fix(anpr): share one camera snapshot across bridge + advisory paths
On a vehicle entry, two paths captured the SAME Hikvision camera within ~1s — the ANPR bridge (barrier-driving) and the advisory snapshotAsync (evidence/ telemetry) — each from a separate adapter instance. Hikvision serves snapshots single-threaded, so the second concurrent GET returned HTTP 503; the bridge then fail-softed and burned its 12s debounce, producing a ~74s "slow" subscriber entry (observed 2026-06-25, Qazim Mulleti / AB816NN — plate read was instant at conf 1.000; the delay was the 503/debounce churn, not recognition). Add captureSnapshotShared() in snapshot.ts: a module-level, deviceId-keyed cache that both paths call. It coalesces in-flight captures (the 2nd caller awaits the 1st's pull → no concurrent 503), serves a brief freshness window (1500ms) so the bridge→advisory sequence for one vehicle reuses one frame, never caches a failure (next caller retries), and keys by deviceId (no cross-camera/stale-vehicle reuse). Wired into anpr-entry.ts (bridge) and snapshot.ts (advisory). Tests: snapshot.test.ts (concurrent coalescing, TTL reuse, TTL-lapse re-pull, failure-not-cached, per-camera keying); anpr-entry.test.ts mock updated. 168 server tests green. NOTE: this removes the latency (the 503 collision). The separate double-entry (two signed vehicle_entry for one car) — debounce-too-short / stamp-before- success — is still open; less likely now but not eliminated. Claude-Session: https://claude.ai/code/session_01Xcm6ikLgGoCxxHrxtjkk5V
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@@ -15,8 +15,13 @@ import type { SubscriptionFlow, SubscriptionMatch } from "./subscription-flow.js
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// Mock buildCamera so the bridge gets a fake camera whose captureSnapshot is a stub
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// (no registry, no network). The factory returns a fresh shot each call.
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const captureSnapshot = vi.fn(async () => ({ bytes: Buffer.from("jpg"), contentType: "image/jpeg" }));
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// The bridge now goes through captureSnapshotShared (the dedup wrapper, exercised in
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// snapshot.test.ts); here it just delegates to the fake camera's captureSnapshot so this
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// suite stays focused on the bridge's own match/debounce/emit logic.
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vi.mock("./snapshot.js", () => ({
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buildCamera: () => ({ captureSnapshot }),
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captureSnapshotShared: (_id: string, camera: { captureSnapshot: typeof captureSnapshot }, ctx: unknown) =>
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camera.captureSnapshot(ctx as never),
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}));
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// Import AFTER the mock is registered.
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@@ -3,7 +3,7 @@ import { devices, deviceEvents as deviceEventsTable, eq, siteConfig, type Db, ty
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import type { FastifyBaseLogger } from "fastify";
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import { deviceEvents, type DeviceReadEvent } from "./device-events.js";
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import { directionOf, type FlowDirection } from "./device-resolve.js";
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import { buildCamera } from "./snapshot.js";
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import { buildCamera, captureSnapshotShared } from "./snapshot.js";
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import type { SubscriptionFlow } from "./subscription-flow.js";
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import type { VisionClient } from "./vision-client.js";
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@@ -100,7 +100,9 @@ export class AnprBridge {
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// "both" collapses to entry purely for the capture hint (it doesn't pick the lane —
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// the gated flow infers the verb from the camera's bound relay direction).
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const direction: FlowDirection = directionOf(this.#db, row) === "exit" ? "exit" : "entry";
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const shot = await camera.captureSnapshot({ direction });
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// Shared capture (deviceId-keyed): coalesces with the advisory snapshotAsync for
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// the SAME vehicle so the single-threaded camera isn't hit twice (→ HTTP 503).
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const shot = await captureSnapshotShared(deviceId, camera, { direction });
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const result = await this.#vision.analyze(shot.bytes, shot.contentType);
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if (!result || !result.plate) return; // nothing read
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@@ -0,0 +1,93 @@
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import { describe, expect, it, vi } from "vitest";
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import type { CameraDevice, Snapshot } from "@parking/devices";
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import { captureSnapshotShared } from "./snapshot.js";
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// captureSnapshotShared: one HTTP pull per camera per vehicle. A Hikvision unit serves
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// snapshots SINGLE-THREADED (a 2nd concurrent GET → HTTP 503). On an entry the ANPR
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// bridge AND the advisory snapshotAsync both capture the same camera within ~1s, each
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// from a SEPARATE adapter instance — so this deviceId-keyed cache coalesces in-flight
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// captures and serves a brief freshness window, collapsing the two into one real pull.
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// (Root cause of the slow 2026-06-25 subscriber entry.)
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/** A fake camera whose captureSnapshot is controllable (count calls, delay, fail). */
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function fakeCamera(opts: { delayMs?: number; fail?: boolean; tag?: string } = {}): {
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camera: CameraDevice;
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calls: () => number;
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} {
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let calls = 0;
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const tag = opts.tag ?? "x";
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const camera = {
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async captureSnapshot(): Promise<Snapshot> {
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calls++;
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if (opts.delayMs) await new Promise((r) => setTimeout(r, opts.delayMs));
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if (opts.fail) throw new Error("HTTP 503");
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// Tag distinguishes frames from different cameras (the per-camera keying test).
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return { bytes: Buffer.from(`shot-${tag}-${calls}`), contentType: "image/jpeg", capturedAt: new Date().toISOString() };
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},
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} as unknown as CameraDevice;
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return { camera, calls: () => calls };
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}
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/** A unique deviceId per test so the module-level cache never bleeds across cases. */
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function id(): string {
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return `cam-${Math.random().toString(36).slice(2)}`;
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}
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describe("captureSnapshotShared", () => {
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it("coalesces CONCURRENT captures into a single hardware pull (the 503 fix)", async () => {
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const { camera, calls } = fakeCamera({ delayMs: 20 });
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const dev = id();
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// The bridge and the advisory path fire at nearly the same instant.
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const [a, b] = await Promise.all([
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captureSnapshotShared(dev, camera, { direction: "entry" }),
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captureSnapshotShared(dev, camera, { direction: "entry" }),
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]);
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expect(calls()).toBe(1); // ONE GET, not two — no concurrent 503
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expect(a.bytes.equals(b.bytes)).toBe(true); // both got the same frame
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});
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it("reuses a fresh capture within the TTL (sequential, same vehicle)", async () => {
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const { camera, calls } = fakeCamera();
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const dev = id();
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const a = await captureSnapshotShared(dev, camera, { direction: "entry" });
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const b = await captureSnapshotShared(dev, camera, { direction: "entry" }); // ~0ms later
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expect(calls()).toBe(1); // 2nd call served from the freshness cache
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expect(a.bytes.equals(b.bytes)).toBe(true);
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});
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it("pulls AGAIN after the TTL lapses (a later, different vehicle)", async () => {
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vi.useFakeTimers();
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try {
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const { camera, calls } = fakeCamera();
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const dev = id();
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await captureSnapshotShared(dev, camera, { direction: "entry" });
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expect(calls()).toBe(1);
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await vi.advanceTimersByTimeAsync(2000); // past SNAPSHOT_TTL_MS (1500)
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await captureSnapshotShared(dev, camera, { direction: "entry" });
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expect(calls()).toBe(2); // stale → a real new pull (never a stale frame for a new car)
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} finally {
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vi.useRealTimers();
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}
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});
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it("does NOT cache a failure — the next caller retries", async () => {
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const dev = id();
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const failing = fakeCamera({ fail: true });
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await expect(captureSnapshotShared(dev, failing.camera, { direction: "entry" })).rejects.toThrow("503");
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// A subsequent capture (camera recovered) must actually pull, not inherit the error.
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const ok = fakeCamera();
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const shot = await captureSnapshotShared(dev, ok.camera, { direction: "entry" });
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expect(shot.bytes.toString()).toBe("shot-x-1");
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expect(ok.calls()).toBe(1);
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});
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it("keys by deviceId — different cameras never share a frame", async () => {
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const c1 = fakeCamera({ tag: "A" });
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const c2 = fakeCamera({ tag: "B" });
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const s1 = await captureSnapshotShared("cam-A", c1.camera, { direction: "entry" });
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const s2 = await captureSnapshotShared("cam-B", c2.camera, { direction: "entry" });
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expect(c1.calls()).toBe(1);
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expect(c2.calls()).toBe(1);
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expect(s1.bytes.equals(s2.bytes)).toBe(false);
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});
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});
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@@ -1,6 +1,6 @@
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import { randomUUID } from "node:crypto";
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import { deviceEvents as deviceEventsTable, snapshots, type Db } from "@parking/db";
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import { registry, type CameraDevice } from "@parking/devices";
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import { registry, type CameraDevice, type Snapshot } from "@parking/devices";
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import type { FastifyBaseLogger } from "fastify";
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import { devicesByDirection, type FlowDirection } from "./device-resolve.js";
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import type { VisionClient } from "./vision-client.js";
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@@ -62,7 +62,9 @@ export function snapshotAsync(job: SnapshotJob): Promise<string[]> {
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return null;
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}
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try {
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const shot = await camera.captureSnapshot({ direction });
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// Shared capture: if the ANPR bridge just pulled this camera's frame for the
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// same vehicle, reuse it instead of a 2nd concurrent GET (which 503s).
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const shot = await captureSnapshotShared(row.id, camera, { direction });
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const id: string = randomUUID();
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db.insert(snapshots)
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.values({
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@@ -153,6 +155,70 @@ export function buildCamera(row: { driverId: string; config: unknown }): CameraD
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}
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}
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// --- shared snapshot capture (one HTTP pull per camera per vehicle) -----------
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// A Hikvision camera serves /ISAPI/.../picture SINGLE-THREADED: two concurrent
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// snapshot GETs to the same unit return HTTP 503 "service busy". On a vehicle entry
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// TWO paths capture the SAME camera within ~1s — the ANPR bridge (barrier-driving,
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// anpr-entry.ts) and the advisory snapshotAsync (evidence + telemetry, below). They
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// each `buildCamera()` a SEPARATE adapter instance, so a per-instance cache can't
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// dedupe them. This module-level, deviceId-keyed cache does: it coalesces in-flight
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// captures (the 2nd caller awaits the 1st's pull) AND serves a result captured within
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// SNAPSHOT_TTL_MS, so the bridge + advisory share ONE frame instead of colliding into
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// a 503 (which then burned the bridge's 12s debounce → the slow entry observed
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// 2026-06-25; see wiki/concepts/lane-presence-and-anpr-entry.md).
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/** How long a fresh capture is reused for the same camera. A car is one event for a
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* couple of seconds; 1.5s comfortably spans the bridge→advisory gap without ever
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* serving a stale frame for a *different* vehicle (entries are seconds apart). */
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const SNAPSHOT_TTL_MS = 1500;
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interface CacheEntry {
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/** A capture in flight — concurrent callers await this instead of issuing a 2nd GET. */
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inflight?: Promise<Snapshot>;
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/** The last SUCCESSFUL capture + when it resolved, for the freshness window. */
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last?: { shot: Snapshot; at: number };
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}
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const snapshotCache = new Map<string, CacheEntry>();
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/**
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* Capture a snapshot for a camera, sharing ONE HTTP pull across concurrent/near-
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* simultaneous callers (the ANPR bridge and the advisory snapshot). Same contract as
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* `camera.captureSnapshot` (throws on failure) — a failed pull is NOT cached, so the
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* next caller retries rather than inheriting the error. Key by the stable `deviceId`.
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*/
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export function captureSnapshotShared(
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deviceId: string,
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camera: CameraDevice,
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ctx: { direction: FlowDirection },
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): Promise<Snapshot> {
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const now = Date.now();
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let entry = snapshotCache.get(deviceId);
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if (!entry) {
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entry = {};
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snapshotCache.set(deviceId, entry);
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}
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// Fresh enough → reuse the last frame (same vehicle, no second hardware hit).
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if (entry.last && now - entry.last.at < SNAPSHOT_TTL_MS) {
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return Promise.resolve(entry.last.shot);
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}
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// A capture is already running → join it (this is what prevents the 503 collision).
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if (entry.inflight) return entry.inflight;
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// Otherwise issue the single real pull; record it as the in-flight promise.
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const pull = camera
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.captureSnapshot(ctx)
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.then((shot) => {
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entry.last = { shot, at: Date.now() };
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return shot;
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})
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.finally(() => {
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// Clear the in-flight slot whether it resolved or threw; a failure is never cached.
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if (entry.inflight === pull) entry.inflight = undefined;
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});
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entry.inflight = pull;
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return pull;
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}
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function recordFailure(
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db: Db,
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direction: FlowDirection,
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