a seq gap in the
committed region makes the session unloadable.
- Transactional append: a mid-batch failure (a UNIQUE seq collision from
a concurrent writer) rolls back entirely, keeping the cursor truthful.
Like the JSONL backend it is also the write-path plugin (session/event →
buffer → session/flush drain, onCreated seed/adopt/collision handling,
HMR seeding, dispose-to-quiescence). The package runs the shared
runPersistenceContract suite plus SQLite-specific tests (transaction
rollback, crash-tail cut, schema version, HMR adoption).
Docs flip every "SQLite is future/deferred" reference (ADR 0016,
architecture.md, the persistence module doc + README) to "implemented;
the contract holds both backends to identical semantics".
Add the agent-creation factory seam on ctx.agents (AgentRegistry):
setFactory/create/resume plus the AgentFactory interface and
CreateAgentOptions/ResumeAgentOptions. AgentLoop implements AgentFactory
and registers itself via ctx.agents.setFactory(this), so plugins
create/resume agents through the interface without depending on the
concrete loop package.
- create({ agentId, sessionId, meta?, agentOptions? }) — programmatic
create on a caller-supplied session id (e.g. an ACP-generated id).
- resume({ agentId, resumeSessionId, agentOptions? }) — load a persisted
session via ctx.sessionPersistence (RFC 009) and resume an agent on it;
the live session id is the resumed id, turn numbering and derived
history continue from the loaded log. sessionPersistence is NOT
hard-injected (non-persistent demos still work); resume rejects with a
typed error when it is absent. assertAgentIdFree runs before any
session is created (and again after the load await) so a duplicate id
never leaves an orphaned live session.
Adds the runtime dsh-session-persistence dependency to agent-loop.
Add the durable session-persistence capability seam (ADR 0016): an
abstract SessionPersistence service (dsh-session-persistence,
ctx.sessionPersistence) defining create/append/load/list/has/delete/
update over the existing SessionEvent — no parallel persisted type — and
a first implementation (dsh-session-persistence-jsonl): an append-only
JSONL log per session with crash-safe atomic writes, truncation-repair
of a never-committed crash tail, and a read/replay path. SessionMeta
(format version, cwd, lineage) travels out-of-log via session.header.
A shared runPersistenceContract suite holds every backend to the same
append-only / contiguous-seq / lazy-materialization / serializability
semantics.
Config-driven create() now uses a per-run ${id}-session-<uuid> session
id so a fixed name no longer collides with an on-disk log once a durable
backend is loaded; each run is a new session (a demo simplification). The
examples drop their hand-rolled session-jsonl.ts and load the JSONL
backend via cordis.yml; CI smoke-loads it too.
The agent-facing create/resume factory that consumes load() is a
separate seam, deferred to a follow-up; this change stops at the load
primitive and does not reach into the loop.
Every session event now lives inside a turn (between turn/start and its
turn/end). The loop records queued user/message events AFTER turn/start;
an idle agent.inject() wraps its context/message in a one-shot injection
turn. This makes the turn the single durability/replay boundary so a
persistence backend can treat anything after the last turn/end as a
crash tail without dropping legitimate between-turn context.
A failure once the turn is already closed (rejecting session/flush, a
throwing agent/turn-end listener) has no in-turn position for a session
error event, so it is reported via agent/error + logger only; the turn
stays balanced. failTurn appends an error event only while the turn is
open.
The dsh-invariants plugin enforces turn-enclosure via a default case:
every non-boundary event type — including plugin-added merge-extensible
keys — must sit inside an open turn or it throws.
Documented in ADR 0017 + architecture.md.
Clarify that the CodeRuntime seam can host backends differing by
language/runtime, not just trust level — e.g. an AssemblyScript/WASM
backend (naturally sandboxed) and a Python backend over CPython or a
more controllable/embeddable interpreter. Note the execution contract
is language-agnostic while SDK codegen/prompt presentation is per-
language, and add these backends to the deferred follow-up list.
- Add an Alternatives section comparing Code Mode against the narrower
result-elision/summarization route over native tool-calling (solves
context-bloat but not composition/round-trips) and against parallel native
dispatch (a core-loop change that still lacks composition); states why
Code Mode is chosen and why the new code-execution surface is the price.
- Fix the Problem-section framing: it said the model "can run independent
calls concurrently," which contradicted the serialize-by-default decision.
Reworded to "express fan-out, initially serialized until concurrency-safety
metadata exists" — early win is composition + fewer round-trips, not parallelism.
- Concurrency: change from "may serialize" to mandatory serialize-by-default
via a per-run dispatch queue in the SDK bindings, with a non-overlap test as
a hard acceptance criterion (the binding shape otherwise makes Promise.all
dispatch concurrently before the tool contract has concurrency-safety metadata).
- node:vm guard: make it enforceable, not a README warning — CodeRuntime exposes
safe:boolean, the VM stub throws unless constructed { unsafe:true }, and
code-mode refuses to register run_code over an unsafe runtime unless separately
acknowledged (allowUnsafeRuntime); refusal path is tested.
- Prompt budget: drop the "zero prompt tokens" claim (the SDK .d.ts is injected
into the system prompt, so types do consume context) and add the explicit
budget/caching tradeoff — Code Mode's saving is on output/round-trips, not the
input-side tool description.
Proposes an optional Code Mode where the model writes a TypeScript program
against a generated SDK wrapping every registered tool, instead of emitting
one native tool-call per step. Implemented Cordis-style as a capability-seam
trio (code-runtime interface / code-runtime-vm node:vm reference stub /
code-mode consumer plugin) with zero core-package changes; the hardened
execution substrate is deferred to a follow-up RFC.
Every loop boundary appends the session event before emitting the Cordis
event (ADR 0003's append-before-emit rule) — except step/start, which was
inverted. A listener on agent/step-start that inspected session.events could
not see the step it was just told had started.
- Swap the two lines so session.append('step/start') precedes the emit.
- Fix the two stale pseudo-code copies (the runLoop JSDoc STEP-loop block and
docs/architecture.md) so neither shows step-start emitted before the append.
- Regression test: a step-start listener observes the matching step/start
event already at the tail of session.events. Verified the test fails on the
pre-fix (emit-first) order.
- 009: the crash-tail "overwrite" contradicted the append-only contract.
Name it explicitly as a one-time truncation-repair (ftruncate+fsync to
the last complete turn/end byte offset) that removes only the
never-committed crash tail; committed events are never rewritten.
Qualify the append/impl/ADR wording to match.
- 010: remove the remaining concrete-loop references — the session/new
and session/load table rows now point at the dsh-agent create/resume
factory, and the Risks disposal line uses the interface-level settle
signal (agent/status) instead of LoopAgent-only agent.done.
Resolve the inline review feedback on PR #18 (all verified against the
codebase, the published @agentclientprotocol/sdk@0.25.1 tarball, and
Cordis fiber semantics):
- 009: dsh-session owns SessionMeta (persistence re-exports) to avoid a
package cycle; split mutable summary into a sidecar so the event log
stays append-only and list/load can return it; pick one load-repair
rule (resume from the last complete turn/end, overwrite the orphan).
- 010: SDK has a zod peer dep + runtime zod/v4 import (drop "zero runtime
deps"); session/new needs a create seam taking {sessionId, meta};
propose an abstract create/resume factory on dsh-agent so the bridge
depends on the interface not the loop, and observe agent/status for
quiescence since agent.done is LoopAgent-only; add the explicit
TurnEndReason -> ACP StopReason wire mapping + test; reject non-empty
additionalDirectories for the MVP; remove the EOF blank line.
- 011: ctx.extend() does not create a disposable fiber — use a real
per-session disposer scope.
Three proposal documents, numbered in dependency order:
- RFC 009: an abstract, append-only, event-based SessionPersistence
service over the existing SessionEvent log (no parallel persisted
type), a JSONL impl, a SessionMeta header seam, and an async
AgentLoop.resume path. Design informed by Codex/Claude Code/
opencode/pi. Core design point; unblocks resume + ACP session/load.
- RFC 010: ACP (Agent Client Protocol) support as a dsh-acp
client-driver plugin on @agentclientprotocol/sdk, mapping ACP onto
the agent/* events and the tools/execute permission seam. Builds on
009 for session/load; single active session.
- RFC 011: multiplex concurrent ACP sessions over one connection
(bridge-layer change; downstream of 010).
The doc-sync gates were CI-only, so the AGENTS.md doc-sync promise could be
missed locally until after push. Add a shared `doc-sync` package.json script
(doc-typecheck + verify-event-taxonomy) wired into the lefthook pre-push job,
and point the CI step at the same script — one source of truth per ADR 0007.
Addresses PR review finding.
Introduce HarnessError in dsh-llm (the leaf package): a stable machine-routable
code distinct from the message, cause chaining, name from the subclass, plus
isHarnessError. LlmError, ToolArgsError, and InvariantError now extend it.
Tool failures carry the structure end-to-end: ToolExecutionResult gains
error: { name, code } (populated from a thrown HarnessError), and the loop
forwards it onto the tool/result session event (which gained the same optional
field) for retry/sandbox plugins and replay. The loop's toError wraps non-Error
throws in a HarnessError(code: UNKNOWN, cause) instead of a bare Error.
Landed last and in isolation so it's a pure upgrade over the plain Error+code
the earlier PRs used — independently revertible. Graduates RFC 005 pt 2 ->
ADR 0015; RFC 005 now fully implemented.
Two tsx CI gates make doc/code drift fail fast:
- doc-typecheck extracts every fenced ts block from README/docs/package READMEs,
compiles them with tsc --noEmit against a temp project (vendor->lib, harness->src
paths from tsconfig.typecheck.json), and fails on errors. Deliberate sketches opt
out with ```ts ignore-check; the opt-out ratio is reported and capped.
- verify-event-taxonomy asserts the docs/architecture.md taxonomy table names
exactly the events declared in the interface Events blocks. This surfaced three
events the table had been missing (tools/change, llm/adapter-change,
system-prompt/change), now added.
Doc snippets made compilable with stub imports/declares (1 genuine sketch ignored).
Wired into CI after typecheck. API reports (RFC 006 pt 3) deferred. Graduates RFC
006 pts 1-2 -> ADR 0014.
Adds fast-check + one tests/properties.spec.ts per protocol-shaped package
(llm/BlockAssembler, session, tools/schema DSL, agent-loop scheduling). The
tools suite includes the RFC 001<->005 composition property (generated args
satisfying a spec pass validateArgs), closing the validator/InferArgs drift
risk from ADR 0011. Loop properties are deterministic (settle on agent/status,
no sleeps).
The BlockAssembler suite found a real bug on first run: a duplicate block-end
at the same index overwrote an already-flushed block, so the streamed prefix
disagreed with final blocks(). Fixed (first close wins, matching the existing
straggler rule) + regression test. Graduates RFC 001 -> ADR 0013.
- HMR state soundness: inject sessions, rebuild per-session trace by replaying
each existing session's log at (re-)apply, so a reload mid-turn no longer
falsely rejects the next event
- tighten nesting: turn/end rejects an open step; step/start rejects an open
step; chunk/message/tool events must name the open turn+step; pendingCalls
clears at step/end so a cross-step tool/result can't satisfy a stale call
- drop the default export (it stripped the inject metadata when loaded by
name; functional plugins expose named exports only — matches tool-bash)
- document deepFreeze's top-down precondition; sync RFC 005/008 bodies to the
as-implemented decision
New @deepseek-ai/dsh-invariants plugin (pure listeners, off in prod) asserts
the event taxonomy at runtime — seq monotonicity, turn/step nesting, a
tool/result needs a prior tool/call (NOT the converse), legal agent/status
transitions — and deep-freezes logged event data so mutating history throws.
Seeded sessions are checked + frozen on session/created.
The real RFC 008 fix is always-on: deriveMessages now structured-clones the
content it emits, so the loop's sanctioned request/adapter mutation can no
longer reach back and rewrite the append-only log. The pervasive
DeepReadonly<T> type flip is rejected (compile-only, high-noise, castable) —
recorded in ADR 0012, which folds in RFC 008. Wired into both demos.