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0c1e7504c0 |
fix(runner): persist warm Daytona workspaces across turns (#12904)
## Thinking Path > - Daytona preserves a stopped sandbox filesystem, but deleting or replacing a sandbox removes its only remote copy. > - Warm reuse therefore improves latency but cannot be Paperclip's durability boundary. > - The host execution workspace must remain authoritative after every successful turn, while same-run recovery must avoid overwriting unexported remote work. > - Result proposal, workspace export/merge, and terminal completion need a durable, replayable ordering so a crash never starts a duplicate provider turn. > - A paid browser acceptance suite must exercise both legacy Codex and Runner Codex for three real turns on one continuously warm Daytona sandbox. ## Linked Issues or Issue Description Refs #12901. Runner Codex did not previously export successful Daytona workspace changes back to the authoritative host workspace. That made warm reuse depend on Daytona's remote filesystem and left deleted/replacement sandboxes without a reliable reconstruction path. The existing paid fixture also lacked a focused three-turn continuity case for both Codex adapters. ## What Changed - Persist versioned, atomic native workspace-sync descriptors and durable seeds in `PAPERCLIP_HOME`, without credentials or a database migration. - Classify fresh, warm, replacement, and same-run-recovery workspace preparation explicitly; ambiguous lease/root/digest evidence fails closed. - Finalize native workspace export/merge after semantic result proposal and before run completion, with idempotent replay that never submits a second provider turn. - Surface legacy Codex workspace restoration failures instead of masking them, while preserving an earlier provider error when both fail. - Keep healthy reusable Daytona leases warm for legacy and native adapters, stamp finalized workspace generations, and retain existing cleanup behavior for per-turn or unhealthy leases. - Preserve Runner Codex's provider process/session across warm turns, including bounded post-terminal tail draining and exact authority rotation. - Add the exact paid `daytona-warm-continuity` matrix: - `legacy-codex × daytona × warm-three-turn` - `runner-codex × daytona × warm-three-turn` - Drive all three turns through the browser, verify ordered file continuity and stable lease/workspace/runtime identities, capture per-turn timings, and delete the sandbox immediately after assertions. - Document `pnpm test:e2e:runner -- --suite daytona-warm-continuity`; no package script was added. ## Verification - `pnpm typecheck` — passed, including migration safety (no migration added) - Focused server/runner Vitest coverage — 144 passed - `pnpm test:e2e:runner:unit` — 114 passed - `pnpm test:e2e:runner:typecheck` — passed - `pnpm --filter @paperclipai/paperclip-runner test:codex` — 66 passed, 1 helper ignored - `native-session-executor.test.ts` — 139 passed, including safe fail-closed cleanup after remote runner identity capture failure - Paid local browser acceptance, exact post-rebase Linux/amd64 runner binary: - Runner Codex — passed in 1.7m; 3 runs; lease outcomes `created, resumed, resumed`; 10/10 matchers; cleanup passed - Legacy Codex — passed in 2.7m; 3 runs; lease outcomes `created, resumed, resumed`; 10/10 matchers; cleanup passed - [Protected paid GitHub Actions campaign](https://github.com/paperclipai/paperclip/actions/runs/34026735033) against `7da42a91b95fa7fb2df126668ef7e37afb3b2b9d` — passed 2/2: - Runner Codex — 3 runs; lease outcomes `created, resumed, resumed`; evidence and cleanup passed - Legacy Codex — 3 runs; lease outcomes `created, resumed, resumed`; evidence and cleanup passed - Merge/enforcement, S3 history, and Pages publication jobs passed - Paid result artifacts were scanned for both provider credentials; neither secret was present. - Current PR checks — 31 passed, 1 expected Storybook skip; Greptile 5/5; Superagent security scan passed - `git diff --check origin/master...HEAD` — passed - Confirmed no `package.json`, lockfile, migration, or SQL changes. ## Risks - Workspace synchronization now sits on the terminal-success path, so a remote export failure deliberately prevents false success. Retryable state retains its lease/seed; loss of the only unexported remote copy fails closed. - Warm provider reuse has strict identity and quiescence checks. Mismatched or ambiguous evidence blocks reuse rather than risking concurrent provider work. - The paid suite incurs Daytona and Codex cost only in the existing protected scheduled/manual workflow and explicitly destroys its sandbox after each cell. ## Model Used OpenAI Codex with GPT-5 agentic reasoning, repository inspection, real browser E2E execution, Rust/TypeScript test execution, and GitHub Actions diagnostics. ## 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 linked an existing issue or described the issue in-PR - [x] I have not referenced internal/instance-local Paperclip issues or links - [x] My branch name contains no internal ticket id - [x] I have run tests locally and they pass - [x] I have added or updated tests where applicable - [x] I have documented the dedicated suite invocation without adding a package script - [x] I have considered and documented risks above - [x] All Paperclip CI gates are green on the current revision - [x] Greptile is 5/5 with no open P2s, recommendations, or follow-ups on the current revision - [x] I will address all reviewer comments before requesting merge |
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1dceee9a4e |
fix(runner): persist warm Daytona workspaces (#12901)
## Thinking Path > - Paperclip manages AI agent work and the execution state for each task. > - Remote agents run in sandbox environments such as Daytona. > - Daytona keeps files while a sandbox is stopped, but deletion removes those files. > - Runner Codex did not copy successful remote workspace changes back to the host workspace. > - A warm sandbox could therefore hide data loss until Daytona replaced or deleted the sandbox. > - This pull request makes the host workspace durable after every successful turn and keeps verified reusable sandboxes warm. > - The benefit is reliable multi-turn work across warm reuse, restart, stop, and sandbox replacement. ## Linked Issues or Issue Description **What happened?** A successful native Codex turn in Daytona could leave workspace changes only in the remote sandbox. A later warm turn appeared to work because it reused that filesystem. A replacement sandbox could start from stale host data and lose the successful changes. **Expected behavior** Paperclip must merge each successful remote turn into the authoritative host workspace before it completes the run. A verified warm lease may reuse its remote files. A replacement lease must reconstruct the exact durable workspace seed. **Steps to reproduce** 1. Run Codex in a reusable Daytona environment. 2. Write a file during one successful turn. 3. Replace the Daytona sandbox before the next turn. 4. Observe that the next turn can start without the prior file on the unpatched code. Related remote workspace foundation: #10070. ## What Changed - Added explicit `host_current`, `durable_seed`, and `adopt_remote` workspace preparation modes. - Added atomic, versioned native workspace descriptors and seed archives under `PAPERCLIP_HOME`. - Added real native sandbox export and three-way host merge before terminal result completion. - Added workspace-only recovery after a proposed result. Recovery does not submit another provider turn or consume the provider retry budget. - Added fail-closed handling when a sandbox with unexported changes is gone. - Kept healthy reusable Daytona sandboxes started for legacy Codex and Runner Codex. - Kept the Runner Codex process and provider session across verified warm turns. - Added the paid `daytona-warm-continuity` browser suite. It contains exactly the legacy Codex and Runner Codex cells. Each cell performs three measured turns. - Documented `pnpm test:e2e:runner -- --suite daytona-warm-continuity`. No package script was added. - Added no database migration. The metadata format is backward compatible and idempotent. ## Verification - `pnpm typecheck` - `pnpm test:e2e:runner:unit` — 114 passed - Native workspace, finalizer, session, and environment tests — 232 passed - Daytona provider tests — 150 passed - Workspace staging and merge tests — 98 passed - Runner transport tests — 63 passed - Legacy Codex restore tests — 5 passed - Rust format and compile checks pass through root typecheck - The paid Daytona suite was not run locally because the required Daytona, OpenAI, and immutable image credentials are not present. ## Risks - The main risk is an incorrect workspace identity or merge after a crash. Durable descriptors bind the run, workspace, lease, provider lease, local root, remote root, and baseline digest. Ambiguous evidence fails closed. - The host merge may conflict with concurrent host edits. The existing three-way merge and exclusion rules handle this case and surface failures. - A deleted sandbox cannot recover unexported bytes. Paperclip now blocks with `workspace_sync_out_unrecoverable` instead of reporting success or rerunning the provider. - There is no database migration. Descriptor writes and recovery are atomic and idempotent. ## Model Used OpenAI Codex with GPT-5. The run used agentic reasoning, repository inspection, code execution, test execution, Git, and GitHub CLI tools. ## 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 |
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bcc6fe7a44 |
fix(runner): restore multi-turn remote sessions (#12840)
## Thinking Path > - Paperclip manages AI agents and their work. > - The runner executes agent turns on local and remote providers. > - A remote per-turn session must save its state before Paperclip releases its sandbox. > - The session runtime returned after 100 milliseconds while the remote checkpoint still ran. > - The next turn also checked the local state path instead of the verified remote backup. > - This pull request waits for the bounded remote close and accepts only a verified suspended backup. > - The benefit is reliable multi-turn execution without weaker identity checks. ## Linked Issues or Issue Description **What happened?** A successful remote agent turn released its sandbox before the runner saved the verified continuation backup. The next turn failed with `runner_state_identity_mismatch`. **Expected behavior** Paperclip must finish the bounded remote checkpoint before it releases the sandbox. A later turn must validate and restore the digest-matched suspended backup. **Steps to reproduce** 1. Run a native ACPX Claude Plan test in a non-reusable Daytona sandbox. 2. Reject the first plan to start a second turn. 3. Observe that the second turn fails before provider execution. **Paperclip version or commit** The failure reproduced at `13775a90b078ff64872f50961ea1b83d575e7bc6`. **Deployment mode** GitHub Actions with a Daytona sandbox. ## What Changed - Wait for the internally bounded remote runner close and checkpoint before the host returns. - Preserve the existing short cleanup bound for other providers. - Validate remote continuation lifecycle from a complete digest-verified backup when local runner state is absent. - Keep corrupt, non-suspended, mismatched, and unverified state fail-closed. - Make native Plan completion and accepted-Plan wake prompts deterministic. ## Verification - A prior 45-cell local campaign passed 44 cells. The only failure was the OpenCode Plan prompt variance fixed here. - A focused OpenCode local Plan rerun passed. - ACPX Claude Daytona message and question cells passed. - Focused regressions cover delayed checkpoint close and verified remote backup lifecycle. - GitHub Build and the focused ACPX Claude Daytona Plan cell will validate this exact head. ## Risks Remote runnerd sessions now wait for their internally bounded close/checkpoint path before returning; generic provider cleanup retains the existing 100 millisecond bound. Durable run success still cannot be reversed. The environment release guard still blocks sandbox destruction when no verified backup stamp exists. ## Model Used OpenAI Codex, GPT-5.6, extended reasoning, with code execution and GitHub Actions inspection. ## 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 and contains no internal task id - [ ] 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 - [ ] All Paperclip CI gates are green - [ ] Greptile is 5/5 with no open findings - [ ] I will address all Greptile and reviewer comments before requesting merge |
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af3023f1e3 |
fix(runner): repair paid provider startup paths (#12769)
## Thinking Path > - Paperclip manages AI agents that perform work. > - Paperclip Runner connects durable task runs to local provider processes. > - The full-stack paid matrix exposed failures after the runner integrity repair. > - Verified JavaScript entrypoints lost their relative module graph when Linux executed them through descriptor paths. > - Returned provider startup errors also remained pending and became indeterminate after recovery. > - Sparse Codex tool lifecycle events lost the `write_document` identity before task transcript projection. > - This pull request repairs those three boundaries and makes the structured-question fixture deterministic. > - The benefit is repeatable provider startup, exact failure replay, and correct inline Plan placement. ## Linked Issues or Issue Description Refs #12721 and #12700. **What happened?** The paid runner matrix failed ACPX and OpenCode startup before provider session creation. The runner journal then replaced the original startup error with an indeterminate recovery result. Native Codex saved a Plan but rendered it only as a fallback card. A legacy Claude waiting reply could also echo the reserved terminal marker before the answer arrived. **Expected behavior** Verified JavaScript providers must start from immutable descriptor-backed artifacts. Returned startup failures must persist as terminal failed command results. Native tool lifecycle updates must preserve the `write_document` boundary. Pre-answer fixture output must not contain the reserved terminal marker. **Steps to reproduce** 1. Run the local provider cells in the Runner Full-Stack E2E workflow. 2. Observe ACPX and OpenCode fail during `session.open` before provider execution. 3. Observe recovery report `execution_indeterminate` instead of the original startup error. 4. Run the native Codex Plan cell and observe the fallback Plan card after the tool activity row. 5. Run the legacy Claude structured-question resume cell and observe an early marker echo in waiting prose. **Paperclip version or commit** `0f9452101740835ce0b1488a204bf48acd5bafc3` **Deployment mode** Local development with the paid GitHub Actions acceptance workflow. ## What Changed - Bundle the ACPX sidecar and OpenCode proxy as self-contained Node ESM entrypoints before hashing and verified descriptor launch. - Anchor ACPX dynamic provider package resolution at a controller-derived provider-pack root and keep that root out of the provider child environment. - Persist executor-returned startup errors as redacted durable failed command results while retaining indeterminate recovery for true process death. - Coalesce sparse native tool items by stable ID so a late `write_document` name, input, and result reach the transcript boundary once. - Forbid the structured-question fixture from spelling or announcing its reserved terminal marker before the user answers. ## Verification - Rust and TypeScript regression tests cover durable failed replay, true crash ambiguity, bundle closure, package-root derivation, environment filtering, exact Codex tool lifecycle coalescing, and prompt determinism. - Local execution is intentionally limited to formatters and static diff checks. GitHub Actions will run tests, type checks, builds, and security checks. - After ordinary CI is green, scoped paid cells will validate one ACPX launch, one OpenCode launch, native Codex Plan projection, and legacy Claude structured resume before a complete matrix rerun. - Prior failing matrix: https://github.com/paperclipai/paperclip/actions/runs/33682434315 ## Risks - Bundling changes the bytes covered by provider launch hashes. Provider-pack generation already hashes the final built files. - ACPX still loads qualified provider packages dynamically. The controller supplies a normalized package root, while existing version, digest, path, and descriptor checks remain active. - Durable `failed` is terminal. Replays return the same redacted result and do not execute the provider effect twice. > 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 based on GPT-5 with agentic reasoning, repository inspection, code editing, Git, parallel subagents, and GitHub Actions coordination. The exact deployed snapshot and context-window size are not exposed to this task. ## 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 linked related public work or described the bug in this PR - [x] I have not referenced internal or instance-local Paperclip issues or links - [x] My branch name describes the change and contains no internal ticket id - [ ] I have run tests locally and they pass (intentionally deferred to GitHub Actions) - [x] I have added or updated tests where applicable - [x] No documentation change is required for this runtime repair - [x] I have considered and documented the risks above - [ ] All Paperclip CI gates are green - [ ] Greptile is 5/5 with no open P2s, recommendations, or follow-ups - [x] I will address all Greptile and reviewer comments before requesting merge |
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0f94521017 |
fix(runner): restore local session and task integrity (#12721)
## Thinking Path > - Paperclip is the control plane for agents that perform work. > - Paperclip Runner connects durable provider sessions to individual task runs through PRP. > - Provider continuity and per-run authority are different lifetimes. > - The existing implementation mixed those lifetimes and lost event metadata between provider frames, runnerd, persistence, API sanitization, and the task thread. > - That caused failed continuation, missing progress and Plans, duplicate replies, hidden failures, and unsafe recovery. > - This repair gives every heartbeat fresh authority, preserves qualified provider-session continuity, and restores one lossless presentation path without changing direct adapters. ## Linked Issues or Issue Description **What happened?** A second native heartbeat could reuse tickets, leases, command receipts, sequence state, and run identity from the first heartbeat. Provider phase and item identity could be lost before the UI read them. Redaction could corrupt protocol discriminators while still missing malformed credential tails. The task thread could fold progress into the final response, hide failures, or show more than one final answer. Native Codex also exposed approval modes that do not yet have a durable approval bridge. **Expected behavior** Each heartbeat uses a new PRP authority epoch. Codex and OpenCode preserve exact qualified provider sessions; ACPX emits an explicit continuity event when its qualified process-replacement policy is used. Every accepted provider event is presented, classified as internal, or surfaced as unsupported. The task page shows chronological progress, reasoning summaries, activity, Plans, interactions, terminal failures, and exactly one final reply. Direct adapters retain their existing path. **Steps to reproduce** 1. Enable the unified experimental Paperclip Runner setting. 2. Create a local native Codex, OpenCode, ACPX Claude, or ACPX Codex agent. 3. Run response, Plan, structured-question/resume, restart, cancellation, and failure scenarios. 4. Reload the task while active, waiting, failed, and settled. 5. On the old implementation, observe stale run authority, missing classifications, incomplete output, or duplicated/folded replies. **Paperclip version or commit** The repair is based directly on `master` at `87d05e194b643810d16d20612115acd01d735d43`. **Deployment mode** Local development with the embedded database. Related work: Refs #12616, #12646, #12666, #12685, and #12700. ## What Changed - Rotates PRP control-plane, outbox, ticket, lease, command, receipt, and sequence authority for each heartbeat while carrying forward only a validated provider-session identity. - Reads `control-plane-state.json`, validates both durable schemas and lifecycle values, resumes coherent current runs, archives qualified settled authority, and quarantines malformed or mismatched scoped state without moving ambiguous live legacy state. - Preserves Codex provider phase and stable item identities so commentary remains progress and only `final_answer` becomes final. - Adds raw OpenCode HTTP/SSE boundary coverage and canonical reasoning lifecycle mapping. - Makes ACPX normalization lossless for visible reasoning, tool lifecycle metadata, stable bounded identities, Plan revisions, structured requests, failures, and qualified process replacement. Only the compatible terminal assistant message is promoted as final. - Applies schema-aware redaction before generic JWT-shaped detection and scans every diagnostic string leaf. Malformed raw/escaped quoted credential tails are redacted in both server and durable Rust state. - Restores snapshot-style chronological task presentation, expandable tool activity, inline Plan cards, visible waiting/resume/cancel/failure states, and exactly one final answer. - Makes `never` the only qualified native Codex permission mode and rejects unsupported persisted native modes with remediation. OpenCode and ACPX policies remain intact. - Keeps the unified experimental Runner setting as the only enablement flag. Onboarding and direct Codex, Claude, and OpenCode stay on their legacy execution/finalization paths. - Adds cross-language goldens, authority/recovery/fault coverage, exact response/count assertions, and native plus legacy acceptance scenarios. ## Verification - Pull-request GitHub Actions run Rust formatting/tests, TypeScript checks, server/UI tests, builds, protocol drift checks, browser E2E, and security scans. - A separate workflow-only validation ref is pinned directly on this PR head and runs the 35-cell paid local matrix: three core scenarios plus structured-question resume and restart/resume for native Codex, native OpenCode, ACPX Claude, ACPX Codex, and direct Codex/Claude/OpenCode. Run: https://github.com/paperclipai/paperclip/actions/runs/33682434315 - Acceptance requires exact single visible replies, monotonic sequences, matching envelope discriminators, one semantic terminal, one run terminal, no unresolved interaction, no duplicate mutation, no secret leakage, provider continuity, and zero native rows for direct adapters. - Per maintainer direction, tests are running in GitHub Actions rather than on the slower local host. Only formatters and static diff checks were run locally. ## Risks - Recovery from old or partial filesystem state is sensitive. The repair fails closed, preserves active or unverifiable authority, and quarantines only state whose scoped ownership is safe to move. - Provider event formats can change. Closed validators and boundary goldens turn new or malformed events into visible diagnostics instead of silent drops. - Shared task presentation could affect direct adapters. Runtime-fact gating plus the direct-adapter matrix protect the existing path. - Managed and remote providers are not qualified here. Shared code continues to compile and fail safely, but live qualification is deferred. > 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 based on GPT-5. The exact deployed snapshot and context-window size are not exposed to this task. It used agentic reasoning, repository inspection, code editing, Git, parallel subagents, and GitHub Actions. ## 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 and contains no internal Paperclip ticket id - [ ] I have run tests locally and they pass (intentionally deferred to GitHub Actions) - [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 risks above - [ ] All Paperclip CI gates are green - [ ] The paid local-provider matrix is green - [ ] Greptile is 5/5 with no open P2s, recommendations, or follow-ups - [x] I will address all Greptile and reviewer comments before requesting merge |
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5716fe907e |
test(runner): add full-stack acceptance and eval gates (#12700)
## Thinking Path > - Paperclip is the open source app people use to manage AI agents for work. > - The runner subsystem executes agent work across local and managed provider backends. > - The lower pull requests restore the task runtime, provider backends, and managed-provider control plane. > - The restored system needs repeatable full-stack checks before it can ship safely. > - Paid live checks also need clear access, cost, and secret controls. > - This pull request adds acceptance, live evaluation, chaos, and release gates for the restored runner stack. > - The benefit is measurable runner parity with safer release decisions. ## Linked Issues or Issue Description **Subsystem affected** Cross-cutting. This change covers runner tests, release workflows, server contracts, and evaluation tools. **Problem or motivation** The runner stack did not have one complete acceptance surface for native Codex, ACPX, Claude Managed, and AWS AgentCore. Release checks could miss provider drift, task-view regressions, cost-policy errors, and destructive cleanup errors. **Proposed solution** Add a 57-cell full-stack catalog, a Daytona image, and opt-in paid workflows. Add live evaluation, chaos, cost-limit, redaction, and release contract checks. Add AWS AgentCore infrastructure and guarded provisioning tools. Keep the native runner experimental flag off by default. **Alternatives considered** We considered manual smoke tests only. They do not give repeatable evidence and they do not protect release branches. We also considered one large pull request. The stacked pull requests keep each review below the Greptile file limit. **Roadmap alignment** This work supports the shipped Cloud / Sandbox agents milestone and the shipped Agent evals & feedback milestone in `ROADMAP.md`. Related stack: - #12699 adds managed provider backends and lifecycle support. - #12691 adds qualified OpenCode and ACPX provider backends. - #12685 restores task runtime rendering and steering. ## What Changed - Add the runner full-stack harness with 57 catalog cells and 60 unit tests. - Add a Daytona runner image with digest-pinned base images and base-aware image-content checks. - Add guarded live evaluation and chaos workflows with a fixed 40-execution matrix; live and full-stack paid schedules now run only on Sundays or by manual dispatch. - Add in-flight reported-usage cost stops, post-turn cost caps, exact-threshold failure classification, secret redaction, retry classification, and actor authorization. - Reattach stream and hard-budget listeners before restart-recovery continuations so restored paid sessions cannot bypass in-flight interruption. - Preserve OpenCode usage and cost across tool-loop messages and turns while exposing an explicit current-run delta to durable accounting. - Keep PNG/WebM evidence in access-controlled artifacts only, reject SVG, and publish only pruned inert structured per-attempt evidence. - Add AWS AgentCore infrastructure, provisioning checks, and smoke tools; reject unsafe model identifiers, require exact stack ownership markers, and make failed-stack replacement explicit. - Add evaluation-session contracts and capability reports. - Add release workflow checks for immutable action pins, frozen dependency installs, exact weekly cron shape, paid-run guards, provider-secret isolation, and chaos test paths. - Reauthorize the original and triggering numeric actor IDs as the first step of every provider-secret job, including partial reruns, before checkout or provider access. - Give each full-stack matrix cell only its matching provider credential, expose Daytona only to Daytona cells, and disable shared dependency caches anywhere paid credentials or OIDC write access are present. - Protect the legacy manual E2E workflow with the same default-branch, allowlist, environment, and per-job authorization boundary. - Rotate live-eval candidates by week and retain 120 days of compatible history so the seven-week trend window remains viable. - Restore the root runner-acceptance commands and reconcile reported snapshots, raw receipts, and terminal usage without double counting or losing late usage. - Mark ACPX token deltas exact only when every budget field is present, keep cumulative cost/request authority separate, reject non-USD cost labeling, and include thought tokens in output-token budgets. - Keep `enableNativeRunner` off by default. The acceptance harness enables it only in its isolated test instance. ## Verification Passed locally: - `pnpm --filter @paperclipai/paperclip-runner typecheck` - `pnpm test:runner-acceptance:typecheck` - `pnpm test:runner-acceptance` (19 tests) - focused OpenCode proxy, driver, runnerd transport, live-session, and turn-stream tests (106 tests) - `pnpm --filter @paperclipai/paperclip-runner exec vitest run src/live/clean-room-server.test.ts` (22 tests) - `pnpm test:e2e:runner:typecheck` - `pnpm test:e2e:runner:unit` (62 tests) - `node --test scripts/__tests__/release-verify-workflow.test.mjs` - `pnpm --filter @paperclipai/paperclip-runner test:runner-workflow-evals` (22 tests) - `pnpm -r typecheck` - `pnpm build` - `node --test packages/paperclip-runner/scripts/aws-agentcore-provisioning.test.mjs` (6 tests) - `git diff --check` - `cargo test --manifest-path packages/paperclip-runner/runner/Cargo.toml -p paperclip-runner-core --lib --locked` (161 tests) - focused ACPX provider-event tests (10 tests) - The rebased PR changes 92 files. `pnpm-lock.yaml` is unchanged. I did not run paid live provider jobs or provision AWS resources. Those checks need credentials and can create cost. ## Risks The paid workflows can create provider cost. They require an allowlisted original and triggering actor, the protected `runner-e2e-paid` environment, explicit opt-in variables, and cost limits. The four provider credentials exist only in that master-only environment, which requires allowlisted reviewer approval and disables administrator bypass; repository and organization Actions scopes contain no copies. Provider usage arrives after a billable request, so the live guard cannot prevent one request from crossing a threshold. It interrupts immediately on the first reported threshold hit and permits no continuation. Visual evidence can contain secrets rendered as pixels. PNG/WebM remain only in access-controlled workflow artifacts; SVG and per-attempt XML are excluded, and S3/Pages receive a pruned structured dashboard. The AWS scripts can create cloud resources. They use explicit commands, least-privilege roles, KMS encryption, saved nonsecret metadata, and explicit teardown. This pull request does not enable the experimental native runner for existing instances. > 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 with GPT-5. The model used extended reasoning, tool use, code execution, and parallel subagents. ## 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 |