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codex/plugin-task-execution
3
Commits
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7f766526a6 |
feat(sandbox): add task-scoped egress grants (#10155)
## Thinking Path > - Paperclip is the open source app people use to manage AI agents for work > - Confinement providers protect agent runs with default-deny network policies > - Kubernetes environments currently apply only provider-level, namespace-wide egress allowances > - Tasks that legitimately need GitHub or package registries therefore cannot request narrow access, while network failures do not explain the governing policy or how to request a grant > - This pull request adds issue-scoped egress grants that become workload-owned, run-label-selected policies and carries the effective grant through lease audit metadata > - The benefit is that internet-dependent work can run without enabling broad egress for every concurrent task, and denied requests point operators to the exact grant path ## Linked Issues or Issue Description No public issue exists. Related but distinct: Refs #9944, which adds a provider-wide open-internet posture; this PR keeps provider defaults narrow and adds per-task grants. **Problem / motivation** Kubernetes sandbox egress is configured at the provider/tenant level. A task that needs to clone from GitHub or install from PyPI cannot request those destinations without changing the policy for every run in the tenant namespace. DNS/connectivity failures also surface as generic tool errors with no policy name or remediation path. **Proposed solution** Accept `executionWorkspaceSettings.networkEgress.allowFqdns` and `allowCidrs`, forward the setting through heartbeat environment acquisition, and create a workload-owned NetworkPolicy or CiliumNetworkPolicy selected by `paperclip.io/run-id`. Record the effective grant in lease activity/metadata, expose policy context through `PAPERCLIP_NETWORK_EGRESS_*`, and append the grant path to likely policy-related stderr failures. **Alternatives considered** A provider-wide open-internet switch is broader than required and is already covered by #9944. Mutating the existing namespace policy would leak each task's destinations to other concurrent runs. Standard Kubernetes NetworkPolicy cannot enforce FQDNs exactly, so standard mode uses the existing hardened public-IPv4 TCP 80/443 fallback only for the selected run; Cilium mode remains exact. **Roadmap alignment** This extends the existing cloud/sandbox agent roadmap capability with task-level control-plane policy and does not duplicate a planned roadmap item. ## What Changed - Added validated `networkEgress` grants to issue execution workspace settings and forwarded them through environment lease acquisition. - Added workload-owned, run-label-scoped NetworkPolicy/CiliumNetworkPolicy resources for task FQDN/CIDR grants. - Added lease audit metadata, sandbox policy environment variables, and actionable network-denial stderr guidance. - Added focused parser, manifest, policy creation, and denial-message tests plus Kubernetes provider documentation. ## Verification - `pnpm -C packages/shared exec vitest run src/validators/issue.test.ts` — 27 passed. - `pnpm -C packages/plugins/sandbox-providers/kubernetes test -- --run test/unit/network-policy.test.ts test/unit/cilium-network-policy.test.ts test/unit/scoped-network-egress.test.ts` — 21 passed. - `pnpm -C server exec vitest run src/__tests__/execution-workspace-policy.test.ts` — 15 passed. - `pnpm exec vitest run server/src/__tests__/heartbeat-plugin-environment.test.ts server/src/__tests__/environment-runtime.test.ts` — 26 passed. - `pnpm --dir packages/db build && pnpm --dir packages/shared build && pnpm --dir packages/plugins/sdk build` — passed, including migration safety checks. - `pnpm --dir packages/plugins/sandbox-providers/kubernetes typecheck && pnpm --dir server typecheck` — passed after refreshing the worktree's frozen offline dependencies. - End-to-end cluster validation of the `build-cython-ext` benchmark remains for CI/maintainer Kubernetes infrastructure; the focused tests assert `github.com` and `pypi.org` produce a policy selected only by the granted run. ## Risks - Standard NetworkPolicy cannot express FQDNs, so an FQDN grant allows hardened public IPv4 TCP 80/443 for that run; use Cilium mode for exact hostname enforcement. - The new field is additive and absent by default, so existing runs keep the current provider-level policy. - Workload owner references garbage-collect scoped policies with the Job/Sandbox; a cluster/controller that ignores owner references could temporarily strand a policy that still selects no future run ID. > 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 — check the roadmap first. See `CONTRIBUTING.md`. ## Model Used OpenAI Codex, exact model ID `gpt-5.6-sol`, high reasoning mode, tool use and code execution. The runtime did not expose a context-window size. ## 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 - [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> |
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eedc7ddef2 |
Make ACP the default engine for local adapters (#9238)
## Thinking Path > - Paperclip is the open source app people use to manage AI agents for work. > - Adapter packages are the bridge between the control plane and local agent harnesses such as Claude Code, Codex, and Gemini CLI. > - ACP support was concentrated in a separate `acpx_local` adapter, which made ACP feel like a separate agent choice instead of an execution capability of the harness adapters. > - Claude, Codex, and Gemini now have ACP-capable harnesses, so the native adapter should own ACP selection, fallback, config, transcript parsing, and environment diagnostics. > - The standalone ACPX adapter still needs a compatibility path for existing rows, but it should not be offered as an active adapter for new agents. > - This pull request moves the shared ACP runtime into `@paperclipai/acpx-engine`, wires Claude/Codex/Gemini local adapters to prefer ACP when prerequisites are available, and retires `acpx_local` to a tombstone. > - The benefit is one adapter per harness, richer ACP transcripts by default where possible, and a migration path for existing Claude/Codex ACPX agents. ## Linked Issues or Issue Description Closes #5932 — the broken default `acpx_local` Claude path is replaced by native `claude_local` ACP support, existing Claude/Codex ACPX rows migrate to native adapters, and new agents no longer choose the standalone ACPX adapter. Refs #4893 — original merged ACPX local adapter runtime that this PR replaces with native per-harness ACP engines. Refs #6590 — prior ACPX-Claude seamlessness work folded into the new native Claude ACP path. Refs #197 — related open generic ACP/Kiro adapter work; this PR does not close it because Kiro/custom generic ACP remains a separate adapter decision. Refs #7018 — related Kimi-specific `acpx_local` shell failure; this PR retires the built-in standalone adapter but does not add a native Kimi adapter. Refs #8864 — related ACPX prompt/API guidance PR; this PR moves runtime guidance into the shared/native ACP engine path instead of the old standalone adapter. Refs #8881 — related `acpx_local` POSIX shell failure from the old `acpx` pin; this PR updates ACP dependencies but does not claim custom/OMP ACP support as a first-class native adapter. Refs #8964 — related open `acpx_local` stderr cleanup PR; this PR makes the old runtime path obsolete for new agents but keeps it as a non-closing reference. Problem description: - The standalone `acpx_local` adapter duplicates Claude/Codex agent choices that already have first-class local adapters. - ACP should be an execution engine capability of each harness adapter when the underlying harness supports ACP. - Existing `acpx_local` agents should either migrate to native harness adapters or fail with an explicit retirement message instead of silently falling back to the process adapter. ## What Changed - Added `@paperclipai/acpx-engine` as the shared ACP execution, session-codec, CLI formatter, and UI parser package. - Wired `claude_local`, `codex_local`, and `gemini_local` to auto-select ACP by default when prerequisites pass, with `engine=cli` opt-out and `engine=acp` strict mode. - Added ACP config schema/UI fields, environment checks, session-codec preservation, transcript parsing, and adapter capability metadata for the native adapters. - Retired `acpx_local` to a server tombstone, removed its UI/package/runtime image surface, and added a migration for existing Claude/Codex ACPX agents. - Updated package manifests, lockfile, release tooling, docs, Kubernetes sandbox defaults, and tests. ## Verification - `corepack pnpm --filter @paperclipai/acpx-engine typecheck` - `corepack pnpm --filter @paperclipai/adapter-claude-local typecheck` - `corepack pnpm --filter @paperclipai/adapter-codex-local typecheck` - `corepack pnpm --filter @paperclipai/adapter-gemini-local typecheck` - `corepack pnpm --filter @paperclipai/acpx-engine exec vitest run` - `corepack pnpm --filter @paperclipai/adapter-claude-local exec vitest run src/server/acp.test.ts src/server/execute.acp-fallback.test.ts src/ui/build-config.test.ts` - `corepack pnpm --filter @paperclipai/adapter-codex-local exec vitest run src/server/acp.test.ts src/ui/build-config.test.ts` - `corepack pnpm --filter @paperclipai/adapter-gemini-local exec vitest run src/server/acp.test.ts src/ui/build-config.test.ts src/ui/parse-stdout.test.ts` - `corepack pnpm --filter @paperclipai/plugin-sdk ensure-build-deps && corepack pnpm --filter @paperclipai/server exec tsc --noEmit` - `corepack pnpm --filter @paperclipai/server exec vitest run src/__tests__/adapter-routes.test.ts src/__tests__/adapter-session-codecs.test.ts src/__tests__/adapter-models.test.ts` - `corepack pnpm --filter @paperclipai/ui typecheck` - `corepack pnpm --filter @paperclipai/ui exec vitest run src/adapters/metadata.test.ts src/adapters/adapter-display-registry.test.ts src/components/AgentConfigForm.test.ts src/components/AgentConfigForm.render.test.tsx src/components/transcript/RunTranscriptView.test.tsx` - `node --test scripts/bootstrap-npm-package.test.mjs scripts/release-package-map.test.mjs scripts/verify-release-registry-state.test.mjs` Note: the server typecheck script calls `pnpm` internally; this dev shell exposes pnpm through Corepack only, so I ran the two script steps manually with `corepack pnpm`. ## Risks - Migration changes existing `acpx_local` Claude/Codex agents to native adapter types and clears old ACPX task sessions/runtime state. - Custom ACP commands remain on the retired tombstone and will need a separate future adapter/plugin path. - ACP auto-selection depends on local Node and ACP server command prerequisites; remote and unsupported environments fall back to CLI unless `engine=acp` is explicit. - `@paperclipai/acpx-engine` is a new public package and needs npm trusted-publishing bootstrap before release automation can publish it. > 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 — check the roadmap first. See `CONTRIBUTING.md`. ## Model Used OpenAI GPT-5 via Codex coding agent. Exact hosted model build and context-window size are not exposed in this runtime. Tool use included shell execution, repository editing, GitHub CLI operations, and local test/typecheck 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/...`, `fix/...`) and contains no internal Paperclip ticket id or instance-derived details - [x] I have run tests locally and they pass - [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> |
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05ab45225a |
feat(plugin-kubernetes): self-hostable Kubernetes sandbox provider (stage 1/3: plugin package) (#5790)
## Thinking Path > - Paperclip is the open source app people use to manage AI agents for work > - Sandbox providers are the seam that lets agent runs execute in isolated environments; today the only first-party remote provider is Daytona, a hosted third-party service > - Self-hosters running Paperclip on their own infrastructure (often Kubernetes already) have no first-party way to run agent sandboxes on a cluster they control > - That gap matters for teams with data-residency, sovereignty, or cost constraints who cannot or will not send workloads to a hosted sandbox service > - This pull request adds a Kubernetes sandbox-provider plugin as a standalone, workspace-excluded package: it implements every SandboxProvider hook the Daytona provider does, on infrastructure the operator owns > - The benefit is that any Paperclip deployment with a Kubernetes cluster gets multi-tenant, network-isolated, quota-bounded agent sandboxes with zero new external dependencies ## Linked Issues or Issue Description No existing issue. Following the feature template: - **Problem:** Paperclip's remote sandbox execution requires a hosted third-party provider. Self-hosters cannot run agent sandboxes on their own Kubernetes clusters with a first-party provider. - **Proposed solution:** A `@paperclipai/plugin-kubernetes` sandbox-provider plugin with two backends: long-lived sandboxes via the [kubernetes-sigs/agent-sandbox](https://github.com/kubernetes-sigs/agent-sandbox) CRD (multi-command exec, adapter-install pattern) and one-shot `batch/v1` Jobs (stable APIs only, no extra controllers). - **Alternatives considered:** Driving kubectl from a generic shell provider (no lifecycle/lease semantics), or requiring a hosted provider (exactly the constraint this removes). ## What Changed This is **stage 1 of 3** of a staged contribution (direction agreed with maintainers): the plugin package alone. Stage 2 (server integration: lease params, provider registration) and stage 3 (agent runtime images + CI) are companion PRs that will be cross-linked from a comment here. - New package `packages/plugins/sandbox-providers/kubernetes` (workspace-excluded, like the path already carved out in `pnpm-workspace.yaml`): src, unit + kind integration tests, operator prerequisite manifests, README, smoke-test guide - Implements the full SandboxProvider hook surface the Daytona provider implements: `validateConfig`, `probe`, `acquireLease`, `resumeLease`, `releaseLease`, `destroyLease`, `realizeWorkspace`, `execute` - Two backends: `sandbox-cr` (default; long-lived pod via the agent-sandbox `Sandbox` CR, supports multi-command exec) and `job` (one-shot `batch/v1` Job; nothing beyond k8s 1.27+ required) - Per-run adapter resolution: one environment serves mixed harnesses; the per-run `adapterType` hint is read through a local optional type extension, so the plugin typechecks and builds against the current plugin SDK and simply falls back to the environment's configured default adapter until stage 2 lands - Exec-env wrapping: the Kubernetes exec API carries no environment, so commands are wrapped to receive the run's env - Fast-upload interception for workspace realization, scoped per lease - Per-tenant isolation: derived namespace per company, RBAC, ResourceQuota, restricted-PSS pod security (runAsNonRoot, drop ALL, seccomp RuntimeDefault, no SA token automount) - Network egress policy in two flavors: native `NetworkPolicy` and `CiliumNetworkPolicy` (FQDN allowlists) - Image allowlist with glob matching, registry override, and per-run image override validation - Per-run Kubernetes Secrets carrying agent credentials, ownerRef'd to the Job or Sandbox CR for cascade GC ## Verification - Standalone build, exactly as the README documents: ```bash cd packages/plugins/sandbox-providers/kubernetes pnpm install --ignore-workspace pnpm test # 147 unit tests, 17 files, all green pnpm typecheck # clean against the in-repo plugin SDK on master pnpm build # dist/ emitted, manifest + worker entrypoints present ``` - A kind-cluster end-to-end integration test is included (`RUN_K8S_INTEGRATION_TESTS=1 pnpm test test/integration/end-to-end-run.test.ts`) - Beyond CI: this provider has been verified in a production multi-tenant deployment against five harnesses (opencode, pi, codex, gemini, claude code) with real billed runs ## Risks - **Zero behavior change for any existing deployment.** The package is workspace-excluded; nothing in the server imports or loads it until stage 2's integration lands. No existing code paths are touched. - The default `sandbox-cr` backend depends on an alpha CRD (`agents.x-k8s.io/v1alpha1`); the README flags this and the `job` backend uses only stable APIs as a fallback. - Risk surface is confined to deployments that explicitly install and configure the plugin. - The default runtime images (`ghcr.io/paperclipai/agent-runtime-*`) are published by the stage 3 companion PR (#7934); until that lands, deployments must point `runtimeImage` at their own images. ## Model Used Claude Opus 4.8 (1M context), extended thinking, with tool use (Claude Code). ## 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 run tests locally and they pass - [x] I have added or updated tests where applicable - [ ] If this change affects the UI, I have included before/after screenshots (no UI changes) - [x] I have updated relevant documentation to reflect my changes - [x] I have considered and documented any risks above - [ ] All Paperclip CI gates are green (pending this push) - [ ] 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: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |