Files
PaperClipAI/tests/runner-e2e/runner.spec.ts
T
DottaandPaperclip b54b2dc35c fix: preserve warm Codex turns with incremental managed file checkpoints (#14735)
## Thinking Path

> - Paperclip manages AI agents and keeps their instructions and files
durable.
> - Native Codex runners can keep a process alive between compatible
turns.
> - Managed file collection stopped that process after each turn, which
defeated warm reuse.
> - Agent folders can contain large images and other files, so full
copies on every turn are expensive.
> - This change keeps one managed directory for the live session and
saves only file changes after each turn.
> - Ownership, authorization, instruction changes, and process
retirement still control when reuse is safe.

## Linked Issues or Issue Description

Related: #13710 introduced native warm session reuse. This fixes managed
file collection that still forced those sessions to stop. No duplicate
open PR or issue was found.

**What happened?**

With managed instructions and warm native Codex enabled, consecutive
turns reused a Daytona sandbox but started a new runner process each
time. The managed directory collector required process termination
before saving files.

**Expected behavior**

Compatible turns keep the same process and managed `AGENT_HOME`. Each
completed turn saves added, changed, and deleted files before the next
turn starts. Unchanged large files do not transfer again.

**Steps to reproduce**

1. Use a native Codex agent with managed instructions and a reusable
Daytona environment.
2. Enable warm session reuse and run three turns on the same task.
3. Write a large binary on the first turn, edit a small note on each
turn, and delete a file on the second turn.
4. Compare process identity across turns and read the canonical files
through the public agent-files API.

**Paperclip version or commit**

Reproduced on `d30b03bd8c17604cdab1533eeeeb087aba30e8b1`.

**Deployment mode**

Local server with remote Daytona execution; cloud native runner uses the
same path.

## What Changed

- Retain the managed directory only for the verified owner of a live
native Codex session.
- Checkpoint each completed turn before releasing the session for reuse.
Retry unstable captures, then stop and collect when a warm checkpoint
cannot be validated.
- Compare metadata and cached hashes, stream only changed file payloads,
record deletions, and validate path, content, quota, and authorization
before saving.
- Rotate sessions when canonical files, loaded instructions,
credentials, or launch policy change. Fence stale collection and cleanup
callbacks from later owners.
- Keep cleanup and recovery aware of the current session owner. Recheck
canonical files under the writer lock at handoff, attach the successor
collector before fallible bookkeeping, and emit one final save receipt
on checkpoint fallback. Preserve storage warnings across unchanged
checkpoints.
- Add regression coverage and a three-turn Daytona test with independent
public API file checks, an unchanged 8 MiB binary, deletion checks, and
strict process identity checks.
- Document checkpoint consistency, lifecycle behavior, and local run-log
counters.
- Replace a timing assumption in the Daytona teardown test with explicit
transfer-arrival gates after CI exposed an unset release callback.

## Verification

- Full local `pnpm -r typecheck` and `pnpm build` passed. Server checks
were repeated after the final storage-warning fix.
- Runner E2E typecheck and 749 runner E2E unit tests passed.
- Focused file checkpoint, directory ownership, instruction collection,
native session, and merge tests passed. After review fixes, the
managed-directory and native-session suites passed 550 tests, including
intervening canonical edits, same-run fresh restore, failed handoff
collection, and one-call fallback collection. Server typecheck passed
again. The Daytona plugin suite passed 218 tests. The quota-warning
regression failed before the fix and passed afterward.
- Three real Daytona campaigns passed before the final handoff review
fixes. The latest kept PID 547 across all three turns. The first
checkpoint copied 8,388,635 bytes; the next two copied 36 and 54 bytes.
Public API reads verified the binary, note contents, and deletion after
every turn. Test cleanup deleted the sandbox.
- The final head was also deployed to an isolated cloud staging instance
and passed three UI-triggered native Codex turns with managed
instructions. All three retained the same process ID/start time, native
session, provider session, runner instance, and Daytona sandbox.
Checkpoints copied 8,388,643 bytes on turn 1, then only 52 and 78 bytes
on turns 2 and 3; those warm captures also hashed only 52 and 78 bytes.
Independent canonical API reads verified every byte of the unchanged 8
MiB binary and the exact note contents after every turn; the deleted
file returned 404 after turns 2 and 3. After restoring the original
lifecycle and agent-auth configuration, removing the temporary secret,
pausing the test agent, and deleting both test sandboxes, independent
canonical API reads still verified the entire binary, the final 78-byte
three-line note, and the deletion. The native runner flag remained
enabled and the final serving revision remained the PR head.
- Two earlier staging attempts are preserved as failures and are
excluded from the acceptance result: a saved ChatGPT login failed with a
provider routing 401, and its subsequent stopped-sandbox retry failed
before provider startup with a closed-lease admission error. The
successful campaign used a fresh sandbox and a temporary encrypted
API-key binding. The stopped-lease retry remains unexplained; this
campaign does not establish recovery of that failed sandbox.
- All [Paperclip CI
gates](https://github.com/paperclipai/paperclip/actions/runs/36750397355)
pass on `26ef2ef56a389259246809805c0b34a4747eb86b`, including full test
partitions, build, typecheck, runner verification, E2E shards, and the
Canary clean public-npm install. Greptile reviewed that exact head at
5/5 with no unresolved review threads or outstanding findings.
- Full local repository coverage used the existing CI partitions, but
the 40,000-file Git streaming stress test timed out and its local retry
was interrupted by macOS thermal emergency sleep; this is not a green
full local suite claim. The exact stress test passed on the final head
in [CI server shard
2/12](https://github.com/paperclipai/paperclip/actions/runs/36750397355/job/110008294290),
in 111.9 seconds.
- Repeat the live test with configured credentials and a Linux runner
artifact: `pnpm test:e2e:runner -- --id
daytona-warm-continuity.runner-codex.daytona.warm-three-turn`.

## Risks

- This is a file-level checkpoint, not an atomic snapshot of the whole
folder. Background writes after a capture are saved by the next
checkpoint or final stopped collection.
- Metadata scans still visit all paths. Modified files transfer in full;
unchanged files do not rehash or transfer.
- Incorrect ownership or reuse could collect the wrong directory. Run
ownership fences, current authorization, stable capture validation, and
stopped collection fallbacks are covered by tests.
- Warm reuse remains opt-in. No database migration or fleet default
changes.

## Model Used

OpenAI GPT-6 through Codex, with reasoning, code editing, tool use, and
test execution. The exact serving model ID and context-window size are
not exposed by this session.

## Checklist

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

---------

Co-authored-by: Paperclip <noreply@paperclip.ing>
2026-09-30 13:33:37 -05:00

2804 lines
115 KiB
TypeScript

import { warmManagedFileEvidence } from "./warm-managed-files.js";
import { gitFinalizationEvidence, gitStreamingEvidence, setupGitStreamingWorkspace } from "./daytona-git-streaming.js";
import { runsCompletionUpdateProbe, completionQualityControls, completionQualityStatus, judgeCompletionQuality, reserveCompletionQuality, type CompletionQualityRecord } from "./completion-quality.js";
import { completionDelivery, type CompletionObservation } from "./completion-updates.js";
import { runInstructionPersistenceFlow } from "./instruction-persistence.js";
import { gradeApiResponsePaging, readResponseProof, responseEvidenceDescription } from "./api-response-reading.js";
import { runBlockerFlow } from "./blocker-flow.js";
import { largeJournalEvidence } from "./journal-evidence.js";
import { observeBrowserBootstrap } from "./browser-bootstrap-diagnostics.js";
import { runAccountingFlow } from "./accounting-flow.js";
import type { Issue } from "../../packages/shared/src/types/issue.js";
import { lifecycleLiveCase, gradeLifecycleRepair } from "./lifecycle-live-cases.js";
import { runContinuationFlow } from "./continuation-flow.js";
import { runEverydayFlow } from "./everyday-flow.js";
import { runContextIntegrityFlow } from "./context-integrity-flow.js";
import { createTaskThroughUi, submitTaskReply } from "./user-actions.js";
import { runFirstTaskFlow, setupFirstTaskFixtures } from "./first-task-flow.js";
import { runChatFlow } from "./chat-flow.js";
import { restartChatServer } from "./chat-restart.js";
import { matchesRunCount, minimumRunCount } from "./run-count.js";
import { createHash, randomBytes } from "node:crypto";
import { mkdir, readFile, rename, writeFile } from "node:fs/promises";
import path from "node:path";
import { expect, test, type Page } from "@playwright/test";
import { RunnerApi, pollUntil } from "./api.js";
import { buildRuntimeUsage, summarizeExecutionBilling } from "./billing.js";
import { runnerExecutionById } from "./catalog.js";
import { classifyFailure } from "./failure-classifier.js";
import { runnerE2EServerControlPaths } from "./harness-env.js";
import { setupConnectionReview } from "./connection-reviews.js";
import { setupLiveFixtures, type LiveFixtureValues } from "./live-fixtures.js";
import { evaluateMatcher, persistedFinalRunMessage, type MatcherResult } from "./matchers.js";
import {
acceptedPlanSessionResetFailures,
collectRunEvents,
hasTerminalMalformedPlanConfirmation,
isControlPlaneGovernedResponseWait,
isNonExecutingReviewFenceRun,
isOpenRouterDeepSeekHelloTerminalVariance,
numberedPlanStepCount,
providerSessionContinuityFailures,
reasoningProjectionFailures,
} from "./run-observations.js";
import { resolveRunnerE2ESource } from "./source.js";
import { isValidNativePrpEnvelope } from "./native-event-envelope.js";
import {
isPublicRunnerScreenshotRoute,
PUBLIC_RUNNER_SCREENSHOT_MARKER,
} from "./screenshot-policy.js";
import {
assertSecretFree,
findSecretLeakInJsonValues,
normalizedSecrets,
sanitizeJson,
} from "./redaction.js";
import {
CREDENTIAL_NAMES,
type CredentialName,
type FailureClass,
type RunnerE2EResult,
} from "./types.js";
import { assertRunnerE2EPrerequisites } from "./prerequisites.js";
interface IssueRecord {
id: string;
identifier?: string | null;
companyId: string;
title: string;
status: string;
workMode?: string;
assigneeAgentId?: string | null;
projectId?: string | null;
projectWorkspaceId?: string | null;
executionWorkspaceId?: string | null;
executionRunId?: string | null;
checkoutRunId?: string | null;
scheduledRetry?: unknown;
monitorNextCheckAt?: string | null;
}
interface CommentRecord {
id: string;
body?: string | null;
authorType?: string | null;
authorAgentId?: string | null;
authorUserId?: string | null;
createdByRunId?: string | null;
createdAt?: string;
}
interface RunRecord {
id: string;
companyId: string;
agentId: string;
status: string;
runtimeMode?: string;
continuationAttempt?: number;
retryOfRunId?: string | null;
runnerInstanceId?: string | null;
nativeSessionId?: string | null;
processPid?: number | null;
processStartedAt?: string | null;
contextSnapshot?: Record<string, unknown> | null;
runnerProfileJson?: Record<string, unknown> | null;
usageJson?: Record<string, unknown> | null;
resultJson?: Record<string, unknown> | null;
sessionIdBefore?: string | null;
sessionIdAfter?: string | null;
error?: string | null;
errorCode?: string | null;
startedAt?: string | null;
finishedAt?: string | null;
}
interface EnvironmentLeaseRecord {
id: string;
status?: string;
cleanupStatus?: string | null;
leasePolicy?: string;
providerLeaseId?: string | null;
executionWorkspaceId?: string | null;
metadata?: Record<string, unknown> | null;
issueId?: string | null;
heartbeatRunId?: string | null;
provider?: string | null;
acquiredAt?: string | null;
releasedAt?: string | null;
updatedAt?: string | null;
}
interface InteractionRecord {
id: string;
status: string;
kind?: string;
sourceRunId?: string | null;
continuationPolicy?: string;
payload?: {
version?: number;
acceptLabel?: string;
rejectLabel?: string;
target?: {
type?: string;
key?: string;
revisionId?: string;
revisionNumber?: number;
};
questions?: Array<{
id: string;
prompt: string;
selectionMode: "single" | "multi";
required?: boolean;
options: Array<{ id: string; label: string }>;
}>;
};
result?: {
version?: number;
answers?: Array<{
questionId?: string;
optionIds?: string[];
otherText?: string;
}>;
} | null;
}
interface IssueDocumentRecord {
id: string;
key: string;
body?: string | null;
latestRevisionId?: string | null;
latestRevisionNumber?: number;
}
interface RunEventRecord {
seq?: number;
eventType?: string;
payload?: Record<string, unknown> | null;
sourceInstanceId?: string | null;
sourceEventId?: string | null;
sourceSeq?: number | null;
protocolSchemaVersion?: number | null;
}
const TERMINAL_RUN_STATUSES = new Set([
"succeeded",
"interrupted",
"failed",
"cancelled",
"timed_out",
]);
const DEFINITIVE_FAILURE_RUN_STATUSES = new Set([
"failed",
"cancelled",
"timed_out",
]);
function definitiveRunFailure(runs: readonly RunRecord[]) {
const failed = runs.find((run) =>
DEFINITIVE_FAILURE_RUN_STATUSES.has(run.status),
);
if (!failed) return undefined;
return `heartbeat run ${failed.id} ended ${failed.status}${failed.errorCode ? ` (${failed.errorCode})` : ""}${failed.error ? `: ${failed.error}` : ""}`;
}
function chronologicalRunTime(run: RunRecord): number {
const value = run.startedAt ?? run.finishedAt;
if (!value) return 0;
const parsed = Date.parse(value);
return Number.isNaN(parsed) ? 0 : parsed;
}
function sortRunsChronologically(runs: readonly RunRecord[]): RunRecord[] {
return [...runs].sort(
(left, right) =>
chronologicalRunTime(left) - chronologicalRunTime(right) ||
left.id.localeCompare(right.id),
);
}
async function restartIsolatedPaperclipServer(input: {
api: RunnerApi;
requestId: string;
deadlineAt: number;
}): Promise<void> {
const {
controlDirectory,
restartRequestPath: requestPath,
restartAcknowledgementPath: acknowledgementPath,
} = runnerE2EServerControlPaths(temporaryRoot!);
await mkdir(controlDirectory, { recursive: true });
const temporaryRequestPath = `${requestPath}.${process.pid}.${input.requestId}.tmp`;
await writeFile(
temporaryRequestPath,
JSON.stringify({ requestId: input.requestId }),
{ encoding: "utf8", mode: 0o600 },
);
await rename(temporaryRequestPath, requestPath);
await pollUntil({
label: `isolated server restart ${input.requestId}`,
timeoutFailureClass: "transient_infrastructure",
deadlineAt: input.deadlineAt,
intervalMs: 250,
load: async () => {
try {
return JSON.parse(
await readFile(acknowledgementPath, "utf8"),
) as Record<string, unknown>;
} catch {
return {};
}
},
accept: (acknowledgement) =>
acknowledgement.requestId === input.requestId &&
acknowledgement.status === "ready",
reject: (acknowledgement) =>
acknowledgement.requestId === input.requestId &&
acknowledgement.status === "failed"
? String(acknowledgement.message ?? "replacement server failed")
: undefined,
});
await pollUntil({
label: `replacement server health ${input.requestId}`,
timeoutFailureClass: "transient_infrastructure",
deadlineAt: input.deadlineAt,
intervalMs: 250,
load: () => input.api.get<Record<string, unknown>>("/api/health"),
accept: (health) => Boolean(health),
});
}
const executionIds = (() => {
const encoded = process.env.PAPERCLIP_RUNNER_E2E_EXECUTION_IDS;
if (encoded) {
const parsed = JSON.parse(encoded) as unknown;
if (
!Array.isArray(parsed) ||
parsed.length === 0 ||
parsed.some((value) => typeof value !== "string")
) {
throw new Error(
"PAPERCLIP_RUNNER_E2E_EXECUTION_IDS must be a non-empty JSON string array",
);
}
return parsed;
}
const single = process.env.PAPERCLIP_RUNNER_E2E_EXECUTION_ID;
if (!single)
throw new Error("PAPERCLIP_RUNNER_E2E_EXECUTION_IDS is required");
return [single];
})();
const executions = executionIds.map(runnerExecutionById);
// Direct Playwright invocation must enforce the same admission boundary as
// launch.ts before reading any provider credential from the environment.
assertRunnerE2EPrerequisites(executions);
const attempt = Number(process.env.PAPERCLIP_RUNNER_E2E_ATTEMPT ?? "1");
const temporaryRoot = process.env.PAPERCLIP_RUNNER_E2E_TEMP_ROOT;
const privateRoot = process.env.PAPERCLIP_RUNNER_E2E_PRIVATE_DIR;
const workspacePath = process.env.PAPERCLIP_RUNNER_E2E_WORKSPACE;
if (!temporaryRoot || !privateRoot || !workspacePath)
throw new Error("Runner E2E temporary/private/workspace paths are required");
function record(value: unknown): Record<string, unknown> {
return value && typeof value === "object" && !Array.isArray(value)
? (value as Record<string, unknown>)
: {};
}
function credentialValues(): Partial<Record<CredentialName, string>> {
return Object.fromEntries(
CREDENTIAL_NAMES.flatMap((name) => {
const value = process.env[name]?.trim();
return value ? [[name, value]] : [];
}),
);
}
async function writeSanitizedJson(
directory: string,
name: string,
value: unknown,
secrets: readonly string[],
) {
const raw = `${JSON.stringify(value)}\n`;
// Public API payloads may contain harmless provider-shaped fixtures or
// opaque generated tokens. Reject exact campaign credentials before writing,
// then sanitize all known shapes and assert the published JSON is clean.
assertSecretFree(raw, secrets, name, { includeShapes: false });
const safe = `${JSON.stringify(sanitizeJson(value, secrets), null, 2)}\n`;
const leak = findSecretLeakInJsonValues(JSON.parse(safe), secrets);
if (leak) throw new Error(`Secret leak in ${name}: ${leak}`);
await mkdir(directory, { recursive: true });
await writeFile(path.join(directory, name), safe, "utf8");
}
async function submitTaskRevision(page: Page, body: string): Promise<number> {
const revise = page
.getByRole("button", { name: "Continue work", exact: true })
.last();
await expect(revise).toBeVisible({ timeout: 30_000 });
await revise.click();
const reason = page.getByPlaceholder("Add a short note").last();
await expect(reason).toBeVisible({ timeout: 30_000 });
await reason.fill(body);
const submittedAtMs = Date.now();
await page
.getByRole("button", { name: "Continue work", exact: true })
.last()
.click();
return submittedAtMs;
}
function matchingRuns(runs: RunRecord[], issue: IssueRecord) {
const explicit = new Set(
[issue.executionRunId, issue.checkoutRunId].filter(Boolean),
);
return runs.filter((run) => {
if (isNonExecutingReviewFenceRun(run)) return false;
const context = record(run.contextSnapshot);
return (
context.issueId === issue.id ||
context.taskId === issue.id ||
explicit.has(run.id)
);
});
}
function isPendingPlanConfirmation(interaction: InteractionRecord) {
return (
interaction.kind === "request_confirmation" &&
interaction.status === "pending" &&
interaction.payload?.target?.type === "issue_document" &&
interaction.payload.target.key === "plan" &&
typeof interaction.payload.target.revisionId === "string"
);
}
function isPendingQuestion(interaction: InteractionRecord) {
return (
interaction.kind === "ask_user_questions" &&
interaction.status === "pending" &&
Boolean(interaction.payload?.questions?.length)
);
}
function isPendingWarmConfirmation(interaction: InteractionRecord) {
return (
interaction.kind === "request_confirmation" &&
interaction.status === "pending" &&
interaction.continuationPolicy === "wake_assignee" &&
interaction.payload?.target?.type === "custom"
);
}
function normalizePlanMarkdown(body: string | null | undefined) {
// Provider plan renderers may defensively escape underscores in plain-text
// markers. The rendered document and semantic marker are identical.
return (body ?? "").replaceAll("\\_", "_");
}
function nativeRunEventIntegrityFailures(
run: RunRecord,
events: readonly RunEventRecord[],
): string[] {
const failures: string[] = [];
let lastOuterSeq = 0;
const lastSourceSeq = new Map<string, number>();
const sourceEventIds = new Set<string>();
const runnerEventTypes: string[] = [];
const runTerminalSources: unknown[] = [];
const resultAcceptedSources: unknown[] = [];
for (const event of events) {
if (typeof event.seq !== "number" || event.seq <= lastOuterSeq) {
failures.push(
`run ${run.id} event sequence is not strictly monotonic at ${String(event.seq)}`,
);
} else {
lastOuterSeq = event.seq;
}
const envelope = record(event.payload?.prpEvent);
if (Object.keys(envelope).length === 0) continue;
if (!isValidNativePrpEnvelope(envelope, event.protocolSchemaVersion)) {
failures.push(
`run ${run.id} exposed a malformed PRP envelope (schema=${String(envelope.schema)}, version=${String(envelope.schemaVersion)})`,
);
}
if (envelope.runId !== run.id) {
failures.push(
`run ${run.id} exposed an event bound to ${String(envelope.runId)}`,
);
}
if (envelope.eventType !== event.eventType) {
failures.push(
`run ${run.id} event discriminator changed from ${String(event.eventType)} to ${String(envelope.eventType)}`,
);
}
if (
envelope.sourceInstanceId !== event.sourceInstanceId ||
envelope.sourceEventId !== event.sourceEventId ||
envelope.sourceSeq !== event.sourceSeq
) {
failures.push(
`run ${run.id} event source identity changed during persistence/redaction`,
);
}
if (typeof event.sourceEventId === "string") {
if (sourceEventIds.has(event.sourceEventId)) {
failures.push(
`run ${run.id} duplicated source event ${event.sourceEventId}`,
);
}
sourceEventIds.add(event.sourceEventId);
}
if (
typeof event.sourceInstanceId === "string" &&
typeof event.sourceSeq === "number"
) {
const previous = lastSourceSeq.get(event.sourceInstanceId) ?? 0;
if (event.sourceSeq <= previous) {
failures.push(
`run ${run.id} source ${event.sourceInstanceId} sequence regressed from ${previous} to ${event.sourceSeq}`,
);
}
lastSourceSeq.set(event.sourceInstanceId, event.sourceSeq);
}
if (
envelope.sourceKind === "runner" &&
typeof event.eventType === "string"
) {
runnerEventTypes.push(event.eventType);
}
if (event.eventType === "run.terminal") {
runTerminalSources.push(envelope.sourceKind);
}
if (event.eventType === "run.result.accepted") {
resultAcceptedSources.push(envelope.sourceKind);
}
}
const runnerResultCount = runnerEventTypes.filter(
(value) => value === "run.result.proposed",
).length;
if (
runnerResultCount !== 1 &&
!(runnerResultCount === 0 && isControlPlaneGovernedResponseWait(events))
) {
failures.push(
`run ${run.id} must persist exactly one runner semantic result`,
);
}
if (resultAcceptedSources.length !== 1) {
failures.push(
`run ${run.id} must persist exactly one accepted semantic result`,
);
} else if (resultAcceptedSources[0] !== "control_plane") {
failures.push(
`run ${run.id} accepted semantic result must be control-plane authoritative`,
);
}
if (runTerminalSources.length !== 1) {
failures.push(`run ${run.id} must persist exactly one terminal event`);
} else if (runTerminalSources[0] !== "control_plane") {
failures.push(
`run ${run.id} terminal event must be control-plane authoritative`,
);
}
return failures;
}
async function expectPlanStageVisible(
page: Page,
options: { native: boolean; revision: number | null },
) {
// A Plan flow is only qualified when the canonical saved document is
// projected as a card. Native profiles additionally require that card to be
// inside the runner turn, which proves write-boundary embedding rather than
// a standalone fallback. The API assertions own exact body-marker identity
// because the compact card intentionally shows only its first three lines.
const root = options.native
? page.locator('[data-testid="task-chat-turn"][data-settled="true"]')
: page.locator("body");
const preview = root.getByTestId("task-chat-plan-preview").last();
await expect(preview).toBeVisible({ timeout: 30_000 });
if (options.revision !== null) {
await expect(preview).toHaveAttribute(
"aria-label",
`Open Plan revision ${options.revision}`,
);
}
}
for (const execution of executions) {
const privateDir = path.join(privateRoot, "cases", execution.task.id);
const resultPath = path.join(privateDir, "result.json");
const snapshotsDir = path.join(privateDir, "snapshots");
const deadlineMs = execution.task.attemptTimeoutMs[execution.environment.id];
test(`${execution.id} completes through the browser and public APIs`, async ({
page,
request,
}, testInfo) => {
test.setTimeout(
execution.task.flow === "warm_three_turn"
? deadlineMs
: deadlineMs + 90_000,
);
const startedAtMs = Date.now();
const startedAt = new Date(startedAtMs).toISOString();
const nonce = `${randomBytes(6).toString("hex")}-${attempt}`;
const marker = execution.task.buildVisibleMarker(nonce);
const title = execution.task.buildTitle(nonce);
let prompt = execution.task.buildPrompt(nonce);
let apiResponseSourceId: string | undefined;
let lifecycleBlockerId: string | null = null;
const credentials = credentialValues();
const secrets = normalizedSecrets(Object.values(credentials));
const api = new RunnerApi(request);
const companyRunFlow = ["blocker_guidance", "continuation_accounting", "continuation", "context_integrity", "agent_chat", "everyday_workflow", "first_task", "instruction_persistence"].includes(execution.task.flow);
const consoleDiagnostics: Array<Record<string, unknown>> = [];
const networkDiagnostics: Array<Record<string, unknown>> = [];
const pageLifecycleDiagnostics: Array<Record<string, unknown>> = [];
const browserBootstrap = observeBrowserBootstrap(page);
let fixtures: LiveFixtureValues | undefined;
let reviewProvider: Awaited<ReturnType<typeof setupConnectionReview>> | undefined;
let issue: IssueRecord | undefined;
let selectedRuns: RunRecord[] = [];
let runtimeLeases: EnvironmentLeaseRecord[] = [];
let matcherResults: MatcherResult[] = [];
let downloadedResponseProof: Awaited<ReturnType<typeof readResponseProof>> | undefined;
const completionQuality: CompletionQualityRecord[] = [];
const completionEvidence = async (name: string, data: unknown) => {
await writeSanitizedJson(snapshotsDir, name, data, secrets);
if (!["completion-updates", "confirmation-replies"].includes(execution.suite.id) || !name.endsWith("completion-update.json")) return;
const probe = data as { observation?: CompletionObservation };
if (!probe.observation || !completionDelivery(probe.observation).checks.every(c => c.passed)) return;
if (!credentials.OPENAI_API_KEY) {
await writeSanitizedJson(snapshotsDir, "completion-quality-unqualified.json", { reason: "Judge credential unavailable in this provider-scoped job; run the separate judge against retained evidence." }, secrets);
return;
}
const samples = [{ name, purpose: "product" as const, expectedPass: true, observation: probe.observation },
...(execution.profile.id === "runner-codex" && execution.task.id === "handoff-completion-idle" ? completionQualityControls(probe.observation).map(c => ({ ...c, purpose: "calibration" as const, name: `${name}-${c.name}` })) : [])];
for (const sample of samples) {
const pending = { ...reserveCompletionQuality(sample.observation, 0.50, secrets), name: sample.name, purpose: sample.purpose, expectedPass: sample.expectedPass };
completionQuality.push(pending);
// Persist reservation and exact input before the one paid request. A crash
// leaves usage unknown, never zero, and the next campaign is a new attempt.
await writeSanitizedJson(snapshotsDir, `${sample.name}.quality-input.json`, sample, secrets);
await writeSanitizedJson(snapshotsDir, "completion-quality-ledger.json", completionQuality, secrets);
const result = await judgeCompletionQuality(sample.observation, pending, credentials.OPENAI_API_KEY ?? "", undefined, { approvedFixture: true, secrets });
completionQuality[completionQuality.length - 1] = { ...result, name: sample.name, purpose: sample.purpose, expectedPass: sample.expectedPass };
await writeSanitizedJson(snapshotsDir, "completion-quality-ledger.json", completionQuality, secrets);
}
};
let firstTaskEvidence: RunnerE2EResult["firstTask"];
let turnTimings: NonNullable<RunnerE2EResult["turnTimings"]> | undefined;
const turnSubmissionTimesMs: number[] = [];
const screenshots: NonNullable<RunnerE2EResult["screenshots"]> = [];
let primaryError: unknown;
let failureClassOverride: FailureClass | undefined;
let cleanup: RunnerE2EResult["cleanup"] = "not_started";
const capturePrivateScreenshot = async (id: string, file: string) => {
const screenshotPath = path.join(privateDir, file);
await page.screenshot({ path: screenshotPath, fullPage: true });
await testInfo.attach(id, {
path: screenshotPath,
contentType: "image/png",
});
};
const isReviewedFixtureScreenshotRoute = () =>
isPublicRunnerScreenshotRoute(page.url(), {
chatAgentId: execution.task.flow === "agent_chat" ? fixtures?.agent.id : undefined,
issuePrefix: fixtures?.company.issuePrefix,
issueId: issue?.id,
issueIdentifier: issue?.identifier,
});
const captureScreenshot = async (
id: string,
label: string,
file: string,
) => {
if (!isReviewedFixtureScreenshotRoute()) {
throw new Error(
`Public runner screenshot blocked on non-task route ${page.url()}`,
);
}
await capturePrivateScreenshot(id, file);
screenshots.push({
id,
label,
file,
publication: PUBLIC_RUNNER_SCREENSHOT_MARKER,
sha256: createHash("sha256")
.update(await readFile(path.join(privateDir, file)))
.digest("hex"),
});
};
const captureRuntimeLeases = async () => {
if (!fixtures || execution.environment.id !== "daytona") return;
const listed = await api.get<EnvironmentLeaseRecord[]>(
`/api/environments/${fixtures.environment.id}/leases`,
);
const selectedRunIds = new Set(selectedRuns.map((run) => run.id));
const relevant = listed.filter(
(lease) =>
lease.provider === "daytona" &&
(selectedRunIds.size === 0 ||
(lease.heartbeatRunId &&
selectedRunIds.has(lease.heartbeatRunId)) ||
(issue && lease.issueId === issue.id)),
);
runtimeLeases = relevant.length > 0 ? relevant : listed;
};
const cancelActiveRunsForCleanup = async () => {
if (!issue && !(companyRunFlow && fixtures)) return;
const cleanupIssueId = issue?.id;
const runs = await api.get<RunRecord[]>(
companyRunFlow && fixtures ? `/api/companies/${fixtures.company.id}/heartbeat-runs?limit=100` : `/api/issues/${cleanupIssueId}/runs`,
);
const activeRunIds = [
...new Set(
runs
.filter((run) => !TERMINAL_RUN_STATUSES.has(run.status))
.map((run) => run.id)
.filter(
(runId): runId is string =>
typeof runId === "string" && runId.length > 0,
),
),
];
for (const runId of activeRunIds) {
await api.post(`/api/heartbeat-runs/${runId}/cancel`);
}
if (activeRunIds.length === 0) return;
const activeIds = new Set(activeRunIds);
await pollUntil({
label: `cleanup cancellation for issue ${cleanupIssueId}`,
deadlineAt: Date.now() + 45_000,
load: () => api.get<RunRecord[]>(companyRunFlow && fixtures ? `/api/companies/${fixtures.company.id}/heartbeat-runs?limit=100` : `/api/issues/${cleanupIssueId}/runs`),
accept: (currentRuns) =>
currentRuns
.filter((run) => activeIds.has(run.id))
.every((run) => TERMINAL_RUN_STATUSES.has(run.status)),
intervalMs: 500,
});
};
const captureFailureApiState = async () => {
if (!fixtures) return;
if (companyRunFlow && !issue) {
const companyRuns = await api.get<RunRecord[]>(`/api/companies/${fixtures.company.id}/heartbeat-runs?limit=100`);
selectedRuns = await Promise.all(companyRuns.map(run => api.get<RunRecord>(`/api/heartbeat-runs/${run.id}`)));
// Settings are already restored on failure, so chat resolution may be
// gated. Direct task access still permits evidence and usage capture.
const sourceId = selectedRuns.map(run => record(run.contextSnapshot).issueId).find(id => typeof id === "string");
if (typeof sourceId === "string") issue = await api.get<IssueRecord>(`/api/issues/${sourceId}`);
}
if (!issue) return;
const capture = async <T>(operation: () => Promise<T>) =>
operation().catch((error) => ({
evidenceCaptureError:
error instanceof Error ? error.message : String(error),
}));
const [currentIssue, listedRuns, comments, interactions] =
await Promise.all([
capture(() => api.get<IssueRecord>(`/api/issues/${issue!.id}`)),
capture(() =>
api.get<RunRecord[]>(
companyRunFlow
? `/api/companies/${fixtures!.company.id}/heartbeat-runs?limit=100`
: `/api/companies/${fixtures!.company.id}/heartbeat-runs?agentId=${fixtures!.agent.id}&limit=20`,
),
),
capture(() =>
api.get<CommentRecord[]>(
`/api/issues/${issue!.id}/comments?order=asc`,
),
),
capture(() =>
api.get<InteractionRecord[]>(
`/api/issues/${issue!.id}/interactions`,
),
),
]);
const taskRuns = Array.isArray(listedRuns)
? companyRunFlow ? listedRuns : matchingRuns(listedRuns, "id" in currentIssue ? currentIssue : issue)
: [];
const detailedRuns = await Promise.all(
taskRuns.map((candidate) =>
capture(() =>
api.get<RunRecord>(`/api/heartbeat-runs/${candidate.id}`),
).then((value) => ("id" in value ? value : candidate)),
),
);
if (detailedRuns.length > 0) selectedRuns = detailedRuns;
const runEvidence = await Promise.all(
detailedRuns.map(async (candidate) => ({
runId: candidate.id,
workspaceOperations: await capture(() =>
api.get<unknown>(`/api/heartbeat-runs/${candidate.id}/workspace-operations`),
),
log: await capture(() =>
api.get<unknown>(
`/api/heartbeat-runs/${candidate.id}/log?limitBytes=1048576`,
),
),
events: await capture(() =>
collectRunEvents<RunEventRecord>((afterSeq, limit) =>
api.get(`/api/heartbeat-runs/${candidate.id}/events?afterSeq=${afterSeq}&limit=${limit}`),
),
),
})),
);
await writeSanitizedJson(
snapshotsDir,
"api-state.json",
{
capturePhase: "failure",
issue: currentIssue,
runs: detailedRuns,
comments,
interactions,
runEvidence,
},
secrets,
);
};
page.on("console", (message) => {
if (["error", "warning"].includes(message.type())) {
consoleDiagnostics.push({
type: message.type(),
text: message.text(),
location: message.location(),
});
}
});
page.on("pageerror", (error) => {
pageLifecycleDiagnostics.push({
type: "pageerror",
message: error.message,
stack: error.stack ?? null,
url: page.url(),
});
});
page.on("framenavigated", (frame) => {
if (frame === page.mainFrame())
pageLifecycleDiagnostics.push({
type: "navigation",
url: frame.url(),
at: new Date().toISOString(),
});
});
page.on("requestfailed", (requestEvent) => {
networkDiagnostics.push({
method: requestEvent.method(),
url: requestEvent.url(),
failure: requestEvent.failure()?.errorText ?? null,
});
});
page.on("response", (response) => {
if (response.status() >= 400) {
networkDiagnostics.push({
method: response.request().method(),
url: response.url(),
status: response.status(),
statusText: response.statusText(),
});
}
});
try {
const experimental = await api.patch<{
enableNativeRunner: boolean;
}>("/api/instance/settings/experimental", {
enableNativeRunner: true,
...(["warm_three_turn", "everyday_workflow"].includes(execution.task.flow)
? { enableIsolatedWorkspaces: true }
: {}),
...(execution.profile.generation === "native" &&
execution.environment.id === "daytona"
? { enableRunnerPreviewIngress: true }
: {}),
});
expect(experimental.enableNativeRunner).toBe(true);
if (execution.suite.id === "daytona-git-streaming") {
await setupGitStreamingWorkspace(workspacePath);
}
fixtures = execution.task.flow === "first_task"
? await setupFirstTaskFixtures({ page, api, execution, nonce, credentials, observe: value => { fixtures = value; } })
: await setupLiveFixtures({
api,
execution,
executionNonce: nonce,
workspacePath,
credentials,
daytonaImage: process.env.PAPERCLIP_E2E_DAYTONA_IMAGE,
});
if (execution.suite.id === "api-response-reading") {
const source = await api.post<{ id: string }>(`/api/companies/${fixtures.company.id}/issues`, {
title: `Synthetic diagnostic evidence ${nonce}`,
description: responseEvidenceDescription(nonce), status: "backlog",
});
apiResponseSourceId = source.id;
prompt = prompt.replaceAll("{{API_RESPONSE_SOURCE_ID}}", source.id);
}
if (execution.suite.id === "lifecycle-baseline" && lifecycleLiveCase(execution.task.id)?.family === "blocker") {
const prerequisite = await api.post<{ id: string }>(`/api/companies/${fixtures.company.id}/issues`, {
title: `Supply dataset ${nonce}`,
description: "Fixture operator prerequisite: dataset has not been supplied.",
status: "backlog",
});
lifecycleBlockerId = prerequisite.id;
prompt = prompt.replaceAll("{{LIFECYCLE_BLOCKER_ID}}", prerequisite.id);
}
await writeSanitizedJson(
snapshotsDir,
"fixtures.json",
{
executionId: execution.id,
lifecycleBlockerId,
companyId: fixtures.company.id,
environmentId: fixtures.environment.id,
agentId: fixtures.agent.id,
secretIds: Object.fromEntries(
Object.entries(fixtures.secretRefs).map(([name, ref]) => [
name,
ref?.secretId,
]),
),
persistedAgent: await api.get<unknown>(
`/api/agents/${fixtures.agent.id}`,
),
persistedEnvironment: await api.get<unknown>(
`/api/environments/${fixtures.environment.id}`,
),
},
secrets,
);
if (execution.task.flow === "blocker_guidance") {
const blocker = await runBlockerFlow({ page, api, fixtures, execution, nonce, workspacePath,
deadlineAt: startedAtMs + deadlineMs - 30_000,
observe: (currentIssue, currentRuns, checks) => {
issue = currentIssue; selectedRuns = currentRuns;
matcherResults = checks.map(check => ({ matcher: { kind: "json_path" as const, path: `blocker.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
},
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
});
issue = blocker.issue as IssueRecord; selectedRuns = blocker.runs as RunRecord[];
} else if (execution.task.flow === "continuation_accounting") {
const accounting = await runAccountingFlow({
page, api, fixtures, execution, nonce, deadlineAt: startedAtMs + deadlineMs - 60_000,
restart: () => restartIsolatedPaperclipServer({ api, requestId: `accounting-${nonce}`, deadlineAt: startedAtMs + deadlineMs }),
observe: (currentIssue, currentRuns, checks) => {
issue = currentIssue; selectedRuns = currentRuns;
matcherResults = checks.map(check => ({ matcher: { kind: "json_path" as const, path: `accounting.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
},
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
});
issue = accounting.issue as IssueRecord; selectedRuns = accounting.runs as RunRecord[];
} else if (execution.task.flow === "instruction_persistence") {
const story = await runInstructionPersistenceFlow({
page, api, fixtures, execution, nonce, secrets, deadlineAt: startedAtMs + deadlineMs,
restart: () => restartIsolatedPaperclipServer({ api, requestId: `instructions-${nonce}`, deadlineAt: startedAtMs + deadlineMs }),
observe: (currentIssue, currentRuns) => { issue = currentIssue as IssueRecord; selectedRuns = currentRuns as RunRecord[]; },
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
});
issue = story.issue as IssueRecord; selectedRuns = story.runs as RunRecord[];
matcherResults = story.checks.map(check => ({ matcher: { kind: "json_path" as const, path: `instructions.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
} else if (execution.task.flow === "continuation") {
const continuation = await runContinuationFlow({
page, api, fixtures, execution, nonce, secrets, workspacePath, deadlineAt: startedAtMs + deadlineMs - 60_000,
restart: () => restartIsolatedPaperclipServer({ api, requestId: `continuation-${nonce}`, deadlineAt: startedAtMs + deadlineMs }),
observe: (currentIssue, currentRuns, checks) => {
issue = currentIssue; selectedRuns = currentRuns;
matcherResults = checks.map(check => ({ matcher: { kind: "json_path" as const, path: `continuation.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
},
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
});
issue = continuation.issue as IssueRecord; selectedRuns = continuation.runs as RunRecord[];
} else if (execution.task.flow === "everyday_workflow") {
const story = await runEverydayFlow({
page, api, fixtures, execution, nonce, workspacePath, privateDir,
deadlineAt: startedAtMs + deadlineMs,
restart: () => restartIsolatedPaperclipServer({ api, requestId: `story-${nonce}`, deadlineAt: startedAtMs + deadlineMs }),
observe: (storyIssue, storyRuns) => { issue = storyIssue; selectedRuns = storyRuns; },
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
});
issue = story.issue; selectedRuns = story.runs;
matcherResults = story.evidence.checks.map(check => ({ matcher: { kind: "json_path" as const, path: check.id, expected: true }, passed: check.passed, detail: check.detail }));
} else if (execution.task.flow === "context_integrity") {
const contextIntegrity = await runContextIntegrityFlow({
page, api, fixtures, execution, nonce, deadlineAt: startedAtMs + deadlineMs,
capture: captureScreenshot,
evidence: (name, data) => writeSanitizedJson(snapshotsDir, name, data, secrets),
observe: (currentIssue, currentRuns, checks) => {
issue = currentIssue as unknown as IssueRecord;
selectedRuns = currentRuns as unknown as RunRecord[];
matcherResults = checks.map(check => ({ matcher: { kind: "json_path" as const, path: `contextIntegrity.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
},
});
issue = contextIntegrity.issue as unknown as IssueRecord;
selectedRuns = contextIntegrity.runs as unknown as RunRecord[];
} else if (execution.task.flow === "agent_chat") {
const chat = await runChatFlow({
page, api, fixtures, execution, nonce, workspacePath,
restart: () => restartChatServer(page, () => restartIsolatedPaperclipServer({ api, requestId: `chat-${nonce}`, deadlineAt: startedAtMs + deadlineMs })),
observe: (chatIssue, chatRuns) => { issue = chatIssue; selectedRuns = chatRuns; },
capture: captureScreenshot,
evidence: completionEvidence,
check: (id, passed, detail) => matcherResults.push({ matcher: { kind: "json_path", path: `chat.${id}`, expected: true }, passed, detail }),
});
issue = chat.issue; selectedRuns = chat.runs;
if (matcherResults.length === 0) matcherResults = [{ matcher: { kind: "issue_status", expected: "in_review" }, passed: true, detail: "Chat workflow and durable handoff/session assertions passed" }];
} else if (execution.task.flow === "first_task") {
const firstTask = await runFirstTaskFlow({
page, api, fixtures, execution, nonce, secrets,
observe: (currentIssue, runs, evidence) => {
issue = currentIssue; selectedRuns = runs; firstTaskEvidence = evidence;
matcherResults = evidence.checks.map(check => ({ matcher: { kind: "json_path" as const, path: `firstTask.checks.${check.id}`, expected: true }, passed: check.passed, detail: check.detail }));
},
createOrdinary: async (taskTitle, taskPrompt) => {
await createTaskThroughUi({ page, issuePrefix: fixtures!.company.issuePrefix!, agentName: fixtures!.agent.name, title: taskTitle, prompt: taskPrompt, workMode: "standard" });
const created = await pollUntil({ label: "ordinary UI-created task", deadlineAt: startedAtMs + deadlineMs,
load: async () => (await api.get<IssueRecord[]>(`/api/companies/${fixtures!.company.id}/issues?limit=100`)).find(row => row.title === taskTitle), accept: row => Boolean(row) });
if (!created) throw new Error("Missing ordinary task");
return created;
},
capture: captureScreenshot,
evidence: completionEvidence,
});
issue = firstTask.issue as IssueRecord; selectedRuns = firstTask.runs as RunRecord[];
} else {
const issuePrefix = fixtures.company.issuePrefix;
if (!issuePrefix)
throw new Error(
"Created fixture company did not return an issue prefix",
);
if (execution.task.flow === "governed_tool_review") {
reviewProvider = await setupConnectionReview({ page, api, prefix: issuePrefix, companyId: fixtures.company.id, agentId: fixtures.agent.id, marker });
}
turnSubmissionTimesMs.push(
await createTaskThroughUi({
page,
issuePrefix,
agentName: fixtures.agent.name,
title,
prompt,
workMode: execution.task.workMode,
projectName: fixtures.project?.name,
}),
);
const deadlineAt = startedAtMs + deadlineMs;
issue = await pollUntil({
label: `UI-created issue ${title}`,
deadlineAt,
load: async () => {
const issues = await api.get<IssueRecord[]>(
`/api/companies/${fixtures!.company.id}/issues?q=${encodeURIComponent(title)}&limit=50`,
);
return issues.find((candidate) => candidate.title === title);
},
accept: (candidate): candidate is IssueRecord => Boolean(candidate),
});
if (!issue) throw new Error(`Issue ${title} disappeared after creation`);
if (
issue.companyId !== fixtures.company.id ||
issue.assigneeAgentId !== fixtures.agent.id
) {
throw new Error(
"UI-created issue does not belong to the fixture company and agent",
);
}
if (issue.workMode !== execution.task.workMode) {
throw new Error(
`UI-created issue work mode was ${String(issue.workMode)}; expected ${execution.task.workMode}`,
);
}
if (fixtures.project) {
if (
issue.projectId !== fixtures.project.id ||
issue.projectWorkspaceId !== fixtures.project.primaryWorkspace?.id
) {
throw new Error(
`Warm task did not retain its project/workspace scope: ${JSON.stringify({ projectId: issue.projectId, projectWorkspaceId: issue.projectWorkspaceId })}`,
);
}
}
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
);
const loadTaskState = async () => {
const [currentIssue, runs, comments, interactions] = await Promise.all([
api.get<IssueRecord>(`/api/issues/${issue!.id}`),
api.get<RunRecord[]>(
companyRunFlow
? `/api/companies/${fixtures!.company.id}/heartbeat-runs?limit=100`
: `/api/companies/${fixtures!.company.id}/heartbeat-runs?agentId=${fixtures!.agent.id}&limit=20`,
),
api.get<CommentRecord[]>(
`/api/issues/${issue!.id}/comments?order=asc`,
),
api.get<InteractionRecord[]>(`/api/issues/${issue!.id}/interactions`),
]);
return {
currentIssue,
taskRuns: matchingRuns(runs, currentIssue),
comments,
interactions,
};
};
const rejectPlanConfirmationPoll = (input: {
taskRuns: RunRecord[];
interactions: InteractionRecord[];
minimumRunCount: number;
}) => {
const runFailure = definitiveRunFailure(input.taskRuns);
if (runFailure) return runFailure;
if (
!hasTerminalMalformedPlanConfirmation({
runs: input.taskRuns,
interactions: input.interactions,
minimumRunCount: input.minimumRunCount,
})
) {
return undefined;
}
failureClassOverride = "provider_variance";
return "succeeded heartbeat run created a pending request_confirmation without a revision-bound Plan target";
};
let planLifecycleEvidence: Record<string, unknown> | null = null;
let questionLifecycleEvidence: Record<string, unknown> | null = null;
let warmLifecycleEvidence: Record<string, unknown> | null = null;
let expectedQuestionResolution: {
interactionId: string;
optionId: string;
} | null = null;
if (execution.task.flow === "governed_tool_review") {
await expect(page.getByRole("button", { name: "Approve & run", exact: true })).toBeVisible({ timeout: Math.max(1, deadlineAt - Date.now()) });
expect(reviewProvider!.invocationCount()).toBe(0);
await pollUntil({ label: "governed waiting turn", deadlineAt, load: loadTaskState, accept: state => state.taskRuns.length === 1 && state.taskRuns.every(run => TERMINAL_RUN_STATUSES.has(run.status)) });
await captureScreenshot("tool-review-pending", "Connection review awaiting a human", "tool-review-pending.png");
await page.getByRole("button", { name: "Dismiss Approve tool action" }).click();
await page.getByRole("button", { name: "Review request", exact: true }).click();
if (execution.task.toolReviewDecision === "restart") {
await restartIsolatedPaperclipServer({ api, requestId: `tool-review-${nonce}`, deadlineAt });
await page.reload();
}
if (execution.task.toolReviewDecision === "always") {
await page.getByRole("button", { name: "Approval options", exact: true }).click();
await page.getByRole("menuitem", { name: "Always allow", exact: true }).click();
} else {
await page.getByRole("button", { name: execution.task.toolReviewDecision === "decline" ? "Decline" : "Approve & run", exact: true }).click();
}
} else if (execution.task.flow === "plan_revision_acceptance") {
const planMarkers = execution.task.buildPlanMarkers?.(nonce);
const revisionRequest = execution.task.buildRevisionRequest?.(nonce);
if (!planMarkers || !revisionRequest) {
throw new Error(
`Plan fixture ${execution.task.id} is missing lifecycle factories`,
);
}
const draftState = await pollUntil({
label: `initial plan confirmation for issue ${issue.id}`,
deadlineAt,
load: loadTaskState,
accept: ({ taskRuns, interactions }) =>
taskRuns.length >= 1 &&
taskRuns.every((run) => TERMINAL_RUN_STATUSES.has(run.status)) &&
interactions.some(isPendingPlanConfirmation),
reject: ({ taskRuns, interactions }) =>
rejectPlanConfirmationPoll({
taskRuns,
interactions,
minimumRunCount: 1,
}),
});
const draftInteraction = draftState.interactions.find(
isPendingPlanConfirmation,
)!;
const draftPlan = await api.get<IssueDocumentRecord>(
`/api/issues/${issue.id}/documents/plan`,
);
if (
!normalizePlanMarkdown(draftPlan.body).includes(planMarkers.draft)
) {
throw new Error(
`Initial Plan document did not contain ${planMarkers.draft}`,
);
}
if (numberedPlanStepCount(draftPlan.body) !== 2) {
throw new Error(
"Initial Plan must contain exactly two numbered steps",
);
}
if (
draftInteraction.payload?.target?.revisionId !==
draftPlan.latestRevisionId
) {
throw new Error(
"Initial plan confirmation did not target the latest Plan revision",
);
}
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
await expectPlanStageVisible(page, {
native: execution.profile.expectedRuntimeMode === "native",
revision: draftPlan.latestRevisionNumber ?? null,
});
await captureScreenshot(
"plan-draft",
"Initial plan awaiting revision",
"plan-draft.png",
);
await page
.getByRole("button", {
name: draftInteraction.payload?.rejectLabel ?? "Reject",
exact: true,
})
.last()
.click();
const revisionComposer = page
.getByTestId("plan-revision-composer")
.last();
await expect(revisionComposer).toBeVisible({ timeout: 10_000 });
await revisionComposer
.locator('[contenteditable="true"], textarea')
.first()
.fill(revisionRequest);
await page
.getByRole("button", {
name: draftInteraction.payload?.rejectLabel ?? "Reject",
exact: true,
})
.last()
.click();
const revisedState = await pollUntil({
label: `revised plan confirmation for issue ${issue.id}`,
deadlineAt,
load: loadTaskState,
accept: ({ taskRuns, interactions }) =>
taskRuns.length >= 2 &&
taskRuns.every((run) => TERMINAL_RUN_STATUSES.has(run.status)) &&
interactions.some(
(interaction) =>
isPendingPlanConfirmation(interaction) &&
interaction.id !== draftInteraction.id,
),
reject: ({ taskRuns, interactions }) =>
rejectPlanConfirmationPoll({
taskRuns,
interactions,
minimumRunCount: 2,
}),
});
const revisedInteraction = revisedState.interactions.find(
(interaction) =>
isPendingPlanConfirmation(interaction) &&
interaction.id !== draftInteraction.id,
)!;
const revisedPlan = await api.get<IssueDocumentRecord>(
`/api/issues/${issue.id}/documents/plan`,
);
const normalizedRevisedPlan = normalizePlanMarkdown(revisedPlan.body);
if (
!normalizedRevisedPlan.includes(planMarkers.revised) ||
normalizedRevisedPlan.includes(planMarkers.draft)
) {
throw new Error(
`Revised Plan must replace ${planMarkers.draft} with ${planMarkers.revised}`,
);
}
if (numberedPlanStepCount(revisedPlan.body) !== 3) {
throw new Error(
"Revised Plan must contain exactly three numbered steps",
);
}
if (
revisedInteraction.payload?.target?.revisionId !==
revisedPlan.latestRevisionId ||
revisedPlan.latestRevisionId === draftPlan.latestRevisionId
) {
throw new Error(
"Revised confirmation did not target a new latest Plan revision",
);
}
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
await expectPlanStageVisible(page, {
native: execution.profile.expectedRuntimeMode === "native",
revision: revisedPlan.latestRevisionNumber ?? null,
});
await captureScreenshot(
"plan-revised",
"Revised plan awaiting acceptance",
"plan-revised.png",
);
await page
.getByRole("button", {
name: revisedInteraction.payload?.acceptLabel ?? "Approve",
exact: true,
})
.last()
.click();
planLifecycleEvidence = {
draftInteraction,
draftPlan,
revisedInteraction,
revisedPlan,
revisionRequest,
};
} else if (execution.task.flow === "question_resume_completion") {
const expectedAnswer = execution.task.buildQuestionAnswer?.(nonce);
if (!expectedAnswer) {
throw new Error(
`Question fixture ${execution.task.id} is missing its answer factory`,
);
}
const pendingState = await pollUntil({
label: `pending user question for issue ${issue.id}`,
deadlineAt,
load: loadTaskState,
accept: ({ taskRuns, interactions }) =>
taskRuns.length >= 1 &&
taskRuns.every((run) => TERMINAL_RUN_STATUSES.has(run.status)) &&
interactions.some(isPendingQuestion),
reject: ({ taskRuns }) => definitiveRunFailure(taskRuns),
});
const questionInteractions = pendingState.interactions.filter(
(interaction) => interaction.kind === "ask_user_questions",
);
if (
questionInteractions.length !== 1 ||
!isPendingQuestion(questionInteractions[0]!)
) {
throw new Error(
`Expected exactly one pending question interaction; observed ${JSON.stringify(questionInteractions)}`,
);
}
const questionInteraction = questionInteractions[0]!;
const questions = questionInteraction.payload?.questions ?? [];
if (questionInteraction.payload?.version !== 1) {
throw new Error("Question interaction omitted payload version 1");
}
if (questions.length !== 1) {
throw new Error(
`Expected exactly one question; observed ${questions.length}`,
);
}
const question = questions[0]!;
if (
question.id !== "verification-word" ||
question.prompt !== "Choose the verification word." ||
question.selectionMode !== "single" ||
question.required !== true ||
JSON.stringify(question.options) !==
JSON.stringify([
{ id: "cobalt", label: "Cobalt" },
{ id: "amber", label: "Amber" },
])
) {
throw new Error(
`Question interaction did not preserve the exact verification contract: ${JSON.stringify(question)}`,
);
}
const selectedOption = question.options.find(
(option) => option.label === expectedAnswer.optionLabel,
);
if (!selectedOption) {
throw new Error(
`Question interaction omitted ${expectedAnswer.optionLabel}`,
);
}
expectedQuestionResolution = {
interactionId: questionInteraction.id,
optionId: selectedOption.id,
};
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
await expect(
page
.getByRole("radio", {
name: expectedAnswer.optionLabel,
exact: true,
})
.last(),
).toBeVisible({ timeout: 30_000 });
await captureScreenshot(
"question-pending",
"Structured question awaiting an answer",
"question-pending.png",
);
if (execution.task.restartServerBeforeQuestionAnswer) {
const restartRequestId = `question-wait-${nonce}`;
await restartIsolatedPaperclipServer({
api,
requestId: restartRequestId,
deadlineAt,
});
const documentSentinel = `__paperclip_runner_restart_${nonce.replaceAll("-", "_")}`;
await page.evaluate(
(key) => Reflect.set(window, key, true),
documentSentinel,
);
try {
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
// The replacement Vite server can commit and render a fresh
// document while its navigation lifecycle remains unsettled.
// The sentinel and explicit assertions below prove the new
// document and durable state even when Playwright times out.
{ waitUntil: "commit" },
);
} catch (error) {
if (!(error instanceof Error) || error.name !== "TimeoutError") {
throw error;
}
}
await expect(
page
.getByRole("radio", {
name: expectedAnswer.optionLabel,
exact: true,
})
.last(),
).toBeVisible({ timeout: 30_000 });
expect(
await page.evaluate(
(key) => Reflect.get(window, key) === true,
documentSentinel,
),
).toBe(false);
const reloadedInteractions = await api.get<InteractionRecord[]>(
`/api/issues/${issue.id}/interactions`,
);
const reloadedQuestions = reloadedInteractions.filter(
(interaction) => interaction.kind === "ask_user_questions",
);
if (
reloadedQuestions.length !== 1 ||
reloadedQuestions[0]?.id !== questionInteraction.id ||
!isPendingQuestion(reloadedQuestions[0])
) {
throw new Error(
`Server restart did not preserve the exact pending interaction ${questionInteraction.id}: ${JSON.stringify(reloadedQuestions)}`,
);
}
await captureScreenshot(
"question-pending-after-server-restart",
"Structured question preserved across server restart",
"question-pending-after-server-restart.png",
);
}
await page
.getByRole("radio", {
name: expectedAnswer.optionLabel,
exact: true,
})
.last()
.check();
// The one-question form is on its last page, so selecting the radio
// records the answer and the existing form button submits it.
await page
.getByRole("button", { name: "Submit answers", exact: true })
.last()
.click();
questionLifecycleEvidence = {
interaction: questionInteraction,
answer: expectedAnswer.optionLabel,
expectedMarker: expectedAnswer.expectedMarker,
serverRestartedBeforeAnswer:
execution.task.restartServerBeforeQuestionAnswer ?? false,
};
} else if (execution.task.flow === "plan_approval_completion") {
const planMarkers = execution.task.buildPlanMarkers?.(nonce);
if (!planMarkers) {
throw new Error(
`Plan fixture ${execution.task.id} is missing its marker factory`,
);
}
const pendingState = await pollUntil({
label: `pending plan approval for issue ${issue.id}`,
deadlineAt,
load: loadTaskState,
accept: ({ taskRuns, interactions }) =>
taskRuns.length >= 1 &&
taskRuns.every((run) => TERMINAL_RUN_STATUSES.has(run.status)) &&
interactions.some(isPendingPlanConfirmation),
reject: ({ taskRuns, interactions }) =>
rejectPlanConfirmationPoll({
taskRuns,
interactions,
minimumRunCount: 1,
}),
});
const interaction = pendingState.interactions.find(
isPendingPlanConfirmation,
)!;
const plan = await api.get<IssueDocumentRecord>(
`/api/issues/${issue.id}/documents/plan`,
);
if (!normalizePlanMarkdown(plan.body).includes(planMarkers.draft)) {
throw new Error(`Plan document did not contain ${planMarkers.draft}`);
}
if (numberedPlanStepCount(plan.body) !== 2) {
throw new Error("Plan must contain exactly two numbered steps");
}
if (interaction.payload?.target?.revisionId !== plan.latestRevisionId) {
throw new Error(
"Plan confirmation did not target the latest Plan revision",
);
}
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
await expectPlanStageVisible(page, {
native: execution.profile.expectedRuntimeMode === "native",
revision: plan.latestRevisionNumber ?? null,
});
await captureScreenshot(
"plan-pending",
"Plan awaiting approval",
"plan-pending.png",
);
await page
.getByRole("button", {
name: interaction.payload?.acceptLabel ?? "Approve",
exact: true,
})
.last()
.click();
planLifecycleEvidence = { interaction, plan };
} else if (execution.task.flow === "warm_three_turn") {
const followups = execution.task.buildFollowupMessages?.(nonce);
if (!followups || !fixtures.project?.primaryWorkspace?.id) {
throw new Error(
`Warm fixture ${execution.task.id} is missing its project or follow-up messages`,
);
}
const workspaceFile = path.join(
workspacePath,
`daytona-warm-${nonce}.txt`,
);
const turnEvidence: Array<Record<string, unknown>> = [];
for (const completedTurn of [1, 2] as const) {
const turnDeadlineAt = Math.min(
deadlineAt,
turnSubmissionTimesMs[completedTurn - 1]! +
(execution.task.turnTimeoutMs ?? 10 * 60_000),
);
const waitingState = await pollUntil({
label: `warm Daytona turn ${completedTurn} review state for issue ${issue.id}`,
deadlineAt: turnDeadlineAt,
load: loadTaskState,
accept: ({ currentIssue, taskRuns, interactions }) => {
const latestRun = sortRunsChronologically(taskRuns).at(-1);
const pendingConfirmations = interactions.filter(
isPendingWarmConfirmation,
);
return (
currentIssue.status === "in_review" &&
taskRuns.length === completedTurn &&
taskRuns.every((run) => run.status === "succeeded") &&
pendingConfirmations.length === 1 &&
pendingConfirmations[0]?.sourceRunId === latestRun?.id
);
},
reject: ({ taskRuns }) =>
definitiveRunFailure(taskRuns) ??
(taskRuns.length > completedTurn
? `warm turn ${completedTurn} dispatched duplicate runs`
: undefined),
});
if (execution.suite.id === "daytona-git-streaming") {
await writeSanitizedJson(snapshotsDir, `git-copyback-turn-${completedTurn}.json`, await gitStreamingEvidence(workspacePath, completedTurn), secrets);
const finalization = await gitFinalizationEvidence(api, issue.id, waitingState.taskRuns.map(run => run.id));
await writeSanitizedJson(snapshotsDir, `git-finalization-turn-${completedTurn}.json`, finalization, secrets);
expect(finalization.passed, finalization.failures.join("; ")).toBe(true);
}
if (execution.suite.id === "daytona-warm-continuity") {
const evidence = await warmManagedFileEvidence(api, fixtures.agent.id, sortRunsChronologically(waitingState.taskRuns).at(-1)!.id, completedTurn, nonce, execution.profile.generation === "native");
await writeSanitizedJson(snapshotsDir, `managed-warm-turn-${completedTurn}.json`, evidence, secrets);
expect(evidence.passed, JSON.stringify(evidence.checks)).toBe(true);
}
const expectedPrefix = `${Array.from(
{ length: completedTurn },
(_, index) => `T${index + 1}-${nonce}`,
).join("\n")}\n`;
const hostContent = await readFile(workspaceFile, "utf8");
if (hostContent !== expectedPrefix) {
throw new Error(
`Host workspace was not finalized after warm turn ${completedTurn}: expected ${JSON.stringify(expectedPrefix)}, observed ${JSON.stringify(hostContent)}`,
);
}
if (
waitingState.currentIssue.projectId !== fixtures.project.id ||
waitingState.currentIssue.projectWorkspaceId !==
fixtures.project.primaryWorkspace.id ||
!waitingState.currentIssue.executionWorkspaceId
) {
throw new Error(
`Warm turn ${completedTurn} lost its project execution-workspace scope`,
);
}
const chronologicalRuns = sortRunsChronologically(
waitingState.taskRuns,
);
const completedRunIds = new Set(
chronologicalRuns.map((candidate) => candidate.id),
);
const retainedTurnLeases = await pollUntil({
label: `retained Daytona leases after warm turn ${completedTurn}`,
deadlineAt: Math.min(turnDeadlineAt, Date.now() + 30_000),
intervalMs: 500,
load: () =>
api.get<EnvironmentLeaseRecord[]>(
`/api/environments/${fixtures!.environment.id}/leases`,
),
accept: (leases) => {
const runOrder = new Map(
chronologicalRuns.map((candidate, index) => [
candidate.id,
index,
]),
);
const completed = leases
.filter(
(lease) =>
lease.heartbeatRunId &&
completedRunIds.has(lease.heartbeatRunId),
)
.sort(
(left, right) =>
(runOrder.get(left.heartbeatRunId ?? "") ?? 0) -
(runOrder.get(right.heartbeatRunId ?? "") ?? 0),
);
return (
completed.length === completedTurn &&
completed
.slice(0, -1)
.every(
(lease) =>
lease.status === "expired" &&
lease.cleanupStatus === "success",
) &&
completed.at(-1)?.status === "retained" &&
completed.every(
(lease) =>
lease.leasePolicy === "reuse_by_environment" &&
typeof lease.providerLeaseId === "string" &&
record(lease.metadata).sandboxState === "started",
) &&
completed
.slice(1)
.every(
(lease) =>
record(lease.metadata).resumedFromState === "started",
)
);
},
});
const turnRunOrder = new Map(
chronologicalRuns.map((candidate, index) => [candidate.id, index]),
);
const completedLeases = retainedTurnLeases
.filter(
(lease) =>
lease.heartbeatRunId &&
completedRunIds.has(lease.heartbeatRunId),
)
.sort(
(left, right) =>
(turnRunOrder.get(left.heartbeatRunId ?? "") ?? 0) -
(turnRunOrder.get(right.heartbeatRunId ?? "") ?? 0),
);
if (
new Set(completedLeases.map((lease) => lease.providerLeaseId))
.size !== 1
) {
throw new Error(
`Warm turn ${completedTurn} replaced its Daytona sandbox`,
);
}
const journalEvidence = execution.suite.id === "daytona-journal-continuity" && completedTurn === 1
? await largeJournalEvidence({
stateRoot: path.join(process.env.PAPERCLIP_HOME!, "instances", process.env.PAPERCLIP_INSTANCE_ID!, "runtime", "paperclip-runner", "durable-sessions"),
runId: chronologicalRuns.at(-1)!.id,
minimumBytes: 2 * 1024 * 1024,
minimumCompletedStimulusCalls: 240,
})
: undefined;
if (journalEvidence) {
await writeSanitizedJson(snapshotsDir, "large-journal-boundary.json", journalEvidence, secrets);
}
turnEvidence.push({
...(journalEvidence ? { journalEvidence } : {}),
turn: completedTurn,
issue: waitingState.currentIssue,
run: chronologicalRuns.at(-1),
hostContent,
leases: completedLeases,
});
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
await captureScreenshot(
`warm-turn-${completedTurn}`,
`Warm Daytona turn ${completedTurn} awaiting review`,
`warm-turn-${completedTurn}.png`,
);
turnSubmissionTimesMs.push(
await submitTaskRevision(page, followups[completedTurn - 1]),
);
}
warmLifecycleEvidence = { turns: turnEvidence };
}
const taskMatchers = execution.task.buildMatchers(nonce, execution);
const terminalDeadlineAt =
execution.task.flow === "warm_three_turn"
? Math.min(
deadlineAt,
turnSubmissionTimesMs.at(-1)! +
(execution.task.turnTimeoutMs ?? 10 * 60_000),
)
: deadlineAt;
let terminal = await pollUntil({
label: `issue ${issue.id} and heartbeat run terminal state`,
deadlineAt: terminalDeadlineAt,
load: loadTaskState,
accept: ({ currentIssue, taskRuns }) =>
currentIssue.status === execution.task.expectedTerminalState.issue &&
taskRuns.length >= minimumRunCount(execution.task) &&
taskRuns.every((run) => TERMINAL_RUN_STATUSES.has(run.status)),
reject: ({ taskRuns }) => definitiveRunFailure(taskRuns),
});
// Finalization commits the issue/run decision before the derived agent
// comment is guaranteed to be visible through the comments endpoint.
// Give that projection a short consistency window so a successful
// terminal response is not misclassified as an empty provider reply.
// If no comment arrives, retain the original terminal observation and
// let the ordinary message matcher report the product failure.
if (taskMatchers.some((matcher) => matcher.kind.startsWith("message_"))) {
terminal = await pollUntil({
label: `final agent comment for issue ${issue.id}`,
deadlineAt: Math.min(deadlineAt, Date.now() + 30_000),
load: loadTaskState,
accept: ({ taskRuns, comments }) => {
if (!matchesRunCount(execution.task, taskRuns.length)) {
return false;
}
const finalRun = sortRunsChronologically(taskRuns).at(-1);
return comments.some(
(comment) =>
comment.createdByRunId === finalRun?.id &&
comment.authorAgentId === fixtures!.agent.id,
);
},
reject: ({ taskRuns }) => definitiveRunFailure(taskRuns),
}).catch(() => terminal);
}
issue = terminal.currentIssue;
selectedRuns = terminal.taskRuns;
if (lifecycleBlockerId && execution.profile.expectedRuntimeMode === "legacy") {
const blockedIssue = await api.get<Pick<Issue, "blockedBy">>(`/api/issues/${issue.id}`);
expect(blockedIssue.blockedBy?.map((blocker) => blocker.id)).toEqual([lifecycleBlockerId]);
expect((await api.get<{ status: string }>(`/api/issues/${lifecycleBlockerId}`)).status).toBe("backlog");
}
if (reviewProvider) {
expect(reviewProvider.invocationCount()).toBe(execution.task.toolReviewDecision === "decline" ? 0 : execution.task.toolReviewDecision === "always" ? 2 : 1);
const pending = await api.get<{ actionRequests: unknown[] }>(`/api/companies/${fixtures.company.id}/tools/action-requests?status=pending`);
expect(pending.actionRequests).toHaveLength(0);
await writeSanitizedJson(snapshotsDir, "connection-review.json", { source: "local MCP fixture", connectionId: reviewProvider.connectionId, providerCalls: reviewProvider.invocationCount(), decision: execution.task.toolReviewDecision, issueId: issue.id }, secrets);
}
if (!matchesRunCount(execution.task, selectedRuns.length)) {
const runLogs = await Promise.all(
selectedRuns.map(async (candidate) => ({
runId: candidate.id,
log: await api
.get<unknown>(
`/api/heartbeat-runs/${candidate.id}/log?limitBytes=1048576`,
)
.catch((error) => ({
evidenceCaptureError:
error instanceof Error ? error.message : String(error),
})),
})),
);
await writeSanitizedJson(
snapshotsDir,
"api-state.json",
{ issue, runs: selectedRuns, runLogs, ...terminal },
secrets,
);
throw new Error(
`Expected ${minimumRunCount(execution.task)}..${execution.task.expectedRunCount} task heartbeat run(s); observed ${selectedRuns.length}`,
);
}
// The company run-list endpoint intentionally returns only a compact,
// allowlisted context summary. Hydrate each selected run through the
// public detail endpoint before asserting environment/lease metadata.
selectedRuns = await Promise.all(
selectedRuns.map((candidate) =>
api.get<RunRecord>(`/api/heartbeat-runs/${candidate.id}`),
),
);
selectedRuns = sortRunsChronologically(selectedRuns);
if (execution.suite.id === "daytona-git-streaming") {
await writeSanitizedJson(snapshotsDir, "git-copyback-turn-3.json", await gitStreamingEvidence(workspacePath, 3), secrets);
const finalization = await gitFinalizationEvidence(api, issue.id, selectedRuns.map(run => run.id));
await writeSanitizedJson(snapshotsDir, "git-finalization-turn-3.json", finalization, secrets);
expect(finalization.passed, finalization.failures.join("; ")).toBe(true);
}
const lifecycleProbe = execution.suite.id === "lifecycle-baseline" ? lifecycleLiveCase(execution.task.id) : undefined;
if (lifecycleProbe?.family === "repair") {
const grade = gradeLifecycleRepair({ runs: selectedRuns, comments: terminal.comments,
agentId: fixtures.agent.id, narrative: lifecycleProbe.narrative });
await writeSanitizedJson(snapshotsDir, "lifecycle-repair.json", { grade, runs: selectedRuns, comments: terminal.comments }, secrets);
expect(grade.passed, grade.detail).toBe(true);
expect(terminal.currentIssue.scheduledRetry).toBeNull();
expect(terminal.currentIssue.monitorNextCheckAt).toBeNull();
expect(terminal.interactions.filter(i => i.status === "pending")).toHaveLength(0);
}
if (execution.task.flow === "warm_three_turn") {
turnTimings = selectedRuns.map((candidate, index) => {
const submittedAtMs = turnSubmissionTimesMs[index]!;
const runStartedAtMs = candidate.startedAt
? Date.parse(candidate.startedAt)
: Number.NaN;
const runFinishedAtMs = candidate.finishedAt
? Date.parse(candidate.finishedAt)
: Number.NaN;
const acquisition = record(
record(candidate.contextSnapshot).paperclipEnvironment,
).sandboxLeaseAcquisition;
const acquisitionOutcome = record(acquisition).outcome;
return {
turn: index + 1,
submittedAt: new Date(submittedAtMs).toISOString(),
runStartedAt: candidate.startedAt ?? null,
runFinishedAt: candidate.finishedAt ?? null,
schedulerLatencyMs: Number.isFinite(runStartedAtMs)
? Math.max(0, runStartedAtMs - submittedAtMs)
: null,
runDurationMs:
Number.isFinite(runStartedAtMs) &&
Number.isFinite(runFinishedAtMs)
? Math.max(0, runFinishedAtMs - runStartedAtMs)
: null,
responseLatencyMs: Number.isFinite(runFinishedAtMs)
? Math.max(0, runFinishedAtMs - submittedAtMs)
: null,
runId: candidate.id,
leaseAcquisitionOutcome:
acquisitionOutcome === "created" ||
acquisitionOutcome === "resumed" ||
acquisitionOutcome === "replacement"
? acquisitionOutcome
: "unknown",
};
});
}
if (execution.suite.id === "daytona-warm-continuity") {
const evidence = await warmManagedFileEvidence(api, fixtures.agent.id, selectedRuns.at(-1)!.id, 3, nonce, execution.profile.generation === "native");
await writeSanitizedJson(snapshotsDir, "managed-warm-turn-3.json", evidence, secrets);
expect(evidence.passed, JSON.stringify(evidence.checks)).toBe(true);
}
const finalRun = selectedRuns.at(-1)!;
const run =
selectedRuns.find(
(candidate) => candidate.id === issue!.executionRunId,
) ?? selectedRuns[0];
const [
persistedAgentValue,
persistedEnvironmentValue,
runLogs,
runEventsByRun,
] = await Promise.all([
api.get<unknown>(`/api/agents/${fixtures.agent.id}`),
api.get<unknown>(`/api/environments/${fixtures.environment.id}`),
Promise.all(
selectedRuns.map(async (candidate) => ({
runId: candidate.id,
log: await api
.get<unknown>(
`/api/heartbeat-runs/${candidate.id}/log?limitBytes=1048576`,
)
.catch((error) => ({
evidenceCaptureError:
error instanceof Error ? error.message : String(error),
})),
})),
),
Promise.all(
selectedRuns.map(async (candidate) => {
try {
return {
runId: candidate.id,
events: await collectRunEvents<RunEventRecord>((afterSeq, limit) =>
api.get(`/api/heartbeat-runs/${candidate.id}/events?afterSeq=${afterSeq}&limit=${limit}`),
),
error: null,
};
} catch (error) {
return {
runId: candidate.id,
events: [] as RunEventRecord[],
error: error instanceof Error ? error.message : String(error),
};
}
}),
),
]);
const runLog =
runLogs.find((candidate) => candidate.runId === run.id)?.log ?? {};
const persistedAgent = record(persistedAgentValue);
const persistedEnvironment = record(persistedEnvironmentValue);
const agentComments = terminal.comments.filter(
(comment) =>
comment.authorAgentId === fixtures!.agent.id ||
selectedRuns.some(
(candidate) => comment.createdByRunId === candidate.id,
),
);
// Message matchers intentionally use persisted agent comments only.
// A semantic finish summary can differ from the actual user-facing text;
// accepting it here would let backend metadata mask a truncated UI
// response. The browser assertion below remains the visible source of
// truth after the comment projection has settled.
const message = agentComments
.map((comment) => comment.body ?? "")
.join("\n");
const finalRunMessage = persistedFinalRunMessage(agentComments, finalRun);
const pendingInteractions = terminal.interactions.filter(
(interaction) => interaction.status === "pending",
);
const invariantFailures: string[] = reasoningProjectionFailures(
runEventsByRun.flatMap((entry) => entry.events),
);
if (pendingInteractions.length > 0)
invariantFailures.push(
`expected no unresolved interaction; observed ${pendingInteractions.length}`,
);
if (expectedQuestionResolution) {
const questionInteractions = terminal.interactions.filter(
(interaction) => interaction.kind === "ask_user_questions",
);
if (
questionInteractions.length !== 1 ||
questionInteractions[0]?.id !==
expectedQuestionResolution.interactionId
) {
invariantFailures.push(
`expected exactly one stable question interaction ${expectedQuestionResolution.interactionId}; observed ${JSON.stringify(questionInteractions)}`,
);
}
const resolvedQuestion = questionInteractions.find(
(interaction) =>
interaction.id === expectedQuestionResolution.interactionId,
);
const answers = resolvedQuestion?.result?.answers ?? [];
if (
resolvedQuestion?.status !== "answered" ||
resolvedQuestion.result?.version !== 1 ||
answers.length !== 1 ||
answers[0]?.questionId !== "verification-word" ||
JSON.stringify(answers[0]?.optionIds) !==
JSON.stringify([expectedQuestionResolution.optionId]) ||
answers[0]?.otherText !== undefined
) {
invariantFailures.push(
`expected interaction ${expectedQuestionResolution.interactionId} to resolve with exactly ${expectedQuestionResolution.optionId}; observed ${JSON.stringify(resolvedQuestion)}`,
);
}
const continuationRun = selectedRuns.at(-1);
const continuationContext = record(continuationRun?.contextSnapshot);
if (
!continuationRun ||
continuationContext.interactionId !==
expectedQuestionResolution.interactionId
) {
invariantFailures.push(
`expected the continuation run to consume interaction ${expectedQuestionResolution.interactionId}; observed ${String(continuationContext.interactionId)}`,
);
}
if (execution.profile.generation === "native" && continuationRun) {
const runnerProfile = record(continuationRun.runnerProfileJson);
const nativeExecutionInput = record(
runnerProfile.nativeExecutionInput,
);
const interactionResponses = Array.isArray(
nativeExecutionInput.interactionResponses,
)
? nativeExecutionInput.interactionResponses.map(record)
: [];
const matchingResponses = interactionResponses.filter(
(candidate) =>
candidate.interactionId ===
expectedQuestionResolution.interactionId,
);
const responseEnvelope = matchingResponses[0];
const response = record(responseEnvelope?.response);
const responseResult = record(response.result);
const responseAnswers = Array.isArray(responseResult.answers)
? responseResult.answers.map(record)
: [];
if (
matchingResponses.length !== 1 ||
responseEnvelope?.kind !== "ask_user_questions" ||
response.status !== "answered" ||
responseResult.version !== 1 ||
responseAnswers.length !== 1 ||
responseAnswers[0]?.questionId !== "verification-word" ||
JSON.stringify(responseAnswers[0]?.optionIds) !==
JSON.stringify([expectedQuestionResolution.optionId])
) {
invariantFailures.push(
`expected native continuation input to carry exactly one answered interaction ${expectedQuestionResolution.interactionId}; observed ${JSON.stringify(matchingResponses)}`,
);
}
}
questionLifecycleEvidence = {
...(questionLifecycleEvidence ?? {}),
resolvedInteraction: resolvedQuestion ?? null,
continuationRunId: continuationRun?.id ?? null,
};
}
for (const candidate of selectedRuns) {
if (
(candidate.continuationAttempt ?? 0) !== 0 ||
candidate.retryOfRunId
)
invariantFailures.push(
`expected run ${candidate.id} without a recovery continuation`,
);
}
for (const captured of runEventsByRun) {
if (captured.error) {
invariantFailures.push(
`run ${captured.runId} events query failed: ${captured.error}`,
);
}
}
if (execution.suite.id === "api-response-reading") {
const paging = gradeApiResponsePaging(runEventsByRun.flatMap(captured => captured.events), apiResponseSourceId ?? "");
await writeSanitizedJson(snapshotsDir, "api-response-pagination.json", paging, secrets);
if (!paging.passed) invariantFailures.push(`Bounded response paging was not proven: ${paging.failure}`);
}
const context = record(run.contextSnapshot);
const environmentContext = record(context.paperclipEnvironment);
const workspaceContext = record(context.paperclipWorkspace);
const environmentDriver =
environmentContext.driver ?? persistedEnvironment.driver;
const observedEnvironment =
environmentDriver === "sandbox" ? "daytona" : environmentDriver;
const observedRuntimeMode =
run.runtimeMode ??
(persistedAgent.adapterType === "paperclip_runner"
? "native"
: "legacy");
const matcherObservation = {
message,
issueStatus: issue.status,
runStatus: selectedRuns.every(
(candidate) =>
candidate.status === execution.task.expectedTerminalState.run,
)
? execution.task.expectedTerminalState.run
: selectedRuns.map((candidate) => candidate.status).join(","),
runtimeMode: observedRuntimeMode,
environment:
typeof observedEnvironment === "string"
? observedEnvironment
: undefined,
json: {
issue,
run,
comments: terminal.comments,
interactions: terminal.interactions,
},
};
const fileObservations = Object.fromEntries(
await Promise.all(
taskMatchers
.filter(
(matcher) =>
matcher.kind === "file_exists" ||
matcher.kind === "file_exact" ||
matcher.kind === "file_contains",
)
.map(async (matcher) => [
matcher.path,
await readFile(
path.isAbsolute(matcher.path)
? matcher.path
: path.join(workspacePath, matcher.path),
"utf8",
).catch(() => undefined),
]),
),
);
if (execution.suite.id === "api-response-reading") {
downloadedResponseProof = await readResponseProof(api, issue.id, run.id);
fileObservations["api-response-proof.txt"] = downloadedResponseProof.content;
await writeSanitizedJson(snapshotsDir, "downloaded-response-proof.json", downloadedResponseProof, secrets);
}
matcherResults = await Promise.all(
taskMatchers.map((matcher) =>
evaluateMatcher(matcher, {
...matcherObservation,
files: fileObservations,
// Multi-run tasks intentionally retain earlier waiting/revision
// replies. Exact completion text belongs to the chronological
// final run, while occurrence checks still span every agent
// comment so duplicate terminal markers cannot be hidden.
message:
matcher.kind === "message_exact" ? finalRunMessage : message,
}),
),
);
const failedMatchers = matcherResults.filter((result) => !result.passed);
const exactMessageMatcher = taskMatchers.find(
(matcher) => matcher.kind === "message_exact",
);
if (
execution.profile.id === "runner-opencode" &&
execution.task.id === "structured-question-restart-resume" &&
exactMessageMatcher?.kind === "message_exact" &&
finalRunMessage === exactMessageMatcher.expected.replace(/-\d+$/, "") &&
record(finalRun.resultJson).summary === exactMessageMatcher.expected
) {
// OpenCode can occasionally copy the complete marker into the
// accepted semantic result while dropping only the synthetic attempt
// suffix from its visible answer. Keep exact matching strict, but let
// the campaign retry this narrowly proven provider variance once in a
// fresh harness. A repeated near miss remains a failed cell.
failureClassOverride = "provider_variance";
}
const retryInteractiveTerminalProviderVariance =
(execution.suite.id === "openrouter-model-breadth" &&
(execution.task.id === "question-resume-complete" ||
execution.task.id === "plan-approve-complete")) ||
(execution.suite.id === "core-compatibility" &&
execution.profile.generation === "native" &&
execution.task.id === "plan-revise-accept");
if (
retryInteractiveTerminalProviderVariance &&
exactMessageMatcher?.kind === "message_exact" &&
selectedRuns.every((candidate) => candidate.status === "succeeded") &&
issue.status === "done" &&
finalRunMessage !== exactMessageMatcher.expected &&
record(finalRun.resultJson).summary === exactMessageMatcher.expected
) {
// An interactive breadth model can occasionally satisfy the durable
// terminal contract while paraphrasing the visible final response.
// Preserve the exact persisted-message and DOM assertions, but
// classify this narrowly proven provider variance for one
// fresh-harness retry.
failureClassOverride = "provider_variance";
}
const observedEnvironmentId =
environmentContext.id ??
(execution.environment.id === "local"
? persistedAgent.defaultEnvironmentId
: undefined);
if (observedEnvironmentId !== fixtures.environment.id) {
invariantFailures.push(
`Expected environment ${fixtures.environment.id}; observed ${String(observedEnvironmentId)}`,
);
}
if (
execution.environment.id === "daytona" &&
typeof environmentContext.leaseId !== "string"
) {
invariantFailures.push(
"expected a Daytona sandbox lease on the run context",
);
}
if (execution.task.flow === "warm_three_turn") {
const runEnvironmentContexts = selectedRuns.map((candidate) =>
record(record(candidate.contextSnapshot).paperclipEnvironment),
);
const leaseIds = runEnvironmentContexts.map((entry) => entry.leaseId);
const acquisitionOutcomes = runEnvironmentContexts.map(
(entry) => record(entry.sandboxLeaseAcquisition).outcome,
);
const projectWorkspaceIds = selectedRuns.map(
(candidate) =>
record(record(candidate.contextSnapshot).paperclipWorkspace)
.workspaceId,
);
const executionWorkspaceIds = selectedRuns.map(
(candidate) => record(candidate.contextSnapshot).executionWorkspaceId,
);
if (
leaseIds.some(
(leaseId) => typeof leaseId !== "string" || leaseId.length === 0,
)
) {
invariantFailures.push(
`expected a persisted Daytona lease row for every warm turn; observed ${JSON.stringify(leaseIds)}`,
);
}
if (
JSON.stringify(acquisitionOutcomes) !==
JSON.stringify(["created", "resumed", "resumed"])
) {
invariantFailures.push(
`expected warm lease outcomes created,resumed,resumed; observed ${JSON.stringify(acquisitionOutcomes)}`,
);
}
if (
!fixtures.project?.primaryWorkspace?.id ||
projectWorkspaceIds.some(
(workspaceId) =>
workspaceId !== fixtures!.project!.primaryWorkspace!.id,
) ||
new Set(executionWorkspaceIds).size !== 1 ||
executionWorkspaceIds[0] !== issue.executionWorkspaceId ||
issue.projectId !== fixtures.project.id ||
issue.projectWorkspaceId !== fixtures.project.primaryWorkspace.id ||
!issue.executionWorkspaceId
) {
invariantFailures.push(
`warm task did not preserve project, project-workspace, and execution-workspace identity: ${JSON.stringify({ projectWorkspaceIds, executionWorkspaceIds, projectId: issue.projectId, projectWorkspaceId: issue.projectWorkspaceId, executionWorkspaceId: issue.executionWorkspaceId })}`,
);
}
if (execution.profile.generation === "native") {
const stableIdentityFields: Array<{
label: string;
values: unknown[];
}> = [
{
label: "native session",
values: selectedRuns.map(
(candidate) => candidate.nativeSessionId,
),
},
{
label: "runner instance",
values: selectedRuns.map(
(candidate) => candidate.runnerInstanceId,
),
},
{
label: "provider session",
values: selectedRuns.map((candidate) => candidate.sessionIdAfter),
},
{
label: "runner pid",
values: selectedRuns.map((candidate) => candidate.processPid),
},
{
label: "runner process fingerprint",
values: selectedRuns.map(
(candidate) => candidate.processStartedAt,
),
},
];
for (const { label, values } of stableIdentityFields) {
if (
values.some(
(value) =>
value === null ||
value === undefined ||
String(value).length === 0,
) ||
new Set(values).size !== 1
) {
invariantFailures.push(
`expected one stable ${label} across native warm turns; observed ${JSON.stringify(values)}`,
);
}
}
}
if (
turnTimings?.length !== 3 ||
turnTimings.some(
(timing) =>
timing.runStartedAt === null ||
timing.runFinishedAt === null ||
timing.schedulerLatencyMs === null ||
timing.runDurationMs === null ||
timing.responseLatencyMs === null ||
timing.responseLatencyMs >
(execution.task.turnTimeoutMs ?? 10 * 60_000),
)
) {
invariantFailures.push(
`warm turn timing data was incomplete or exceeded its structural deadline: ${JSON.stringify(turnTimings)}`,
);
}
const retainedLeases = await pollUntil({
label: `terminal warm Daytona lease history for issue ${issue.id}`,
deadlineAt: Math.min(deadlineAt, Date.now() + 30_000),
intervalMs: 500,
load: () =>
api.get<EnvironmentLeaseRecord[]>(
`/api/environments/${fixtures!.environment.id}/leases`,
),
accept: (leases) => {
const warmLeases = leases.filter(
(lease) =>
lease.issueId === issue!.id &&
selectedRuns.some(
(candidate) => candidate.id === lease.heartbeatRunId,
),
);
return (
warmLeases.length === 3 &&
warmLeases.every((lease) => {
const runIndex = selectedRuns.findIndex(
(candidate) => candidate.id === lease.heartbeatRunId,
);
return (
lease.status ===
(runIndex === selectedRuns.length - 1
? "retained"
: "expired") &&
lease.cleanupStatus === "success" &&
lease.leasePolicy === "reuse_by_environment" &&
typeof lease.providerLeaseId === "string" &&
record(lease.metadata).sandboxState === "started"
);
})
);
},
});
const selectedRunOrder = new Map(
selectedRuns.map((candidate, index) => [candidate.id, index]),
);
const warmLeases = retainedLeases
.filter(
(lease) =>
lease.issueId === issue!.id &&
selectedRunOrder.has(lease.heartbeatRunId ?? ""),
)
.sort(
(left, right) =>
(selectedRunOrder.get(left.heartbeatRunId ?? "") ?? 0) -
(selectedRunOrder.get(right.heartbeatRunId ?? "") ?? 0),
);
const providerLeaseIds = warmLeases.map(
(lease) => lease.providerLeaseId,
);
const resumedFromStates = warmLeases
.slice(1)
.map((lease) => record(lease.metadata).resumedFromState);
if (
new Set(providerLeaseIds).size !== 1 ||
typeof providerLeaseIds[0] !== "string" ||
JSON.stringify(resumedFromStates) !==
JSON.stringify(["started", "started"])
) {
invariantFailures.push(
`expected one continuously-started Daytona sandbox; observed ${JSON.stringify({ providerLeaseIds, resumedFromStates })}`,
);
}
warmLifecycleEvidence = {
...(warmLifecycleEvidence ?? {}),
leaseIds,
acquisitionOutcomes,
projectWorkspaceIds,
executionWorkspaceIds,
providerLeaseIds,
resumedFromStates,
retainedLeases: warmLeases,
turnTimings,
};
}
if (execution.environment.id === "local") {
const runLogContent = String(record(runLog).content ?? "");
// The log endpoint returns NDJSON, so quotes inside each `chunk` are
// escaped. Accept both that wire representation and a decoded chunk.
const fallbackWorkspace =
/Using fallback workspace \\\"([^"\\]+)\\\"/.exec(
runLogContent,
)?.[1] ??
/Using fallback workspace "([^"]+)"/.exec(runLogContent)?.[1];
const cwd = String(workspaceContext.cwd ?? fallbackWorkspace ?? "");
if (!cwd.startsWith(`${temporaryRoot}/`)) {
invariantFailures.push(
`local run workspace escaped the isolated root: ${cwd}`,
);
}
}
const runEvents =
runEventsByRun.find((candidate) => candidate.runId === run.id)
?.events ?? [];
if (execution.profile.generation === "native") {
for (const candidate of selectedRuns) {
const candidateEvents =
runEventsByRun.find((captured) => captured.runId === candidate.id)
?.events ?? [];
const runnerInstanceObserved =
Boolean(candidate.runnerInstanceId) ||
candidateEvents.some(
(event) =>
typeof event.sourceInstanceId === "string" &&
event.sourceInstanceId.length > 0 &&
!event.sourceInstanceId.endsWith(":control"),
);
if (!runnerInstanceObserved) {
invariantFailures.push(
`expected native run ${candidate.id} events from a runner instance`,
);
}
invariantFailures.push(
...nativeRunEventIntegrityFailures(candidate, candidateEvents),
);
}
if (
(execution.profile.provider === "codex" ||
execution.profile.provider === "opencode") &&
selectedRuns.length > 1
) {
invariantFailures.push(
...providerSessionContinuityFailures(
execution.profile.provider,
selectedRuns,
),
);
} else if (
execution.profile.provider === "acpx" &&
selectedRuns.length > 1
) {
for (let index = 1; index < selectedRuns.length; index += 1) {
const previousSessionId = selectedRuns[index - 1]?.sessionIdAfter;
const current = selectedRuns[index]!;
const currentSessionId = current.sessionIdAfter;
if (!previousSessionId || !currentSessionId) {
invariantFailures.push(
"expected ACPX to record provider session identity across all heartbeat runs",
);
continue;
}
const acceptedPlanResetFailures = acceptedPlanSessionResetFailures(
"acpx",
previousSessionId,
current,
);
if (acceptedPlanResetFailures) {
invariantFailures.push(...acceptedPlanResetFailures);
continue;
}
if (previousSessionId === currentSessionId) continue;
const currentEvents =
runEventsByRun.find((captured) => captured.runId === current.id)
?.events ?? [];
const recordedContinuityBreak = currentEvents.some((event) => {
const payload = record(event.payload);
return (
event.eventType === "run.performance.span" &&
payload.span === "provider.session.continuity_break" &&
payload.previousProviderSessionId === previousSessionId &&
payload.replacementProviderSessionId === currentSessionId
);
});
if (!recordedContinuityBreak) {
invariantFailures.push(
`ACPX provider session changed from ${previousSessionId} to ${currentSessionId} without a matching continuity event`,
);
}
}
}
const spanPayloads = runEvents
.filter((event) => event.eventType === "run.performance.span")
.map((event) => record(event.payload));
const selectedTransport = spanPayloads.find(
(payload) => payload.span === "runner.transport.selected",
);
const expectedTransport =
execution.environment.id === "daytona"
? "provider_ingress"
: "local_loopback";
if (selectedTransport?.mode !== expectedTransport) {
invariantFailures.push(
`Expected native runner transport ${expectedTransport}; observed ${String(selectedTransport?.mode)}`,
);
}
if (execution.environment.id === "daytona") {
const authenticated = spanPayloads.some(
(event) =>
event.span === "runner.prp.authenticate" &&
event.outcome === "ok",
);
if (!authenticated) {
invariantFailures.push(
"expected authenticated native Daytona runner preview ingress",
);
}
}
} else {
for (const candidate of selectedRuns) {
const candidateEvents =
runEventsByRun.find((captured) => captured.runId === candidate.id)
?.events ?? [];
if (
candidate.runtimeMode !== "legacy" ||
candidate.runnerInstanceId ||
candidateEvents.some(
(event) =>
Object.keys(record(event.payload?.prpEvent)).length > 0,
)
) {
invariantFailures.push(
`legacy run ${candidate.id} crossed into native runner persistence`,
);
}
}
}
await writeSanitizedJson(
snapshotsDir,
"api-state.json",
{
issue,
run,
comments: terminal.comments,
interactions: terminal.interactions,
planLifecycleEvidence,
questionLifecycleEvidence,
warmLifecycleEvidence,
matcherResults,
invariantFailures,
runEvents,
runEventsByRun,
runLogs,
},
secrets,
);
if (
exactMessageMatcher?.kind === "message_exact" &&
isOpenRouterDeepSeekHelloTerminalVariance({
suiteId: execution.suite.id,
profileId: execution.profile.id,
taskId: execution.task.id,
expectedMarker: exactMessageMatcher.expected,
finalRunMessage,
allAgentMessages: message,
semanticSummary: record(finalRun.resultJson).summary,
issueStatus: issue.status,
runStatuses: selectedRuns.map((candidate) => candidate.status),
matcherResults,
invariantFailures,
})
) {
// DeepSeek can occasionally complete the semantic finish correctly but
// expose its pre-tool acknowledgement as the visible final answer. Keep
// exact persisted-message, global occurrence, and DOM checks strict,
// while allowing one fresh-harness retry only for the zero-marker form.
failureClassOverride = "provider_variance";
}
// The backend polling above can observe a terminal transition before a
// websocket invalidation reaches the already-open task page. Reload the
// canonical task route so the screenshot and UI assertions prove the
// persisted final state, not a stale client cache.
await page.goto(
`/${encodeURIComponent(issuePrefix)}/issues/${encodeURIComponent(issue.identifier ?? issue.id)}`,
{ waitUntil: "domcontentloaded" },
);
const visibleAgentReplies = page
.getByTestId("task-chat-thread")
.getByTestId("task-chat-agent-bubble");
if (execution.suite.id === "api-response-reading") {
// File delivery renders a card instead of an exact summary bubble.
// Prove the visible link points to the same independently checked bytes.
const proofLink = page.getByRole("link", { name: "Open api-response-proof.txt", exact: true }).first();
await expect(proofLink).toBeVisible({ timeout: 30_000 });
await expect(proofLink).toHaveAttribute("href", `/api/attachments/${downloadedResponseProof!.attachmentId}/content`);
} else if (execution.task.flow === "warm_three_turn") {
// Prove the persisted user-facing response is visible, independently
// of the byte-for-byte workspace checks and lease continuity checks.
expect(finalRunMessage.trim()).not.toBe("");
await expect(visibleAgentReplies.filter({ hasText: finalRunMessage }).last())
.toBeVisible({ timeout: 30_000 });
} else {
const escapedMarker = marker.replace(/[.*+?^${}()|[\]\\]/g, "\\$&");
const terminalAgentReplies = visibleAgentReplies.filter({
hasText: new RegExp(`^\\s*${escapedMarker}\\s*$`),
});
await expect(terminalAgentReplies).toHaveCount(1, { timeout: 30_000 });
await expect(terminalAgentReplies.first()).toBeVisible();
// A string-valued toHaveText assertion compares the complete rendered
// text while normalizing ordinary DOM whitespace. This keeps Markdown
// layout differences harmless without allowing prefixed, suffixed, or
// substituted provider prose to masquerade as the requested response.
await expect(terminalAgentReplies.first()).toHaveText(marker, {
useInnerText: true,
});
}
// The fixture owns the expected disposition; blocked workflows must prove
// their Blocked UI rather than inheriting the completion-only Done check.
const expectedStatus = execution.task.expectedTerminalState.issue;
const expectedStatusLabel = expectedStatus.replace(/_/g, " ").replace(/\b\w/g, (letter) => letter.toUpperCase());
await expect(
page.getByTestId("issue-detail-header").getByRole("button", {
// Blocked includes the live blocker-attention explanation in its
// accessible name. The exact persisted status is asserted separately.
name: `Change status (current: ${expectedStatusLabel}${expectedStatus === "blocked" ? "" : ")"}`,
exact: expectedStatus !== "blocked",
}),
).toBeVisible({ timeout: 30_000 });
if (execution.task.flow === "warm_three_turn") {
const continuedReceipts = page
.getByTestId("task-chat-interaction-receipt")
.filter({ hasText: "Selected “Continue work”" });
await expect(continuedReceipts).toHaveCount(2, { timeout: 30_000 });
await expect(
page.getByText("Declined request", { exact: true }),
).toHaveCount(0);
}
await captureScreenshot(
"final-state",
"Final visible task state",
"final-state.png",
);
if (failedMatchers.length > 0) {
throw new Error(
`Matcher failure: ${failedMatchers.map((result) => result.detail).join("; ")}; run error: ${run.errorCode ?? "none"} ${run.error ?? "none"}`,
);
}
if (invariantFailures.length > 0) {
throw new Error(
`Runtime invariant failure: ${invariantFailures.join("; ")}`,
);
}
}
if (runsCompletionUpdateProbe(execution) && credentials.OPENAI_API_KEY) {
const qualification = completionQualityStatus(completionQuality);
if (qualification === "unqualified") {
failureClassOverride = "permanent_infrastructure";
throw new Error("Completion accuracy is unqualified: missing, invalid, or miscalibrated judge evidence");
}
expect(qualification, "completion reply accuracy").toBe("passed");
}
} catch (error) {
primaryError = error;
if (execution.task.flow === "first_task" && !firstTaskEvidence && classifyFailure(error) === "candidate_failure") {
failureClassOverride = "permanent_infrastructure";
}
try {
await captureFailureApiState();
} catch (captureError) {
const failureClass = classifyFailure(captureError);
if (failureClass === "secret_leak") {
failureClassOverride = "secret_leak";
primaryError = new AggregateError(
[primaryError, captureError],
`Failure evidence contained unsafe data: ${captureError instanceof Error ? captureError.message : String(captureError)}`,
);
} else {
networkDiagnostics.push({
evidenceCaptureError:
captureError instanceof Error
? captureError.message
: String(captureError),
});
}
}
if (!page.isClosed()) {
if (isReviewedFixtureScreenshotRoute()) {
await captureScreenshot(
"failure",
"Task state at failure",
"failure.png",
).catch(() => undefined);
} else {
await capturePrivateScreenshot("failure", "failure.png").catch(
() => undefined,
);
}
}
} finally {
await reviewProvider?.close();
try {
await writeSanitizedJson(
snapshotsDir,
"browser-diagnostics.json",
{
console: consoleDiagnostics,
network: networkDiagnostics,
lifecycle: pageLifecycleDiagnostics,
bootstrap: await browserBootstrap.snapshot(),
},
secrets,
);
} catch (error) {
primaryError = new AggregateError(
[primaryError, error].filter(Boolean),
`Browser diagnostics contained unsafe data: ${error instanceof Error ? error.message : String(error)}`,
);
failureClassOverride = "secret_leak";
}
browserBootstrap.dispose();
if (fixtures) {
await captureRuntimeLeases().catch((error) => {
networkDiagnostics.push({
runtimeBillingCaptureError:
error instanceof Error ? error.message : String(error),
});
});
try {
await cancelActiveRunsForCleanup();
if (companyRunFlow) {
const companyRuns = await api.get<RunRecord[]>(`/api/companies/${fixtures.company.id}/heartbeat-runs?limit=100`);
selectedRuns = await Promise.all(companyRuns.map(run => api.get<RunRecord>(`/api/heartbeat-runs/${run.id}`)));
await writeSanitizedJson(snapshotsDir, execution.task.flow === "first_task" ? "first-task-final-run-ledger.json" : "chat-final-run-ledger.json", selectedRuns, secrets);
}
await fixtures.teardown();
cleanup = "passed";
} catch (error) {
cleanup = "failed";
const priorFailureClass = primaryError
? classifyFailure(primaryError)
: undefined;
const cleanupFailureClass = classifyFailure(error);
failureClassOverride =
priorFailureClass === "secret_leak"
? priorFailureClass
: cleanupFailureClass === "cleanup_failure"
? cleanupFailureClass
: (priorFailureClass ?? cleanupFailureClass);
primaryError = new AggregateError(
[primaryError, error].filter(Boolean),
primaryError
? `${primaryError instanceof Error ? primaryError.message : String(primaryError)}; Cleanup also failed: ${error instanceof Error ? error.message : String(error)}`
: `Cleanup failed after test execution: ${error instanceof Error ? error.message : String(error)}`,
);
}
if (runtimeLeases.length > 0) {
runtimeLeases = await Promise.all(
runtimeLeases.map((lease) =>
api
.get<EnvironmentLeaseRecord>(
`/api/environment-leases/${lease.id}`,
)
.catch(() => lease),
),
);
}
} else {
cleanup =
primaryError &&
/(?:cleanup|teardown) failed/i.test(
primaryError instanceof Error
? primaryError.message
: String(primaryError),
)
? "failed"
: "passed";
}
const finishedAtMs = Date.now();
const runtimeUsage = buildRuntimeUsage({
environmentId: execution.environment.id,
runs: selectedRuns,
leases: runtimeLeases,
fallbackFinishedAt: new Date(finishedAtMs),
});
const resultWithoutBilling: RunnerE2EResult = {
schema: "paperclip.runner-e2e.result/v2",
executionId: execution.id,
suiteId: execution.suite.id,
suiteDefinitionHash: execution.suiteDefinitionHash,
source: resolveRunnerE2ESource(firstTaskEvidence?.source ? { ...firstTaskEvidence.source, workflowRunUrl: null } : undefined),
...(execution.profile.ranking
? { rankingSnapshot: execution.profile.ranking }
: {}),
attempt,
status: primaryError ? "failed" : "passed",
...(primaryError
? {
failureClass:
failureClassOverride ?? classifyFailure(primaryError),
error:
primaryError instanceof Error
? primaryError.message
: String(primaryError),
}
: {}),
profileId: execution.profile.id,
environmentId: execution.environment.id,
caseId: execution.task.id,
provider: execution.profile.provider,
model: firstTaskEvidence ? firstTaskEvidence.observedModels[0] ?? firstTaskEvidence.configuredModel ?? "provider-default (unreported)" : execution.profile.model,
...(firstTaskEvidence ? { firstTask: firstTaskEvidence } : {}),
...(completionQuality.length ? { completionQuality } : {}),
runtimeMode: execution.profile.expectedRuntimeMode,
issueId: issue?.id,
issueIdentifier: issue?.identifier ?? null,
runIds: selectedRuns.map((run) => run.id),
...(turnTimings ? { turnTimings } : {}),
startedAt,
finishedAt: new Date(finishedAtMs).toISOString(),
durationMs: finishedAtMs - startedAtMs,
usage:
selectedRuns.length === 1
? (selectedRuns[0]?.usageJson ?? null)
: {
runs: selectedRuns.map((candidate) => ({
runId: candidate.id,
usage: candidate.usageJson ?? null,
})),
},
runtimeUsage,
matcherResults,
screenshots,
cleanup,
};
const result: RunnerE2EResult = {
...resultWithoutBilling,
billing: summarizeExecutionBilling(resultWithoutBilling),
};
await mkdir(privateDir, { recursive: true });
await writeFile(
resultPath,
`${JSON.stringify(sanitizeJson(result, secrets), null, 2)}\n`,
"utf8",
);
await testInfo.attach("runner-e2e-result", {
path: resultPath,
contentType: "application/json",
});
}
if (primaryError) throw primaryError;
});
}