## Thinking Path > - Paperclip is the open source app people use to manage AI agents for work. > - The runner package hides provider behavior behind the `HarnessDriver` contract. > - The admitted Codex ACPX runtime can open sessions, execute bounded turns, and use run-scoped semantic tools. > - The package still needs a driver that translates those turns into canonical PRP events and semantic results. > - The driver must preserve terminal facts under backpressure and retain cleanup ownership after caller-facing timeouts. > - Abort can win after the host transfers a credential-bearing admission but before the adapter body starts, so that boundary must publish a completed cleanup proof without changing the exact cancellation reason. > - An external close can join an autonomous reconciliation attempt; if it joins the exhausted final attempt, its batched intent must create one new bounded generation when that exact cleanup fails. > - A late cleanup failure needs a finite reconciliation budget that cannot renew itself without a distinct external intent. > - This pull request adds the Codex-only ACPX harness driver and the package-local lifecycle rules it needs. > - The benefit is a tested provider-neutral session boundary for later runnerd and server integration. ## Linked Issues or Issue Description Refs #12404 **Subsystem affected** This change affects `packages/paperclip-runner`, the Codex ACPX driver, and the provider-neutral native session runtime. **Problem or motivation** The package has an admitted Codex ACPX session, bounded turn control, and authenticated semantic tools. It does not have a `HarnessDriver` implementation that joins those parts and emits canonical PRP events. It also needs bounded ownership for provider cleanup that settles after a caller-facing timeout. Cancellation can win after the host schedules runtime admission and transfers the staged credential but before the adapter body starts; that rejected admission must still prove that provider cleanup is complete so the credential can be scrubbed and later admission can proceed. Separately, an external close that coalesces onto an exhausted autonomous reconciliation must not lose its cleanup intent if that exact protocol or provider-process cleanup fails. **Proposed solution** Add a Codex-only harness driver. It opens the admitted host, executes one active turn, normalizes ACPX events, dispatches run-scoped tools, and commits one schema-valid completion or blocked result. It provides bounded event storage, interruption, transcripts, usage, snapshots, diagnostics, and ordered close behavior. The native session runtime quarantines incomplete cleanup before another session can enter the same cleanup domain. The ACPX adapter records the immutable origin and attempt number of each exact close attempt. Autonomous reconciliation failures stay inside the three-attempt budget of the generation that created them. External callers that join an attempt are represented by one idempotent batched intent: success consumes it, failure on an earlier attempt uses the remaining same-generation retries, and failure on the exhausted final attempt creates exactly one new bounded generation. Both direct and late protocol/provider cleanup outcomes use the same rule. At the adapter entry boundary, an already-aborted admission transfers an already-complete cleanup proof before rethrowing the exact abort reason; the host retains credential cleanup until that proof settles. **Alternatives considered** The multi-provider integration driver was not copied because it mixes deferred providers and recovery behavior into the Codex path. Direct server registration was also deferred because this package slice must remain inactive and independently safe. Relabeling a coalesced autonomous attempt as external was rejected because it would let observers replenish retry budgets; starting another protocol close before the exact retained attempt settles was rejected because it would overlap cleanup ownership. **Roadmap alignment** This is package-local production hardening for the experimental runner. It does not enable a new adapter or change current agent execution selection. ## What Changed - Add a Codex-only ACPX `HarnessDriver` and session implementation. - Advertise only implemented capabilities. Keep resume, steering, runtime request resolution, runtime request handoff, goals, and thread lineage unavailable. - Emit canonical PRP turn, transcript, tool execution, final reply, result, failure, interruption, and usage facts. - Dispatch authorized dynamic tools through the authenticated semantic bridge. - Validate and commit one completion or blocked result with disposition and conflict checks. - Add stable bounded event identities, one-active-turn admission, terminal capacity reservation, and bounded interruption. - Redact authorization credentials from emitted events and retained transcripts. - Add read, reconcile, transcript, usage, snapshot, status, interruption, and ordered close surfaces. - Retain and quarantine host cleanup that outlives a caller-facing close bound. - Gate new native-session admission on prior cleanup in the same cleanup domain. - Preserve durable success and governed waits while provider cleanup continues under bounded ownership. - Transfer a completed cleanup proof when cancellation wins before the Codex adapter body, then preserve the caller's exact abort reason. - Add a host-level regression proving staged credentials are scrubbed, the credential lease can be reacquired, and a later runtime admission succeeds after that pre-entry abort. - Tag each exact ACPX close attempt with an immutable external or reconciliation origin and immutable reconciliation attempt number. - Keep timed-out autonomous reconciliation failures inside their originating three-attempt budget. - Batch concurrent external callers that join one reconciliation attempt so they cannot mint independent generations. - Consume a joined external intent on successful cleanup and on an earlier failed attempt that still has same-generation retries. - Renew exactly one bounded generation when a joined external intent reaches a failed, exhausted final reconciliation attempt. - Treat both protocol-close and provider-process cleanup failures as failed intent settlement, including non-timeout and timed-out late paths. - Prevent a coalescing external observer from relabeling an immutable autonomous attempt. - Reset the finite reconciliation budget only for a distinct external late-failure generation or one failed batched intent on an exhausted final attempt. - Isolate persistent-cleanup tests by cleanup domain and attach expected rejection handlers before fake timers release them. - Stabilize cleanup-settlement assertions exposed by GitHub Actions: observe retained proofs without relying on callback order, wait for the credential lease release rather than only the preceding credential-file deletion, and use a supported scalar size assertion instead of an unavailable Set matcher. - Add focused tests for driver behavior, event validation, bounded buffers, cleanup quarantine, admission gating, immutable attempt origins, final-attempt intent batching, direct and late cleanup failures, late success consumption, bounded reconciliation, exact pre-entry cancellation, credential recovery, and durable native-session outcomes. ## Verification - Exact head: `584cc420f6ca249cdc0a831779192ca827764d96`. - Stable patch ID for the combined exact delta: `5329d8123baf62c339a15bdff16717b3803ebb74`. - Stack position: #12404 is merged. This pull request targets `master`. #12406 is stacked on this pull request. - The exact pull request delta contains eight files: - `packages/paperclip-runner/src/drivers/acpx/codex-acpx-driver.ts` - `packages/paperclip-runner/src/drivers/acpx/codex-acpx-driver.test.ts` - `packages/paperclip-runner/src/drivers/acpx/codex-runtime-adapter.ts` - `packages/paperclip-runner/src/drivers/acpx/codex-runtime-adapter.test.ts` - `packages/paperclip-runner/src/drivers/acpx/runtime-host.ts` - `packages/paperclip-runner/src/drivers/acpx/runtime-host.test.ts` - `packages/paperclip-runner/src/native-session-runtime.ts` - `packages/paperclip-runner/src/native-session-runtime.test.ts` - `git diff --check` passed for the exact eight-file delta. - This delta does not change dependencies, `pnpm-lock.yaml`, workflows, migrations, server selection, UI behavior, or production runner wiring. - GitHub previously exposed an unsupported Set matcher in the cleanup-settlement regression; this exact delta uses the repository-supported scalar `size` assertion without changing the tested behavior. - GitHub Actions: **PASS** for the exact head. The complete matrix is green after a failed-job-only rerun cleared one unrelated `plugin-worker-manager-duplex` flake; no patch or restack occurred. - Security checks: **PASS** for the exact head (Superagent, Snyk, Socket, and contributor trust). - Greptile: **PASS, 5/5** on the exact head with no open P1/P2 findings, recommendations, or follow-ups. - No local test result is claimed. GitHub Actions is the authoritative verification environment for this revision. ## Risks This change has medium package-local risk. It adds a new driver and changes native-session cleanup coordination. A lagging event consumer could otherwise lose terminal state. The driver reserves terminal capacity and rejects new work when bounded storage cannot safely accept it. A stalled, rejected, or late provider close could otherwise overlap a new session, retain credentials indefinitely, lose an external cleanup request, or consume unlimited retries. Cleanup-proof transfer keeps the staged credential owned across the pre-entry abort race, while the host scrubs it only after the adapter proves that no provider resource exists. Cleanup quarantine blocks conflicting admission and keeps exact attempts owned. Immutable attempt origins and attempt numbers prevent autonomous retries and coalesced observers from silently replenishing the cap. One batched external intent can renew one generation only after the exhausted final attempt fails; earlier failures remain within the original generation, and success consumes the intent. Each renewed generation remains capped at three autonomous attempts. The driver reports recovery and other unimplemented capabilities as unavailable. No server or runnerd factory selects this driver in this pull request. > For core feature work, check [`ROADMAP.md`](ROADMAP.md) first and discuss it in `#dev` before opening the PR. Feature PRs that overlap with planned core work may need to be redirected. See `CONTRIBUTING.md`. ## Model Used OpenAI Codex with GPT-5.6, extended reasoning, repository tool use, and code execution. ## 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/...`) and contains no internal Paperclip ticket id or instance-derived details - [ ] I have run tests locally and they pass - [x] I have added or updated tests where applicable - [ ] 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 P1/P2 findings, recommendations, or follow-ups - [x] I will address all Greptile and reviewer comments before requesting merge
Quickstart · Docs · GitHub · Discord · Twitter · Website
Paperclip is the app people use to manage AI agents for work.
Open-source orchestration for teams of AI agents.
If OpenClaw is an employee, Paperclip is the company.
Paperclip is a Node.js server and React UI that orchestrates a team of AI agents to run a business. Bring your own agents, assign goals, and track work and costs from one dashboard.
It looks like a task manager. Under the hood: org charts, budgets, governance, goal alignment, and agent coordination.
Manage business goals, not pull requests.
| Step | Example | |
|---|---|---|
| 01 | Define the goal | "Build the #1 AI note-taking app to $1M MRR." |
| 02 | Hire the team | CEO, CTO, engineers, designers, marketers — any bot, any provider. |
| 03 | Approve and run | Review strategy. Set budgets. Hit go. Monitor from the dashboard. |
Paperclip is right for you if
- ✅ You want to build autonomous AI organizations
- ✅ You coordinate many different agents (OpenClaw, Codex, Claude, Cursor) toward a common goal
- ✅ You have 20 simultaneous Claude Code terminals open and lose track of what everyone is doing
- ✅ You want agents running autonomously 24/7, but still want to audit work and chime in when needed
- ✅ You want to monitor costs and enforce budgets
- ✅ You want a process for managing agents that feels like using a task manager
- ✅ You want to manage your autonomous businesses from your phone
The four pillars
Four things have to work for an organization of AI agents to actually produce: the tasks, the org, the training, and the infrastructure. Paperclip is built around exactly those four pillars.
| Pillar | Built for | What it covers |
|---|---|---|
| Agentic Task Manager — Declare intent. Agents work. You verify the output. | Everyone, daily | Tasks, approvals & review gates · proactive agent coworkers · auditable routines & workflows · verify from diffs, screenshots & tests |
| Org Chart for Agents — Roles, permissions & boundaries for humans and agents. | Managers | Mixed human + agent org chart · responsibilities, delegation, specialization · governance: who can do what · scoped secrets & company boundaries |
| Agent Employee Training — Design, train & evaluate your AI employees. | Enablers | Skill Studio & shared org-wide skills · evals & saved test runs · active learning loops & quality metrics · performance reviews for agents |
| Agentic OS — The infrastructure that makes the work run. | IT & platform | Cross-provider runtime: any model, any agent · sandboxing, integrations & MCP servers · SSO, GRC, RBAC & cost controls · data privacy, internal trace collection, compounding data value |
Features
🔌 Bring Your Own AgentAny agent, any runtime, one org chart. If it can receive a heartbeat, it's hired. |
🎯 Goal AlignmentEvery task traces back to the organization mission. Agents know what to do and why. |
💓 HeartbeatsAgents wake on a schedule, check work, and act. Delegation flows up and down the org chart. |
💰 Cost ControlMonthly budgets per agent. When they hit the limit, they stop. No runaway costs. |
🏢 Multi-OrganizationOne deployment, many organizations. Complete data isolation. One control plane for your portfolio. |
🎫 Ticket SystemEvery conversation traced. Every decision explained. Full tool-call tracing and immutable audit log. |
🛡️ GovernanceApprove hires, override strategy, pause or terminate any agent — at any time. |
📊 Org ChartHierarchies, roles, reporting lines. Your agents have a boss, a title, and a job description. |
📱 Mobile ReadyMonitor and manage your autonomous businesses from anywhere. |
Problems Paperclip solves
| Without Paperclip | With Paperclip |
|---|---|
| ❌ You have 20 Claude Code tabs open and can't track which one does what. On reboot you lose everything. | ✅ Tasks are ticket-based, conversations are threaded, sessions persist across reboots. |
| ❌ You manually gather context from several places to remind your bot what you're actually doing. | ✅ Context flows from the task up through the project and company goals — your agent always knows what to do and why. |
| ❌ Folders of agent configs are disorganized and you're re-inventing task management, communication, and coordination between agents. | ✅ Paperclip gives you org charts, ticketing, delegation, and governance out of the box — so you run a company, not a pile of scripts. |
| ❌ Runaway loops waste hundreds of dollars of tokens and max your quota before you even know what happened. | ✅ Cost tracking surfaces token budgets and throttles agents when they're out. Management prioritizes with budgets. |
| ❌ You have recurring jobs (customer support, social, reports) and have to remember to manually kick them off. | ✅ Heartbeats handle regular work on a schedule. Management supervises. |
| ❌ You have an idea, you have to find your repo, fire up Claude Code, keep a tab open, and babysit it. | ✅ Add a task in Paperclip. Your coding agent works on it until it's done. Management reviews their work. |
Why Paperclip is special
Paperclip handles the hard orchestration details correctly.
| Atomic execution. | Task checkout and budget enforcement are atomic, so no double-work and no runaway spend. |
| Persistent agent state. | Agents resume the same task context across heartbeats instead of restarting from scratch. |
| Runtime skill injection. | Agents can learn Paperclip workflows and project context at runtime, without retraining. |
| Governance with rollback. | Approval gates are enforced, config changes are revisioned, and bad changes can be rolled back safely. |
| Goal-aware execution. | Tasks carry full goal ancestry so agents consistently see the "why," not just a title. |
| Portable company templates. | Export/import orgs, agents, and skills with secret scrubbing and collision handling. |
| True multi-organization isolation. | Every entity is company-scoped, so one deployment can run many companies with separate data and audit trails. |
What's Under the Hood
Paperclip is a full control plane, not a wrapper. Before you build any of this yourself, know that it already exists:
┌──────────────────────────────────────────────────────────────┐
│ PAPERCLIP SERVER │
│ │
│ ┌───────────┐ ┌───────────┐ ┌───────────┐ ┌───────────┐ │
│ │Identity & │ │ Work & │ │ Heartbeat │ │Governance │ │
│ │ Access │ │ Tasks │ │ Execution │ │& Approvals│ │
│ └───────────┘ └───────────┘ └───────────┘ └───────────┘ │
│ │
│ ┌───────────┐ ┌───────────┐ ┌───────────┐ ┌───────────┐ │
│ │ Org Chart │ │Workspaces │ │ Plugins │ │ Budget │ │
│ │ & Agents │ │ & Runtime │ │ │ │ & Costs │ │
│ └───────────┘ └───────────┘ └───────────┘ └───────────┘ │
│ │
│ ┌───────────┐ ┌───────────┐ ┌───────────┐ ┌───────────┐ │
│ │ Routines │ │ Secrets & │ │ Activity │ │ Company │ │
│ │& Schedules│ │ Storage │ │ & Events │ │Portability│ │
│ └───────────┘ └───────────┘ └───────────┘ └───────────┘ │
└──────────────────────────────────────────────────────────────┘
▲ ▲ ▲ ▲
┌─────┴─────┐ ┌─────┴─────┐ ┌─────┴─────┐ ┌─────┴─────┐
│ Claude │ │ Codex │ │ CLI │ │ HTTP/web │
│ Code │ │ │ │ agents │ │ bots │
└───────────┘ └───────────┘ └───────────┘ └───────────┘
The Systems
|
Identity & Access — Two deployment modes (trusted local or authenticated), board users, agent API keys, short-lived run JWTs, company memberships, invite flows, and OpenClaw onboarding. Every mutating request is traced to an actor. |
Org Chart & Agents — Agents have roles, titles, reporting lines, permissions, and budgets. Adapter examples match the diagram: Claude Code, Codex, CLI agents such as Cursor/Gemini/bash, HTTP/webhook bots such as OpenClaw, and external adapter plugins. If it can receive a heartbeat, it's hired. |
|
Work & Task System — Issues carry company/project/goal/parent links, atomic checkout with execution locks, first-class blocker dependencies, comments, documents, attachments, work products, labels, and inbox state. No double-work, no lost context. |
Heartbeat Execution — DB-backed wakeup queue with coalescing, budget checks, workspace resolution, secret injection, skill loading, and adapter invocation. Runs produce structured logs, cost events, session state, and audit trails. Recovery handles orphaned runs automatically. |
|
Workspaces & Runtime — Project workspaces, isolated execution workspaces (git worktrees, operator branches), and runtime services (dev servers, preview URLs). Agents work in the right directory with the right context every time. |
Governance & Approvals — Board approval workflows, execution policies with review/approval stages, decision tracking, budget hard-stops, agent pause/resume/terminate, and full audit logging. Nothing ships without your sign-off. |
|
Budget & Cost Control — Token and cost tracking by company, agent, project, goal, issue, provider, and model. Scoped budget policies with warning thresholds and hard stops. Overspend pauses agents and cancels queued work automatically. |
Routines & Schedules — Recurring tasks with cron, webhook, and API triggers. Concurrency and catch-up policies. Each routine execution creates a tracked issue and wakes the assigned agent — no manual kick-offs needed. |
|
Plugins — Instance-wide plugin system with out-of-process workers, capability-gated host services, job scheduling, tool exposure, and UI contributions. Extend Paperclip without forking it. |
Secrets & Storage — Instance and company secrets, encrypted local storage, provider-backed object storage, attachments, and work products. Sensitive values stay out of prompts unless a scoped run explicitly needs them. |
|
Activity & Events — Mutating actions, heartbeat state changes, cost events, approvals, comments, and work products are recorded as durable activity so operators can audit what happened and why. |
Company Portability — Export and import entire organizations — agents, skills, projects, routines, and issues — with secret scrubbing and collision handling. One deployment, many companies, complete data isolation. |
What Paperclip is not
| Not a chatbot. | Agents have jobs, not chat windows. |
| Not an agent framework. | We don't tell you how to build agents. We tell you how to run a company made of them. |
| Not a workflow builder. | No drag-and-drop pipelines. Paperclip models companies — with org charts, goals, budgets, and governance. |
| Not a prompt manager. | Agents bring their own prompts, models, and runtimes. Paperclip manages the organization they work in. |
| Not a single-agent tool. | This is for teams. If you have one agent, you probably don't need Paperclip. If you have twenty — you definitely do. |
| Not a code review tool. | Paperclip orchestrates work, not pull requests. Bring your own review process. |
Quickstart
Open source. Self-hosted. No Paperclip account required.
curl -fsSLO https://paperclip.ing/install.sh
curl -fsSLO https://paperclip.ing/install.sh.sha256
if command -v sha256sum >/dev/null 2>&1; then
sha256sum -c install.sh.sha256
else
shasum -a 256 -c install.sh.sha256
fi
bash install.sh
The installer ensures Node.js 24.11 or newer is available, installs a managed
Paperclip CLI under ~/.paperclip/cli, and starts interactive onboarding. It
can also install Paperclip as a background service on supported Linux and
macOS systems. The checksum detects transfer or publishing mistakes, but it is
served from the same origin as the script; use a release-tag or commit-pinned
GitHub copy when you need an independently hosted source.
For a non-interactive managed install:
curl -fsSL https://paperclip.ing/install.sh | bash -s -- --no-prompt --no-onboard
paperclipai onboard --yes
The piped form requires supported Node.js, npm, and npx to already be present.
If Node.js bootstrap is required, download and review install.sh before
running it so no privileged dependency-install command is accepted through a
pipe.
To try Paperclip without installing anything permanently:
npx --registry https://registry.npmjs.org paperclipai onboard --yes
Troubleshooting: private npm registry
.npmrcIf this fails with an
E404forpaperclipai(or similar) and you use a private npm registry (for example GitHub Packages) via a global~/.npmrc,npxmay be resolvingpaperclipaiagainst that private registry instead of the public npm registry.Diagnostic:
npm config get registryWorkaround (cross-platform; force the public npm registry for this command):
npx --registry https://registry.npmjs.org paperclipai onboard --yes
That quickstart path now defaults to trusted local loopback mode for the fastest first run. To start in authenticated/private mode instead, choose a bind preset explicitly:
paperclipai onboard --yes --bind lan
# or:
paperclipai onboard --yes --bind tailnet
If you already have Paperclip configured, rerunning onboard keeps the existing config in place. Use paperclipai configure to edit settings.
See doc/INSTALLING.md for pinned versions, canary and
git-ref installs, updates, rollback, service management, and uninstalling.
Or manually:
git clone https://github.com/paperclipai/paperclip.git
cd paperclip
pnpm install
pnpm dev
This starts the API server at http://localhost:3100. An embedded PostgreSQL database is created automatically — no setup required.
Requirements: Node.js 24.11+, pnpm 9.15+
FAQ
What does a typical setup look like? Locally, a single Node.js process manages an embedded Postgres and local file storage. For production, point it at your own Postgres and deploy however you like. Configure projects, agents, and goals — the agents take care of the rest.
If you're a solo entrepreneur you can use Tailscale to access Paperclip on the go. Then later you can deploy to e.g. Vercel when you need it.
Can I run multiple companies? Yes. A single deployment can run an unlimited number of companies with complete data isolation.
How is Paperclip different from agents like OpenClaw or Claude Code? Paperclip uses those agents. It orchestrates them into a company — with org charts, budgets, goals, governance, and accountability.
Why should I use Paperclip instead of just pointing my OpenClaw to Asana or Trello? Agent orchestration has subtleties in how you coordinate who has work checked out, how to maintain sessions, monitoring costs, establishing governance - Paperclip does this for you.
(Bring-your-own-ticket-system is on the Roadmap)
Do agents run continuously? By default, agents run on scheduled heartbeats and event-based triggers (task assignment, @-mentions). You can also hook in continuous agents like OpenClaw. You bring your agent and Paperclip coordinates.
Development
pnpm dev # Full dev (API + UI, watch mode)
pnpm dev:once # Full dev without file watching
pnpm dev:server # Server only
pnpm dev:mobile # Serve prebuilt UI on :3101 for phones/tablets (proxies /api → :3100)
pnpm dev:both # Run `pnpm dev` and `pnpm dev:mobile` together
pnpm build # Build all
pnpm typecheck # Type checking
pnpm test # Cheap default test run (Vitest only)
pnpm test:watch # Vitest watch mode
pnpm test:e2e # Playwright browser suite
pnpm db:generate # Generate DB migration
pnpm db:migrate # Apply migrations
pnpm test does not run Playwright. Browser suites stay separate and are typically run only when working on those flows or in CI.
See doc/DEVELOPING.md for the full development guide.
Roadmap
- ✅ Plugin system (e.g. add a knowledge base, custom tracing, queues, etc)
- ✅ Get OpenClaw / claw-style agent employees
- ✅ companies.sh - import and export entire organizations
- ✅ Easy AGENTS.md configurations
- ✅ Skills Manager, Skill Studio & Skills Store
- ✅ Scheduled Routines
- ✅ Better Budgeting
- ✅ Agent Reviews and Approvals
- ✅ Multiple Human Users
- ✅ Cloud / Sandbox agents (e2b, Cloudflare, Daytona, Modal, Novita, self-hosted Kubernetes)
- ✅ Artifacts & Work Products
- ✅ Deep Planning (planning mode, revisioned plans, plan approvals)
- ✅ Enforced Outcomes (watchdogs, recovery actions, review gates)
- ✅ MCP Tool Gateway & Apps (governed tool access)
- ✅ Secrets Manager with per-agent access
- ✅ Activity log & action attribution
- ✅ Self-healing runs & automatic recovery
- ✅ Agent evals & feedback
- ⚪ Memory / Knowledge
- ⚪ MAXIMIZER MODE
- ⚪ Work Queues
- ⚪ Self-Organization
- ⚪ Automatic Organizational Learning
- ⚪ CEO Chat
- 🟡 Cloud deployments (multi-tenant isolation & company Import/Export shipped)
- ⚪ Desktop App
- ⚪ Bring-your-own-ticket-system (Asana / Linear / Jira as on-ramps)
- ⚪ Connected Apps (one-click integrations, e.g. Vercel)
This is the short roadmap preview. See the full roadmap in ROADMAP.md.
Community & Plugins
Find Plugins and more at awesome-paperclip
Observability
Paperclip ships with opt-in OpenTelemetry auto-instrumentation for the server (traces only). It activates when OTEL_EXPORTER_OTLP_ENDPOINT is set and supports grpc, http/protobuf, and http/json via the standard OTEL_EXPORTER_OTLP_PROTOCOL env var. @opentelemetry/api is a normal server dependency; the SDK, auto-instrumentation, and exporter packages are optional peer dependencies — install them only if you want tracing. See doc/observability.md for install commands and the full env-var reference.
Paperclip also ships with opt-in Sentry error monitoring for the server and the browser. Set SENTRY_DSN to activate it — the server and the browser then report to the same Sentry project. The supported server SDK version is @sentry/node@10.71.0; it is an optional peer dependency for the server, so install it only if you want error monitoring. The browser SDK, @sentry/browser, is pinned to the same exact version. See doc/observability.md for the install command, the privacy settings, and the full default capture set.
Telemetry
Paperclip collects anonymous usage telemetry to help us understand how the product is used and improve it. No personal information, issue content, prompts, file paths, or secrets are ever collected. Private repository references are hashed with a per-install salt before being sent.
Contributors changing emitted telemetry events should follow the Telemetry Data Contract. For proposed first-party events that are not in the generated contract yet, follow Telemetry Workflow.
Telemetry is enabled by default and can be disabled with any of the following:
| Method | How |
|---|---|
| Environment variable | PAPERCLIP_TELEMETRY_DISABLED=1 |
| Standard convention | DO_NOT_TRACK=1 |
| CI environments | Automatically disabled when CI=true |
| Config file | Set telemetry.enabled: false in your Paperclip config |
Contributing
We welcome contributions. See the contributing guide for details.
Community
- Discord — Join the community
- Twitter / X — Follow updates and announcements
- GitHub Issues — bugs and feature requests
- GitHub Discussions — ideas and RFC
License
MIT © 2026 Paperclip Labs, Inc
Star History
Open source under MIT. Built for people who want to get work done, not babysit agents.
