Files
PaperClipAI/packages/paperclip-runner
DottaandPaperclip 94e8dec56b fix(runner): preserve tool outcomes through shutdown and restart (#14734)
## Thinking Path

> - Paperclip is the open source app people use to manage AI agents for
work.
> - The runner sends authorized tool calls to the server and saves their
results.
> - A provider turn can stop while a server write is still running.
> - The old shutdown path invented a failed result that could conflict
with the real result.
> - Truncated execution input and incomplete recovery records made the
failure harder to diagnose.
> - This pull request preserves exact inputs and actual outcomes through
shutdown and restart.
> - Tests force the race and crash boundaries so safe retries do not
repeat writes.

## Linked Issues or Issue Description

**What happened?**

Stopping a turn during a server tool call could record a false failure,
then reject the actual result as a conflict. The diagnostic input
formatter could truncate instruction content before execution. A crash
during saved-result delivery could leave that delivery permanently
indeterminate. Cleanup could hide the first failure, and a retry could
overwrite earlier run logs.

**Expected behavior**

Keep dispatched tools pending until their actual result is known.
Preserve accepted input bytes. Accept identical result delivery without
failing the task. Reject conflicting results with enough evidence to
diagnose them. Recover saved-result delivery without repeating the
business operation.

**Steps to reproduce**

1. Hold an instruction update at the filesystem commit barrier.
2. Stop its provider turn before the server returns the result.
3. Release the write, deliver its result, and replay the same result.
4. Repeat with a restart before and after the delivery receipt is saved.
5. Check that there is one write and one audit row, and that the exact
result survives.

**Paperclip version or commit**

The change was developed from `44736c9c7` and rebased onto `0e5830887`.

**Deployment mode**

Self-hosted server with the native runner. Tests use local runner
processes, scripted providers, and PostgreSQL.

Related work: #12353 added durable semantic tool receipts; #12384 added
durable Codex tool recovery; #12404 bound semantic tools to ACPX
sessions. #14633 covers separate native-provider cancellation and
qualification work. This PR addresses server semantic-tool outcomes and
their durable delivery. No duplicate fix was found. AgentMail discovery
is outside this PR.

## What Changed

- Close turn admission without inventing results for dispatched tools.
Keep pending calls and accept late actual results.
- Accept identical result replay with a diagnostic warning. Include call
identity and both result hashes in real conflict errors.
- Preserve exact execution arguments. Reject prohibited or oversized
input before dispatch. Keep diagnostic previews redacted and bounded.
- Commit instruction-attempt evidence before the filesystem write. Save
completed mutation receipts so concurrent and restarted duplicates
return the first result. Recheck authorization before replay. An attempt
without a completed result stays unknown and cannot execute again.
Definite pre-write failures save and replay their original error without
another write.
- Recover an interrupted saved-result delivery only for backends with
durable result receipts. Never replay an ordinary business operation
with an unknown outcome.
- Preserve the initiating error when cleanup also fails. Record
incomplete settlement evidence. Propagate typed unknown-outcome errors
through the native tool wrapper without creating a false completed tool
result.
- Append run-log attempts and restore the durable log before appending
after local file loss. Reject incomplete restores. Publish a restored
prefix only if the destination is absent so concurrent attempts cannot
overwrite new lines.
- Add deterministic race, crash, replay, authorization, exact-content,
and log-restoration tests. Document their assertions in
`packages/paperclip-runner/docs/durable-recovery.md`.

## Verification

- Current head: `7e088f4c7fba8ebabf98ae95485a5753b013d489`. All 55
applicable checks pass; four conditional/manual checks are skipped. This
includes build, typecheck, Rust, both runner TypeScript shards, server
and workspace tests, all eight browser shards, isolated runner
compilation, and the clean-install release dry run. [CI
run](https://github.com/paperclipai/paperclip/actions/runs/36746101110).
- Greptile reviewed this exact head at 5/5 with zero new findings. All
three earlier review threads are resolved.
- Focused local verification includes 11 instruction integration tests,
23 surrounding authority/tool tests, 26 run-log tests, and 169
controller/driver tests. The post-rebase controller/transport/runtime
selection passed 415 tests. The full Rust release suite passed 617 tests
with two ignored. The real-process SIGKILL recovery test passed three
consecutive runs.
- The fault matrix in
`packages/paperclip-runner/docs/durable-recovery.md` uses explicit
barriers, real PostgreSQL rollback, durable journal reloads, and killed
runner processes. It covers late results, identical and conflicting
replay, exact long content, concurrent log restoration, lost commit
acknowledgements, and definite failure replay after the original CAS
base becomes valid again. No paid model calls are needed.
- Full local recursive typecheck and build passed during implementation.
Server typecheck and the runner TypeScript build passed after the review
fixes. The broad local repository test run was stopped after repeated
database startup timeouts. Four timing/launch failures in an earlier
broad runner run passed focused reruns without changed assertions or
timeouts. These are local verification limitations; the complete
current-head CI suite is green. An earlier CI workspace job received an
infrastructure shutdown signal; its current-head replacement passed.

## Risks

- A stopped turn can remain blocked when a dispatched operation has no
proven result. The system does not guess its outcome or rerun its
effect.
- Conflicting results still fail settlement. Existing failed or
conflicting journals are not repaired automatically.
- Accepted semantic input is limited to 480 KiB of encoded JSON to fit
the encrypted transport. Larger input fails before execution.
- Instruction filesystem writes and database receipts are not one atomic
storage operation. A separately committed attempt and audit record
survive rollback. An attempt without a completed success or definite
pre-write failure receipt remains blocked as an unknown outcome. It is
not replayed or reported as success.
- Run-log restoration now reads the durable object before appending when
the local log is missing. Failed or incomplete reads reject the append.
- No schema migration, dependency change, workflow change, or AgentMail
change is included.

## Model Used

OpenAI Codex, GPT-6, with reasoning, tool use, code execution, and test
analysis. The exact served model ID and context-window size are not
exposed in this session.

## Checklist

- [x] I have included a thinking path that traces from project context
to this change
- [x] I have specified the model used (with version and capability
details)
- [x] I have checked ROADMAP.md and confirmed this PR does not duplicate
planned core work
- [x] I have searched GitHub for duplicate or related PRs and linked
them above
- [x] I have either (a) linked existing issues with `Fixes: #` / `Closes
#` / `Refs #` OR (b) described the issue in-PR following the relevant
issue template
- [x] I have not referenced internal/instance-local Paperclip issues or
links (only public GitHub `#NNN` / `github.com/paperclipai/paperclip`
URLs)
- [x] My branch name describes the change (e.g. `docs/...`, `fix/...`)
and contains no internal Paperclip ticket id or instance-derived details
- [x] I have run tests locally and they pass (focused suites; the broad
local run limitation is recorded above)
- [x] I have added or updated tests where applicable
- [x] I have updated relevant documentation to reflect my changes
- [x] I have considered and documented any risks above
- [x] All Paperclip CI gates are green
- [x] Greptile is 5/5 with no open P2s, recommendations, or follow-ups
- [x] I will address all Greptile and reviewer comments before
requesting merge

---------

Co-authored-by: Paperclip <noreply@paperclip.ing>
2026-09-30 11:54:56 -05:00
..

Paperclip Native Runner

This package is the standalone development boundary for Paperclip's native runner protocol, process supervision, durable transport, provider drivers, and normalized session backends. Rust owns the production runner under runner/; TypeScript provides the control-plane reference, browser SDK, scenario tools, and conformance oracle.

The package includes one coherent set of capabilities: PRP v1 validation and replay, a supervised local runner with a scripted fake harness, durable WebSocket delivery and recovery, qualified Codex, OpenCode, ACPX, Claude Managed, and AWS AgentCore drivers, live session and issue-thread surfaces, a public browser/React SDK, a standalone adapter demo, and a deterministic mock control plane. None of these surfaces imports or starts Paperclip's server, UI, CLI, or production database.

Public package surfaces

  • @paperclipai/paperclip-runner — production contracts, clients/backends, PRP validation/replay, canonical catalog/dispatcher, and compatibility check.
  • @paperclipai/paperclip-runner/testing — deterministic mocks plus PRP and semantic conformance kits. Tests and external conformance consumers import this explicitly.
  • @paperclipai/paperclip-runner/evals — versioned native-attempt metadata, fail-closed package/binary compatibility checks, and explicit runnerd artifact resolution for eval consumers.

The package root has no mock or scenario exports. Generic credential-free matrix orchestration lives in the workspace-private @paperclipai/paperclip-eval-kernel; scenario content and provider-backed eval campaigns remain outside the runtime package. See ADR 0001.

The two conformance surfaces intentionally prove different contracts. The existing runControlPlanePortConformance suite checks narrow PRP run/event persistence. CAPABILITY_HIGH_RISK_SEMANTIC_VECTORS and runSemanticConformanceKit compare normalized tool authorization, state, effects, audit, retries, conflicts, redaction, continuation, and terminal decisions. The production adapter stays App-owned and invokes Paperclip's real route/service authorities; it does not copy those rules into this package.

Quick start

Native provider debug-trace correlation uses an incremental index owned by its transport. Pending event lookups read only newly appended bytes, with a 1 MiB read budget per lookup; they retry until the observed suffix is indexed. Partial records remain pending, and trace replacement or truncation invalidates the index. Closing a transport clears its index. Other active transports cannot evict its progress. Records over 64 KiB are skipped by the correlation index without buffering or parsing their full contents; the original trace file retains them. Do not restore a full synchronous trace scan for each pending event: it blocks event delivery and can leave the board showing an active run after the provider turn has already ended.

The package also builds paperclip-runner-acpx-sidecar. This bounded v2 stdin/stdout bridge admits the pinned Claude and Codex ACPX profiles. It validates the exact model, session identity, tool catalog, structured input, and terminal settlement at the process boundary. Cursor, Copilot and Pi have separate candidate branches and remain unavailable in production until local and Daytona qualification passes. Their verified distributions are build-owned; no candidate accepts an arbitrary executable. See the rich ACP capability report.

Remote Codex sessions relay assigned app tools through the server's configured gateway. Small catalogs are sent directly. When a catalog would exceed the runner's 256-operation or 768 KiB contract limit, the server exposes paperclip_search_assigned_tools and paperclip_call_assigned_tool instead. Search returns bounded pages of names, descriptions, and input schemas. Each page intersects the session's pinned assignments with current gateway grants. An individual schema that exceeds a page returns an inputSchemaRef. The same search tool retrieves that schema in chunks via schemaTool and schemaOffset; discovery can continue past the large tool. Calls retain task ownership, work-mode restrictions, gateway authorization, approvals, and audit. Core task tools and the runner's completion tools keep their reserved space; no assigned tools are silently removed to fit the limit.

Native Claude skill assignments travel in the runtime-context snapshot through runnerd to the ACPX sidecar. After acquiring the provider lifetime lease, the host materializes the assigned bundles under the isolated Claude home's skills/ directory before launch. Reopening a provider refreshes that snapshot; project and ambient host settings remain excluded. This path is separate from the legacy claude_local adapter's remote skill staging.

The isolated Claude settings pin both model and availableModels to the user's requested ID. This keeps ACP from replacing an exact ID with a picker alias during selection and verification. Users can keep selecting models from the normal Claude catalog or entering custom IDs; unavailable models still fail at the provider rather than silently falling back.

ACPX Claude defaults to approve-all, shown as Full auto (approve all). OpenCode defaults to allow; native Codex defaults to never (no approval pauses). These defaults cover all assigned tools and connections, including provider-native operations. Full auto is resolved consistently for agent creation, adapter conversion, direct driver launches, and fresh/resumed turns. Explicitly stored restrictive modes still apply.

The runner's authenticated bridge and controller still enforce company access, action claims, task modes, and governed approvals. Provider permission defaults do not change workspace isolation or grant credentials or connection access. approve-paperclip remains an optional narrower mode for assigned planning and task tools; approve-reads allows assigned reads; deny-all rejects requests. None of these restrictive modes is the default.

Restrictive profiles route supported permission decisions through durable runtime requests and the existing task interaction controls. Requests are persisted before presentation; answers are checked against the offered decisions and acknowledged by the sidecar before settlement. Unknown, stale and duplicate responses fail. Missing provider decision support remains a blocked disposition, not implicit approval. Company access checks still run for each Paperclip tool. Provider death expires pending promises; approvals are never replayed into a replacement process.

Automatic Paperclip/read allowances currently require the Claude SDK dispatch boundary. Grok preserves these restricted settings, but its ACP requests lack independently bound tool authority. Those operations require a supported operator permission decision; a missing interactive responder stops with approval_required. An explicitly selected approve-all policy permits unattended Grok work in an assigned sandbox. Paperclip authorization and governed approvals still apply.

Runnerd selects only qualified provider profiles. Claude Managed and AWS AgentCore receive immutable company-profile snapshots with explicit retention, spend, and invocation limits. No provider process receives a Paperclip API credential or unrestricted server environment.

Claude Managed resolves its API key from the company secret bound to the selected profile. AWS AgentCore uses workload identity only; long-lived static AWS access keys are intentionally removed from the runner environment.

The Rust core includes a bounded client for the sidecar protocol. It enforces request identity, event order, frame and queue limits, timeouts, redacted diagnostics, and process-group cleanup. Runnerd selects this package-local transport only through an exact qualified provider descriptor.

Before a later provider adapter consumes a valid sidecar event, the Rust core also requires its optional or mandatory run and turn scope to match the active execution. Process and diagnostic events can remain global. All operational, tool, input, permission, and terminal events require the exact active binding.

A package-local payload boundary decodes events only after that scope check. It validates control identities, terminal status, question sets, and the admitted runtime event types and bounded fields. It redacts diagnostic and retained event values again before they can enter provider state.

Validated ACPX runtime events normalize into the same provider-neutral activity families as the direct Codex transport. Reasoning contents stay private. Tool targets are resolved within the workspace under the provider host's path semantics and receive a versioned sidecar boundary marker before becoming bounded, display-only PRP safe paths. Raw or unmarked provider locations fail closed. URI-scheme and Windows drive-shaped values require a separate sidecar attestation backed by an existing in-workspace entry or, for a not-yet-created edit target, an existing in-workspace parent. This preserves real POSIX colon filenames without treating arbitrary URI text as a path. Windows separators are canonicalized, and consumers must not reinterpret the display value as file-access authority. Operational semantic-result and terminal events remain reserved for the stateful adapter rather than being duplicated.

The ACPX provider reducer preserves that order while it tracks one active turn, bounded assistant text, semantic results, and pending tool or input correlations. Terminal events flush the final assistant message first and clear unresolved turn-scoped requests.

The package-local session bootstrap starts the bounded sidecar transport, verifies the qualified capability handshake and effective model, opens one identity-bound session, and confirms its run attachment. Any failed bootstrap terminates the process; session shutdown preserves persistent provider state. The session can then start one immutable-workspace turn, request interruption, and reduce polled events through the scope-first state boundary. A mismatched command acknowledgement or invalid event terminates the session fail closed. Polled semantic calls pass through the run-scoped authorized tool bridge before they can be returned to a caller. Before a follow-up turn releases settled tool receipts, runner-core suspends and reaps the idle sidecar/provider generation, then resumes the same verified persistent identity in a fresh generation. This prevents a late session-lifetime MCP callback from inheriting the next turn's event authority.

The Rust question-response validator checks the versioned response envelope against the exact persisted question IDs, answer modes, options, required answers, custom-answer policy, and text constraints before provider delivery. Tool results and structured question responses then use two-phase resolution: validate retained identity and schema, require the exact sidecar acknowledgement, and only then clear pending local state. Codex permission requests violate its pinned sidecar policy and terminate the session fail closed. Safe suspension is available only with no active turn or pending request. The sidecar must return the exact persistent session identity before runnerd terminates the local process. Already validated ACPX reducer events project into provider-neutral durable events only with an exact run, session, turn, and item binding. Raw sidecar envelopes and permission requests are not admitted at this boundary. A safely suspended session can be recorded as a bounded private checkpoint. The checkpoint binds the exact provider identity, run, catalog revision, and catalog digest and is replaced atomically before a later recovery attempt. Recovery releases the stored identity only after those bindings match the prospective session configuration exactly.

Run the complete contract gate with:

pnpm install --filter @paperclipai/paperclip-runner --lockfile=false --offline --ignore-scripts --dev
pnpm --filter @paperclipai/paperclip-runner verify

The verification command requires a stable Rust toolchain with cargo on PATH, in addition to Node.js 24.11+ and pnpm 9+.

Minimal Debian/Ubuntu hosts without root access can extract the required Playwright browser libraries into a user-owned cache and run the same acceptance sequence with:

pnpm --filter @paperclipai/paperclip-runner verify:rootless

The tracer's final line is stable:

{
  "schemaVersion": "paperclip.runner.conformance.output.v1",
  "runIdentity": {
    "runId": "run_conformance_0001",
    "sessionId": "session_conformance_0001"
  },
  "result": {
    "status": "succeeded",
    "summary": "Standalone Conformance fixture accepted."
  }
}

Run only the tracer with:

pnpm --filter @paperclipai/paperclip-runner trace:conformance

Replay the Replay happy path, run a Local session, or open the browser devtool:

pnpm --filter @paperclipai/paperclip-runner replay:fixture
pnpm --filter @paperclipai/paperclip-runner trace:local-runner -- --scenario happy-path
pnpm --filter @paperclipai/paperclip-runner trace:codex
pnpm --filter @paperclipai/paperclip-runner demo:live-console -- --host 127.0.0.1 --port 4174

# Live console: chat with a live session in the browser.
pnpm --filter @paperclipai/paperclip-runner console:live-console
pnpm --filter @paperclipai/paperclip-runner browser:dev --host 127.0.0.1 --port 4179

# SDK: open the public-SDK reference console and mini consumer.
pnpm --filter @paperclipai/paperclip-runner console:sdk

# Standalone: run the standalone legacy/native/kill-switch tracer and page.
pnpm --filter @paperclipai/paperclip-runner trace:standalone
pnpm --filter @paperclipai/paperclip-runner trace:standalone -- --feature-flag enabled
pnpm --filter @paperclipai/paperclip-runner trace:standalone -- --feature-flag enabled --kill-switch enabled
pnpm --filter @paperclipai/paperclip-runner demo:standalone

Live console provider-backed routes are loopback-only and reject wildcard/LAN binds. Browser mutations require same-origin Fetch Metadata, matching Origin, and JSON content; see the protocol-server tutorial for direct curl examples.

Direct live protocol qualification

The canonical direct live protocol suite lives in the separate paperclip-evals repository under evals/paperclip-runner/. Its live-mini.json roster is the complete 35-case Codex qualification lane. Build this package's TypeScript output, release paperclip-runnerd, package tarball, and dist-issue-thread viewer, then use the roster runner documented in that repository. The package ships the required orchestration entry point as paperclip-runner-eval-session (dist/cli/eval-session.js). Evalbook owns the consistent HTML matrix and read-only attempt drill-down pages.

The hosted full-campaign workflow, parallel matrix, credential boundaries, canonical report merge, and versioned S3 index are documented in docs/runner-protocol-live-evals.md.

This direct protocol qualification is separate from the stress-derived Runner workflow schedule below and from the full-stack browser model E2E suite.

Stress-derived workflow, chaos, and AWS AgentCore operations

The deterministic workflow scorer and the chaos schedule do not require provider credentials:

pnpm --filter @paperclipai/paperclip-runner test:runner-workflow-evals
pnpm --filter @paperclipai/paperclip-runner report:runner-chaos-evals

report:runner-live-evals is a paid, provider-backed command. Native Codex requires OPENAI_API_KEY; ACPX Claude requires ANTHROPIC_API_KEY; OpenCode candidates require OPENROUTER_API_KEY. The live matrix remains qualified-only and does not persist credential values. Candidate qualification uses eval-session --candidate-profile <pi|cursor|copilot> with an explicit model and a separately materialized pinned candidate pack. This option is a constructor-bound diagnostic opt-in; session JSON cannot enable a candidate. Missing credentials or unverifiable spend block paid qualification. Set PAPERCLIP_EVAL_MAX_CAMPAIGN_COST_USD to a positive finite number to bound additional scheduling after the observed campaign total reaches that value:

PAPERCLIP_EVAL_MAX_CAMPAIGN_COST_USD=12 \
  PAPERCLIP_EVALS_ROOT=/path/to/paperclip-evals \
  pnpm --filter @paperclipai/paperclip-runner report:runner-live-evals

# Run two scheduled native Codex executions only.
PAPERCLIP_EVALS_ROOT=/path/to/paperclip-evals \
  pnpm --filter @paperclipai/paperclip-runner report:runner-live-evals -- \
  --candidate codex-luna --limit 2

GitHub-hosted live campaigns additionally require the default branch, an allowlisted numeric actor ID, the protected runner-e2e-paid environment, and an explicit repository variable before scheduled runs are enabled. Manual dispatches accept the same candidate, case, and execution-limit selectors. The paid job uses the reviewed RunsOn Fleet label when RUNNER_E2E_AWS_ENABLED=true and otherwise stays on ubuntu-latest. Uploaded reports contain redacted observations and trace digests, not raw provider frames, prompts, credentials, tool arguments, or hidden reasoning.

The AgentCore proof-of-concept uses an AWS CLI v2 profile to provision a dedicated invocation role and scoped resources. Its local mode-0600 metadata file contains no access keys; probes assume short-lived STS credentials and clear them after use. Validate locally, provision or inspect the stack, run the bounded lab/smoke, and tear it down explicitly with:

pnpm --filter @paperclipai/paperclip-runner test:aws-agentcore-provisioning
pnpm --filter @paperclipai/paperclip-runner aws-agentcore:provision -- --dry-run
pnpm --filter @paperclipai/paperclip-runner aws-agentcore:provision
pnpm --filter @paperclipai/paperclip-runner aws-agentcore:probe
pnpm --filter @paperclipai/paperclip-runner aws-agentcore:lab
pnpm --filter @paperclipai/paperclip-runner smoke:capability:aws-agentcore
pnpm --filter @paperclipai/paperclip-runner aws-agentcore:destroy -- --yes

To admit the hosted direct-eval workflow, provision with the account-local GitHub Actions OIDC provider and keep the default exact repository and protected environment binding:

pnpm --filter @paperclipai/paperclip-runner aws-agentcore:provision -- \
  --aws-profile paperclip-dev \
  --github-oidc-provider-arn arn:aws:iam::<account-id>:oidc-provider/token.actions.githubusercontent.com

This adds only repo:paperclipai/paperclip:environment:runner-e2e-paid as a web-identity subject on the scoped invocation role. The generated nonsecret profile records that role as both the local invocation role and the hosted execution role.

Provisioning can incur Bedrock, AgentCore Runtime/Memory, storage, and private networking charges. Provisioning refuses to modify a colliding stack unless its Paperclip ownership tags and template description match. A verified ROLLBACK_COMPLETE stack still requires --replace-failed-stack plus an interactive confirmation (or --yes) before it can be deleted and recreated. Destruction requires --yes and refuses to remove a stack with an active recorded lab unless --force is also supplied.

Package-owned commands

Command Purpose
build Compile the TypeScript public surface, Rust workspace, and browser devtool.
typecheck Check TypeScript, Rust, generated schema sources, and browser types.
test Run Rust/TypeScript fixture, supervisor, fake-driver, live/replay, and boundary tests.
check:forbidden-imports Reject TypeScript imports and Cargo path dependencies that cross into Paperclip core.
check:tracked-imports Reject tracked imports and package.json entry points that only resolve against untracked files, so a clean checkout of any commit builds.
check:numbered-milestones Reject numbered construction-milestone names in tracked package paths and source.
check:package-boundaries Enforce the acyclic runtime/testing/eval dependency and manifest boundary.
check:clean-consumers Pack the runner and install its root, evals, and testing exports in a clean consumer.
test:eval-slice Run the credential-free eval bundle, scoring, and behavior/fault slice.
test:runner-workflow-evals Run the deterministic provider-neutral workflow matrix.
report:runner-workflow-evals Validate deterministic fail-closed results and write JSON, Markdown, JUnit, and GitHub-safe reports.
report:runner-live-evals Execute the paid provider schedule and render its immutable attempts with the canonical paperclip-evals HTML grid.
report:runner-chaos-evals Write the credential-free eight-scenario chaos schedule.
test:aws-agentcore-provisioning Validate the AgentCore template and wrapper safety contracts without provisioning.
aws-agentcore:provision / probe / lab / destroy Manage the scoped AgentCore proof-of-concept lifecycle.
smoke:capability:aws-agentcore Exercise the qualified AgentCore profile through the capability harness.
check:conformance-parity Require byte-for-byte equivalent Rust and TypeScript tracer output.
check:replay-goldens Require all reducer snapshots and cross-language summaries to match checked goldens.
check:replay-parity Run TypeScript and Rust against the same Replay fixture summaries.
check:browser-tokens Reject component-local visual literals and require the standalone token layer.
docs:validate Validate local documentation links.
trace:conformance Run the Rust mock-core tracer, print the stable result, and exit.
trace:conformance:typescript Run the TypeScript reference tracer directly.
replay:fixture Validate and reduce a fixture to a final snapshot.
trace:local-runner Run one native local session through the Rust runner and fake harness.
trace:codex Run the mock core with a real, local skillless Codex app-server session.
demo:live-console Start the package-local HTTP/SSE server with server-only Codex authentication.
console:live-console Start the standalone browser devtool with the Live console on 127.0.0.1:4180.
console:sdk Start the public-SDK reference console and mini consumer on 127.0.0.1:4181.
test:sdk Run targeted browser-client, reducer-projection, and React component contract tests.
test:browser:sdk Exercise both consumers with the fake driver, keyboard/a11y checks, reconnect/replay, measurements, and screenshots.
record:sdk:codex Run both public consumers against a safe real Codex session and capture live screenshots.
check:capability-contract Verify the generated capability, legacy MCP, and eval traceability contract.
check:semantic-contracts Verify the provider-neutral semantic tool contract is current.
trace:live-runner Run the real runnerd/Codex semantic loop against the mock control plane.
demo:scenarios Start the Capability scenario explorer over the mock control plane on 127.0.0.1:4183.
console:issue-thread Start the Paperclip-style issue thread on 127.0.0.1:4184.
test:scenarios Run the scenario index, run-artifact, parity, explorer component, and route tests.
test:browser:scenarios Exercise both the scenario explorer and issue-thread browser contracts.
browser:dev Start the standalone live/replay browser devtool.
test:browser Exercise static replay and live scenarios, then capture temporary screenshots under ignored test output.
verify Run the complete deterministic Conformance through SDK acceptance sequence.
verify:rootless Extract Debian/Ubuntu browser libraries without root, then run verify.

Navigate

Codex adds the package-local real-model reference driver, Live console adds the package-local browser console, and SDK extracts a reusable public SDK plus two standalone consumers. Runtime production Paperclip integration remains deferred; the App-owned production conformance adapter is test-only.

The SDK reference console opens in direct chat mode. Enter a normal prompt, then open the protocol inspector to review events and reducer state. Expand a Terminal row and its nested Debug details disclosure to inspect every canonical event retained for that command. The header marker 🖇️ v0.1.2 identifies the current console iteration.

create_task accepts an optional initial status of backlog or todo. Use backlog when the user wants a saved task or plan without execution: assignment and the initial plan are committed without scheduling a wake, even when dependencies are already complete. Omitting status preserves immediate delegation (todo, or blocked for unresolved dependencies).