Files
DottaandPaperclip a6306ba606 feat(runner): consolidate Cursor production integration (#15075)
## Thinking Path

> - Paperclip is the open source app people use to manage AI agents for
work.
> - The native Runner keeps provider sessions under company authority,
approvals, budgets and durable recovery.
> - Cursor work was spread across candidate branches. The published
branch lacked later plan, permission and cleanup fixes.
> - Production also needs public installation and matching runtime
assets for local and Daytona execution.
> - This pull request consolidates Cursor onto current mainline recovery
behavior and completes that installation path.
> - The installed v11 release passed focused local and Daytona
qualification after the generic mode and lifecycle cleanup. The later
model-selection correction and current mainline merge produce v14
artifacts that need matching release qualification.
> - Cursor admission is enabled in source; publish only an artifact
combination with matching qualification. Native AskQuestion and complete
per-run dollar accounting remain excluded.

## Linked Issues or Issue Description

Refs: #14435, #14631, #14669, #14699, #14724.

This completes the Cursor implementation by @cryppadotta from combined
source `22c78242a4e0c2369fecf0c2dc4e7600fbad6706`. It preserves newer
mainline recovery, completion and warm-directory behavior. Pi and
Copilot remain gated.

## What Changed

- Generate named Rust and TypeScript ACPX release profiles from one
manifest. Share runtime pins with packaging and server verification.
Preserve vendor runtime versions; bind the updated ACPX patch to Cursor
profile v14 and reject stale generated declarations at build/typecheck.
- Remove ACPX model allowlists, including the former Codex and Pi
restrictions and the duplicate developer test-drive gate. Send any
explicit model ID unchanged to its provider and verify the effective
selection before prompting. The bundled ACPX package forwards unlisted
IDs, rejects mismatched acknowledgements, and restores the exact
selection after session load. It does not expand Cursor model aliases.
Provider rejection, mismatch, or missing model controls fails without a
fallback. Model examples live in evaluation fixtures, outside runtime
declarations.

- Add pinned Cursor execution, contained instructions, exact model
verification and Agent/Plan/Ask modes.
- Carry an opaque generic `mode` identifier in shared native execution,
sidecar, Rust and recovery contracts. The provider adapter owns
supported modes, defaults, native translation and acknowledgement.
- Keep native RPC recognition, accepted-plan interpretation and
permission evidence behind provider adapters. Shared settlement and
recovery verify normalized facts and their committed evidence.
- Replace the Cursor-only warm-attachment branch with a runner-owned
capability. Only Cursor opts into it. Move profile compatibility and
optional usage parsing into provider metadata and adapters.
- Write generic plan-wait receipts. Read exact historical Cursor
receipts through a separate compatibility decoder. Reject mixed formats
and preserve existing authority checks.
- Carry native plans, semantic questions, todos, child activity,
permission identities and partial usage diagnostics through the Runner.
- Preserve durable response delivery, cancellation, warm ownership and
process retirement.
- Finish accepted planning runs successfully. Keep their tasks open for
explicit direction. Acceptance does not start implementation.
- Ship `paperclipai runtime setup cursor` and its provisioner through
the public package. npm installation does not download Cursor. Setup
uses the OS account's closure-keyed cache so system-wide npm packages
can remain read-only. Run it as the Paperclip service account.
- Include Cursor in normal provider packs and Daytona images for macOS
ARM64/x64 and Linux x64.
- Reject stale release packs by source revision and current ACPX/Cursor
pins before assembly writes files. Verify current Cursor
version/profile/closure again at runtime.
- Ship all three daemon targets and the expected Linux image-pack
identity. A macOS controller uses its packaged Linux daemon for Daytona.
Image mismatches fail before provider launch.
- Use the vendored Runner boundary for installed readiness probes.
Verify the actual installed Cursor probe.
- Verify compiled public Daytona plugins and their release versions in
installed smokes.
- Record exact artifacts, the acceptance matrix, retained failures,
supported capabilities and rollback behavior in the [readiness
report](https://github.com/paperclipai/paperclip/blob/codex/cursor-production-readiness/doc/plans/2026-10-03-cursor-production-readiness.md).

## Verification

- Current head `f7ec5cc1f0e30c62a829c016ff2013a2a9d79037` merges
mainline `faa8e452c73bae5e044dd6379179a00106abb131`. It keeps Cursor
plan and cancellation guards alongside mainline historical-question
filtering. The evaluation catalog includes both Cursor and expanded
adapter accounting cases (683 total). Recursive typecheck, full build,
696 lifecycle/recovery tests, 45 fixture tests and fixture typecheck
passed. Current-head CI passed: 56 successful checks, one neutral and
four skipped. [Complete
CI](https://github.com/paperclipai/paperclip/actions/runs/37557996535).
The fresh Base Greptile review is 5/5 on this exact head, with 304 files
reviewed, zero new comments and zero unresolved threads. The user
authorized overriding the CODEOWNER review gate after checks passed; no
failing checks are overridden. Prior results below retain their own head
identities.
- Corrective head `3d2b168366258036f6b6a6fccb382c49138cc601` fixes the
post-merge Apex finding. Automatic-review and new-evidence
reconciliation preserve pending child results and recheck delivery under
the status lock before completing. Account repair now excludes unrelated
secret consumers and requires the failed agent's identity. Regression
coverage includes the commit race, delivery statuses,
current-run/current-intent exclusions, repeated reconciliation, both
database reconciliation paths, and credential consumer boundaries. All
184 affected tests, server typecheck and server build passed.
Current-head Base Greptile review is 5/5, with 304 files reviewed, zero
new comments and zero unresolved threads. Current-head CI passed: 56
successful checks, one neutral and four skipped. [Complete
CI](https://github.com/paperclipai/paperclip/actions/runs/37535994724).
This Base review is distinct from the earlier Apex review.
- Merge head `5957c257a` reconciles mainline `b508a05c4`. It preserves
both accepted-plan waits and pending-child-completion checks, current
provider selectors, task-creation response identities, and mainline ACPX
missing-file handling. The combined patch is bound to Cursor profile
v14; historical records keep their original identities.
- Merge head `5957c257a` passed recursive typecheck, full build, 43
installed ACPX/package contracts, 107 provider UI and plan/recovery
tests, 593 database-backed lifecycle tests, 49 profile/native contract
tests, 45 Product E2E fixture tests, fixture typecheck, token gates,
three provider-free browser task-creation cases, and Runner
conformance/replay checks. Its complete CI passed (55 successful checks,
one neutral and four skipped), while Apex returned 2/5 with a
child-delivery finding addressed below.
- The local full-suite attempt again failed the unchanged Git streaming
test (360-second timeout) and was stopped. The concurrent local Rust
attempt failed four unchanged Codex process/deadline tests; all four
passed serially without code changes in 7.29 seconds after removing the
competing test load. These failed commands are retained and are not
reported as full-suite passes; the fresh Linux CI runs are tracked
separately.
- The previous head `907bdb2a2778c7ffeb4a662a91460c9d1ddfc9c5` earned
Apex 5/5 with zero comments after fixing all three findings: per-user
install cache, stale release-pack rejection, and public Linux smoke
account/home handling. Its real built installer passed from read-only
public packages on macOS ARM64 and Linux x64. All 137 release-registry
checks and 64 ACPX package contracts passed. That review does not cover
this mainline reconciliation.
- Prior `beadd3654` passed the full CI matrix; its one unchanged chat
test failure and successful single retry remain in the [CI
history](https://github.com/paperclipai/paperclip/actions/runs/37521449327).
Historical results below remain attributed to their original builds.

- Fixture follow-up `dd59d7e82b103a88b7cbd7d2c38b612c0fbbff7a` removes
provider-specific model choices from generic offline ACPX tests. The
fake sidecar preserves the model and session identity selected at open
through suspension. Affected verification passed: 106 Rust tests and 73
TypeScript tests. This commit changes test code only; the
production-code checks below retain their recorded identities. Its CI
and Greptile review later passed; those results belong to that
historical head.
- Model-selection cleanup `9a070808b48960a41fdfd369ae0636b95af82459`:
252 focused Runner tests passed (six platform skips), covering all six
ACPX agents, native model acknowledgement, rejected selections,
installation integrity and recovery identity. The merged branch passed
recursive typecheck, full build, token gates, server admission (19
tests), and the Product E2E catalog (45 tests). The acceptance catalog
passed all four tests. The full Rust suite passed: 643 tests, 2 ignored.
It verifies sidecar acknowledgement of unlisted models and rejection of
model mismatches. The final commits only update Rust tests; production
sources match the verified build at
`65ec3279ac50185e3cda109b5cfd9b4f56105de0`. No new paid provider calls
were made.
- The merge preserves both Cursor and the new mainline public-MCP
fixture cases. Auto-merge remains disabled; the latest follow-up status
is recorded above. The local `pnpm test:run` attempt hit the unchanged
Git streaming test's 300-second timeout and was interrupted before
merging mainline. The broad Runner attempt found obsolete single-model
assertions plus three macOS fixture-path failures caused by a
`/private/tmp` override. The assertions are corrected; affected
TypeScript checks passed with the standard macOS temporary directory,
and the complete Rust suite passed. Neither interrupted command is a
full-suite pass.
- Earlier declaration-cleanup head `6f4a5e9e2` passed recursive
typecheck, build, Rust and focused tests. Its CI later exposed a test
expecting duplicated Grok digest literals. The current source fixes that
assertion to compare launcher bytes with the shared manifest. Historical
successes and failed attempts are retained; no new live provider
qualification is claimed.
- Previous head `e75fde6098b0ddd8cec765bfb6ecaeecb88a26a6` passed
complete CI (56 successful checks, one neutral, four skipped) and
Greptile 5/5. [Historical complete
CI](https://github.com/paperclipai/paperclip/actions/runs/37489112305).
Those results are not claimed for the cleanup head.
- Frozen live application: `d7b696f9b8f79095233e9e3d56d23e6a6018dd48`.
Public package version: `0.0.0-cursor-verify.3d0c9b7761c6`. The
declaration cleanup preserves release pins and does not relabel that
tested artifact as a build of the new source. Mainline through
`e34abee670` was reconciled while preserving accepted-plan waits,
provider-capacity handling, and both Cursor and public-MCP fixtures.
- Clean normal installation, explicit Cursor setup and daemon resolution
passed on macOS ARM64, macOS x64 under Rosetta, and Linux x64. npm
lifecycle hooks ran without silently downloading Cursor.
- Historical v11 live matrix: **18/18 passed with cleanup** (nine local,
nine Daytona) after the generic mode and lifecycle cleanup. The campaign
has 23 attempts; all five failures and their diagnoses remain recorded.
Exact case identities, hashes and limits are in the readiness report.
All provider calls are real, use the explicit Luna model and
company-bound credentials, and run without qualification or
runtime-asset overrides.
- The immutable Daytona image is
`ghcr.io/paperclipai/paperclip-daytona-runner@sha256:d6259b6bba094702c13fc2283bd85550849c1c53145b656fb2746778f9fa1747`.
The public Daytona plugin is installed independently and its version is
checked.
- Recursive typecheck, full build, token gates and Runner
contract/conformance/replay checks passed on the frozen application. Its
complete Linux CI suite passed. The duplicate local full-suite command
was incomplete after timing failures; affected repeats passed, but that
command is not reported as a clean pass.
- Qualification fixtures passed typecheck, 1,675 Vitest tests (one
skip), 128 Node checks, three provider-free browser tests, and 150
focused lifecycle tests after the final diagnostic correction. The
affected legacy Cursor command file also passed all five tests after
removing its shorter 10-second override; it now inherits the suite’s
standard 15-second timeout. Greptile is 5/5 on `e75fde609` with no
unresolved review threads. CI results above are recorded separately from
historical build results.

## Risks

- Cursor v14 includes the updated ACPX dependency patch and release
identity. The v11 live matrix and image below remain historical
evidence. They do not certify new v14 package/image artifacts.

- ACPX accepts models beyond the qualification fixtures. Availability
and entitlement depend on the provider. Successful configuration is not
a claim of live qualification for every model.
- Shared mode is an opaque identifier. Provider adapters own its
meaning. Incompatible historical sessions remain fenced; exact committed
plan waits and task history remain inspectable.
- Native AskQuestion is excluded. Paperclip semantic questions are
supported. Authoritative per-run dollar accounting is unavailable;
partial counters remain diagnostics and unknown cost is not zero.
- Image input, detailed native diffs, deeper child transcripts and
native plan-file export remain follow-ups.
- macOS x64 has clean-install and daemon-startup proof under Rosetta,
not a separate live campaign on Intel hardware.
- Release only the tested package/image combination. Merging this PR
does not publish npm packages or deploy that image. Later builds need
their own release verification. Rollback disables new Cursor admission
while preserving records and recovery inspection.
- A model can fail an exact instruction: one cancelled-plan attempt
returned the wrong summary marker despite correct cancellation. The
unchanged repeat passed; both results remain in the report.

> ROADMAP.md was checked. This completes existing native Runner/Cursor
work; it does not add an independent core feature proposal.

## Model Used

OpenAI Codex, GPT-6. The exact serving variant and context window are
not exposed in this session. The agent used reasoning, repository
inspection, code execution, protocol tests and browser-backed Product
E2E tools. Cursor acceptance uses the explicit
`gpt-5.6-luna[context=272k,reasoning=medium,fast=false]` model. That is
the evaluated provider model.

## 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 — affected suites passed;
full CI and the retained local failed attempts are recorded separately
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 — 56 successful checks, one
neutral and four skipped on `f7ec5cc1f0e30c62a829c016ff2013a2a9d79037`
- [x] Greptile is 5/5 with no open P2s, recommendations, or follow-ups —
fresh Base review passed on `f7ec5cc1f0e30c62a829c016ff2013a2a9d79037`;
zero new comments and no unresolved threads. The earlier Apex finding
remains fixed.
- [x] I will address all Greptile and reviewer comments before
requesting merge

---------

Co-authored-by: Paperclip <noreply@paperclip.ing>
2026-10-06 20:48:15 -05:00

1095 lines
38 KiB
TypeScript

import { createProcessTreeOwner, stopOwnedProcessTree } from "./process-tree-owner.js";
import { randomBytes } from "node:crypto";
import { prepareCodexCiSandbox, requiresCodexCiSandbox } from "./codex-ci-sandbox.js";
import { spawn } from "node:child_process";
import { createWriteStream } from "node:fs";
import { createRequire } from "node:module";
import os from "node:os";
import path from "node:path";
import {
access,
chmod,
cp,
lstat,
mkdir,
mkdtemp,
readFile,
readdir,
rm,
symlink,
writeFile,
} from "node:fs/promises";
import { isImmutableDaytonaImage, runnerMatrix } from "./catalog.js";
import { renderRunnerE2EDashboard } from "./dashboard.js";
import { packageEvidence } from "./evidence.js";
import { classifyFailure } from "./failure-classifier.js";
import { mustPreserveRecoveryState, shouldKeepFailedDiagnostics } from "./cleanup-verification.js";
import { effectiveAutomaticRetryLimit, executeWithAutomaticRetry } from "./automatic-retry.js";
import { buildRunnerCampaign } from "./history.js";
import {
buildRunnerE2EProcessEnvironment,
resolvePaperclipRemoteRunnerBinaryForHarness,
resolvePaperclipRunnerBinaryForHarness,
} from "./harness-env.js";
import { assertEmbeddedDatabaseIsolation } from "./instance-isolation.js";
import {
assertSecretFree,
findSecretLeakInDirectory,
isEphemeralCodexRuntimeAuthFile,
isEphemeralPostgresScanFile,
normalizedSecrets,
sanitizeJson,
} from "./redaction.js";
import {
buildMatrixJobs,
parseRunnerSelectors,
RunnerSelectorError,
selectRunnerExecutions,
} from "./selectors.js";
import { resolveRunnerE2ESource } from "./source.js";
import {
CREDENTIAL_NAMES,
type MatrixExecution,
type RunnerE2EResult,
} from "./types.js";
import { assertRemoteNativeEvidencePrerequisites, assertRunnerE2EPrerequisites } from "./prerequisites.js";
import { assertNativeCompletionSelection, prepareNativeCompletionPreflight, NATIVE_COMPLETION_PREFLIGHT_ENV } from "./native-completion-admission.js";
import { assertNativeInstructionSelection, prepareNativeInstructionPreflight, NATIVE_INSTRUCTION_PREFLIGHT_ENV, NATIVE_INSTRUCTION_SUITE } from "./native-instruction-consolidation.js";
import { prepareStockHarnessPreflight, STOCK_PREFLIGHT_ENV } from "./stock-harness-admission.js";
import {
reapNewDetachedDarwinSharedMemory,
snapshotDarwinSharedMemory,
} from "./shared-memory.js";
import { reserveRunnerE2EServerPort } from "./ports.js";
import {
createResultExitGuard,
enforceResultProcessIntegrity,
} from "./result-exit-guard.js";
import {
observeDescendantProcessTree,
type ObservedProcessGroup,
readProcessTable,
} from "./process-tree.js";
const repositoryRoot = path.resolve(import.meta.dirname, "../..");
const localEnvPath = path.join(repositoryRoot, ".env.runner-e2e.local");
const resultsRoot = path.join(repositoryRoot, "tests/runner-e2e/results");
const activeProcessGroups = new Set<number>();
const activeProcessCleanup = new Map<number, Promise<string | null>>();
const activeProcessTerminators = new Map<number, () => void>();
const completedResultExitGraceMs = 120_000;
let cancelled = false;
function cleanId(value: string) {
const result = value
.replace(/[^A-Za-z0-9_.-]+/g, "-")
.replace(/^-+|-+$/g, "");
if (!result)
throw new Error(
`Invalid empty identifier derived from ${JSON.stringify(value)}`,
);
return result;
}
function secret(bytes = 32) {
return randomBytes(bytes).toString("base64url");
}
async function makeDirectoryTreeRemovable(directory: string): Promise<void> {
await chmod(directory, 0o700);
const entries = await readdir(directory, { withFileTypes: true });
await Promise.all(
entries
.filter((entry) => entry.isDirectory() && !entry.isSymbolicLink())
.map((entry) =>
makeDirectoryTreeRemovable(path.join(directory, entry.name)),
),
);
}
function stopProcessGroup(pid: number, signal: NodeJS.Signals = "SIGTERM") {
try {
if (process.platform === "win32") process.kill(pid, signal);
else process.kill(-pid, signal);
} catch {
// The process tree already exited.
}
}
function processGroupIsAlive(pid: number) {
try {
process.kill(process.platform === "win32" ? pid : -pid, 0);
return true;
} catch {
return false;
}
}
async function terminateProcessGroup(pid: number) {
stopProcessGroup(pid, "SIGTERM");
const gracefulDeadline = Date.now() + 5_000;
while (processGroupIsAlive(pid) && Date.now() < gracefulDeadline) {
await new Promise((resolve) => setTimeout(resolve, 50));
}
if (!processGroupIsAlive(pid)) return null;
stopProcessGroup(pid, "SIGKILL");
const forcedDeadline = Date.now() + 5_000;
while (processGroupIsAlive(pid) && Date.now() < forcedDeadline) {
await new Promise((resolve) => setTimeout(resolve, 50));
}
return processGroupIsAlive(pid)
? `Paperclip/Playwright process group ${pid} survived SIGKILL`
: null;
}
function wait(milliseconds: number) {
return new Promise<void>((resolve) => setTimeout(resolve, milliseconds));
}
interface ProcessTreeDiagnostic {
summary: string;
groups: ObservedProcessGroup[];
}
async function processTreeDiagnostic(
rootPid: number,
): Promise<ProcessTreeDiagnostic> {
const table = await readProcessTable();
if (!table) {
return {
summary: `process tree ${rootPid} (member inspection unavailable)`,
groups: [],
};
}
const observed = observeDescendantProcessTree(table, rootPid);
const members = observed.members
.slice(0, 64)
.map(
({ process: candidate, depth }) =>
`pid=${candidate.pid} ppid=${candidate.parentPid} pgid=${candidate.processGroupId} depth=${depth} kind=${candidate.kind}`,
);
const descendantGroupIds = observed.groups
.filter((group) => group.processGroupId !== rootPid)
.map((group) => group.processGroupId);
return {
summary:
members.length > 0
? `process tree ${rootPid}: ${members.join("; ")}; descendant pgids=${descendantGroupIds.join(",") || "none"}`
: `process tree ${rootPid}: no members reported`,
groups: observed.groups,
};
}
for (const signal of ["SIGINT", "SIGTERM", "SIGHUP"] as const) {
process.on(signal, () => {
cancelled = true;
for (const pid of activeProcessGroups) {
const terminate = activeProcessTerminators.get(pid);
if (terminate) {
terminate();
continue;
}
activeProcessCleanup.set(pid, terminateProcessGroup(pid));
}
});
}
async function loadLocalEnvironment(target: NodeJS.ProcessEnv) {
const contents = await readFile(localEnvPath, "utf8").catch(
(error: NodeJS.ErrnoException) => {
if (error.code === "ENOENT") return null;
throw error;
},
);
if (contents === null) return;
for (const [index, rawLine] of contents.split(/\r?\n/).entries()) {
const line = rawLine.trim();
if (!line || line.startsWith("#")) continue;
const match = /^(?:export\s+)?([A-Za-z_][A-Za-z0-9_]*)=(.*)$/.exec(line);
if (!match)
throw new Error(
`Invalid ${path.basename(localEnvPath)} line ${index + 1}`,
);
if (target[match[1]] !== undefined) continue;
let value = match[2].trim();
if (
(value.startsWith('"') && value.endsWith('"')) ||
(value.startsWith("'") && value.endsWith("'"))
) {
value = value.slice(1, -1);
}
target[match[1]] = value;
}
}
async function prepareProviderPath(
temporaryRoot: string,
inheritedPath: string | undefined,
) {
const toolBin = path.join(temporaryRoot, "provider-bin");
await mkdir(toolBin, { recursive: true });
const runnerRequire = createRequire(
path.join(repositoryRoot, "packages/paperclip-runner/package.json"),
);
const codexAcpPackage = runnerRequire.resolve(
"@agentclientprotocol/codex-acp/package.json",
);
const codexRequire = createRequire(codexAcpPackage);
const codexPackage = codexRequire.resolve("@openai/codex/package.json");
const codexManifest = JSON.parse(await readFile(codexPackage, "utf8")) as {
bin?: string | Record<string, string>;
};
const codexBin =
typeof codexManifest.bin === "string"
? codexManifest.bin
: codexManifest.bin?.codex;
if (!codexBin)
throw new Error(
"Production Codex ACP dependency does not expose its pinned Codex executable",
);
await symlink(
path.resolve(path.dirname(codexPackage), codexBin),
path.join(toolBin, "codex"),
);
const packageBin = path.join(
repositoryRoot,
"packages/paperclip-runner/node_modules/.bin",
);
return [toolBin, packageBin, inheritedPath]
.filter(Boolean)
.join(path.delimiter);
}
async function runProcess(
args: string[],
env: NodeJS.ProcessEnv,
timeoutMs: number | null,
logPath: string,
completionPaths: readonly string[],
interactive: boolean,
) {
const log = createWriteStream(logPath, { flags: "a", mode: 0o600 });
const child = spawn("pnpm", args, {
cwd: repositoryRoot,
env,
stdio: ["inherit", "pipe", "pipe"],
detached: process.platform !== "win32",
});
if (!child.pid) throw new Error("Failed to start Playwright");
activeProcessGroups.add(child.pid);
const processOwner = createProcessTreeOwner(child);
let outputTail = "";
const recordOutput = (chunk: Buffer, destination: NodeJS.WriteStream) => {
destination.write(chunk);
log.write(chunk);
outputTail += chunk.toString("utf8");
if (outputTail.length > 1024 * 1024)
outputTail = outputTail.slice(-1024 * 1024);
};
child.stdout?.on("data", (chunk: Buffer) =>
recordOutput(chunk, process.stdout),
);
child.stderr?.on("data", (chunk: Buffer) =>
recordOutput(chunk, process.stderr),
);
let childSettled = false;
let postResultStallError: string | null = null;
let boundedCleanup: Promise<string | null> | undefined;
let cleanupSettled!: () => void;
const cleanupFinished = new Promise<number>(resolve => { cleanupSettled = () => resolve(1); });
const stopChildTree = (_diagnostic?: ProcessTreeDiagnostic) => {
if (boundedCleanup) return;
boundedCleanup = stopOwnedProcessTree(child, processOwner)
.then(() => null, error => error instanceof Error ? error.message : String(error))
.finally(cleanupSettled);
activeProcessCleanup.set(child.pid!, boundedCleanup);
};
activeProcessTerminators.set(child.pid, stopChildTree);
const resultExitGuard = createResultExitGuard({
resultPaths: completionPaths,
interactive,
graceMs: completedResultExitGraceMs,
now: Date.now,
pathExists: (candidate) =>
access(candidate).then(
() => true,
() => false,
),
onExpired: async () => {
const diagnostic = await processTreeDiagnostic(child.pid!);
if (childSettled) return;
postResultStallError = `Playwright remained alive for ${completedResultExitGraceMs}ms after every result was written`;
recordOutput(
Buffer.from(
`\n${postResultStallError}; forcing bounded cleanup. ${diagnostic.summary}\n`,
),
process.stderr,
);
stopChildTree(diagnostic);
},
});
const completionPoll = resultExitGuard.enabled
? setInterval(() => {
void resultExitGuard.poll().catch(() => {
if (childSettled || postResultStallError) return;
postResultStallError =
"Completed-result exit guard failed during bounded inspection";
recordOutput(
Buffer.from(`\n${postResultStallError}; forcing cleanup.\n`),
process.stderr,
);
stopChildTree();
});
}, 500)
: undefined;
completionPoll?.unref();
let timedOut = false;
const timer =
timeoutMs === null
? undefined
: setTimeout(() => {
timedOut = true;
stopChildTree();
}, timeoutMs);
timer?.unref();
let spawnError: string | null = null;
const childExit = new Promise<number>((resolve, reject) => {
child.once("error", reject);
child.once("exit", (code) => {
childSettled = true;
resolve(code ?? 1);
});
}).catch((error) => {
childSettled = true;
spawnError = error instanceof Error ? error.message : String(error);
return 1;
});
const exitCode = await Promise.race([childExit, cleanupFinished]);
if (timer) clearTimeout(timer);
if (completionPoll) clearInterval(completionPoll);
// Even a successful launcher exit can leave an already-observed detached
// server behind. Retire that retained tree, never only the root group.
stopChildTree();
const processCleanupError = await boundedCleanup!;
processOwner.stopObserving();
// Even a failed direct-child kill must not hold cancellation forever or let
// inherited pipes write into an ended log. The cleanup error remains fatal.
if (processCleanupError) {
child.stdout?.destroy();
child.stderr?.destroy();
if (child.exitCode === null && child.signalCode === null) child.unref();
}
if (child.pid) {
activeProcessGroups.delete(child.pid);
activeProcessCleanup.delete(child.pid);
activeProcessTerminators.delete(child.pid);
}
await new Promise<void>((resolve) => log.end(resolve));
return {
exitCode,
timedOut,
postResultStallError,
processCleanupError,
spawnError,
outputTail,
};
}
function syntheticResult(
execution: MatrixExecution,
attempt: number,
startedAtMs: number,
error: string,
failureClass: RunnerE2EResult["failureClass"] = "transient_infrastructure",
): RunnerE2EResult {
const finishedAtMs = Date.now();
return {
schema: "paperclip.runner-e2e.result/v2",
executionId: execution.id,
suiteId: execution.suite.id,
suiteDefinitionHash: execution.suiteDefinitionHash,
source: resolveRunnerE2ESource(),
...(execution.profile.ranking
? { rankingSnapshot: execution.profile.ranking }
: {}),
attempt,
status: "failed",
failureClass,
error,
profileId: execution.profile.id,
environmentId: execution.environment.id,
caseId: execution.task.id,
provider: execution.profile.provider,
model: execution.profile.model,
runtimeMode: execution.profile.expectedRuntimeMode,
startedAt: new Date(startedAtMs).toISOString(),
finishedAt: new Date(finishedAtMs).toISOString(),
durationMs: finishedAtMs - startedAtMs,
cleanup: "not_started",
};
}
async function readResult(resultPath: string, fallback: RunnerE2EResult) {
try {
return JSON.parse(await readFile(resultPath, "utf8")) as RunnerE2EResult;
} catch {
return fallback;
}
}
async function copySharedEvidence(privateRoot: string, casePrivateDir: string) {
for (const relative of [
"server.log",
"playwright.log",
"junit.xml",
"html-report",
"blob-report",
"playwright-output",
]) {
await cp(
path.join(privateRoot, relative),
path.join(casePrivateDir, relative),
{ recursive: true, force: true },
).catch((error: NodeJS.ErrnoException) => {
if (error.code !== "ENOENT") throw error;
});
}
}
async function runAttempt(input: {
executions: readonly MatrixExecution[];
attempt: number;
campaignId: string;
options: ReturnType<typeof parseRunnerSelectors>;
}): Promise<RunnerE2EResult[]> {
const { executions, attempt, campaignId, options } = input;
const execution = executions[0];
if (!execution) throw new Error("A runner E2E cell must contain a task case");
if (
executions.some(
(candidate) =>
candidate.profile.id !== execution.profile.id ||
candidate.environment.id !== execution.environment.id,
)
) {
throw new Error(
"One isolated runner E2E harness cannot mix profiles or environments",
);
}
const startedAtMs = Date.now();
const sharedMemoryBaseline = snapshotDarwinSharedMemory();
const temporaryRoot = await mkdtemp(
path.join(os.tmpdir(), "paperclip-runner-e2e-"),
);
const publishedResults: RunnerE2EResult[] = [];
const publishedResultPaths = new Map<string, string>();
let attemptSecrets: string[] = [];
let processCleanupFailed = false;
const rawCleanupResults: Array<{ cleanup: string; synthetic: boolean; status: string }> = [];
try {
const paperclipHome = path.join(temporaryRoot, "paperclip-home");
const workspace = path.join(temporaryRoot, "workspace");
const privateDir = path.join(temporaryRoot, "artifacts-private");
const instanceId = `runner-e2e-${randomBytes(8).toString("hex")}`;
const configPath = path.join(
paperclipHome,
"instances",
instanceId,
"config.json",
);
const port = await reserveRunnerE2EServerPort();
await Promise.all([
mkdir(paperclipHome, { recursive: true }),
mkdir(workspace, { recursive: true }),
mkdir(privateDir, { recursive: true }),
]);
const providerPath = await prepareProviderPath(
temporaryRoot,
process.env.PATH,
);
if (requiresCodexCiSandbox(execution)) {
await prepareCodexCiSandbox(repositoryRoot, temporaryRoot);
}
const agentJwtSecret = secret(48);
const decisionSigningSecret = secret(48);
const toolActionSigningSecret = secret(48);
const betterAuthSecret = secret(48);
const credentials = normalizedSecrets([
...CREDENTIAL_NAMES.map((name) => process.env[name]),
agentJwtSecret,
decisionSigningSecret,
toolActionSigningSecret,
betterAuthSecret,
]);
attemptSecrets = credentials;
const runnerBinary = resolvePaperclipRunnerBinaryForHarness(
executions,
repositoryRoot,
);
const childEnv: NodeJS.ProcessEnv = {
...buildRunnerE2EProcessEnvironment(process.env, executions),
PATH: providerPath,
PAPERCLIP_RUNNER_E2E_EXECUTION_IDS: JSON.stringify(
executions.map((candidate) => candidate.id),
),
PAPERCLIP_RUNNER_E2E_ATTEMPT: String(attempt),
PAPERCLIP_RUNNER_E2E_PUBLIC_MCP: executions.some(candidate => candidate.task.flow === "public_mcp") ? "1" : "0",
PAPERCLIP_RUNNER_E2E_PORT: String(port),
PAPERCLIP_RUNNER_E2E_TEMP_ROOT: temporaryRoot,
PAPERCLIP_RUNNER_E2E_PRIVATE_DIR: privateDir,
PAPERCLIP_RUNNER_E2E_WORKSPACE: workspace,
PAPERCLIP_RUNNER_E2E_SERVER_LOG: path.join(privateDir, "server.log"),
PAPERCLIP_RUNNER_BINARY: runnerBinary,
PAPERCLIP_RUNNER_REMOTE_BINARY_PATH:
resolvePaperclipRemoteRunnerBinaryForHarness(executions, runnerBinary),
// Vite's optimized dependency cache embeds revision query strings. A
// private per-attempt cache prevents an earlier cell or local rebuild
// from producing `504 Outdated Optimize Dep` during browser bootstrap.
PAPERCLIP_VITE_CACHE_DIR: path.join(temporaryRoot, "vite-cache"),
PAPERCLIP_RUNNER_E2E_TEST_TIMEOUT_MS: String(
Math.max(
...executions.map(
(candidate) =>
candidate.task.attemptTimeoutMs[candidate.environment.id],
),
) + 90_000,
),
PAPERCLIP_HOME: paperclipHome,
PAPERCLIP_INSTANCE_ID: instanceId,
PAPERCLIP_CONFIG: configPath,
PAPERCLIP_AGENT_JWT_SECRET: agentJwtSecret,
PAPERCLIP_DECISION_SIGNING_SECRET: decisionSigningSecret,
PAPERCLIP_TOOL_ACTION_SIGNING_SECRET: toolActionSigningSecret,
BETTER_AUTH_SECRET: betterAuthSecret,
};
// The database URLs are stripped here and again at the Playwright web-server
// boundary so a developer's shell can never redirect this paid test.
delete childEnv.DATABASE_URL;
delete childEnv.DATABASE_MIGRATION_URL;
const playwrightArgs = [
"exec",
"playwright",
"test",
"--config",
"tests/runner-e2e/playwright.config.ts",
...(options.headed ? ["--headed"] : []),
...(options.ui ? ["--ui"] : []),
...(options.debug ? ["--debug"] : []),
];
const watchdog =
options.ui || options.debug
? null
: executions.reduce(
(total, candidate) =>
total +
candidate.task.attemptTimeoutMs[candidate.environment.id] +
90_000,
0,
) +
5 * 60_000;
const processResult = await runProcess(
playwrightArgs,
childEnv,
watchdog,
path.join(privateDir, "playwright.log"),
executions.map((candidate) =>
path.join(privateDir, "cases", candidate.task.id, "result.json"),
),
options.ui || options.debug,
);
processCleanupFailed = processResult.processCleanupError !== null;
const processFailure = processResult.spawnError
? `Playwright failed to start: ${processResult.spawnError}`
: processResult.timedOut
? `Harness process exceeded ${Math.round((watchdog ?? 0) / 1000)} seconds`
: `Playwright exited ${processResult.exitCode} before writing a result`;
const processFailureClass =
processResult.spawnError || processResult.timedOut
? "transient_infrastructure"
: classifyFailure(
new Error(
processResult.outputTail
? `${processFailure}\n${processResult.outputTail}`
: processFailure,
),
);
const results = await Promise.all(
executions.map(async (candidate) => {
const resultPath = path.join(
privateDir,
"cases",
candidate.task.id,
"result.json",
);
const fallback = syntheticResult(
candidate,
attempt,
startedAtMs,
processFailure,
processFailureClass,
);
const result = await readResult(resultPath, fallback);
// Keep cleanup authority before evidence copying/publication can fail.
rawCleanupResults.push({ cleanup: result.cleanup, synthetic: result === fallback, status: result.status });
return enforceResultProcessIntegrity(result, processResult);
}),
);
let isolationError: unknown;
try {
await assertEmbeddedDatabaseIsolation(configPath, temporaryRoot);
} catch (error) {
isolationError = error;
}
let persistedStateError: unknown;
// Onboarding evaluates behavior; credential persistence belongs to a separate layer.
// Keep artifact redaction/publication checks independent of this filesystem scan.
const persistenceCheckedExecutions = executions.filter(
(candidate) => candidate.suite.id !== "first-task",
);
if (persistenceCheckedExecutions.length > 0) {
try {
const expectedEphemeralCredentials = new Set<string>();
for (const [label, directory] of [
["Paperclip home", paperclipHome],
["workspace", workspace],
] as const) {
while (true) {
// The managed Codex home may legitimately contain upstream source-code
// fixtures with fake `sk-*` strings. Reject exact campaign credentials.
const leak = await findSecretLeakInDirectory(directory, credentials, {
includeShapes: false,
ignoreFile: (file) => expectedEphemeralCredentials.has(file),
allowDisappearedFile: (file) =>
label === "Paperclip home" &&
isEphemeralPostgresScanFile(paperclipHome, file),
});
if (!leak) break;
const isManagedCodexRuntimeAuth =
label === "Paperclip home" &&
isEphemeralCodexRuntimeAuthFile(paperclipHome, leak.file);
if (isManagedCodexRuntimeAuth) {
const metadata = await lstat(leak.file);
if (metadata.isFile() && (metadata.mode & 0o777) === 0o600) {
// Codex CLI API-key mode requires this one runtime auth file. It
// lives only in the disposable cell root, is never published,
// must be owner-only, and is removed with the root below.
expectedEphemeralCredentials.add(leak.file);
continue;
}
}
throw new Error(
`Secret leak in persisted ${label} state at ${path.relative(temporaryRoot, leak.file)}: ${leak.reason}`,
);
}
}
} catch (error) {
persistedStateError = error;
}
}
for (const [index, candidate] of executions.entries()) {
let result = results[index];
if (
isolationError &&
result.failureClass !== "cleanup_failure" &&
result.failureClass !== "secret_leak"
) {
const isolationMessage =
isolationError instanceof Error
? isolationError.message
: String(isolationError);
const configWasUnavailableDuringTransientBootstrap =
result.failureClass === "transient_infrastructure" &&
typeof isolationError === "object" &&
isolationError !== null &&
"code" in isolationError &&
isolationError.code === "ENOENT";
result = {
...result,
status: "failed",
failureClass: configWasUnavailableDuringTransientBootstrap
? result.failureClass
: "permanent_infrastructure",
error: configWasUnavailableDuringTransientBootstrap
? `${result.error}; isolated config could not be inspected after bootstrap failure: ${isolationMessage}`
: isolationMessage,
};
}
if (persistedStateError && persistenceCheckedExecutions.includes(candidate)) {
const persistedStateMessage =
persistedStateError instanceof Error
? persistedStateError.message
: String(persistedStateError);
const persistedStateClass = classifyFailure(persistedStateError);
if (
persistedStateClass === "secret_leak" ||
(result.failureClass !== "secret_leak" &&
result.failureClass !== "cleanup_failure")
) {
result = {
...result,
status: "failed",
failureClass:
persistedStateClass === "secret_leak"
? "secret_leak"
: "permanent_infrastructure",
error: persistedStateMessage,
};
} else {
result = {
...result,
error: `${result.error}; persisted-state scan also failed: ${persistedStateMessage}`,
};
}
}
const casePrivateDir = path.join(privateDir, "cases", candidate.task.id);
const resultPath = path.join(casePrivateDir, "result.json");
const uploadDir = path.join(
resultsRoot,
campaignId,
candidate.suite.id,
candidate.profile.id,
candidate.environment.id,
candidate.task.id,
`attempt-${attempt}`,
);
await mkdir(casePrivateDir, { recursive: true });
await copySharedEvidence(privateDir, casePrivateDir);
await writeFile(
resultPath,
`${JSON.stringify(sanitizeJson(result, credentials), null, 2)}\n`,
"utf8",
);
let evidence = await packageEvidence({
privateDir: casePrivateDir,
uploadDir,
secrets: credentials,
expectPassScreenshot: result.status === "passed",
});
if (evidence.leaks.length > 0 || evidence.missing.length > 0) {
result = {
...result,
status: "failed",
failureClass:
evidence.leaks.length > 0
? "secret_leak"
: "permanent_infrastructure",
error:
evidence.leaks.length > 0
? `Secret leak rejected from evidence: ${evidence.leaks.map((leak) => leak.file).join(", ")}`
: `Required evidence missing: ${evidence.missing.join(", ")}`,
};
await writeFile(
resultPath,
`${JSON.stringify(sanitizeJson(result, credentials), null, 2)}\n`,
"utf8",
);
evidence = await packageEvidence({
privateDir: casePrivateDir,
uploadDir,
secrets: credentials,
expectPassScreenshot: false,
});
}
console.log(
`${result.status === "passed" ? "PASS" : "FAIL"} ${candidate.id} attempt ${attempt} -> ${uploadDir}`,
);
publishedResults.push(result);
publishedResultPaths.set(
candidate.id,
path.join(uploadDir, "result.json"),
);
}
return [...publishedResults];
} finally {
if (!processCleanupFailed) reapNewDetachedDarwinSharedMemory(sharedMemoryBaseline);
let cleanupError: unknown;
const resourceAdmissionStarted = await access(path.join(temporaryRoot, "artifacts-private", "resource-admission-started"))
.then(() => true).catch((error: NodeJS.ErrnoException) => error.code !== "ENOENT");
if (mustPreserveRecoveryState({ processCleanupFailed, resourceAdmissionStarted, results: rawCleanupResults })) {
// Remote allocation cleanup is journaled in this instance's database.
// Deleting it after the controller exits would strand uncertain creates.
await chmod(temporaryRoot, 0o700);
cleanupError = new Error(`Preserving private recovery state after unconfirmed cleanup: ${temporaryRoot}`);
} else if (shouldKeepFailedDiagnostics({
enabled: process.env.PAPERCLIP_RUNNER_E2E_KEEP_FAILED_PRIVATE === "1",
expectedResults: executions.length,
results: publishedResults,
})) {
// Explicit diagnosis only. Confirmed resource cleanup stays confirmed;
// keep private traces for investigation without publishing provider data.
await chmod(temporaryRoot, 0o700);
console.warn(`Retained private failed-case diagnostics: ${temporaryRoot}`);
} else if (
temporaryRoot.startsWith(`${os.tmpdir()}${path.sep}paperclip-runner-e2e-`)
) {
for (let cleanupAttempt = 1; cleanupAttempt <= 3; cleanupAttempt += 1) {
try {
await rm(temporaryRoot, { recursive: true, force: true });
cleanupError = undefined;
break;
} catch (error) {
cleanupError = error;
if (cleanupAttempt < 3) {
await makeDirectoryTreeRemovable(temporaryRoot).catch(() => {});
await new Promise((resolve) =>
setTimeout(resolve, cleanupAttempt * 250),
);
}
}
}
} else {
cleanupError = new Error(
`Refusing to remove unexpected temporary path ${temporaryRoot}`,
);
}
if (cleanupError) {
const message = `Temporary runner E2E state cleanup failed at ${temporaryRoot}: ${cleanupError instanceof Error ? cleanupError.message : String(cleanupError)}`;
for (const publishedResult of publishedResults) {
const publishedResultPath = publishedResultPaths.get(
publishedResult.executionId,
);
if (!publishedResultPath) continue;
Object.assign(publishedResult, {
status: "failed",
failureClass: "cleanup_failure",
error: publishedResult.error ? `${publishedResult.error}; ${message}` : message,
cleanup: "failed",
} satisfies Partial<RunnerE2EResult>);
const safeResult = `${JSON.stringify(
sanitizeJson(publishedResult, attemptSecrets),
null,
2,
)}\n`;
assertSecretFree(safeResult, attemptSecrets, publishedResultPath);
await writeFile(publishedResultPath, safeResult, "utf8");
}
// Cleanup failure is a failed cell, but must not suppress later cells in
// the same campaign. The result above carries the terminal failure.
console.error(message);
}
}
}
function printList(executions: readonly MatrixExecution[]) {
console.log("ID\tSUITE\tGENERATION\tPROVIDER\tMODEL\tCREDENTIALS");
for (const execution of executions) {
console.log(
[
execution.id,
execution.suite.id,
execution.profile.generation,
execution.profile.provider,
execution.profile.model,
execution.requiredCredentials.join(","),
].join("\t"),
);
}
}
async function runExecutionWithRetry(input: {
execution: MatrixExecution;
campaignId: string;
options: ReturnType<typeof parseRunnerSelectors>;
}): Promise<RunnerE2EResult> {
const { execution, campaignId, options } = input;
return executeWithAutomaticRetry({
task: execution.task, options,
qualificationCandidate: execution.profile.qualificationCandidate !== undefined,
cancelled: () => cancelled,
onRetry: result => console.warn(
`Retrying ${execution.id} in a fresh isolated harness after ${result.failureClass!.replaceAll("_", " ")}`,
),
runAttempt: async attempt => {
const [result] = await runAttempt({ executions: [execution], attempt, campaignId, options });
if (!result) throw new Error(`No result produced for ${execution.id} attempt ${attempt}`);
return result;
},
});
}
async function runWithConcurrency<T, R>(
values: readonly T[],
concurrency: number,
worker: (value: T) => Promise<R>,
): Promise<R[]> {
const results = new Array<R>(values.length);
let cursor = 0;
const workers = Array.from(
{ length: Math.min(concurrency, values.length) },
async () => {
while (true) {
const index = cursor;
cursor += 1;
if (index >= values.length) return;
if (cancelled) throw new Error("Runner E2E campaign cancelled");
results[index] = await worker(values[index]!);
}
},
);
await Promise.all(workers);
return results;
}
async function main() {
let options: ReturnType<typeof parseRunnerSelectors>;
try {
options = parseRunnerSelectors(process.argv.slice(2));
} catch (error) {
if (error instanceof RunnerSelectorError)
throw new Error(`${error.message}\nUse --list to inspect valid cells.`);
throw error;
}
const executions = selectRunnerExecutions(options, runnerMatrix);
if (options.list) {
printList(executions);
return;
}
if (options.matrixJson) {
const jobs = buildMatrixJobs(executions);
console.log(
JSON.stringify({
include: jobs,
needsDaytona: jobs.some((job) => job.needsDaytona),
executionIds: executions.map((execution) => execution.id),
}),
);
return;
}
if (executions.some(execution => execution.task.flow === "provider_connection")) {
const { runConnectionCampaign } = await import("./connection-launch.js");
await runConnectionCampaign({ executions, catalog: runnerMatrix, configFile: options.connectionConfig, repositoryRoot });
return;
}
if (options.connectionConfig) throw new Error("--connection-config is only supported by the provider-connections suite");
// Keep admission before local-env loading and credential checks. Pending
// profiles remain discoverable, but cannot reach a provider.
assertRunnerE2EPrerequisites(executions);
assertNativeCompletionSelection(executions);
assertNativeInstructionSelection(executions);
const campaignId = cleanId(
process.env.PAPERCLIP_E2E_CAMPAIGN_ID ??
`local-${new Date().toISOString().replace(/[:.]/g, "-")}`,
);
const summaryDir = path.join(resultsRoot, campaignId);
await mkdir(summaryDir, { recursive: true });
if (executions.some(execution => execution.suite.id === "native-completion")) {
process.env[NATIVE_COMPLETION_PREFLIGHT_ENV] = prepareNativeCompletionPreflight(summaryDir);
}
if (executions.some(execution => execution.suite.id === NATIVE_INSTRUCTION_SUITE)) {
process.env[NATIVE_INSTRUCTION_PREFLIGHT_ENV] = prepareNativeInstructionPreflight(summaryDir);
}
if (executions.some(execution => execution.suite.id === "stock-harness")) {
process.env[STOCK_PREFLIGHT_ENV] = prepareStockHarnessPreflight(summaryDir);
}
await loadLocalEnvironment(process.env);
assertRemoteNativeEvidencePrerequisites(executions, process.env);
const missingCredentials = [
...new Set(
executions.flatMap((execution) => execution.requiredCredentials),
),
].filter((name) => !process.env[name]?.trim());
if (missingCredentials.length > 0) {
throw new Error(
`Missing runner E2E credentials: ${missingCredentials.join(", ")}`,
);
}
if (
executions.some((execution) => execution.environment.id === "daytona") &&
!isImmutableDaytonaImage(process.env.PAPERCLIP_E2E_DAYTONA_IMAGE)
) {
throw new Error(
"PAPERCLIP_E2E_DAYTONA_IMAGE must be an immutable image@sha256 digest for Daytona cells",
);
}
await writeFile(
path.join(summaryDir, "invocation-policy.json"),
`${JSON.stringify(
{
version: 1,
maxAutomaticRetries: options.maxAutomaticRetries,
retryClasses: ["transient_infrastructure", "provider_variance"],
executions: executions.map(execution => ({
executionId: execution.id,
automaticRetryPolicy: execution.task.automaticRetryPolicy ?? "default",
maxAutomaticRetries: effectiveAutomaticRetryLimit(execution.task, options.maxAutomaticRetries),
})),
},
null,
2,
)}\n`,
"utf8",
);
const requestedParallelism =
options.headed || options.ui || options.debug ? 1 : options.maxParallel;
console.log(
`Running ${executions.length} isolated execution(s) with max parallelism ${requestedParallelism}`,
);
const finalResults = await runWithConcurrency(
executions,
requestedParallelism,
(execution) => runExecutionWithRetry({ execution, campaignId, options }),
);
const generatedAt = new Date().toISOString();
const campaign = buildRunnerCampaign({
campaignId,
generatedAt,
expected: executions.map((execution) => execution.id),
results: finalResults,
});
const campaignSecrets = normalizedSecrets(
CREDENTIAL_NAMES.map((name) => process.env[name]),
);
const safeCampaign = sanitizeJson(
campaign,
campaignSecrets,
) as typeof campaign;
const campaignText = `${JSON.stringify(safeCampaign, null, 2)}\n`;
assertSecretFree(campaignText, campaignSecrets, "campaign.json");
await writeFile(path.join(summaryDir, "campaign.json"), campaignText, "utf8");
const dashboard = renderRunnerE2EDashboard({
title: `Runner E2E · ${campaignId}`,
generatedAt,
expected: executions.map((execution) => execution.id),
catalog: runnerMatrix,
campaign: safeCampaign,
entries: safeCampaign.results.map((result) => ({
result,
valid: result.status === "passed" && result.cleanup === "passed",
errors:
result.status === "passed" && result.cleanup === "passed"
? []
: [
result.error ??
result.failureClass ??
`cleanup=${result.cleanup}`,
],
evidenceBaseHref: [
result.suiteId ?? "core-compatibility",
result.profileId,
result.environmentId,
result.caseId,
`attempt-${result.attempt}`,
].join("/"),
})),
});
assertSecretFree(dashboard, campaignSecrets, "dashboard.html");
await writeFile(path.join(summaryDir, "dashboard.html"), dashboard, "utf8");
console.log(
`Campaign ${campaignId}: ${safeCampaign.passed}/${safeCampaign.selected} passed`,
);
if (safeCampaign.failed > 0) process.exitCode = 1;
}
await main().catch((error) => {
console.error(error instanceof Error ? error.message : String(error));
process.exitCode = 1;
});