Files
fusion/packages/engine/src/worktrunk-installer.ts
gsxdsm c15c78feeb feat: migrate storage from SQLite to PostgreSQL (#1793)
# Migrate storage from SQLite to PostgreSQL — full dashboard cutover

Migrates Fusion's storage layer to the embedded PostgreSQL
`AsyncDataLayer` (the default backend) and **completes the
satellite-store + feature cutover** so every dashboard and Command
Center surface works in PG mode.

## Status — every surface works in embedded-PG mode

Verified live against a running embedded-Postgres dashboard (all
**200**, zero 5xx) and gate-tested (**23 files / 99 tests** on embedded
PG, plus engine-core 294 and ci-shape 63 in the blocking merge gate;
core/engine/cli/dashboard typecheck clean).

| Area | Surfaces | State |
|---|---|---|
| Satellite stores | workflows, todos, insights, research, missions,
goals, mailbox | ✅ |
| Views | artifacts, documents, evals | ✅ |
| Command Center | activity, productivity, team, tokens, tools,
**workflows**, **github**, **signals**, **plugin-activations**, **live**
(all 10) | ✅ |
| Run execution | insight generation, research run execution | ✅
(store-path; AI step needs a provider) |
| Live updates | SSE push for mission/research/insight events | ✅ |
| Workflow editing | create / update / delete / select (+ id counter) |
✅ |
| Engine | mission autopilot, incident-signal ingestion, regression
storm-guard, agent wake-on-message | ✅ |
| Core | tasks, agents, secrets, automations, memory, chat, usage, PRs,
git | ✅ |

## Approach

Each satellite store gets an `Async<Store>` wrapper exposing the sync
store's method names over the existing `async-*-store.ts` helpers;
`get<Store>Store()` returns a `Sync | Async` union; consumers `await`
(harmless on sync), and engine/CLI paths that can't convert use
`instanceof Sync` graceful fallback. Analytics aggregators branch on
`"ping" in dbOrLayer` to run schema-qualified raw SQL over `project.*`
(snake_case) in PG. Executors/orchestrators/autopilot are
await-converted to drive the union store; the async store wrappers
extend `EventEmitter` so SSE live-push fires in both backends.

Not-yet-ported capabilities degrade gracefully (never 500) and are
individually called out in commits.

## Sync with main

The branch is kept continuously merged with `main` (currently through
FN-7845, 2026-07-12); the earlier "final rebase deferred" note no longer
applies. Use **Create a merge commit** (or squash) to land it — GitHub's
rebase-merge cannot replay a merge-maintained branch.

## Residual Review Findings

Multi-agent code review of the PostgreSQL satellite-store ports (U1–U5)
applied 3 safe fixes (see `fix(review): apply autofix feedback`). The
following are **real but gated** — recorded here as follow-up work
rather than auto-applied. All are SQLite→PostgreSQL
**concurrency/atomicity regressions**: the sync stores were immune only
by SQLite's single-writer, single-threaded-handler execution; the async
ports open multi-await read-modify-write windows. **Reachability is low
today** because the execution engines that generate concurrent same-run
mutations (insight run executor, research orchestrator/dispatcher) are
`instanceof`-gated to sync mode in PG. No process-crash class survived
(all engine fallbacks correctly guard the sync store).

- **[P1] Research `appendResearchEvent` dual-write is non-atomic**
(`packages/core/src/async-research-store.ts`, corroborated: adversarial
+ reliability). The `research_run_events` insert (own transaction) and
the `run.events` jsonb update are separate writes — a crash between
them, or two concurrent appends, splits the table count from the jsonb
array. **Fix:** perform the seq-insert and the jsonb update in one
`layer.transactionImmediate`.
- **[P1] Research run terminal-reversion via stale full-row persist**
(`async-research-store.ts` `persistResearchRun`/`updateResearchStatus`).
Concurrent `PATCH /runs/:id/status` + `POST /runs/:id/events` can revert
a terminal run to `running` by overwriting the whole row, bypassing the
transition guard. **Fix:** scoped column `UPDATE`s with a `WHERE status
…` guard, or optimistic version column.
- **[P2] `updateResearchRun`/`updateInsightRun` read-then-write TOCTOU**
— concurrent PATCHes last-writer-wins on the lifecycle merge. **Fix:**
`SELECT … FOR UPDATE` / enclosing transaction.
- **[P2] `upsertRun`/`createRunOrThrowConflict` check-then-create race**
(`async-insight-store.ts`) — two callers can each create an "active"
run. **Fix:** partial unique index on `(projectId, trigger) WHERE status
IN ('pending','running')`.
- **[P3] `createResearchRetryRun` return-value divergence** — sync
returns the pre-update `queued` snapshot; async returns the reloaded
`retry_waiting` run (persisted state is identical). Pick one side for
cross-backend parity.
- **[P2/perf] Mission `getMissionWithHierarchy`/`getMissionHealth` N+1
fan-out** — O(milestones×slices) sequential round-trips hold one pool
slot per request; can starve the pool for large hierarchies. **Fix:**
batched/joined reads.
- **Testing gaps:** no PG-mode concurrency tests (interleaved
status/event mutations), no sync↔async parity assertion for the
lifecycle-error codes, and no mission status/health rollup parity test
vs the sync `MissionStore`.

~~Out of scope (deferred): AI run *execution* (insight/research) +
mission autopilot + live SSE mission events remain sync-gated/degraded
in PG mode.~~ **Since ported** — insight/research run execution, mission
autopilot, and SSE live push all run on the async layer now, which also
makes the concurrency findings above genuinely reachable; they remain
open follow-ups.







---

## Update — 2026-07-12: production-readiness hardening & live acceptance

Everything below landed on this branch since the description above was
written:

**Production blockers from review — fixed**
- `recoverStaleTransitionPending` ported to the async layer (backend
moves write + clear the crash-safe marker; startup/maintenance sweeps no
longer throw).
- Lost-update class fixed: `atomicWriteTaskJson`/`WithAudit` write
changed columns only (full-row upserts silently resurrected stale fields
across concurrent store instances — the "task stuck unplanned forever"
bug).
- First-boot **auto-migration**: booting the PG backend over a project
with a legacy `fusion.db` migrates it automatically (loud failure,
SQLite kept as backup), and the dashboard shows a one-time **"your data
was migrated" banner** with the backup paths and a Need-help Discord
link.
- `pg_dump`/`pg_restore` discovered from common install locations for
embedded-mode backups.
- The PG suite is part of the blocking merge gate (`test:pg-gate`).

**Multi-project isolation (PR #2007, merged into this branch)**
- `project_id` partition key on tasks / archived tasks / config,
`taskProjectScope` threaded through every scan/claim/count, per-project
config rows, layer bound to the project at startup.
- Review P1 follow-up: the shared cold-storage `archive.archived_tasks`
table is also partitioned and all archived-board reads/counts/searches
are scoped.
- Schema drift self-heal generalized to schema-qualified columns so
existing databases upgrade in place.

**Other changes**
- Node settings sync **removed** in PG mode (409
`settings-sync-disabled-postgres`) — nodes share state by connecting to
the same database; auth sync kept (per-machine file).
- Perf (review findings): `listTasks` pushes column filter + ORDER BY +
LIMIT/OFFSET into SQL; `getConversation` capped to the most recent 200
messages.
- Fixed a false "operator action required" pause-abort log fired on
every successfully auto-merged task.

**Live acceptance — PASSED (2026-07-12)**
A sandboxed instance (isolated HOME, embedded PG, real Opus executor)
ran a task through the complete cycle: create → triage (AI spec) →
execute → in-review → AI squash-merge landed on the project's `main` →
done. A write+read sweep of every data surface (settings, comments,
documents, attachments + artifact bridge + artifact edit, chat with real
generation, goals, missions, agent mail, secrets, workflows, memory, CC
analytics) was green on embedded PG.

**Known remaining work**
- The per-project `config` PK re-key has no upgrade path for
pre-isolation embedded-PG databases (needs a real `DROP
CONSTRAINT`/re-key migration; fresh databases are fine).
- `pg_dump`/`pg_restore` binaries are not yet bundled in release
artifacts (PATH/common-location discovery only).
- The satellite-store concurrency findings listed above.

---------

Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Co-authored-by: Phil Larson <hello@phillarson.xyz>
Co-authored-by: fusion-merge <fusion-merge@local>
2026-07-13 19:07:58 -07:00

462 lines
17 KiB
TypeScript

import { exec } from "node:child_process";
import os from "node:os";
import path from "node:path";
import { promisify } from "node:util";
import type { ApprovalRequest, ApprovalRequestActorSnapshot, ApprovalRequestStore, WorktrunkSettings } from "@fusion/core";
import type { ExternalIntegrationReleaseManifest } from "./external-integrations/manifest.js";
import { validateExternalIntegrationManifest } from "./external-integrations/manifest.js";
import { createLogger } from "./logger.js";
import type { EngineRunContext, RunAuditor } from "./run-audit.js";
import type { AgentActionGateContext } from "./agent-action-gate.js";
const execAsync = promisify(exec);
const logger = createLogger("worktrunk-installer");
export const WORKTRUNK_PROBE_TIMEOUT_MS = 10_000;
export const WORKTRUNK_DOWNLOAD_TIMEOUT_MS = 60_000;
export const WORKTRUNK_DOWNLOAD_MAX_BYTES = 50 * 1024 * 1024;
export const WORKTRUNK_CARGO_TIMEOUT_MS = 10 * 60_000;
export const WORKTRUNK_INSTALL_DIR = path.join(os.homedir(), ".fusion", "bin");
export const WORKTRUNK_BINARY_NAME = "wt";
export const WORKTRUNK_INSTALL_PATH = path.join(WORKTRUNK_INSTALL_DIR, WORKTRUNK_BINARY_NAME);
export interface WorktrunkReleaseAsset {
url: string;
sha256: string;
}
export interface WorktrunkReleaseManifest {
source: "upstream-pending-verification" | "upstream-verified";
version: string | null;
verifiedAt: string | null;
assets: Record<string, WorktrunkReleaseAsset>;
}
export const WORKTRUNK_PINNED_RELEASE: WorktrunkReleaseManifest = {
source: "upstream-pending-verification",
version: null,
verifiedAt: null,
assets: {},
};
export const WORKTRUNK_INTEGRATION_MANIFEST: ExternalIntegrationReleaseManifest = {
id: "worktrunk",
binaryName: WORKTRUNK_BINARY_NAME,
upstreamRepo: "max-sixty/worktrunk",
docsUrl: "https://worktrunk.dev/",
source: WORKTRUNK_PINNED_RELEASE.source,
version: WORKTRUNK_PINNED_RELEASE.version,
verifiedAt: WORKTRUNK_PINNED_RELEASE.verifiedAt,
assets: Object.fromEntries(
Object.entries(WORKTRUNK_PINNED_RELEASE.assets).map(([name, asset]) => [name, { url: asset.url, sha256: asset.sha256 }]),
),
};
export interface WorktrunkManifestValidationError {
ok: false;
missingFields: Array<"source" | "version" | "verifiedAt" | "assets" | `assets.${string}.url` | `assets.${string}.sha256`>;
reason: string;
}
export type WorktrunkManifestValidationResult =
| { ok: true }
| WorktrunkManifestValidationError;
const AUTO_INSTALL_DISABLED_MESSAGE =
"worktrunk auto-install path disabled; set worktrunk.binaryPath or install worktrunk on PATH";
export class WorktrunkBinaryUnavailableError extends Error {
constructor(message: string, details?: Record<string, unknown>) {
super(message);
this.name = "WorktrunkBinaryUnavailableError";
if (details) Object.assign(this, details);
}
}
export class WorktrunkInstallDeniedError extends Error {
constructor(message: string, details?: Record<string, unknown>) {
super(message);
this.name = "WorktrunkInstallDeniedError";
if (details) Object.assign(this, details);
}
}
/**
* Known `stage` values on details:
* - `auto-install-disabled`
* - `manifest-unverified`
*/
export class WorktrunkInstallFailedError extends Error {
constructor(message: string, details?: Record<string, unknown>) {
super(message);
this.name = "WorktrunkInstallFailedError";
if (details) Object.assign(this, details);
}
}
const resolveCache = new Map<string, { inputBinaryPath: string | null; path: string; resolvedAt: number }>();
function worktrunkInstallDedupeKey(): string {
return WORKTRUNK_PINNED_RELEASE.version
? `worktrunk_install:${WORKTRUNK_PINNED_RELEASE.version}`
: "worktrunk_install:pending";
}
function worktrunkVersionLabel(): string {
return WORKTRUNK_PINNED_RELEASE.version ?? "pending";
}
export function validateWorktrunkManifest(input: unknown): WorktrunkManifestValidationResult {
const record = input && typeof input === "object" && !Array.isArray(input) ? (input as Record<string, unknown>) : {};
const validation = validateExternalIntegrationManifest({
id: "worktrunk",
binaryName: WORKTRUNK_BINARY_NAME,
upstreamRepo: "max-sixty/worktrunk",
docsUrl: "https://worktrunk.dev/",
source: record.source,
version: record.version,
verifiedAt: record.verifiedAt,
assets: record.assets,
});
if (validation.ok) return { ok: true };
const narrowMissingFields: WorktrunkManifestValidationError["missingFields"] = [];
const outOfShapeFields: string[] = [];
const addNarrow = (field: WorktrunkManifestValidationError["missingFields"][number]): void => {
if (!narrowMissingFields.includes(field)) narrowMissingFields.push(field);
};
for (const field of validation.missingFields) {
if (
field === "source" ||
field === "version" ||
field === "verifiedAt" ||
field === "assets" ||
/^assets\.[^.]+\.(url|sha256)$/.test(field)
) {
addNarrow(field as WorktrunkManifestValidationError["missingFields"][number]);
} else if (field === "assets:must-be-empty-when-pending") {
addNarrow("assets");
} else {
outOfShapeFields.push(field);
}
}
if (narrowMissingFields.length === 0) {
addNarrow("assets");
}
const reasonSuffix = outOfShapeFields.length > 0
? ` (non-worktrunk fields: ${outOfShapeFields.join(", ")})`
: "";
return {
ok: false,
missingFields: narrowMissingFields,
reason: `${validation.reason}${reasonSuffix}`,
};
}
function homeKey(settings: WorktrunkSettings): string {
return `${os.homedir()}::${settings.binaryPath ?? ""}`;
}
async function emitBinaryAudit(
auditor: RunAuditor | undefined,
type: "binary:install-requested" | "binary:install-success" | "binary:install-failed" | "binary:install-denied",
metadata: Record<string, unknown>,
): Promise<void> {
if (!auditor) return;
await auditor.filesystem({ type, target: WORKTRUNK_INSTALL_PATH, metadata });
}
async function emitInstallSuccessAudit(
auditor: RunAuditor | undefined,
payload: { binaryPath: string; installSource: "release-binary" | "cargo"; durationMs: number },
runContext?: EngineRunContext,
): Promise<void> {
if (!auditor) return;
try {
await auditor.git({
type: "worktree:worktrunk-install",
target: payload.binaryPath,
metadata: {
op: "install",
binaryPath: payload.binaryPath,
installSource: payload.installSource,
durationMs: payload.durationMs,
taskId: runContext?.taskId,
runId: runContext?.runId,
},
});
} catch (err) {
logger.warn("install-audit-failed", {
err: err instanceof Error ? err.message : String(err),
});
}
}
async function lookupPath(binaryName: string): Promise<string | null> {
const command = process.platform === "win32" ? "where" : "which";
try {
const { stdout } = await execAsync(`${command} ${binaryName}`, {
timeout: WORKTRUNK_PROBE_TIMEOUT_MS,
maxBuffer: 1024 * 1024,
});
return stdout.split(/\r?\n/).map((line) => line.trim()).find(Boolean) ?? null;
} catch {
return null;
}
}
/*
FNXC:WindowsTerminalStartup 2026-07-03-16:10:
On Windows the worktrunk CLI (`wt`) collides by name with Windows Terminal (`wt.exe`), which ships as an App Execution Alias under %LOCALAPPDATA%\Microsoft\WindowsApps and is on PATH by default on Windows 11. `where wt` therefore resolves to Windows Terminal, and probing it with `wt --version` LAUNCHES Windows Terminal — popping its native "Windows Terminal <version>" Help/version dialog whenever worktrunk resolution runs (e.g. on dashboard load or a Settings save, field report Issue 4). Never exec a resolved `wt` that is the Windows Terminal alias: on Windows a bare `wt`/`wt.exe` command name (PATH auto-discovery OR a bare `binaryPath` override) is refused because it resolves to Windows Terminal, and an absolute path is refused when it lives under WindowsApps or a Microsoft.WindowsTerminal package dir. A genuine worktrunk must be an explicit full path or the Fusion-managed ~/.fusion/bin install. This guard sits in probeWorktrunk — the single choke point every resolution surface (cached/override/PATH/install/settings-route) funnels through — so the invariant holds everywhere.
*/
export const WORKTRUNK_WINDOWS_TERMINAL_COLLISION_MESSAGE =
"Refusing to probe `wt` on Windows: the resolved binary is Windows Terminal (wt.exe), not worktrunk. Set `worktrunk.binaryPath` to the real worktrunk executable, or let Fusion install it under ~/.fusion/bin.";
export function isWindowsTerminalBinary(binaryPath: string): boolean {
if (process.platform !== "win32") return false;
// Compute the basename from the backslash-normalized string directly rather
// than path.basename(): on a POSIX build host (tests/CI) node's default `path`
// is POSIX and would not split on "\\", so a Windows path would be misparsed.
const normalized = binaryPath.replace(/\//g, "\\").toLowerCase();
const base = (normalized.split("\\").pop() ?? "").replace(/\.exe$/, "");
if (base !== "wt") return false;
// A bare `wt` / `wt.exe` (no directory component) resolves through PATH, where on
// Windows it is Windows Terminal's App Execution Alias — so a bare override is just
// as dangerous as a PATH auto-discovery. Refuse it; worktrunk must be an explicit
// full path or the Fusion-managed install.
if (!normalized.includes("\\")) return true;
// With a directory, only treat it as Windows Terminal when it lives in one of its
// known homes: the WindowsApps alias dir, or a `Microsoft.WindowsTerminal_*` package
// dir. Match the full package prefix (not a bare "windowsterminal" substring) so a
// genuine worktrunk under an unrelated folder like `...\windowsterminal-tools\wt.exe`
// is still probed.
return normalized.includes("\\windowsapps\\") || normalized.includes("microsoft.windowsterminal");
}
export async function probeWorktrunk(binaryPath: string): Promise<{ ok: boolean; version?: string; error?: string }> {
if (isWindowsTerminalBinary(binaryPath)) {
logger.warn("probe: refusing to launch Windows Terminal wt.exe", { binaryPath });
return { ok: false, error: WORKTRUNK_WINDOWS_TERMINAL_COLLISION_MESSAGE };
}
try {
const { stdout } = await execAsync(`"${binaryPath}" --version`, {
timeout: WORKTRUNK_PROBE_TIMEOUT_MS,
maxBuffer: 1024 * 1024,
});
const version = stdout.match(/(\d+\.\d+\.\d+(?:[-+][0-9A-Za-z.-]+)?)/)?.[1];
return { ok: true, ...(version ? { version } : {}) };
} catch (error) {
return { ok: false, error: error instanceof Error ? error.message : String(error) };
}
}
export async function resolveWorktrunkBinary(opts: {
settings: WorktrunkSettings;
auditor?: RunAuditor;
runContext?: EngineRunContext;
actionGateContext?: AgentActionGateContext;
}): Promise<{
binaryPath: string;
source: "override" | "path" | "cached" | "installed-release" | "installed-cargo";
}> {
const { settings } = opts;
const key = homeKey(settings);
const cached = resolveCache.get(key);
if (cached && cached.inputBinaryPath === (settings.binaryPath ?? null)) {
const probe = await probeWorktrunk(cached.path);
if (probe.ok) return { binaryPath: cached.path, source: "cached" };
}
logger.log("resolve: checking override");
if (settings.binaryPath) {
const probe = await probeWorktrunk(settings.binaryPath);
if (probe.ok) return { binaryPath: settings.binaryPath, source: "override" };
}
logger.log("resolve: checking PATH");
const onPath = await lookupPath(WORKTRUNK_BINARY_NAME);
if (onPath) {
const probe = await probeWorktrunk(onPath);
if (probe.ok) return { binaryPath: onPath, source: "path" };
}
logger.log("resolve: checking installed cache path");
const cachedInstallPath = settings.installedBinaryPath ?? WORKTRUNK_INSTALL_PATH;
const installProbe = await probeWorktrunk(cachedInstallPath);
if (installProbe.ok) return { binaryPath: cachedInstallPath, source: "cached" };
logger.log("resolve: install path disabled; failing");
try {
const installed = await installWorktrunk(opts);
return { binaryPath: installed.binaryPath, source: installed.source };
} catch (error) {
if (error instanceof WorktrunkInstallFailedError && (error as { stage?: string }).stage === "manifest-unverified") {
throw error;
}
throw new WorktrunkInstallFailedError(AUTO_INSTALL_DISABLED_MESSAGE, { stage: "auto-install-disabled" });
}
}
export async function requestWorktrunkInstallApproval(opts: {
approvalStore: ApprovalRequestStore;
actor: ApprovalRequestActorSnapshot;
projectId?: string;
}): Promise<{ approvalRequestId: string; status: "pending" | "approved" | "denied" | "completed" }> {
const dedupeKey = worktrunkInstallDedupeKey();
const existing = await opts.approvalStore.findLatestByDedupeKey({
requesterActorId: opts.actor.actorId,
taskId: undefined,
dedupeKey,
});
if (existing) {
return { approvalRequestId: existing.id, status: existing.status };
}
const created = await opts.approvalStore.create({
requester: opts.actor,
targetAction: {
category: "network_api",
action: "worktrunk_install",
summary: `Install worktrunk ${worktrunkVersionLabel() === "pending" ? "(pending verification)" : `v${worktrunkVersionLabel()}`}`,
resourceType: "binary",
resourceId: WORKTRUNK_INSTALL_PATH,
context: {
version: WORKTRUNK_PINNED_RELEASE.version,
assets: WORKTRUNK_PINNED_RELEASE.assets,
installPath: WORKTRUNK_INSTALL_PATH,
source: "dashboard",
projectId: opts.projectId,
approvalDedupeKey: dedupeKey,
},
},
});
return { approvalRequestId: created.id, status: created.status };
}
export async function executeApprovedWorktrunkInstall(opts: {
approvalStore: ApprovalRequestStore;
settings: WorktrunkSettings;
request: ApprovalRequest;
auditor?: RunAuditor;
}): Promise<{ binaryPath: string; source: "installed-release" | "installed-cargo" }> {
if (opts.request.status !== "approved") {
throw new WorktrunkInstallDeniedError(`Approval request ${opts.request.id} is not approved`, {
requestId: opts.request.id,
status: opts.request.status,
});
}
const result = await installWorktrunk({
settings: opts.settings,
auditor: opts.auditor,
gateOverride: "pre-approved",
});
await opts.approvalStore.markCompleted(opts.request.id, {
actor: {
actorId: "system",
actorType: "system",
actorName: "System",
},
note: `Installed ${result.binaryPath}`,
});
return result;
}
async function applyInstallGate(opts: {
auditor?: RunAuditor;
runContext?: EngineRunContext;
gateOverride?: "pre-approved";
actionGateContext?: AgentActionGateContext;
}): Promise<{ satisfied: boolean }> {
if (opts.gateOverride === "pre-approved") {
await emitBinaryAudit(opts.auditor, "binary:install-requested", {
reason: "pre-approved",
taskId: opts.runContext?.taskId,
runId: opts.runContext?.runId,
});
return { satisfied: true };
}
await emitBinaryAudit(opts.auditor, "binary:install-denied", {
reason: "auto-install-disabled",
taskId: opts.runContext?.taskId,
runId: opts.runContext?.runId,
});
throw new WorktrunkInstallFailedError(AUTO_INSTALL_DISABLED_MESSAGE, { stage: "auto-install-disabled" });
}
export async function installWorktrunk(opts: {
settings: WorktrunkSettings;
auditor?: RunAuditor;
runContext?: EngineRunContext;
gateOverride?: "pre-approved";
actionGateContext?: AgentActionGateContext;
}): Promise<{ binaryPath: string; source: "installed-release" | "installed-cargo" }> {
const startedAt = Date.now();
await applyInstallGate(opts);
const manifestValidation = validateWorktrunkManifest(WORKTRUNK_PINNED_RELEASE);
if (!manifestValidation.ok) {
throw new WorktrunkInstallFailedError(manifestValidation.reason, {
stage: "manifest-unverified",
missingFields: manifestValidation.missingFields,
});
}
const assets = Object.entries(WORKTRUNK_PINNED_RELEASE.assets);
if (assets.length === 0) {
throw new WorktrunkInstallFailedError("Worktrunk release manifest is missing assets for installation.", {
stage: "manifest-unverified",
missingFields: ["assets"],
});
}
const [assetName, asset] = assets[0];
if (!asset.url.trim()) {
throw new WorktrunkInstallFailedError(`Worktrunk release manifest is missing assets.${assetName}.url.`, {
stage: "manifest-unverified",
missingFields: [`assets.${assetName}.url`],
});
}
if (!asset.sha256.trim()) {
throw new WorktrunkInstallFailedError(`Worktrunk release manifest is missing assets.${assetName}.sha256.`, {
stage: "manifest-unverified",
missingFields: [`assets.${assetName}.sha256`],
});
}
await emitBinaryAudit(opts.auditor, "binary:install-success", {
source: "installed-release",
binaryPath: WORKTRUNK_INSTALL_PATH,
taskId: opts.runContext?.taskId,
runId: opts.runContext?.runId,
});
// Emit install audit only for true installs; path/cached/override resolutions remain silent.
await emitInstallSuccessAudit(
opts.auditor,
{
binaryPath: WORKTRUNK_INSTALL_PATH,
installSource: "release-binary",
durationMs: Math.max(0, Date.now() - startedAt),
},
opts.runContext,
);
resolveCache.set(homeKey(opts.settings), {
inputBinaryPath: opts.settings.binaryPath ?? null,
path: WORKTRUNK_INSTALL_PATH,
resolvedAt: Date.now(),
});
return { binaryPath: WORKTRUNK_INSTALL_PATH, source: "installed-release" };
}
export function clearWorktrunkResolveCache(): void {
resolveCache.clear();
}