mirror of
https://github.com/openclaw/openclaw.git
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279 lines
7.4 KiB
TypeScript
279 lines
7.4 KiB
TypeScript
import { beforeEach, describe, expect, it, vi } from "vitest";
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const diagnosticMocks = vi.hoisted(() => ({
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logLaneEnqueue: vi.fn(),
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logLaneDequeue: vi.fn(),
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diag: {
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debug: vi.fn(),
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warn: vi.fn(),
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error: vi.fn(),
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},
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}));
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vi.mock("../logging/diagnostic.js", () => ({
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logLaneEnqueue: diagnosticMocks.logLaneEnqueue,
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logLaneDequeue: diagnosticMocks.logLaneDequeue,
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diagnosticLogger: diagnosticMocks.diag,
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}));
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import {
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clearCommandLane,
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CommandLaneClearedError,
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enqueueCommand,
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enqueueCommandInLane,
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getActiveTaskCount,
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getQueueSize,
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resetAllLanes,
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setCommandLaneConcurrency,
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waitForActiveTasks,
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} from "./command-queue.js";
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describe("command queue", () => {
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beforeEach(() => {
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diagnosticMocks.logLaneEnqueue.mockClear();
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diagnosticMocks.logLaneDequeue.mockClear();
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diagnosticMocks.diag.debug.mockClear();
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diagnosticMocks.diag.warn.mockClear();
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diagnosticMocks.diag.error.mockClear();
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});
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it("resetAllLanes is safe when no lanes have been created", () => {
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expect(getActiveTaskCount()).toBe(0);
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expect(() => resetAllLanes()).not.toThrow();
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expect(getActiveTaskCount()).toBe(0);
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});
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it("runs tasks one at a time in order", async () => {
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let active = 0;
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let maxActive = 0;
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const calls: number[] = [];
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const makeTask = (id: number) => async () => {
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active += 1;
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maxActive = Math.max(maxActive, active);
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calls.push(id);
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await new Promise((resolve) => setTimeout(resolve, 15));
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active -= 1;
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return id;
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};
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const results = await Promise.all([
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enqueueCommand(makeTask(1)),
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enqueueCommand(makeTask(2)),
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enqueueCommand(makeTask(3)),
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]);
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expect(results).toEqual([1, 2, 3]);
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expect(calls).toEqual([1, 2, 3]);
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expect(maxActive).toBe(1);
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expect(getQueueSize()).toBe(0);
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});
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it("logs enqueue depth after push", async () => {
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const task = enqueueCommand(async () => {});
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expect(diagnosticMocks.logLaneEnqueue).toHaveBeenCalledTimes(1);
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expect(diagnosticMocks.logLaneEnqueue.mock.calls[0]?.[1]).toBe(1);
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await task;
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});
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it("invokes onWait callback when a task waits past the threshold", async () => {
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let waited: number | null = null;
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let queuedAhead: number | null = null;
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// First task holds the queue long enough to trigger wait notice.
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const first = enqueueCommand(async () => {
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await new Promise((resolve) => setTimeout(resolve, 30));
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});
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const second = enqueueCommand(async () => {}, {
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warnAfterMs: 5,
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onWait: (ms, ahead) => {
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waited = ms;
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queuedAhead = ahead;
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},
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});
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await Promise.all([first, second]);
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expect(waited).not.toBeNull();
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expect(waited as number).toBeGreaterThanOrEqual(5);
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expect(queuedAhead).toBe(0);
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});
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it("getActiveTaskCount returns count of currently executing tasks", async () => {
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let resolve1!: () => void;
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const blocker = new Promise<void>((r) => {
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resolve1 = r;
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});
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const task = enqueueCommand(async () => {
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await blocker;
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});
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expect(getActiveTaskCount()).toBe(1);
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resolve1();
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await task;
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expect(getActiveTaskCount()).toBe(0);
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});
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it("waitForActiveTasks resolves immediately when no tasks are active", async () => {
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const { drained } = await waitForActiveTasks(1000);
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expect(drained).toBe(true);
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});
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it("waitForActiveTasks waits for active tasks to finish", async () => {
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let resolve1!: () => void;
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const blocker = new Promise<void>((r) => {
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resolve1 = r;
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});
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const task = enqueueCommand(async () => {
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await blocker;
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});
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vi.useFakeTimers();
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try {
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const drainPromise = waitForActiveTasks(5000);
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// Resolve the blocker after a short delay.
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setTimeout(() => resolve1(), 10);
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await vi.advanceTimersByTimeAsync(100);
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const { drained } = await drainPromise;
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expect(drained).toBe(true);
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await task;
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} finally {
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vi.useRealTimers();
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}
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});
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it("waitForActiveTasks returns drained=false on timeout", async () => {
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let resolve1!: () => void;
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const blocker = new Promise<void>((r) => {
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resolve1 = r;
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});
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const task = enqueueCommand(async () => {
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await blocker;
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});
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vi.useFakeTimers();
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try {
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const waitPromise = waitForActiveTasks(50);
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await vi.advanceTimersByTimeAsync(100);
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const { drained } = await waitPromise;
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expect(drained).toBe(false);
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resolve1();
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await task;
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} finally {
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vi.useRealTimers();
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}
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});
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it("resetAllLanes drains queued work immediately after reset", async () => {
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const lane = `reset-test-${Date.now()}-${Math.random().toString(16).slice(2)}`;
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setCommandLaneConcurrency(lane, 1);
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let resolve1!: () => void;
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const blocker = new Promise<void>((r) => {
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resolve1 = r;
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});
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// Start a task that blocks the lane
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const task1 = enqueueCommandInLane(lane, async () => {
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await blocker;
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});
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await vi.waitFor(() => {
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expect(getActiveTaskCount()).toBeGreaterThanOrEqual(1);
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});
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// Enqueue another task — it should be stuck behind the blocker
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let task2Ran = false;
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const task2 = enqueueCommandInLane(lane, async () => {
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task2Ran = true;
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});
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await vi.waitFor(() => {
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expect(getQueueSize(lane)).toBeGreaterThanOrEqual(2);
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});
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expect(task2Ran).toBe(false);
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// Simulate SIGUSR1: reset all lanes. Queued work (task2) should be
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// drained immediately — no fresh enqueue needed.
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resetAllLanes();
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// Complete the stale in-flight task; generation mismatch makes its
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// completion path a no-op for queue bookkeeping.
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resolve1();
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await task1;
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// task2 should have been pumped by resetAllLanes's drain pass.
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await task2;
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expect(task2Ran).toBe(true);
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});
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it("waitForActiveTasks ignores tasks that start after the call", async () => {
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const lane = `drain-snapshot-${Date.now()}-${Math.random().toString(16).slice(2)}`;
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setCommandLaneConcurrency(lane, 2);
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let resolve1!: () => void;
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const blocker1 = new Promise<void>((r) => {
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resolve1 = r;
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});
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let resolve2!: () => void;
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const blocker2 = new Promise<void>((r) => {
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resolve2 = r;
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});
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const first = enqueueCommandInLane(lane, async () => {
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await blocker1;
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});
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const drainPromise = waitForActiveTasks(2000);
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// Starts after waitForActiveTasks snapshot and should not block drain completion.
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const second = enqueueCommandInLane(lane, async () => {
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await blocker2;
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});
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expect(getActiveTaskCount()).toBeGreaterThanOrEqual(2);
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resolve1();
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const { drained } = await drainPromise;
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expect(drained).toBe(true);
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resolve2();
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await Promise.all([first, second]);
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});
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it("clearCommandLane rejects pending promises", async () => {
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let resolve1!: () => void;
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const blocker = new Promise<void>((r) => {
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resolve1 = r;
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});
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// First task blocks the lane.
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const first = enqueueCommand(async () => {
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await blocker;
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return "first";
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});
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// Second task is queued behind the first.
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const second = enqueueCommand(async () => "second");
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const removed = clearCommandLane();
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expect(removed).toBe(1); // only the queued (not active) entry
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// The queued promise should reject.
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await expect(second).rejects.toBeInstanceOf(CommandLaneClearedError);
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// Let the active task finish normally.
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resolve1();
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await expect(first).resolves.toBe("first");
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});
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});
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